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Found: len >= 0 && static_cast(len) < std::numeric_limits::max()Value type is not supported yet: Number of values should be at least 1.For map type num_values MUST be 2Key and value tensors have unequal number of elements.Key type is not supported yet.Each element of the sequence should be either tensor or map.At least one element in the sequence is of a type different from others.Expecting all elements to be tensors. Got: Sequences must have tensors of the same data type. There was at least one tensor in the input that was different.Either the key tensor or the value tensor has NumDimensions > 1ؐ0א@אPא`אpאאאאאאאאאؐؐ֐ ,; OrtStatus = OrtStatus; OrtValue = OrtValue]OrtStatus* OrtCreateValueImplMapHelper(const onnxruntime::Tensor&, const onnxruntime::Tensor&, OrtValue**) [with KeyType = long int; OrtStatus = OrtStatus; OrtValue = OrtValue]OrtStatus* OrtCreateMapMLValue(const onnxruntime::Tensor&, const onnxruntime::Tensor&, OrtValue**) [with KeyType = std::basic_string; ValueType = double; OrtStatus = OrtStatus; OrtValue = OrtValue]OrtStatus* OrtCreateMapMLValue(const onnxruntime::Tensor&, const onnxruntime::Tensor&, OrtValue**) [with KeyType = std::basic_string; ValueType = float; OrtStatus = OrtStatus; OrtValue = OrtValue]OrtStatus* OrtCreateMapMLValue(const onnxruntime::Tensor&, const onnxruntime::Tensor&, OrtValue**) [with KeyType = std::basic_string; ValueType = long int; OrtStatus = OrtStatus; OrtValue = OrtValue]OrtStatus* OrtCreateMapMLValue(const onnxruntime::Tensor&, const onnxruntime::Tensor&, OrtValue**) [with KeyType = std::basic_string; ValueType = std::basic_string; OrtStatus = OrtStatus; OrtValue = OrtValue]OrtStatus* OrtCreateValueImplMapHelper(const onnxruntime::Tensor&, const onnxruntime::Tensor&, OrtValue**) [with KeyType = std::basic_string; OrtStatus = OrtStatus; OrtValue = OrtValue]const T& OrtValue::Get() const [with T = std::map]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with K = long int; V = double; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]const T& OrtValue::Get() const [with T = std::map]const T& OrtValue::Get() const [with T = std::map]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with K = long int; V = long int; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]const T& OrtValue::Get() const [with T = std::map >]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with K = long int; V = std::basic_string; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]const T& OrtValue::Get() const [with T = std::map, double>]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with K = std::basic_string; V = double; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]const T& OrtValue::Get() const [with T = std::map, float>]const T& OrtValue::Get() const [with T = std::map, long int>]const T& OrtValue::Get() const [with T = std::map, std::basic_string >]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with K = std::basic_string; V = std::basic_string; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]Ret onnxruntime::utils::mltype_dispatcher_internal::CallableDispatchableRetHelper::Get() [with Ret = OrtStatus*; UnsupportedPolicy = c_api_internal::UnsupportedReturnFailStatus]const T* onnxruntime::Tensor::Data() const [with T = long unsigned int]const T* onnxruntime::Tensor::Data() const [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = unsigned int]const T* onnxruntime::Tensor::Data() const [with T = int]const T* onnxruntime::Tensor::Data() const [with T = short unsigned int]const T* onnxruntime::Tensor::Data() const [with T = short int]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = signed char]const T* onnxruntime::Tensor::Data() const [with T = bool]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::BFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::MLFloat16]const T* onnxruntime::Tensor::Data() const [with T = double]const T* onnxruntime::Tensor::Data() const [with T = float]const onnxruntime::Tensor& onnxruntime::TensorSeq::Get(size_t) constconst T& OrtValue::Get() const [with T = std::vector >]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with K = long int; V = float; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with T = std::map; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]const T& OrtValue::Get() const [with T = std::vector, float> >]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with K = std::basic_string; V = float; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with T = std::map, float>; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]const T& OrtValue::Get() const [with T = onnxruntime::TensorSeq]static void SafeIntExceptionHandler::SafeIntOnOverflow()const T* onnxruntime::Tensor::Data() const [with T = std::basic_string]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]T* OrtValue::GetMutable() [with T = onnxruntime::Tensor]St11_Mutex_baseILN9__gnu_cxx12_Lock_policyE2EEPFvPvE*ZN7OrtApis19GetBoundOutputNamesEPK12OrtIoBindingP12OrtAllocatorPPcPPmS7_EUlS7_E_*ZN7OrtApis19GetBoundOutputNamesEPK12OrtIoBindingP12OrtAllocatorPPcPPmS7_EUlS5_E0_*ZN7OrtApis20GetBoundOutputValuesEPK12OrtIoBindingP12OrtAllocatorPPP8OrtValuePmEUlS7_E_St16_Sp_counted_baseILN9__gnu_cxx12_Lock_policyE2EEN11onnxruntime23NotImplementedExceptionEN11onnxruntime20OnnxRuntimeExceptionEN11onnxruntime10IAllocatorEN11onnxruntime16AllocatorWrapperESt19_Sp_counted_deleterIPvPFvS0_ESaIiELN9__gnu_cxx12_Lock_policyE2EESt19_Sp_make_shared_tagSt23_Sp_counted_ptr_inplaceIN11onnxruntime16AllocatorWrapperESaIS1_ELN9__gnu_cxx12_Lock_policyE2EE/\basic_string::substrenv_ptr == p_instance_basic_string::_S_construct null not valid/onnxruntime_src/onnxruntime/core/session/ort_env.ccstatic void OrtEnv::Release(OrtEnv*)N11onnxruntime7logging5ISinkE14LoggingWrapperN11onnxruntime7logging8CLogSinkE/onnxruntime_src/onnxruntime/core/session/IOBinding.ccBindInputexecution_mode is not validgraph_optimization_level is not validWARNING: Since openmp is enabled in this build, this API cannot be used to configure intra op num threads. Please use the openmp environment variables to control the number of threads. /onnxruntime_src/onnxruntime/core/session/abi_session_options.ccResult buffer is not large enough/onnxruntime_src/onnxruntime/core/session/custom_ops.cc%uUnsupported version '' in custom op ' is not implementedDescriptiononnxruntime::CustomOpKernel::CustomOpKernel(const onnxruntime::OpKernelInfo&, OrtCustomOp&)CreateCustomRegistryComputeAsync*ZN11onnxruntime20CreateCustomRegistryERKSt6vectorIP17OrtCustomOpDomainSaIS2_EERSt10shared_ptrINS_14CustomRegistryEEEUlRKNS_12OpKernelInfoEE_N4onnx15ISchemaRegistryEN11onnxruntime8OpKernelEN11onnxruntime30IOnnxRuntimeOpSchemaCollectionEN11onnxruntime14CustomOpKernelEN4onnx8OpSchema19num_inputs_allowed_MUliE_EN4onnx8OpSchema20num_outputs_allowed_MUliE_ESt23_Sp_counted_ptr_inplaceIN11onnxruntime14KernelRegistryESaIS1_ELN9__gnu_cxx12_Lock_policyE2EESt23_Sp_counted_ptr_inplaceIN11onnxruntime27OnnxRuntimeOpSchemaRegistryESaIS1_ELN9__gnu_cxx12_Lock_policyE2EESt23_Sp_counted_ptr_inplaceIN11onnxruntime14CustomRegistryESaIS1_ELN9__gnu_cxx12_Lock_policyE2EE12OrtAllocatorN3Ort9ExceptionE16OrtAllocatorImpl19OrtDefaultAllocatorCpuEnv is nullOrtMemoryInfo is nullNo requested allocator availableOnly CPU devices are supported for now.Received invalid value for arena extend strategy. Valid values can be either 0, 1 or -1.*ZN7OrtApis26CreateAndRegisterAllocatorEP6OrtEnvPK13OrtMemoryInfoPK11OrtArenaCfgEUliE_*ZN7OrtApis26CreateAndRegisterAllocatorEP6OrtEnvPK13OrtMemoryInfoPK11OrtArenaCfgEUliE0_tensor(uint8)tensor(uint16)tensor(uint32)tensor(uint64)tensor(int8)tensor(int16)tensor(int32)tensor(int64)tensor(bfloat16)tensor(float16)tensor(float)tensor(double)tensor(string)tensor(bool)tensor(complex64)tensor(complex128) unknownElement type of input [TypeInferenceError] expected to have tensor typeInput Output com.microsoftcom.microsoft.nchwccom.microsoft.mlfeaturizers (domain: ) from file , but it its domain is not known by the checker., but it its version is not in the inclusive range [] (usually, this means you in onnx/defs/schema.h).Schema error: intra-opinter-opMemcpyFromHostMemcpyToHostException caught: Allocator with this OrtMemoryInfo is already registered.Trying to register schema with name , but it is already registered from file bumped the operator version but forgot to update the version range in DomainToVersionRange Constrain to any tensor type. If the dtype attribute is not provided this must be a valid output type./onnxruntime_src/onnxruntime/core/session/environment.cc expected to have sequence type expected to have type but instead is nullFvON4onnx8OpSchemaEEFvRN4onnx16InferenceContextEEN4onnx14InferenceErrorEN4onnx11SchemaErrorEPFvRN4onnx16InferenceContextEEPFvON4onnx8OpSchemaEELoad model from failed. Only bytes were able to be read.Model was not loadedModel was not loaded.Profiler is disabled.) , expected: (Output vector pointer is NULLp_fetches->size(): Invalid Output Name:other_error[json.exception.%Y-%m-%d_%H-%M-%S.jsonSession was not initializedSession not initialized.Compute_Create_State_Release_State_Invalid rank for input: Expected: for the following indices elements, but feeds has elements.Invalid Feed Input Name:Input with name: IsSparseTensor()Running with tag: model_runException during loading: Unknown exception in Load()model_loading_urimodel_loading_protomodel_loading_istreamProvider has already been registered.DmlExecutionProviderCUDAExecutionProviderNode placements]. Provider: [MemcpyTransformer are '0' and '1'. is_model_proto_parsedCastFloat16Transformerst.IsOK()Error during EndProfiling(): ORTM1.4.0session.load_model_formatORTmodel_loading_arrayInitializing session.session.use_env_allocatorssession.save_model_formatsession_initialization/onnxruntime_src/onnxruntime/core/session/inference_session.ccReceived nullptr for graph transformerGraph transformers must be registered before the session is initialized.Attempt to use DefaultLogger but none has been registered./onnxruntime_src/include/onnxruntime/core/common/logging/logging.hInvalid run log severity level. Not a valid onnxruntime::logging::Severity value: run_options.run_log_severity_level >= 0 && run_options.run_log_severity_level <= static_cast(logging::Severity::kFATAL)Invalid session log severity level. Not a valid onnxruntime::logging::Severity value: session_options_.session_log_severity_level >= 0 && session_options_.session_log_severity_level <= static_cast(logging::Severity::kFATAL)Could not write a profile because no model was loaded./onnxruntime_src/onnxruntime/core/framework/feeds_fetches_manager.hUnexpected input data type. Actual: (At least one output should be requested.Output vector incorrectly sized: output_names.size(): timeout_in_ms >0 is not supportedsession->NewIOBinding(&binding_).IsOK()Exceeded max transformer level. Current level is set to graph_optimization_level <= TransformerLevel::MaxLevelReceived nullptr for custom registry Please fix either the inputs or the model.Got invalid dimensions for input: Size mismatch: feed_names has is not expected to be of type tensor. is not expected to be of type sparse tensor.Trying to get a SparseTensor, but got: is not expected to be of type tensor sequence.Encountered unknown exception in Run()This session already contains a loaded model.Encountered unknown exception in Load()ModelProto corresponding to the model to be loaded has already been parsed. Invoke Load().ModelProto corresponding to the model to be loaded has not been parsed yet. This API should be called in conjunction with a ctor that takes a model abstraction.model_loading_from_saved_proto/onnxruntime_src/onnxruntime/core/framework/execution_providers.hReceived nullptr for exec providerExecution providers must be registered before the session is initialized. Execution providers must be registered before the session is initialized.Having memory pattern enabled is not supported while using the DML Execution Provider. So disabling it for this session since it uses the DML Execution Provider.Parallel execution mode does not support the DML Execution Provider. So making the execution mode sequential for this session since it uses the DML Execution Provider.Parallel execution mode does not support the CUDA Execution Provider. So making the execution mode sequential for this session since it uses the CUDA Execution Provider.Could not find an implementation for the node All nodes have been placed on [The only supported values for the environment variable The environment variable contained the value: Reading the provided model for the ORT configModelProto needs to be parsed to check for ORT config within itCould not finalize session options while constructing the inference session. Error Message: graph_transformation_mgr_.SetSteps(session_options_.max_num_graph_transformation_steps).IsOK()Creating and using per session threadpools since use_per_session_threads_ is trueFailed to create the inter-op thread pool for the parallel executor, setting ExecutionMode to SEQUENTIALUsing global/env threadpools since use_per_session_threads_ is falseWhen the session is not configured to use per session threadpools, the env must be created with the the CreateEnvWithGlobalThreadPools API.session_env.EnvCreatedWithGlobalThreadPools()Given model could not be parsed while creating inference session. Error message: Could not parse model successfully while constructing the inference sessionUnknown error during EndProfiling()Failed to load model because protobuf parsing failed.This session has already been initialized.Not satisfied: fbs::VerifyInferenceSessionBuffer(verifier) InferenceSession is null. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_session Serialized version info is null. Invalid ORT format model.Satisfied, but should not be: fbs_ort_model_version == nullptr The ORT format model version [] is not supported this build Not satisfied: IsOrtModelVersionSupported(fbs_ort_model_version->str()) Missing Model. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_model SessionState is null. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_sess_state Session has already been initialized.Adding default CPU execution provider.Serializing optimized model with Graph Optimization level greater than ORT_ENABLE_EXTENDED. The generated model may contain hardware and execution provider specific optimizations, and should only be used in the same environment the model was optimized for.Session successfully initialized.Exception during initialization: Encountered unknown exception in Initialize()virtual void onnxruntime::InferenceSession::AddPredefinedTransformers(onnxruntime::GraphTransformerManager&, onnxruntime::TransformerLevel, const std::vector >&)void onnxruntime::InferenceSession::InitLogger(onnxruntime::logging::LoggingManager*)const onnxruntime::logging::Logger& onnxruntime::InferenceSession::CreateLoggerForRun(const RunOptions&, std::unique_ptr&)EndProfilingNewIOBindingGetModelOutputsGetOverridableInitializersGetModelInputsGetModelMetadataonnxruntime::FeedsFetchesInfo::FeedsFetchesInfo(const std::vector >&, const std::vector >&, const onnxruntime::OrtValueNameIdxMap&)FeedsFetchesInfoRunconst T& OrtValue::Get() const [with T = onnxruntime::TensorSeq]const T& OrtValue::Get() const [with T = onnxruntime::SparseTensor]ValidateInputsoperator()operator()InitializeLoadOrtModelLoadOrtModelBytesoperator()TransformGraphLoadSaveToOrtFormatAddCustomOpDomainsAddRegisterExecutionProvideroperator()~InferenceSessiononnxruntime::InferenceSession::InferenceSession(const onnxruntime::SessionOptions&, const onnxruntime::Environment&, const void*, int)onnxruntime::InferenceSession::InferenceSession(const onnxruntime::SessionOptions&, const onnxruntime::Environment&, const string&)static const onnxruntime::logging::Logger& onnxruntime::logging::LoggingManager::DefaultLogger()onnxruntime::common::Status onnxruntime::FinalizeSessionOptions(const onnxruntime::SessionOptions&, const onnx::ModelProto&, bool, onnxruntime::SessionOptions&)FinalizeSessionOptionsConstructorCommonvoid onnxruntime::InferenceSession::ConstructorCommon(const onnxruntime::SessionOptions&, const onnxruntime::Environment&)St14default_deleteIN11onnxruntime5ModelEE*ZN11onnxruntime16InferenceSession4LoadEPKviEUlRSt10shared_ptrINS_5ModelEEE_*ZN11onnxruntime16InferenceSession4LoadEvEUlRSt10shared_ptrINS_5ModelEEE_*ZN11onnxruntime16InferenceSession12LoadOrtModelERKSsEUlvE_*ZN11onnxruntime16InferenceSession12LoadOrtModelEPKviEUlvE_N11onnxruntime16GraphTransformerEN11onnxruntime16InferenceSessionEN8nlohmann6detail9exceptionEN8nlohmann6detail11other_errorEZN11onnxruntime20CPUExecutionProviderC1ERKNS_24CPUExecutionProviderInfoEEUliE_ZN11onnxruntime16InferenceSession4LoadIcEENS_6common6StatusERKSbIT_St11char_traitsIS4_ESaIS4_EEEUlRSt10shared_ptrINS_5ModelEEE_St19_Sp_counted_deleterIPN11onnxruntime5ModelESt14default_deleteIS1_ESaIvELN9__gnu_cxx12_Lock_policyE2EESt23_Sp_counted_ptr_inplaceISt13unordered_mapISsN11onnxruntime11FuncManager8FuncInfoESt4hashISsESt8equal_toISsESaISt4pairIKSsS3_EEESaISC_ELN9__gnu_cxx12_Lock_policyE2EE__C%lu at line , column parse_errorparse errorinvalid_iteratortype_errorout_of_rangeobjectbooleandiscardednumbercannot use at() with key '' not foundmap::attrue literalfalse literalnull literalstring literalnumber literal'[''{'']''}'':'','unknown tokenend of input'[', '{', or a literalsyntax error while parsing - ; last read: 'unexpected ; expected cannot get valuetype must be number, but is Sequential modeParallel modefalsetruesession_optionsintra_op_num_threadsinter_op_num_threadsexecution_modeSetting execution_mode to graph_optimization_levelenable_profilingSetting enable_profiling to vector::_M_emplace_back_auxvector::_M_insert_auxiterator out of rangecannot use erase() with invalid literalobject keyobject separatornumber overflow parsing 'ort_configParsing RunOptions from ModelProto is not supported yet961c151d2e87f2686a955a9be24d316f1362bf21 3.7.1The Model Proto hasn't been checked for the ORT config json.Did not find session options in the model file to be used while running the modelcannot compare iterators of different containersintra_op_num_threads option in the model file must be an integerUnsupported value for intra_op_num_threads: Setting intra_op_num_threads to /onnxruntime_src/onnxruntime/core/session/inference_session_utils.ccinter_op_num_threads option in the model file must be an integerUnsupported value for inter_op_num_threads: Setting inter_op_num_threads to execution_mode option in the model file must be an integerUnsupported execution_mode value in ORT config: graph_optimization_level option in the model file must be an integerSetting graph_optimization_level to ORT_DISABLE_ALLSetting graph_optimization_level to ORT_ENABLE_BASICSetting graph_optimization_level to ORT_ENABLE_EXTENDEDSetting graph_optimization_level to ORT_ENABLE_ALLUnsupported graph_optimization_level value in ORT config: enable_profiling option in the model file must be an integerUnsupported value for enable_profiling option: Ignoring unsupported session option in ORT config: invalid string: ill-formed UTF-8 byteinvalid string: control character U+000A (LF) must be escaped to \u000A or \ninvalid string: missing closing quoteinvalid string: '\u' must be followed by 4 hex digitsinvalid string: surrogate U+DC00..U+DFFF must be followed by U+DC00..U+DFFFinvalid string: surrogate U+DC00..U+DFFF must follow U+D800..U+DBFFinvalid string: forbidden character after backslashinvalid string: control character U+0000 (NUL) must be escaped to \u0000invalid string: control character U+0001 (SOH) must be escaped to \u0001invalid string: control character U+0002 (STX) must be escaped to \u0002invalid string: control character U+0003 (ETX) must be escaped to \u0003invalid string: control character U+0004 (EOT) must be escaped to \u0004invalid string: control character U+0005 (ENQ) must be escaped to \u0005invalid string: control character U+0006 (ACK) must be escaped to \u0006invalid string: control character U+0007 (BEL) must be escaped to \u0007invalid string: control character U+0008 (BS) must be escaped to \u0008 or \binvalid string: control character U+0009 (HT) must be escaped to \u0009 or \tinvalid string: control character U+000B (VT) must be escaped to \u000Binvalid string: control character U+000C (FF) must be escaped to \u000C or \finvalid string: control character U+000D (CR) must be escaped to \u000D or \rinvalid string: control character U+000E (SO) must be escaped to \u000Einvalid string: control character U+000F (SI) must be escaped to \u000Finvalid string: control character U+0010 (DLE) must be escaped to \u0010invalid string: control character U+0011 (DC1) must be escaped to \u0011invalid string: control character U+0012 (DC2) must be escaped to \u0012invalid string: control character U+0013 (DC3) must be escaped to \u0013invalid string: control character U+0014 (DC4) must be escaped to \u0014invalid string: control character U+0015 (NAK) must be escaped to \u0015invalid string: control character U+0016 (SYN) must be escaped to \u0016invalid string: control character U+0017 (ETB) must be escaped to \u0017invalid string: control character U+0018 (CAN) must be escaped to \u0018invalid string: control character U+0019 (EM) must be escaped to \u0019invalid string: control character U+001A (SUB) must be escaped to \u001Ainvalid string: control character U+001B (ESC) must be escaped to \u001Binvalid string: control character U+001C (FS) must be escaped to \u001Cinvalid string: control character U+001D (GS) must be escaped to \u001Dinvalid string: control character U+001E (RS) must be escaped to \u001Einvalid string: control character U+001F (US) must be escaped to \u001Fiterator does not fit current valueinvalid number; expected digit after '-'invalid number; expected digit after '.'invalid number; expected '+', '-', or digit after exponentinvalid number; expected digit after exponent signinvalid BOM; must be 0xEF 0xBB 0xBF if givenThe Model Proto has already been checked for the ORT config json.Found session/run/environment configuration in the model file to be used while running the modelORT config json from the model: Json stored in the `ort_config` key cannot be parsed. Error message: “XLΓΓΓ$D|td444$ĚT蛔(888HXhxțT잔D|ԠDlT䧔ԧħٔؔהההההٔٔٔpٔӔHٔ0ٔٔٔؔؔؔؔؔpؔXؔ֔֔֔x֔`֔H֔0֔֔֔ՔՔՔٔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔՔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔӔhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהhהXההההההההההההה֔ההHؔ ؔ ؔ ؔ`ٔ֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔֔w֔֔֔֔֔֔e֔֔֔֔S֔֔֔֔֔֔֔֔A֔֔֔֔/֔֔֔Qє۔ڔ۔X۔h۔۔۔۔x۔D:*********** T^  p 0  |, )\/|/-D/./+*d())))$'SetEnableProfilingSetGraphOptimizationLevelSetExecutionModeSetInterOpNumThreadsSetIntraOpNumThreadsParseSessionOptionsFromModelProtooperator()ParseOrtConfigJsonInModelProto N8nlohmann6detail11parse_errorEN8nlohmann6detail16invalid_iteratorEN8nlohmann6detail10type_errorEN8nlohmann6detail12out_of_rangeEN8nlohmann6detail22input_adapter_protocolEN8nlohmann6detail20input_buffer_adapterESt23_Sp_counted_ptr_inplaceIN8nlohmann6detail20input_buffer_adapterESaIS2_ELN9__gnu_cxx12_Lock_policyE2EE/onnxruntime_src/onnxruntime/core/optimizer/graph_transformer.ccApply/onnxruntime_src/onnxruntime/core/optimizer/graph_transformer_mgr.ccThis transformer is already registered ApplyTransformersLevel_RuleBasedTransformerNchwcTransformerMatMulScaleFusionEliminateIdentityEliminateSliceUnsqueezeEliminationEliminateDropoutExpandEliminationCastEliminationFuseReluClipShapeToInitializerConvAddFusionConvMulFusionConvBNFusionUnsupported levelMatMulAddFusionReshapeFusionGemmActivationFusionDynamicQuantizeMatMulFusionACLExecutionProviderConvActivationFusionAttentionFusionEmbedLayerNormFusionBiasGeluFusionSkipLayerNormFusionFastGeluFusionUnsupported level GeluApproximation/onnxruntime_src/onnxruntime/core/optimizer/graph_transformer_utils.ccCommonSubexpressionEliminationstd::vector > onnxruntime::optimizer_utils::GenerateTransformers(onnxruntime::TransformerLevel, gsl::span, const onnxruntime::IExecutionProvider&, const std::vector >&)std::vector > onnxruntime::optimizer_utils::GenerateRewriteRules(onnxruntime::TransformerLevel, const std::vector >&)N11onnxruntime11RewriteRuleEN11onnxruntime17EliminateIdentityE Max:node_index < nodes_.size()Inserted_CastdtypeValidating no unexpected access using an invalid node_index. Got:/onnxruntime_src/include/onnxruntime/core/graph/graph.h/onnxruntime_src/include/onnxruntime/core/optimizer/graph_transformer.h/onnxruntime_src/onnxruntime/core/optimizer/insert_cast_transformer.cccast node to cast from float16 to float32 on cpuInsertCastTransformer works on the assumption that `dtype` attribute holds an integer.dtype_attribute->second.has_i()RemoveDuplicateCastTransformervirtual onnxruntime::common::Status onnxruntime::InsertCastTransformer::ApplyImpl(onnxruntime::Graph&, bool&, int, const onnxruntime::logging::Logger&) constApplyImplRecurseonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constApplyImplN11onnxruntime21InsertCastTransformerEN11onnxruntime30RemoveDuplicateCastTransformerE_Map_base::atsize is differentsize_ == sizeunsupported data type: ai.onnxSqrtPowfused LayerNorm subgraphs epsilon/onnxruntime_src/onnxruntime/core/optimizer/initializer.hReadExternalRawData() failed: /onnxruntime_src/onnxruntime/core/optimizer/layer_norm_fusion.ccY4FF onnxruntime::{anonymous}::GetOutputNodeMerges(onnxruntime::Graph&, onnxruntime::Node&, const std::unordered_set >&)const T& onnxruntime::optional::value() const [with T = std::pair]const T& onnxruntime::optional::value() const [with T = float]Ret onnxruntime::utils::mltype_dispatcher_internal::UnsupportedTypeDefaultPolicy::operator()(int32_t) const [with Ret = onnxruntime::common::Status; int32_t = int]operator()operator()operator()operator()operator()operator()operator()operator()GetScalarConstantInitializeronnxruntime::optional onnxruntime::{anonymous}::GetScalarConstantInitializer(const onnxruntime::Graph&, const onnxruntime::NodeArg&)onnxruntime::optional > onnxruntime::{anonymous}::GetScaleFromNode(const onnxruntime::Graph&, const onnxruntime::Node&, const std::unordered_set >&)std::vector onnxruntime::{anonymous}::GetInputNodeMerges(onnxruntime::Graph&, onnxruntime::Node&, const std::unordered_set >&)Recurseonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constApplyImpl   N11onnxruntime17MatMulScaleFusionE?`hxX|tȢȢȢȢȢȢȢȢȢȢȢ䢖䢖䢖䢖䢖̢䢖䢖ܢ䢖䢖䢖䢖ܢТآ袖Ȣ좖䢖88888 88088880T$TTTT,&)virtual onnxruntime::common::Status onnxruntime::FuseReluClip::Apply(onnxruntime::Graph&, onnxruntime::Node&, onnxruntime::RewriteRule::RewriteRuleEffect&, const onnxruntime::logging::Logger&) const  N11onnxruntime12FuseReluClipESqueezeUnsqueezeGatherReshapeFused reshape node: Cannot replace concat node with initializer:/onnxruntime_src/onnxruntime/core/optimizer/reshape_fusion.ccTotal fused reshape node count: Fuse_SubgraphRecurseonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constApplyImpl              N11onnxruntime13ReshapeFusionE/onnxruntime_src/onnxruntime/core/optimizer/rule_based_graph_transformer.ccRecurseonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constApplyImplApplyRulesOnNodeN11onnxruntime25RuleBasedGraphTransformerE N11onnxruntime18ShapeToInitializerESkipLayerNormalization/onnxruntime_src/onnxruntime/core/optimizer/skip_layer_norm_fusion.ccfused SkipLayerNorm subgraphs Recurseonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constApplyImpl̼+     N11onnxruntime19SkipLayerNormFusionEstartsends?LLLL2%LLLLLLrP]]]]C6]])]]]])  N11onnxruntime14EliminateSliceETensorrtExecutionProviderVitisAIExecutionProviderNGRAPHExecutionProvider' doesn't support memcpy Execution type 'MemcpyCopy from/to host memoryDnnlExecutionProviderNupharExecutionProviderOpenVINOExecutionProviderNnapiExecutionProviderArmNNExecutionProvider/onnxruntime_src/onnxruntime/core/optimizer/transformer_memcpy.ccdup_replacements.find(&arg) == dup_replacements.end()onnxruntime::TransformerMemcpyImpl::ProcessInitializers(const onnxruntime::KernelRegistryManager&, const InitializedTensorSet&)::__lambda9bool onnxruntime::TransformerMemcpyImpl::ProcessInitializers(const onnxruntime::KernelRegistryManager&, const InitializedTensorSet&)ForEachWithIndexvoid onnxruntime::TransformerMemcpyImpl::ProcessDefs(onnxruntime::Node&, const onnxruntime::KernelRegistryManager&, onnxruntime::InitializedTensorSet&)RecurseApplyImpl*ZN11onnxruntime21TransformerMemcpyImpl11ProcessDefsERNS_4NodeERKNS_21KernelRegistryManagerERSt13unordered_mapISsPKN4onnx11TensorProtoESt4hashISsESt8equal_toISsESaISt4pairIKSsSA_EEEEUlRKNS_7NodeArgEmE_*ZN11onnxruntime21TransformerMemcpyImpl19ProcessInitializersERKNS_21KernelRegistryManagerERKSt13unordered_mapISsPKN4onnx11TensorProtoESt4hashISsESt8equal_toISsESaISt4pairIKSsS8_EEEEUlRKNS_7NodeArgEmE_*ZN11onnxruntime21TransformerMemcpyImpl19ProcessInitializersERKNS_21KernelRegistryManagerERKSt13unordered_mapISsPKN4onnx11TensorProtoESt4hashISsESt8equal_toISsESaISt4pairIKSsS8_EEEEUlRKNS_7NodeArgEmE0_N11onnxruntime17MemcpyTransformerEUnsqueezeElimination_UnsqueezeElimination cannot remove node /onnxruntime_src/onnxruntime/core/optimizer/unsqueeze_elimination.ccApplyN11onnxruntime20UnsqueezeEliminationExxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxvector::_M_range_insertRandomUniformRandomNormalRandomUniformLikeRandomNormalLikeMultinomial3&333333슘׊3333슘u`uuuuK;uu&uuuu&r'7w+2NhhhhX`hhIShhhhIJddddT\ddEOddddEStart ValidateGemmInitializerPass ValidateGemmInitializerExpected value:WhereExpandFailed to find mask pathwhere const not matched.Failed to find shape pathequal const not matched.gather indices not matched.Start CheckNodesInPathQq_reshape const not matchedqk_div const not matched.Pass CheckNodesInPathQStart CheckNodesInPathKk_reshape const not matchedPass CheckNodesInPathKStart MatchInputMaskSubgraphFailed to find Softmax nodeFailed to find path for maskPass MatchInputMaskSubgraphStart CheckNodesInPathVPass CheckNodesInPathVStart MatchGemmSubgraphFaild to match gemm pathGemm does not have 3 inputsGemm bias is not constantGemm bias shape not expectedPass MatchGemmSubgraphStart MatchUnidirMaskSubgraphPass MatchUnidirMaskSubgraphStart MatchPastSubgraphFailed to match v_concatpast_v_gather indices != 1past_k_gather indices != 0Pass MatchPastSubgraphMask_Int32Cast mask from int64 to int32MaskCastStart FuseGptAttentionFaild to find path v to SplitFailed to find path for qFailed to find path for kFused Attention subgraphs num_headsunidirectionalqkv_weightsqkv_biask root is not layer normFaild to find path vFused an attention node.Gemm bias is not constant initializerGemm bias shape is not expectedGemm weight is not constant initializerGemm weight shape is not expected/onnxruntime_src/onnxruntime/core/optimizer/attention_fusion_helper.hinput_indices.size() == expected_values.size() && input_indices.size() > 0Slice does not have enough number of inputsSlice ends is less than INT_MAXSlice parameter is not expected. Input index:Start MatchInputMaskSubgraphDistilBertOutput edge count not expected for mask nodesSoftmax attribute axis is expected to be 3Failed to find reshape shape path 1Failed to find reshape shape path 2Pass MatchInputMaskSubgraphDistilBertq_transpose perm attribute not matchedOutput edge count not expected for Softmaxmask_unsqueeze_1 axes not matched. Expect: 1mask_unsqueeze_2 axes not matched. Expect: 2mask_sub const input not matchedmask_mul const input not matchedOutput edge count not expected for nodes in path vFailed in match Transpose attribute perm. Expected: 0, 2, 1, 3Failed in match v_transpose attribute perm. Expected: 0, 2, 1, 3hidden_size != num_heads * head_sizev_reshape initializer value is not expectedreshape initializer value is not expectedInput of reshape_before_gemm is not the input of subgraphOutput edge count not expected for nodes in gemm pathCheckSliceParameters return falseconcat first input value is not -1Faild to match concat node for Gather pathsconcat_after_gather does not have expected number of inputs or output edgesconcat_after_gather input 2 does not have expected valueFaild to match gemm gather pathOutput edge count not expected for nodes in gemm gather pathunsqueeze_after_gather axes value not expectedgather axis value not expectedgather input 1 value is not expectedFaild to match the path (Div-->Where-->Add) for unidirectional maskFaild to match path 1 for unidirectional maskOutput edge count not expected for nodes in path 1 of unidirectional maskDiv and Shape1 does not have edgeCheckSliceParameters returns false for last_sliceCheckSliceParameters returns false for mask_sliceCheckSliceParameters returns false for slice1Faild to match path 2 for unidirectional maskOutput edge count not expected for unsqueeze2 of unidirectional maskFaild to match path 3 for unidirectional maskOutput edge count not expected for unsqueeze3 of unidirectional maskFaild to match path 4 for unidirectional maskDiv and Shape does not have edgeOutput edge count not expected for squeeze_2/slices2/shape2 of unidirectional maskCheckSliceParameters return false for slice2Failed to find path for past_kFailed to find path for present_kFailed to find path for present_v and past_vpast_k_transpose perm attribute not matchedpresent_k_transpose perm attribute not matchedpresent_k_unsqueeze axes value not expectedpresent_v_unsqueeze axes value not expectedpast_v_gather and past_k_gather does not have same past inputOutput edge count not expected for nodes in past subgraphFaild to find path to qkv_matmulCheckNodesInPathV return falseMatchInputMaskSubgraph returns falseMatchUnidirMaskSubgraph returns NULLq and v are not from same Split nodeCheckNodesInPathQ returns falsek and v are not from same Split nodeCheckNodesInPathK returns falseMatchPastSubgraph returns falseFused an attention node for GPT.q root should be layer normalizationq_matmul and q_add shape not matchedk_matmul and k_add shape not matchedFailed to load Q, K and V weights, or data type is not float or float16.Failed to load Q, K and V bias tensors, or data type is not float or float16.Mask shape is unknown or not 2D, or data type unknownMask data type is not int32 or int64 or float32Failed to convert mask to int32/onnxruntime_src/onnxruntime/core/optimizer/attention_fusion.ccOutput edge count not expected for Add or MatMul in path vFailed in match v_matmul and v_add input shapeFailed in match input mask subgraphshape of layer norm bias tensor not expectedTotal fused Attention node count: FuseSubGraphQKDistilBertConvertMaskToInt32FuseSubGraphQKImplFuseSubGraphQKFuseSubGraphRecurseApplyImplFuseGptAttentionCheckNodesInPathKCheckNodesInPathQCheckNodesInPathVCheckDistilBertReshapeShapeonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constMatchPastSubgraphMatchInputMaskSubgraphMatchInputMaskSubgraphMatchUnidirMaskSubgraphValidateGemmInitializerMatchGemmSubgraphCheckSliceParametersbool onnxruntime::AttentionFusionHelper::CheckSliceParameters(const onnxruntime::Graph&, const onnxruntime::Node&, const std::vector&, const std::vector&, const onnxruntime::logging::Logger&)                                                                                      N11onnxruntime15AttentionFusionE@FastGeluBiasGelufused Add and Gelu/onnxruntime_src/onnxruntime/core/optimizer/bias_gelu_fusion.ccRecurseonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constApplyImpl N11onnxruntime14BiasGeluFusionEN11onnxruntime15CastEliminationE~ǙǙș\Ǚ~Ǚ~ǙƙLƙǙNot eliminating output of node /onnxruntime_src/onnxruntime/core/optimizer/common_subexpression_elimination.ccrepresentative.output_index != kInvalidOutputIndex] because it's the graph's output.6˙̙̙̙6˙6˙@̙˙̙onnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constRecursevirtual onnxruntime::common::Status onnxruntime::CommonSubexpressionElimination::ApplyImpl(onnxruntime::Graph&, bool&, int, const onnxruntime::logging::Logger&) constApplyImplN11onnxruntime30CommonSubexpressionEliminationEConstantFoldingcan't constant fold Unsupported output type of . Can't constant fold /onnxruntime_src/onnxruntime/core/optimizer/constant_folding.ccCould not find OrtValue with name 'Could not find a CPU kernel and hence fetches.size() == node->OutputDefs().size()const T& OrtValue::Get() const [with T = onnxruntime::Tensor]Recurseonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constvirtual onnxruntime::common::Status onnxruntime::ConstantFolding::ApplyImpl(onnxruntime::Graph&, bool&, int, const onnxruntime::logging::Logger&) constApplyImplN11onnxruntime15OpKernelContextEN11onnxruntime15ConstantFoldingEfused Conv with activation fused activation_params/onnxruntime_src/onnxruntime/core/optimizer/conv_activation_fusion.ccUnexpected data type for Clip input of Y~YYYYYYMYYNNYYYYNWWWWWWYYWWxYkYWWWWxYXXXXXXXXXX5X XXXXX5XbXUXbXbXbXbX@X0XbXbXXXbXbXbXbXXonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constonnxruntime::{anonymous}::GetClipConstantMinMax(const onnxruntime::Graph&, const onnxruntime::Node&, float&, float&)::__lambda7RecurseApplyImpl     N11onnxruntime20ConvActivationFusionEconv_W_tensor_protoadd_B_tensor_protoconv_B_tensor_protoConvAddFusion_B_ConvAddFusion_Add_B_/onnxruntime_src/onnxruntime/core/optimizer/conv_add_fusion.ccc cccccb>bccaPaccccajijjjj$kkjjlljjjjjmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnToProtoonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constvirtual onnxruntime::common::Status onnxruntime::ConvAddFusion::Apply(onnxruntime::Graph&, onnxruntime::Node&, onnxruntime::RewriteRule::RewriteRuleEffect&, const onnxruntime::logging::Logger&) const  N11onnxruntime13ConvAddFusionEX~(~X~X~X~X~0~@~X~X~P~ ~X~X~X~X~P~t~D~t~t~t~t~L~\~t~t~l~<~t~t~t~t~l~~`~~~~~h~x~~~~X~~~~~~~|~~~~~~~~~~t~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~88888 88088880T$TTTT,<TTLTTTTLbn_scale_tensor_protobn_B_tensor_protobn_mean_tensor_protobn_var_tensor_protoConvBnFusion_W_ConvBnFusion_BN_B_/onnxruntime_src/onnxruntime/core/optimizer/conv_bn_fusion.cc & Ȏ F c]onnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constvirtual onnxruntime::common::Status onnxruntime::ConvBNFusion::Apply(onnxruntime::Graph&, onnxruntime::Node&, onnxruntime::RewriteRule::RewriteRuleEffect&, const onnxruntime::logging::Logger&) const  N11onnxruntime12ConvBNFusionEȪЪચ䪚쪚 ܪ 0000000(0000(LLLLL$4LLDLLLLDh8hhhh@Phh`0hhhh`T\l|L|pxhثثثثثثثЫثثثثЫī̫ܫ쫚쫚mul_B_tensor_protoConvMulFusion_W_ConvMulFusion_Mul_B_/onnxruntime_src/onnxruntime/core/optimizer/conv_mul_fusion.cc[AӮTSĚTTTTUښTT?TTTT˿̚]˚̚̚̚̚ʚ ʚ̚̚hɚȚ̚̚̚̚hɚToProtoonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constvirtual onnxruntime::common::Status onnxruntime::ConvMulFusion::Apply(onnxruntime::Graph&, onnxruntime::Node&, onnxruntime::RewriteRule::RewriteRuleEffect&, const onnxruntime::logging::Logger&) const  N11onnxruntime13ConvMulFusionE N11onnxruntime16EliminateDropoutEMatMulIntegerDynamicQuantizeLinearDynamicQuantizeMatMulMatMulIntegerToFloatnullptr != fused_node/onnxruntime_src/onnxruntime/core/optimizer/dynamic_quantize_matmul_fusion.cconnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constRecursevirtual onnxruntime::common::Status onnxruntime::DynamicQuantizeMatMulFusion::ApplyImpl(onnxruntime::Graph&, bool&, int, const onnxruntime::logging::Logger&) constApplyImpl    N11onnxruntime27DynamicQuantizeMatMulFusionEInput shape is unknown or not 2D, or data type unknownInput data type is not int32 or int64/onnxruntime_src/onnxruntime/core/optimizer/embed_layer_norm_fusion.ccFailed to find path 1 of position shape.Output edge count not expected for nodes in path 1 of position shape.Second input of Gather in path 1 of position shape should be a constant with value 0.Failed to find path 2 of position shape.Output edge count not expected for nodes in path 2 of position shape.Gather node in path 2 is not linked to another subgraph.Second input of Gather in path 2 of position shape should be a constant with value 1.The parent of two shape nodes are expected to be input_ids.two paths share the same shapeOutput edge count not expected for nodes in path1.The first input of Range should be a constant with value 0.The third input of Range should be a constant with value 1.Second input of Gather should be a constant with value 1. The parent of shape nodes are expected to be input_ids.Optional position subgraph nodes number of outputs unexpected.Optional position subgraph nodes Where node is expected to be the parent of Reshape.Failed to match position subgraph.Cast Input from int64 to int32fused EmbedLayerNorm subgraphs Word embedding shape not expected.Failed to match position embedding subgraph.Failed to get position embedding weights.Position embedding shape is not expected.Gamma should be of shape (hidden_size). Beta should be of shape (hidden_size). Input is expected to have dim value in all dimensions.Failed to get initializer tensor.Position embedding shape not matched.Position embedding data type shall be float or float16.Input_ids and segment id should have the same shape. NonZeroConstantOfShapeFailed to match Shape node. mask_indexEmbedLayerNormalizationInput id is not valid. position_embeddingsSegment id is not valid. SSSSSSRRSSRRSSSSRRRRRRRRyRRRlR_RRRRRlRFuseSubGraphCheckInputMatchInputToConcatSubgraphMatchPositionEmbeddingSubgraphsFromGatherFuseSubGraphDistilBertRecurseApplyImpl̼+                                     N11onnxruntime20EmbedLayerNormFusionEN11onnxruntime17ExpandEliminationEfast_gelu_outputfused GPT2Gelu subgraphs GPT2Gelu/onnxruntime_src/onnxruntime/core/optimizer/fast_gelu_fusion.ccRecurseApplyImplonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) const             N11onnxruntime14FastGeluFusionE@@'7=*BL??FreeDimensionOverrideTransformerInvalid free dimension override./onnxruntime_src/onnxruntime/core/optimizer/free_dim_override_transformer.ccwhich does not equal the specified override of Conflicting free dimension overrides.The model has input '' with a fixed dimension size ApplyImplonnxruntime::FreeDimensionOverrideTransformer::FreeDimensionOverrideTransformer(gsl::span)N11onnxruntime32FreeDimensionOverrideTransformerEGelu approximation/onnxruntime_src/onnxruntime/core/optimizer/gelu_approximation.ccTotal Gelu Approximation (FastGelu) node count: Recurseonnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constApplyImpl N11onnxruntime17GeluApproximationEErffused Gelu subgraphs /onnxruntime_src/onnxruntime/core/optimizer/gelu_fusion.cconnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constRecurseApplyImpl     N11onnxruntime10GeluFusionE??EluHardSigmoidSeluSoftsignScaledTanhParametricSoftplusThresholdedRelufused Gemm FusedGemmactivation_/onnxruntime_src/onnxruntime/core/optimizer/gemm_activation_fusion.cconnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constRecurseApplyImpl     N11onnxruntime20GemmActivationFusionENot satisfied: tensor_proto.data_type() != ONNX_NAMESPACE::TensorProto_DataType_UNDEFINED && tensor_proto.data_type() != ONNX_NAMESPACE::TensorProto_DataType_STRING model_path must not be empty. Ensure that a path is provided when the model is created or loaded./onnxruntime_src/onnxruntime/core/optimizer/initializer.ccSatisfied, but should not be: model_path.IsEmpty() TensorProto external data size mismatch. Not satisfied: external_data_length == 0 || external_data_length == actual_tensor_data_length External data type must not be UNDEFINED or STRING.Computed size: , external_data.length: ReadExternalRawData/onnxruntime_src/onnxruntime/core/optimizer/optimizer_execution_frame.ccTried to allocate without valid type information, ort_value index=Failed to get allocator for optimizerallocator_ptr_void onnxruntime::TensorSeq::SetType(onnxruntime::MLDataType)ForEachWithIndexoperator()Infoonnxruntime::OptimizerExecutionFrame::Info::Info(const std::vector&, const InitializedTensorSet&, const onnxruntime::Path&, const onnxruntime::IExecutionProvider&)*ZN11onnxruntime23OptimizerExecutionFrame4InfoC1ERKSt6vectorIPKNS_4NodeESaIS5_EERKSt13unordered_mapISsPKN4onnx11TensorProtoESt4hashISsESt8equal_toISsESaISt4pairIKSsSE_EEERKNS_4PathERKNS_18IExecutionProviderEEUlRKNS_7NodeArgEmE_N11onnxruntime23OptimizerExecutionFrameE/onnxruntime_src/onnxruntime/core/providers/cpu/cpu_execution_provider.ccRegisterCPUKernelsvirtual std::shared_ptr onnxruntime::CPUExecutionProvider::GetKernelRegistry() constGetKernelRegistryRegisterOnnxMLOperatorKernelsRegisterOnnxOperatorKernelsN11onnxruntime20CPUExecutionProviderEN11onnxruntime25IExecutionProviderFactoryEN11onnxruntime18CpuProviderFactoryESt23_Sp_counted_ptr_inplaceIN11onnxruntime18CpuProviderFactoryESaIS1_ELN9__gnu_cxx12_Lock_policyE2EEutils::HasDataType(t_proto)unpack_status.IsOK()T1T2Missing Input: Must have a single dimensiont_proto.dims_size() == 1t_proto.dims()[0] == 1Unsupported value attribute datatype with sizeof=: /onnxruntime_src/onnxruntime/core/providers/cpu/generator/constant_of_shape.h/onnxruntime_src/onnxruntime/core/providers/cpu/generator/constant_of_shape.ccTensorProto::DataType_IsValid(t_proto.data_type())Value attribute unpacking failed:Unsupported value attribute datatype: /onnxruntime_src/include/onnxruntime/core/framework/op_kernel.hMust have a valid input shape.input_shape.NumDimensions() > 0Must have a single dimension of 1|Ŝ̜̜<̜˜˜d˜˜|Ŝʜʜ<ʜɜ|ɜvirtual onnxruntime::common::Status onnxruntime::ConstantOfShape::Compute(onnxruntime::OpKernelContext*) constComputeconst T* onnxruntime::Tensor::Data() const [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::ConstantOfShapeBase::PrepareCompute(onnxruntime::OpKernelContext*, onnxruntime::Tensor**) constonnxruntime::ConstantOfShapeBase::ConstantOfShapeBase(const onnxruntime::OpKernelInfo&)void onnxruntime::ConstantOfShapeBase::SetValue(size_t, void*)void onnxruntime::ConstantOfShapeBase::SetValueFromTensorProto(const onnx::TensorProto&)FPN11onnxruntime8OpKernelERKNS_12OpKernelInfoEEN11onnxruntime19ConstantOfShapeBaseEN11onnxruntime15ConstantOfShapeEPFPN11onnxruntime8OpKernelERKNS_12OpKernelInfoEEseedInvalid dtype of highsample_sizeFLOAT16 is not supportedInvalid data type of input count mismatchbatch_size is < 1num_classes is < 1num_samples is < 1/onnxruntime_src/onnxruntime/core/providers/cpu/generator/random.hinfo.GetAttr("mean", &mean_).IsOK()info.GetAttr("scale", &scale_).IsOK()info.GetAttr("dtype", &dtype).IsOK()ONNX_NAMESPACE::TensorProto::DataType_IsValid(dtype_) && dtype_ != ONNX_NAMESPACE::TensorProto::UNDEFINEDinfo.GetAttrs("shape", shape).IsOK()info.GetAttr("high", &high_).IsOK()info.GetAttr("low", &low_).IsOK()info.GetAttr("sample_size", &num_samples_).IsOK()ONNX_NAMESPACE::TensorProto::DataType_IsValid(output_dtype_) && output_dtype_ != ONNX_NAMESPACE::TensorProto::UNDEFINED/onnxruntime_src/onnxruntime/core/providers/cpu/generator/random.ccCould not infer data type from input tensor with data type Empty dimensions for input tensorT* onnxruntime::Tensor::MutableData() [with T = long int]MultinomialComputeT* onnxruntime::Tensor::MutableData() [with T = int]MultinomialComputeconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::RandomUniformCompute(float, float, std::default_random_engine&, onnx::TensorProto::DataType, onnxruntime::Tensor&)onnxruntime::common::Status onnxruntime::RandomNormalCompute(float, float, std::default_random_engine&, onnx::TensorProto::DataType, onnxruntime::Tensor&)onnxruntime::Multinomial::Multinomial(const onnxruntime::OpKernelInfo&)onnxruntime::RandomUniformLike::RandomUniformLike(const onnxruntime::OpKernelInfo&)onnxruntime::RandomNormalLike::RandomNormalLike(const onnxruntime::OpKernelInfo&)onnxruntime::RandomUniform::RandomUniform(const onnxruntime::OpKernelInfo&)onnxruntime::RandomNormal::RandomNormal(const onnxruntime::OpKernelInfo&)N11onnxruntime12RandomNormalEN11onnxruntime16RandomNormalLikeEN11onnxruntime13RandomUniformEN11onnxruntime17RandomUniformLikeEN11onnxruntime11MultinomialE0AC?"~+@"~+@W6}+W6}++eG?+eG?????@.?@.?ʫy>ʫy>K͉ ?K͉ ?~, ?~, ?_6.>_6.>9d?9d?t ?t ?@@delta in Range operator can not be zero!start in Range operator should be scalar like tensor, yet got shape:limit in Range operator should be scalar like tensor, yet got shape:delta in Range operator should be scalar like tensor, yet got shape:T* onnxruntime::Tensor::MutableData() [with T = short int]const T* onnxruntime::Tensor::Data() const [with T = short int]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = int]const T* onnxruntime::Tensor::Data() const [with T = int]N11onnxruntime5RangeEmin_ <= max_min should be a scalar.max should be a scalar.helper.called_ < 2helper.called_ == 1/onnxruntime_src/onnxruntime/core/providers/cpu/math/clip.h/onnxruntime_src/onnxruntime/core/providers/cpu/math/clip.ccmin->Shape().NumDimensions() == 0max->Shape().NumDimensions() == 0Check for duplicate types in MLTypeCallDispatcherT* onnxruntime::Tensor::MutableData() [with T = long unsigned int]const T* onnxruntime::Tensor::Data() const [with T = long unsigned int]void onnxruntime::Clip::ComputeImpl::operator()(const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, onnxruntime::Tensor*) const [with T = long unsigned int]T* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = long int]void onnxruntime::Clip::ComputeImpl::operator()(const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, onnxruntime::Tensor*) const [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]void onnxruntime::Clip::ComputeImpl::operator()(const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, onnxruntime::Tensor*) const [with T = unsigned char]T* onnxruntime::Tensor::MutableData() [with T = signed char]const T* onnxruntime::Tensor::Data() const [with T = signed char]void onnxruntime::Clip::ComputeImpl::operator()(const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, onnxruntime::Tensor*) const [with T = signed char]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]void onnxruntime::Clip::ComputeImpl::operator()(const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, onnxruntime::Tensor*) const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]void onnxruntime::Clip::ComputeImpl::operator()(const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, onnxruntime::Tensor*) const [with T = float]void onnxruntime::utils::MLTypeCallDispatcher::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor*&, const onnxruntime::Tensor*&, const onnxruntime::Tensor*&, onnxruntime::Tensor*&}; Fn = onnxruntime::Clip::ComputeImpl; Types = {float, double, signed char, unsigned char, long int, long unsigned int}]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::clip_internal::Clip_6Base::Clip_6Base(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime13clip_internal10Clip_6BaseIfEEN11onnxruntime4ClipEN11onnxruntime6Clip_6IfEEexclusivereverseCumSumaxis is not in valid range [-starts.size()=dims.size()=dims.size() == starts.size()extents.size()=steps.size()=dims.size() == steps.size()/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/utils.hdims.size() == extents.size() && dims.size() >= steps.size()dims.size() == starts.size() && dims.size() == extents_.size() && dims.size() >= steps.size()Axis tensor must be provided to the CumSum opAxis tensor should be 0D or 1DAxis tensor should be of type `int32_t` or `int64_t`/onnxruntime_src/onnxruntime/core/providers/common.haxis >= -tensor_rank && axis <= tensor_rank - 1dims.size() == extents_.size()Cannot apply CumSum operator on a scalar/onnxruntime_src/onnxruntime/core/providers/cpu/math/cumsum.ccvoid onnxruntime::WritableSliceIterator::Init(const std::vector&, gsl::span, gsl::span) [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]onnxruntime::common::Status onnxruntime::CumSum::Compute(onnxruntime::OpKernelContext*) const [with T = float]Computevoid onnxruntime::WritableSliceIterator::Init(const std::vector&, gsl::span, gsl::span) [with T = double]T* onnxruntime::Tensor::MutableData() [with T = double]onnxruntime::common::Status onnxruntime::CumSum::Compute(onnxruntime::OpKernelContext*) const [with T = double]Computevoid onnxruntime::WritableSliceIterator::Init(const std::vector&, gsl::span, gsl::span) [with T = int]T* onnxruntime::Tensor::MutableData() [with T = int]onnxruntime::common::Status onnxruntime::CumSum::Compute(onnxruntime::OpKernelContext*) const [with T = int]Computevoid onnxruntime::SliceIteratorBase::Init(const std::vector&, gsl::span, gsl::span)void onnxruntime::WritableSliceIterator::Init(const std::vector&, gsl::span, gsl::span) [with T = long int]onnxruntime::SliceSkips::SliceSkips(const onnxruntime::TensorShape&, gsl::span, gsl::span)T* onnxruntime::Tensor::MutableData() [with T = long int]onnxruntime::common::Status onnxruntime::CumSum::Compute(onnxruntime::OpKernelContext*) const [with T = long int]Computeint64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)N11onnxruntime6CumSumIfEEN11onnxruntime6CumSumIdEEN11onnxruntime6CumSumIiEEN11onnxruntime6CumSumIlEEu4udu4uv4udu4u4u4u4udu4u4u4u4u4v4u4u4u4u4u4u4uTvDv4uu4u4u4uu4u4uu4u4u4uu4u4u4u4u4u4u4u4utudvtuu$v$u4uvtuu$uuuuutvvvuvvv4u4u4u4u4u4u4u4u4u4u4u4u4u4u4u4u4udu4u4u4u4u4uuduu4u4u4u4u4u4u4u4u4u4u4u4u4u4u4uutuu$uuuu$u$utuu$uuu$uuuuu4u4uvDetX != nullptr/onnxruntime_src/onnxruntime/core/providers/cpu/math/det.ccInput tensor should have a rank of at least 2Matrix dimensions are not equal. Square matrix is expectedconst T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::Det::Compute(onnxruntime::OpKernelContext*) const [with T = float]N11onnxruntime3DetIfEEj@/onnxruntime_src/onnxruntime/core/providers/cpu/math/einsum.ccEinsum op: An implementation for the input type Einsum op: There must be atleast one inputThere was a problem acquiring temporary memory allocator in Einsum op/onnxruntime_src/onnxruntime/core/providers/cpu/math/einsum.hinfo.GetAttr("equation", &equation_).IsOK() is not supported yetEinsumequationMissing 'equation' attribute->DeviceComputeconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::Einsum::Einsum(const onnxruntime::OpKernelInfo&)FN11onnxruntime6common6StatusEPKiS3_PimmmmmmmPNS_11concurrency10ThreadPoolEPvEFN11onnxruntime6common6StatusEPKdS3_PdmmmmmmmPNS_11concurrency10ThreadPoolEPvEFN11onnxruntime6common6StatusEPKlS3_PlmmmmmmmPNS_11concurrency10ThreadPoolEPvEFSt10unique_ptrIN11onnxruntime6TensorESt14default_deleteIS1_EERKS1_llSt10shared_ptrINS0_10IAllocatorEEEFN11onnxruntime6common6StatusERKSt6vectorImSaImEERKNS_6TensorERS7_PKNS_11TensorShapeEPvEFN11onnxruntime6common6StatusEPKfS3_PfmmmmmmmPNS_11concurrency10ThreadPoolEPvEFN11onnxruntime6TensorERKS0_RKSt6vectorIlSaIlEEbSt10shared_ptrINS_10IAllocatorEEPKNS_11TensorShapeEPNS_11concurrency10ThreadPoolEPvEFN11onnxruntime6common6StatusERKNS_6TensorERS2_EN11onnxruntime6EinsumEPFSt10unique_ptrIN11onnxruntime6TensorESt14default_deleteIS1_EERKS1_llSt10shared_ptrINS0_10IAllocatorEEEPFN11onnxruntime6common6StatusERKSt6vectorImSaImEERKNS_6TensorERS7_PKNS_11TensorShapeEPvEPFN11onnxruntime6common6StatusEPKfS3_PfmmmmmmmPNS_11concurrency10ThreadPoolEPvEPFN11onnxruntime6TensorERKS0_RKSt6vectorIlSaIlEEbSt10shared_ptrINS_10IAllocatorEEPKNS_11TensorShapeEPNS_11concurrency10ThreadPoolEPvEPFN11onnxruntime6common6StatusERKNS_6TensorERS2_EPFN11onnxruntime6common6StatusEPKiS3_PimmmmmmmPNS_11concurrency10ThreadPoolEPvEPFN11onnxruntime6common6StatusEPKdS3_PdmmmmmmmPNS_11concurrency10ThreadPoolEPvEPFN11onnxruntime6common6StatusEPKlS3_PlmmmmmmmPNS_11concurrency10ThreadPoolEPvEEinsum op: Transpose failed: %ldTensor size () != new size ( for input shape and Einsum op: The candidate output does not match the actual output's shape/onnxruntime_src/onnxruntime/core/providers/cpu/math/einsum_utils/einsum_auxiliary_ops.ccoutput.SizeInBytes() == input.SizeInBytes()The rank of the input must match permutation size for Transposeinput_rank == permutation.size()Length of permutation must match the rank of the input to be permutatedThe innermost dims should have the same dim value to parse the diagonal elementsinput_dims[rank - 2] == input_dims[rank - 1]Einsum op: Unsupported data type for Diagonal rank >= 2 && dim_1 != dim_2 && input_dims[dim_1] == input_dims[dim_2]shape_.Size() == new_shape.Size()Cannot parse the diagonal elements along dims Data types of the inputs must match for MatMulinput_1.DataType() == input_2.DataType()input_shape_1_override.size() == 3 && input_shape_2_override.size() == 3Batch dimension should match for MatMul;input_shape_1_override[0] == input_shape_2_override[0]Incompatible matrix dimensions for matMulinput_shape_1_override[2] == input_shape_2_override[1]Einsum op: Exception during MatMul operation: Only 1 batch dimension is allowed for MatMulT* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = long int]std::unique_ptr onnxruntime::EinsumOp::MatMul(const onnxruntime::Tensor&, const std::vector&, const onnxruntime::Tensor&, const std::vector&, onnxruntime::AllocatorPtr, onnxruntime::concurrency::ThreadPool*, void*, onnxruntime::EinsumOp::DeviceHelpers::MatMul&) [with T = long int; onnxruntime::AllocatorPtr = std::shared_ptr; onnxruntime::EinsumOp::DeviceHelpers::MatMul = std::function]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]std::unique_ptr onnxruntime::EinsumOp::MatMul(const onnxruntime::Tensor&, const std::vector&, const onnxruntime::Tensor&, const std::vector&, onnxruntime::AllocatorPtr, onnxruntime::concurrency::ThreadPool*, void*, onnxruntime::EinsumOp::DeviceHelpers::MatMul&) [with T = double; onnxruntime::AllocatorPtr = std::shared_ptr; onnxruntime::EinsumOp::DeviceHelpers::MatMul = std::function]T* onnxruntime::Tensor::MutableData() [with T = int]const T* onnxruntime::Tensor::Data() const [with T = int]std::unique_ptr onnxruntime::EinsumOp::MatMul(const onnxruntime::Tensor&, const std::vector&, const onnxruntime::Tensor&, const std::vector&, onnxruntime::AllocatorPtr, onnxruntime::concurrency::ThreadPool*, void*, onnxruntime::EinsumOp::DeviceHelpers::MatMul&) [with T = int; onnxruntime::AllocatorPtr = std::shared_ptr; onnxruntime::EinsumOp::DeviceHelpers::MatMul = std::function]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]std::unique_ptr onnxruntime::EinsumOp::MatMul(const onnxruntime::Tensor&, const std::vector&, const onnxruntime::Tensor&, const std::vector&, onnxruntime::AllocatorPtr, onnxruntime::concurrency::ThreadPool*, void*, onnxruntime::EinsumOp::DeviceHelpers::MatMul&) [with T = float; onnxruntime::AllocatorPtr = std::shared_ptr; onnxruntime::EinsumOp::DeviceHelpers::MatMul = std::function]std::unique_ptr onnxruntime::EinsumOp::Transpose(const onnxruntime::Tensor&, const std::vector&, const std::vector&, onnxruntime::AllocatorPtr, void*, const Transpose&)bool onnxruntime::EinsumOp::IsTransposeRequired(size_t, const std::vector&)void onnxruntime::Tensor::Reshape(const onnxruntime::TensorShape&)std::unique_ptr onnxruntime::EinsumOp::DeviceHelpers::CpuDeviceHelpers::DiagonalInnermostDims(const onnxruntime::Tensor&, bool, onnxruntime::AllocatorPtr)std::unique_ptr onnxruntime::EinsumOp::DeviceHelpers::CpuDeviceHelpers::Diagonal(const onnxruntime::Tensor&, int64_t, int64_t, onnxruntime::AllocatorPtr)onnxruntime::common::Status onnxruntime::EinsumOp::DeviceHelpers::CpuDeviceHelpers::DataCopy(const onnxruntime::Tensor&, onnxruntime::Tensor&)dim_iter == rank. The shape is: in the same dimensionvector::_M_fill_insertInputs have ellipses in them but the provided output subscript does not contain an ellipsis/onnxruntime_src/onnxruntime/core/providers/cpu/math/einsum_utils/einsum_compute_preprocessor.ccnum_broadcasted_indices < num_of_ellipsis_dims_The broadcasted dimensions of the inputs are incompatibleNumber of subscripts in the input equation does not match number of input tensorsFound a '.' not part of an ellipsis in input: Einsum subscripts string contains too many subscript labels when compared to the rank of the inputEllipsis must indicate a fixed number of dimensions across all inputsFound '.' not part of an ellipsis in input: Einsum operands could not be broadcast together. Please check input shapes/equation provided.Input shape of operand is incompatible in the dimension Another operand has a dim value of Einsum subscripts string contains too many subscript labels when compared to the rank of the input Einsum subscripts does not contain enough subscript labels and there is no ellipsis for input The only subscript labels allowed are lower-cased letters (a-z) and upper-cased letters (A-Z)Found a '.' not part of an ellipsis in the output subscript providedFound '.' not part of an ellipsis in the output subscript providedThe only subscript labels allowed in the output subscript are lowercase letters (a-z)Output subscript contains repeated lettersOutput subscript contains letters not seen in the inputsRank of the input must match number of subscript labels corresponding to the inputvoid onnxruntime::Tensor::Reshape(const onnxruntime::TensorShape&)onnxruntime::common::Status onnxruntime::EinsumComputePreprocessor::PostProcessBroadcastedDims()Run Left shape override: Left shape: Right shape override: Right shape: left_rank == right_rankleft_dim == right_dimEinsum op: The candidate output cannot be reshaped into the op's output/onnxruntime_src/onnxruntime/core/providers/cpu/math/einsum_utils/einsum_typed_compute_processor.cccandidate_output.Shape().Size() == output_shape.Size()Not all dimensions to be reduced have been reduced in the candidate output. Candidate output dims: candidate_output_dims[iter] == 1Einsum op: Could not copy the intermediate output's buffer into the op's output buffer. Error: The override dims are not compatible with given tensor's shape. left.Shape().Size() == left_shape_override.Size()right.Shape().Size() == right_shape_override.Size()Ranks of pair-wise operands must be equal. Einsum op: Input dimensions must be equal along an axis to be reduced across all inputsEinsum op: Input shapes do not alignvoid onnxruntime::EinsumTypedComputeProcessor::FinalizeOutput(const onnxruntime::Tensor&, const std::vector&) [with T = long int]std::unique_ptr onnxruntime::EinsumTypedComputeProcessor::PairwiseOperandProcess(const onnxruntime::Tensor&, const onnxruntime::TensorShape&, const onnxruntime::Tensor&, const onnxruntime::TensorShape&, const std::vector&, bool) [with T = long int]void onnxruntime::EinsumTypedComputeProcessor::FinalizeOutput(const onnxruntime::Tensor&, const std::vector&) [with T = double]std::unique_ptr onnxruntime::EinsumTypedComputeProcessor::PairwiseOperandProcess(const onnxruntime::Tensor&, const onnxruntime::TensorShape&, const onnxruntime::Tensor&, const onnxruntime::TensorShape&, const std::vector&, bool) [with T = double]void onnxruntime::EinsumTypedComputeProcessor::FinalizeOutput(const onnxruntime::Tensor&, const std::vector&) [with T = int]std::unique_ptr onnxruntime::EinsumTypedComputeProcessor::PairwiseOperandProcess(const onnxruntime::Tensor&, const onnxruntime::TensorShape&, const onnxruntime::Tensor&, const onnxruntime::TensorShape&, const std::vector&, bool) [with T = int]void onnxruntime::EinsumTypedComputeProcessor::FinalizeOutput(const onnxruntime::Tensor&, const std::vector&) [with T = float]void onnxruntime::Tensor::Reshape(const onnxruntime::TensorShape&)std::unique_ptr onnxruntime::EinsumTypedComputeProcessor::PairwiseOperandProcess(const onnxruntime::Tensor&, const onnxruntime::TensorShape&, const onnxruntime::Tensor&, const onnxruntime::TensorShape&, const std::vector&, bool) [with T = float]fmod(fmod == 0) || (fmod == 1)LessGreaterNotAndOrXorModNegAcoshAtanSinhAbsAtanhBitShiftCoshAsinTanCosAsinhSinAcosCeilReciprocalFloorPReluaxis == 1 || axis == largestdirectionLEFTRIGHTInvalid direction value of 'cur1 == end1cur_out == end_out) for tensor of length:Invalid start/ending offset [Broadcast Output range [offset % span_size_ == 0Can broadcast 0 by 0 or 1. largest <= 1failed to get first output!input1_size == output_sizeinput0_size == output_sizeUnsupported Y type: Unsupported X type: Must have 1 or more inputsinput_count >= 1 vs fmod_inputCount >= 1data_n.Shape() == shapedata_1.Shape() == shapep_ml_valuefmod must have value either 0 or 1/onnxruntime_src/onnxruntime/core/providers/cpu/math/element_wise_ops.ccAttempting to broadcast an axis by a dimension other than 1. /onnxruntime_src/onnxruntime/core/providers/cpu/math/element_wise_ops.h'. Valid values are 'LEFT' or 'RIGHT'./onnxruntime_src/onnxruntime/core/providers/cpu/element_wise_ranged_transform.hinput_size < std::numeric_limits::max()start_offset >= 0 && real_end >= 0 && start_offset <= real_end && real_end <= len) are not at boundary of span with size:start_offset % span_size == 0 && real_end % span_size == 0TBroadcaster can only start at span boundary!(output_size % span_size) == 0Shape must be 1 dimensional as it's tensor data is a shapetensor_shape.Shape().GetDims().size() == 1X and Y input types do not match: fmod attribute must be true for float, float16 and double typesAll inputs must have the same shapePlease fetch output tensor with specified shape.void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda92; Input1Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda93; General = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda94; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda92; Input1Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda93; General = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda94]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda92; Input1Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda93; General = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda94; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda92; Input1Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda93; General = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda94]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda92; Input1Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda93; General = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda94; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda92; Input1Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda93; General = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda94]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda92; Input1Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda93; General = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda94; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda92; Input1Scalar = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda93; General = onnxruntime::Add::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda94]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda95; Input1Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda96; General = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda97; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda95; Input1Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda96; General = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda97]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda95; Input1Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda96; General = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda97; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda95; Input1Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda96; General = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda97]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda95; Input1Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda96; General = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda97; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda95; Input1Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda96; General = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda97]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda95; Input1Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda96; General = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda97; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda95; Input1Scalar = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda96; General = onnxruntime::Sub::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda97]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda98; Input1Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda99; General = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda100; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda98; Input1Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda99; General = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda100]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda98; Input1Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda99; General = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda100; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda98; Input1Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda99; General = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda100]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda98; Input1Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda99; General = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda100; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda98; Input1Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda99; General = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda100]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda98; Input1Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda99; General = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda100; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda98; Input1Scalar = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda99; General = onnxruntime::Mul::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda100]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda101; Input1Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda102; General = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda103; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda101; Input1Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda102; General = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda103]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda101; Input1Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda102; General = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda103; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda101; Input1Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda102; General = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda103]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda101; Input1Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda102; General = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda103; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda101; Input1Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda102; General = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda103]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda101; Input1Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda102; General = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda103; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda101; Input1Scalar = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda102; General = onnxruntime::Div::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda103]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Abs]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Neg]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Neg]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Neg]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Neg]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Neg]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Floor]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Ceil]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Reciprocal]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Sqrt]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Sqrt]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Exp]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Exp]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Log]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = bool; Input0Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda135; Input1Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda136; General = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda137; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = float; TOutput = bool; Input0Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda135; Input1Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda136; General = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda137]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = bool; Input0Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda135; Input1Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda136; General = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda137; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = double; TOutput = bool; Input0Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda135; Input1Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda136; General = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda137]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = bool; Input0Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda135; Input1Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda136; General = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda137; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = int; TOutput = bool; Input0Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda135; Input1Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda136; General = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda137]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = bool; Input0Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda135; Input1Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda136; General = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda137; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = long int; TOutput = bool; Input0Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda135; Input1Scalar = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda136; General = onnxruntime::Less::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda137]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = bool; Input0Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda138; Input1Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda139; General = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda140; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = float; TOutput = bool; Input0Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda138; Input1Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda139; General = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda140]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = bool; Input0Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda138; Input1Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda139; General = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda140; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = double; TOutput = bool; Input0Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda138; Input1Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda139; General = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda140]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = bool; Input0Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda138; Input1Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda139; General = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda140; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = int; TOutput = bool; Input0Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda138; Input1Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda139; General = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda140]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = bool; Input0Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda138; Input1Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda139; General = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda140; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = long int; TOutput = bool; Input0Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda138; Input1Scalar = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda139; General = onnxruntime::Greater::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda140]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = bool; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = bool]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = bool]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = bool]::__lambda134; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = bool; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = bool]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = bool]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = bool]::__lambda134]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = int; T1 = int; size_t = long unsigned int]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda134; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = int; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = int]::__lambda134]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = long int; T1 = long int; size_t = long unsigned int]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda134; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = long int; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = long int]::__lambda134]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda134; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = float; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda134]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = double; T1 = double; size_t = long unsigned int]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda134; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = double; TOutput = bool; Input0Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda132; Input1Scalar = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda133; General = onnxruntime::Equal::Compute(onnxruntime::OpKernelContext*) const [with T = double]::__lambda134]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = unsigned char; T1 = unsigned char; size_t = long unsigned int]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = unsigned char; TOutput = unsigned char; Input0Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda144; Input1Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda145; General = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda146; int64_t = long int]onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda146onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = unsigned char; TOutput = unsigned char; Input0Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda144; Input1Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda145; General = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda146]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = unsigned int; T1 = unsigned int; size_t = long unsigned int]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = unsigned int; TOutput = unsigned int; Input0Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda144; Input1Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda145; General = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda146; int64_t = long int]onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda146onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = unsigned int; TOutput = unsigned int; Input0Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda144; Input1Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda145; General = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda146]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = long unsigned int; T1 = long unsigned int; size_t = long unsigned int]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = long unsigned int; TOutput = long unsigned int; Input0Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda144; Input1Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda145; General = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda146; int64_t = long int]onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda146onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = long unsigned int; TOutput = long unsigned int; Input0Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda144; Input1Scalar = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda145; General = onnxruntime::BitShift::Compute(onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda146]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = float]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = double]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = signed char]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = short int]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = int]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = long int]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = short unsigned int]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned int]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = long unsigned int]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = bool]onnxruntime::common::Status onnxruntime::Expand_8::Compute(onnxruntime::OpKernelContext*) const [with T = onnxruntime::MLFloat16]void onnxruntime::mod_internal::BroadCastMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = long int]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = long int]void onnxruntime::mod_internal::BroadCastMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = long unsigned int]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = long unsigned int]void onnxruntime::mod_internal::BroadCastMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = int]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = int]void onnxruntime::mod_internal::BroadCastMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = unsigned int]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = unsigned int]void onnxruntime::mod_internal::BroadCastMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = short int]T* onnxruntime::Tensor::MutableData() [with T = short int]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = short int; size_t = long unsigned int; int64_t = long int]const T* onnxruntime::Tensor::Data() const [with T = short int]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = short int]void onnxruntime::mod_internal::BroadCastMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = short unsigned int]T* onnxruntime::Tensor::MutableData() [with T = short unsigned int]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = short unsigned int; size_t = long unsigned int; int64_t = long int]const T* onnxruntime::Tensor::Data() const [with T = short unsigned int]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = short unsigned int]void onnxruntime::mod_internal::BroadCastMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = signed char]T* onnxruntime::Tensor::MutableData() [with T = signed char]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = signed char; size_t = long unsigned int; int64_t = long int]const T* onnxruntime::Tensor::Data() const [with T = signed char]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = signed char]void onnxruntime::mod_internal::BroadCastMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = unsigned char]T* onnxruntime::Tensor::MutableData() [with T = unsigned char]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = unsigned char; size_t = long unsigned int; int64_t = long int]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = unsigned char]void onnxruntime::utils::MLTypeCallDispatcher::Invoke(Args&& ...) const [with Args = {const bool&, const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*&}; Fn = onnxruntime::mod_internal::CallModImpl; Types = {unsigned char, signed char, short unsigned int, short int, unsigned int, int, long unsigned int, long int}]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = double]void onnxruntime::mod_internal::BroadCastFMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*) [with T = float]virtual onnxruntime::common::Status onnxruntime::Mod::Compute(onnxruntime::OpKernelContext*) constvoid onnxruntime::mod_internal::BroadCastMFloat16FMod(const onnxruntime::Tensor&, const onnxruntime::Tensor&, onnxruntime::OpKernelContext*)onnxruntime::Mod::Mod(const onnxruntime::OpKernelInfo&)void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = float; T1 = float; size_t = long unsigned int]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::PRelu::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda159; Input1Scalar = onnxruntime::PRelu::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda160; General = onnxruntime::PRelu::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda161; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::PRelu::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda159; Input1Scalar = onnxruntime::PRelu::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda160; General = onnxruntime::PRelu::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda161]T* OrtValue::GetMutable() [with T = onnxruntime::Tensor]T* onnxruntime::OpKernelContext::Output(int) [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Mean_8::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda141; Input1Scalar = onnxruntime::Mean_8::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda142; General = onnxruntime::Mean_8::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda143]onnxruntime::common::Status onnxruntime::Mean_6::Compute(onnxruntime::OpKernelContext*) const [with T = float]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = bool; TOutput = bool; Input0Scalar = onnxruntime::Xor::Compute(onnxruntime::OpKernelContext*) const::__lambda129; Input1Scalar = onnxruntime::Xor::Compute(onnxruntime::OpKernelContext*) const::__lambda130; General = onnxruntime::Xor::Compute(onnxruntime::OpKernelContext*) const::__lambda131; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = bool; TOutput = bool; Input0Scalar = onnxruntime::Xor::Compute(onnxruntime::OpKernelContext*) const::__lambda129; Input1Scalar = onnxruntime::Xor::Compute(onnxruntime::OpKernelContext*) const::__lambda130; General = onnxruntime::Xor::Compute(onnxruntime::OpKernelContext*) const::__lambda131]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = bool; TOutput = bool; Input0Scalar = onnxruntime::Or::Compute(onnxruntime::OpKernelContext*) const::__lambda126; Input1Scalar = onnxruntime::Or::Compute(onnxruntime::OpKernelContext*) const::__lambda127; General = onnxruntime::Or::Compute(onnxruntime::OpKernelContext*) const::__lambda128; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = bool; TOutput = bool; Input0Scalar = onnxruntime::Or::Compute(onnxruntime::OpKernelContext*) const::__lambda126; Input1Scalar = onnxruntime::Or::Compute(onnxruntime::OpKernelContext*) const::__lambda127; General = onnxruntime::Or::Compute(onnxruntime::OpKernelContext*) const::__lambda128]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = bool; T1 = bool; size_t = long unsigned int]void onnxruntime::BroadcastOneSpan(onnxruntime::concurrency::ThreadPool*, double, TOutput*, int64_t, const TInput*, int64_t, const TInput*, int64_t, Input0Scalar, Input1Scalar, General) [with TInput = bool; TOutput = bool; Input0Scalar = onnxruntime::And::Compute(onnxruntime::OpKernelContext*) const::__lambda123; Input1Scalar = onnxruntime::And::Compute(onnxruntime::OpKernelContext*) const::__lambda124; General = onnxruntime::And::Compute(onnxruntime::OpKernelContext*) const::__lambda125; int64_t = long int]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = bool; size_t = long unsigned int; int64_t = long int]onnxruntime::common::Status onnxruntime::BroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with TInput = bool; TOutput = bool; Input0Scalar = onnxruntime::And::Compute(onnxruntime::OpKernelContext*) const::__lambda123; Input1Scalar = onnxruntime::And::Compute(onnxruntime::OpKernelContext*) const::__lambda124; General = onnxruntime::And::Compute(onnxruntime::OpKernelContext*) const::__lambda125]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = long unsigned int; TOutput = long unsigned int; Input0Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda120; Input1Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda121; General = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda122]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = long int]::__lambda120; Input1Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = long int]::__lambda121; General = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = long int]::__lambda122]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = unsigned int; TOutput = unsigned int; Input0Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda120; Input1Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda121; General = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda122]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = int]::__lambda120; Input1Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = int]::__lambda121; General = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = int]::__lambda122]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = onnxruntime::MLFloat16; TOutput = onnxruntime::MLFloat16; Input0Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = onnxruntime::MLFloat16]::__lambda120; Input1Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = onnxruntime::MLFloat16]::__lambda121; General = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = onnxruntime::MLFloat16]::__lambda122]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = double]::__lambda120; Input1Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = double]::__lambda121; General = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = double]::__lambda122]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = float]::__lambda120; Input1Scalar = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = float]::__lambda121; General = onnxruntime::Max_8::ComputeImpl::operator()(const onnxruntime::Max_8*, onnxruntime::OpKernelContext*) const [with T = float]::__lambda122]onnxruntime::common::Status onnxruntime::Max_6::Compute(onnxruntime::OpKernelContext*) const [with T = float]Ret onnxruntime::utils::mltype_dispatcher_internal::CallableDispatchableRetHelper::Get() [with Ret = onnxruntime::common::Status; UnsupportedPolicy = onnxruntime::utils::mltype_dispatcher_internal::UnsupportedTypeDefaultPolicy]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = long unsigned int; size_t = long unsigned int; int64_t = long int]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = long unsigned int]T* onnxruntime::Tensor::MutableData() [with T = long unsigned int]const T* onnxruntime::Tensor::Data() const [with T = long unsigned int]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = long unsigned int; TOutput = long unsigned int; Input0Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda117; Input1Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda118; General = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = long unsigned int]::__lambda119]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = long int]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = long int; TOutput = long int; Input0Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = long int]::__lambda117; Input1Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = long int]::__lambda118; General = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = long int]::__lambda119]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = unsigned int; size_t = long unsigned int; int64_t = long int]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = unsigned int]T* onnxruntime::Tensor::MutableData() [with T = unsigned int]const T* onnxruntime::Tensor::Data() const [with T = unsigned int]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = unsigned int; TOutput = unsigned int; Input0Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda117; Input1Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda118; General = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = unsigned int]::__lambda119]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = int]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = int; TOutput = int; Input0Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = int]::__lambda117; Input1Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = int]::__lambda118; General = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = int]::__lambda119]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = onnxruntime::MLFloat16; size_t = long unsigned int; int64_t = long int]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = onnxruntime::MLFloat16]T* onnxruntime::Tensor::MutableData() [with T = onnxruntime::MLFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::MLFloat16]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = onnxruntime::MLFloat16; TOutput = onnxruntime::MLFloat16; Input0Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = onnxruntime::MLFloat16]::__lambda117; Input1Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = onnxruntime::MLFloat16]::__lambda118; General = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = onnxruntime::MLFloat16]::__lambda119]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = double]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = double; TOutput = double; Input0Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = double]::__lambda117; Input1Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = double]::__lambda118; General = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = double]::__lambda119]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = float]::__lambda117; Input1Scalar = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = float]::__lambda118; General = onnxruntime::Min_8::ComputeImpl::operator()(const onnxruntime::Min_8*, onnxruntime::OpKernelContext*) const [with T = float]::__lambda119]onnxruntime::common::Status onnxruntime::Min_6::Compute(onnxruntime::OpKernelContext*) const [with T = float]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = float]onnxruntime::common::Status onnxruntime::BroadcastVariadic(const onnxruntime::Node&, onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General) [with TInput = float; TOutput = float; Input0Scalar = onnxruntime::Sum_8::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda114; Input1Scalar = onnxruntime::Sum_8::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda115; General = onnxruntime::Sum_8::Compute(onnxruntime::OpKernelContext*) const [with T = float]::__lambda116]onnxruntime::common::Status onnxruntime::Sum_6::Compute(onnxruntime::OpKernelContext*) const [with T = float]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = double; size_t = long unsigned int; int64_t = long int]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = float; size_t = long unsigned int; int64_t = long int]T* onnxruntime::Tensor::MutableData() [with T = long int]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = long int; size_t = long unsigned int; int64_t = long int]T* onnxruntime::Tensor::MutableData() [with T = int]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = int; size_t = long unsigned int; int64_t = long int]void onnxruntime::BroadcastIterator::Append(int64_t, int64_t)void onnxruntime::BroadcastIterator::Init(int64_t, int64_t)onnxruntime::Broadcaster::Broadcaster(const std::vector&, const std::vector&)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::BitShift::BitShift(const onnxruntime::OpKernelInfo&) [with T = long unsigned int]onnxruntime::BitShift::BitShift(const onnxruntime::OpKernelInfo&) [with T = unsigned int]onnxruntime::BitShift::BitShift(const onnxruntime::OpKernelInfo&) [with T = unsigned char]onnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Log]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Exp]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Exp]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Sqrt]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Sqrt]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Reciprocal]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Ceil]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Floor]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Neg]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Neg]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Neg]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Neg]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Neg]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Abs]ElementWiseKernel((`(`(``JJ J J } 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s7 s7 s7 s7nnnn*=*=*=*=pMpMpMpMӅ<Ӆ<Ӆ<Ӆ<****FFFF@.@@-DT!<@ @right.NumDimensions() == 2 N: K: GEMM: Dimension mismatch, W: M_ >= 0 && K_ > 0 && N_ >= 0transAtransBc_shape != nullptr/onnxruntime_src/onnxruntime/core/providers/cpu/math/gemm_helper.hleft.NumDimensions() == 2 || left.NumDimensions() == 1Gemm: Invalid bias shape for broadcast/onnxruntime_src/onnxruntime/core/providers/cpu/math/gemm.hinfo.GetAttr("transA", &temp).IsOK()info.GetAttr("transB", &temp).IsOK()info.GetAttr("alpha", &alpha_).IsOK()info.GetAttr("beta", &beta_).IsOK()c_shape is required if c_data is providedstatic void onnxruntime::Gemm::ComputeGemm(CBLAS_TRANSPOSE, CBLAS_TRANSPOSE, int64_t, int64_t, int64_t, float, const T*, const T*, float, const T*, const onnxruntime::TensorShape*, T*, onnxruntime::concurrency::ThreadPool*) [with T = float; int64_t = long int]const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]onnxruntime::GemmHelper::GemmHelper(const onnxruntime::TensorShape&, bool, const onnxruntime::TensorShape&, bool, const onnxruntime::TensorShape&)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::Gemm::Gemm(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime4GemmIfE11CallWrapperEN11onnxruntime4GemmIfEEHardmax. N=, D=Hardmax inputs N, D and N * D must be < T* onnxruntime::Tensor::MutableData() [with T = float]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime7HardmaxIfEEMatMul dimension mismatch/onnxruntime_src/onnxruntime/core/providers/cpu/math/matmul_helper.hNot satisfied: left_num_dims >= 1 && right_num_dims >= 1 Not satisfied: K_ == right_shape[right_num_dims - 2] || transb && K_ == right_shape[right_num_dims - 1] left operand cannot broadcast on dim Not satisfied: left_padded_dims_[idx_dim] == 1 right operand cannot broadcast on dim Not satisfied: right_padded_dims_[idx_dim] == 1 Not satisfied: K_ == right_shape[transb ? right_num_dims - 1 : right_num_dims - 2] Not satisfied: num_dims_with_pad == num_output_dims Not satisfied: M_ == 1 && N_ == 1 Not satisfied: num_dims_with_pad - 1 == num_output_dims Not satisfied: num_dims_with_pad - 2 == num_output_dims Not satisfied: K_ == right_shape[0] /onnxruntime_src/onnxruntime/core/providers/cpu/math/matmul.ccComputeComputeComputeT* onnxruntime::Tensor::MutableData() [with T = float]ComputeComputeN11onnxruntime6MatMulIfEEN11onnxruntime6MatMulIdEEN11onnxruntime6MatMulIiEEN11onnxruntime6MatMulIlEET3/onnxruntime_src/onnxruntime/core/providers/cpu/math/matmul_integer.ccIsScalarOr1ElementVector(a_zero_point)IsScalarOr1ElementVector(b_zero_point)MatmulInteger : input1 zero point must be a scalar or 1D tensor of size 1MatmulInteger : input2 zero point must be a scalar or 1D tensor of size 1T* onnxruntime::Tensor::MutableData() [with T = int]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::MatMulInteger::Compute(onnxruntime::OpKernelContext*) constComputeN11onnxruntime13MatMulIntegerEQLinearMatMul/onnxruntime_src/onnxruntime/core/providers/cpu/math/quantize_linear_matmul.ccIsScalarOr1ElementVector(a_offset)IsScalarOr1ElementVector(b_offset)IsScalarOr1ElementVector(y_offset)IsScalarOr1ElementVector(a_scale)IsScalarOr1ElementVector(b_scale)IsScalarOr1ElementVector(y_scale)QLinearMatmul : input zero point must be a scalar or 1D tensor of size 1QLinearMatmul : weight zero point must be a scalar or 1D tensor of size 1QLinearMatmul : result zero point must be a scalar or 1D tensor of size 1QLinearMatmul : input scale must be a scalar or 1D tensor of size 1QLinearMatmul : weight scale must be a scalar or 1D tensor of size 1QLinearMatmul : result scale must be a scalar or 1D tensor of size 1T* onnxruntime::Tensor::MutableData() [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]virtual onnxruntime::common::Status onnxruntime::QLinearMatMul::Compute(onnxruntime::OpKernelContext*) constComputeN11onnxruntime13QLinearMatMulERoundT* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = onnxruntime::MLFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::MLFloat16]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime5RoundINS_9MLFloat16EEEN11onnxruntime5RoundIfEEN11onnxruntime5RoundIdEESignT* onnxruntime::Tensor::MutableData() [with T = long unsigned int]const T* onnxruntime::Tensor::Data() const [with T = long unsigned int]T* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = unsigned int]const T* onnxruntime::Tensor::Data() const [with T = unsigned int]T* onnxruntime::Tensor::MutableData() [with T = int]const T* onnxruntime::Tensor::Data() const [with T = int]T* onnxruntime::Tensor::MutableData() [with T = short unsigned int]const T* onnxruntime::Tensor::Data() const [with T = short unsigned int]T* onnxruntime::Tensor::MutableData() [with T = short int]const T* onnxruntime::Tensor::Data() const [with T = short int]T* onnxruntime::Tensor::MutableData() [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]T* onnxruntime::Tensor::MutableData() [with T = signed char]const T* onnxruntime::Tensor::Data() const [with T = signed char]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]void onnxruntime::utils::MLTypeCallDispatcher::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor*&, onnxruntime::Tensor*&}; Fn = onnxruntime::sign_internal::CallSignImpl; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int}]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]T* onnxruntime::Tensor::MutableData() [with T = onnxruntime::BFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::BFloat16]T* onnxruntime::Tensor::MutableData() [with T = onnxruntime::MLFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::MLFloat16]N11onnxruntime4SignELogSoftmaxconst T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = double]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime7SoftmaxIfEEN11onnxruntime7SoftmaxIdEESoftmaxCPU inputs N, D and N * D must be < ;k_temp > 0sortedITopKk argument [/onnxruntime_src/onnxruntime/core/providers/cpu/math/top_k.ccop_kernel_info.GetAttr("k", &k_temp).IsOK()op_kernel_info.GetAttr("axis", &axis_temp).IsOK()op_kernel_info.GetAttr("largest", &largest_temp).IsOK()op_kernel_info.GetAttr("sorted", &sorted_temp).IsOK()] should not be greater than specified axis dim value [output count mismatch, expected 2 outputs to be present for TopK operatorinput count mismatch, expected 1 input - the tensor to be processedinput count mismatch, expected 2 inputs - the tensor to be processed and a tensor containing k valuevalue of k must not be negativek tensor should be a 1D tensor of size 1void onnxruntime::TopkOpset11ConstructorCommon(const onnxruntime::OpKernelInfo&, int&, bool&, bool&)onnxruntime::TopK::TopK(const onnxruntime::OpKernelInfo&) [with int OpSet = 10; T = float]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)onnxruntime::TopK::TopK(const onnxruntime::OpKernelInfo&) [with int OpSet = 9; T = float]*ZN11onnxruntimeL16FindTopKElementsINS_15GreaterValueCmpIfEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE_*ZN11onnxruntimeL16FindTopKElementsINS_15GreaterValueCmpIfEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE0_*ZN11onnxruntimeL16FindTopKElementsINS_15GreaterValueCmpIfEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE1_*ZN11onnxruntimeL16FindTopKElementsINS_14LesserValueCmpIfEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE_*ZN11onnxruntimeL16FindTopKElementsINS_14LesserValueCmpIfEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE0_*ZN11onnxruntimeL16FindTopKElementsINS_14LesserValueCmpIfEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE1_*ZN11onnxruntimeL16FindTopKElementsINS_15GreaterValueCmpIlEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE_*ZN11onnxruntimeL16FindTopKElementsINS_15GreaterValueCmpIlEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE0_*ZN11onnxruntimeL16FindTopKElementsINS_15GreaterValueCmpIlEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE1_*ZN11onnxruntimeL16FindTopKElementsINS_14LesserValueCmpIlEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE_*ZN11onnxruntimeL16FindTopKElementsINS_14LesserValueCmpIlEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE0_*ZN11onnxruntimeL16FindTopKElementsINS_14LesserValueCmpIlEEEEvPKNS_6TensorERKNS_11TensorShapeEPS3_S9_S8_jbjPNS_11concurrency10ThreadPoolEEUllE1_N11onnxruntime4TopKILi9EfEEN11onnxruntime4TopKILi10EfEEN11onnxruntime4TopKILi11EfEEN11onnxruntime4TopKILi11ElEE333333?ArrayFeatureExtractorai.onnx.ml) >=Invalid argument: X input has empty dimensions.Invalid Y argument: num_indices = 0Invalid Y argument: index is out of range: Y[T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = int]const T* onnxruntime::Tensor::Data() const [with T = int]T* onnxruntime::Tensor::MutableData() [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]const T* onnxruntime::Tensor::Data() const [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]const T* onnxruntime::Tensor::Data() const [with T = std::basic_string]N11onnxruntime2ml23ArrayFeatureExtractorOpIfEEN11onnxruntime2ml23ArrayFeatureExtractorOpIdEEN11onnxruntime2ml23ArrayFeatureExtractorOpIiEEN11onnxruntime2ml23ArrayFeatureExtractorOpIlEEN11onnxruntime2ml23ArrayFeatureExtractorOpISsEEBinarizerInput data with index: is NaNT* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime2ml11BinarizerOpIfEEcast_toTO_FLOATTO_STRINGTO_INT64Invalid CAST_TO value of map_formDENSE Expected DENSE or SPARSEInvalid PACK_MAP value of max_mapCastMap%fstofstollInvalid input type of value: Unexpected CAST_TO value of /onnxruntime_src/onnxruntime/core/providers/cpu/ml/cast_map.hinfo.GetAttr("cast_to", &attr).IsOK() Expected TO_FLOAT, TO_STRING or TO_INT64/onnxruntime_src/onnxruntime/core/providers/cpu/ml/ml_common.hinfo.GetAttr("map_form", &attr).IsOK()info.GetAttr("max_map", &max_map_).IsOK()max_map must be > 0 if map_form is SPARSEmap_form_ != PACK_MAP::SPARSE || max_map_ > 0/onnxruntime_src/onnxruntime/core/providers/cpu/ml/cast_map.cccur_input == end_input || cur_input->first >= 0Negative index values are not permitted. First entry in map has index value of Expected std::map or std::maponnxruntime::common::Status onnxruntime::ml::CastMap::ComputeImpl(onnxruntime::OpKernelContext&, TTo) const [with TFrom = std::basic_string; TTo = std::basic_string]T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]onnxruntime::common::Status onnxruntime::ml::CastMap::ComputeImpl(onnxruntime::OpKernelContext&, TTo) const [with TFrom = float; TTo = std::basic_string]onnxruntime::common::Status onnxruntime::ml::CastMap::ComputeImpl(onnxruntime::OpKernelContext&, TTo) const [with TFrom = std::basic_string; TTo = long int]T* onnxruntime::Tensor::MutableData() [with T = long int]onnxruntime::common::Status onnxruntime::ml::CastMap::ComputeImpl(onnxruntime::OpKernelContext&, TTo) const [with TFrom = float; TTo = long int]const T& OrtValue::Get() const [with T = std::map >]const T* onnxruntime::OpKernelContext::Input(int) const [with T = std::map >]onnxruntime::common::Status onnxruntime::ml::CastMap::ComputeImpl(onnxruntime::OpKernelContext&, TTo) const [with TFrom = std::basic_string; TTo = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T& OrtValue::Get() const [with T = std::map]const T* onnxruntime::OpKernelContext::Input(int) const [with T = std::map]onnxruntime::common::Status onnxruntime::ml::CastMap::ComputeImpl(onnxruntime::OpKernelContext&, TTo) const [with TFrom = float; TTo = float]static bool onnxruntime::utils::ContainerChecker::IsContainerOfType >::check(const Cont&, size_t) [with K = long int; V = float; onnxruntime::utils::ContainerChecker::Cont = std::vector; size_t = long unsigned int]onnxruntime::ml::PACK_MAP onnxruntime::ml::MakePack(const string&)onnxruntime::ml::CAST_TO onnxruntime::ml::MakeCast(const string&)onnxruntime::ml::CastMap::CastMap(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml7CastMapECategoryMappercats_stringscats_int64sdefault_stringdefault_int64Input of string must have output of int64Input of int64 must have output of string /onnxruntime_src/onnxruntime/core/providers/cpu/ml/category_mapper.hinfo.GetAttrs("cats_strings", string_categories).IsOK()info.GetAttrs("cats_int64s", int_categories).IsOK()info.GetAttr("default_string", &default_string_).IsOK()info.GetAttr("default_int64", &default_int_).IsOK()num_entries == int_categories.size()T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]const T* onnxruntime::Tensor::Data() const [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = std::basic_string]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::ml::CategoryMapper::CategoryMapper(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml14CategoryMapperEDictVectorizerstring_vocabularyint64_vocabulary/onnxruntime_src/onnxruntime/core/providers/cpu/ml/dictvectorizer.hinfo.GetAttrs(std::is_same::value ? "string_vocabulary" : "int64_vocabulary", vocabulary_).IsOK()T* onnxruntime::Tensor::MutableData() [with T = long int]const T& OrtValue::Get() const [with T = std::map, long int>]const T* onnxruntime::OpKernelContext::Input(int) const [with T = std::map, long int>]const T& OrtValue::Get() const [with T = std::map, float>]const T* onnxruntime::OpKernelContext::Input(int) const [with T = std::map, float>]const T& OrtValue::Get() const [with T = std::map, double>]const T* onnxruntime::OpKernelContext::Input(int) const [with T = std::map, double>]T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]const T& OrtValue::Get() const [with T = std::map >]const T* onnxruntime::OpKernelContext::Input(int) const [with T = std::map >]T* onnxruntime::Tensor::MutableData() [with T = float]const T& OrtValue::Get() const [with T = std::map]const T* onnxruntime::OpKernelContext::Input(int) const [with T = std::map]T* onnxruntime::Tensor::MutableData() [with T = double]const T& OrtValue::Get() const [with T = std::map]const T* onnxruntime::OpKernelContext::Input(int) const [with T = std::map]onnxruntime::ml::DictVectorizerOp::DictVectorizerOp(const onnxruntime::OpKernelInfo&) [with AttrType = long int; TargetType = double]onnxruntime::ml::DictVectorizerOp::DictVectorizerOp(const onnxruntime::OpKernelInfo&) [with AttrType = long int; TargetType = float]onnxruntime::ml::DictVectorizerOp::DictVectorizerOp(const onnxruntime::OpKernelInfo&) [with AttrType = long int; TargetType = std::basic_string]onnxruntime::ml::DictVectorizerOp::DictVectorizerOp(const onnxruntime::OpKernelInfo&) [with AttrType = std::basic_string; TargetType = double]onnxruntime::ml::DictVectorizerOp::DictVectorizerOp(const onnxruntime::OpKernelInfo&) [with AttrType = std::basic_string; TargetType = float]onnxruntime::ml::DictVectorizerOp::DictVectorizerOp(const onnxruntime::OpKernelInfo&) [with AttrType = std::basic_string; TargetType = long int]N11onnxruntime2ml16DictVectorizerOpISslEEN11onnxruntime2ml16DictVectorizerOpISsfEEN11onnxruntime2ml16DictVectorizerOpISsdEEN11onnxruntime2ml16DictVectorizerOpIlSsEEN11onnxruntime2ml16DictVectorizerOpIlfEEN11onnxruntime2ml16DictVectorizerOpIldEEinputdimensionsFeatureVectorizerinput_tensor_ptr != nullptrInvalid input type:Number of inputs (/onnxruntime_src/onnxruntime/core/providers/cpu/ml/feature_vectorizer.hstatus.IsOK() && !input_dimensions_.empty()inputdimensions attribute must be provided/onnxruntime_src/onnxruntime/core/providers/cpu/ml/feature_vectorizer.ccinput_count >= 0 && static_cast(input_count) == input_dimensions_.size()) does not match number of inputdimensions values (const T* onnxruntime::Tensor::Data() const [with T = double]const T* onnxruntime::Tensor::Data() const [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = int]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]T* onnxruntime::Tensor::MutableData() [with T = float]virtual onnxruntime::common::Status onnxruntime::ml::FeatureVectorizer::Compute(onnxruntime::OpKernelContext*) constonnxruntime::ml::FeatureVectorizer::FeatureVectorizer(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml17FeatureVectorizerEimputed_value_floatsimputed_value_int64sreplaced_value_floatreplaced_value_int64ImputerEmpty input dimensions.Invalid typeExpected 'replaced_value_float' attribute since 'imputed_value_floats' is specified/onnxruntime_src/onnxruntime/core/providers/cpu/ml/imputer.ccExpected 'replace_value_int64' attribute since 'imputed_values_int64' is specifiedMust provide imputed_values_float_ or imputed_values_int64_ but not both.imputed_values_float_.empty() ^ imputed_values_int64_.empty()Empty value of imputed values.T* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::ml::ImputerOp::Compute(onnxruntime::OpKernelContext*) constonnxruntime::ml::ImputerOp::ImputerOp(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml9ImputerOpEkeys_floatsvalues_strings_Unusedkeys_stringsvalues_floatsdefault_floatkeys_int64svalues_int64sLabelEncoder attribtues in LabelEncoder The values is and the number of ) must have the same length. num_keys == num_valuesclasses_strings/onnxruntime_src/onnxruntime/core/providers/cpu/ml/label_encoder.hinfo.GetAttrs(_key_field_name, keys).IsOK()info.GetAttrs(_value_field_name, values).IsOK()However, the number of key is Input of tensor(string) must have output of tensor(int64)Input of tensor(int64) must have output of tensor(string)info.GetAttrs("classes_strings", string_classes).IsOK()gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = float]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = float]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = std::basic_string]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = std::basic_string]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = long int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = long int]onnxruntime::ml::LabelEncoder_2::LabelEncoder_2(const onnxruntime::OpKernelInfo&) [with TKey = long int; TValue = long int]onnxruntime::ml::LabelEncoder_2::LabelEncoder_2(const onnxruntime::OpKernelInfo&) [with TKey = std::basic_string; TValue = long int]onnxruntime::ml::LabelEncoder_2::LabelEncoder_2(const onnxruntime::OpKernelInfo&) [with TKey = long int; TValue = std::basic_string]onnxruntime::ml::LabelEncoder_2::LabelEncoder_2(const onnxruntime::OpKernelInfo&) [with TKey = float; TValue = long int]onnxruntime::ml::LabelEncoder_2::LabelEncoder_2(const onnxruntime::OpKernelInfo&) [with TKey = long int; TValue = float]onnxruntime::ml::LabelEncoder_2::LabelEncoder_2(const onnxruntime::OpKernelInfo&) [with TKey = std::basic_string; TValue = float]onnxruntime::ml::LabelEncoder_2::LabelEncoder_2(const onnxruntime::OpKernelInfo&) [with TKey = float; TValue = std::basic_string]T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]const T* onnxruntime::Tensor::Data() const [with T = long int]onnxruntime::ml::LabelEncoder::LabelEncoder(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml12LabelEncoderEN11onnxruntime2ml14LabelEncoder_2IfSsEEN11onnxruntime2ml14LabelEncoder_2ISsfEEN11onnxruntime2ml14LabelEncoder_2IlfEEN11onnxruntime2ml14LabelEncoder_2IflEEN11onnxruntime2ml14LabelEncoder_2IlSsEEN11onnxruntime2ml14LabelEncoder_2ISslEEN11onnxruntime2ml14LabelEncoder_2IllEEmulti_classNONEpost_transformLOGISTICSOFTMAXSOFTMAX_ZEROinterceptsclasslabels_stringsclasslabels_intscoefficients!coefficients_.empty()LinearClassifiershape_size == out.length()/onnxruntime_src/onnxruntime/core/providers/cpu/ml/linearclassifier.ccscores.size() == static_cast(expected_num_scores)Unexpected value for 'add_second_class' of Scores output is incorrect size. Expected:scores_output_data.length() >= scores_output_sizeInput shape needs to be at least a single dimension.Unsupported input element type of const T* onnxruntime::Tensor::Data() const [with T = double]void onnxruntime::ml::CastInputToFloat(const onnxruntime::Tensor&, gsl::span&) [with SrcType = double]const T* onnxruntime::Tensor::Data() const [with T = long int]void onnxruntime::ml::CastInputToFloat(const onnxruntime::Tensor&, gsl::span&) [with SrcType = long int]const T* onnxruntime::Tensor::Data() const [with T = int]void onnxruntime::ml::CastInputToFloat(const onnxruntime::Tensor&, gsl::span&) [with SrcType = int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]void onnxruntime::ml::batched_update_scores_inplace(gsl::span, int64_t, int64_t, onnxruntime::ml::POST_EVAL_TRANSFORM, int, bool, onnxruntime::concurrency::ThreadPool*) [with T = float; int64_t = long int]T* onnxruntime::Tensor::MutableData() [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = float]void onnxruntime::ml::LinearClassifier::ComputeImpl(gsl::span, int64_t, int64_t, int64_t, const std::vector&, const std::vector&, onnxruntime::Tensor&, onnxruntime::Tensor&, onnxruntime::ml::POST_EVAL_TRANSFORM, bool, onnxruntime::concurrency::ThreadPool*) constonnxruntime::ml::LinearClassifier::LinearClassifier(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml16LinearClassifierEZN11onnxruntime2ml29batched_update_scores_inplaceIfEEvN3gsl4spanIT_EEllNS0_19POST_EVAL_TRANSFORMEibPNS_11concurrency10ThreadPoolEEUlfPfE_ZN11onnxruntime2ml29batched_update_scores_inplaceIfEEvN3gsl4spanIT_EEllNS0_19POST_EVAL_TRANSFORMEibPNS_11concurrency10ThreadPoolEEUlfPfE0_ZN11onnxruntime2ml29batched_update_scores_inplaceIfEEvN3gsl4spanIT_EEllNS0_19POST_EVAL_TRANSFORMEibPNS_11concurrency10ThreadPoolEEUlfPfE1_@@3ֳLinearRegressorUnsupported data type of /onnxruntime_src/onnxruntime/core/providers/cpu/ml/linearregressor.ccinfo.GetAttr("targets", &num_targets_).IsOK()info.GetAttrs("coefficients", coefficients_).IsOK()Input shape had more than 2 dimension. Dims=T* onnxruntime::Tensor::MutableData() [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::ml::LinearRegressor::LinearRegressor(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml15LinearRegressorEInvalid normalize value of /onnxruntime_src/onnxruntime/core/providers/cpu/ml/normalizer.hinfo.GetAttr("norm", &norm).IsOK()Rank of input to Normalized must be less than 2. Got Unexpected NORMALIZE value of const T* onnxruntime::Tensor::Data() const [with T = int]const T* onnxruntime::Tensor::Data() const [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::ml::NORMALIZE onnxruntime::ml::MakeNormalize(const string&)onnxruntime::ml::Normalizer::Normalizer(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml10NormalizerEUnknown Category and zeros = 0./onnxruntime_src/onnxruntime/core/providers/cpu/ml/onehotencoder.cctmp_cats_int64s.empty() || tmp_cats_strings.empty()One and only one of the 'cats_*' attributes must be definedOneHotEncoderzerosnum_categories_ > 0const T* onnxruntime::Tensor::Data() const [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = float]const T* onnxruntime::Tensor::Data() const [with T = double]const T* onnxruntime::Tensor::Data() const [with T = std::basic_string]onnxruntime::ml::OneHotEncoderOp::OneHotEncoderOp(const onnxruntime::OpKernelInfo&) [with T = std::basic_string]onnxruntime::ml::OneHotEncoderOp::OneHotEncoderOp(const onnxruntime::OpKernelInfo&) [with T = double]onnxruntime::ml::OneHotEncoderOp::OneHotEncoderOp(const onnxruntime::OpKernelInfo&) [with T = float]onnxruntime::ml::OneHotEncoderOp::OneHotEncoderOp(const onnxruntime::OpKernelInfo&) [with T = long int]N11onnxruntime2ml15OneHotEncoderOpIlEEN11onnxruntime2ml15OneHotEncoderOpIfEEN11onnxruntime2ml15OneHotEncoderOpIdEEN11onnxruntime2ml15OneHotEncoderOpISsEEoffsetEmpty scale in attributes!scale_.empty()Scale size: () != () or 1/onnxruntime_src/onnxruntime/core/providers/cpu/ml/scaler.ccscale_.size() == offset_.size()Invalid argument: input has empty dimensions.Either both scale and offset can be of feature size (const T* onnxruntime::Tensor::Data() const [with T = float]const T* onnxruntime::Tensor::Data() const [with T = double]const T* onnxruntime::Tensor::Data() const [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::ml::ScalerOp::ScalerOp(const onnxruntime::OpKernelInfo&) [with T = int]onnxruntime::ml::ScalerOp::ScalerOp(const onnxruntime::OpKernelInfo&) [with T = long int]onnxruntime::ml::ScalerOp::ScalerOp(const onnxruntime::OpKernelInfo&) [with T = double]onnxruntime::ml::ScalerOp::ScalerOp(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime2ml8ScalerOpIfEEN11onnxruntime2ml8ScalerOpIdEEN11onnxruntime2ml8ScalerOpIlEEN11onnxruntime2ml8ScalerOpIiEE/onnxruntime_src/onnxruntime/core/providers/cpu/ml/svmclassifier.cc/onnxruntime_src/onnxruntime/core/providers/cpu/ml/svmclassifier.hinfo.GetAttrs("kernel_params", kernel_params).IsOK()info.GetAttrs("rho", rho_).IsOK()proba_.size() == probb_.size()info.GetAttrs("classlabels_strings", classlabels_strings_).IsOK() || info.GetAttrs("classlabels_ints", classlabels_ints_).IsOK()classlabels_strings_.size() > 0 || classlabels_ints_.size() > 0SVMClassifierLINEARkernel_typePOLYRBFkernel_paramsvectors_per_classprob_aprob_bsupport_vectorsrhocoefficients_.size() > 0T* onnxruntime::Tensor::MutableData() [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]static void onnxruntime::Gemm::ComputeGemm(CBLAS_TRANSPOSE, CBLAS_TRANSPOSE, int64_t, int64_t, int64_t, float, const T*, const T*, float, const T*, const onnxruntime::TensorShape*, T*, onnxruntime::concurrency::ThreadPool*) [with T = float; int64_t = long int]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::ml::SVMCommon::SVMCommon(const onnxruntime::OpKernelInfo&)onnxruntime::ml::SVMClassifier::SVMClassifier(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml9SVMCommonEN11onnxruntime2ml13SVMClassifierE?4 ף;n_supportsone_classSVMRegressorUnexpected mode:/onnxruntime_src/onnxruntime/core/providers/cpu/ml/svmregressor.ccnum_features == feature_count_static void onnxruntime::Gemm::ComputeGemm(CBLAS_TRANSPOSE, CBLAS_TRANSPOSE, int64_t, int64_t, int64_t, float, const T*, const T*, float, const T*, const onnxruntime::TensorShape*, T*, onnxruntime::concurrency::ThreadPool*) [with T = float; int64_t = long int]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = float]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::common::Status onnxruntime::ml::SVMRegressor::Compute(onnxruntime::OpKernelContext*) const [with T = float]onnxruntime::ml::SVMCommon::SVMCommon(const onnxruntime::OpKernelInfo&)onnxruntime::ml::SVMRegressor::SVMRegressor(const onnxruntime::OpKernelInfo&) [with T = float]ZN11onnxruntime10IAllocator13MakeUniquePtrIfEESt10unique_ptrIT_St8functionIFvPS3_EEESt10shared_ptrIS0_EmEUlPfE_N11onnxruntime2ml12SVMRegressorIfEEBRANCH_EQTreeEnsembleClassifiern_targets_or_classes > 0AVERAGESUMMINBRANCH_LEQLEAFBRANCH_LTBRANCH_GTEBRANCH_GT is already there. in tree Node (truenode).Unable to find node (falsenode). (weights).classlabels_int64sclass_weightsclass_treeidsclass_nodeidsclass_idsnodes_valuesnodes_truenodeidsnodes_treeidsnodes_nodeidsnodes_modesnodes_hitratesnodes_featureidsnodes_falsenodeidsbase_valuesaggregate_functionpredictions.size() == 2X dims is empty./onnxruntime_src/onnxruntime/core/providers/cpu/ml/tree_ensemble_common.hnodes_falsenodeids.size() == nodes_featureids.size()nodes_falsenodeids.size() == nodes_modes.size()nodes_falsenodeids.size() == nodes_nodeids.size()nodes_falsenodeids.size() == nodes_treeids.size()nodes_falsenodeids.size() == nodes_truenodeids.size()nodes_falsenodeids.size() == nodes_values.size()target_class_ids.size() == target_class_nodeids.size()target_class_ids.size() == target_class_treeids.size()One falsenode is pointing either to itself, either to another tree.nodes_missing_value_tracks_true/onnxruntime_src/onnxruntime/core/providers/cpu/ml/tree_ensemble_aggregator.hit->i < (int64_t)predictions.size()predictions.size() == predictions2.size()classes.size() == 2 || classes.size() == 1r{l4::_set_score_binary(int&, const std::vector >&) const [with ITYPE = float; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorClassifier::FinalizeScores(std::vector >&, OTYPE*, int, int64_t*) const [with ITYPE = float; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorSum::ProcessTreeNodePrediction(std::vector >&, const onnxruntime::ml::detail::TreeNodeElement&) const [with ITYPE = float; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorSum::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = float; OTYPE = float]int64_t onnxruntime::ml::detail::TreeAggregatorClassifier::_set_score_binary(int&, const std::vector >&) const [with ITYPE = double; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorClassifier::FinalizeScores(std::vector >&, OTYPE*, int, int64_t*) const [with ITYPE = double; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorSum::ProcessTreeNodePrediction(std::vector >&, const onnxruntime::ml::detail::TreeNodeElement&) const [with ITYPE = double; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorSum::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = double; OTYPE = float]int64_t onnxruntime::ml::detail::TreeAggregatorClassifier::_set_score_binary(int&, const std::vector >&) const [with ITYPE = long int; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorClassifier::FinalizeScores(std::vector >&, OTYPE*, int, int64_t*) const [with ITYPE = long int; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorSum::ProcessTreeNodePrediction(std::vector >&, const onnxruntime::ml::detail::TreeNodeElement&) const [with ITYPE = long int; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorSum::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = long int; OTYPE = float]int64_t onnxruntime::ml::detail::TreeAggregatorClassifier::_set_score_binary(int&, const std::vector >&) const [with ITYPE = int; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorClassifier::FinalizeScores(std::vector >&, OTYPE*, int, int64_t*) const [with ITYPE = int; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorSum::ProcessTreeNodePrediction(std::vector >&, const onnxruntime::ml::detail::TreeNodeElement&) const [with ITYPE = int; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorSum::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = int; OTYPE = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::ml::detail::TreeEnsembleCommon::TreeEnsembleCommon(int, int, const string&, const std::vector&, int64_t, const std::vector&, const std::vector&, const std::vector&, const std::vector&, const std::vector >&, const std::vector&, const std::vector&, const std::vector&, const std::vector&, const string&, const std::vector&, const std::vector&, const std::vector&, const std::vector&) [with ITYPE = int; OTYPE = float; std::string = std::basic_string; int64_t = long int]onnxruntime::ml::detail::TreeEnsembleCommon::TreeEnsembleCommon(int, int, const string&, const std::vector&, int64_t, const std::vector&, const std::vector&, const std::vector&, const std::vector&, const std::vector >&, const std::vector&, const std::vector&, const std::vector&, const std::vector&, const string&, const std::vector&, const std::vector&, const std::vector&, const std::vector&) [with ITYPE = long int; OTYPE = float; std::string = std::basic_string; int64_t = long int]onnxruntime::ml::detail::TreeEnsembleCommon::TreeEnsembleCommon(int, int, const string&, const std::vector&, int64_t, const std::vector&, const std::vector&, const std::vector&, const std::vector&, const std::vector >&, const std::vector&, const std::vector&, const std::vector&, const std::vector&, const string&, const std::vector&, const std::vector&, const std::vector&, const std::vector&) [with ITYPE = double; OTYPE = float; std::string = std::basic_string; int64_t = long int]onnxruntime::ml::detail::TreeEnsembleCommon::TreeEnsembleCommon(int, int, const string&, const std::vector&, int64_t, const std::vector&, const std::vector&, const std::vector&, const std::vector&, const std::vector >&, const std::vector&, const std::vector&, const std::vector&, const std::vector&, const string&, const std::vector&, const std::vector&, const std::vector&, const std::vector&) [with ITYPE = float; OTYPE = float; std::string = std::basic_string; int64_t = long int]ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIifE10ComputeAggINS1_24TreeAggregatorClassifierIifEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIifE10ComputeAggINS1_24TreeAggregatorClassifierIifEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIlfE10ComputeAggINS1_24TreeAggregatorClassifierIlfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIlfE10ComputeAggINS1_24TreeAggregatorClassifierIlfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_24TreeAggregatorClassifierIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_24TreeAggregatorClassifierIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_24TreeAggregatorClassifierIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_24TreeAggregatorClassifierIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_St23_Sp_counted_ptr_inplaceIN11onnxruntime12CPUAllocatorESaIS1_ELN9__gnu_cxx12_Lock_policyE2EEN11onnxruntime2ml22TreeEnsembleClassifierIfEEN11onnxruntime2ml22TreeEnsembleClassifierIdEEN11onnxruntime2ml22TreeEnsembleClassifierIlEEN11onnxruntime2ml22TreeEnsembleClassifierIiEETreeEnsembleRegressortarget_weightstarget_treeidstarget_nodeidstarget_idsn_targetspredictions.size() == (size_t)n_targets_or_classes_this->base_values_.size() == predictions.size()Unknown aggregation function in TreeEnsemble.void onnxruntime::ml::detail::TreeAggregatorMax::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = float; OTYPE = float]void onnxruntime::ml::detail::TreeAggregator::FinalizeScores(std::vector >&, OTYPE*, int, int64_t*) const [with ITYPE = float; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorMin::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = float; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorAverage::FinalizeScores(std::vector >&, OTYPE*, int, int64_t*) const [with ITYPE = float; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorSum::ProcessTreeNodePrediction(std::vector >&, const onnxruntime::ml::detail::TreeNodeElement&) const [with ITYPE = float; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorSum::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = float; OTYPE = float]void onnxruntime::ml::detail::TreeEnsembleCommon::compute(onnxruntime::concurrency::ThreadPool*, const onnxruntime::Tensor*, onnxruntime::Tensor*, onnxruntime::Tensor*) const [with ITYPE = float; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorMax::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = double; OTYPE = float]void onnxruntime::ml::detail::TreeAggregator::FinalizeScores(std::vector >&, OTYPE*, int, int64_t*) const [with ITYPE = double; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorMin::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = double; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorAverage::FinalizeScores(std::vector >&, OTYPE*, int, int64_t*) const [with ITYPE = double; OTYPE = float; int64_t = long int]void onnxruntime::ml::detail::TreeAggregatorSum::ProcessTreeNodePrediction(std::vector >&, const onnxruntime::ml::detail::TreeNodeElement&) const [with ITYPE = double; OTYPE = float]void onnxruntime::ml::detail::TreeAggregatorSum::MergePrediction(std::vector >&, const std::vector >&) const [with ITYPE = double; OTYPE = float]void onnxruntime::ml::detail::TreeEnsembleCommon::compute(onnxruntime::concurrency::ThreadPool*, const onnxruntime::Tensor*, onnxruntime::Tensor*, onnxruntime::Tensor*) const [with ITYPE = double; OTYPE = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_21TreeAggregatorAverageIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_21TreeAggregatorAverageIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_17TreeAggregatorSumIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_17TreeAggregatorSumIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_17TreeAggregatorMinIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_17TreeAggregatorMinIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_17TreeAggregatorMaxIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIdfE10ComputeAggINS1_17TreeAggregatorMaxIdfEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_21TreeAggregatorAverageIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_21TreeAggregatorAverageIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_17TreeAggregatorSumIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_17TreeAggregatorSumIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_17TreeAggregatorMinIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_17TreeAggregatorMinIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_17TreeAggregatorMaxIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE1_ZNK11onnxruntime2ml6detail18TreeEnsembleCommonIffE10ComputeAggINS1_17TreeAggregatorMaxIffEEEEvPNS_11concurrency10ThreadPoolEPKNS_6TensorEPSA_SD_RKT_EUllE2_N11onnxruntime2ml21TreeEnsembleRegressorIfEEN11onnxruntime2ml21TreeEnsembleRegressorIdEEZipMapInput features_per_batch[] != number of classlabels[Must provide classlabels_strings or classlabels_int64s but not both./onnxruntime_src/onnxruntime/core/providers/cpu/ml/zipmap.ccclasslabels_strings_.empty() ^ classlabels_int64s_.empty()Zipmap does not support empty dim countZipmap only supports 1D or 2D input tensorsT* OrtValue::GetMutable() [with T = std::vector >]T* OrtValue::GetMutable() [with T = std::vector, float> >]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::ml::ZipMapOp::ZipMapOp(const onnxruntime::OpKernelInfo&)N11onnxruntime2ml8ZipMapOpEMaxUnpoolUnsupported pooling size. inferred output shape:No kernel shape is set.kernel_shape_[dim] > 0Input dimension cannot be less than 3./onnxruntime_src/onnxruntime/core/providers/cpu/nn/Unpool.ccNot satisfied: X_shape.NumDimensions() >= 3 Not satisfied: I_shape == X_shape Shape must be 1 dimensional as it's tensor data of a shapeNot satisfied: tensor_shape->Shape().GetDims().size() == 1 output_shape is smaller than minimum required. output_shape:Not satisfied: given_shape.Size() >= shape.Size() Index tensor shape should be same as that of the input data tensor to unpool./onnxruntime_src/onnxruntime/core/providers/cpu/nn/unpool.hinfo.GetAttrs("kernel_shape", kernel_shape_).IsOK()pads_[dim] < kernel_shape_[dim] && pads_[dim + kernel_shape_.size()] < kernel_shape_[dim]strides_.size() == kernel_shape_.size()Pad should be smaller than kernel.T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]const T* onnxruntime::Tensor::Data() const [with T = float]Computeonnxruntime::MaxUnpool::MaxUnpool(const onnxruntime::OpKernelInfo&)N11onnxruntime9MaxUnpoolEInvalid input scale: dimension != Invalid input B: Invalid input mean: Invalid input var: /onnxruntime_src/onnxruntime/core/providers/cpu/nn/batch_norm.hInvalid input X: The rank of input X must be atleast 2. Got rank: Invalid input scale: NumDimensions() != Invalid input scale: 0th dimension != Invalid input B: NumDimensions() != Invalid input B: 0th dimension != Invalid input mean: NumDimensions() != Invalid input mean: 0th dimension != Invalid input var: NumDimensions() != Invalid input var: 0th dimension != T* onnxruntime::Tensor::MutableData() [with T = float]ComputeT* onnxruntime::Tensor::MutableData() [with T = double]Computeonnxruntime::BatchNorm::BatchNorm(const onnxruntime::OpKernelInfo&) [with T = double]onnxruntime::BatchNorm::BatchNorm(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime9BatchNormIfEEN11onnxruntime9BatchNormIdEEX num_dims does not match W num_dims.Input channels C is not equal to kernel channels * group.Output channels M is not divisible by group.kernel_shape num_dims is not compatible with W num_dims.kernel_shape is not compatible with W shape.Not enough elements in strides. Expected: Not enough elements in kernel shape. Expected: Not enough elements in dilations. Expected: Not enough elements in pads. Expected: Dilation not supported for AutoPadType::SAME_UPPER or AutoPadType::SAME_LOWER.ComputePad: pad type not supported./onnxruntime_src/onnxruntime/core/providers/cpu/nn/conv_attributes.h/onnxruntime_src/onnxruntime/core/providers/cpu/nn/conv.cc/onnxruntime_src/onnxruntime/core/util/math.h X: C: kernel channels: group: M: kernel_shape: Invalid input shape: d_iter[d_i] < d_maxUnknown AutoPadType Stringonnxruntime::AutoPadType onnxruntime::StringToAutoPadType(const string&)void onnxruntime::math::Im2colNd::operator()(const T*, const int64_t*, const int64_t*, int64_t, int64_t, const int64_t*, const int64_t*, const int64_t*, const int64_t*, int64_t, T*, bool, T) [with T = float; int64_t = long int]ComputePadAndOutputShapeInferOutputShapeComputeN11onnxruntime4ConvIfEE/onnxruntime_src/onnxruntime/core/providers/cpu/nn/conv_integer.ccIsScalarOr1ElementVector(X_Zero_Point)IsScalarOr1ElementVector(W_Zero_Point)Must be a scalar or 1D tensor or size 1.Non per-tensor quantization is not supported now.ConvIntegervoid onnxruntime::math::Im2colNd::operator()(const T*, const int64_t*, const int64_t*, int64_t, int64_t, const int64_t*, const int64_t*, const int64_t*, const int64_t*, int64_t, T*, bool, T) [with T = unsigned char; int64_t = long int]Computevirtual onnxruntime::common::Status onnxruntime::ConvInteger::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime11ConvIntegerEConvTransposeoutput_paddingoutput_shapegroup count is <= 0 filter_number: num_input_channels: *out_size >= 0pad type not supporteddim_size > 0filter number not equal to input channel number.Input channels is not divisible by group./onnxruntime_src/onnxruntime/core/providers/cpu/nn/conv_transpose_attributes.h/onnxruntime_src/onnxruntime/core/providers/cpu/nn/conv_transpose.ccvoid onnxruntime::ConvTransposeAttributes::ComputeTransposePadAndOutputShape(int64_t, int64_t, int64_t, int64_t, int64_t, onnxruntime::AutoPadType, int64_t*, int64_t*, int64_t*) constvoid onnxruntime::ConvTransposeAttributes::ComputePadsAndOutputShape(onnxruntime::TensorShape, int64_t, const std::vector&, const std::vector&, const std::vector&, const std::vector&, int64_t, std::vector*, std::vector*) constconst T* onnxruntime::Tensor::Data() const [with T = long int]PrepareForComputeDoConvTransposeN11onnxruntime13ConvTransposeIfEEratio input should have a single value./onnxruntime_src/onnxruntime/core/providers/cpu/nn/dropout_op.hratio_tensor->Shape().Size() == 1ratio must be in the range [0, 1)0.0f <= ratio_value && ratio_value < 1.0f!mask || mask->Shape() == X_shapeX and mask should have the same shapeonnxruntime::common::Status onnxruntime::Dropout::Compute(onnxruntime::OpKernelContext*) const [with T1 = float; T2 = float; bool trainable_dropout = false]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = float]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = float]onnxruntime::common::Status onnxruntime::Dropout::Compute(onnxruntime::OpKernelContext*) const [with T1 = float; T2 = double; bool trainable_dropout = false]const T* onnxruntime::Tensor::Data() const [with T = float]float onnxruntime::{anonymous}::GetRatioOrDefault(const onnxruntime::Tensor*) [with T2 = float]onnxruntime::common::Status onnxruntime::Dropout::Compute(onnxruntime::OpKernelContext*) const [with T1 = double; T2 = float; bool trainable_dropout = false]const T* onnxruntime::Tensor::Data() const [with T = bool]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = bool]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]float onnxruntime::{anonymous}::GetRatioOrDefault(const onnxruntime::Tensor*) [with T2 = double]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = double]onnxruntime::common::Status onnxruntime::Dropout::Compute(onnxruntime::OpKernelContext*) const [with T1 = double; T2 = double; bool trainable_dropout = false]N11onnxruntime7DropoutIffLb0EEEN11onnxruntime7DropoutIfdLb0EEEN11onnxruntime7DropoutIdfLb0EEEN11onnxruntime7DropoutIddLb0EEEFlatten/onnxruntime_src/onnxruntime/core/providers/cpu/nn/flatten.hinfo.GetAttr("axis", &axis_).IsOK()The rank of input tensor must be >= axisgsl::narrow_cast(X_shape.NumDimensions()) >= axisonnxruntime::Flatten::Flatten(const onnxruntime::OpKernelInfo&)int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::Flatten::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime7FlattenEInvalid input data: number of dimensions is less than 3: Invalid input scale: number of dimensions is not 1: Mismatch between input data and scale: size of scale != input channel count Invalid input B: number of dimensions is not 1: Mismatch between input data and B: size of B != input channel count /onnxruntime_src/onnxruntime/core/providers/cpu/nn/instance_norm.hop_kernel_info.GetAttr("epsilon", &epsilon_).IsOK()/onnxruntime_src/onnxruntime/core/providers/cpu/nn/instance_norm.cc vs. InstanceNormalizationconst T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::InstanceNorm::InstanceNorm(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime12InstanceNormIfEELpNormalizationp_ == 1 || p_ == 2/onnxruntime_src/onnxruntime/core/providers/cpu/nn/lp_norm.hop_kernel_info.GetAttr("axis", &axis_).IsOK()op_kernel_info.GetAttr("p", &p_).IsOK()const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::LpNorm::LpNorm(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime6LpNormIfEEsize_ > 0size_ % 2 == 1alpha_ > 0.0fbeta_ > 0.0fLRN/onnxruntime_src/onnxruntime/core/providers/cpu/nn/lrn.hinfo.GetAttr("size", &size).IsOK()/onnxruntime_src/onnxruntime/core/providers/cpu/nn/lrn.ccX->Shape().NumDimensions() == 4onnxruntime::LRN::LRN(const onnxruntime::OpKernelInfo&) [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::common::Status onnxruntime::LRN::Compute(onnxruntime::OpKernelContext*) const [with T = float]N11onnxruntime3LRNIfEEN11onnxruntime8functors4PowxIfEEt@GlobalLpPoolceil_modecount_include_padstorage_orderkernel_shape[dim] > 0input_dims.size() >= 2Unsupported AutoPad Type.Unsupported pooling size : /onnxruntime_src/onnxruntime/core/providers/cpu/nn/pool_base.hinfo.GetAttr("p", &p_).IsOK()/onnxruntime_src/onnxruntime/core/providers/cpu/nn/pool_attributes.hinfo.GetAttrs("kernel_shape", kernel_shape).IsOK()info.GetAttr("auto_pad", &auto_padding).IsOK()info.GetAttr("count_include_pad", &temp).IsOK()info.GetAttr("storage_order", &storage_order).IsOK()pads[dim] < kernel_shape[dim] && pads[dim + kernel_shape.size()] < kernel_shape[dim]strides.size() == kernel_shape.size()Dilations dimensions should match kernel shapedilations.size() == kernel_shape.size()Invalid input shape. Only N can be zero. Got:input_shape.Size() > 0 || input_shape[0] == 0/onnxruntime_src/onnxruntime/core/providers/cpu/nn/pool.ccNot satisfied: input_dims >= 3 kernel_shape num_dims is not compatible with X num_dims.Not satisfied: pooling_dims == pool_attrs_.kernel_shape.size() Not satisfied: x_shape.NumDimensions() >= 3 Computevoid onnxruntime::PoolProcessContext::init(const onnxruntime::OpKernelInfo&)onnxruntime::AutoPadType onnxruntime::StringToAutoPadType(const string&)onnxruntime::PoolAttributes::PoolAttributes(const onnxruntime::OpNodeProtoHelper&, const string&, int)T* onnxruntime::Tensor::MutableData() [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]ComputeImplT* onnxruntime::Tensor::MutableData() [with T = signed char]const T* onnxruntime::Tensor::Data() const [with T = signed char]ComputeImplT* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]ComputeImplComputeImplvoid onnxruntime::PoolAttributes::ComputeSizePadDilations(int64_t, int64_t, int64_t, int64_t*, int64_t*, int64_t, int64_t*) constvoid onnxruntime::PoolAttributes::InferOutputSize(const std::vector&, std::vector*, std::vector*) conststd::vector onnxruntime::PoolAttributes::SetOutputSize(const onnxruntime::TensorShape&, int64_t, std::vector*) constComputeN11onnxruntime8PoolBaseEN11onnxruntime10Pool1DTaskIfNS_6LpPoolEEEN11onnxruntime10Pool2DTaskIfNS_6LpPoolEEEN11onnxruntime10Pool3DTaskIfNS_6LpPoolEEEN11onnxruntime9MaxPoolV8EN11onnxruntime4PoolIfNS_7MaxPoolILi1EEEEEN11onnxruntime4PoolIfNS_11AveragePoolEEEN11onnxruntime4PoolIfNS_6LpPoolEEEN11onnxruntime13MaxPool1DTaskIfEEN11onnxruntime13MaxPool2DTaskIfEEN11onnxruntime13MaxPool3DTaskIfEEN11onnxruntime13MaxPool1DTaskIdEEN11onnxruntime13MaxPool2DTaskIdEEN11onnxruntime13MaxPool3DTaskIdEEN11onnxruntime13MaxPool1DTaskIaEEN11onnxruntime13MaxPool2DTaskIaEEN11onnxruntime13MaxPool3DTaskIaEEN11onnxruntime13MaxPool1DTaskIhEEN11onnxruntime13MaxPool2DTaskIhEEN11onnxruntime13MaxPool3DTaskIhEEQLinearConv : input zero point must be a scalar or 1D tensor of size 1/onnxruntime_src/onnxruntime/core/providers/cpu/nn/qlinearconv.ccIsScalarOr1ElementVector(X_zero_point)QLinearConv : filter zero point must be a scalar or 1D tensor of size 1IsScalarOr1ElementVector(W_zero_point)QLinearConv : result zero point must be a scalar or 1D tensor of size 1IsScalarOr1ElementVector(Y_zero_point)QLinearConv : input scale must be a scalar or 1D tensor of size 1IsScalarOr1ElementVector(X_scale)QLinearConv : filter scale must be a scalar or 1D tensor of size 1IsScalarOr1ElementVector(W_scale)QLinearConv : result scale must be a scalar or 1D tensor of size 1IsScalarOr1ElementVector(Y_scale)T4QLinearConvvoid onnxruntime::math::Im2colNd::operator()(const T*, const int64_t*, const int64_t*, int64_t, int64_t, const int64_t*, const int64_t*, const int64_t*, const int64_t*, int64_t, T*, bool, T) [with T = unsigned char; int64_t = long int]Computevirtual onnxruntime::common::Status onnxruntime::QLinearConv::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime11QLinearConvEpooled_shapepooled_shape.size() == 2pooled_height_ > 0pooled_width_ > 0spatial_scalespatial_scale_ > 0MaxRoiPoolR->Shape()[1] == 5roi_batch_id >= 0roi_batch_id < batch_size/onnxruntime_src/onnxruntime/core/providers/cpu/nn/roi_pool.hinfo.GetAttrs("pooled_shape", pooled_shape).IsOK()info.GetAttr("spatial_scale", &spatial_scale_).IsOK()/onnxruntime_src/onnxruntime/core/providers/cpu/nn/roi_pool.ccT* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::RoiPool::Compute(onnxruntime::OpKernelContext*) const [with T = float]onnxruntime::RoiPool::RoiPool(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime7RoiPoolIfEE/onnxruntime_src/onnxruntime/core/providers/cpu/nn/shrink.hop_kernel_info.GetAttr("bias", &bias_temp).IsOK()op_kernel_info.GetAttr("lambd", &lambd_temp).IsOK()ShrinklambdRet onnxruntime::utils::mltype_dispatcher_internal::CallableDispatchableRetHelper::Get() [with Ret = onnxruntime::common::Status; UnsupportedPolicy = onnxruntime::utils::mltype_dispatcher_internal::UnsupportedTypeDefaultPolicy]T* onnxruntime::Tensor::MutableData() [with T = long unsigned int]const T* onnxruntime::Tensor::Data() const [with T = long unsigned int]T* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = unsigned int]const T* onnxruntime::Tensor::Data() const [with T = unsigned int]T* onnxruntime::Tensor::MutableData() [with T = int]const T* onnxruntime::Tensor::Data() const [with T = int]T* onnxruntime::Tensor::MutableData() [with T = short unsigned int]const T* onnxruntime::Tensor::Data() const [with T = short unsigned int]T* onnxruntime::Tensor::MutableData() [with T = short int]const T* onnxruntime::Tensor::Data() const [with T = short int]T* onnxruntime::Tensor::MutableData() [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]T* onnxruntime::Tensor::MutableData() [with T = signed char]const T* onnxruntime::Tensor::Data() const [with T = signed char]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]T* onnxruntime::Tensor::MutableData() [with T = onnxruntime::BFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::BFloat16]T* onnxruntime::Tensor::MutableData() [with T = onnxruntime::MLFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::MLFloat16]onnxruntime::Shrink::Shrink(const onnxruntime::OpKernelInfo&)N11onnxruntime6ShrinkEWCHAR_TStringNormalizeris_case_sensitivecase_change_actionlocalestopwordsEmpty stopwords not allowed!sw.empty()p.secondwstr != wconv_errorConversion Erroren_US.UTF-8Failed to construct locale with name::Please, install necessary language-pack-XX and configure locales/onnxruntime_src/onnxruntime/core/providers/cpu/nn/string_normalizer.ccattribute is_case_sensitive is not setattribute case_change_action is not setattribute case_change_action has invalid valueDuplicate stopwords not allowedStopword contains invalid utf8 charsInput contains invalid utf8 chars at: Single dimension value must be greater than 0Input dimensions are either[C > 0] or [1][C > 0] allowedConversion Errorconst T* onnxruntime::Tensor::Data() const [with T = std::basic_string]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::string_normalizer::Locale::Locale(const string&)::__lambda8onnxruntime::StringNormalizer::StringNormalizer(const onnxruntime::OpKernelInfo&)N11onnxruntime16StringNormalizerETfIdfVectorizer id: p.first->second->id_ == 0mode is requiredTFTFIDFmode: min_gram_lengthmin_gram_length is requiredimpl_->min_gram_length_ > 0max_gram_length >= max_skip_countmax_skip_count is requiredimpl_->max_skip_count_ >= 0ngram_counts <= ngram_indexes must be of equal size but ngram_indexes size: Got weights of size: pool_strings!impl_->pool_strings_.empty()pool_int64s-grams(items % ngram_size == 0)Input shape must have either [C] or [B,C] dimensions with B > 0.Duplicate ngram detected, size: /onnxruntime_src/onnxruntime/core/providers/cpu/nn/tfidfvectorizer.cc is unrecognized, acceptable values are TF,IDF,TFIDFimpl_->weighting_criteria_ != kNoneRequired min_gram_length must be positive: min_gram_length >= max_gram_length required: impl_->max_gram_length_ >= impl_->min_gram_length_max_skip_count must be non-negative: status.IsOK() && !impl_->ngram_counts_.empty()min_gram_length must be inbounds of ngram_counts: size_t(impl_->min_gram_length_) <= impl_->ngram_counts_.size()max_gram_length must be inbounds of ngram_counts: size_t(impl_->max_gram_length_) <= impl_->ngram_counts_.size()status.IsOK() && !impl_->ngram_indexes_.empty()Negative ngram_indexes values are not allowedstd::all_of(impl_->ngram_indexes_.cbegin(), impl_->ngram_indexes_.cend(), [](int64_t i) { return i >= 0; })impl_->weights_.size() == impl_->ngram_indexes_.size()pool_strings must not be empty if specifiedstatus.IsOK() && !pool_int64s.empty()n-gram counts out of bounds for end_idx >= start_idx && end_idx <= total_itemsNumber of items must compose whole Non-empty ngram_counts is requiredNon-empty ngram_indexes is requirednon-empty pool_int64s is required if pool_strings not providedconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]T* onnxruntime::Tensor::MutableData() [with T = float]size_t onnxruntime::ngram_details::PopulateGrams(ForwardIter, size_t, size_t, size_t, Map&) [with K = std::basic_string; ForwardIter = __gnu_cxx::__normal_iterator*, std::vector > >; Map = std::unordered_map >, std::unique_ptr > >, std::hash >, std::equal_to > >; size_t = long unsigned int]size_t onnxruntime::ngram_details::PopulateGrams(ForwardIter, size_t, size_t, size_t, Map&) [with K = long int; ForwardIter = __gnu_cxx::__normal_iterator >; Map = std::unordered_map > >; size_t = long unsigned int]onnxruntime::TfIdfVectorizer::TfIdfVectorizer(const onnxruntime::OpKernelInfo&)*ZNK11onnxruntime15TfIdfVectorizer7ComputeEPNS_15OpKernelContextEEUllE_N11onnxruntime15TfIdfVectorizerEGGGGcenter_point_boxNonMaxSuppressionboxes_tensorscores_tensorboxes must be a 3D tensor.scores must be a 3D tensor.Not satisfied: ret.IsOK() output != nullptriou_threshold must be in range [0, 1]./onnxruntime_src/onnxruntime/core/providers/cpu/object_detection/non_max_suppression.ccNot satisfied: (iou_threshold >= 0 && iou_threshold <= 1.f) center_point_box only support 0 or 1/onnxruntime_src/onnxruntime/core/providers/cpu/object_detection/non_max_suppression.h0 == center_point_box_ || 1 == center_point_box_Not satisfied: boxes_shape.NumDimensions() == 3 Not satisfied: scores_shape.NumDimensions() == 3 boxes and scores should have same num_batches.Not satisfied: boxes_dims[0] == scores_dims[0] boxes and scores should have same spatial_dimension.Not satisfied: boxes_dims[1] == scores_dims[2] The most inner dimension in boxes must have 4 data.Not satisfied: boxes_dims[2] == 4 T* onnxruntime::Tensor::MutableData() [with T = long int]virtual onnxruntime::common::Status onnxruntime::NonMaxSuppression::Compute(onnxruntime::OpKernelContext*) constComputeGetThresholdsFromInputsconst T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]const T* onnxruntime::Tensor::Data() const [with T = long int]PrepareComputestatic onnxruntime::common::Status onnxruntime::NonMaxSuppressionBase::PrepareCompute(onnxruntime::OpKernelContext*, onnxruntime::PrepareContext&)onnxruntime::NonMaxSuppressionBase::NonMaxSuppressionBase(const onnxruntime::OpKernelInfo&)N11onnxruntime21NonMaxSuppressionBaseEN11onnxruntime17NonMaxSuppressionENull input X ptrNull rois_ptrNull batch_indices_ptrRoiAlignavgInvalid mode of value output_heightoutput_widthsampling_ratiosampling_ratio_ >= 0Number of dimensions for batch indices should be exactly 1Number of dimensions for rois should be exactly Second dimension for rois should be exactly First dimension (num_rois) of batch_indices and rois don't match specified. It should be either avg or max/onnxruntime_src/onnxruntime/core/providers/cpu/object_detection/roialign.hSampling ratio should be >=0, but it was const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::RoiAlignBase::RoiAlignBase(const onnxruntime::OpKernelInfo&)*ZN11onnxruntime12_GLOBAL__N_115RoiAlignForwardIdEEvRKNS_11TensorShapeEPKT_flllS7_lPS5_NS_12RoiAlignModeEPKlPNS_11concurrency10ThreadPoolEEUlllE_*ZN11onnxruntime12_GLOBAL__N_115RoiAlignForwardIfEEvRKNS_11TensorShapeEPKT_flllS7_lPS5_NS_12RoiAlignModeEPKlPNS_11concurrency10ThreadPoolEEUlllE_N11onnxruntime12RoiAlignBaseEN11onnxruntime8RoiAlignIfEEN11onnxruntime8RoiAlignIdEEReduceL1ReduceL2ReduceLogSumReduceLogSumExpReduceMaxReduceMinReduceProdReduceSumReduceSumSquareArgMaxArgMinkeepdimsnoop_with_empty_axesselect_last_indexInput to be reduced is nullin_dim != 0/onnxruntime_src/onnxruntime/core/providers/cpu/containers.h/onnxruntime_src/onnxruntime/core/providers/cpu/reduction/reduction_ops.hinfo.GetAttr("keepdims", &keepdims).IsOK()/onnxruntime_src/onnxruntime/core/providers/cpu/reduction/reduction_ops.ccThe input shape override's size does not match the input tensor's shape sizeinput_tensor_ptr->Shape().Size() == input_shape_override->Size()Can't reduce on dim with value of 0 if 'keepdims' is false. Invalid output shape would be produced. input_shape:bool onnxruntime::PrepareForReduce(const onnxruntime::Tensor*, onnxruntime::FastAllocVector&, int64_t&, int64_t&, const std::vector&, bool, std::vector&, bool, const onnxruntime::TensorShape*) [with T = signed char; onnxruntime::FastAllocVector = std::vector >; int64_t = long int]onnxruntime::OrtStlAllocator onnxruntime::GetAllocator(const onnxruntime::OpKernelContext&) [with T = signed char]bool onnxruntime::PrepareForReduce(const onnxruntime::Tensor*, onnxruntime::FastAllocVector&, int64_t&, int64_t&, const std::vector&, bool, std::vector&, bool, const onnxruntime::TensorShape*) [with T = unsigned char; onnxruntime::FastAllocVector = std::vector >; int64_t = long int]onnxruntime::OrtStlAllocator onnxruntime::GetAllocator(const onnxruntime::OpKernelContext&) [with T = unsigned char]bool onnxruntime::PrepareForReduce(const onnxruntime::Tensor*, onnxruntime::FastAllocVector&, int64_t&, int64_t&, const std::vector&, bool, std::vector&, bool, const onnxruntime::TensorShape*) [with T = long int; onnxruntime::FastAllocVector = std::vector >; int64_t = long int]onnxruntime::OrtStlAllocator onnxruntime::GetAllocator(const onnxruntime::OpKernelContext&) [with T = long int]bool onnxruntime::PrepareForReduce(const onnxruntime::Tensor*, onnxruntime::FastAllocVector&, int64_t&, int64_t&, const std::vector&, bool, std::vector&, bool, const onnxruntime::TensorShape*) [with T = double; onnxruntime::FastAllocVector = std::vector >; int64_t = long int]onnxruntime::OrtStlAllocator onnxruntime::GetAllocator(const onnxruntime::OpKernelContext&) [with T = double]bool onnxruntime::PrepareForReduce(const onnxruntime::Tensor*, onnxruntime::FastAllocVector&, int64_t&, int64_t&, const std::vector&, bool, std::vector&, bool, const onnxruntime::TensorShape*) [with T = int; onnxruntime::FastAllocVector = std::vector >; int64_t = long int]onnxruntime::OrtStlAllocator onnxruntime::GetAllocator(const onnxruntime::OpKernelContext&) [with T = int]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)bool onnxruntime::PrepareForReduce(const onnxruntime::Tensor*, onnxruntime::FastAllocVector&, int64_t&, int64_t&, const std::vector&, bool, std::vector&, bool, const onnxruntime::TensorShape*) [with T = float; onnxruntime::FastAllocVector = std::vector >; int64_t = long int]onnxruntime::OrtStlAllocator onnxruntime::GetAllocator(const onnxruntime::OpKernelContext&) [with T = float]onnxruntime::ReduceKernelBase::ReduceKernelBase(const onnxruntime::OpKernelInfo&, onnxruntime::optional) [with bool allow_multi_axes = false]T& onnxruntime::optional::value() [with T = long int]onnxruntime::ReduceKernelBase::ReduceKernelBase(const onnxruntime::OpKernelInfo&, onnxruntime::optional) [with bool allow_multi_axes = true]N11onnxruntime16ReduceKernelBaseILb1EEEN11onnxruntime16ReduceKernelBaseILb0EEEN11onnxruntime12ReduceKernelILb1EEEN11onnxruntime12ReduceKernelILb0EEEN11onnxruntime8ReduceL1IfEEN11onnxruntime8ReduceL1IiEEN11onnxruntime8ReduceL2IfEEN11onnxruntime8ReduceL2IiEEN11onnxruntime12ReduceLogSumIfEEN11onnxruntime12ReduceLogSumIiEEN11onnxruntime15ReduceLogSumExpIfEEN11onnxruntime15ReduceLogSumExpIiEEN11onnxruntime9ReduceMaxIfEEN11onnxruntime9ReduceMaxIiEEN11onnxruntime9ReduceMaxIlEEN11onnxruntime9ReduceMaxIaEEN11onnxruntime9ReduceMaxIhEEN11onnxruntime10ReduceMeanIfEEN11onnxruntime10ReduceMeanIiEEN11onnxruntime9ReduceMinIfEEN11onnxruntime9ReduceMinIiEEN11onnxruntime9ReduceMinIlEEN11onnxruntime9ReduceMinIaEEN11onnxruntime9ReduceMinIhEEN11onnxruntime10ReduceProdIfEEN11onnxruntime10ReduceProdIiEEN11onnxruntime10ReduceProdIlEEN11onnxruntime9ReduceSumIfEEN11onnxruntime9ReduceSumIiEEN11onnxruntime9ReduceSumIlEEN11onnxruntime9ReduceSumIdEEN11onnxruntime15ReduceSumSquareIfEEN11onnxruntime15ReduceSumSquareIiEEN11onnxruntime15ReduceSumSquareIdEEN11onnxruntime6ArgMaxIfEEN11onnxruntime6ArgMaxIiEEN11onnxruntime6ArgMaxIdEEN11onnxruntime6ArgMinIfEEN11onnxruntime6ArgMinIiEEGRUhidden_sizeactivationsactivation_alphaactivation_betaclipclip_ > 0.fforwardbidirectionallinear_before_resetcur + size <= end/onnxruntime_src/onnxruntime/core/providers/cpu/rnn/deep_cpu_gru.hinfo.GetAttr("direction", &direction).IsOK()info.GetAttr("linear_before_reset", &int64_value).IsOK()info.GetAttr("hidden_size", &int64_value).IsOK() && int64_value > 0'. Must be one of 'forward', 'reverse', or 'bidirectional'.Invalid 'direction' argument of '/onnxruntime_src/onnxruntime/core/providers/cpu/rnn/rnn_helpers.hactivation_func_names.size() == static_cast(num_directions_) * 2lda >= K && ldb >= K && ldc >= NA + (M * lda - (lda - K)) <= A_endB + (N * ldb - (ldb - K)) <= B_endC + (M * ldc - (ldc - N)) <= C_endoffset + size <= size_t(span.size())/onnxruntime_src/onnxruntime/core/providers/cpu/rnn/deep_cpu_gru.ccGRU operator does not support double yetInvalid data type for GRU operator of T* onnxruntime::rnn::detail::SafeRawPointer(typename gsl::span::iterator, typename gsl::span::iterator, size_t) [with T = float; typename gsl::span::iterator = float*; size_t = long unsigned int]const T* onnxruntime::rnn::detail::SafeRawConstPointer(typename gsl::span::const_iterator, typename gsl::span::const_iterator, size_t) [with T = float; typename gsl::span::const_iterator = const float*; size_t = long unsigned int]T* onnxruntime::rnn::detail::SafeRawPointer(gsl::span, size_t, size_t) [with T = float; size_t = long unsigned int]void onnxruntime::rnn::detail::ComputeGemm(int, int, int, float, TSpanAIter, TSpanAIter, int, TSpanBIter, TSpanBIter, int, float, TSpanCIter, TSpanCIter, int, onnxruntime::concurrency::ThreadPool*) [with TSpanAIter = float*; TSpanBIter = const float*; TSpanCIter = float*]void onnxruntime::rnn::detail::ComputeGemm(int, int, int, float, TSpanAIter, TSpanAIter, int, TSpanBIter, TSpanBIter, int, float, TSpanCIter, TSpanCIter, int, onnxruntime::concurrency::ThreadPool*) [with TSpanAIter = const float*; TSpanBIter = const float*; TSpanCIter = float*]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = int]const T* onnxruntime::Tensor::Data() const [with T = int]ComputeImplvirtual onnxruntime::common::Status onnxruntime::DeepCpuGruOp::Compute(onnxruntime::OpKernelContext*) constonnxruntime::rnn::detail::Direction onnxruntime::rnn::detail::MakeDirection(const string&)onnxruntime::DeepCpuGruOp::DeepCpuGruOp(const onnxruntime::OpKernelInfo&)N11onnxruntime12DeepCpuGruOpEZN11onnxruntime10IAllocator13MakeUniquePtrIiEESt10unique_ptrIT_St8functionIFvPS3_EEESt10shared_ptrIS0_EmEUlPiE_}. Actual:Input P must have shape { rows[input_forgetInput initial_c must have shape {/onnxruntime_src/onnxruntime/core/providers/cpu/rnn/deep_cpu_lstm.ccLSTM operator does not support double yetInvalid data type for LSTM operator of /onnxruntime_src/onnxruntime/core/providers/cpu/rnn/deep_cpu_lstm.hactivation_func_names.size() == static_cast(num_directions_) * 3ValidateInputsconst T* onnxruntime::rnn::detail::SafeRawConstPointer(gsl::span, size_t, size_t) [with T = float; size_t = long unsigned int]const T* onnxruntime::rnn::detail::SafeRawConstPointer(gsl::span, size_t, size_t) [with T = const float; size_t = long unsigned int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = int]ComputeImplvirtual onnxruntime::common::Status onnxruntime::DeepCpuLstmOp::Compute(onnxruntime::OpKernelContext*) constonnxruntime::rnn::detail::Direction onnxruntime::rnn::detail::MakeDirection(const string&)onnxruntime::DeepCpuLstmOp::DeepCpuLstmOp(const onnxruntime::OpKernelInfo&)*ZN11onnxruntimeL23ExecuteLambdaInParallelIZNS_6detail18UniDirectionalLstmIfE7ComputeERKN3gsl4spanIKfEERKNS5_IKiEEiS9_S9_RNS5_IfEESF_SF_EUliE_EEvT_iidPNS_11concurrency10ThreadPoolEEUlllE_N11onnxruntime13DeepCpuLstmOpE/onnxruntime_src/onnxruntime/core/providers/cpu/rnn/rnn.cc/onnxruntime_src/onnxruntime/core/providers/cpu/rnn/rnn.hinfo.GetAttr("direction", &direction_).IsOK()allowed_directions.find(direction_) != allowed_directions.end()info.GetAttrs("activations", activations_).IsOK()info.GetAttr("hidden_size", &hidden_size_).IsOK()activations_.size() == static_cast(num_directions)RNN op: Invalid activation attribute - allowed_activations.find(activations_[direction]) != allowed_activations.end()RNNAffineconst T* onnxruntime::Tensor::Data() const [with T = int]T* onnxruntime::Tensor::MutableData() [with T = float]Computeonnxruntime::RNN::RNN(const onnxruntime::OpKernelInfo&) [with T = float]FffffEN11onnxruntime3RNNIfEEPFffffEDump matrix: affineleakyreluthresholdedreluscaledtanhhardsigmoidsoftsignsoftplusInput B must have shape {*Input W must have shape {Input R must have shape {Expecting activation to be one of Affine, Relu, LeakyRelu, ThresholdedRelu, Tanh, ScaledTanh, Sigmoid, HardSigmoid, Elu, Softsign, Softplus. Got /onnxruntime_src/onnxruntime/core/providers/cpu/rnn/rnn_helpers.ccInvalid activation function of Invalid LSTM merge activation function of Invalid GRU reset gate activation function: Invalid GRU hidden gate activation function: Input X must have 3 dimensions only. Actual:Input sequence_lens must have shape {Invalid value/s in sequence_lens. All values must be > 0 and < seq_length. seq_length=Input initial_h must have shape {void (* onnxruntime::rnn::detail::deepcpu::GruOutputGateFuncByName(const string&))(float*, const float*, const float*, float*, int, float, float)void (* onnxruntime::rnn::detail::deepcpu::GruResetGateFuncByName(const string&))(const float*, float*, float*, int, float, float)void (* onnxruntime::rnn::detail::deepcpu::LstmMergeGatesFuncByName(const string&))(const float*, float*, const float*, float*, int, float, float)void (* onnxruntime::rnn::detail::deepcpu::ActivationFuncByName(const string&))(float*, int, float, float)std::string onnxruntime::rnn::detail::NormalizeActivationArgumentAndGetAlphaBetaCount(const string&, std::vector::const_iterator&, const const_iterator&, std::vector::const_iterator&, const const_iterator&, float&, float&)gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = int]%%%%~3a*~3a*~3a*~3a*7.7.7.7.A\3A\3A\3A\3JCy7JCy7JCy7JCy7 ': ': ': ':Y;Y;Y;Y;Ӡ5Ӡ5Ӡ5Ӡ5֕8֕8֕8֕8;;;;Y;Y;Y;Y;A%~3a*7.A\3JCy7 ':Y;Ӡ5֕8;Y; Anew_axisConcatFromSequenceMust have valid 'axis' attribute/onnxruntime_src/onnxruntime/core/providers/cpu//tensor/concat.hGot nullptr for sequence input./onnxruntime_src/onnxruntime/core/providers/cpu/sequence/concat_from_sequence.ccconst T& OrtValue::Get() const [with T = onnxruntime::TensorSeq]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::TensorSeq]virtual onnxruntime::common::Status onnxruntime::ConcatFromSequence::Compute(onnxruntime::OpKernelContext*) constonnxruntime::ConcatBase::ConcatBase(const onnxruntime::OpKernelInfo&, bool)N11onnxruntime10ConcatBaseEN11onnxruntime18ConcatFromSequenceEY != nullptrUnsupported 'dtype' value: SequenceLengthSequenceConstructSequenceInsertSequenceEraseSequenceAtSplitToSequenceSequenceEmptyI != nullptrInvalid sequence index (split_size_sum () != split_dim_size (S != nullptrGot nullptr for input tensor.), input tensor data type (num_inputs >= 1Split should be > 0split_scalar > 0SequenceEmpty: Got nullptr for output sequence/onnxruntime_src/onnxruntime/core/providers/cpu/sequence/sequence_ops.ccSequenceLength: Got nullptr for output tensorGot nullptr input for index tensor) specified for sequence of size (SequenceAt: Got nullptr for output tensorInvalid data type for split tensor Data type of the input tensor MUST be same as that of the input sequence. Sequence data type (SequenceInsert: Got nullptr for output sequenceSequenceErase: Got nullptr for output sequenceSequenceConstruct: Got nullptr for output sequenceViolation of the requirment that all input tensors must have the same data type.Invalid value in 'split' input. All values must be >= 0std::all_of(split_sizes.cbegin(), split_sizes.cend(), [](int64_t value) { return value >= 0; })SplitToSequence operator does not support < ,  | l < < 4 int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]ComputeImplonnxruntime::common::Status onnxruntime::SplitToSequence::ComputeImpl(onnxruntime::OpKernelContext&, const onnxruntime::Tensor&, const onnxruntime::Tensor*) const [with T = std::basic_string]T* onnxruntime::Tensor::MutableData() [with T = int]ComputeImplonnxruntime::common::Status onnxruntime::SplitToSequence::ComputeImpl(onnxruntime::OpKernelContext&, const onnxruntime::Tensor&, const onnxruntime::Tensor*) const [with T = int]T* onnxruntime::Tensor::MutableData() [with T = double]ComputeImplonnxruntime::common::Status onnxruntime::SplitToSequence::ComputeImpl(onnxruntime::OpKernelContext&, const onnxruntime::Tensor&, const onnxruntime::Tensor*) const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = float]void onnxruntime::GetSplitSizesInput(const onnxruntime::Tensor&, std::vector&)int64_t onnxruntime::GetScalarSplitInput(const onnxruntime::Tensor&)ComputeImplonnxruntime::common::Status onnxruntime::SplitToSequence::ComputeImpl(onnxruntime::OpKernelContext&, const onnxruntime::Tensor&, const onnxruntime::Tensor*) const [with T = float]virtual onnxruntime::common::Status onnxruntime::SplitToSequence::Compute(onnxruntime::OpKernelContext*) constvirtual onnxruntime::common::Status onnxruntime::SequenceConstruct::Compute(onnxruntime::OpKernelContext*) constvirtual onnxruntime::common::Status onnxruntime::SequenceErase::Compute(onnxruntime::OpKernelContext*) constvirtual onnxruntime::common::Status onnxruntime::SequenceInsert::Compute(onnxruntime::OpKernelContext*) constCreateCopyAndAppendCpuTensorvoid onnxruntime::TensorSeq::SetType(onnxruntime::MLDataType)T* OrtValue::GetMutable() [with T = onnxruntime::TensorSeq]virtual onnxruntime::common::Status onnxruntime::SequenceEmpty::Compute(onnxruntime::OpKernelContext*) constconst onnxruntime::Tensor& onnxruntime::TensorSeq::Get(size_t) constint64_t onnxruntime::GetSeqIdx(const onnxruntime::Tensor&)virtual onnxruntime::common::Status onnxruntime::SequenceAt::Compute(onnxruntime::OpKernelContext*) constT* onnxruntime::Tensor::MutableData() [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::TensorSeq]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::TensorSeq]virtual onnxruntime::common::Status onnxruntime::SequenceLength::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime14SequenceLengthEN11onnxruntime10SequenceAtEN11onnxruntime13SequenceEmptyEN11onnxruntime14SequenceInsertEN11onnxruntime13SequenceEraseEN11onnxruntime17SequenceConstructEN11onnxruntime15SplitToSequenceEAttribute to is not set.-INFstodstoistoulstolstoull/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/cast_op.ccUnsupported type in cast op: from String to void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = bool; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = long unsigned int; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = long int; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = unsigned int; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = int; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = short unsigned int; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = short int; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = unsigned char; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = signed char; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = double; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcherWithCarriedType::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; TCarried = float; Fn = onnxruntime::Cast::Dispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]void onnxruntime::utils::MLTypeCallDispatcher::Invoke(Args&& ...) const [with Args = {int&, const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; Fn = onnxruntime::Cast::SrcDispatcher; Types = {float, double, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]T* onnxruntime::Tensor::MutableData() [with T = onnxruntime::BFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::BFloat16]const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = onnxruntime::MLFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::MLFloat16]void onnxruntime::{anonymous}::CastFromStringData(const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&) [with DstType = bool]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = bool]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = long unsigned int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = long int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = unsigned int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = short unsigned int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = short int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = unsigned char]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = signed char]void onnxruntime::{anonymous}::CastFromStringData(const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&) [with DstType = onnxruntime::MLFloat16]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = onnxruntime::MLFloat16]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = double]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = float]void onnxruntime::utils::MLTypeCallDispatcher::Invoke(Args&& ...) const [with Args = {bool&, const onnxruntime::Tensor&, onnxruntime::Tensor&, const onnxruntime::TensorShape&}; Fn = onnxruntime::Cast::StringDispatcher; Types = {float, double, onnxruntime::MLFloat16, signed char, unsigned char, short int, short unsigned int, int, unsigned int, long int, long unsigned int, bool}]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::Cast::Cast(const onnxruntime::OpKernelInfo&)N11onnxruntime4CastEN11onnxruntime9MLFloat16E8OOOOAAAACompress/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/compress.ccaxes_right_stride >= 0 && static_cast(axes_right_stride) < std::numeric_limits::max()const T* onnxruntime::Tensor::Data() const [with T = bool]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)virtual onnxruntime::common::Status onnxruntime::Compress::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime8CompressECannot concatenate scalars got: /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/concat.h/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/concat.ccNot satisfied: input_count >= 1 Not satisfied: inputs_0_rank > 0 Ranks of input data are different, cannot concatenate them. expected rank: inputs_n_rank == inputs_0_rankNon concat axis dimensions must match: Axis has mismatched dimensions of Not satisfied: dim_value == inputs_0_dims[axis_index] Not satisfied: data_n.DataType() == p.output_tensor->DataType() const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)onnxruntime::common::Status onnxruntime::ConcatBase::PrepareForCompute(onnxruntime::OpKernelContext*, const std::vector&, onnxruntime::Prepare&) constPrepareForComputeonnxruntime::ConcatBase::ConcatBase(const onnxruntime::OpKernelInfo&, bool)N11onnxruntime6ConcatEx_ptr != nullptr/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/dynamicquantizelinear.ccT* onnxruntime::Tensor::MutableData() [with T = unsigned char]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::DynamicQuantizeLinear::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]N11onnxruntime21DynamicQuantizeLinearIhEECEyeLikeT1 != nullptrEyeLike : Input tensor dimension is not 2/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/eye_like.ccD4DDDD$DDDDT* onnxruntime::Tensor::MutableData() [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = long unsigned int]T* onnxruntime::Tensor::MutableData() [with T = int]T* onnxruntime::Tensor::MutableData() [with T = double]T* onnxruntime::Tensor::MutableData() [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::EyeLike::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime7EyeLikeETindMissing/Invalid 'axis' attribute value/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/gather.hindices element out of data bounds, idx= must be within the inclusive range [/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/gather.ccType for Tind not supported yet in Gather.const T* onnxruntime::Tensor::Data() const [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = int]Computeint64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::GatherBase::GatherBase(const onnxruntime::OpKernelInfo&)N11onnxruntime10GatherBaseEN11onnxruntime6GatherEZN11onnxruntime14GatherCopyDataIiEENS_6common6StatusEPKNS_6TensorEPKhPhbmlllllRKNS_11TensorShapeElPNS_11concurrency10ThreadPoolEEUlllE0_ZN11onnxruntime14GatherCopyDataIlEENS_6common6StatusEPKNS_6TensorEPKhPhbmlllllRKNS_11TensorShapeElPNS_11concurrency10ThreadPoolEEUlllE0_GatherElements]. Actual value is , /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/gather_elements.hGatherElements op: Cannot operate on scalar inputGatherElements op: Rank of input 'data' needs to be equal to rank of input 'indices'GatherElements op: 'indices' shape should have values within bounds of 'data' shape. Invalid value in indices shape is: GatherElements op: Data type for 'indices' tensor must be 'int32_t' and 'int64_t'/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/gather_elements.ccGatherElements op: Value in indices must be within bounds [GatherElements op: Data type of input 'data' should match the data type of the outputstd::vector onnxruntime::parse_and_validate_indices_tensor(const onnxruntime::Tensor*, int64_t, const onnxruntime::TensorShape&)T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::GatherElements::GatherElements(const onnxruntime::OpKernelInfo&)N11onnxruntime14GatherElementsEbatch_dimsGatherNDinvalid index found, index = indices tensor must has rank larger than 0GatherNDBase PrepareForCompute: Input count mismatch/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/gather_nd.ccinput_tensor != nullptr && indices_tensor != nullptrlast dimension of indices must not be larger than rank of input tensorindices tensor data type not supportedconst T* onnxruntime::Tensor::Data() const [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::GatherND::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime12GatherNDBaseE*ZNK11onnxruntime8GatherND12GatherNumberERKNS_12GatherNDBase7PrepareEPNS_11concurrency10ThreadPoolEEUlllE0_*ZNK11onnxruntime8GatherND12GatherStringERKNS_12GatherNDBase7PrepareEPNS_11concurrency10ThreadPoolEEUlllE0_N11onnxruntime8GatherNDEZNK11onnxruntime12GatherNDBase17PrepareForComputeIiEENS_6common6StatusERKNS_11TensorShapeEPKNS_6TensorElRNS0_7PrepareEPNS_11concurrency10ThreadPoolEEUlllE0_ZNK11onnxruntime12GatherNDBase17PrepareForComputeIlEENS_6common6StatusERKNS_11TensorShapeEPKNS_6TensorElRNS0_7PrepareEPNS_11concurrency10ThreadPoolEEUlllE0_Tensor type mismatch.type == dtype_/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/identity_op.honnxruntime::common::Status onnxruntime::IdentityOp::Compute(onnxruntime::OpKernelContext*) const [with bool is_dropout = true]void* onnxruntime::Tensor::MutableDataRaw(onnxruntime::MLDataType)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::IdentityOp::Compute(onnxruntime::OpKernelContext*) const [with bool is_dropout = false]N11onnxruntime10IdentityOpILb1EEEN11onnxruntime10IdentityOpILb0EEEdetect_positivedetect_negativeIsInfFailed to obtain detect_positive/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/isinf.ccFailed to obtain detect_negativeData type X must be float or double, but instead got const T* onnxruntime::Tensor::Data() const [with T = double]const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = bool]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::IsInf::Compute(onnxruntime::OpKernelContext*) constonnxruntime::IsInf::IsInf(const onnxruntime::OpKernelInfo&)N11onnxruntime5IsInfEIsNaNNull input ptrconst T* onnxruntime::Tensor::Data() const [with T = onnxruntime::MLFloat16]T* onnxruntime::Tensor::MutableData() [with T = bool]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime5IsNaNIfEEN11onnxruntime5IsNaNINS_9MLFloat16EEE||||MeanVarianceNormalizationInput is expected to have four dimensions corresponding to [N,C,H,W]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime27MeanVarianceNormalization_0IfEEN11onnxruntime27MeanVarianceNormalization_1IfEE/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/nonzero_op.ccX input is required!const T* onnxruntime::Tensor::Data() const [with T = bool]onnxruntime::common::Status onnxruntime::NonZero::Compute(onnxruntime::OpKernelContext*) const [with T = bool]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]onnxruntime::common::Status onnxruntime::NonZero::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = int]onnxruntime::common::Status onnxruntime::NonZero::Compute(onnxruntime::OpKernelContext*) const [with T = int]const T* onnxruntime::Tensor::Data() const [with T = long int]onnxruntime::common::Status onnxruntime::NonZero::Compute(onnxruntime::OpKernelContext*) const [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = float]onnxruntime::common::Status onnxruntime::NonZero::Compute(onnxruntime::OpKernelContext*) const [with T = float]N11onnxruntime7NonZeroIbEEN11onnxruntime7NonZeroIhEEN11onnxruntime7NonZeroIiEEN11onnxruntime7NonZeroIlEEN11onnxruntime7NonZeroIfEEOneHotDepth is negative.Invalid argument for values; either it's rank is more than 1 or it has more than 2 elementsInvalid argument for depth; it's not a scalar./onnxruntime_src/onnxruntime/core/providers/cpu/tensor/onehot.ccComputeComputeComputeComputeComputeComputeComputeComputeComputeComputeComputeint64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)N11onnxruntime8OneHotOpIlllEEN11onnxruntime8OneHotOpIfllEEN11onnxruntime8OneHotOpIlSslEEN11onnxruntime8OneHotOpIfSslEEN11onnxruntime8OneHotOpIlflEEN11onnxruntime8OneHotOpIifiEEN11onnxruntime8OneHotOpIiffEEN11onnxruntime8OneHotOpIfffEEN11onnxruntime8OneHotOpIlifEEN11onnxruntime8OneHotOpIlffEEN11onnxruntime8OneHotOpIlfiEE>Unexpected mode of Padreflectedgedata_rank > 0data_rank * 2 == pads.size()pads_size == 2 * data_rankCannot use 'reflect' mode to pad dimension with a value of 0. Input shape:Invalid 'mode' attribute value/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/pad.hInvalid 'pads' attribute valueInput tensor has no dimensions/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/pad.cc'pads' has wrong number of valuesPads tensor should be an INT64 tensorpads_tensor.IsDataType()pads_tensor_dims.size() == 1 || (pads_tensor_dims.size() == 2 && pads_tensor_dims[0] == 1)Pads tensor size should be equal to twice the input dimension count value_tensor->DataType() == data_type && value_tensor->Shape().Size() == 1Unsupported input data type of Pads tensor should be a 1D tensor of shape [2 * input_rank] or a 2D tensor of shape [1, 2 * input_rank]Value tensor should be a 1D tensor of size 1 with the same type as that of the input tensorPadInputWithDimValueOfZeroonnxruntime::common::Status onnxruntime::PadImpl(onnxruntime::OpKernelContext*, const std::vector&, const std::vector&, const onnxruntime::Mode&, T) [with T = unsigned char]PadInputWithDimValueOfZeroonnxruntime::common::Status onnxruntime::PadImpl(onnxruntime::OpKernelContext*, const std::vector&, const std::vector&, const onnxruntime::Mode&, T) [with T = long unsigned int]void onnxruntime::SliceIteratorBase::Init(const std::vector&, gsl::span, gsl::span)onnxruntime::SliceSkips::SliceSkips(const onnxruntime::TensorShape&, gsl::span, gsl::span)PadInputWithDimValueOfZeroonnxruntime::common::Status onnxruntime::PadImpl(onnxruntime::OpKernelContext*, const std::vector&, const std::vector&, const onnxruntime::Mode&, T) [with T = unsigned int]onnxruntime::PadValue onnxruntime::PadValueFromFloat(float, onnxruntime::MLDataType)virtual onnxruntime::common::Status onnxruntime::Pad::Compute(onnxruntime::OpKernelContext*) constonnxruntime::PadBase::PadBase(const onnxruntime::OpKernelInfo&)N11onnxruntime7PadBaseEN11onnxruntime3PadEDequantizeLinear/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/quantize_linear.cczero_point_ptr == nullptr || IsScalarOr1ElementVector(zero_point_ptr)scale.Shape().NumDimensions() == 1 && scale.Shape()[0] == broadcast_dimzero_point_ptr == nullptr || (zero_point_ptr->Shape().NumDimensions() == 1 && zero_point_ptr->Shape()[0] == broadcast_dim)x_zero_point must be null or a scalar or 1D tensor or size 1.scale must be 1D tensor with size x_zero_point must be null or 1D tensor with size T* onnxruntime::Tensor::MutableData() [with T = float]T* onnxruntime::Tensor::MutableData() [with T = signed char]const T* onnxruntime::Tensor::Data() const [with T = signed char]T* onnxruntime::Tensor::MutableData() [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)void onnxruntime::PrepareForQDQ(const onnxruntime::TensorShape&, const onnxruntime::Tensor&, const onnxruntime::Tensor*, int64_t, int64_t&, int64_t&, int64_t&)N11onnxruntime16DequantizeLinearIaEEN11onnxruntime16DequantizeLinearIhEEN11onnxruntime14QuantizeLinearIaEEN11onnxruntime14QuantizeLinearIhEEAttribute shape is not set.requested_shape[i] >= -1unknown_dim == -1, requested shape:Reshape_1/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/reshape.hA dimension cannot be less than -1, got /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/reshape_helper.hAt most one dimension can be -1.The dimension with value zero exceeds the dimension size of the input tensor.i < input_shape.NumDimensions()The input tensor cannot be reshaped to the requested shape. Input shape:size != 0 && (input_shape.Size() % size) == 0gsl::narrow_cast(input_shape.Size()) == sizeA shape tensor must be a vector tensor.shapeTensor->Shape().NumDimensions() == 1onnxruntime::Reshape_1::Reshape_1(const onnxruntime::OpKernelInfo&)onnxruntime::ReshapeHelper::ReshapeHelper(const onnxruntime::TensorShape&, std::vector&)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]const T* onnxruntime::Tensor::Data() const [with T = long int]virtual onnxruntime::common::Status onnxruntime::Reshape::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime7ReshapeEN11onnxruntime9Reshape_1EResize operatorUpsample operatorscale >= 1scale > 0cubicmode attribute is . It can only be (default) or extrapolation_valuepytorch_half_pixeltf_half_pixel_for_nnalign_cornerstf_crop_and_resizecoordinate_transform_mode:[] is not supportted!round_prefer_floorround_prefer_ceilnearest_mode:[] is not supported!cubic_coeff_aexclude_outsidescales_size > 0Scale value should be greater than or equal to 1./onnxruntime_src/onnxruntime/core/providers/cpu/tensor/upsample.hScale value should be greater than 0.'Linear' mode only support 2-D inputs or 3-D inputs ('Bilinear', 'Trilinear') or 4-D inputs or 5-D inputs with the corresponding outermost 2 scale values being 1 in the scales.size() == 2 || (scales.size() == 4 && scales[0] == 1 && scales[1] == 1) || scales.size() == 3 || (scales.size() == 5 && scales[0] == 1 && scales[1] == 1)'Cubic' mode only support 2-D inputs ('Bicubic') or 4-D inputs with the corresponding outermost 2 scale values being 1 in the scales.size() == 2 || (scales.size() == 4 && scales[0] == 1 && scales[1] == 1)info.GetAttr("mode", &mode).IsOK()info.GetAttrs("scales", scales_).IsOK()exclude_outside can be set to 1 only when mode is CUBIC. Current mode is set to scales size should be greater than 0.const T* onnxruntime::Tensor::Data() const [with T = float]void onnxruntime::UpsampleBase::ParseScalesData(const onnxruntime::Tensor*, std::vector&) constonnxruntime::ResizeNearestMode onnxruntime::UpsampleBase::StringToNearestMode(const string&)onnxruntime::ResizeCoordinateTransformationMode onnxruntime::UpsampleBase::StringToCoordinateTransformationMode(const string&)void onnxruntime::UpsampleBase::ScalesValidation(const std::vector&, onnxruntime::UpsampleMode) constonnxruntime::UpsampleMode onnxruntime::UpsampleBase::StringToUpsampleMode(const string&)onnxruntime::UpsampleBase::UpsampleBase(onnxruntime::OpKernelInfo)N11onnxruntime12UpsampleBaseEN11onnxruntime8UpsampleIfEEN11onnxruntime6ResizeIfEEN11onnxruntime8UpsampleIiEEN11onnxruntime6ResizeIiEEN11onnxruntime8UpsampleIhEEN11onnxruntime6ResizeIhEEZN11onnxruntime12UpsampleBase42GetOriginalCoordinateFromResizedCoordinateENS_34ResizeCoordinateTransformationModeEEUlffffffE_ZN11onnxruntime12UpsampleBase42GetOriginalCoordinateFromResizedCoordinateENS_34ResizeCoordinateTransformationModeEEUlffffffE0_ZN11onnxruntime12UpsampleBase42GetOriginalCoordinateFromResizedCoordinateENS_34ResizeCoordinateTransformationModeEEUlffffffE1_ZN11onnxruntime12UpsampleBase42GetOriginalCoordinateFromResizedCoordinateENS_34ResizeCoordinateTransformationModeEEUlffffffE2_ZN11onnxruntime12UpsampleBase42GetOriginalCoordinateFromResizedCoordinateENS_34ResizeCoordinateTransformationModeEEUlffffffE3_ZN11onnxruntime12UpsampleBase42GetOriginalCoordinateFromResizedCoordinateENS_34ResizeCoordinateTransformationModeEEUlffffffE4_ZN11onnxruntime12UpsampleBase27GetNearestPixelFromOriginalENS_17ResizeNearestModeEEUlfbE_ZN11onnxruntime12UpsampleBase27GetNearestPixelFromOriginalENS_17ResizeNearestModeEEUlfbE0_ZN11onnxruntime12UpsampleBase27GetNearestPixelFromOriginalENS_17ResizeNearestModeEEUlfbE1_ZN11onnxruntime12UpsampleBase27GetNearestPixelFromOriginalENS_17ResizeNearestModeEEUlfbE2_ZN11onnxruntime12UpsampleBase27GetNearestPixelFromOriginalENS_17ResizeNearestModeEEUlfbE3_@?batch_axis. Must be 0 or 1Invalid batch_axis of batch_axis < 2Invalid time_axis of time_axis < 2batch_axis != time_axisReverseSequenceUnknown tensor type of . batch_size=/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/reverse_sequence.hinfo.GetAttr("batch_axis", &batch_axis).IsOK()info.GetAttr("time_axis", &time_axis).IsOK()time_axis and batch_axis must have different values but both are /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/reverse_sequence.ccsequence_lens shape must be {batch_size}. Got:AºF R뤽mQAA'gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = onnxruntime::BFloat16]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = onnxruntime::BFloat16]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = onnxruntime::MLFloat16]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = onnxruntime::MLFloat16]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = long unsigned int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = long unsigned int]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = long int]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = unsigned int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = unsigned int]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = int]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = short unsigned int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = short unsigned int]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = short int]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = short int]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = unsigned char]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = unsigned char]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = signed char]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = signed char]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = std::basic_string]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = std::basic_string]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = double]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = double]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = bool]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = bool]gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = float]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = float]virtual onnxruntime::common::Status onnxruntime::ReverseSequenceOp::Compute(onnxruntime::OpKernelContext*) constonnxruntime::ReverseSequenceOp::ReverseSequenceOp(const onnxruntime::OpKernelInfo&)N11onnxruntime17ReverseSequenceOpE/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/scatter.ccdata type is different from updates typeIndices and updates must have the same rankIndices vs updates dimensions differs at position=Indices must have the same rank as Input. Indices rank=Expecting indices to be either int32_t or int64_tScatterElementsScatter. Input rank=Indices dim= at pos= is greater than input dim=)aa```p`K`&``___s_Q_)a)a)_ccxcSc.c cbbbubPb+bbaccaint64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)virtual onnxruntime::common::Status onnxruntime::Scatter::Compute(onnxruntime::OpKernelContext*) constonnxruntime::Scatter::Scatter(const onnxruntime::OpKernelInfo&)N11onnxruntime7ScatterEScatterNDinput_tensor != nullptrindice_tensor != nullptrupdate_tensor != nullptr, indices shape: updates shape: , data shape: /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/scatter_nd.ccinput tensor and indices tensor must has rank larger than 0. updates tensor should have shape equal to indices.shape[:-1] + data.shape[indices.shape[-1]:]. invalid indice found, indice = T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::ScatterNDBase::PrepareForCompute(onnxruntime::OpKernelContext*, onnxruntime::ScatterNDBase::Prepare&) const [with Tind = long int]ComputeN11onnxruntime13ScatterNDBaseE*ZNK11onnxruntime9ScatterND13ScatterNumberERKNS_13ScatterNDBase7PrepareEPNS_11concurrency10ThreadPoolEEUlllE0_*ZNK11onnxruntime9ScatterND13ScatterStringERKNS_13ScatterNDBase7PrepareEPNS_11concurrency10ThreadPoolEEUlllE0_N11onnxruntime9ScatterNDET* onnxruntime::Tensor::MutableData() [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime5ShapeESizeT* onnxruntime::Tensor::MutableData() [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime4SizeEUnexpected element size of output == output_endStarts must be a 1-D arrayEnds must be a 1-D array'axes' has duplicates'step' value cannot be 0Cannot slice scalars/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/slice.hhas_starts && has_ends && attr_starts_.size() == attr_ends_.size()!has_axes || attr_axes_.size() == attr_starts_.size()Missing or invalid starts and ends attributeInvalid axes attribute, axes attribute (if present) should have the same size as starts/ends attributes/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/slice.ccstart_tensor.Shape().NumDimensions() == 1ends_tensor.Shape().NumDimensions() == 1start_tensor.Shape() == ends_tensor.Shape()nullptr == axes_tensor || start_tensor.Shape() == axes_tensor->Shape()nullptr == steps_tensor || start_tensor.Shape() == steps_tensor->Shape()Data type for starts and ends inputs' need to be int32_t or int64_t, but instead got Starts and ends shape mismatchStarts and axes shape mismatchStarts and steps shape mismatch'axes' has an axis outside of the tensor dimension countMissing input tensor to be processedonnxruntime::SliceImpl(onnxruntime::OpKernelContext*, const onnxruntime::Tensor&, onnxruntime::SliceOp::PrepareForComputeMetadata&) [with T = unsigned char]::__lambda10onnxruntime::SliceImpl(onnxruntime::OpKernelContext*, const onnxruntime::Tensor&, onnxruntime::SliceOp::PrepareForComputeMetadata&) [with T = short unsigned int]::__lambda10onnxruntime::SliceImpl(onnxruntime::OpKernelContext*, const onnxruntime::Tensor&, onnxruntime::SliceOp::PrepareForComputeMetadata&) [with T = long unsigned int]::__lambda10onnxruntime::SliceImpl(onnxruntime::OpKernelContext*, const onnxruntime::Tensor&, onnxruntime::SliceOp::PrepareForComputeMetadata&) [with T = unsigned int]::__lambda10void* onnxruntime::SliceIteratorBase::CopyInnermostAxisNonSolitaryInnerStep(void*)onnxruntime::SliceImpl(onnxruntime::OpKernelContext*, const onnxruntime::Tensor&, onnxruntime::SliceOp::PrepareForComputeMetadata&) [with T = std::basic_string]::__lambda10Computeonnxruntime::common::Status onnxruntime::SliceBase::Compute(onnxruntime::OpKernelContext*) conststatic void onnxruntime::SliceBase::FillVectorsFromInput(const onnxruntime::Tensor&, const onnxruntime::Tensor&, const onnxruntime::Tensor*, const onnxruntime::Tensor*, std::vector&, std::vector&, std::vector&, std::vector&)int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)onnxruntime::SliceBase::SliceBase(const onnxruntime::OpKernelInfo&, bool)N11onnxruntime9SliceBaseEN11onnxruntime6Slice1EN11onnxruntime7Slice10EblocksizeCRDDCRSpaceToDepthDepthToSpaceAttribute blocksize is not set./onnxruntime_src/onnxruntime/core/providers/cpu/tensor/space_depth_ops.hinfo.GetAttr("blocksize", &blocksize_).IsOK()DepthToSpace op: only 'DCR' and 'CRD' modes are supported/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/space_depth_ops.ccinput.Shape().NumDimensions() == 4input_depth % (blocksize_ * blocksize_) == 0input_shape.NumDimensions() == 4input_height % this->blocksize_ == 0input_width % this->blocksize_ == 0onnxruntime::common::Status onnxruntime::DepthToSpace::Compute(onnxruntime::OpKernelContext*) const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::SpaceToDepth::Compute(onnxruntime::OpKernelContext*) const [with T = float]onnxruntime::DepthToSpace::DepthToSpace(const onnxruntime::OpKernelInfo&) [with T = float]onnxruntime::SpaceDepthBase::SpaceDepthBase(const onnxruntime::OpKernelInfo&)N11onnxruntime14SpaceDepthBaseEN11onnxruntime12SpaceToDepthIfEEN11onnxruntime12DepthToSpaceIfEEe@*> Axis= NumOutputs= Input shape=Invalid value in 'split' attribute. All values must be > 0/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/split.hstd::all_of(split_sizes_.cbegin(), split_sizes_.cend(), [](int64_t value) { return value >= 0; })Input cannot be split evenly on selected axis. Input shape=Cannot split using values in 'split' attribute. Axis= Num entries in 'split' (must equal number of outputs) was Sum of sizes in 'split' (must equal size of selected axis) was /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/split.ccSplit operator does not support T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]const T* onnxruntime::Tensor::Data() const [with T = std::basic_string]ComputeImplT* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = long int]ComputeImplT* onnxruntime::Tensor::MutableData() [with T = int]const T* onnxruntime::Tensor::Data() const [with T = int]ComputeImplT* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]ComputeImplconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::Split::Compute(onnxruntime::OpKernelContext*) constint64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)onnxruntime::SplitBase::SplitBase(const onnxruntime::OpKernelInfo&)N11onnxruntime9SplitBaseEN11onnxruntime5SplitE. shape= must be 1 instead of Dimension of input input_shape[i] == 1/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/squeeze.hint64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)static std::vector onnxruntime::SqueezeBase::ComputeOutputShape(const onnxruntime::TensorShape&, const onnxruntime::TensorShape&)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime11SqueezeBaseEN11onnxruntime7SqueezeETileInput count of Tile OP mismatch, the first one is emptyInput count of Tile OP mismatch, the second one is emptythe tensor to be tiled using Tile OP must be atleast 1 dimensional'repeat' input tensor must be 1 dimensional'repeat' input tensor must have the same length as the 'input' tensorTile doesn't have an implementation yet for the type: /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/tile.ccconst T* onnxruntime::Tensor::Data() const [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::Tile::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime4TileE is outside range. is repeated.[ perm: /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/transpose.hv >= 0 && static_cast(v) <= std::numeric_limits::max()Attribute perm of Transpose has an invalid value. Value Mismatched data types between input and output Tensors. /onnxruntime_src/onnxruntime/core/providers/cpu/tensor/transpose.cc does not align with rank of input data: onnxruntime::TransposeBase::TransposeBase(const onnxruntime::OpKernelInfo&)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::Transpose::Compute(onnxruntime::OpKernelContext*) constT* onnxruntime::Tensor::MutableData() [with T = std::basic_string]const T* onnxruntime::Tensor::Data() const [with T = std::basic_string]N11onnxruntime13TransposeBaseEN11onnxruntime9TransposeEUniqueUnsupported tensor type of gsl::span onnxruntime::Tensor::MutableDataAsSpan() [with T = signed char]gsl::span onnxruntime::Tensor::DataAsSpan() const [with T = signed char]N11onnxruntime6UniqueE'axes' has a duplicate axisnullptr != p.output_tensorMissing/Invalid 'axes' attribute value/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/unsqueeze.hinfo.GetAttrs("axes", axes_).IsOK()/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/unsqueeze.cc'axes' has an out of range axisComputeint64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::common::Status onnxruntime::UnsqueezeBase::PrepareCompute(onnxruntime::OpKernelContext*, onnxruntime::UnsqueezeBase::Prepare&) constonnxruntime::UnsqueezeBase::UnsqueezeBase(const onnxruntime::OpKernelInfo&)N11onnxruntime13UnsqueezeBaseEN11onnxruntime9UnsqueezeEDimension: Input dim value: Output dim value: output_dims[i] == 0Resize: unexpected modeUpsample: unexpected modeInvalid roi input index.roi_input_idx_ > 0scales != nullptrsizes == nullptrInput dim is zero but required output dim is non-zero. Cannot scale 0 by any factor to generate a non-zero value. Resize: input/output value is nullptrUpsample: input/output value is nullptrResize: input/output value's dimension mismatchUpsample: input/output value's dimension mismatchResize: input shape needs to be at least a single dimensionUpsample: input shape needs to be at least a single dimension.Resize: input tensor's dimension does not match the scales.Upsample: input tensor's dimension does not match the scales./onnxruntime_src/onnxruntime/core/providers/cpu/tensor/upsample.ccRank of input and output tensor should be same.output_dims.size() == dims.size()Resize: size of roi array should be 2 * N where N is the rank of input tensor X.Only one of scales or sizes must be provided as input.sizes != nullptr && sizes->Shape().Size() != 0Resize: input tensor's rank does not match the output tensor's rank.X->Shape().GetDims().size() == output_dims.size()Either scales or sizes MUST be provided as input.BaseComputeonnxruntime::common::Status onnxruntime::Upsample::BaseCompute(onnxruntime::OpKernelContext*, const std::vector&, const std::vector&, const std::vector&) const [with T = float]onnxruntime::common::Status onnxruntime::Upsample::Compute(onnxruntime::OpKernelContext*) const [with T = float]BaseComputeonnxruntime::common::Status onnxruntime::Upsample::BaseCompute(onnxruntime::OpKernelContext*, const std::vector&, const std::vector&, const std::vector&) const [with T = int]onnxruntime::common::Status onnxruntime::Upsample::Compute(onnxruntime::OpKernelContext*) const [with T = int]BaseComputeonnxruntime::common::Status onnxruntime::Upsample::BaseCompute(onnxruntime::OpKernelContext*, const std::vector&, const std::vector&, const std::vector&) const [with T = unsigned char]void onnxruntime::UpsampleBase::ParseScalesDataFromOutputSize(const std::vector&, const std::vector&, std::vector&) constonnxruntime::common::Status onnxruntime::Upsample::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = float]void onnxruntime::UpsampleBase::ParseScalesData(const onnxruntime::Tensor*, std::vector&) const@condition && X && Ycondition, X, and Y inputs are required!/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/where_op.cconnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = unsigned char]onnxruntime::common::Status onnxruntime::Where::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = int]onnxruntime::common::Status onnxruntime::Where::Compute(onnxruntime::OpKernelContext*) const [with T = int]onnxruntime::common::Status onnxruntime::Where::Compute(onnxruntime::OpKernelContext*) const [with T = long int]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = float]onnxruntime::common::Status onnxruntime::Where::Compute(onnxruntime::OpKernelContext*) const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = std::basic_string]onnxruntime::TBroadcastOutput::TBroadcastOutput(size_t, onnxruntime::Tensor&, int64_t, int64_t) [with T = std::basic_string; size_t = long unsigned int; int64_t = long int]onnxruntime::TensorAllocator::TensorAllocator(onnxruntime::OpKernelContext&) [with T = std::basic_string]onnxruntime::common::Status onnxruntime::Where::Compute(onnxruntime::OpKernelContext*) const [with T = std::basic_string]N11onnxruntime5WhereIhEEN11onnxruntime5WhereIiEEN11onnxruntime5WhereIlEEN11onnxruntime5WhereIfEEN11onnxruntime5WhereISsEE/onnxruntime_src/onnxruntime/contrib_ops/cpu/cpu_contrib_kernels.ccRegisterCpuContribKernelsRegisterQuantizationKernelsRegisterNchwcKernelsborder input dimensions insteadInput's height () + bottomBorder (Input's width () + rightBorder () + scale_[0] () + scale_[1] (CropAttribute border needs to be specified with four border elements, got Input is expected to have four dimensions corresponding to [N,C,H,W], got ) needs to be greater than or equal to the topBorder () needs to be greater than or equal to the leftBorder (/onnxruntime_src/onnxruntime/contrib_ops/cpu/crop.hT* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]ComputeN11onnxruntime7contrib8CropBaseEN11onnxruntime7contrib4CropIfEEbilinearCropAndResizeNull crop_size_ptr/onnxruntime_src/onnxruntime/contrib_ops/cpu/crop_and_resize.h specified. It should be either bilinear or nearestNumber of dimensions for crop size should be exactly 1const T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::contrib::CropAndResize::CropAndResize(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime7contrib13CropAndResizeIfEEDynamicSlice/onnxruntime_src/onnxruntime/contrib_ops/cpu/element_wise_ops.hinfo.GetAttr("scale", &scale_).IsOK()info.GetAttr("alpha", &alpha_).IsOK()info.GetAttr("beta", &beta_).IsOK()onnxruntime::contrib::Scale::Scale(const onnxruntime::OpKernelInfo&) [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::contrib::Affine::Affine(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime7contrib6AffineIfEEN11onnxruntime7contrib5ScaleIfEEExpandDimsAxis must be within range [ Axis is /onnxruntime_src/onnxruntime/contrib_ops/cpu/expand_dims.haxis_tensor->Shape().IsScalar()axis <= X_NumDims && axis >= -X_NumDimsAn axis tensor must be a scalar tensor.const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]const T* onnxruntime::Tensor::Data() const [with T = int]virtual onnxruntime::common::Status onnxruntime::contrib::ExpandDims::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime7contrib10ExpandDimsE/onnxruntime_src/onnxruntime/contrib_ops/cpu/fused_conv.ccGetFusedActivationAttr(info, activation_).IsOK()onnxruntime::contrib::FusedConvFloat::FusedConvFloat(const onnxruntime::OpKernelInfo&)N11onnxruntime7contrib14FusedConvFloatE/onnxruntime_src/onnxruntime/contrib_ops/cpu/fused_gemm.cconnxruntime::contrib::FusedGemm::FusedGemm(const onnxruntime::OpKernelInfo&) [with T = float]FusedGemmN11onnxruntime7contrib9FusedGemmIfEEImageScalerBias size (/onnxruntime_src/onnxruntime/contrib_ops/cpu/image_scaler.hinfo.GetAttrs("bias", bias_).IsOK()) does not match the number of channels (T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::contrib::ImageScaler::ImageScaler(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime7contrib11ImageScalerIfEEInverseT* onnxruntime::Tensor::MutableData() [with T = onnxruntime::MLFloat16]const T* onnxruntime::Tensor::Data() const [with T = onnxruntime::MLFloat16]T* onnxruntime::Tensor::MutableData() [with T = double]const T* onnxruntime::Tensor::Data() const [with T = double]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]void onnxruntime::utils::MLTypeCallDispatcher::Invoke(Args&& ...) const [with Args = {const onnxruntime::Tensor* const&, onnxruntime::Tensor* const&, long int&, const long int&, const long int&}; Fn = onnxruntime::contrib::Inverse::ComputeImpl; Types = {float, double, onnxruntime::MLFloat16}]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]*ZNK11onnxruntime7contrib7Inverse7ComputeEPNS_15OpKernelContextEEUllE_N11onnxruntime7contrib7InverseE/onnxruntime_src/onnxruntime/contrib_ops/cpu/layer_norm.ccop_kernel_info.GetAttr("axis", &axis_).IsOK()T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]ComputeT* onnxruntime::Tensor::MutableData() [with T = double]int64_t onnxruntime::HandleNegativeAxis(int64_t, int64_t)const T* onnxruntime::Tensor::Data() const [with T = double]Computeonnxruntime::contrib::LayerNorm::LayerNorm(const onnxruntime::OpKernelInfo&) [with T = double]onnxruntime::contrib::LayerNorm::LayerNorm(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime7contrib9LayerNormIfEEN11onnxruntime7contrib9LayerNormIdEEMatMulInteger16A != nullptr && B != nullptr/onnxruntime_src/onnxruntime/contrib_ops/cpu/matmul_integer16.ccconst T* onnxruntime::Tensor::Data() const [with T = short int]T* onnxruntime::Tensor::MutableData() [with T = int]Computeonnxruntime::common::Status onnxruntime::contrib::MatMulInteger16::Compute(onnxruntime::OpKernelContext*) const [with T1 = short int; T2 = short int; T3 = int]N11onnxruntime7contrib15MatMulInteger16IssiEEMaxpoolWithMask/onnxruntime_src/onnxruntime/contrib_ops/cpu/maxpool_with_mask.hT* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = int]const T* onnxruntime::Tensor::Data() const [with T = float]void onnxruntime::PoolAttributes::ComputeSizePadDilations(int64_t, int64_t, int64_t, int64_t*, int64_t*, int64_t, int64_t*) constvoid onnxruntime::PoolAttributes::InferOutputSize(const std::vector&, std::vector*, std::vector*) conststd::vector onnxruntime::PoolAttributes::SetOutputSize(const onnxruntime::TensorShape&, int64_t, std::vector*) constComputeN11onnxruntime7contrib15MaxpoolWithMaskEacross_channelsnormalize_variance/onnxruntime_src/onnxruntime/core/providers/cpu/tensor/mean_variance_normalization.hinfo.GetAttr("across_channels", &across_channels_).IsOK()info.GetAttr("normalize_variance", &normalize_variance_).IsOK()onnxruntime::MeanVarianceNormalization_0::MeanVarianceNormalization_0(const onnxruntime::OpKernelInfo&, bool) [with T = float]MurmurHash3keysinput_num_bytes % 4 == 0/onnxruntime_src/onnxruntime/contrib_ops/cpu/murmur_hash3.ccInvalid assumption of output element sizesizeof(uint32_t) == output_element_bytesconst T* onnxruntime::Tensor::Data() const [with T = std::basic_string]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::contrib::MurmurHash3::Compute(onnxruntime::OpKernelContext*) constN11onnxruntime7contrib11MurmurHash3Einvalid channel countchannels_ > 0scales_.size() == 4X_rank == 4channels_ <= X_shape[1]X_shape.NumDimensions() == 4Unsupported convolution size./onnxruntime_src/onnxruntime/contrib_ops/cpu/nchwc_ops.hinfo.GetAttr("channels", &channels_).IsOK()info.GetAttr("channels_last", &channels_last_).IsOK()info.GetAttrs("scales", scales_).IsOK()scales_[0] == 1 && scales_[1] == 1 && scales_[2] >= 1 && scales_[3] >= 1pool_attrs_.kernel_shape.size() == 2/onnxruntime_src/onnxruntime/contrib_ops/cpu/nchwc_ops.cc(X_shape[1] % MlasNchwcGetBlockSize()) == 0(static_cast(X_shape[1]) < nchwc_block_size) || ((X_shape[1] % nchwc_block_size) == 0)Not satisfied: Y->Shape() == sum_shape output and sum shape must matchvirtual onnxruntime::common::Status onnxruntime::contrib::NchwcUpsample::Compute(onnxruntime::OpKernelContext*) constvoid onnxruntime::PoolAttributes::ComputeSizePadDilations(int64_t, int64_t, int64_t, int64_t*, int64_t*, int64_t, int64_t*) constvoid onnxruntime::PoolAttributes::InferOutputSize(const std::vector&, std::vector*, std::vector*) conststd::vector onnxruntime::PoolAttributes::SetOutputSize(const onnxruntime::TensorShape&, int64_t, std::vector*) constonnxruntime::common::Status onnxruntime::contrib::NchwcPoolBase::NchwcPool(onnxruntime::OpKernelContext*, MLAS_POOLING_KIND) constvirtual onnxruntime::common::Status onnxruntime::contrib::NchwcConv::Compute(onnxruntime::OpKernelContext*) constComputevirtual onnxruntime::common::Status onnxruntime::contrib::ReorderOutput::Compute(onnxruntime::OpKernelContext*) constT* onnxruntime::Tensor::MutableData() [with T = float]virtual onnxruntime::common::Status onnxruntime::contrib::ReorderInput::Compute(onnxruntime::OpKernelContext*) constonnxruntime::contrib::NchwcUpsample::NchwcUpsample(const onnxruntime::OpKernelInfo&)onnxruntime::contrib::NchwcPoolBase::NchwcPoolBase(const onnxruntime::OpKernelInfo&)onnxruntime::contrib::NchwcConv::NchwcConv(const onnxruntime::OpKernelInfo&)onnxruntime::contrib::ReorderOutput::ReorderOutput(const onnxruntime::OpKernelInfo&)N11onnxruntime7contrib13NchwcPoolBaseEN11onnxruntime7contrib12ReorderInputEN11onnxruntime7contrib13ReorderOutputEN11onnxruntime7contrib9NchwcConvEN11onnxruntime7contrib12NchwcMaxPoolEN11onnxruntime7contrib16NchwcAveragePoolEN11onnxruntime7contrib13NchwcUpsampleEQLinearMulQLinearAddMatmulInteger : input1 A_scale must be a scalar or 1D tensor of size 1/onnxruntime_src/onnxruntime/contrib_ops/cpu/qlinear_binary_op.ccIsScalarOr1ElementVector(tensor_a_scale)tensor_a_zero_point == nullptr || IsScalarOr1ElementVector(tensor_a_zero_point)MatmulInteger : input1 B_scale must be a scalar or 1D tensor of size 1IsScalarOr1ElementVector(tensor_b_scale)tensor_b_zero_point == nullptr || IsScalarOr1ElementVector(tensor_b_zero_point)MatmulInteger : input1 C_scale must be a scalar or 1D tensor of size 1IsScalarOr1ElementVector(tensor_c_scale)tensor_c_zero_point == nullptr || IsScalarOr1ElementVector(tensor_c_zero_point)MatmulInteger : input1 A_zero_point must be a scalar or 1D tensor of size 1 if givenMatmulInteger : input1 B_zero_point must be a scalar or 1D tensor of size 1 if givenMatmulInteger : input1 C_zero_point must be a scalar or 1D tensor of size 1 if givenonnxruntime::common::Status onnxruntime::contrib::QLinearBroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with T = signed char; Input0Scalar = onnxruntime::contrib::QLinearAdd::Compute(onnxruntime::OpKernelContext*) const [with T = signed char]::__lambda15; Input1Scalar = onnxruntime::contrib::QLinearAdd::Compute(onnxruntime::OpKernelContext*) const [with T = signed char]::__lambda16; General = onnxruntime::contrib::QLinearAdd::Compute(onnxruntime::OpKernelContext*) const [with T = signed char]::__lambda17]onnxruntime::common::Status onnxruntime::contrib::QLinearBroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with T = unsigned char; Input0Scalar = onnxruntime::contrib::QLinearAdd::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda15; Input1Scalar = onnxruntime::contrib::QLinearAdd::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda16; General = onnxruntime::contrib::QLinearAdd::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda17]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = signed char; T1 = signed char; size_t = long unsigned int]onnxruntime::common::Status onnxruntime::contrib::QLinearBroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with T = signed char; Input0Scalar = onnxruntime::contrib::QLinearMul::Compute(onnxruntime::OpKernelContext*) const [with T = signed char]::__lambda18; Input1Scalar = onnxruntime::contrib::QLinearMul::Compute(onnxruntime::OpKernelContext*) const [with T = signed char]::__lambda19; General = onnxruntime::contrib::QLinearMul::Compute(onnxruntime::OpKernelContext*) const [with T = signed char]::__lambda20]void onnxruntime::TBroadcaster::AdvanceBy(size_t) [with T0 = unsigned char; T1 = unsigned char; size_t = long unsigned int]onnxruntime::common::Status onnxruntime::contrib::QLinearBroadcastTwo(onnxruntime::OpKernelContext&, Input0Scalar, Input1Scalar, General, double) [with T = unsigned char; Input0Scalar = onnxruntime::contrib::QLinearMul::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda18; Input1Scalar = onnxruntime::contrib::QLinearMul::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda19; General = onnxruntime::contrib::QLinearMul::Compute(onnxruntime::OpKernelContext*) const [with T = unsigned char]::__lambda20]ZN11onnxruntime7contrib19QLinearBroadcastTwoIhZNKS0_10QLinearMulIhE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIhEERKhNS7_IS9_EEfffhhhE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffhhhE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffhhhE1_EENS_6common6StatusERS4_T0_T1_T2_dEUlllE_ZN11onnxruntime7contrib19QLinearBroadcastTwoIaZNKS0_10QLinearMulIaE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIaEERKaNS7_IS9_EEfffaaaE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffaaaE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffaaaE1_EENS_6common6StatusERS4_T0_T1_T2_dEUlllE_ZN11onnxruntime7contrib19QLinearBroadcastTwoIhZNKS0_10QLinearAddIhE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIhEERKhNS7_IS9_EEfffhhhE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffhhhE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffhhhE1_EENS_6common6StatusERS4_T0_T1_T2_dEUlllE_ZN11onnxruntime7contrib19QLinearBroadcastTwoIaZNKS0_10QLinearAddIaE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIaEERKaNS7_IS9_EEfffaaaE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffaaaE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffaaaE1_EENS_6common6StatusERS4_T0_T1_T2_dEUlllE_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIhZNKS0_10QLinearMulIhE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIhEERKhNS7_IS9_EEfffhhhE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffhhhE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffhhhE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIhZNKS0_10QLinearMulIhE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIhEERKhNS7_IS9_EEfffhhhE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffhhhE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffhhhE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE0_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIhZNKS0_10QLinearMulIhE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIhEERKhNS7_IS9_EEfffhhhE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffhhhE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffhhhE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE1_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIaZNKS0_10QLinearMulIaE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIaEERKaNS7_IS9_EEfffaaaE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffaaaE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffaaaE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIaZNKS0_10QLinearMulIaE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIaEERKaNS7_IS9_EEfffaaaE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffaaaE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffaaaE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE0_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIaZNKS0_10QLinearMulIaE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIaEERKaNS7_IS9_EEfffaaaE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffaaaE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffaaaE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE1_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIhZNKS0_10QLinearAddIhE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIhEERKhNS7_IS9_EEfffhhhE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffhhhE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffhhhE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIhZNKS0_10QLinearAddIhE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIhEERKhNS7_IS9_EEfffhhhE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffhhhE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffhhhE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE0_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIhZNKS0_10QLinearAddIhE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIhEERKhNS7_IS9_EEfffhhhE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffhhhE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffhhhE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE1_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIaZNKS0_10QLinearAddIaE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIaEERKaNS7_IS9_EEfffaaaE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffaaaE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffaaaE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIaZNKS0_10QLinearAddIaE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIaEERKaNS7_IS9_EEfffaaaE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffaaaE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffaaaE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE0_ZN11onnxruntime7contrib23QLinearBroadcastOneSpanIaZNKS0_10QLinearAddIaE7ComputeEPNS_15OpKernelContextEEUlN3gsl4spanIaEERKaNS7_IS9_EEfffaaaE_ZNKS3_7ComputeES5_EUlS8_SB_SA_fffaaaE0_ZNKS3_7ComputeES5_EUlS8_SB_SB_fffaaaE1_EEvPNS_11concurrency10ThreadPoolEdNS7_IT_EENS7_IKSI_EESL_T0_T1_T2_fffSI_SI_SI_EUlllE1_N11onnxruntime7contrib10QLinearAddIaEEN11onnxruntime7contrib10QLinearAddIhEEN11onnxruntime7contrib10QLinearMulIaEEN11onnxruntime7contrib10QLinearMulIhEEQLinearSigmoidQLinearLeakyRelu/onnxruntime_src/onnxruntime/contrib_ops/cpu/qlinear_lookup_table.ccIsScalarOr1ElementVector(tensor_x_scale)tensor_x_zero_point == nullptr || IsScalarOr1ElementVector(tensor_x_zero_point)IsScalarOr1ElementVector(tensor_y_scale)tensor_y_zero_point == nullptr || IsScalarOr1ElementVector(tensor_y_zero_point)QLinearLeakyRelu : input X_scale must be a scalar or 1D tensor of size 1QLinearLeakyRelu : input X_zero_point must be a scalar or 1D tensor of size 1QLinearLeakyRelu : input Y_scale must be a scalar or 1D tensor of size 1QLinearLeakyRelu : input Y_zero_point must be a scalar or 1D tensor of size 1T* onnxruntime::Tensor::MutableData() [with T = signed char]T* onnxruntime::Tensor::MutableData() [with T = unsigned char]const T* onnxruntime::Tensor::Data() const [with T = unsigned char]void onnxruntime::contrib::QlinearBuildLookupTable(uint8_t*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, const LookupTableArrayTransformer&) [with T = unsigned char; uint8_t = unsigned char; onnxruntime::contrib::LookupTableArrayTransformer = std::function]const T* onnxruntime::Tensor::Data() const [with T = signed char]const T* onnxruntime::Tensor::Data() const [with T = float]void onnxruntime::contrib::QlinearBuildLookupTable(uint8_t*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, const onnxruntime::Tensor*, const LookupTableArrayTransformer&) [with T = signed char; uint8_t = unsigned char; onnxruntime::contrib::LookupTableArrayTransformer = std::function]ZNK11onnxruntime7contrib14QLinearSigmoidIhE7ComputeEPNS_15OpKernelContextEEUlPKfPfmE_ZNK11onnxruntime7contrib17QLinearLookupBaseIhE11ComputeBaseIZNKS0_14QLinearSigmoidIhE7ComputeEPNS_15OpKernelContextEEUlPKfPfmE_EENS_6common6StatusES7_T_EUlllE_ZNK11onnxruntime7contrib14QLinearSigmoidIaE7ComputeEPNS_15OpKernelContextEEUlPKfPfmE_ZNK11onnxruntime7contrib17QLinearLookupBaseIaE11ComputeBaseIZNKS0_14QLinearSigmoidIaE7ComputeEPNS_15OpKernelContextEEUlPKfPfmE_EENS_6common6StatusES7_T_EUlllE_ZNK11onnxruntime7contrib16QLinearLeakyReluIhE7ComputeEPNS_15OpKernelContextEEUlfE_ZNK11onnxruntime7contrib17QLinearLookupBaseIhE11ComputeBaseIZNKS0_16QLinearLeakyReluIhE7ComputeEPNS_15OpKernelContextEEUlfE_EENS_6common6StatusES7_T_EUlllE_ZNK11onnxruntime7contrib16QLinearLeakyReluIaE7ComputeEPNS_15OpKernelContextEEUlfE_ZNK11onnxruntime7contrib17QLinearLookupBaseIaE11ComputeBaseIZNKS0_16QLinearLeakyReluIaE7ComputeEPNS_15OpKernelContextEEUlfE_EENS_6common6StatusES7_T_EUlllE_*ZN11onnxruntime7contribL23QlinearBuildLookupTableIaEEvPhPKNS_6TensorES5_S5_S5_RKSt8functionIFffEEEUlPKfPfmE_*ZN11onnxruntime7contribL23QlinearBuildLookupTableIhEEvPhPKNS_6TensorES5_S5_S5_RKSt8functionIFffEEEUlPKfPfmE_N11onnxruntime7contrib17QLinearLookupBaseIaEEN11onnxruntime7contrib16QLinearLeakyReluIaEEN11onnxruntime7contrib17QLinearLookupBaseIhEEN11onnxruntime7contrib16QLinearLeakyReluIhEEN11onnxruntime7contrib14QLinearSigmoidIaEEN11onnxruntime7contrib14QLinearSigmoidIhEEZN11onnxruntime7contrib16QLinearLeakyReluIaEC1ERKNS_12OpKernelInfoEEUlfE_ZN11onnxruntime7contrib16QLinearLeakyReluIhEC1ERKNS_12OpKernelInfoEEUlfE_ZN11onnxruntime7contrib14QLinearSigmoidIaEC1ERKNS_12OpKernelInfoEEUlPKfPfmE_ZN11onnxruntime7contrib14QLinearSigmoidIhEC1ERKNS_12OpKernelInfoEEUlPKfPfmE_ #<QAttention/onnxruntime_src/onnxruntime/contrib_ops/cpu/bert/attention_cpu_base.h/onnxruntime_src/onnxruntime/contrib_ops/cpu/quantization/attention_quant.ccNot satisfied: IsScalarOr1ElementVector(input_scale_tensor) Not satisfied: IsScalarOr1ElementVector(weight_scale_tensor) Not satisfied: IsScalarOr1ElementVector(i_zp_tensor) Not satisfied: IsScalarOr1ElementVector(w_zp_tensor) weight must be a scalar or 1D tensor of size 1input zero point must be a scalar or 1D tensor of size 1.weight zero point must be a scalar or 1D tensor of size 1.T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = int]ApplyAttentionconst T* onnxruntime::Tensor::Data() const [with T = float]ComputeN11onnxruntime7contrib13AttentionBaseEN11onnxruntime7contrib16AttentionCPUBaseEZNK11onnxruntime7contrib10QAttentionIfE7ComputeEPNS_15OpKernelContextEEUlllE_ZNK11onnxruntime7contrib16AttentionCPUBase21ComputeAttentionProbsIfEEvPT_PKS3_S6_PKiPKSt6vectorIlSaIlEES4_iiiiS6_S4_PNS_11concurrency10ThreadPoolEEUlllE_ZNK11onnxruntime7contrib16AttentionCPUBase23ComputeVxAttentionScoreIfEEvPT_S4_PKS3_S6_iiiiiS6_S4_PNS_11concurrency10ThreadPoolEEUlllE_N11onnxruntime7contrib10QAttentionIfEE@F@@@@@F@F@F@F/onnxruntime_src/onnxruntime/contrib_ops/cpu/quantization/dynamic_quantize_matmul.ccIsScalarOr1ElementVector(b_scale_tensor)IsScalarOr1ElementVector(b_zero_point_tensor)DynamicQuantizeMatMul : input B scale must be a scalar or 1D tensor of size 1. Per-Channel is not supported yet.DynamicQuantizeMatMul : input B zero point must be a scalar or 1D tensor of size 1. Per-Channel is not supported yet.IsScalarOr1ElementVector(a_scale_tensor)IsScalarOr1ElementVector(a_zero_point_tensor)MatMulIntegerToFloat : input A scale must be a scalar or 1D tensor of size 1. Per-Channel is not supported yet.MatMulIntegerToFloat : input B scale must be a scalar or 1D tensor of size 1. Per-Channel is not supported yet.MatMulIntegerToFloat : input A zero point must be a scalar or 1D tensor of size 1. Per-Channel is not supported yet.MatMulIntegerToFloat : input B zero point must be a scalar or 1D tensor of size 1. Per-Channel is not supported yet.const T* onnxruntime::Tensor::Data() const [with T = unsigned char]virtual onnxruntime::common::Status onnxruntime::contrib::MatMulIntegerToFloat::Compute(onnxruntime::OpKernelContext*) constComputevirtual onnxruntime::common::Status onnxruntime::contrib::DynamicQuantizeMatMul::Compute(onnxruntime::OpKernelContext*) constconst T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]ComputeCommonN11onnxruntime7contrib24MatMulIntegerToFloatBaseEN11onnxruntime7contrib21DynamicQuantizeMatMulEN11onnxruntime7contrib20MatMulIntegerToFloatESampleOpT* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime7contrib8SampleOpIfEEepsilon_ >= 0/onnxruntime_src/onnxruntime/contrib_ops/cpu/skip_layer_norm.ccinput is expected to have 3 dimensions, got gamma is expected to have 1 dimension, got Last dimension of gamma and input does not matchbeta is expected to have 1 dimension, got Last dimension of beta and input does not matchbias is expected to have 1 dimension, got Last dimension of bias and input does not matchskip is expected to have same shape as inputconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::contrib::SkipLayerNorm::SkipLayerNorm(const onnxruntime::OpKernelInfo&) [with T = double]onnxruntime::contrib::SkipLayerNorm::SkipLayerNorm(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime7contrib13SkipLayerNormIfEEN11onnxruntime7contrib13SkipLayerNormIdEETokenizermarkattribute mark is not setpad_valuemincharnummincharnum_ > 0separatorstokenexp!tokenexp.empty()separators must not be empty!separators.empty()Can not digest separators: Can not digest tokenexp: /onnxruntime_src/onnxruntime/contrib_ops/cpu/tokenizer.ccattribute pad_value is not setattribute mincharnum is not setattribute mincharnum must have a positive valueEither one of the separators OR tokenexp attributes required but none is setExpecting a non-empty tokenexpmincharnum is too big for char level tokenezation!char_tokenezation_ || mincharnum_ < 2Input string contains invalid utf8 chars: Match contains invalid utf8 chars: tensor(string) expected as inputInput dimensions are either [C] or [N][C] allowedconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::contrib::Tokenizer::Tokenizer(const onnxruntime::OpKernelInfo&)N11onnxruntime7contrib9TokenizerE/onnxruntime_src/onnxruntime/contrib_ops/cpu/transpose_scale_matmul.ccconst T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::contrib::TransposeMatMul::TransposeMatMul(const onnxruntime::OpKernelInfo&)TransposeMatMulN11onnxruntime7contrib15TransposeMatMulEupperTriluIsScalarOr1ElementVector(k)/onnxruntime_src/onnxruntime/contrib_ops/cpu/trilu.hinfo.GetAttr("upper", &temp).IsOK()/onnxruntime_src/onnxruntime/contrib_ops/cpu/trilu.cck should be a 1-D or 0-D tensor.const T* onnxruntime::Tensor::Data() const [with T = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]virtual onnxruntime::common::Status onnxruntime::contrib::Trilu::Compute(onnxruntime::OpKernelContext*) constonnxruntime::contrib::Trilu::Trilu(const onnxruntime::OpKernelInfo&)N11onnxruntime7contrib5TriluEInput tensor to Unique op should be 1DT* onnxruntime::Tensor::MutableData() [with T = long int]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]N11onnxruntime7contrib6UniqueIfEEconv_window_sizechar_embedding_sizeWordConvEmbedding embedding_size attribute: conv filter size: conv_window_size attribute: conv kernal size 1: Char embedding size: Conv kernal size 2 : Conv filter size does not match embedding_size attribute.Conv kernal size 1 does not match conv_window_size attribute .Char embedding size does not match char_embedding_size attribute. char_embedding_size attribute: Char embedding size does not match conv kernal size 2./onnxruntime_src/onnxruntime/contrib_ops/cpu/word_conv_embedding.ccconst T* onnxruntime::Tensor::Data() const [with T = float]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]ComputeN11onnxruntime7contrib17WordConvEmbeddingEhӥhӥhӥh'is defined.No attribute with name:'unknown kernel typeAttribute name and type don't match for '/onnxruntime_src/onnxruntime/core/providers/cpu/activation/activations.h/onnxruntime_src/onnxruntime/contrib_ops/cpu/activations.honnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Elu]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::HardSigmoid]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::LeakyRelu]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Relu]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Selu]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Sigmoid]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Softplus]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Softsign]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::Tanh]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::ThresholdedRelu]InitInitonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::ThresholdedRelu]ElementWiseKernelInitonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Selu]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::LeakyRelu]ElementWiseKernelInitonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::HardSigmoid]ElementWiseKernelonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::Elu]ElementWiseKernelN11onnxruntime8functors7SigmoidIfEEN11onnxruntime8functors4TanhIfEEN11onnxruntime8functors3EluIfEEN11onnxruntime17ElementWiseKernelINS_8functors3EluIfEEEEN11onnxruntime8functors11HardSigmoidIfEEN11onnxruntime17ElementWiseKernelINS_8functors11HardSigmoidIfEEEEN11onnxruntime8functors9LeakyReluIfEEN11onnxruntime17ElementWiseKernelINS_8functors9LeakyReluIfEEEEN11onnxruntime8functors4ReluIfEEN11onnxruntime17ElementWiseKernelINS_8functors4ReluIfEEEEN11onnxruntime8functors4SeluIfEEN11onnxruntime17ElementWiseKernelINS_8functors4SeluIfEEEEN11onnxruntime17ElementWiseKernelINS_8functors7SigmoidIfEEEEN11onnxruntime8functors8SoftplusIfEEN11onnxruntime17ElementWiseKernelINS_8functors8SoftplusIfEEEEN11onnxruntime8functors8SoftsignIfEEN11onnxruntime17ElementWiseKernelINS_8functors8SoftsignIfEEEEN11onnxruntime17ElementWiseKernelINS_8functors4TanhIfEEEEN11onnxruntime8functors15ThresholdedReluIfEEN11onnxruntime17ElementWiseKernelINS_8functors15ThresholdedReluIfEEEEN11onnxruntime8functors18ParametricSoftplusIfEEN11onnxruntime8functors10ScaledTanhIfEEAAO@O9BBBB¥¥¥;?;?;?;?giP9giP9giP9giP9C:C:C:C:<<<<*=*=*=*=*>*>*>*>BBBBO@O@O@O@OOOO999977779@>@If'If' node has outputs.then_branchinfo == nullptrelse_branch' attribute.session_stateFailed to create output tensor for If output outputs which doesn't match the subgraph's /onnxruntime_src/onnxruntime/core/providers/cpu/controlflow/if.ccnum_subgraph_outputs == static_cast(num_outputs)SetupSubgraphExecutionInfo should only be called once for each subgraph.Failed to create output tensor for then_feeds_fetches_manager_ && else_feeds_fetches_manager_Subgraph SessionState was not found for 'CreateFeedsFetchesManager must be called prior to execution of graph.info.GetAttr("then_branch", &proto).IsOK()info.GetAttr("else_branch", &proto).IsOK()ExecuteInitializeconst T* onnxruntime::Tensor::Data() const [with T = bool]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computevirtual onnxruntime::common::Status onnxruntime::If::Compute(onnxruntime::OpKernelContext*) constonnxruntime::If::Info::Info(const onnxruntime::Node&, const onnxruntime::GraphViewer&)SetupSubgraphExecutionInfovirtual onnxruntime::common::Status onnxruntime::If::SetupSubgraphExecutionInfo(const onnxruntime::SessionState&, const string&, const onnxruntime::SessionState&)onnxruntime::If::If(const onnxruntime::OpKernelInfo&)*ZN11onnxruntime6IfImpl7ExecuteERKNS_19FeedsFetchesManagerEEUlRKNS_11TensorShapeERK13OrtMemoryInfoR8OrtValueRbE_N11onnxruntime11controlflow18IControlFlowKernelEN11onnxruntime2IfE Expected:Loop inputs. Found:'Loop' node has but has info_ == nullptrbodyfeeds_fetches_manager_Inconsistent shape in loop output for output. Graph in 'body' attribute of Loop should have /onnxruntime_src/onnxruntime/core/providers/cpu/controlflow/loop.ccstatic_cast(num_subgraph_inputs) == subgraph_inputs.size() outputs so the subgraph requires num_subgraph_outputs - 1 == num_outputs'Loop' input 'M' should be a scalar tensor. Got shape of 'Loop' input 'cond' should be a scalar tensor. Got shape of Loop had zero iterations and the shape of subgraph output was not found. Defaulting to a rank 1 shape of {0}.Subgraph SessionState was not found for 'body' attribute.info.GetAttr("body", &proto).IsOK()ExecuteConcatenateLoopOutputT* onnxruntime::Tensor::MutableData() [with T = bool]T* onnxruntime::Tensor::MutableData() [with T = long int]const T* onnxruntime::Tensor::Data() const [with T = bool]const T* onnxruntime::Tensor::Data() const [with T = long int]Computevirtual onnxruntime::common::Status onnxruntime::Loop::Compute(onnxruntime::OpKernelContext*) constonnxruntime::Loop::Info::Info(const onnxruntime::Node&, const onnxruntime::GraphViewer&)SetupSubgraphExecutionInfovirtual onnxruntime::common::Status onnxruntime::Loop::SetupSubgraphExecutionInfo(const onnxruntime::SessionState&, const string&, const onnxruntime::SessionState&)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]onnxruntime::Loop::Loop(const onnxruntime::OpKernelInfo&)FN11onnxruntime6common6StatusERSt6vectorI8OrtValueSaIS3_EEPvmEN11onnxruntime4LoopEPFN11onnxruntime6common6StatusERSt6vectorI8OrtValueSaIS3_EEPvmEScan<8> spec does not support transpose of output. This should never be called./onnxruntime_src/onnxruntime/core/providers/cpu/controlflow/scan_8.cc dimensions or more but input had shape of Scan inputs have inconsistent batch size. Previous value was Scan inputs have inconsistent sequence lengths. Previous value was Invalid entries in sequence_lens. Max sequence length was Output OrtValue has not been created for loop state variable output /onnxruntime_src/onnxruntime/core/framework/ort_value_tensor_slicer.hposition_ >= 0 && position_ < sequence_length_info.GetAttr("num_scan_inputs", &num_scan_inputs_).IsOK()feeds_fetches_manager_ && info_ScanInvalid scan input: has batch size of has length of sequence_lens length of did not match batch size of p_mlvaluenum_scan_inputsSubgraph in 'body' produces outputs but Scan expects T* OrtValue::GetMutable() [with T = onnxruntime::Tensor]Executetypename std::enable_if<(! std::is_const::value), T&>::type onnxruntime::OrtValueTensorSlicer::Iterator::operator*() [with T = const OrtValue; typename std::enable_if<(! std::is_const::value), T&>::type = const OrtValue&]CreateLoopStateVariablesonnxruntime::common::Status onnxruntime::Scan8Impl::CreateLoopStateVariables(std::vector >&)AllocateOutputTensorsgsl::span onnxruntime::Tensor::DataAsSpan() const [with T = long int]ValidateInputInitializeconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::common::Status onnxruntime::Scan::Compute(onnxruntime::OpKernelContext*) const [with int OpSet = 8]onnxruntime::common::Status onnxruntime::Scan::SetupSubgraphExecutionInfo(const onnxruntime::SessionState&, const string&, const onnxruntime::SessionState&) [with int OpSet = 8; std::string = std::basic_string]onnxruntime::Scan::Scan(const onnxruntime::OpKernelInfo&) [with int OpSet = 8]FN11onnxruntime20OrtValueTensorSlicerIK8OrtValueEERS2_llEFN11onnxruntime20OrtValueTensorSlicerI8OrtValueEERS1_llE*ZN11onnxruntime4ScanILi8EEC1ERKNS_12OpKernelInfoEEUlRKSt6vectorImSaImEERKNS_6TensorERSA_E_*ZN11onnxruntime4ScanILi8EEC1ERKNS_12OpKernelInfoEEUlPvmE0_N11onnxruntime4ScanILi8EEEN11onnxruntime20OrtValueTensorSlicerIK8OrtValueE8IteratorEPFN11onnxruntime20OrtValueTensorSlicerIK8OrtValueEERS2_llEPFN11onnxruntime20OrtValueTensorSlicerI8OrtValueEERS1_llEfinal_output_mlvalue_. Output tensor rank was but input '' dimension . Input tensor rank was output_mlvaluescan_input_directionsscan_output_directionsscan_input_axes but expected scan_output_axes/onnxruntime_src/onnxruntime/core/providers/cpu/controlflow/scan_9.ccAttempt to retrieve final output before it was set./onnxruntime_src/onnxruntime/core/providers/cpu/controlflow/scan_utils.hInvalid value in scan_output_axes for output Outputs from Scan are not optional and should never be null.Invalid value in scan_input_axes for input Number of entries in 'scan_input_axes' was gsl::narrow_cast(input_axes_.size()) == num_scan_inputs_Number of entries in 'scan_output_axes' was gsl::narrow_cast(output_axes_.size()) == num_scan_outputsconst OrtValue& onnxruntime::scan::detail::OutputIterator::GetOutput() constTransposeOutputonnxruntime::common::Status onnxruntime::ScanImpl::TransposeOutput()Executeonnxruntime::common::Status onnxruntime::ScanImpl::CreateLoopStateVariables(std::vector&)CreateLoopStateVariablesAllocateOutputTensorsT* OrtValue::GetMutable() [with T = onnxruntime::Tensor]SetupInputsValidateInputInitializeComputeonnxruntime::common::Status onnxruntime::Scan::Compute(onnxruntime::OpKernelContext*) const [with int OpSet = 9]onnxruntime::common::Status onnxruntime::Scan::SetupSubgraphExecutionInfo(const onnxruntime::SessionState&, const string&, const onnxruntime::SessionState&) [with int OpSet = 9; std::string = std::basic_string]onnxruntime::Scan::Scan(const onnxruntime::OpKernelInfo&) [with int OpSet = 9]*ZN11onnxruntime4ScanILi9EEC1ERKNS_12OpKernelInfoEEUlRKSt6vectorImSaImEERKNS_6TensorERSA_E_*ZN11onnxruntime4ScanILi9EEC1ERKNS_12OpKernelInfoEEUlPvmE0_N11onnxruntime4ScanILi9EEENumber of entries in '' was Invalid values in ' is not compatible with !is_concrete_shape_ did not.Misuse of LoopStateVariable. Attempt to move beyond end of sequence/onnxruntime_src/onnxruntime/core/providers/cpu/controlflow/scan_utils.cciteration_num_ < sequence_len_Expected AllocateFinalOutput to have been called to before we increment the iteratornum_entries < 0 || gsl::narrow_cast(directions.size()) == num_entries'. 0 == forward. 1 == reverse.cur_iteration_ < num_iterations_Expected AllocateFinalOutput to have been called to before we read the OrtValue from the iterator.Mismatch between expected shape and shape from first outputThe subgraph in 'body' requires inputs but Scan was only given num_variadic_inputs == num_subgraph_inputsFailed to create output tensor for output #If shape was concrete we shouldn't be using a custom allocatorSubgraph must have the shape set for all outputs but onnxruntime::scan::detail::OutputIterator& onnxruntime::scan::detail::OutputIterator::operator++()typename std::enable_if<(! std::is_const::value), T&>::type onnxruntime::OrtValueTensorSlicer::Iterator::operator*() [with T = OrtValue; typename std::enable_if<(! std::is_const::value), T&>::type = OrtValue&]OrtValue& onnxruntime::scan::detail::OutputIterator::operator*()AllocateFinalOutputonnxruntime::common::Status onnxruntime::scan::detail::OutputIterator::AllocateFinalOutput(const onnxruntime::TensorShape&)AllocateFinalBufferconst T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Initializevoid onnxruntime::scan::detail::LoopStateVariable::Next()const T& OrtValue::Get() const [with T = onnxruntime::Tensor]operator()typename std::enable_if<(! std::is_const::value), T&>::type onnxruntime::OrtValueTensorSlicer::Iterator::operator*() [with T = const OrtValue; typename std::enable_if<(! std::is_const::value), T&>::type = const OrtValue&]IterateSequenceCreateFeedsFetchesManagervoid onnxruntime::scan::detail::ReadDirections(const onnxruntime::OpKernelInfo&, const string&, std::vector&, int64_t)onnxruntime::scan::detail::Info::Info(const onnxruntime::Node&, const onnxruntime::GraphViewer&, int, bool)*ZN11onnxruntime4scan6detail15IterateSequenceERNS_23OpKernelContextInternalERKNS_12SessionStateERSt6vectorINS1_17LoopStateVariableESaIS8_EERS7_INS_20OrtValueTensorSlicerIK8OrtValueE8IteratorESaISG_EEliiiRKS7_IPSE_SaISK_EERS7_ISt10unique_ptrINS1_14OutputIteratorESt14default_deleteISQ_EESaIST_EERKNS_19FeedsFetchesManagerEEUlRKNS_11TensorShapeERK13OrtMemoryInfoRSD_RbE_N11onnxruntime20OrtValueTensorSlicerI8OrtValueE8IteratorEonnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::ParametricSoftplus]onnxruntime::common::Status onnxruntime::ElementWiseKernel::Compute(onnxruntime::OpKernelContext*) const [with F = onnxruntime::functors::ScaledTanh]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::ThresholdedRelu]ElementWiseKernelInitonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::ScaledTanh]ElementWiseKernelInitonnxruntime::ElementWiseKernel::ElementWiseKernel(const onnxruntime::OpKernelInfo&) [with F = onnxruntime::functors::ParametricSoftplus]ElementWiseKernelN11onnxruntime17ElementWiseKernelINS_8functors18ParametricSoftplusIfEEEEN11onnxruntime17ElementWiseKernelINS_8functors10ScaledTanhIfEEEEN11onnxruntime7contrib4GeluIfEE5?@AttnLSTM}, actural: ], while found!, am_attn_size}, Got:}, Got: }. Got: , aw_attn_size}. Got:/onnxruntime_src/onnxruntime/contrib_ops/cpu/attnlstm/deep_cpu_attn_lstm.hstatic_cast(activation_func_names.size()) == num_directions_ * 3Attention mechanism memory shape error! Expected: {Attention mechanism memory sequence lengths must have shape {Attention mechanism memory sequence lengths value must in (0, Attention memory layer weight shape error! Expected:{Attention query layer weight shape error! Expected:{Attention v weight shape error! Expected:{Attention layer weight shape error! Expected: {/onnxruntime_src/onnxruntime/contrib_ops/cpu/attnlstm/deep_cpu_attn_lstm.ccValidateInputsgsl::span onnxruntime::Tensor::DataAsSpan() const [with T = int]ComputeImplvirtual onnxruntime::common::Status onnxruntime::contrib::DeepCpuAttnLstmOp::Compute(onnxruntime::OpKernelContext*) constonnxruntime::rnn::detail::Direction onnxruntime::rnn::detail::MakeDirection(const string&)onnxruntime::contrib::DeepCpuAttnLstmOp::DeepCpuAttnLstmOp(const onnxruntime::OpKernelInfo&)N11onnxruntime7contrib17DeepCpuAttnLstmOpEN11onnxruntime7contrib16AttentionWrapperIfEE row[ [seqno=Expect to have present state output when past state input is given/onnxruntime_src/onnxruntime/contrib_ops/cpu/bert/attention.ccinfo.GetAttr("num_heads", &num_heads).IsOK() && num_heads > 0Input 'input' is expected to have 3 dimensions, got Input 0 dimension 2 should be divisiable by value of the num_heads attribute.Input 'weights' is expected to have 2 dimensions, got Input 1 dimension 0 should have same length as dimension 2 of input 0Input 'weights' dimension 1 should be 3 times of dimension 0Input 'bias' is expected to have 1 dimension, got Input 'bias' dimension 0 should have same length as dimension 1 of input 'weights'Input 'past' is only allowed for unidirectionalInput 'past' is expected to have 5 dimension, got Inputs 'past' dimension 0 shall have length of 2Inputs 'past' dimension 1 shall have same length as dimension 0 of input 0Inputs 'past' dimension 2 shall have length of num_headsInputs 'past' dimension 2 shall have length of Input 'mask_index' is expected to have 1 or 2 dimensions, got Inputs 'mask_index' dimension 0 shall have length of batch_size or 2 * batch_sizeInputs 'mask_index' with raw attention mask shall have shape batch_size x (past_sequence_length + sequence_length)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::Tensor* onnxruntime::contrib::AttentionBase::GetPresent(onnxruntime::OpKernelContext*, const onnxruntime::Tensor*, int, int, int, int&) constonnxruntime::contrib::AttentionBase::AttentionBase(const onnxruntime::OpKernelInfo&)ZNK11onnxruntime7contrib9AttentionIfE7ComputeEPNS_15OpKernelContextEEUlllE_N11onnxruntime7contrib9AttentionIfEEuse_approximation/onnxruntime_src/onnxruntime/contrib_ops/cpu/bert/bias_gelu.ccComputeconst T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]T* onnxruntime::Tensor::MutableData() [with T = float]onnxruntime::common::Status onnxruntime::contrib::BiasGelu::Compute(onnxruntime::OpKernelContext*) const [with T = float; bool use_approximation = false]ComputeN11onnxruntime7contrib8BiasGeluIfLb0EEEN11onnxruntime7contrib8BiasGeluIfLb1EEEy"=y"=y"=y"=*BL?*BL?*BL?*BL?y"=Input 0 is expected to have 1 or more dimensions, got Input 1 is expected to have 1 dimensions, got Input 1 dimension 0 should have same length as the last dimension of input 0const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]input index out of range/onnxruntime_src/onnxruntime/contrib_ops/cpu/bert/embed_layer_norm.ccT* onnxruntime::Tensor::MutableData() [with T = int]const T* onnxruntime::Tensor::Data() const [with T = int]T* onnxruntime::Tensor::MutableData() [with T = float]const T* onnxruntime::Tensor::Data() const [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]Computeonnxruntime::contrib::EmbedLayerNorm::EmbedLayerNorm(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime7contrib14EmbedLayerNormIfEEinput_ids is expected to have 2 dimensions, got word_embedding is expected to have 2 dimensions, got position_embedding is expected to have 2 dimensions, got segment_embedding is expected to have 2 dimensions, got word_embedding and segment_embedding shall have same dimension 1word_embedding and position_embedding shall have same dimension 1beta is expected to have 1 dimensions, got beta is expected to have size of gamma is expected to have 1 dimensions, got gamma is expected to have size of Input 0 and 1 shall have same shapeInput 0 and 7 (mask) shall have same shapeconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]CDistsqeuclidean/onnxruntime_src/onnxruntime/contrib_ops/cpu/cdist.hinfo.GetAttr("metric", &metric).IsOK()The second input of CDist kernel has wrong shape: Input shape dimensions mismatch:The first input of CDist kernel has wrong shape: T* onnxruntime::Tensor::MutableData() [with T = float]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]const T* onnxruntime::OpKernelContext::Input(int) const [with T = onnxruntime::Tensor]onnxruntime::contrib::CDist::CDist(const onnxruntime::OpKernelInfo&) [with T = double]onnxruntime::contrib::CDist::CDist(const onnxruntime::OpKernelInfo&) [with T = float]N11onnxruntime7contrib5CDistIfEEN11onnxruntime7contrib5CDistIdEEConvTransposeWithDynamicPadsN11onnxruntime7contrib28ConvTransposeWithDynamicPadsIfEEunimplemented activation: activation_params count mismatchReal memory steps is not in (0, not support normalize yet.!normalize_/onnxruntime_src/onnxruntime/contrib_ops/cpu/attnlstm/bahdanau_attention.ccmem_steps <= max_memory_steps_ && mem_steps > 0void onnxruntime::contrib::BahdanauAttention::PrepareMemory(const gsl::span&, const gsl::span&) [with T = float]onnxruntime::contrib::BahdanauAttention::BahdanauAttention(onnxruntime::AllocatorPtr, const onnxruntime::logging::Logger&, int, int, int, int, int, bool, onnxruntime::concurrency::ThreadPool*) [with T = float; onnxruntime::AllocatorPtr = std::shared_ptr]N11onnxruntime7contrib19IAttentionMechanismIfEEN11onnxruntime7contrib17BahdanauAttentionIfEEGemv found an unexpected CBLAS_TRANSPOSE input of/onnxruntime_src/onnxruntime/core/util/math_cpu.ccvoid onnxruntime::math::Gemv(CBLAS_TRANSPOSE, int, int, float, const T*, const T*, float, T*, Provider*) [with T = double; Provider = onnxruntime::CPUMathUtil]void onnxruntime::math::Im2colNd::operator()(const T*, const int64_t*, const int64_t*, int64_t, int64_t, const int64_t*, const int64_t*, const int64_t*, const int64_t*, int64_t, T*, bool, T) [with T = float; int64_t = long int]Received null OrtThreadingOptionsReceived invalid value for allow_spinning. Valid values are 0 or 1Device:[DeviceType: MemoryType: DeviceId:OrtMemoryInfo:[name: id: OrtMemType: OrtAllocatorType:CudaCudaPinnedSpecified device is not supported./onnxruntime_src/onnxruntime/core/framework/allocator.ccoperator()N11onnxruntime12CPUAllocatorEReceived invalid value of arena_extend_strategy /onnxruntime_src/onnxruntime/core/framework/allocatormgr.ccstatic const onnxruntime::logging::Logger& onnxruntime::logging::LoggingManager::DefaultLogger()CreateAllocatorSt14default_deleteIN11onnxruntime10IAllocatorEESt14default_deleteIN11onnxruntime8BFCArenaEESt19_Sp_counted_deleterIPN11onnxruntime8BFCArenaESt14default_deleteIS1_ESaIvELN9__gnu_cxx12_Lock_policyE2EESt19_Sp_counted_deleterIPN11onnxruntime10IAllocatorESt14default_deleteIS1_ESaIvELN9__gnu_cxx12_Lock_policyE2EEcudaMallocLimit: InUse: TotalAllocated: MaxInUse: NumAllocs: MaxAllocSize: Could not find Region for h < chunks_.size() Size: | Requested Size: | in_use: , prev: , next: p_int >= base_intc2->prev == h1h != kInvalidChunkHandlec->bin_num == bin_numCreating BFCArena for max_dead_bytes_per_chunk: memory limit: arena_extend_strategy Creating bins of max chunk size !chunk->in_use()Available memory of Extended allocation by bytes.Total allocated bytes: Allocated memory at Could not find chunk in bin Chunk Free Allocator:: Chunks . Bytes Requested Bin for bytes has max bytes of , Chunk State: Overall chunks summary: chunks of size . Total Sum Total of in-use chunks: Stats: tried to allocate 0 bytesExtending BFCArena for . bin_num: rounded_bytes:/onnxruntime_src/onnxruntime/core/framework/bfc_arena.cc/onnxruntime_src/onnxruntime/core/framework/bfc_arena.hp_int < base_int + memory_size_!c->in_use() && (c->bin_num != kInvalidBinNum)!c->in_use() && (c->bin_num == kInvalidBinNum)!c1->in_use() && !c2->in_use()bin->free_chunks.count(h) == 1 with following configs: initial_chunk_size_bytes: BinForSize(bin_size) == BinFromIndex(b)BinForSize(bin_size + 255) == BinFromIndex(b)BinForSize(bin_size * 2 - 1) == BinFromIndex(b)BinForSize(bin_size * 2) != BinFromIndex(b) is smaller than requested bytes of Incorrect arena extend strategy.0 == memory_size % kMinAllocationSizeFailed to allocate memory for requested buffer of size BinFromIndex(c->bin_num)->free_chunks.erase(h) > 0c->in_use() && (c->bin_num == kInvalidBinNum)Bin size: Chunks in_use/total (if not zero). Allocated bytes in_use/total. Requested bytes.b->free_chunks.size() == bin_info.total_chunks_in_bin - bin_info.total_chunks_in_useDiff between in-use and requested bytes is Summary of in-use chunks by size: Failed to find a free memory block despite calling Extend. rounded_bytes=BFC Arena ran out of memory trying to allocate . Current allocation summary follows.reserved_chunks_.find(ptr) == reserved_chunks_.end()void onnxruntime::BFCArena::DumpMemoryLog(size_t)DumpMemoryLogstd::array onnxruntime::BFCArena::get_bin_debug_info()void onnxruntime::BFCArena::FreeAndMaybeCoalesce(onnxruntime::BFCArena::ChunkHandle)void onnxruntime::BFCArena::RemoveFreeChunkFromBin(onnxruntime::BFCArena::ChunkHandle)void onnxruntime::BFCArena::RemoveFreeChunkIterFromBin(onnxruntime::BFCArena::Bin::FreeChunkSet*, const iterator&)void onnxruntime::BFCArena::InsertFreeChunkIntoBin(onnxruntime::BFCArena::ChunkHandle)void onnxruntime::BFCArena::Merge(onnxruntime::BFCArena::ChunkHandle, onnxruntime::BFCArena::ChunkHandle)void onnxruntime::BFCArena::DeallocateRawInternal(void*)void onnxruntime::BFCArena::SplitChunk(onnxruntime::BFCArena::ChunkHandle, size_t)void* onnxruntime::BFCArena::FindChunkPtr(onnxruntime::BFCArena::BinNum, size_t, size_t)void* onnxruntime::BFCArena::AllocateRawInternal(size_t, bool)AllocateRawInternalvirtual void* onnxruntime::BFCArena::Reserve(size_t)int onnxruntime::BFCArena::AllocationRegion::IndexFor(const void*) constRegionForonnxruntime::BFCArena::AllocationRegion::AllocationRegion(void*, size_t)onnxruntime::BFCArena::Extend(size_t)::__lambda3Extendonnxruntime::BFCArena::Chunk* onnxruntime::BFCArena::ChunkFromHandle(onnxruntime::BFCArena::ChunkHandle)static const onnxruntime::logging::Logger& onnxruntime::logging::LoggingManager::DefaultLogger()onnxruntime::BFCArena::BFCArena(std::unique_ptr, size_t, onnxruntime::ArenaExtendStrategy, int, int)BFCArenaN11onnxruntime15IArenaAllocatorEN11onnxruntime8BFCArenaEfff?/onnxruntime_src/onnxruntime/core/framework/data_transfer.ccsrc.SizeInBytes() == dst.SizeInBytes()virtual onnxruntime::common::Status onnxruntime::CPUDataTransfer::CopyTensor(const onnxruntime::Tensor&, onnxruntime::Tensor&, int) constCopyTensorsN11onnxruntime13IDataTransferEN11onnxruntime15CPUDataTransferETensor size mismatchThere's no data transfer registered for copying tensors from /onnxruntime_src/onnxruntime/core/framework/data_transfer_manager.ccdata_transfer registered is nullptr.CopyTensors(null)Not implementedsparse tensor type elem_proto != nullptrvalue_proto != nullptrMLDataType for: X |L<,XX/onnxruntime_src/onnxruntime/core/framework/data_types.ccthisProto->value_case() == TypeProto::ValueCase::kTensorTypeutils::HasElemType(thisProto->tensor_type())thisProto->value_case() == TypeProto::ValueCase::kSparseTensorTypeutils::HasElemType(thisProto->sparse_tensor_type())thisProto->value_case() == TypeProto::ValueCase::kSequenceTypeutils::HasElemType(thisProto->sequence_type())thisProto->value_case() == TypeProto::ValueCase::kMapTypeutils::HasKeyType(thisProto->map_type())thisProto->value_case() == TypeProto::ValueCase::kOpaqueTypeInvalid DataTypeImpl TypeProto definitionOnly ONNX MLDataType can be registeredWe do not expect duplicate registration of types for: expected to be a registered ONNX type/onnxruntime_src/include/onnxruntime/core/framework/data_types.h is not currently registered or supported\<XH\7\6l6|666666667,7D7\7\746onnxruntime::utils::ContainerChecker::ContainerChecker(onnxruntime::MLDataType)void onnxruntime::data_types_internal::DataTypeRegistry::RegisterDataType(onnxruntime::MLDataType)static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = std::map]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = std::map, float>]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = onnxruntime::BFloat16]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = onnxruntime::MLFloat16]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = std::basic_string]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = bool]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = long unsigned int]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = long int]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = unsigned int]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = int]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = short unsigned int]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = short int]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = unsigned char]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = signed char]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = double]static void onnxruntime::data_types_internal::SetSequenceType::Set(onnx::TypeProto&) [with T = float]static void onnxruntime::data_types_internal::SetMapTypes::Set(onnx::TypeProto&) [with K = long int; V = double]static void onnxruntime::data_types_internal::SetMapTypes::Set(onnx::TypeProto&) [with K = long int; V = float]static void onnxruntime::data_types_internal::SetMapTypes::Set(onnx::TypeProto&) [with K = long int; V = long int]static void onnxruntime::data_types_internal::SetMapTypes::Set(onnx::TypeProto&) [with K = long int; V = std::basic_string]static void onnxruntime::data_types_internal::SetMapTypes::Set(onnx::TypeProto&) [with K = std::basic_string; V = double]static void onnxruntime::data_types_internal::SetMapTypes::Set(onnx::TypeProto&) [with K = std::basic_string; V = float]static void onnxruntime::data_types_internal::SetMapTypes::Set(onnx::TypeProto&) [with K = std::basic_string; V = long int]static void onnxruntime::data_types_internal::SetMapTypes::Set(onnx::TypeProto&) [with K = std::basic_string; V = std::basic_string]virtual void onnxruntime::NonTensorTypeBase::ToDataContainer(const OrtValue&, size_t, void*) constvirtual void onnxruntime::NonTensorTypeBase::FromDataContainer(const void*, size_t, OrtValue&) constbool onnxruntime::NonTensorTypeBase::IsSequenceCompatible(const onnx::TypeProto&) constbool onnxruntime::NonTensorTypeBase::IsMapCompatible(const onnx::TypeProto&) constvirtual bool onnxruntime::SequenceTensorTypeBase::IsCompatible(const onnx::TypeProto&) constvirtual bool onnxruntime::SparseTensorTypeBase::IsCompatible(const onnx::TypeProto&) constvirtual bool onnxruntime::TensorTypeBase::IsCompatible(const onnx::TypeProto&) constbool onnxruntime::data_types_internal::IsCompatible(const onnx::TypeProto_Sequence&, const onnx::TypeProto_Sequence&)bool onnxruntime::data_types_internal::IsCompatible(const onnx::TypeProto_Map&, const onnx::TypeProto_Map&)GetElementTypeGetElementTypeGetElementTypeN11onnxruntime12DataTypeImplEN11onnxruntime14TensorTypeBaseEN11onnxruntime20SparseTensorTypeBaseEN11onnxruntime17NonTensorTypeBaseEN11onnxruntime22SequenceTensorTypeBaseEN11onnxruntime21PrimitiveDataTypeBaseEN11onnxruntime10TensorTypeIiEEN11onnxruntime10TensorTypeIfEEN11onnxruntime10TensorTypeIbEEN11onnxruntime10TensorTypeISsEEN11onnxruntime10TensorTypeIaEEN11onnxruntime10TensorTypeIhEEN11onnxruntime10TensorTypeItEEN11onnxruntime10TensorTypeIsEEN11onnxruntime10TensorTypeIlEEN11onnxruntime10TensorTypeIdEEN11onnxruntime10TensorTypeIjEEN11onnxruntime10TensorTypeImEEN11onnxruntime10TensorTypeINS_9MLFloat16EEEN11onnxruntime10TensorTypeINS_8BFloat16EEEN11onnxruntime16SparseTensorTypeIiEEN11onnxruntime16SparseTensorTypeIfEEN11onnxruntime16SparseTensorTypeIbEEN11onnxruntime16SparseTensorTypeIaEEN11onnxruntime16SparseTensorTypeIhEEN11onnxruntime16SparseTensorTypeItEEN11onnxruntime16SparseTensorTypeIsEEN11onnxruntime16SparseTensorTypeIlEEN11onnxruntime16SparseTensorTypeIdEEN11onnxruntime16SparseTensorTypeIjEEN11onnxruntime16SparseTensorTypeImEEN11onnxruntime16SparseTensorTypeINS_9MLFloat16EEEN11onnxruntime16SparseTensorTypeINS_8BFloat16EEEN11onnxruntime13NonTensorTypeISt3mapISsSsSt4lessISsESaISt4pairIKSsSsEEEEEN11onnxruntime7MapTypeISt3mapISsSsSt4lessISsESaISt4pairIKSsSsEEEEEN11onnxruntime13NonTensorTypeISt3mapISslSt4lessISsESaISt4pairIKSslEEEEEN11onnxruntime7MapTypeISt3mapISslSt4lessISsESaISt4pairIKSslEEEEEN11onnxruntime13NonTensorTypeISt3mapISsfSt4lessISsESaISt4pairIKSsfEEEEEN11onnxruntime7MapTypeISt3mapISsfSt4lessISsESaISt4pairIKSsfEEEEEN11onnxruntime13NonTensorTypeISt3mapISsdSt4lessISsESaISt4pairIKSsdEEEEEN11onnxruntime7MapTypeISt3mapISsdSt4lessISsESaISt4pairIKSsdEEEEEN11onnxruntime13NonTensorTypeISt3mapIlSsSt4lessIlESaISt4pairIKlSsEEEEEN11onnxruntime7MapTypeISt3mapIlSsSt4lessIlESaISt4pairIKlSsEEEEEN11onnxruntime13NonTensorTypeISt3mapIllSt4lessIlESaISt4pairIKllEEEEEN11onnxruntime7MapTypeISt3mapIllSt4lessIlESaISt4pairIKllEEEEEN11onnxruntime13NonTensorTypeISt3mapIlfSt4lessIlESaISt4pairIKlfEEEEEN11onnxruntime7MapTypeISt3mapIlfSt4lessIlESaISt4pairIKlfEEEEEN11onnxruntime13NonTensorTypeISt3mapIldSt4lessIlESaISt4pairIKldEEEEEN11onnxruntime7MapTypeISt3mapIldSt4lessIlESaISt4pairIKldEEEEEN11onnxruntime18SequenceTensorTypeIfEEN11onnxruntime18SequenceTensorTypeIdEEN11onnxruntime18SequenceTensorTypeIaEEN11onnxruntime18SequenceTensorTypeIhEEN11onnxruntime18SequenceTensorTypeIsEEN11onnxruntime18SequenceTensorTypeItEEN11onnxruntime18SequenceTensorTypeIiEEN11onnxruntime18SequenceTensorTypeIjEEN11onnxruntime18SequenceTensorTypeIlEEN11onnxruntime18SequenceTensorTypeImEEN11onnxruntime18SequenceTensorTypeIbEEN11onnxruntime18SequenceTensorTypeISsEEN11onnxruntime18SequenceTensorTypeINS_9MLFloat16EEEN11onnxruntime18SequenceTensorTypeINS_8BFloat16EEEN11onnxruntime13NonTensorTypeISt6vectorISt3mapISsfSt4lessISsESaISt4pairIKSsfEEESaIS9_EEEEN11onnxruntime12SequenceTypeISt6vectorISt3mapISsfSt4lessISsESaISt4pairIKSsfEEESaIS9_EEEEN11onnxruntime13NonTensorTypeISt6vectorISt3mapIlfSt4lessIlESaISt4pairIKlfEEESaIS9_EEEEN11onnxruntime12SequenceTypeISt6vectorISt3mapIlfSt4lessIlESaISt4pairIKlfEEESaIS9_EEEEN11onnxruntime17PrimitiveDataTypeIiEEN11onnxruntime17PrimitiveDataTypeIfEEN11onnxruntime17PrimitiveDataTypeIbEEN11onnxruntime17PrimitiveDataTypeISsEEN11onnxruntime17PrimitiveDataTypeIaEEN11onnxruntime17PrimitiveDataTypeIhEEN11onnxruntime17PrimitiveDataTypeItEEN11onnxruntime17PrimitiveDataTypeIsEEN11onnxruntime17PrimitiveDataTypeIlEEN11onnxruntime17PrimitiveDataTypeIdEEN11onnxruntime17PrimitiveDataTypeIjEEN11onnxruntime17PrimitiveDataTypeImEEN11onnxruntime17PrimitiveDataTypeINS_9MLFloat16EEEN11onnxruntime17PrimitiveDataTypeINS_8BFloat16EEEZN11onnxruntime19data_types_internal16DataTypeRegistryC1EvEUlPKNS_12DataTypeImplEE_SsN11onnxruntime8BFloat16ESt3mapISsfSt4lessISsESaISt4pairIKSsfEEESt3mapIlfSt4lessIlESaISt4pairIKlfEEEUnloading DSO Failed to unload DSO: A dso with name has already been loaded.Caught exception while destructing CustomOpsLoader with message: /onnxruntime_src/onnxruntime/core/framework/ex_lib_loader.ccCaught exception while loading custom ops with message: LoadExternalLiboperator()static const onnxruntime::logging::Logger& onnxruntime::logging::LoggingManager::DefaultLogger()~ExLibLoaderN11onnxruntime11ExLibLoaderE Requested shape: size=TraceFree for ort_value_idx=invalid index ort_value.Fence() == nullptrFor ort_value with index: but the actually size is: Invalid allocation kind: mlvalue.Fence() == nullptrMemory type should only appear once. returned nullptr failed. Error:Memory pattern planner is not enabled on this execution framework./onnxruntime_src/onnxruntime/core/framework/execution_frame.hort_value_index >= 0 && static_cast(ort_value_index) < all_values_size_/onnxruntime_src/onnxruntime/core/framework/node_index_info.hoffset >= 0 && static_cast(offset) < node_values_size_OrtValue shape verification failed. Current shape:/onnxruntime_src/onnxruntime/core/framework/execution_frame.ccshape && tensor.Shape() == *shapeort_value_idx >= 0 && static_cast(ort_value_idx) < alloc_plan.size()TraceAllocation for ort_value_idx=node_index_info and ort_value_idx_map are out of sync and cannot be usednode_index_info_.GetMaxMLValueIdx() == ort_value_idx_map.MaxIdx()Shape mismatch attempting to re-use buffer. . Validate usage of dim_value (values should be > 0) and dim_param (all values with the same string should equate to the same size) in shapes in the model.feeds.size() == feed_mlvalue_idxs.size()fetches.empty() || fetches.size() == fetch_mlvalue_idxs_.size() entries which doesn't match the number of fetches the frame was initialized with of Fetches vector passed to GetOutputs contains Trying to allocate memory for unused optional inputs/outputsTensor shape cannot contain any negative value, block in memory pattern size is: , fall back to default allocation behaviorort_value_index >= 0 && static_cast(ort_value_index) < alloc_plan.size()We don't expect custom allocators for non-tensor types, so a shape is mandatory here.Allocation of tensor types requires a shape.buffers_.find(location) == buffers_.end()static_activation_memory_sizes_in_byte_.find(location.name) == static_activation_memory_sizes_in_byte_.end()Allocation of memory pattern buffer for TraceFreevoid onnxruntime::ExecutionFrame::TraceFree(int)TraceAllocateconst onnxruntime::AllocPlanPerValue& onnxruntime::ExecutionFrame::GetAllocationPlan(int)ReleaseMLValueImplonnxruntime::common::Status onnxruntime::AllocateSparseTensor(OrtValue&, const onnxruntime::DataTypeImpl&, onnxruntime::AllocatorPtr, const onnxruntime::TensorShape&, size_t, bool, const onnxruntime::SessionState&)AllocateAsPerAllocationPlanonnxruntime::common::Status onnxruntime::ExecutionFrame::AllocateAsPerAllocationPlan(OrtValue&, int, const onnxruntime::TensorShape*, size_t)AllocateMLValueTensorPreAllocateBufferAllocateMLValueTensorSelfOwnBufferHelperonnxruntime::common::Status onnxruntime::ExecutionFrame::AllocateMLValueTensorSelfOwnBufferHelper(OrtValue&, int, onnxruntime::MLDataType, const OrtMemoryInfo&, const onnxruntime::TensorShape&, bool)operator()ExecutionFrameonnxruntime::ExecutionFrame::ExecutionFrame(const std::vector&, const std::vector&, const std::vector&, const std::vector&, const std::unordered_map >&, const onnxruntime::SessionState&)T* OrtValue::GetMutable() [with T = onnxruntime::Tensor]Initvoid onnxruntime::IExecutionFrame::Init(const std::vector&, const std::vector&, const std::unordered_map&, const std::vector&)int onnxruntime::NodeIndexInfo::GetMLValueIndex(int) constconst OrtValue& onnxruntime::IExecutionFrame::GetMLValue(int) constonnxruntime::common::Status onnxruntime::IExecutionFrame::GetOrCreateNodeOutputMLValue(int, const onnxruntime::TensorShape*, OrtValue*&, size_t)onnxruntime::IExecutionFrame::IExecutionFrame(const onnxruntime::OrtValueNameIdxMap&, const onnxruntime::NodeIndexInfo&, const std::vector&)N11onnxruntime15IExecutionFrameEN11onnxruntime14ExecutionFrameEduplicated allocator/onnxruntime_src/onnxruntime/core/framework/execution_provider.ccvoid onnxruntime::IExecutionProvider::InsertAllocator(onnxruntime::AllocatorPtr)N11onnxruntime18IExecutionProviderEError mapping feeds: Error mapping output names: /onnxruntime_src/onnxruntime/core/framework/feeds_fetches_manager.ccinput_copy_needed != DeviceCopyCheck::Unknown && output_copy_needed != DeviceCopyCheck::Unknownvoid onnxruntime::FeedsFetchesManager::SetDeviceCopyChecks(onnxruntime::DeviceCopyCheck, onnxruntime::DeviceCopyCheck)onnxruntime::FeedsFetchesInfo::FeedsFetchesInfo(const std::vector >&, const std::vector >&, const onnxruntime::OrtValueNameIdxMap&)FeedsFetchesInfoMapNamesToMLValueIdxs/onnxruntime_src/onnxruntime/core/framework/func_kernel.hcreate_func(&context, &func_state_) == 0/onnxruntime_src/onnxruntime/core/framework/graph_partitioner.ccProvider doesn't return correct number of compiled functionsnode_compute_funcs.size() == nodes_need_compile.size()No provider specified.1 == capability->nodes.size()onnxruntime::FunctionKernel::FunctionKernel(const onnxruntime::OpKernelInfo&)onnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constonnxruntime::Node* onnxruntime::PlaceNode(onnxruntime::Graph&, std::unique_ptr, const onnxruntime::KernelRegistryManager&, const string&, int&)onnxruntime::common::Status onnxruntime::GraphPartitioner::Partition(onnxruntime::Graph&, bool, onnxruntime::FuncManager&) constPartitionN11onnxruntime14FunctionKernelEkernel def can't be NULLFailed to add kernel for and type ( Version mismatch. node_version: kernel start version: kernel_end_version: (node_version: ),Op with name ( kernel not found in No matching hash for kernel is not supported in Kernel not found: Conflicting with a registered kernel with op versions./onnxruntime_src/onnxruntime/core/framework/kernel_registry.cclen <= op_schema.inputs().size()Found kernel for Op with name ( in the supported version range However the types are incompatible. This op has been implemented only for the following types ( but the node in the model has the following type ( Encountered following errors: (TryCreateKernelvoid onnxruntime::{anonymous}::TraverseFormalParametersWithTypeProto(const onnxruntime::Node&, ParamFilterFn, TraverseFn) [with ParamFilterFn = onnxruntime::{anonymous}::TypeBindingResolver::Resolve(const string&) const::__lambda9; TraverseFn = onnxruntime::{anonymous}::TypeBindingResolver::Resolve(const string&) const::__lambda10]void onnxruntime::{anonymous}::TraverseFormalParametersWithTypeProto(const onnxruntime::Node&, ParamFilterFn, TraverseFn) [with ParamFilterFn = onnxruntime::{anonymous}::TypeBindingResolver::TypeBindingResolver(const onnxruntime::Node&, bool)::__lambda7; TraverseFn = onnxruntime::{anonymous}::TypeBindingResolver::TypeBindingResolver(const onnxruntime::Node&, bool)::__lambda8]The node is not placed on any Execution Provider. (node ). Failed to find kernel for found duplicated provider in KernelRegistryManagernullptr != type_proto/onnxruntime_src/onnxruntime/core/framework/mldata_type_utils.ccconst onnxruntime::DataTypeImpl* onnxruntime::utils::GetMLDataType(const onnxruntime::NodeArg&)$ %,5y >; onnxruntime::NodeIndex = long unsigned int]::__lambda9onnxruntime::NodeIndexInfo::Init(const TValidNodes&, onnxruntime::NodeIndex, const onnxruntime::OrtValueNameIdxMap&) [with TValidNodes = onnxruntime::GraphNodes; onnxruntime::NodeIndex = long unsigned int]::__lambda9ZN11onnxruntime13NodeIndexInfo4InitINS_10GraphNodesEEEvRKT_mRKNS_18OrtValueNameIdxMapEEUlRKNS_7NodeArgEbE_ZN11onnxruntime13NodeIndexInfo4InitINS_10GraphNodesEEEvRKT_mRKNS_18OrtValueNameIdxMapEEUlRKNS_7NodeArgEbE0_ZN11onnxruntime13NodeIndexInfo4InitINS_10ValidNodesIKSt6vectorIPKNS_4NodeESaIS6_EEEEEEvRKT_mRKNS_18OrtValueNameIdxMapEEUlRKNS_7NodeArgEbE_ZN11onnxruntime13NodeIndexInfo4InitINS_10ValidNodesIKSt6vectorIPKNS_4NodeESaIS6_EEEEEEvRKT_mRKNS_18OrtValueNameIdxMapEEUlRKNS_7NodeArgEbE0_type_proto is not of type map! type_proto is not of type sequence!:tensor type T TOrtValue is TensorSequence type but has no element Tensor DataType.Tensor types should have been handled already(H(((H\\\\4const T& OrtValue::Get() const [with T = onnxruntime::TensorSeq]const T& OrtValue::Get() const [with T = onnxruntime::SparseTensor]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]TempSpace allocator not foundExecution frame was nullframe != nullptrOpKernel was nullkernel != nullptr. Num args is Invalid arg_num of arg_num < arg_counts.size()/onnxruntime_src/onnxruntime/core/framework/op_kernel.ccnode_offsets_index < node_offsets_size_OrtValue* onnxruntime::OpKernelContext::GetOrCreateOutputMLValue(int)int onnxruntime::OpKernelContext::NumVariadicInputs(size_t) constOrtValue* onnxruntime::OpKernelContext::OutputMLValue(int, const onnxruntime::TensorShape&, size_t)T* OrtValue::GetMutable() [with T = onnxruntime::Tensor]int onnxruntime::NodeIndexInfo::GetNodeOffset(onnxruntime::NodeIndex) constonnxruntime::OpKernelContext::OpKernelContext(onnxruntime::IExecutionFrame*, const onnxruntime::OpKernel*, onnxruntime::concurrency::ThreadPool*, const onnxruntime::logging::Logger&)cannot find allocator/onnxruntime_src/onnxruntime/core/framework/op_kernel_info.ccconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]const OrtMemoryInfo& onnxruntime::OpKernelInfo::GetMemoryInfo(int, OrtMemType) constattr != nullptrAttibute name and type don't matchNo attribute with this name is defined./onnxruntime_src/onnxruntime/core/framework/op_node_proto_helper.ccvalues.size() == static_cast(attr->floats_size())values.size() == static_cast(attr->ints_size())values.size() == static_cast(attr->strings_size())/onnxruntime_src/include/onnxruntime/core/framework/op_node_proto_helper.hvalues.size() == static_cast(attr->tensors_size())values.size() == static_cast(attr->graphs_size())ort_value.IsTensor()ort_value.IsAllocated(). Shape:. Dimension 0 is Invalid dim0_offset of dim0_offset < dim0_size/onnxruntime_src/onnxruntime/core/framework/ort_value_tensor_slicer.ccInsufficient dimensions to slice on gsl::narrow_cast(tensor_shape.NumDimensions()) >= slice_dimensionCan't slice a non-tensor OrtValue. Type was OrtValue has not been allocated so can't be sliced.onnxruntime::OrtValueTensorSlicer::Iterator::Iterator(T&, size_t, size_t, int64_t, onnxruntime::OrtValueTensorSlicer::Iterator::Direction) [with T = const OrtValue; size_t = long unsigned int; int64_t = long int]static onnxruntime::OrtValueTensorSlicer onnxruntime::OrtValueTensorSlicer::Create(T&, int64_t, int64_t) [with T = const OrtValue; int64_t = long int]onnxruntime::OrtValueTensorSlicer::Iterator::Iterator(T&, size_t, size_t, int64_t, onnxruntime::OrtValueTensorSlicer::Iterator::Direction) [with T = OrtValue; size_t = long unsigned int; int64_t = long int]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]static onnxruntime::OrtValueTensorSlicer onnxruntime::OrtValueTensorSlicer::Create(T&, int64_t, int64_t) [with T = OrtValue; int64_t = long int]Session Config with key [] already exists with value []. It will be overwrittenConfig value is longer than maximum length 1024Config key is empty or longer than maximum length 128/onnxruntime_src/onnxruntime/core/framework/session_options.ccstatic const onnxruntime::logging::Logger& onnxruntime::logging::LoggingManager::DefaultLogger()AddConfigEntry/onnxruntime_src/onnxruntime/core/framework/session_state.ccSetGraphAndCreateKernels must be called prior to GetExecutionInfo.entry != kernel_create_info_map_.cend(). Do you have duplicated calls to SessionState::AddInitializedTensor function?Done saving OrtValue mappings.Allocator already registered for Kernel create info is null. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_kcis Kernel create info node indices are null. Invalid ORT format model.Satisfied, but should not be: nullptr == node_indices Kernel create info hashes are null. Invalid ORT format model.Satisfied, but should not be: nullptr == kernel_def_hashes Size mismatch for kernel create info node indexes and hashes. Invalid ORT format model.Not satisfied: node_indices->size() == kernel_def_hashes->size() Satisfied, but should not be: node == nullptr SessionState for subgraphs is null. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_sub_graph_session_states Subgraph SessionState entry for Satisfied, but should not be: nullptr == fbs_sub_graph_ss Satisfied, but should not be: nullptr == fbs_sub_session_state Failed to find output name in the mapping: Failed to find input name in the mapping: Missing session state for subgraph. Node:'entry != node_to_subgraph_ss.second.cend()Using an input in multiple nodes on different devices is not supported currently. Input:Only one node should produce an output. Existing entry for output_names_to_nodeinfo.empty()existing_entries.find(attribute_name) == existing_entries.cend()Main Graph instance should have populated all subgraphs when being resolved.Could not find OrtValue with idx 'node_index_info_duplicated ort_value index:SaveMLValueNameIndexMapping. Ignoring allocator from Can't find node with index . Invalid ORT format model.Subgraph SessionState for session.disable_prepacking' OpType: Attribute:p_op_kernel is used by node ) and node Entry exists in node for attribute onnxruntime::common::Status onnxruntime::SessionState::FinalizeSessionStateImpl(const std::basic_string&, onnxruntime::KernelRegistryManager&, const onnxruntime::Node*, const onnxruntime::SessionOptions&, bool)FinalizeSessionStateImplFinalizeSessionStateLoadFromOrtFormatCreateSubgraphSessionStateonnxruntime::common::Status onnxruntime::SessionState::CreateSubgraphSessionState()GetSubGraphSessionStatesOrtFormatSaveToOrtFormatvoid onnxruntime::SessionState::UpdateToBeExecutedNodes(const std::vector&)const onnxruntime::NodeIndexInfo& onnxruntime::SessionState::GetNodeIndexInfo() constvoid onnxruntime::SessionState::AddSubgraphSessionState(onnxruntime::NodeIndex, const string&, std::unique_ptr)void onnxruntime::SessionState::AddOutputNameToNodeInfoMapping(const string&, const onnxruntime::SessionState::NodeInfo&)PrepackInitializedConstantTensorsconst onnxruntime::KernelCreateInfo& onnxruntime::SessionState::GetNodeKernelCreateInfo(onnxruntime::NodeIndex) constPopulateKernelCreateInfoCreateGraphInfoSetupAllocators*ZN11onnxruntime12SessionState33PrepackInitializedConstantTensorsEvEUlRKNS_7NodeArgEbE_*ZN11onnxruntime12SessionState23UpdateToBeExecutedNodesERKSt6vectorIiSaIiEEEUlPKNS_4NodeEE_*ZN11onnxruntime12SessionState24FinalizeSessionStateImplERKSsRNS_21KernelRegistryManagerEPKNS_4NodeERKNS_14SessionOptionsEbEUliRK8OrtValueRKNS_11OrtCallbackEbE0_*ZN11onnxruntime12SessionState15SetupAllocatorsEvEUli10OrtMemTypeE_N11onnxruntime25ISequentialPlannerContextEN11onnxruntime24SequentialPlannerContextEGraph input with name is not used by any node.Saving initialized tensors. bytes for , Got Failed to copy tensor to Deserialize tensor /onnxruntime_src/onnxruntime/core/framework/session_state_utils.ccOrtValue indexes should have been populated.ort_value_name_idx_map.MaxIdx() > -1[Memory] SessionStateInitializer statically allocates string tensor is not supported for copying between allocatorsInternal error. The preallocated buffer is too small. Requires Done saving initialized tensorsForEachWithIndexoperator()operator()SaveInputOutputNamesToNodeMappingDeserializeTensorProtoonnxruntime::common::Status onnxruntime::session_state_utils::SaveInitializedTensors(const onnxruntime::Env&, const std::basic_string&, const onnxruntime::GraphViewer&, const OrtMemoryInfo&, const onnxruntime::OrtValueNameIdxMap&, onnxruntime::ITensorAllocator&, const std::function&, const onnxruntime::logging::Logger&, const onnxruntime::DataTransferManager&)SaveInitializedTensors*ZN11onnxruntime19session_state_utils33SaveInputOutputNamesToNodeMappingERKNS_11GraphViewerERNS_12SessionStateERKSt6vectorIPKNS_7NodeArgESaIS9_EEEUlRS8_mE_*ZN11onnxruntime19session_state_utils33SaveInputOutputNamesToNodeMappingERKNS_11GraphViewerERNS_12SessionStateERKSt6vectorIPKNS_7NodeArgESaIS9_EEEUlRS8_mE0_tensor size overflowshape.Size() must >=0dtype_ != nullptrp_type != nullptr/onnxruntime_src/onnxruntime/core/framework/tensor.ccTensor is expected to contain one of the primitive data types. Got: tensor failed memory size calculationvoid onnxruntime::Tensor::Init(onnxruntime::MLDataType, const onnxruntime::TensorShape&, void*, onnxruntime::AllocatorPtr, ptrdiff_t)size_t onnxruntime::Tensor::SizeInBytes() constonnxruntime::Tensor::Tensor(onnxruntime::MLDataType, const onnxruntime::TensorShape&, std::shared_ptr, ptrdiff_t)onnxruntime::Tensor::Tensor(onnxruntime::MLDataType, const onnxruntime::TensorShape&, void*, const OrtMemoryInfo&, ptrdiff_t)Internal error.Mem pattern for initializer ' is not found' failedduplicated location/onnxruntime_src/onnxruntime/core/framework/tensor_allocator_with_mem_pattern.hWeight buffer for initializer 'Get preallocated buffer for initializer 'Failed to get allocator for location: TraceFinalizePlanN11onnxruntime16ITensorAllocatorEN11onnxruntime29TensorAllocatorWithMemPatternEmodel format error! Need a key for the external data infomodel format error! Need a value for the external data infomodel format error! Missing 'location'checksummodel format error!Invalid dimension of dimension <= num_dims/onnxruntime_src/onnxruntime/core/framework/tensor_shape.ccdimstart <= dimend && dimend <= size()Invalid tensor shape slice argument. for SizeFromDimension. Tensor has onnxruntime::TensorShape onnxruntime::TensorShape::Slice(size_t, size_t) constint64_t onnxruntime::TensorShape::SizeFromDimension(size_t) constint64_t onnxruntime::TensorShape::SizeToDimension(size_t) constOrtValue is not a TensorArgument is not a tensor/onnxruntime_src/onnxruntime/core/framework/tensor_type_and_shape.cc const T& OrtValue::Get() const [with T = onnxruntime::SparseTensor]const T& OrtValue::Get() const [with T = onnxruntime::Tensor]OrtStatus* OrtApis::GetTensorTypeAndShape(const OrtValue*, OrtTensorTypeAndShapeInfo**)Invalid TensorProto) in proto in 'Constant' node 'data overflowUnsupported type: UnpackTensor: the pre-allocate size does not match the size in protosource and destination buffer size mismatch/onnxruntime_src/onnxruntime/core/framework/endian_utils.hNot satisfied: source_bytes.size_bytes() == destination.size_bytes() UnpackTensor: the pre-allocated size does not match the raw data size, expected /onnxruntime_src/onnxruntime/core/framework/tensorprotoutils.cc) does not match the data size(corrupted protobuf data: tensor shape size(Unsupported sparse tensor data type of rank == dims.size() && rank > 0cur_index == &*indices_data.cend()Invalid SparseTensor indices. Should be rank 0 or 1. Got:Unsupported attribute value type of string tensor can not have raw datatensor can't contain negative dimsThe buffer planner is not consistent with tensor buffer size, expected initialize preallocated buffer failedInitialized tensor with unexpected type: 66644444`444R0 ////000t000.lKtFFDGGHHHlKTII$JJKlKlK FXVYU/XVuWTWpVWTUBTSXXS onnxruntime::common::Status onnxruntime::utils::CopySparseData(size_t, const onnx::TensorProto&, gsl::span, std::function) [with T = std::basic_string; size_t = long unsigned int]onnxruntime::common::Status onnxruntime::utils::CopySparseData(size_t, const onnx::TensorProto&, gsl::span, std::function) [with T = long unsigned int; size_t = long unsigned int]onnxruntime::common::Status onnxruntime::utils::CopySparseData(size_t, const onnx::TensorProto&, gsl::span, std::function) [with T = unsigned int; size_t = long unsigned int]SparseTensorProtoToDenseTensorProtoonnxruntime::common::Status onnxruntime::utils::ConstantNodeProtoToTensorProto(const onnx::NodeProto&, onnx::TensorProto&)ConstantNodeProtoToTensorProtoGetFileContentTensorProtoToMLValueReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawDataReadLittleEndianUnpackTensorWithRawData*ZN11onnxruntime5utils35SparseTensorProtoToDenseTensorProtoERKN4onnx17SparseTensorProtoERNS1_11TensorProtoEEUlmmE_*ZN11onnxruntime5utils35SparseTensorProtoToDenseTensorProtoERKN4onnx17SparseTensorProtoERNS1_11TensorProtoEEUlmmE0_*ZN11onnxruntime5utils35SparseTensorProtoToDenseTensorProtoERKN4onnx17SparseTensorProtoERNS1_11TensorProtoEEUlmmE1_RknpuExecutionProviderexec_plan_ptrallocator != nullptrcopy_info.size() == num_feeds/onnxruntime_src/onnxruntime/core/framework/utils.ccfeed_locations.size() == copy_info.size()fetch_alloc_info.size() == copy_info.size()Failed to find allocator for device Only one thread was configured for parallel execution. Hence will use sequential execution.CopyOutputsAcrossDevicesCopyInputsAcrossDevicesonnxruntime::common::Status onnxruntime::utils::CopyInputsAcrossDevices(const onnxruntime::SessionState&, const std::vector&, std::vector&, const std::vector&)ExecuteGraphImplExecuteGraphT* OrtValue::GetMutable() [with T = onnxruntime::Tensor]BatchOrCopyMLValueonnxruntime::common::Status onnxruntime::utils::BatchOrCopyMLValue(const onnxruntime::SessionState&, const onnxruntime::MLValueCopyInfo&, const OrtValue&, OrtValue&, std::vector*)const T& OrtValue::Get() const [with T = onnxruntime::Tensor]CopyOneInputAcrossDevicesbool onnxruntime::utils::FinalizeCopyInfoForFetches(const std::vector&, std::vector&)bool onnxruntime::utils::FinalizeCopyInfoForFeeds(const std::vector&, std::vector&)CalculateStaticCopyInfoForFeedCalculateStaticCopyInfoForFeedsInitializeFeedFetchCopyInfoconst OrtMemoryInfo& onnxruntime::utils::FindMemoryInfoForValue(const onnxruntime::OrtValueNameIdxMap&, const onnxruntime::SequentialExecutionPlan&, const string&)FindMemoryInfoForValueconst OrtMemoryInfo& onnxruntime::utils::FindMemoryInfoForValue(const onnxruntime::SessionState&, const string&)N11onnxruntime9IExecutorEAllocateAllocateStaticallyPreExistingReuseAllocateOutputSharenullptr != tensor_type_basereused != reused_forCan not find the node p_providerAllocation Plan: Execution Plan: ) , use fence when asyncIndex out-of-range!nullptr != nodeFree ml-values: INVALID INDEXvector::_M_fill_insertp_kernel_def/onnxruntime_src/onnxruntime/core/framework/allocation_planner.ccid >= 0 && static_cast(id) < ort_value_info_.size()n >= 0 && static_cast(n) < ort_value_info_.size()n >= 0 && static_cast(n) < plan_.allocation_plan.size()SessionState should have saved the KernelCreateInfo prior to this running. NodeIndex:entry != kernel_create_info_map.cend()(ort_value_idx) output_name : Should not have entry in kernel create info with nullptr for kernel_defCan not find the execution provider onnxruntime::OrtValueIndex& onnxruntime::PlannerImpl::Buffer(onnxruntime::OrtValueIndex)void onnxruntime::PlannerImpl::Reuse(onnxruntime::OrtValueIndex, onnxruntime::OrtValueIndex, onnxruntime::AllocKind)static size_t onnxruntime::PlannerImpl::GetElementSize(const string* const&)OrtMemoryInfo onnxruntime::PlannerImpl::GetLocationForNodeInput(size_t, const onnxruntime::Node&)GeneratePlanForWeightsComputeReusePlanonnxruntime::AllocPlanPerValue& onnxruntime::PlannerImpl::AllocPlan(onnxruntime::OrtValueIndex)int& onnxruntime::PlannerImpl::UseCount(onnxruntime::OrtValueIndex)void onnxruntime::PlannerImpl::ProcessDef(onnxruntime::OrtValueIndex, const onnxruntime::NodeArg*)onnxruntime::OrtValueIndex onnxruntime::PlannerImpl::Index(const OrtValueName&)ForEachWithIndexconst onnxruntime::KernelCreateInfo& onnxruntime::GetKernelCreateInfo(const std::unordered_map >&, onnxruntime::NodeIndex)ComputeUseCountsonnxruntime::common::Status onnxruntime::PlannerImpl::ComputeUseCounts()CreatePlanN11onnxruntime17ExecutionPlanBaseEN11onnxruntime23SequentialExecutionPlanEZN11onnxruntime11PlannerImpl16ComputeUseCountsEvEUlRKNS_7NodeArgEmE_ZN11onnxruntime11PlannerImpl16ComputeUseCountsEvEUlRKNS_7NodeArgEbE0_ZN11onnxruntime11PlannerImpl22GeneratePlanForWeightsEvEUlRKNS_7NodeArgEmE_Divide by zerostatic void SafeIntExceptionHandler::SafeIntOnDivZero()func info for node: already exist.Can't use func with null ptr/onnxruntime_src/onnxruntime/core/framework/fuse_nodes_funcs.ccGetFuncs*ZNK11onnxruntime11FuncManager8GetFuncsERKSsPSt8functionIFNS_6common6StatusEPvPK6OrtApiP16OrtKernelContextEEPS3_IFiPNS_14ComputeContextEPS6_EEPS3_IFvS6_EEEUlS6_S9_SB_E_*ZNK11onnxruntime11FuncManager8GetFuncsERKSsPSt8functionIFNS_6common6StatusEPvPK6OrtApiP16OrtKernelContextEEPS3_IFiPNS_14ComputeContextEPS6_EEPS3_IFvS6_EEEUlSG_SH_E0_*ZNK11onnxruntime11FuncManager8GetFuncsERKSsPSt8functionIFNS_6common6StatusEPvPK6OrtApiP16OrtKernelContextEEPS3_IFiPNS_14ComputeContextEPS6_EEPS3_IFvS6_EEEUlS6_E1_Begin execution does not.entry != nullptrop_name_fence_before node. Name:'' Status Message: _kernel_time_fence_afterMultiple errors were found.ParallelExecutor::ExecuteUnknown exception was caught by catch-all handler.Exception running nodes starting at Exiting due to terminate flag being set to true./onnxruntime_src/onnxruntime/core/framework/parallel_executor.ccGot nullptr from GetKernel for node: All implicit inputs should have OrtValue instances by now. /onnxruntime_src/onnxruntime/core/framework/op_kernel_context_internal.hNon-zero status code returned while running onnxruntime::OpKernelContextInternal::OpKernelContextInternal(const onnxruntime::SessionState&, onnxruntime::IExecutionFrame&, const onnxruntime::OpKernel&, const onnxruntime::logging::Logger&, const bool&)onnxruntime::common::Status onnxruntime::ParallelExecutor::RunNodeAsync(size_t, const onnxruntime::SessionState&, const onnxruntime::logging::Logger&)RunNodeAsyncconst T& OrtValue::Get() const [with T = onnxruntime::Tensor]Execute*ZN11onnxruntime16ParallelExecutor11EnqueueNodeEmRKNS_12SessionStateERKNS_7logging6LoggerEEUlvE_N11onnxruntime16ParallelExecutorEN11onnxruntime23OpKernelContextInternalEgraph_indexexec_plan_indexactivation_sizeparameter_sizeSequentialExecutor::Execute/onnxruntime_src/onnxruntime/core/framework/sequential_executor.cc[Memory] ExecutionFrame statically allocates [Memory] ExecutionFrame dynamically allocates ReleaseNodeMLValuesonnxruntime::OpKernelContextInternal::OpKernelContextInternal(const onnxruntime::SessionState&, onnxruntime::IExecutionFrame&, const onnxruntime::OpKernel&, const onnxruntime::logging::Logger&, const bool&)ExecuteN11onnxruntime18SequentialExecutorEinvalid ort_value_index:', location: /onnxruntime_src/onnxruntime/core/framework/simple_tensor_allocator.ccFailed to get allocator for initializer 'GetPreallocatedBufferN11onnxruntime21SimpleTensorAllocatorE Performs element-wise binary {name} on 8 bit data types (with Numpy-style broadcasting support). {additionalDocumentation} Input A's scale. It's a scalar, which means a per-tensor/layer quantization.Input A zero point. Default value is 0 if it's not specified. It's a scalar, which means a per-tensor/layer quantization.Input B's scale. It's a scalar, which means a per-tensor/layer quantization.Input B zero point. Default value is 0 if it's not specified. It's a scalar, which means a per-tensor/layer quantization.Output scale. It's a scalar, which means a per-tensor/layer quantization.Output zero point. Default value is 0 if it's not specified. It's a scalar, which means a per-tensor/layer quantization.Result, has same element type as two inputsConstrain input and output types to 8 bit signed and unsigned tensors.inputs are expected to have tensor type and output type should not be null./onnxruntime_src/onnxruntime/core/graph/contrib_ops/contrib_defs.ccWhether every token can only attend to previous tokens. Default value is 0.3D input tensor with shape (batch_size, sequence_length, hidden_size), hidden_size = num_heads * head_size2D input tensor with shape (hidden_size, 3 * hidden_size)1D input tensor with shape (3 * hidden_size)Attention mask with shape (batch_size, past_sequence_length + sequence_length), or index with shape (batch_size) or (2 * batch_size).past state for key and value with shape (2, batch_size, num_heads, past_sequence_length, head_size).3D output tensor with shape (batch_size, append_length, hidden_size)present state for key and value with shape (2, batch_size, num_heads, past_sequence_length + sequence_length, head_size)Constrain input and output types to float tensors.Constrain mask index to integer typesscale of quantized input tensor. It's a scalar, which means a per-tensor/layer quantization.scale of weight scale. It's a scalar, which means a per-tensor/layer quantization.Attention mask index with shape (batch_size)zero point of quantized input tensor.It's a scalar, which means a per-tensor/layer quantization.zero point of quantized weight tensor. It's a scalar, which means a per-tensor/layer quantization.3D output tensor with shape (batch_size, sequence_length, hidden_size)Constrain input and output types to int8 tensors.The epsilon value to use to avoid division by zero.2D words IDs with shape (batch_size, sequence_length)2D segment IDs with shape (batch_size, sequence_length)1D gamma tensor for layer normalization with shape (hidden_size)1D beta tensor for layer normalization with shape (hidden_size)2D attention mask with shape (batch_size, sequence_length)1D mask_index tensor with shape (batch_size)Constrain input and output integer tensors typesConstrain input and output float tensors types.Constrain input and output types to float or half tensors.3D input tensor with shape (batch_size, sequence_length, hidden_size)3D skip tensor with shape (batch_size, sequence_length, hidden_size)1D input tensor with shape (hidden_size)1D skip tensor with shape (hidden_size1D bias tensor with shape (hidden_sizeSaved mean used during training to speed up gradient computationSaved inverse standard variance used during training to speed up gradient computation.Constrain mean and inv_std_var to float tensors.Bias applied to each channel, same size as C.Input tensor of shape [N,C,H,W]Result, has same shape and type as inputA 1-D values of (leftBorder, topBorder, rightBorder, bottomBorder).A 1-D values of (height, width).Result, has same type as input, with H and W dimensions reduced.Constrain input and output types to all tensor types.Tensor of data to extract slices from.1-D tensor of starting indices of corresponding axis in `axes`1-D tensor of ending indices (exclusive) of corresponding axis in axes1-D tensor of axes that `starts` and `ends` apply to.Constrain indices to integer typesBool to determine if hidden state is zeroes or passed along for timesteps past the given sequence_length.The previous GRU hidden state.Unactivated gate outputs from forget, update, and output gates, pre-activation.Array of sequence lengths. len(seq_lengths) should equal batch size N.The timestep for this operation.The new GRU hidden state calculated by this op.If 1, mean and variance are computed across channels. Default is 0.If 0, normalize the mean only. Default is 1.The scaled hyperbolic tangent values of the input tensor computed element-wiseConstrain input0 and output types to float tensorsConstrain input and output types to float tensorsInput tensor A. The shape of A should be (M, K) if transA is 0, or (K, M) if transA is non-zero.Input tensor B. The shape of B should be (K, N) if transB is 0, or (N, K) if transB is non-zero.Input tensor C. The shape of C should be unidirectional broadcastable to (M, N).Output tensor of shape (M, N).Constrain input and output types to float/int tensors.Whether A should be transposedWhether B should be transposedScalar multiplier for the product of input tensors A * B.Scalar multiplier for input tensor C.Specified axis to insert a dimensionThe axis along which same quantization parameters are applied. It's optional.If it's not specified, it means per-tensor quantization and input 'x_scale' and 'x_zero_point' must be scalars.If it's specified, it means per 'axis' quantization and input 'x_scale' and 'x_zero_point' must be 1-D tensors.N-D full precision Input tensor to be quantized.Scale for doing quantization to get 'y'. It could be a scalar or a 1-D tensor,which means a per-tensor or per-axis quantization. If it's a 1-D tensor, its number of elements should be equal to the dimension value of 'axis' dimension of input 'x'.Zero point for doing quantization to get 'y'. It could be a scalar or a 1-D tensor, which means a per-tensoror per-axis quantization. If it's a 1-D tensor, its number of elements should be equal to the dimension value of 'axis' dimension of input 'x'.N-D quantized output tensor. It has same shape as input 'x'.Constrain 'x', 'y_scale' to float tensors.Constrain 'y_zero_point' and 'y' to 8-bit integer tensors.N-D quantized Input tensor to be de-quantized.Scale for input 'x'. It could be a scalar or a 1-D tensor, which means a per-tensor or per-axis quantization.If it's a 1-D tensor, its number of elements should be equal to the dimension value of 'axis' dimension of input 'x'.Zero point for input 'x'. It could be a scalar or a 1-D tensor, which means a per-tensor or per-axis quantization.If it's a 1-D tensor, its number of elements should be equal to the dimension value of 'axis' dimension of input 'x'.N-D full precision output tensor. It has same shape as input 'x'.Constrain 'x' and 'x_zero_point' to 8-bit integer tensors.Constrain 'y', 'x_scale' to float tensors.Input/Output is a string tensorBoolean whether to mark the beginning/end character with start of text character (0x02)/end of text character (0x03).The string used to pad output tensors when the tokens extracted doesn't match the maximum number of tokens found. If start/end markers are needed, padding will appear outside the markers.An optional string. Token's regular expression in basic POSIX format (pubs.opengroup.org/onlinepubs/9699919799/basedefs/V1_chap09.html#tag_09_03). If set, tokenizer may produce tokens matching the specified pattern. Note that one and only of 'tokenexp' and 'separators' should be set.an optional list of strings attribute that contains a list of separators - regular expressions to match separators Two consecutive segments in X connected by a separator would be divided into two tokens. For example, if the input is "Hello World!" and this attribute contains only one space character, the corresponding output would be ["Hello", "World!"]. To achieve character-level tokenization, one should set the 'separators' to [""], which contains an empty string.Minimum number of characters allowed in the output. For example, if mincharnum is 2, tokens such as "A" and "B" would be ignoredMatrix multiply results from A * BConstrain input A data types as 16-bit integer tensorConstrain input B data types as 16-bit integer tensorConstrain output Y data types as 32-bit integer tensor.T3 must be tensor(uint32) when both T1 and T2 are tensor(uint16),or must be tensor(int32) when either T1 or T2 is tensor(int16).Scale of quantized input 'B'. It could be a scalar or a 1-D tensor, which means a per-tensor or per-column quantization. If it's a 1-D tensor, its number of elements should be equal to the number of columns of input 'B'.Zero point tensor for input 'B'. It's optional and default value is 0. It could be a scalar or a 1-D tensor, which means a per-tensor or per-column quantization. If it's a 1-D tensor, its number of elements should be equal to the number of columns of input 'B'.1D input tensor, whose dimension is same as B's last dimensionConstrain input A, b_scale and output Y data type as float tensor.Constrain input B data type to 8-bit integer tensor.Scale of quantized input 'A'. It could be a scalar or a 1-D tensor, which means a per-tensor or per-column quantization. If it's a 1-D tensor, its number of elements should be equal to the number of columns of input 'A'.Zero point tensor for input 'A'. It's optional and default value is 0. It could be a scalar or a 1-D tensor, which means a per-tensor or per-column quantization. If it's a 1-D tensor, its number of elements should be equal to the number of columns of input 'A'.Constrain input A data type to 8-bit integer tensor.Constrain input a_scale, b_scale and output Y data type as float tensor.Scalar multiplier for the product of the input tensors.Whether A should be transposed on the last two dimensions before doing multiplicationWhether B should be transposed on the last two dimensions before doing multiplicationConstrain input type to 8-bit integer tensor.Constrain output data type to 32-bit integer tensor.T2 must be tensor(uint32) when T1 is tensor(uint8),or must be tensor(int32) when T1 is tensor(int8).A list of integers, along which to reduce. The default is to reduce over all the dimensions of the input tensor.Keep the reduced dimension or not, default 1 mean keep reduced dimension.C = (A_scale * (A - A_zero_point) + B_scale * (B - B_zero_point))/C_scale + C_zero_pointC = ((A - A_zero_point) * (B - B_zero_point)) * (A_scale * B_scale)/C_scale + C_zero_pointInput scale. It's a scalar, which means a per-tensor/layer quantization.Input zero point. Default value is 0 if it's not specified. It's a scalar, which means a per-tensor/layer quantization.Constrain input types to 8 bit signed and unsigned tensors.Constrain output to 32 bit tensorConstrain output types to 32 bit tensors.Whether include pad pixels when calculating values for the edges. Default is 0, doesn't count include pad.The size of the kernel along each axis.Stride along each spatial axis. If not present, the stride defaults to 1 along each spatial axis.Whether to use ceil or floor (default) to compute the output shape.Input data tensor from the previous operator; dimensions for image case are (N x C x H x W), where N is the batch size, C is the number of channels, and H and W are the height and the width of the data. For non image case, the dimensions are in the form of (N x C x D1 x D2 ... Dn), where N is the batch size. Optionally, if dimension denotation is in effect, the operation expects the input data tensor to arrive with the dimension denotation of [DATA_BATCH, DATA_CHANNEL, DATA_FEATURE, DATA_FEATURE ...].Output data tensor from average or max pooling across the input tensor. Dimensions will vary based on various kernel, stride, and pad sizes. Floor value of the dimension is usedConstrain input and output types to 8 bit tensors.Input X's scale. It's a scalar, which means a per-tensor/layer quantization.Input X's zero point. Default value is 0 if it's not specified. It's a scalar, which means a per-tensor/layer quantization.Output Y's scale. It's a scalar, which means a per-tensor/layer quantization.Output Y's zero point. Default value is 0 if it's not specified. It's a scalar, which means a per-tensor/layer quantization.Constrain input type to unsigned or signed 32-bit integer tensor, or string tensor. It should be utf-8 encoded if using unicode.Constrain output type to unsigned and signed 32-bit integer tensor.Seed for the hashing algorithm, unsigned 32-bit integer, default to 0.If value is 1, output type is uint32_t, else int32_t. Default value is 1.Constrain input and output types to any tensor type.Tensor of rank q-1+r-indices[-1].Constrain indice type to int32 or int64Integer representing the embedding vector size for each word.If not provide, use the fileter size of conv weightThis operator applies convolution to word from left to right with window equal to conv_window_size and stride to 1.Take word 'example' for example, with conv_window_size equal to 2, conv is applied to [ex],[xa], [am], [mp]...If not provide, use the first dimension of conv kernal shape.Integer representing the embedding vector size for each char.If not provide, use the char embedding size of embedding vector.Specify batchs of sequence words to embeddingSpecify embedding vector of charThree modes: `constant`(default) - pads with a given constant value, `reflect` - pads with the reflection of the vector mirrored on the first and last values of the vector along each axis, `edge` - pads with the edge values of arrayTensor of integers indicating the number of padding elements to add or remove (if negative) at the beginning and end of each axis. For 2D input tensor, it is the number of pixels. `pads` should be a 1D tensor of shape [2 * input_rank] or a 2D tensor of shape [1, 2 * input_rank]. `pads` format (1D example) should be as follow [x1_begin, x2_begin,...,x1_end, x2_end,...], where xi_begin is the number of pixels added at the beginning of axis `i` and xi_end, the number of pixels added at the end of axis `i`.(Optional) A scalar or rank 1 tensor containing a single value to be filled if the mode chosen is `constant` (by default it is 0.0).Input can be of any tensor type.A 1-D input tensor that is to be processed.A 1-D tensor of the same type as 'x' containing all the unique values in 'x' sorted in the same order that they occur in the input 'x'A 1-D INT64 tensor of the same size as 'x' containing the indices for each value in 'x' in the output 'uniques'A 1-D INT64 tensor containing the the count of each element of 'uniques' in the input 'x'The distance metric to use. If a string, the distance function can be "braycurtis", "canberra", "chebyshev", "cityblock", "correlation", "cosine", "dice", "euclidean", "hamming", "jaccard", "jensenshannon", "kulsinski", "mahalanobis", "matching", "minkowski", "rogerstanimoto", "russellrao", "seuclidean", "sokalmichener", "sokalsneath", "sqeuclidean", "wminkowski", "yule".A 2D Matrix that represents the distance between each pair of the two collections of inputs.Constrains input to only numeric types.The pooling method. Two modes are supported: 'bilinear' and 'nearest'. Default is 'bilinear'.Value used for extrapolation, when applicable. Default is 0.0f. Input data tensor from the previous operator; 4-D feature map of shape (N, C, H, W), where N is the batch size, C is the number of channels, and H and W are the height and the width of the data.RoIs (Regions of Interest) to pool over; rois is 2-D input of shape (num_rois, 4) given as [[y1, x1, y2, x2], ...]. The RoIs' coordinates are normalized in the coordinate system of the input image. Each coordinate set has a 1:1 correspondence with the 'batch_indices' input.1-D tensor of shape (num_rois,) with each element denoting the index of the corresponding image in the batch.1-D tensor of 2 elements: [crop_height, crop_width]. All cropped image patches are resized to this size. Both crop_height and crop_width need to be positive.RoI pooled output, 4-D tensor of shape (num_rois, C, crop_height, crop_width). The r-th batch element Y[r-1] is a pooled feature map corresponding to the r-th RoI X[r-1].Constrain types to float tensors.Constrain types to int tensors.The first normalization dimension: normalization will be performed along dimensions axis : rank(inputs).Input data tensor from the previous layer.Constrain input and output types (except mean and inv_std_var) to float tensors.Constrain mean and inv_std_var to be float tensors.The bias input data that is a 1D tensor.Input tensor. Every matrix in the batch must be invertible.Output tensor of the same type and shape as the input tensor.Boolean. Indicates whether upper or lower part of matrix is retained. Default is true.Input tensor of rank 2 or higher.A 0-D tensor containing a single value corresponding to the number diagonals above or the main diagonal to exclude or include.Default value is 0 if it's not specified.Constrain input and output types to all numeric tensors and bool tensors.Input data type does not match the expected data typeInput data type does not match the expected data type. Current data type is Scale and Zero-point must be a scalarScale and Zero-point must be of rank 1Scale and Zero-point must be of rank 1 and the number of elements should be equal to the number of rows of the corresponding input.Negative values are not allowed in a shape specificationinputs are expected to have tensor type.'pads' input must be a 1D (shape: [2 * n_input_dims]) tensor of type int64Pads has incorrect number of valuesInputs 0 shall be 3 dimensionsInputs 4 shall be 5 dimensionsInputs 0 shall be 2 dimensionsword_embedding should have 2 dimensions and dimension size is known.'Border' attribute must be present and must contain exactly 4 values - (left_border, top_border, right_border, bottom_border)'Scale' must contain exactly 2 values - (height, width)) needs to be greater than or equal to the top_border () needs to be greater than or equal to the left_border (First input does not have rank 2Second input does not have rank 2axis must be in [-rank, rank-1]. input rank was both data and indices tensor need to have rank larger than zero.last dimension of indices must not be larger and rank of data tensor'pads' input must be a 1D (shape: [input_rank]) or 2D tensor (shape: [1, input_rank]) of type int64first input tensor has wrong dimensionrois input tensor has wrong dimensionbatch_indices shape input tensor has wrong dimensioncrop_size shape input tensor has wrong dimensionThe inner-most 2 dimensions must have the same size (mat_w:Input tensors of wrong rank (0).Incompatible dimensions for matrix multiplicationauto_pad must be either NOTSET, SAME_UPPER, SAME_LOWER or VALID. Where default value is NOTSET, which means explicit padding is used. SAME_UPPER or SAME_LOWER mean pad the input so that the output spatial size match the input.In case of odd number add the extra padding at the end for SAME_UPPER and at the beginning for SAME_LOWER. VALID mean no padding.Padding for the beginning and ending along each spatial axis, it can take any value greater than or equal to 0. The value represent the number of pixels added to the beginning and end part of the corresponding axis. `pads` format should be as follow [x1_begin, x2_begin...x1_end, x2_end,...], where xi_begin the number of pixels added at the beginning of axis `i` and xi_end, the number of pixels added at the end of axis `i`. This attribute cannot be used simultaneously with auto_pad attribute. If not present, the padding defaults to 0 along start and end of each spatial axis.{name}{additionalDocumentation}First operand.A_scaleA_zero_pointSecond operand.B_scaleB_zero_pointC_scaleC_zero_pointNumber of attention headspastpresentinput_scaleweight_scaleinput_zero_pointweight_zero_pointinput_idssegment_ids2D with shape (,hidden_size)word_embedding2D with shape (, hidden_size)position_embeddingsegment_embeddingbias tensorskipinv_std_varValue of alphaValue of beta1D input tensor1D output tensorThe scale to apply.Threshold valueInput tensorOutput tensorSliced data tensor.GivenTensorFillThe shape of filled tensorThe filled tensorinput_as_shapeextra_shapeInput data to be scaledOutput data after scalingGRUUnitdrop_stateshidden_prevgatesseq_lengthshiddenScaling valueRfftsignal_ndimnormalizedonesidedIrfftComplexMulinput_0input_1ComplexMulConjactivation_gammay_scaley_zero_pointx_scalex_zero_pointStrings to tokenizeTokenized stringsN-dimensional matrix AN-dimensional matrix Bb_scaleb_zero_pointMatrix multiply resultsReduceSumIntegerAn input tensor.Reduced output tensor.reducedadditionmultiplicationQLinearReduceMeandata_scaledata_zero_pointreduced_scalereduced_zero_pointQLinearAveragePoolCoefficient of leakage.X_scaleX_zero_pointY_scaleY_zero_pointAn input tensor to hash.32-bit hash value.Tensor of rank r >= 1.Tensor of rank q >= 1.Specify weights of convSpecify bias of convConstrain to tensor(int32).Constrain to tensor(float).Input tensor.Tensor after padding.idx2D matrix with shape (M,N)2D matrix with shape (K,N)roisbatch_indicescrop_sizeScale tensor.Bias tensor.Output data tensor.The input data as Tensor.The output.The normal input data.[ShapeInferenceError] Attribute should specify a shapeIncompatible dimensionsInput's shape must be 4-D) + bottom_border () + right_border () + scale[0] () + scale[1] (Input axis is invalid: Input rank must be >= 2. != mat_h:̼+̼+*ZZN11onnxruntime7contrib23QLinearMathDocGeneratorEPKcS2_ENKUlRN4onnx8OpSchemaEE_clES5_EUlRNS3_16InferenceContextEE_*ZN11onnxruntime7contrib23QLinearMathDocGeneratorEPKcS2_EUlRN4onnx8OpSchemaEE_*ZN11onnxruntime7contrib19RegisterBertSchemasEvEUlRN4onnx16InferenceContextEE_*ZN11onnxruntime7contrib19RegisterBertSchemasEvEUlRN4onnx16InferenceContextEE0_*ZN11onnxruntime7contrib19RegisterBertSchemasEvEUlRN4onnx16InferenceContextEE1_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE0_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE1_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE2_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE3_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE4_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE5_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE6_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE7_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE8_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE9_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE10_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE11_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE12_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE13_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE14_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE15_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE16_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE17_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE18_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE19_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE20_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE21_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE22_*ZN11onnxruntime7contrib22RegisterContribSchemasEvEUlRN4onnx16InferenceContextEE23_tensor rank too smallinvalid scales dimensioninvalid scales value/onnxruntime_src/onnxruntime/core/graph/contrib_ops/nchwc_schema_defs.ccFvRN4onnx8OpSchemaEE*ZN11onnxruntime7contrib26NchwcPoolOpSchemaGeneratorERN4onnx8OpSchemaEEUlRNS1_16InferenceContextEE_*ZN11onnxruntime7contrib32NchwcGlobalPoolOpSchemaGeneratorERN4onnx8OpSchemaEEUlRNS1_16InferenceContextEE_*ZN11onnxruntime7contrib20RegisterNchwcSchemasEvEUlRN4onnx16InferenceContextEE_*ZN11onnxruntime7contrib20RegisterNchwcSchemasEvEUlRN4onnx16InferenceContextEE0_*ZN11onnxruntime7contrib20RegisterNchwcSchemasEvEUlRN4onnx16InferenceContextEE1_PFvRN4onnx8OpSchemaEEstartlimitdelta1-D Tensor of the range.Unsupported type:Constrain input and output types.Tensor(scalar, or dims=[1]). First entry in the range.Tensor(scalar, or dims=[1]). Upper limit of sequence, exclusive.Tensor(scalar, or dims=[1]). Number that increments start. Defaults to 1.Can not get shape initializer data!Unsupported non-raw-data data type!*ZN11onnxruntime7contrib21RegisterRangeOpSchemaEON4onnx8OpSchemaEEUlRNS1_16InferenceContextEE_Inputs: Nodes: ) -> Outputs: index < data_.size()input index: input edgesoutput edgesai.onnx.trainingai.onnx.preview.trainingnode_arg_name cannot be null] op_type [], could not find NodeArg _token_Node [Not satisfied: dims_eq() Input to set must exist.input->Exists()node_argConstant!foundRemoving initializer 'fbs_attr cannot be nullNot satisfied: subgraph Can't remove node Target= Dimension=' source: target:Output:Type mismatch. Current= Input=' has element type does not match. but different TensorProto.existing->second == &tensorgraph_proto cannot be nullgraph_proto != nullptrInitializer NoOp) input arg (' of input parameter () of operator () in node () is invalid.Type Error: Type parameter () bound to different types (Node () output arg () type inference failedType Error: Type () of output arg () of node (Node:) Op (Outer scope node arg name 'Fatal error: ) attribute ( inputs but subgraph has inputs and requires Subgraph input missing type./onnxruntime_src/onnxruntime/core/graph/graph.cc/onnxruntime_src/include/onnxruntime/core/common/const_pointer_container.hGraph attribute inferencing failed: info->Name() != new_value_info->Name()Error: trying to add an existing value info.Invalid source node arg slot specified when adding edge.Invalid destination node arg slot specified when adding edge.Argument type mismatch when adding edge.Invalid node indexes specified when adding edge.Node::LoadEdgesFromOrtFormat, edge is missing for Satisfied, but should not be: nullptr == fbs_edge is not the same as this node's index:Satisfied, but should not be: fbs_node_edges.node_index() != index_ This is an invalid model. The sum of input arg count is not equal to size of input defs in node (Invalid source node arg slot specified when removing edge.Invalid destination node arg slot specified when removing edge.Argument mismatch when removing edge.Invalid node indexes specified when removing edge.fbs_node_arg_names cannot be nullSatisfied, but should not be: nullptr == fbs_node_arg_names Satisfied, but should not be: nullptr == node_arg_name LoadNodeArgsFromOrtFormat: Node [Satisfied, but should not be: nullptr == node_arg NodeArg Name is missing. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_node_arg_name Error: Duplicate definition-site for (No Graph instance was found for attribute Serialization of fused function body is not currently supported, does not have the graph for key Not satisfied: it != attr_to_subgraph_map_.cend() Failed to find existing initializer with name Not satisfied: name_to_initializer_it != name_to_initial_tensor_.end() Replacement tensor's data type does not match.Not satisfied: old_initializer.data_type() == new_initializer.data_type() graph_proto_ is not in sync with name_to_initial_tensor_existing_entry != mutable_initializers.pointer_end()Replacement tensor's dimensions do not match.graph_inputs_excluding_initializers_.empty() && graph_inputs_including_initializers_.empty() && value_info_.empty() && graph_outputs_.empty()Graph ctor should have created NodeArg for initializer. Missing:This is an invalid model. Graph output () does not exist in the graph.Graph state to be loaded into must be empty.This is an invalid model. Error: two nodes with same node name (This is an invalid model. Error: Duplicate definition of name (This is an invalid model. Error: the graph is not acyclic.graph_proto_ is not in sync with name_to_initial_tensor_. must be either specified in graph inputs or graph initializers.'. It is not used by any node and should be removed from the model.'. It is no longer used by any node.Satisfied, but should not be: nullptr == fbs_attr Serialization error. Graph attribute was serialized without Graph instanceNode::LoadFromOrtFormat, input_arg_counts is missingSatisfied, but should not be: nullptr == fbs_input_arg_counts as it still has output edges.node->GetOutputEdgesCount() == 0This is an invalid model. At top level graph without matching NodeArg that subgraph consumes. Name= Graph may not conform to the ONNX spec and contain initializers that are not graph inputs.This is an invalid model. Failed to find NodeArg in all parent graphs. Name=nodes_.size() < static_cast(std::numeric_limits::max())Initializer tensor is missing. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_tensor NodeArg is missing. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_value_info Node is missing. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_node NodeEdge is missing. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_node_edge Mismatch between number of source and target dimensions. Source=Can't merge shape info. Both source and target dimension have values but they differ. Source=Error merging shape info for output. '. Falling back to lenient merge.Tensor element type mismatch. SparseTensor element type mismatch. This is an invalid model. Model input () does not have type information.Type Error: Data in initializer ' but usage of initializer in graph expects Type Error: Shape of initializer AddInitializedTensor already has tensor with name ALLOW_RELEASED_ONNX_OPSET_ONLY are '0' and '1'. The environment variable contained the value: /onnxruntime_src/onnxruntime/core/graph/model_load_utils.hThis is an invalid model. Tensor does not have type information. appears in graph inputs and will not be treated as constant value/weight. This may prevent some of the graph optimizations, like const folding. Move it out of graph inputs if there is no need to override it, by either re-generating the model with latest exporter/converter or with the tool onnxruntime/tools/python/remove_initializer_from_input.py.nullptr != sub_graph && nullptr != sub_graph->GetMetaDef()This is an invalid model. Node () does not have type information set by parent node.This is an invalid model. Type Error: Type ') does not match expected type (UpdateTypeShapeInference is not intended to be used with control flow nodes containing subgraphsnode.GetAttributeNameToMutableSubgraphMap().empty()'was added but does not exist. is not a registered function/op) is required but not specified.This is an invalid model. Error in Node:Size mismatch validating subgraph inputs. Got inputs. Either provide all subgraph inputs, or just the required inputs.Shouldn't be possible to have NodeArgs that haven't been handled already.outer_scope_node_args_consumed.empty()'s number of inputs is different from function body graph's number of input.'s number of outputs is different from function body graph's number of outputs.node.MutableOutputDefs().size() == subgraph.GetOutputs().size() VU V VVU VUUoperator()LoadFromOrtFormatLoadFromOrtFormatvoid onnxruntime::Graph::SetInputs(const std::vector&)InlineFunctiononnxruntime::common::Status onnxruntime::Graph::InlineFunction(onnxruntime::Node&)onnxruntime::Node& onnxruntime::Graph::FuseSubGraph(std::unique_ptr, const string&)gsl::not_null onnxruntime::Graph::AllocateNode()CleanUnusedInitializersvoid onnxruntime::Graph::ToGraphProtoInternal(onnx::GraphProto&) constbool onnxruntime::Graph::RemoveNode(onnxruntime::NodeIndex)SaveToOrtFormatvoid onnxruntime::Graph::RemoveInitializedTensor(const string&)void onnxruntime::Graph::AddInitializedTensor(const onnx::TensorProto&)onnxruntime::common::Status onnxruntime::Graph::Resolve(const onnxruntime::Graph::ResolveOptions&)ResolveForThisAndAllSubgraphsPerformTypeAndShapeInferencingInitInputsInitializersOutputsVerifyNodeAndOpMatchInferAndVerifyTypeMatchonnxruntime::common::Status onnxruntime::Graph::UpdateShapeInference(onnxruntime::Node&)InferAndVerifySubgraphTypesconst T* onnxruntime::ConstPointerContainer::at(size_t) const [with Container = std::vector; onnxruntime::ConstPointerContainer::T = onnxruntime::NodeArg; size_t = long unsigned int]BuildConnectionsvoid onnxruntime::Graph::RemoveEdge(onnxruntime::NodeIndex, onnxruntime::NodeIndex, int, int)void onnxruntime::Graph::AddEdge(onnxruntime::NodeIndex, onnxruntime::NodeIndex, int, int)SetOuterScopeNodeArgsvoid onnxruntime::Graph::InitializeStateFromModelFileGraphProto()bool onnxruntime::model_load_utils::IsAllowReleasedONNXOpsetsOnlySet()Graphonnxruntime::Graph::Graph(const onnxruntime::Model&, onnx::GraphProto*, const std::unordered_map, int>&, onnxruntime::Version, onnxruntime::IOnnxRuntimeOpSchemaCollectionPtr, onnxruntime::Graph*, const onnxruntime::Node*, const onnxruntime::logging::Logger&)onnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constoperator()LoadEdgesFromOrtFormatoperator()LoadFromOrtFormatSaveToOrtFormatMergeShapeInfoUpdateTypeAndShapeFN11onnxruntime6common6StatusERKNS_4NodeERNS_5GraphERKSt6vectorIPKN4onnx9TypeProtoESaISB_EERSD_RKNS5_14ResolveOptionsEE*ZN11onnxruntime5Graph7ResolveERKNS0_14ResolveOptionsEEUlRS0_E0_*ZN11onnxruntime5Graph7ResolveERKNS0_14ResolveOptionsEEUlRS0_E1_*ZN11onnxruntime5Graph7ResolveERKNS0_14ResolveOptionsEEUlRS0_E2_N4onnx15GraphInferencerEN4onnx16InferenceContextEN4onnx24FunctionBodyBuildContextEN4onnx28FunctionBodyBuildContextImplEN11onnxruntime5GraphEN11onnxruntime19GraphInferencerImplEN11onnxruntime20InferenceContextImplEPFN11onnxruntime6common6StatusERKNS_4NodeERNS_5GraphERKSt6vectorIPKN4onnx9TypeProtoESaISB_EERSD_RKNS5_14ResolveOptionsEESt23_Sp_counted_ptr_inplaceIN11onnxruntime21SchemaRegistryManagerESaIS1_ELN9__gnu_cxx12_Lock_policyE2EEWe do not support type [] for now is missing type info. is not supported currentlyNull type info for sequence_typemap_typeUNDEFINEDINTFLOATSINTSSTRINGSGRAPHSSPARSE_TENSORSPARSE_TENSORS/onnxruntime_src/onnxruntime/core/graph/graph_flatbuffers_utils.ccSaveValueInfoOrtFormat: value_info_proto for Graph attribute value was null. Invalid ORT format model.Satisfied, but should not be: nullptr == graph SaveAttributeOrtFormat: Unsupported attribute type: Missing dimensions for initializer. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_dims Missing string data for initializer. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_str_data Missing raw data for initializer. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_raw_data Null tensor type info. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_tensor_type Null entry in dimensions. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_dim dim_param value with no name. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_dim_param Null sequence type info. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_sequence_type Null value type info in fbs::SequenceType. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_type_info Null map type info. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_map_type Null value type info in fbs::MapType. Invalid ORT format model.Satisfied, but should not be: !value_info_proto.name().empty() Null string attribute. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_str Null tensor attribute. Invalid ORT format model.Null graph attribute. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_graph Empty graph proto from deserialization of ORT format modelNull floats attribute. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_floats Null ints attribute. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_ints Null strings attribute. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_strings Null string in strings attribute. Invalid ORT format model.Null tensors attribute. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_tensors Null tensor in tensors attribute. Invalid ORT format model.Dl|d4T<LoadAttributeOrtFormatLoadMapTypeOrtFormatLoadSequenceTypeOrtFormatLoadTensorDimensionOrtFormatLoadTensorTypeAndShapeOrtFormatLoadTypeInfoOrtFormatLoadValueInfoOrtFormatLoadInitializerOrtFormatSaveAttributeOrtFormatSaveInitializerOrtFormatSaveMapTypeOrtFormatSaveSequenceTypeOrtFormatSaveTensorTypeAndShapeOrtFormatSaveTypeInfoOrtFormatSaveValueInfoOrtFormatitr != node.InputDefs().end() ExplicitInputs:. Index:Invalid input index for node ImplicitInputs: Implicit input name cannot be safely updated to in one of the subgraphs.Failed since multiple edges matched:/onnxruntime_src/onnxruntime/core/graph/graph_utils.ccAttempting to get index for an input which does not exist.index >= 0 && static_cast(index) < inputs.size()Attempting to get an input that does not exist.index >= 0 && static_cast(index) < outputs.size()Attempting to get an output that does not exist.Can only add a new input at the end of the current ones.num_explicit_inputs == static_cast(target_input_idx)std::count_if(subgraph_node.InputEdgesBegin(), subgraph_node.InputEdgesEnd(), [input_slot_index](const Node::EdgeEnd& entry) { return entry.GetDstArgIndex() == input_slot_index; }) == 0Node must only have one used outputstd::all_of(output_edges.cbegin(), output_edges.cend(), [&src_idx](const GraphEdge& edge) { return edge.src_arg_index == src_idx; })Should be unreachable if CanRemoveNodeAndMergeEdges is in sync with the logic here.Initializer with same name exists. Name:!graph.GetInitializedTensor(new_initializer.name(), existing)FindPathvoid onnxruntime::graph_utils::AddNodeInput(onnxruntime::Node&, int, onnxruntime::NodeArg&)void onnxruntime::graph_utils::ReplaceNodeInput(onnxruntime::Node&, int, onnxruntime::NodeArg&)onnxruntime::NodeArg& onnxruntime::graph_utils::AddInitializer(onnxruntime::Graph&, const onnx::TensorProto&)void onnxruntime::graph_utils::UpdateImplicitInputNameInSubgraph(onnxruntime::Node&, const string&, const string&)bool onnxruntime::graph_utils::RemoveNodeWithSingleNodeInSingleUsedOutput(onnxruntime::Graph&, onnxruntime::Node&)bool onnxruntime::graph_utils::RemoveNode(onnxruntime::Graph&, onnxruntime::Node&)onnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constCanUpdateImplicitInputNameInSubgraphsconst string& onnxruntime::graph_utils::GetNodeOutputName(const onnxruntime::Node&, int)const string& onnxruntime::graph_utils::GetNodeInputName(const onnxruntime::Node&, int)int onnxruntime::graph_utils::GetNodeInputIndexFromInputName(const onnxruntime::Node&, const string&)onnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) const*ZN11onnxruntime11GraphViewerC1ERKNS_5GraphEEUlPKNS_4NodeEE_N11onnxruntime11NodeCompareE/onnxruntime_src/onnxruntime/core/graph/model.ccONNX Runtime only *guarantees* support for models stamped with official released onnx opset versions. Opset is under development and support for this is limited. The operator schemas and or other functionality may change before next ONNX release and in this case ONNX Runtime will not guarantee backward compatibility. Current official support for domain is under development and support for this is limited. The operator schemas and or other functionality could possibly change before next ONNX release and in this case ONNX Runtime will not guarantee backward compatibility. Current official support for domain ModelProto does not have a graph.Missing opset in the model. All ModelProtos MUST have at least one entry that specifies which version of the ONNX OperatorSet is being imported.ONNX Runtime only *guarantees* support for models stamped with opset version 7 or above for opset domain 'ai.onnx'. Please upgrade your model to opset 7 or higher. For now, this opset model may run depending upon legacy support of some older opset version operators.Unknown model file format version.No graph was found in the protobuf.Failed to load model with error: Model must have opset imports. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_op_set_ids opset import domain is null. Invalid ORT format model.Satisfied, but should not be: nullptr == fbs_domain Graph is null. Invalid ORT format model.Protobuf serialization failed.Protobuf parsing failed. is till opset is less than 0.Invalid istream object.Null model_proto ptr. less than 0. failed. File doesn't existLoad model system error number LoadFromOrtFormatSaveToOrtFormatSaveLoadSaveModelLoadModelonnxruntime::Model::Model(onnx::ModelProto&&, const PathString&, const IOnnxRuntimeOpSchemaRegistryList*, const onnxruntime::logging::Logger&)ValidateOpsetForDomainvoid onnxruntime::model_load_utils::ValidateOpsetForDomain(const std::unordered_map, int>&, const onnxruntime::logging::Logger&, bool, const string&, int)bool onnxruntime::model_load_utils::IsAllowReleasedONNXOpsetsOnlySet()N6google8protobuf2io19ZeroCopyInputStreamESt15_Sp_counted_ptrIPN11onnxruntime5ModelELN9__gnu_cxx12_Lock_policyE2EESt23_Sp_counted_ptr_inplaceIN11onnxruntime5ModelESaIS1_ELN9__gnu_cxx12_Lock_policyE2EEDomain already set in registry/onnxruntime_src/onnxruntime/core/graph/schema_registry.cc, but it its version is higherthan the operator set version static const onnxruntime::logging::Logger& onnxruntime::logging::LoggingManager::DefaultLogger()RegisterOpSchemaInternalRegisterOpSetN11onnxruntime27OnnxRuntimeOpSchemaRegistryEN11onnxruntime21SchemaRegistryManagerEsequence_lensinitial_hinitial_cQWMWmemory_seq_lensAWY_hY_cA list of 3 (or 6 if bidirectional) activation functions for input, output, forget, cell, and hidden. The activation functions must be one of the activation functions specified above. Optional: See the equations for default if not specified.Optional scaling values used by some activation functions. The values are consumed in the order of activation functions, for example (f, g, h) in LSTM. Default values are the same as of corresponding ONNX operators.For example with LeakyRelu, the default alpha is 0.01.Optional scaling values used by some activation functions. The values are consumed in the order of activation functions, for example (f, g, h) in LSTM. Default values are the same as of corresponding ONNX operators.Cell clip threshold. Clipping bounds the elements of a tensor in the range of [-threshold, +threshold] and is applied to the input of activations. No clip if not specified.Couple the input and forget gates if 1, default 0.Number of neurons in the hidden layer.Specify if the RNN is forward, reverse, or bidirectional. Must be one of forward (default), reverse, or bidirectional.Constrain seq_lens to integral tensors.The input sequences packed (and potentially padded) into one 3-D tensor with the shape of `[seq_length, batch_size, input_size]`The weight tensor for the gates. Concatenation of `W[iofc]` and `WB[iofc]` (if bidirectional) along dimension 0. The tensor has shape `[num_directions, 4*hidden_size, input_size]`.The recurrence weight tensor. Concatenation of `R[iofc]` and `RB[iofc]` (if bidirectional) along dimension 0. This tensor has shape `[num_directions, 4*hidden_size, hidden_size]`.The bias tensor for input gate. Concatenation of `[Wb[iofc], Rb[iofc]]`, and `[WBb[iofc], RBb[iofc]]` (if bidirectional) along dimension 0. This tensor has shape `[num_directions, 8*hidden_size]`. Optional: If not specified - assumed to be 0.Optional tensor specifying lengths of the sequences in a batch. If not specified - assumed all sequences in the batch to have length `seq_length`. It has shape `[batch_size]` Optional initial value of the hidden. If not specified - assumed to be 0. It has shape `[num_directions, batch_size, hidden_size]`.Optional initial value of the cell. If not specified - assumed to be 0. It has shape `[num_directions, batch_size, hidden_size]`.The weight tensor for peepholes. Concatenation of `P[iof]` and `PB[iof]` (if bidirectional) along dimension 0. It has shape `[num_directions, 3*hidde_size]`. Optional: If not specified - assumed to be 0.The weight tensor of the query layer in the attention mechanism. Should be of shape `[num_directions, am_query_depth(hidden_size of lstm), am_attn_size]` The weight tensor of the memory layer in the attention mechanism. Should be of shape `[num_directions, memory_depth, am_attn_size]` The attention_v tensor in the attention mechanism. Should be of shape `[num_directions, am_attn_size]` The sequence of the memory (input) for attention mechanism. Should be of `[batch_size, max_memory_step, memory_depth]` The sequence length of the input memory for the attention mechanism. Should be of `[batch_size]` The weights of attention layer in the attention wrapper. If exists, should be of shape `[num_directions, memory_depth+hidden_size, aw_attn_size]. Please note that attention mechanism context depth is also memory_depth in the attention mechanism.` A tensor that concats all the intermediate output values of the hidden. It has shape `[seq_length, num_directions, batch_size, hidden_size]`The last output value of the hidden. It has shape `[num_directions, batch_size, hidden_size]`. The last output value of the cell. It has shape `[num_directions, batch_size, hidden_size]`.fused_function_subgraphinput_arg->Type() != nullptrResolve subgraph failed:A node with a function body within a subgraph within another function body is currently not supported in ORT/onnxruntime_src/onnxruntime/core/graph/function.ccvoid onnxruntime::update_subgraphs_within_function_body(onnx::GraphProto&, const onnxruntime::Graph&, const onnx::NodeProto&, const std::unordered_map, int>&, const std::unordered_map, int>&)onnxruntime::FunctionImpl::FunctionImpl(const onnxruntime::Graph&, const NodeIndex&, const onnx::FunctionProto&, const onnxruntime::logging::Logger&)onnxruntime::Node* onnxruntime::Graph::NodeAtIndexImpl(onnxruntime::NodeIndex) constonnxruntime::FunctionImpl::FunctionImpl(const onnxruntime::Graph&, std::unique_ptr, const onnxruntime::logging::Logger&)*ZN11onnxruntime12FunctionImplC1ERKNS_5GraphERKmRKN4onnx13FunctionProtoERKNS_7logging6LoggerEEUlRNS6_16InferenceContextEE_N11onnxruntime8FunctionEN11onnxruntime12FunctionImplEDefault logger already set. ISink must be provided.Systemonnxruntime/onnxruntime_src/onnxruntime/core/common/logging/logging.ccdefault_logger_id must be provided if instance_type is InstanceType::DefaultOnly one instance of LoggingManager created with InstanceType::Default can exist at any point in time.void onnxruntime::logging::LoggingManager::CreateDefaultLogger(const string&)onnxruntime::logging::LoggingManager::LoggingManager(std::unique_ptr, onnxruntime::logging::Severity, bool, onnxruntime::logging::LoggingManager::InstanceType, const string*, int)N@VIWEF is not a valid year is not a valid day is not a valid dateN11onnxruntime7logging11OStreamSinkEFailed to parse path root: src root: , dst root: /onnxruntime_src/onnxruntime/core/common/path.ccNot satisfied: has_trailing_separator Cannot concatenate with a string containing a path separator. String: first_separator == value.end()Paths must have the same root to compute a relative path. Not satisfied: src.GetRootPathString() == dst.GetRootPathString() static onnxruntime::Path onnxruntime::Path::Parse(const PathString&)ParsePathRootParseWriting profiler data to file /onnxruntime_src/onnxruntime/core/common/profiler.ccMaximum number of events reached, could not record profile event.[ ] {"cat" : ""pid" :"tid" :"dur" :"ts" :"ph" : "X","name" :""args" : {} }, enabled_session_logger != nullptrcustom_logger != nullptrSessionNodeEndProfilingEndTimeAndRecordEventvoid onnxruntime::profiling::Profiler::Initialize(const onnxruntime::logging::Logger*)onnxruntime::TimePoint onnxruntime::profiling::Profiler::StartTime() constSUCCESSINVALID_ARGUMENTNO_SUCHFILENO_MODELENGINE_ERRORRUNTIME_EXCEPTIONINVALID_PROTOBUFMODEL_LOADEDNOT_IMPLEMENTEDINVALID_GRAPHEP_FAILGENERAL ERROROKSystemError[ONNXRuntimeError]n]L;-/onnxruntime_src/onnxruntime/core/common/status.cccode != static_cast(common::OK)onnxruntime::common::Status::Status(onnxruntime::common::StatusCategory, int, const char*)onnxruntime::common::Status::Status(onnxruntime::common::StatusCategory, int, const string&)fn != nullptrn >= 0total >= 0degree_of_parallelism >= 1/onnxruntime_src/onnxruntime/core/common/threadpool.ccstatic void onnxruntime::concurrency::ThreadPool::TryParallelFor(onnxruntime::concurrency::ThreadPool*, std::ptrdiff_t, const onnxruntime::TensorOpCost&, const std::function&)void onnxruntime::concurrency::ThreadPool::Schedule(std::function)onnxruntime::concurrency::ThreadPool::ThreadPool(onnxruntime::Env*, const onnxruntime::ThreadOptions&, const NAME_CHAR_TYPE*, int, bool)ZN11onnxruntime15ThreadPoolTemplINS_3EnvEE13RunInParallelESt8functionIFvvEEjEUlvE_N5Eigen19ThreadPoolInterfaceEN11onnxruntime11concurrency27ExtendedThreadPoolInterfaceEN11onnxruntime15ThreadPoolTemplINS_3EnvEEEZN11onnxruntime15ThreadPoolTemplINS_3EnvEE10WorkerLoopEiEUlvE_ZN11onnxruntime15ThreadPoolTemplINS_3EnvEE10WorkerLoopEiEUlvE0_?@{Gz??j@?AFailed to get symbol with error: lib.soGot null library handle file "" failed: realpathcloseopen\/Failed to load library Invalid fd was supplied: fstatpthread_attr_init failedpthread_create failedpthread_setaffinity_np failedremove() failed. Error code: , path: munmap failed. error code: - error code: Not satisfied: result == 0 Not satisfied: file_path Not satisfied: offset >= 0 mmaplseekreadFile: , offset: , length: Failed to unload library with error: Received negative size from stat call/onnxruntime_src/onnxruntime/core/platform/posix/env.ccpthread_attr_setstacksize failedFailed to close file descriptor DeleteFolder(): nftw() failed with error: Not satisfied: length <= buffer.size() ReadFileIntoBuffer - unexpected end of file. onnxruntime::{anonymous}::PosixThread::PosixThread(const char*, int, unsigned int (*)(int, Eigen::ThreadPoolInterface*), Eigen::ThreadPoolInterface*, const onnxruntime::ThreadOptions&)ReadFileIntoBufferCleanUpUnmapFileMapFileIntoMemorystatic const onnxruntime::logging::Logger& onnxruntime::logging::LoggingManager::DefaultLogger()nftw_removeDeleteFolder*N11onnxruntime12_GLOBAL__N_111PosixThreadE*N11onnxruntime12_GLOBAL__N_18PosixEnvEN11onnxruntime9EnvThreadEN11onnxruntime3EnvEN11onnxruntime9TelemetryE*N11onnxruntime12_GLOBAL__N_112PosixEnvTimeEN11onnxruntime7EnvTimeE??0A>packing unavailable    bad dimensions?@@@@@@@P8AQ5@.N3;A8X} <2?~>++{16?:>=4?~??AQ5@.N3;A8X} <2?~>++{16?:>=4?~?AAAAQ5@.Q5@.Q5@.Q5@.N3N3N3N3;A8;A8;A8;A8X} 2?~>2?~>2?~>++++++++{1{1{1{16666?:?:?:?:>=>=>=>=4?~?4?~?4?~?4?~?A%~3a*7A\3JCy7 ':Y;Ӡ5֕8;Y;AAAAA33{@l?A ;Eۼ# =pu>7fȹ~;ƼX=P"?>?B;?r1mL:e9 <*=*>>??@KUB5?l?33{@7f9~;;?@Kr1mL:e9 <*=*>>A ;E<# =p>u>33{@33{@33{@33{@A A A A ;;;;EۼEۼEۼEۼ# =# =# =# =ppppu>u>u>u>l?l?l?l?7777fȹfȹfȹfȹ~;~;~;~;ƼƼƼƼX=X=X=X=P"?P"?P"?P"?>>>>r1r1r1r1mL:mL:mL:mL:e9 *>*>*>>>>>rB¥B@K;?r1:n/ <*=(*>>??µµµrBrBrBrB::::n/ (*>(*>(*>*Z19MlasExecuteThreadedPFvPviES_iPN11onnxruntime11concurrency10ThreadPoolEEUllE_Sparse tensor indices () has values, but NNZ is Sparse tensor () index value at position [] out of range [0, ] not in sorted order. is required to be non-empty.value_info' of Field ' is required but missing.elem_typekey_typevalue_typedata_type) to UNDEFINED is not allowedfloat_dataint32_datastring_dataraw_datadouble_datauint64_dataTensorProto ( tensor name: ) should be stored in TensorProto (tensor name: STRING data (tensor name: ' instead of '' should be stored in field 'values of data_type '] out of range.sparse_tensor_proto) must have rank 1.Sparse tensor values () must have a dense-rank > 0) must have INT64 type.) must have rank 1 or 2.) has no index values., elem_type: Sequence ( Structure name: Map (name: ' of node: Bad node spec: ==> Context: attrAttribute (name: op_typeNodeProto (name: , type: No opset import for domain 'No Op registered for with domain_version of since_versionfunction (ATenConstantFillUnable to open model file:Unrecognized type value case (value_info name: setting data_type field (tensor name: ) is stored externally and should not have data field.Data of TensorProto ( tensor name: ) is stored externally but doesn't have a location., but it doesn't exist or is not accessible.) is 0-element but contains data!) should contain one and only one value field.) should not be stored in raw_data fieldUnrecognized data_type (tensor name: ) first dimension size does not equal NNZ.) second dimension size does not match rank of tensor.] not in lexicographic sorted order.) dimensions are not positive.) is not have a valid element type.setting key_type field (map name: ) to invalid TensorProto key_type Length of map keys and map values are not the same (map name: ) should not contain more than one keys field.' has been used as graph input names multiple times.Graph must be in single static assignment (SSA) form, however ' in initializer but not in graph inputNodes in a graph must be topologically sorted, however input ' is not output of any previous nodes.' has been used as output names multiple times.) should not contain more than one value field.type field and data field mismatch in attribute ) should refer to attribute in parent node.) has zero input and zero output.Warning: Checker does not support models with experimental ops: is deprecated in domain_version of ' has been used multiple times.) should not have duplicate outputs specified.) should not have duplicate attributes specified.Nodes in a function must be topologically sorted, however input ' is neither output of any previous nodes nor input of the function.Function must be in single static assignment (SSA) form, however 'The model does not have an ir_version set properly.Your model ir_version is higher than the checker's.Your model has duplicate keys in metadata_props.model with IR version >= 3 must specify opset_import for ONNXmodel with IR version < 3 cannot have opset_import specified. Please check if it is a valid file.. Please check if it is a valid protobuf file of model.Unable to parse model from file:4<,hhhhhhhhN4onnx7checker15ValidationErrorEseq(tensor(uint8))seq(tensor(uint16))seq(tensor(uint32))seq(tensor(uint64))seq(tensor(int8))seq(tensor(int16))seq(tensor(int32))seq(tensor(int64))seq(tensor(float16))seq(tensor(float))seq(tensor(double))seq(tensor(string))seq(tensor(bool))seq(tensor(complex64))seq(tensor(complex128))Input type was nullInput element type of axis value All Tensor and Sequence typesCondition for the ifOnly boolv_initialv_final_and_scan_outputsAll Tensor typesinitial_state_and_scan_inputsfinal_state_and_scan_outputsInt64 tensorScan input was not a tensor. outputs. Expected was notMismatched type: source= target=If node has but subgraphs produce Input was expected to have tensor type. Got Element type of input was unknown does not match existing output type of Output was expected to have tensor type. Got is invalid for a tensor of rank Values that are live-out to the enclosing scope. The return values in the `then_branch` and `else_branch` must be of the same data type. The `then_branch` and `else_branch` may produce tensors with the same element type and different shapes. If corresponding outputs from the then-branch and the else-branch have static shapes S1 and S2, then the shape of the corresponding output variable of the if-node (if present) must be compatible with both S1 and S2 as it represents the union of both possible shapes.For example, if in a model file, the the first output of `then_branch` is typed float tensor with shape [2] and the first output of `else_branch` is another float tensor with shape [3], If's first output should have (a) no shape set, or (b) a shape of rank 1 with neither `dim_value` nor `dim_param` set, or (c) a shape of rank 1 with a unique `dim_param`. In contrast, the first output cannot have the shape [2] since [2] and [3] are not compatible.Graph to run if condition is true. Has N outputs: values you wish to be live-out to the enclosing scope. The number of outputs must match the number of outputs in the else_branch.Graph to run if condition is false. Has N outputs: values you wish to be live-out to the enclosing scope. The number of outputs must match the number of outputs in the then_branch./onnxruntime_src/cmake/external/onnx/onnx/defs/controlflow/defs.ccA maximum trip-count for the loop specified at runtime. Optional. Pass empty string to skip.A boolean termination condition. Optional. Pass empty string to skip.The initial values of any loop-carried dependencies (values that change across loop iterations)Final N loop carried dependency values then K scan_outputs. Scan outputs must be Tensors.The graph run each iteration. It has 2+N inputs: (iteration_num, condition, loop carried dependencies...). It has 1+N+K outputs: (condition, loop carried dependencies..., scan_outputs...). Each scan_output is created by concatenating the value of the specified output value at the end of each iteration of the loop. It is an error if the dimensions or data type of these scan_outputs change across loop iterations.tensor of int64, which should be a scalar.tensor of bool, which should be a scalar.Initial values of the loop's N state variables followed by M scan_inputsFinal values of the loop's N state variables followed by K scan_outputsThe graph run each iteration. It has N+M inputs: (loop state variables..., scan_input_elts...). It has N+K outputs: (loop state variables..., scan_output_elts...). Each scan_output is created by concatenating the value of the specified scan_output_elt value at the end of each iteration of the loop. It is an error if the dimensions of these values change across loop iterations.An attribute specifying the number of scan_inputs M. An optional list of M flags. The i-th element of the list specifies the direction to be scanned for the i-th scan_input tensor: 0 indicates forward direction and 1 indicates reverse direction. If omitted, all scan_input tensors will be scanned in the forward direction.An optional list of K flags, one for each scan_output. The i-th element of the list specifies whether the i-th scan_output should be constructed by appending or prepending a new value in each iteration: 0 indicates appending and 1 indicates prepending. If omitted, all scan_output tensors will be produced by appending a value in each iteration.An optional list of M flags. The i-th element of the list specifies the axis to be scanned (the sequence axis) for the i-th scan_input. If omitted, 0 will be used as the scan axis for every scan_input. Negative value for an axis means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(input).An optional list of K flags. The i-th element of the list specifies the axis for the i-th scan_output. The scan outputs are accumulated along the specified axis. If omitted, 0 will be used as the scan axis for every scan_output. Negative value for an axis means counting dimensions from the back. Accepted range is [-r, r-1].Input was expected to have sequence type. Got Input was expected to have either tensor or sequence type. Got Number of scan input axes specified () is not equal to number of scan inputs (Number of scan output axes specified () is not equal to number of scan outputs (Graph attribute inferencing returned type information for Scan 'body' subgraph outputs should all be tensors but output Mismatched tensor element type:source sequence type missing element type.target sequence type missing element type.then_branch and else_branch produce different number of outputs. Loop 'body' subgraph outputs should all be tensors or sequences but output Loop 'body' subgraph scan outputs should all be tensors but output then=Mismatched type for output else=Mismatched tensor element type for output Optional tensor specifying lengths of the sequences in a batch. If this input is not specified, all sequences are assumed to be of the maximum sequence length (the dimension of the sequence axis of the scan_input tensors)./onnxruntime_src/cmake/external/onnx/onnx/defs/controlflow/old.ccFinal N loop carried dependency values then K scan_outputsAn optional list of M flags. The i-th element of the list specifies the axis to be scanned (the sequence axis) for the i-th scan_input. If omitted, 0 will be used as the scan axis for every scan_input.An optional list of K flags. The i-th element of the list specifies the axis for the i-th scan_output. The scan outputs are accumulated along the specified axis. If omitted, 0 will be used as the scan axis for every scan_output.Values that are live-out to the enclosing scope. The return values in the `then_branch` and `else_branch` must be of the same shape and same data type.Loop 'body' subgraph outputs should all be tensors but output bfloat16doubleuint8uint16uint32uint64complex64complex128seq(map(sparse_tensor(seqopaquesparse_tensorat]aa`^a a\ not specifiedValue of attribute Invalid shape value: sparse_valuevalue_intvalue_intsvalue_stringvalue_stringsConstrain input types.Number of times to sample.Input tensor must have rank 2loop_body_attributecond_outcurrentsub_resultsub_result_casteddelta_casteddiv_resultceil_resultceil_result_reluceil_result_relu_intceil_result_relu_boolvariadic_outputScalar. Value to step by.Attribute expected to have tensor typeAttribute expected to have a one-dim tensor should be of integer type and specify a type. does not specify a valid type.Input to 'Range' op should be scalars (Tensor with only one element and shape empty)Shape input must be a one-dimensional tensor.The value for the elements of the output tensor.The value for the elements of the output tensor in sparse format.The value for the sole element for the scalar, int64, output tensor.The values for the elements for the 1D, int64, output tensor.The value for the sole element for the scalar, float32, output tensor.The values for the elements for the 1D, float32, output tensor.The value for the sole element for the scalar, UTF-8 string, output tensor.The values for the elements for the 1D, UTF-8 string, output tensor.Output tensor containing the same value of the provided tensor./onnxruntime_src/cmake/external/onnx/onnx/defs/generator/defs.cc(Optional) The value of the output elements.Should be a one-element tensor. If not specified, it defaults to a tensor of value 0 and datatype float321D tensor. The shape of the expected output tensor. If empty tensor is given, the output would be a scalar. All values must be >= 0.Output tensor of shape specified by 'input'.If attribute 'value' is specified, the value and datatype of the output tensor is taken from 'value'.If attribute 'value' is not specified, the value in the output defaults to 0, and the datatype defaults to float32.Constrain output types to be numerics.(Optional) Index of the diagonal to be populated with ones. Default is 0. If T2 is the output, this op sets T2[i, i+k] = 1. k = 0 populates the main diagonal, k > 0 populates an upper diagonal, and k < 0 populates a lower diagonal.(Optional) The data type for the elements of the output tensor. If not specified,the data type of the input tensor T1 is used. If input tensor T1 is also notspecified, then type defaults to 'float'.2D input tensor to copy shape, and optionally, type information from.Output tensor, same shape as input tensor T1.Constrain input types. Strings and complex are not supported.Constrain output types. Strings and complex are not supported.Lower boundary of the output values.Upper boundary of the output values.(Optional) Seed to the random generator, if not specified we will auto generate one.The data type for the elements of the output tensor. If not specified, default is TensorProto::FLOAT.The shape of the output tensor.Output tensor of random values drawn from uniform distributionConstrain output types to float tensors.The mean of the normal distribution.The standard deviation of the normal distribution.The data type for the elements of the output tensor. Default is TensorProto::FLOAT.Output tensor of random values drawn from normal distribution(Optional) The data type for the elements of the output tensor, if not specified, we will use the data type of the input tensor.Input tensor to copy shape and optionally type information from.(Optional) The data type for the elements of the output tensor, if not specified, we will use int32.Input tensor with shape [batch_size, class_size], where class_size is the number of all possible outcomes. Each value along the axis zero represents the unnormalized log-probability of each corresponding outcome in a batch.Output tensor with shape [batch_size, sample_size], where sample_size is the number of times to sample. Each value along the axis zero represents the outcome of the corresponding sample in a batch.Constrain input types to float tensors.Constrain output types to integral tensors.One and only one of the attributes 'value', 'value_*' or 'sparse_value' must be specified for a Constant node.Attribute 'value_int' expect an integer.Attribute 'value_ints' expect a list of integers.Attribute 'value_float' expect a float.Attribute 'value_floats' expect a list of floats.Attribute 'value_string' expect a string.Attribute 'value_strings' expect a list of strings.TypeAndShapeInferenceFunction implementation incomplete: this line should never be reached.Input tensor must be 2-dimensionalAll inputs to 'Range' op must be of the same typeOutput type must be int32 or int64Scalar. First entry for the range of output values.Scalar. Exclusive upper limit for the range of output values.A 1-D tensor with same type as the inputs containing generated range of values.Constrain input types to common numeric type tensors.*ZN4onnx11GetOpSchemaINS_19Constant_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_25ConstantOfShape_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17EyeLike_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_23RandomUniform_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_22RandomNormal_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_27RandomUniformLike_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_26RandomNormalLike_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_21Multinomial_Onnx_ver7EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Range_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Attribute 'value' of Constant node must exist with 'Tensor' data.Only one of the attributes 'value' or 'sparse_value' must be specified for a Constant node.One of the attributes 'value' or 'sparse_value' must be specified for a Constant node./onnxruntime_src/cmake/external/onnx/onnx/defs/generator/old.cc*ZN4onnx11GetOpSchemaINS_19Constant_Onnx_ver12EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Constant_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Constant_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19Constant_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Result tensor.greaterlessZxorO1O2less_equalLessOrEqualgreater_equalGreaterOrEqualFirst input operand for the logical operator.Second input operand for the logical operator.Constrains input to boolean tensor.Constrains output to boolean tensor./onnxruntime_src/cmake/external/onnx/onnx/defs/logical/defs.ccConstrains input types to all numeric tensors.Constrains input/output to boolean tensors.First operand, input to be shifted.Second operand, amounts of shift.Constrain input and output types to integer tensors.Direction of moving bits. It can be either "RIGHT" (for right shift) or "LEFT" (for left shift).*ZZN4onnx23BinaryLogicDocGeneratorEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx23BinaryLogicDocGeneratorEPKcEUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_19BitShift_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Enable broadcastingbroadcastIf set, defines the broadcast dimensions.Left input tensor for the logical operator.Right input tensor for the logical operator.Constrains input to float tensors./onnxruntime_src/cmake/external/onnx/onnx/defs/logical/old.ccConstrains input to integral tensors.*ZZN4onnx31BinaryLogicDocGenerator_opset12EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx31BinaryLogicDocGenerator_opset12EPKcEUlRNS_8OpSchemaEE_*ZN4onnx30BinaryLogicDocGenerator_opset1EPKcEUlRNS_8OpSchemaEE_*ZZN4onnx30BinaryLogicDocGenerator_opset7EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx30BinaryLogicDocGenerator_opset7EPKcEUlRNS_8OpSchemaEE_List of tensors for data_0Output tensor.Rank of input basic_string::atsubtractionDividend tensorDivisor tensorRemainder tensordivisionCoefficient of ELU.CeluslopeValue of alpha.Value of beta.normalized exponentiallog of softmaxlogsoftmaxhardmaxValuesIndicesscale of quantized input ascale of quantized input bscale of quantized output ylossreductionNegativeLogLikelihoodLossEinsum expression string.OperandsInputsscoreslabelslog_probSoftmaxCrossEntropyLossX_MaxX_SubX_ExpX_RSX_DivX_Log'axis' must be in []. Its actual value is: Weight rank must be 1.noneX_alphaElu_Resultconst_zeroconst_oneexpanded_targetinput_gather_elementloss_NCddloss_N1ddloss_Nddweight_gatherloss_unweightedloss_sumweight_gather_sumconst_ignore_indexconst_zero_target_typedexpanded_target_int64transform_targetsconst_zero_floatsqueeze_maskconst_one_floatweight_gather_tempweight_gather_temp_1Describes the axis of the inputs when coerced to 2D; defaults to one because the 0th axis most likely describes the batch_size. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(input).The input tensor that's coerced into a 2D matrix of size (NxD) as described above.The output values with the same shape as input tensor (the original size without coercion).Constrain input and output types to high-precision numeric tensors.Number of input tensors does not match the operands in the equation.Ellipsis represents incompatible dimensions. does not match the equation indices./onnxruntime_src/cmake/external/onnx/onnx/defs/math/defs.ccWhether the operator should behave like fmod (default=0 meaning it will do integer mods); Set this to 1 to force fmod treatmentConstrain input and output types to signed numeric tensors.Constrain input and output types to all numeric tensors.Coefficient of SELU default to 1.67326319217681884765625 (i.e., float32 approximation of 1.6732632423543772848170429916717).Coefficient of SELU default to 1.05070102214813232421875 (i.e., float32 approximation of 1.0507009873554804934193349852946).The Alpha value in Celu formula which control the shape of the unit. The default value is 1.0.Constrain input and output types to float32 tensors.The exponential of the input tensor computed element-wiseThe natural log of the input tensor computed element-wiseThe hyperbolic tangent values of the input tensor computed element-wiseFirst operand, base of the exponent.Second operand, power of the exponent.Output tensor (same size as X)Constrain input X and output types to float/int tensors.Constrain input Y types to float/int tensors.Slope tensor. The shape of slope can be smaller then first input X; if so, its shape must be unidirectional broadcastable to XConstrain input and output types to numeric tensors.Input tensor whose elements to be clippedMinimum value, under which element is replaced by min. It must be a scalar(tensor of empty shape).Maximum value, above which element is replaced by max. It must be a scalar(tensor of empty shape).Output tensor with clipped input elements1 for the first maximum value, and 0 for all othersThe softsign (x/(1+|x|)) values of the input tensor computed element-wiseOptional input tensor C. If not specified, the computation is done as if C is a scalar 0. The shape of C should be unidirectional broadcastable to (M, N).Tensor of shape [a_1, a_2, ..., a_n, r]A 1-D tensor containing a single positive value corresponding to the number of top elements to retrieveTensor of shape [a_1, a_2, ..., a_{axis-1}, k, a_{axis+1}, ... a_n] containing top K values from the input tensorTensor of shape [a_1, a_2, ..., a_{axis-1}, k, a_{axis+1}, ... a_n] containing the corresponding input tensor indices for the top K values.Constrain index tensor to int64Dimension on which to do the sort. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(input).Whether to return the top-K largest or smallest elements.Whether to return the elements in sorted order.The sine of the input tensor computed element-wiseThe cosine of the input tensor computed element-wiseThe tangent of the input tensor computed element-wiseThe arcsine of the input tensor computed element-wiseThe arccosine of the input tensor computed element-wiseThe arctangent of the input tensor computed element-wiseConstrain input and output types to all tensors.A 1-D tensor indicates the shape you want to expand to, following the broadcast ruleThe hyperbolic sine values of the input tensor computed element-wiseThe hyperbolic cosine values of the input tensor computed element-wiseThe hyperbolic arcsine values of the input tensor computed element-wiseThe hyperbolic arccosine values of the input tensor computed element-wiseThe hyperbolic arctangent values of the input tensor computed element-wiseThe sign of the input tensor computed element-wise. It has the same shape and type of the input.The error function of the input tensor computed element-wise. It has the same shape and type of the input.N-dimensional quantized matrix azero point of quantized input aN-dimensional quantized matrix bzero point of quantized input bzero point of quantized output yQuantized matrix multiply results from a * bConstrain input a and its zero point data type to 8-bit integer tensor.Constrain input b and its zero point data type to 8-bit integer tensor.Constrain output y and its zero point data type to 8-bit integer tensor.Zero point tensor for input 'A'. It's optional and default value is 0. It could be a scalar or a 1-D tensor, which means a per-tensor or per-row quantization. If it's a 1-D tensor, its number of elements should be equal to the number of rows of input 'A'.Constrain output Y data type as 32-bit integer tensor.If set to 1 will return exclusive sum in which the top element is not included. In other terms, if set to 1, the j-th output element would be the sum of the first (j-1) elements. Otherwise, it would be the sum of the first j elements.If set to 1 will perform the sums in reverse direction.An input tensor that is to be processed.A 0-D tensor. Must be in the range [-rank(x), rank(x)-1]. Negative value means counting dimensions from the back.Output tensor of the same type as 'x' with cumulative sums of the x's elementsaxis tensor can be int32 or int64 onlyConstrain input and output types to floating-point tensors.Input tensor of shape (N, C) or (N, C, d1, d2, ..., dk).Target tensor of shape (N) or (N, d1, d2, ..., dk). Target element value shall be in range of [0, C). If ignore_index is specified, it may have a value outside [0, C) and the target values should either be in the range [0, C) or have the value ignore_index.Optional rescaling weight tensor. If given, it has to be a tensor of size C. Otherwise, it is treated as if having all ones.The negative log likelihood lossType of reduction to apply to loss: none, sum, mean (default). 'none': the output is the loss for each sample. 'sum': the output will be summed. 'mean': the sum of the output will be divided by the sum of applied weights.Specifies a target value that is ignored and does not contribute to the input gradient. It's an optional value.Constrain input, weight, and output types to floating-point tensors.Constrain target to integer typesConstrain input and output types to all numerical tensor types.The predicted outputs with shape [batch_size, class_size], or [batch_size, class_size, D1, D2 , ..., Dk], where K is the number of dimensions.The ground truth output tensor, with shape [batch_size], or [batch_size, D1, D2, ..., Dk], where K is the number of dimensions. Labels element value shall be in range of [0, C). If ignore_index is specified, it may have a value outside [0, C) and the label values should either be in the range [0, C) or have the value ignore_index.A manual rescaling weight given to each class. If given, it has to be a 1D Tensor assigning weight to each of the classes. Otherwise, it is treated as if having all ones.Weighted loss float Tensor. If reduction is 'none', this has the shape of [batch_size], or [batch_size, D1, D2, ..., Dk] in case of K-dimensional loss. Otherwise, it is a scalar.Log probability tensor. If the output of softmax is prob, its value is log(prob).Target rank must be 1 less than the input rank.Input and target dimension value mismatch.input_gather_element_transformInvalid value for attribute axisK input must be a one-dimensional tensor of size 1.K input must be of type int64.Axis has less than the requested k elements.'shape' input must be 1D tensor of type INT64input and zero_point pair is expected to have be same type.input and zero_point pair is expected to have same type.Type of reduction to apply to loss: none, sum, mean(default). 'none': no reduction will be applied, 'sum': the output will be summed. 'mean': the sum of the output will be divided by the number of elements in the output.FbRKN4onnx24FunctionBodyBuildContextERKNS_8OpSchemaERNS_13FunctionProtoEE*ZZN4onnx16MathDocGeneratorEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx16MathDocGeneratorEPKcEUlRNS_8OpSchemaEE_*ZZN4onnx25SoftmaxFamilyDocGeneratorEPKcS1_ENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx25SoftmaxFamilyDocGeneratorEPKcS1_EUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_14Mod_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Pow_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZZN4onnx30ElementwiseMultiOpDocGeneratorEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx30ElementwiseMultiOpDocGeneratorEPKcEUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_15Gemm_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17MatMul_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15TopK_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Expand_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_24QLinearMatMul_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_24MatMulInteger_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Det_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_36NegativeLogLikelihoodLoss_Onnx_ver12EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Einsum_Onnx_ver12EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_34SoftmaxCrossEntropyLoss_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_PFbRKN4onnx24FunctionBodyBuildContextERKNS_8OpSchemaERNS_13FunctionProtoEEPass 1 to enable broadcastingconsumed_inputs1-D input tensorValue of alpha default to 0.2Value of beta default to 0.5List of tensors for Max.List of tensors for MinList of tensors for Sum.List of tensors for Mean.Input tensor AInput tensor BInput tensor CInvalid value for attribute kDescribes the axis of the inputs when coerced to 2D; defaults to one because the 0th axis most likely describes the batch_sizelegacy optimization attribute.If set, defines the broadcast dimensions. See doc for details.First operand, should share the type with the second operand.Second operand. With broadcasting can be of smaller size than A. If broadcasting is disabled it should be of the same size.Result, has same dimensions and type as A/onnxruntime_src/cmake/external/onnx/onnx/defs/math/old.cc Pow takes input data (Tensor) and exponent Tensor, and produces one output data (Tensor) where the function `f(x) = x^exponent`, is applied to the data tensor elementwise. Input tensor of any shape, base of the exponent.Input tensor of any shape broadcastable to X shape, the exponent component.This operator supports **multidirectional (i.e., Numpy-style) broadcasting**; for more details please check [the doc](Broadcasting.md).Coefficient of leakage default to 0.01.Coefficient of SELU default to 1.6732.Coefficient of SELU default to 1.0507.Coefficient of ELU default to 1.0.Slope tensor. If `Slope` is of size 1, the value is sharedacross different channelsOutput tensor. Same dimension as inputs.Minimum value, under which element is replaced by minMaximum value, above which element is replaced by maxInput tensor C, can be inplace.Whether C should be broadcastedScalar multiplier for the product of input tensors A * B, the default value is 1.0.Scalar multiplier for input tensor C, the default value is 1.0.Number of top elements to retrieveDimension on which to do the sort. If necessary the right-hand-side argument will be broadcasted to match the shape of left-hand-side argument. When broadcasting is specified, the second tensor can either be of element size 1 (including a scalar tensor and any tensor with rank equal to or smaller than the first tensor), or having its shape as a contiguous subset of the first tensor's shape. The starting of the mutually equal shape is specified by the argument "axis", and if it is not set, suffix matching is assumed. 1-dim expansion doesn't work yet. For example, the following tensor shapes are supported (with broadcast=1): shape(A) = (2, 3, 4, 5), shape(B) = (,), i.e. B is a scalar tensor shape(A) = (2, 3, 4, 5), shape(B) = (1, 1), i.e. B is an 1-element tensor shape(A) = (2, 3, 4, 5), shape(B) = (5,) shape(A) = (2, 3, 4, 5), shape(B) = (4, 5) shape(A) = (2, 3, 4, 5), shape(B) = (3, 4), with axis=1 shape(A) = (2, 3, 4, 5), shape(B) = (2), with axis=0 Attribute `broadcast=1` needs to be passed to enable broadcasting. *ZZN4onnx24MathDocGenerator_opset_7EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx24MathDocGenerator_opset_7EPKcEUlRNS_8OpSchemaEE_*ZZN4onnx34SoftmaxFamilyDocGenerator_opset_11EPKcS1_ENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx34SoftmaxFamilyDocGenerator_opset_11EPKcS1_EUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_14Mod_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Pow_Onnx_ver12EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZZN4onnx37ElementwiseMultiOpDocGenerator_opset8EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx37ElementwiseMultiOpDocGenerator_opset8EPKcEUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_15Gemm_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16MatMul_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Expand_Onnx_ver8EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_34SoftmaxCrossEntropyLoss_Onnx_ver12EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx32SoftmaxFamilyDocGenerator_opset1EPKcS1_EUlRNS_8OpSchemaEE_*ZN4onnx20MathDocGenerator_oldEPKcEUlRNS_8OpSchemaEE_*ZN4onnx27MathDocGenerator_old_opset6EPKcEUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_13Pow_Onnx_ver7EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Gemm_Onnx_ver6EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Gemm_Onnx_ver7EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Gemm_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16MatMul_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14TopK_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15TopK_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZZN4onnx34ElementwiseMultiOpDocGenerator_oldEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx34ElementwiseMultiOpDocGenerator_oldEPKcEUlRNS_8OpSchemaEE_p value of the Lp norm used to pool over the input data.Input data tensor from the previous operator; dimensions for image case are (N x C x H x W), where N is the batch size, C is the number of channels, and H and W are the height and the width of the data. For non image case, the dimensions are in the form of (N x C x D1 x D2 ... Dn), where N is the batch size.Output data tensor from Lp pooling across the input tensor. Dimensions will vary based on various kernel, stride, and pad sizes.ROI pool output shape (height, width).Multiplicative spatial scale factor to translate ROI coordinates from their input scale to the scale used when pooling.Input data tensor from the previous operator; dimensions for image case are (N x C x H x W), where N is the batch size, C is the number of channels, and H and W are the height and the width of the data.RoIs (Regions of Interest) to pool over. Should be a 2-D tensor of shape (num_rois, 5) given as [[batch_id, x1, y1, x2, y2], ...].RoI pooled output 4-D tensor of shape (num_rois, channels, pooled_shape[0], pooled_shape[1]).Input data tensor from previous layer; has size (N x C x H x W), where N is the batch size, C is the number of channels, and H and W are the height and width. Note that this is for the 2D image. Otherwise the size is (N x C x D1 x D2 ... x Dn). Optionally, if dimension denotation is in effect, the operation expects input data tensor to arrive with the dimension denotation of [DATA_BATCH, DATA_CHANNEL, DATA_FEATURE, DATA_FEATURE ...].The weight tensor that will be used in the convolutions; has size (M x C/group x kH x kW), where C is the number of channels, and kH and kW are the height and width of the kernel, and M is the number of feature maps. For more than 2 dimensions, the kernel shape will be (M x C/group x k1 x k2 x ... x kn), where (k1 x k2 x ... kn) is the dimension of the kernel. Optionally, if dimension denotation is in effect, the operation expects the weight tensor to arrive with the dimension denotation of [FILTER_OUT_CHANNEL, FILTER_IN_CHANNEL, FILTER_SPATIAL, FILTER_SPATIAL ...]. X.shape[1] == (W.shape[1] * group) == C (assuming zero based indices for the shape array). Or in other words FILTER_IN_CHANNEL should be equal to DATA_CHANNEL. Optional 1D bias to be added to the convolution, has size of M.Output data tensor that contains the result of the convolution. The output dimensions are functions of the kernel size, stride size, and pad lengths.The shape of the convolution kernel. If not present, should be inferred from input W.dilation value along each spatial axis of the filter. If not present, the dilation defaults is 1 along each spatial axis.Stride along each spatial axis. If not present, the stride defaults is 1 along each spatial axis.number of groups input channels and output channels are divided into.Input data tensor from previous layer; has size (N x C x H x W), where N is the batch size, C is the number of channels, and H and W are the height and width. Note that this is for the 2D image. Otherwise the size is (N x C x D1 x D2 ... x Dn)The weight tensor that will be used in the convolutions; has size (C x M/group x kH x kW), where C is the number of channels, and kH and kW are the height and width of the kernel, and M is the number of feature maps. For more than 2 dimensions, the weight shape will be (C x M/group x k1 x k2 x ... x kn), where (k1 x k2 x ... x kn) is the dimension of the kernel. The number of channels in the output should be equal to W.shape[1] * group (assuming zero based indices of the shape array)Output data tensor that contains the result of the convolution. The output dimensions are functions of the kernel size, stride size, pad lengths and group count. The number of channels in the output should be equal to W.shape[1] * group (assuming zero based indices of the shape array)The shape of the output can be explicitly set which will cause pads values to be auto generated. If output_shape is specified pads values are ignored. See doc for details for equations to generate padsAdditional elements added to the side with higher coordinate indices in the output. Each padding value in "output_padding" must be less than the corresponding stride/dilation dimension. By default, this attribute is a zero vector. Note that this attribute doesn't directly affect the computed output values. It only controls the selection of the computed values, so changing this attribute only adds or removes output elements. If "output_shape" is explicitly provided, "output_padding" does not contribute additional size to "output_shape" but participates in the computation of the needed padding amount. This is also called adjs or adjustment in some frameworks.dilation value along each spatial axis of the filter. If not present, the dilation defaults to 1 along each spatial axis.Output data tensor from pooling across the input tensor. The output tensor has the same rank as the input. The first two dimensions of output shape are the same as the input (N x C), while the other dimensions are all 1.Constrain input and output types to float and 8 bit tensors.The output of each pooling window is divided by the number of elements (exclude pad when attribute count_include_pad is zero)./onnxruntime_src/cmake/external/onnx/onnx/defs/nn/defs.ccThe output of each pooling window is maximum number of elements exclude pad. The storage order of the tensor. 0 is row major, and 1 is column major.Dilation value along each spatial axis of filter. If not present, the dilation defaults to 1 along each spatial axis.Indices tensor from max pooling across the input tensor. The dimensions of indices are the same as output tensor. The values in indices of are the indices of the selected values during pooling. The indices are computed as flatten 1-D tensor, and the indices do not consider padding. So the values in indices are in [0, N x C x D1 x ... x Dn).Input data tensor that has to be unpooled. This tensor is typically the first output of the MaxPool op.Dimensions for image case are (N x C x H x W), where N is the batch size, C is the number of channels, and H and W are the height and the width of the data. For non-image case, the dimensions are in the form of (N x C x D1 x D2 ... Dn), where N is the batch size. Optionally, if dimension denotation is in effect, the operation expects the input data tensor to arrive with the dimension denotation of [DATA_BATCH, DATA_CHANNEL, DATA_FEATURE, DATA_FEATURE ...].Input data tensor containing the indices corresponding to elements in the first input tensor X.This tensor is typically the second output of the MaxPool op.Dimensions must be the same as input tensor X. The indices are linear, i.e. computed considering the tensor as flattened 1-D tensor, assuming row-major storage. Also, the linear indices should not consider padding. So the values in indices are in the range [0, N x C x D1 x ... x Dn).The shape of the output can be explicitly set which will cause pads values to be auto generated. If 'output_shape' is specified, 'pads' values are ignored.Output data tensor that contains the result of the unpooling.Scale tensor for input 'x'. It's a scalar, which means a per-tensor/layer quantization.Zero point tensor for input 'x'. It's a scalar, which means a per-tensor/layer quantization.Scale tensor for input 'w'. It could be a scalar or a 1-D tensor, which means a per-tensor/layer or per output channel quantization. If it's a 1-D tensor, its number of elements should be equal to the number of output channels (M).Zero point tensor for input 'w'. It could be a scalar or a 1-D tensor, which means a per-tensor/layer or per output channel quantization. If it's a 1-D tensor, its number of elements should be equal to the number of output channels (M).Scale tensor for output 'y'. It's a scalar, which means a per-tensor/layer quantization.Zero point tensor for output 'y'. It's a scalar, which means a per-tensor/layer quantization.Optional 1D bias to be added to the convolution, has size of M. Bias must be quantized using scale = x_scale * w_scale and zero_point = 0Constrain filter type to 8-bit integer tensor.Constrain output type to 8-bit integer tensor.Constrain bias type to 32-bit integer tensor.The shape of the convolution kernel. If not present, should be inferred from input 'w'.Padding for the beginning and ending along each spatial axis, it can take any value greater than or equal to 0.The value represent the number of pixels added to the beginning and end part of the corresponding axis.`pads` format should be as follow [x1_begin, x2_begin...x1_end, x2_end,...], where xi_begin the number ofpixels added at the beginning of axis `i` and xi_end, the number of pixels added at the end of axis `i`.This attribute cannot be used simultaneously with auto_pad attribute. If not present, the padding defaultsto 0 along start and end of each spatial axis.number of groups input channels and output channels are divided into. default is 1.Zero point tensor for input 'x'. It's optional and default value is 0. It's a scalar, which means a per-tensor/layer quantization.Zero point tensor for input 'w'. It's optional and default value is 0. It could be a scalar or a 1-D tensor, which means a per-tensor/layer or per output channel quantization. If it's a 1-D tensor, its number of elements should be equal to the number of output channels (M)Constrain input x and its zero point data type to 8-bit integer tensor.Constrain input w and its zero point data type to 8-bit integer tensor.Constrain output y data type to 32-bit integer tensor.dilation value along each spatial axis of the filter. If not present, the dilation defaults to 1 along each axis.Stride along each spatial axis. If not present, the stride defaults to 1 along each axis.This operator has **optional** inputs/outputs. See [the doc](IR.md) for more details about the representation of optional arguments. An empty string may be used in the place of an actual argument's name to indicate a missing argument. Trailing optional arguments (those not followed by an argument that is present) may also be simply omitted. Carries out batch normalization as described in the paper https://arxiv.org/abs/1502.03167. Depending on the mode it is being run, there are multiple cases for the number of outputs, which we list below: Output case #1: Y, mean, var, saved_mean, saved_var (training mode) Output case #2: Y (test mode) For previous (depreciated) non-spatial cases, implementors are suggested to flatten the input shape to (N x C*D1*D2 ..*Dn) before a BatchNormalization Op. Factor used in computing the running mean and variance.e.g., running_mean = running_mean * momentum + mean * (1 - momentum).Input data tensor from the previous operator; dimensions are in the form of (N x C x D1 x D2 ... Dn), where N is the batch size, C is the number of channels. Statistics are computed for every channel of C over N and D1 to Dn dimensions. For image data, input dimensions become (N x C x H x W). The op also accepts single dimension input of size N in which case C is assumed to be 1running (training) or estimated (testing) mean tensor of shape (C).running (training) or estimated (testing) variance tensor of shape (C).The output tensor of the same shape as XThe running mean after the BatchNormalization operator.The running variance after the BatchNormalization operator.Saved mean used during training to speed up gradient computation.Saved variance used during training to speed up gradient computation.The input 1-dimensional scale tensor of size C.The input 1-dimensional bias tensor of size C.The output tensor of the same shape as input.The axis on which to apply normalization, -1 mean last axis.The order of the normalization, only 1 or 2 are supported.The ratio of random dropout, with value in [0, 1). If this input was not set, or if it was set to 0, the output would be a simple copy of the input. If it's non-zero, output will be a random dropout of the scaled input, which is typically the case during training. It is an optional value, if not specified it will default to 0.5.If set to true then it indicates dropout is being used for training. It is an optional value hence unless specified explicitly, it is false. If it is false, ratio is ignored and the operation mimics inference mode where nothing will be dropped from the input data and if mask is requested as output it will contain all ones.Constrain input 'ratio' types to float tensors.Constrain output 'mask' types to boolean tensors.The lambd value for the Shrink formulation. Default is 0.5.The bias value added to output. Default is 0.Constrain input and output to all tensor types.A 2D tensor with the contents of the input tensor, with input dimensions up to axis flattened to the outer dimension of the output and remaining input dimensions flattened into the inner dimension of the output.Indicate up to which input dimensions (exclusive) should be flattened to the outer dimension of the output. The value for axis must be in the range [-r, r], where r is the rank of the input tensor. Negative value means counting dimensions from the back. When axis = 0, the shape of the output tensor is (1, (d_0 X d_1 ... d_n), where the shape of the input tensor is (d_0, d_1, ... d_n). The number of channels to sum overOutput tensor, which has the shape and type as input tensorConstrain input and output types to float tensors.Input is ether string UTF-8 or int32/int64Maximum n-gram length. If this value is 3, 3-grams will be used to generate the output.Minimum n-gram length. If this value is 2 and max_gram_length is 3, output may contain counts of 2-grams and 3-grams.Maximum number of items (integers/strings) to be skipped when constructing an n-gram from X. If max_skip_count=1, min_gram_length=2, max_gram_length=3, this operator may generate 2-grams with skip_count=0 and skip_count=1, and 3-grams with skip_count=0 and skip_count=1List of strings n-grams learned from the training set. Either this or pool_int64s attributes must be present but not both. It's an 1-D tensor starting with the collections of all 1-grams and ending with the collections of n-grams. The i-th element in pool stores the n-gram that should be mapped to coordinate ngram_indexes[i] in the output vector.List of int64 n-grams learned from the training set. Either this or pool_strings attributes must be present but not both. It's an 1-D tensor starting with the collections of all 1-grams and ending with the collections of n-grams. The i-th element in pool stores the n-gram that should be mapped to coordinate ngram_indexes[i] in the output vector.The starting indexes of 1-grams, 2-grams, and so on in pool. It is useful when determining the boundary between two consecutive collections of n-grams. For example, if ngram_counts is [0, 17, 36], the first index (zero-based) of 1-gram/2-gram/3-gram in pool are 0/17/36. This format is essentially identical to CSR (or CSC) sparse matrix format, and we choose to use this due to its popularity.list of int64s (type: AttributeProto::INTS). This list is parallel to the specified 'pool_*' attribute. The i-th element in ngram_indexes indicate the coordinate of the i-th n-gram in the output tensor.list of floats. This attribute stores the weight of each n-gram in pool. The i-th element in weights is the weight of the i-th n-gram in pool. Its length equals to the size of ngram_indexes. By default, weights is an all-one tensor.This attribute is used when mode is "IDF" or "TFIDF" to scale the associated word counts.The weighting criteria. It can be one of "TF" (term frequency), "IDF" (inverse document frequency), and "TFIDF" (the combination of TF and IDF)Boolean. Whether the identification of stop words in X is case-sensitive. Default is falsestring enum that cases output to be lowercased/uppercases/unchanged. Valid values are "LOWER", "UPPER", "NONE". Default is "NONE"List of stop words. If not set, no word would be removed from X.Environment dependent string that denotes the locale according to which output strings needs to be upper/lowercased.Default en_US or platform specific equivalent as decided by the implementation.Input tensor must have atleast 2 dimensionsAttribute dilations has incorrect sizeAttribute strides has incorrect sizeAttribute kernel_shape has incorrect sizeAttribute kernel_shape must be specifiedAttribute pads has incorrect sizeSecond input tensor has wrong dimensionngram_indexes must be non-empty with no negative valuesInput tensor must have rank 1 or 2Input shape must have either [C] or [1,C] dimensions where C > 0MaxUnpool op must have either two or three inputs.Input tensor X must have atleast 2 dimensions.Attribute pads has incorrect size.Attribute strides has incorrect size.Attribute kernel_shape has incorrect size.Attribute kernel_shape must be specified.'output_shape' must be rank 1 tensor.'output_shape' must have same number of elements as the shape of input tensor X.Input tensor must have at least 2 dimensionsRoIs tensor must have 2 dimensionsAttribute pooled_shape has incorrect lengthAttribute pooled_shape must be specifiedweight and zero_point pair is expected to have same type.Ratio of Dropout must be a scalar.training_mode of Dropout must be a scalar.A list of integers, along which to reduce. The default is to caculate along axes [0,2,3] for calculating mean and variance along each channel. Two variables with the same C-coordinate are associated with the same mean and variance.averagea filterw_scalew_zero_pointlp poolmomentumScale tensor of shape (C).Bias tensor of shape (C).saved_meansaved_varInput matrixMatrix after normalizationtraining_modeThe output mask.A tensor of rank >= axis.Scaling parameter.The exponent.Input for n-gram extractionNgram results1-D tensor of floatsUTF-8 strings to normalizeUTF-8 Normalized stringsInvalid value() for attribute 'axis'ExponentEpsilonX_RMEX_squaredE_XsquaredVarianceX_varianceProcessed_STD*ZZN4onnx21PoolOpSchemaGeneratorEPKcS1_S1_bbENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx21PoolOpSchemaGeneratorEPKcS1_S1_bbEUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_20MaxUnpool_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZZN4onnx23LpPoolOpSchemaGeneratorEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx23LpPoolOpSchemaGeneratorEPKcEUlRNS_8OpSchemaEE_*ZZN4onnx24RoiPoolOpSchemaGeneratorEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx24RoiPoolOpSchemaGeneratorEPKcEUlRNS_8OpSchemaEE_*ZZN4onnx21ConvOpSchemaGeneratorEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx21ConvOpSchemaGeneratorEPKcEUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_22QLinearConv_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_22ConvInteger_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZZN4onnx30ConvTransposeOpSchemaGeneratorEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx30ConvTransposeOpSchemaGeneratorEPKcEUlRNS_8OpSchemaEE_*ZZN4onnx30GlobalPoolingOpSchemaGeneratorEPKcS1_ENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx30GlobalPoolingOpSchemaGeneratorEPKcS1_EUlRNS_8OpSchemaEE_*ZZN4onnx32GlobalLpPoolingOpSchemaGeneratorEPKcS1_ENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx32GlobalLpPoolingOpSchemaGeneratorEPKcS1_EUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_28BatchNormalization_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_31InstanceNormalization_Onnx_ver6EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_25LpNormalization_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Dropout_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Flatten_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_25TfIdfVectorizer_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_27StringNormalizer_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Stride along each spatial axis.dilation value along each spatial axis of the filter.The zero-padding added to one side of the output. This is also called adjs/adjustment in some frameworks./onnxruntime_src/cmake/external/onnx/onnx/defs/nn/old.ccThe output of each pooling window is divided by the number of elements exclude pad.The output of each pooling window is maximum number of elements exclude pad.Dilation value along each spatial axis of filter.p value of the Lp norm used to pool over the input data, default is 2.0.Input data tensor from the previous operator; dimensions for image case are (N x C x H x W), where N is the batch size, C is the number of channels, and H and W are the height and the width of the data. For non image case, the dimension are in the form of (N x C x D1 x D2 ... Dn), where N is the batch size.Output data tensor from pooling across the input tensor. Dimensions will be N x C x 1 x 1If true, compute the mean and variance across all spatial elements If false, compute the mean and variance across per feature.Default is 1.If set to nonzero, run spatial batch normalization in test mode, default is 0.The epsilon value to use to avoid division by zero, default is 1e-5f.Factor used in computing the running mean and variance.e.g., running_mean = running_mean * momentum + mean * (1 - momentum), default is 0.9f.The input 4-dimensional tensor of shape NCHW.The scale as a 1-dimensional tensor of size C to be applied to the output.The bias as a 1-dimensional tensor of size C to be applied to the output.The running mean (training) or the estimated mean (testing) as a 1-dimensional tensor of size C.The running variance (training) or the estimated variance (testing) as a 1-dimensional tensor of size C.The output 4-dimensional tensor of the same shape as X.The running mean after the BatchNormalization operator. Must be in-place with the input mean. Should not be used for testing.The running variance after the BatchNormalization operator. Must be in-place with the input var. Should not be used for testing.Saved mean used during training to speed up gradient computation. Should not be used for testing.Saved variance used during training to speed up gradient computation. Should not be used for testing.The output 4-dimensional tensor of the same shape as input.(float, default 0.5) the ratio of random dropout(int, default 0) if nonzero, run dropout in test mode where the output is simply Y = X.The output mask. If is_test is nonzero, this output is not filled.Constrain output mask types to boolean tensors.The output tensor of the same shape as X.Indicate up to which input dimensions (exclusive) should be flattened to the outer dimension of the output. The value for axis must be in the range [0, R], where R is the rank of the input tensor. When axis = 0, the shape of the output tensor is (1, (d_0 X d_1 ... d_n), where the shape of the input tensor is (d_0, d_1, ... d_n). If true, compute the mean and variance across per activation. If false, compute the mean and variance across per feature over each mini-batch.If spatial is true, the dimension of scale is (C). If spatial is false, the dimensions of scale are (C x D1 x ... x Dn)If spatial is true, the dimension of bias is (C). If spatial is false, the dimensions of bias are (C x D1 x ... x Dn)If spatial is true, the dimension of the running mean (training) or the estimated mean (testing) is (C). If spatial is false, the dimensions of the running mean (training) or the estimated mean (testing) are (C x D1 x ... x Dn).If spatial is true, the dimension of the running variance(training) or the estimated variance (testing) is (C). If spatial is false, the dimensions of the running variance(training) or the estimated variance (testing) are (C x D1 x ... x Dn).auto_pad must be either NOTSET, SAME_UPPER, SAME_LOWER or VALID. Where default value is NOTSET, which means explicit padding is used. SAME_UPPER or SAME_LOWER mean pad the input so that the output size match the input.In case of odd number add the extra padding at the end for SAME_UPPER and at the beginning for SAME_LOWER. VALID mean no padding. DEPRECATION NOTE: auto_pad is only intended to support legacy uses, and for framework authors, one is explicitly encouraged to use explicit padding specified in the pads attribute.Padding for the beginning and ending along each axis, it can take any value greater than or equal to 0. The value represent the number of pixels added to the beginning and end part of the corresponding axis. `pads` format should be as follow [x1_begin, x2_begin...x1_end, x2_end,...], where xi_begin the number of pixels added at the beginning of axis `i` and xi_end, the number of pixels added at the end of axis `i`. This attribute cannot be used simultaneously with auto_pad attribute.Stride along each axis.is_testThe ratio of random dropout*ZN4onnx11GetOpSchemaINS_18Dropout_Onnx_ver12EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Flatten_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZZN4onnx23PoolOpSchemaGenerator_9EPKcS1_S1_ENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx23PoolOpSchemaGenerator_9EPKcS1_S1_EUlRNS_8OpSchemaEE_*ZZN4onnx24PoolOpSchemaGenerator_10EPKcS1_S1_biENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx24PoolOpSchemaGenerator_10EPKcS1_S1_biEUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_19MaxUnpool_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZZN4onnx26LpPoolOpSchemaGenerator_10EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx26LpPoolOpSchemaGenerator_10EPKcEUlRNS_8OpSchemaEE_*ZZN4onnx24ConvOpSchemaGenerator_10EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx24ConvOpSchemaGenerator_10EPKcEUlRNS_8OpSchemaEE_*ZZN4onnx33ConvTransposeOpSchemaGenerator_10EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx33ConvTransposeOpSchemaGenerator_10EPKcEUlRNS_8OpSchemaEE_*ZN4onnx11GetOpSchemaINS_18Dropout_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_28BatchNormalization_Onnx_ver6EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Flatten_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Flatten_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_28BatchNormalization_Onnx_ver7EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Multiplicative spatial scale factor to translate ROI coordinates from their input spatial scale to the scale used when pooling, i.e., spatial scale of the input feature map X relative to the input image. E.g.; default is 1.0f. default 1; Pooled output Y's height.default 1; Pooled output Y's width.Number of sampling points in the interpolation grid used to compute the output value of each pooled output bin. If > 0, then exactly sampling_ratio x sampling_ratio grid points are used. If == 0, then an adaptive number of grid points are used (computed as ceil(roi_width / output_width), and likewise for height). Default is 0.The pooling method. Two modes are supported: 'avg' and 'max'. Default is 'avg'.RoIs (Regions of Interest) to pool over; rois is 2-D input of shape (num_rois, 4) given as [[x1, y1, x2, y2], ...]. The RoIs' coordinates are in the coordinate system of the input image. Each coordinate set has a 1:1 correspondence with the 'batch_indices' input.RoI pooled output, 4-D tensor of shape (num_rois, C, output_height, output_width). The r-th batch element Y[r-1] is a pooled feature map corresponding to the r-th RoI X[r-1]./onnxruntime_src/cmake/external/onnx/onnx/defs/object_detection/defs.ccAn input tensor with shape [num_batches, spatial_dimension, 4]. The single box data format is indicated by center_point_box.An input tensor with shape [num_batches, num_classes, spatial_dimension]Integer representing the maximum number of boxes to be selected per batch per class. It is a scalar. Default to 0, which means no output.Float representing the threshold for deciding whether boxes overlap too much with respect to IOU. It is scalar. Value range [0, 1]. Default to 0.Float representing the threshold for deciding when to remove boxes based on score. It is a scalar.selected indices from the boxes tensor. [num_selected_indices, 3], the selected index format is [batch_index, class_index, box_index].Integer indicate the format of the box data. The default is 0. 0 - the box data is supplied as [y1, x1, y2, x2] where (y1, x1) and (y2, x2) are the coordinates of any diagonal pair of box corners and the coordinates can be provided as normalized (i.e., lying in the interval [0, 1]) or absolute. Mostly used for TF models. 1 - the box data is supplied as [x_center, y_center, width, height]. Mostly used for Pytorch models.Dimension mismatch in unification between boxesmax_output_boxes_per_classiou_thresholdscore_thresholdselected_indices expected to have rank but has rank expected to have rank >*ZN4onnx11GetOpSchemaINS_19RoiAlign_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_28NonMaxSuppression_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_/onnxruntime_src/cmake/external/onnx/onnx/defs/object_detection/old.cc*ZN4onnx11GetOpSchemaINS_28NonMaxSuppression_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_N-D quantized input tensor to be de-quantized.Scale for input 'x'. It can be a scalar, which means a per-tensor/layer dequantization, or a 1-D tensor for per-axis dequantization.Zero point for input 'x'. It can be a scalar, which means a per-tensor/layer dequantization, or a 1-D tensor for per-axis dequantization. It's optional. 0 is the default value when it's not specified.(Optional) The axis of the dequantizing dimension of the input tensor. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(input)Constrain 'x_zero_point' and 'x' to 8-bit/32-bit integer tensor./onnxruntime_src/cmake/external/onnx/onnx/defs/quantization/defs.ccScale for doing quantization to get 'y'. It can be a scalar, which means per-tensor/layer quantization, or a 1-D Tensor for per-axis quantization.Zero point for doing quantization to get 'y'. It can be a scalar, which means a per-tensor/layer quantization, or a 1-D tensor for per-axis quantization. Default value is uint8 typed 0 if it's not specified.(Optional) The axis of the quantization dimension of the input tensor. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(input)Constrain 'x' to float or int32 tensor.Constrain 'y_zero_point' and 'y' to 8-bit integer tensor.Output zero point. It's a scalar, which means a per-tensor/layer quantization.Constrain 'x' to float tensor.Constrain 'y_zero_point' and 'y' to 8-bit unsigned integer tensor.Q_MinQ_MaxX_MinX_Min_AdjustedX_Max_AdjustedX_RangeMin_ScaledInitial_ZeroPoint_FPClipped_ZeroPoint_FPRounded_ZeroPoint_FPZeropointQuantized output tensor*ZN4onnx11GetOpSchemaINS_25QuantizeLinear_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_27DequantizeLinear_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Scale for input 'x'. It's a scalar, which means a per-tensor/layer quantization.Zero point for input 'x'. It's a scalar, which means a per-tensor/layer quantization. It's optional. 0 is the default value when it's not specified./onnxruntime_src/cmake/external/onnx/onnx/defs/quantization/old.ccScale for doing quantization to get 'y'. It's a scalar, which means a per-tensor/layer quantization.Zero point for doing quantization to get 'y'. It's a scalar, which means a per-tensor/layer quantization. Default value is uint8 typed 0 if it's not specified.*ZN4onnx11GetOpSchemaINS_25QuantizeLinear_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_27DequantizeLinear_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_The axis in which to compute the arg indices. Accepted range is [-r, r-1] where r = rank(data).Whether to select the last index or the first index if the {name} appears in multiple indices, default is False (first index).Reduced output tensor with integer data type.'axis' must be in [-rank(indices), rank(indices)-1]Constrain input and output types to high-precision and 8 bit numeric tensors.A list of integers, along which to reduce. The default is to reduce over all the dimensions of the input tensor. Accepted range is [-r, r-1] where r = rank(data)./onnxruntime_src/cmake/external/onnx/onnx/defs/reduction/defs.ccsum squareL1 normL2 normlog sum exponentlog sumproduct*ZZN4onnx18ReduceDocGeneratorEPKcbENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx18ReduceDocGeneratorEPKcbEUlRNS_8OpSchemaEE_*ZZN4onnx21ArgReduceDocGeneratorEPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx21ArgReduceDocGeneratorEPKcEUlRNS_8OpSchemaEE_The axis in which to compute the arg indices. Computes the indices of the {name} elements of the input tensor's element along the provided axis. The resulting tensor has the same rank as the input if keepdims equal 1. If keepdims equal 0, then the resulting tensor have the reduced dimension pruned. The type of the output tensor is integer./onnxruntime_src/cmake/external/onnx/onnx/defs/reduction/old.cc*ZZN4onnx26ReduceDocGenerator_opset12EPKcbENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx26ReduceDocGenerator_opset12EPKcbEUlRNS_8OpSchemaEE_*ZZN4onnx29ArgReduceDocGenerator_opset12EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx29ArgReduceDocGenerator_opset12EPKcEUlRNS_8OpSchemaEE_*ZZN4onnx25ReduceDocGenerator_opset1EPKciENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx25ReduceDocGenerator_opset1EPKciEUlRNS_8OpSchemaEE_*ZZN4onnx28ArgReduceDocGenerator_opset1EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx28ArgReduceDocGenerator_opset1EPKcEUlRNS_8OpSchemaEE_*ZZN4onnx29ArgReduceDocGenerator_opset11EPKcENKUlRNS_8OpSchemaEE_clES3_EUlRNS_16InferenceContextEE_*ZN4onnx29ArgReduceDocGenerator_opset11EPKcEUlRNS_8OpSchemaEE_Number of neurons in the hidden layerThe input sequences packed (and potentially padded) into one 3-D tensor with the shape of `[seq_length, batch_size, input_size]`.Optional tensor specifying lengths of the sequences in a batch. If not specified - assumed all sequences in the batch to have length `seq_length`. It has shape `[batch_size]`.A tensor that concats all the intermediate output values of the hidden. It has shape `[seq_length, num_directions, batch_size, hidden_size]`. The last output value of the hidden. It has shape `[num_directions, batch_size, hidden_size]`.Constrain seq_lens to integer tensor.Couple the input and forget gates if 1./onnxruntime_src/cmake/external/onnx/onnx/defs/rnn/defs.ccA list of 2 (or 4 if bidirectional) activation functions for update, reset, and hidden gates. The activation functions must be one of the activation functions specified above. Optional: See the equations for default if not specified.When computing the output of the hidden gate, apply the linear transformation before multiplying by the output of the reset gate.The weight tensor for the gates. Concatenation of `W[zrh]` and `WB[zrh]` (if bidirectional) along dimension 0. This tensor has shape `[num_directions, 3*hidden_size, input_size]`.The recurrence weight tensor. Concatenation of `R[zrh]` and `RB[zrh]` (if bidirectional) along dimension 0. This tensor has shape `[num_directions, 3*hidden_size, hidden_size]`.The bias tensor for the gates. Concatenation of `[Wb[zrh], Rb[zrh]]` and `[WBb[zrh], RBb[zrh]]` (if bidirectional) along dimension 0. This tensor has shape `[num_directions, 6*hidden_size]`. Optional: If not specified - assumed to be 0One (or two if bidirectional) activation function for input gate. The activation function must be one of the activation functions specified above. Optional: Default `Tanh` if not specified.The weight tensor for input gate. Concatenation of `Wi` and `WBi` (if bidirectional). The tensor has shape `[num_directions, hidden_size, input_size]`.The recurrence weight tensor. Concatenation of `Ri` and `RBi` (if bidirectional). The tensor has shape `[num_directions, hidden_size, hidden_size]`.The bias tensor for input gate. Concatenation of `[Wbi, Rbi]` and `[WBbi, RBbi]` (if bidirectional). The tensor has shape `[num_directions, 2*hidden_size]`. Optional: If not specified - assumed to be 0.First input tensor must have rank 3*ZN4onnx15RNNDocGeneratorEPKcEUlRNS_8OpSchemaEE_fowardoutput_sequenceOptional scaling values used by some activation functions. The values are consumed in the order of activation functions, for example (f, g, h) in LSTM.The sequence output for the hidden is optional if 0. Default 0.A tensor that concats all the intermediate output values of the hidden. It has shape `[seq_length, num_directions, batch_size, hidden_size]`. It is optional if `output_sequence` is 0./onnxruntime_src/cmake/external/onnx/onnx/defs/rnn/old.cc*ZN4onnx18RNNDocGeneratorOldEPKcEUlRNS_8OpSchemaEE_*ZN4onnx16RNNDocGenerator1EPKcEUlRNS_8OpSchemaEE_Attributes:(no type)(no doc)(unnamed)Outputs:Defined at (no documentation yet)Operator ') has input size not in range [min=, max= not in allowed input sizes.) has output size not in allowed output sizes.) than declared () has more inputs () in op definition.) has more outputs (' appeared multiple times.Attribute 'Unrecognized attribute: for operator has unknown expected typeRequired attribute '' is missing.)'s input )'s output ONNX Schema (inputs_.size() - 1) == i(outputs_.size() - 1) == i!(it.GetName().empty()), has unsupported type: typestr: has inconsistent type has unsupported type (no explicit description available)' has been deprecated since version Mismatched attribute type in '' is expected to have field 't'' is expected to have field 'sparse_tensor'' is expected to have field 'g'' is expected to have field 'floats'' is expected to have field 'ints'' is expected to have field 'strings'' is expected to have field 'tensors'' is expected to have field 'graphs' is marked single but has an empty string in the graph: failed validating the check: Duplicate type constraint nameAttribute specification type mismatch.@@ؒ*ZN4onnx8OpSchema9NumInputsESt3setIiSt4lessIiESaIiEEEUliE_*ZN4onnx8OpSchema10NumOutputsESt3setIiSt4lessIiESaIiEEEUliE_N4onnx16OpSchemaRegistryE], Value= sum of split values=Empty sequence.Tensors.Constrain to any tensor type.Input sequence.input_sequencepositionThe tensor to splitConcatenated tensorconcat_result Tensor=Attribute dtype should be of integer type and specify a type.Input type for input at index 0 is null. Type info is expected.Required attribute axis is missingnew_axis must be either 0 or 1Invalid value of attribute 'axis'. Accepted range=[Invalid value of attribute 'axis'. Rank=Only supports `int32_t` or `int64_t` inputs for splitInput 'split' can not be empty.Sum of split values not equal to 'input' dim size on 'axis'. 'axis' dim size=Constrain output types to any tensor type.(Optional) The data type of the tensors in the output sequence. The default type is 'float'./onnxruntime_src/cmake/external/onnx/onnx/defs/sequence/defs.ccConstrain input types to any tensor type.Sequence enclosing the input tensors.Input tensor to be inserted into the input sequence.Position in the sequence where the new tensor is inserted. It is optional and default is to insert to the back of the sequence. Negative value means counting positions from the back. Accepted range in `[-n, n]`, where `n` is the number of tensors in 'input_sequence'. It is an error if any of the index values are out of bounds. It must be a scalar(tensor of empty shape).Output sequence that contains the inserted tensor at given position.Constrain position to integral tensor. It must be a scalar(tensor of empty shape).Position of the tensor in the sequence. Negative value means counting positions from the back. Accepted range in `[-n, n - 1]`, where `n` is the number of tensors in 'input_sequence'. It is an error if any of the index values are out of bounds. It must be a scalar(tensor of empty shape).Output tensor at the specified position in the input sequence.Output sequence that has the tensor at the specified position removed.Length of input sequence. It must be a scalar(tensor of empty shape).Constrain output to integral tensor. It must be a scalar(tensor of empty shape).Constrain output types to all tensor types.Constrain input types to all tensor types.Length of each output. It can be either a scalar(tensor of empty shape), or a 1-D tensor. All values must be >= 0. One or more outputs forming a sequence of tensors after splittingConstrain split size to integral tensor.Which axis to split on. A negative value means counting dimensions from the back. Accepted range is [-rank, rank-1].Keep the split dimension or not. Default 1, which means we keep split dimension. If input 'split' is specified, this attribute is ignored.Which axis to concat on. Accepted range in `[-r, r - 1]`, where `r` is the rank of input tensors. When `new_axis` is 1, accepted range is `[-r - 1, r]`. Insert and concatenate on a new axis or not, default 0 means do not insert new axis.Sequence of tensors for concatenationInput Sequence and Tensor are expected to have type info. Current type is null.Input Sequence and Tensor are expected to have the same elem type. Sequence=SequenceConstruct is expected to have at least 1 input.Input type for input at index is null. Type info is expected.Element type of inputs are expected to be the same.*ZN4onnx11GetOpSchemaINS_24SequenceEmpty_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_28SequenceConstruct_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_25SequenceInsert_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_21SequenceAt_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_24SequenceErase_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_25SequenceLength_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_26SplitToSequence_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_29ConcatFromSequence_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Input tensor to be cast.Specified shape for output.Reshaped data.reshapedShape of the input tensorstepsTransposed output.transposedupdatesTensor of rank q + (r - 1).squeezedOriginal tensorexpandedInput tensor of any shape.repeatsN-D tensorN-D tensor after resizingroisizesTensor to copy input into.conditiondepthConstrain to boolean tensors.Tensor of rank r >= 2.inverse_indicesconstant_valueInvalid position of 0Invalid dimension value: Invalid attribute perm {}, input shape = {axis must be in [-r, r-1]'input' must have rank >= 2) and outputs (Input axes has invalid data'step' cannot be 0Blocksize must be positiveOnly supports `int32_t` or `int64_t` inputs for starts/ends/axes/stepsThe data type to which the elements of the input tensor are cast. Strictly must be one of the types from DataType enum in TensorProtoOutput tensor with the same shape as input with type specified by the 'to' argumentConstrain input types. Casting from complex is not supported.Constrain output types. Casting to complex is not supported./onnxruntime_src/cmake/external/onnx/onnx/defs/tensor/defs.ccInput tensor can be of arbitrary type.Constrain output to int64 tensor.Total number of elements of the input tensorConstrain output to int64 tensor, which should be a scalar though.Which axis to concat on. A negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(inputs)..List of tensors for concatenationOne or more outputs forming list of tensors after splittingWhich axis to split on. A negative value means counting dimensions from the back. Accepted range is [-rank, rank-1] where r = rank(input).length of each output. Values should be >= 0.1-D tensor of ending indices (exclusive) of corresponding axis in `axes`1-D tensor of axes that `starts` and `ends` apply to. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(data).1-D tensor of slice step of corresponding axis in `axes`. Negative value means slicing backward. 'steps' cannot be 0. Defaults to 1.A list of integers. By default, reverse the dimensions, otherwise permute the axes according to the values given.Input and output types can be of any tensor type.Which axis to scatter on. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(data).Tensor of int32/int64 indices, of r >= 1 (same rank as input). All index values are expected to be within bounds [-s, s-1] along axis of size s. It is an error if any of the index values are out of bounds.Tensor of rank r >=1 (same rank and shape as indices)Tensor of rank r >= 1 (same rank as input).Tensor of rank q + r - indices_shape[-1] - 1.Which axis to gather on. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(data).Tensor of int32/int64 indices, of any rank q. All index values are expected to be within bounds [-s, s-1] along axis of size s. It is an error if any of the index values are out of bounds.Tensor of int32/int64 indices, with the same rank r as the input. All index values are expected to be within bounds [-s, s-1] along axis of size s. It is an error if any of the index values are out of bounds.Tensor of the same shape as indices.List of integers indicating the dimensions to squeeze. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(data).Tensors with at least max(dims) dimensions.Reshaped tensor with same data as input.List of integers indicating the dimensions to be inserted. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(expanded).Blocks of [blocksize, blocksize] are moved.Input tensor of [N,C,H,W], where N is the batch axis, C is the channel or depth, H is the height and W is the width.Output tensor of [N, C * blocksize * blocksize, H/blocksize, W/blocksize].DCR (default) for depth-column-row order re-arrangement. Use CRD for column-row-depth order.Output tensor of [N, C/(blocksize * blocksize), H * blocksize, W * blocksize].1D int64 tensor of the same length as input's dimension number, includes numbers of repeated copies along input's dimensions.Output tensor of the same dimension and type as tensor input. output_dim[i] = input_dim[i] * repeats[i]Constrain repeat's type to int64 tensors.Constrain input 'X' and output 'Y' to all tensor types.Two interpolation modes: nearest (default), and linear (including bilinear, trilinear, etc)The scale array along each dimension. It takes value greater than or equal to 1. The number of elements of 'scales' should be the same as the rank of input 'X'.Three interpolation modes: nearest (default), linear and cubic. The "linear" mode includes linear interpolation for 1D tensor and N-linear interpolation for N-D tensor (for example, bilinear interpolation for 2D tensor). The "cubic" mode includes cubic interpolation for 1D tensor and N-cubic interpolation for N-D tensor (for example, bicubic interpolation for 2D tensor).The coefficient 'a' used in cubic interpolation. Two common choice are -0.5 (in some cases of TensorFlow) and -0.75 (in PyTorch). Check out Equation (4) in https://ieeexplore.ieee.org/document/1163711 for the details. This attribute is valid only if "mode" is "cubic".If set to 1, the weight of sampling locations outside the tensor will be set to 0 and the weight will be renormalized so that their sum is 1.0. The default value is 0. This attribute describes how to transform the coordinate in the resized tensor to the coordinate in the original tensor.
The coordinate of each dimension is transformed individually. Let's describe a case using axis x as an example. Denote x_resized as the coordinate of axis x in the resized tensor, x_original as the coordinate of axis x in the original tensor, length_original as the length of the original tensor in axis x, length_resized as the length of the resized tensor in axis x, roi_x = (start_x, end_x) of the axis x in input "roi", scale = length_resized / length_original,
if coordinate_transformation_mode is "half_pixel",
x_original = (x_resized + 0.5) / scale - 0.5,
if coordinate_transformation_mode is "pytorch_half_pixel",
x_original = length_resized > 1 ? (x_resized + 0.5) / scale - 0.5 : 0,
if coordinate_transformation_mode is "align_corners",
x_original = x_resized * (length_original - 1) / (length_resized - 1),
if coordinate_transformation_mode is "asymmetric",
x_original = x_resized / scale,
if coordinate_transformation_mode is "tf_half_pixel_for_nn",
x_original = (x_resized + 0.5) / scale,
if coordinate_transformation_mode is "tf_crop_and_resize",
x_original = length_resized > 1 ? start_x * (length_original - 1) + x_resized * (end_x - start_x) * (length_original - 1) / (length_resized - 1) : 0.5 * (start_x + end_x) * (length_original - 1).Four modes: round_prefer_floor (default, as known as round half down), round_prefer_ceil (as known as round half up), floor, ceil. Only used by nearest interpolation. It indicates how to get "nearest" pixel in input tensor from x_original, so this attribute is valid only if "mode" is "nearest".When coordinate_transformation_mode is "tf_crop_and_resize" and x_original is outside the range [0, length_original - 1], this value is used as the corresponding output value. Default is 0.0f.1-D tensor given as [start1, ..., startN, end1, ..., endN], where N is the rank of X. The RoIs' coordinates are normalized in the coordinate system of the input image. It only takes effect when coordinate_transformation_mode is "tf_crop_and_resize"The scale array along each dimension. It takes value greater than 0. If it's less than 1, it's sampling down, otherwise, it's upsampling. The number of elements of 'scales' should be the same as the rank of input 'X'. Only one of 'scales' and 'sizes' can be specified. If 'size' is specified, then set scales to empty data (zero shape) in this operator's input list.The size of the output tensor. The number of elements of 'sizes' should be the same as the rank of input 'X'. Only one of 'scales' and 'sizes' can be specified.Constrain roi type to float or double.(Optional) Axis along which to take slices. If not specified, input is flattened before elements being selected. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(input).Rank 1 tensor of booleans to indicate which slices or data elements to be selected. Its length can be less than the input length along the axis or the flattened input size if axis is not specified. In such cases data slices or elements exceeding the condition length are discarded.Tensor of rank r if axis is specified. Otherwise output is a Tensor of rank 1.Constrains to boolean tensors.(Optional) Axis along which one-hot representation in added. Default: axis=-1. axis=-1 means that the additional dimension will be inserted as the innermost/last dimension in the output tensor. Negative value means counting dimensions from the back. Accepted range is [-r-1, r] where r = rank(indices).Input tensor containing indices. Any entries in the 'indices' input tensor with values outside the range [-depth, depth-1] will result in one-hot representation with all 'off_value' values in the output tensor.In case 'indices' is of non-integer type, the values will be casted to int64 before use.Scalar specifying the number of classes in one-hot tensor. This is also the size of the one-hot dimension (specified by 'axis' attribute) added on in the output tensor. The values in the 'indices' input tensor are expected to be in the range [-depth, depth-1]. In case 'depth' is of non-integer type, it will be casted to int64 before use.Rank 1 tensor containing exactly two elements, in the format [off_value, on_value], where 'on_value' is the value used for filling locations specified in 'indices' input tensor, and 'off_value' is the value used for filling locations other than those specified in 'indices' input tensor. Tensor of rank one greater than input tensor 'indices', i.e. rank(output) = rank(indices) + 1. The data type for the elements of the output tensor is the same as the type of input 'values' is used.Constrain output types to boolean tensors.(Optional) Whether map positive infinity to true. Default to 1 so that positive infinity induces true. Set this attribute to 0 if positive infinity should be mapped to false.(Optional) Whether map negative infinity to true. Default to 1 so that negative infinity induces true. Set this attribute to 0 if negative infinity should be mapped to false.When True (nonzero), yield X, otherwise yield Yvalues selected at indices where condition is Truevalues selected at indices where condition is FalseTensor of shape equal to the broadcasted shape of condition, X, and Y.Constrain to all tensor types.(Optional) Specify which axis is time axis. Must be one of 0 (default), or 1.(Optional) Specify which axis is batch axis. Must be one of 1 (default), or 0.Tensor specifying lengths of the sequences in a batch. It has shape `[batch_size]`.Tensor with same shape of input.(Optional) Whether to sort the unique elements in ascending order before returning as output. Must be one of 0, or 1 (default).(Optional) The dimension to apply unique. If not specified, the unique elements of the flattened input are returned. Negative value means counting dimensions from the back. Accepted range is [-r, r-1] where r = rank(input).A N-D input tensor that is to be processed.A tensor of the same type as 'X' containing all the unique values or subtensors sliced along a provided 'axis' in 'X', either sorted or maintained in the same order they occur in input 'X'A 1-D INT64 tensor containing indices of 'Y' elements' first occurance in 'X'. When 'axis' is provided, it contains indices to subtensors in input 'X' on the 'axis'. When 'axis' is not provided, it contains indices to values in the flattened input tensor. A 1-D INT64 tensor containing, for elements of 'X', its corresponding indices in 'Y'. When 'axis' is provided, it contains indices to subtensors in output 'Y' on the 'axis'. When 'axis' is not provided, it contains indices to values in output 'Y'. A 1-D INT64 tensor containing the count of each element of 'Y' in input 'X'The number of batch dimensions. The gather of indexing starts from dimension of data[batch_dims:]Tensor of rank q >= 1. All index values are expected to be within bounds [-s, s-1] along axis of size s. It is an error if any of the index values are out of bounds.Constrains input and output to only numeric types.Supported modes: `constant`(default), `reflect`, `edge`Tensor of integers indicating the number of padding elements to add or remove (if negative) at the beginning and end of each axis. For 2D input tensor, it is the number of pixels. `pads` should be a 1D tensor of shape [2 * input_rank]. `pads` format should be: [x1_begin, x2_begin,...,x1_end, x2_end,...], where xi_begin is the number of pad values added at the beginning of axis `i` and xi_end, the number of pad values added at the end of axis `i`.(Optional) A scalar value to be used if the mode chosen is `constant` (by default it is 0).OneHot node must have three inputs.Input 'depth' must be a scalar or rank 1 tensor.Input 'depth' must have exactly one element.Input 'values' must be rank 1 tensor.Input 'values' must have exactly two elements.Indices tensor must have rank >= 1Target shape may not have multiple -1 dimensionsInvalid Target shape product of 0Dimension could not be inferred: incompatible shapesaxis must be in [-rank, rank-1].All inputs to Concat must have same rankdata tensor must have rank >= 1values in 'axes' are beyond the bounds of the computed output shape'axes' attribute must not contain any duplicates'Repeats' input must be 1D tensor of type int64'Repeats' input has incorrect number of values. The number of values in 'repeats' must be equal to the number of input dimensions.'sequence_lens' must have rank of 1Both `data` and `indices` input tensors in GatherND op need to have rank larger than 0.Last dimension of `indices` input tensor in GatherND op must not be larger than the rank of `data` tensor'pads' input must be a 1D (shape: [2 * input_rank]) tensor of type int64Mismatch between number of splits (Mismatch between the sum of 'split' () and the split dimension of the input (The input is not evenly splittableSlice op must have either three, four or five inputs.Incorrect or missing input value for starts and endsInput axes has incorrect lengthInput steps has incorrect lengthInput tensor must be 4-dimensional*ZN4onnx11GetOpSchemaINS_15Cast_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Reshape_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Shape_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15Size_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Concat_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Split_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Slice_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_20Transpose_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Scatter_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_20ScatterND_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_26ScatterElements_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Gather_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_25GatherElements_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Squeeze_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_20Unsqueeze_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_23SpaceToDepth_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_23DepthToSpace_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15Tile_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19Upsample_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Resize_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19Compress_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17OneHot_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16IsNaN_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16IsInf_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15Where_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18NonZero_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_26ReverseSequence_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Unique_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19GatherND_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Pad_Onnx_ver13EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Which axis to concat onoutputs...Which axis to split onlength of each outputpaddingsNew shapetilesAxis along which to repeat.width_scaleheight_scale4-D tensor, [N,C,H,W]Which axis to split on. Ranks inferred (/onnxruntime_src/cmake/external/onnx/onnx/defs/tensor/old.ccThe scale array along each dimension. It takes value greater than 0. If it's less than 1, it's sampling down, otherwise, it's upsampling. The number of elements of 'scales' should be the same as the rank of input 'X'. Only one of 'scales' and 'sizes' can be specified. If 'size' is needed, the user can use an empty string as the name of 'scales' in this operator's input list.Constrain input types. Casting from strings and complex are not supported.Constrain output types. Casting to strings and complex are not supported.Which axis to concat on. Default value is 1.Optional list of output lengths (see also arg 'split')List of integers indicate the padding element count at the beginning and end of each axis, for 2D it is the number of pixel. `paddings` rank should be double of the input's rank. `paddings` format should be as follow [x1_begin, x2_begin...x1_end, x2_end,...], where xi_begin the number of pixels added at the beginning of axis `i` and xi_end, the number of pixels added at the end of axis `i`.Three modes: constant(default), reflect, edgeOne float, indicates the value to be filled, default is 0Number of repeated copies to make of the input tensor.Output tensor of same shape and type as input.Constrain tiles and axis's type to int64 tensors.The scale along width dimension. It takes value greater than or equal to 1.The scale along height dimension. It takes value greater than or equal to 1.Two interpolation modes: nearest(default), bilinear4-D tensor after resizing, [N,C,H,W]Constrain output types to bool, int32, int64, float16, float, double tensors.The scale array along each dimension. It takes value greater than 0. If it's less than 1, it's sampling down, otherwise, it's upsampling. The number of elements of 'scales' should be the same as the rank of input 'X'.Axes that `starts` and `ends` apply to. It's optional. If not present, will be treated as [0, 1, ..., len(`starts`) - 1].Starting indices of corresponding axis in `axes`Ending indices (exclusive) of corresponding axis in axes`1-D tensor of slice step of corresponding axis in `axes`. Default to 1. Which axis to scatter on. Negative value means counting dimensions from the back. Accepted range is [-r, r-1]Tensor of int32/int64 indices, of r >= 1 (same rank as input).Which axis to gather on. Negative value means counting dimensions from the back. Accepted range is [-r, r-1]Tensor of int32/int64 indices, of any rank q. All index values are expected to be within bounds. It is an error if any of the index values are out of bounds.List of non-negative integers, indicate the dimensions to squeeze.List of non-negative integers, indicate the dimensions to be inserted(Optional) Axis along which one-hot representation in added. Default: axis=-1. axis=-1 means that the additional dimension will be inserted as the innermost/last dimension in the output tensor.Input tensor containing indices. The values must be non-negative integers. Any entries in the 'indices' input tensor with values outside the range [0, depth) will result in one-hot representation with all 'off_value' values in the output tensor.In case 'indices' is of non-integer type, the values will be casted to int64 before use.Scalar specifying the number of classes in one-hot tensor. This is also the size of the one-hot dimension (specified by 'axis' attribute) added on in the output tensor. The values in the 'indices' input tensor are expected to be in the range [0, depth). In case 'depth' is of non-integer type, it will be casted to int64 before use.(Optional) Axis along which to take slices. If not specified, input is flattened before elements being selected.Rank 1 tensor of booleans to indicate which slices or data elements to be selected. Its length can be less than the input length alone the axis or the flattened input size if axis is not specified. In such cases data slices or elements exceeding the condition length are discarded.List of integers indicating the number of padding elements to add or remove (if negative) at the beginning and end of each axis. For 2D it is the number of pixels. `pads` rank should be double of the input's rank. `pads` format should be as follow [x1_begin, x2_begin...x1_end, x2_end,...], where xi_begin the number of pixels added at the beginning of axis `i` and xi_end, the number of pixels added at the end of axis `i`.One float, indicates the value to be filled.'axis' must be in [-rank(indices)-1, rank(indices)]rank must be greater than axis) is not equal to the existing rank value (Number of elements of attribute 'scales' must be same as rank of input 'X'Attribute 'scales' must have floats type.Attribute 'scales' is required.Incorrect or missing attribute value for starts and endsAttribute axes has incorrect lengthInvalid value of attribute 'axis'Attribute value for pads is requiredAttribute pads has incorrect length*ZN4onnx11GetOpSchemaINS_14Cast_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Reshape_Onnx_ver5EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15Shape_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Size_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Concat_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Split_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Slice_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19Transpose_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Scatter_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_20ScatterND_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_26ScatterElements_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Gather_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_25GatherElements_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Squeeze_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_20Unsqueeze_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_22SpaceToDepth_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_23DepthToSpace_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Tile_Onnx_ver6EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19Upsample_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Resize_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15IsNaN_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17NonZero_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19GatherND_Onnx_ver12EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Pad_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Cast_Onnx_ver6EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Concat_Onnx_ver4EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_14Tile_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Upsample_Onnx_ver7EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18Upsample_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Resize_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15Slice_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Slice_Onnx_ver10EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Scatter_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_22DepthToSpace_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16Gather_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_17Squeeze_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19Unsqueeze_Onnx_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_16OneHot_Onnx_ver9EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_15Split_Onnx_ver2EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_13Pad_Onnx_ver2EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_19GatherND_Onnx_ver11EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_) is not equal to the existing dim value (Number of elements of input 'sizes' must be same as rank of input 'X'Input 'sizes' must have int64 element type.Number of elements of input 'scales' must be same as rank of input 'X'Input 'scales' must have float element type.Dimension value inferred (Data to be selectedData to be binarizedBinarized output dataInput dataA dictionary.Data to be processed.Imputed output dataValue(s) to change toA value that needs replacing.Value(s) to change to.Output data.A list of ints.A list of floats.A string.An integer.A float.Data to be classified.A collection of intercepts.Data to be regressed.Weights of the model(s).Encoded output dataOne of 'MAX,' 'L1,' 'L2'Data to be encoded.Data to be scaled.Scaled output data.Chosen support vectorsSupport vector coefficients.Input of shape [N,F]N, Top class for each pointTree id for each node.Feature id for each node.N classesThe node id of each weightThe weight for each targetThe total number of targets.The input valuesThe output mapseq(map(string, float))seq(map(int64, float))map(string, int64)map(int64, string)map(int64, float)map(int64, double)map(string, float)map(string, double)Label encoder has only one input.Label encoder has only one output.Only one of keys_*'s can be set in label encoder.Input type is not string tensor but key_strings is setInput type is not int64 tensor but keys_int64s is setInput type is not float tensor but keys_floats is setOnly one of values_*'s can be set in label encoder.The indices, based on 0 as the first index of any dimension.Selected output data as an arrayThe input must be a tensor of a numeric type or string. The output will be of the same tensor type./onnxruntime_src/cmake/external/onnx/onnx/defs/traditionalml/defs.ccThe input must be a tensor of a numeric type. The output will be of the same tensor type.Values greater than this are mapped to 1, others to 0.The input map that is to be cast to a tensorA tensor representing the same data as the input map, ordered by their keysThe input must be an integer map to either string or float.The output is a 1-D tensor of string, float, or integer.A string indicating the desired element type of the output tensor, one of 'TO_FLOAT', 'TO_STRING', 'TO_INT64'.Indicates whether to only output as many values as are in the input (dense), or position the input based on using the key of the map as the index of the output (sparse).
One of 'DENSE', 'SPARSE'.If the value of map_form is 'SPARSE,' this attribute indicates the total length of the output tensor.Output data. If strings are input, the output values are integers, and vice versa.The input must be a tensor of strings or integers, either [N,C] or [C].The output is a tensor of strings or integers. Its shape will be the same as the input shape.The strings of the map. This sequence must be the same length as the 'cats_int64s' sequenceThe integers of the map. This sequence must be the same length as the 'cats_strings' sequence.A string to use when an input integer value is not found in the map.
One and only one of the 'default_*' attributes must be defined.An integer to use when an input string value is not found in the map.
One and only one of the 'default_*' attributes must be defined.A 1-D tensor holding values from the input dictionary.The input must be a map from strings or integers to either strings or a numeric type. The key and value types cannot be the same.The output will be a tensor of the value type of the input map. It's shape will be [1,C], where C is the length of the input dictionary.A string vocabulary array.
One and only one of the vocabularies must be defined.An integer vocabulary array.
One and only one of the vocabularies must be defined.An ordered collection of tensors, all with the same element type.The output array, elements ordered as the inputs.The input type must be a tensor of a numeric type.The size of each input in the input listThe input type must be a tensor of a numeric type, either [N,C] or [C]. The output type will be of the same tensor type and shape.Input data. It can be either tensor or scalar.The input type is a tensor of any shape.Output type is determined by the specified 'values_*' attribute.A list of strings. One and only one of 'keys_*'s should be set.A list of strings. One and only one of 'value_*'s should be set.Classification outputs (one class per example).Classification scores ([N,E] - one score for each class and exampleThe input must be a tensor of a numeric type, and of of shape [N,C] or [C]. In the latter case, it will be treated as [1,C]The output will be a tensor of strings or integers.A collection of weights of the model(s).Indicates whether to do OvR or multinomial (0=OvR is the default).Class labels when using string labels. One and only one 'classlabels' attribute must be defined.Class labels when using integer labels. One and only one 'classlabels' attribute must be defined.Indicates the transform to apply to the scores vector.
One of 'NONE,' 'SOFTMAX,' 'LOGISTIC,' 'SOFTMAX_ZERO,' or 'PROBIT'Regression outputs (one per target, per example).The input must be a tensor of a numeric type.Indicates the transform to apply to the regression output vector.
One of 'NONE,' 'SOFTMAX,' 'LOGISTIC,' 'SOFTMAX_ZERO,' or 'PROBIT'Weights of the intercepts, if used.The total number of regression targets, 1 if not defined.Data to be encoded, a tensor of shape [N,C] or [C]Encoded output data, having one more dimension than X.List of categories, ints.
One and only one of the 'cats_*' attributes must be defined.List of categories, strings.
One and only one of the 'cats_*' attributes must be defined.If true and category is not present, will return all zeros; if false and a category if not found, the operator will fail.First, offset by this.
Can be length of features in an [N,F] tensor or length 1, in which case it applies to all features, regardless of dimension count.Second, multiply by this.
Can be length of features in an [N,F] tensor or length 1, in which case it applies to all features, regardless of dimension count.
Must be same length as 'offset'Class scores (one per class per example), if prob_a and prob_b are provided they are probabilities for each class, otherwise they are raw scores.The input must be a tensor of a numeric type, either [C] or [N,C].The output type will be a tensor of strings or integers, depending on which of the the classlabels_* attributes is used. Its size will match the bactch size of the input.The kernel type, one of 'LINEAR,' 'POLY,' 'RBF,' 'SIGMOID'.List of 3 elements containing gamma, coef0, and degree, in that order. Zero if unused for the kernel.First set of probability coefficients.Second set of probability coefficients. This array must be same size as prob_a.
If these are provided then output Z are probability estimates, otherwise they are raw scores.Indicates the transform to apply to the score.
One of 'NONE,' 'SOFTMAX,' 'LOGISTIC,' 'SOFTMAX_ZERO,' or 'PROBIT'Class labels if using string labels.
One and only one of the 'classlabels_*' attributes must be defined.Class labels if using integer labels.
One and only one of the 'classlabels_*' attributes must be defined.Regression outputs (one score per target per example).The input type must be a tensor of a numeric type, either [C] or [N,C].Flag indicating whether the regression is a one-class SVM or not.The number of support vectors.Indicates the transform to apply to the score.
One of 'NONE,' 'SOFTMAX,' 'LOGISTIC,' 'SOFTMAX_ZERO,' or 'PROBIT.'The class score for each class, for each point, a tensor of shape [N,E].The output type will be a tensor of strings or integers, depending on which of the the classlabels_* attributes is used.Node id for each node. Ids may restart at zero for each tree, but it not required to.Thresholds to do the splitting on for each node.Popularity of each node, used for performance and may be omitted.The node kind, that is, the comparison to make at the node. There is no comparison to make at a leaf node.
One of 'BRANCH_LEQ', 'BRANCH_LT', 'BRANCH_GTE', 'BRANCH_GT', 'BRANCH_EQ', 'BRANCH_NEQ', 'LEAF'Child node if expression is true.Child node if expression is false.For each node, define what to do in the presence of a missing value: if a value is missing (NaN), use the 'true' or 'false' branch based on the value in this array.
This attribute may be left undefined, and the defalt value is false (0) for all nodes.The id of the tree that this node is in.node id that this weight is for.The index of the class list that each weight is for.The weight for the class in class_id.Indicates the transform to apply to the score.
One of 'NONE,' 'SOFTMAX,' 'LOGISTIC,' 'SOFTMAX_ZERO,' or 'PROBIT.'Base values for classification, added to final class score; the size must be the same as the classes or can be left unassigned (assumed 0)Node id for each node. Node ids must restart at zero for each tree and increase sequentially.Child node if expression is trueChild node if expression is falseFor each node, define what to do in the presence of a NaN: use the 'true' (if the attribute value is 1) or 'false' (if the attribute value is 0) branch based on the value in this array.
This attribute may be left undefined and the defalt value is false (0) for all nodes.The id of the tree that each node is in.The index of the target that each weight is forDefines how to aggregate leaf values within a target.
One of 'AVERAGE,' 'SUM,' 'MIN,' 'MAX.'The output will be a sequence of string or integer maps to float.The keys when using string keys.
One and only one of the 'classlabels_*' attributes must be defined.The keys when using int keys.
One and only one of the 'classlabels_*' attributes must be defined.Input's shape should be 1D or 2D*ZN4onnx11GetOpSchemaINS_19CastMap_OnnxML_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_26CategoryMapper_OnnxML_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_26DictVectorizer_OnnxML_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_24LabelEncoder_OnnxML_ver2EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_28LinearClassifier_OnnxML_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_25SVMClassifier_OnnxML_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_34TreeEnsembleClassifier_OnnxML_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_*ZN4onnx11GetOpSchemaINS_18ZipMap_OnnxML_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_Input data.A list of labels.The input type must be a tensor of integers or strings, of any shape.The output type will be a tensor of strings or integers, and will have the same shape as the input./onnxruntime_src/cmake/external/onnx/onnx/defs/traditionalml/old.cc*ZN4onnx11GetOpSchemaINS_24LabelEncoder_OnnxML_ver1EEENS_8OpSchemaEvEUlRNS_16InferenceContextEE_, node name: (op_type: is out of boundsopaque_typesparse_tensor_typeNOT_SET) vs ( inferred=type case mismatch. existing= does not contain a graph.Shape inference error(s): inputs but Graph has were providedSfff-@Inferred elem type differs from existing elem type: (Inferred shape and existing shape differ in rank: (Inferred shape and existing shape differ in dimension type case unsupported. existing=GraphProto attribute inferencing is not enabled in this InferenceContextImpl instance.Warning: Shape inference does not support models with experimental operators: Warning: Unsupported operator . No schema registered for this operator.N4onnx15shape_inference19GraphInferencerImplEN4onnx15shape_inference20InferenceContextImplEFunc_Input for function node Output for function node onnx.AttributeProtoonnx.ValueInfoProtoonnx.NodeProtoonnx.TrainingInfoProtoonnx.ModelProtoonnx.StringStringEntryProtoonnx.TensorAnnotationonnx.GraphProtoonnx.TensorProto.Segmentonnx.TensorProtoonnx.SparseTensorProtoonnx.TensorShapeProtoonnx.TypeProto.Tensoronnx.TypeProto.Sequenceonnx.TypeProto.Maponnx.TypeProto.SparseTensoronnx.TypeProto.Opaqueonnx.TypeProtoonnx.OperatorSetIdProtoonnx.TensorShapeProto.Dimension/build/Release/external/onnx/onnx/onnx-ml.pb.cc0L`L0L0LpLL0LLPLN|NNN|N|NN|N|Nppp@dĭܬ|$tLHȸ8дhؾ(XH``Ph0h0@,tuVVuVuVW@WuVV@VIR_VERSIONIR_VERSION_2017_10_10IR_VERSION_2017_10_30IR_VERSION_2017_11_3IR_VERSION_2019_1_22IR_VERSION_2019_3_18IR_VERSION_2019_9_19_START_VERSIONDEFAULTEXTERNAL   BFLOAT16BOOLCOMPLEX128COMPLEX64DOUBLEFLOATFLOAT16INT16INT32INT64INT8STRINGUINT16UINT32UINT64UINT8UNDEFINED   FLOATFLOATSGRAPHGRAPHSINTINTSSPARSE_TENSORSPARSE_TENSORSSTRINGSTRINGSTENSORTENSORSUNDEFINED   N4onnx14AttributeProtoEN4onnx14ValueInfoProtoEN4onnx9NodeProtoEN4onnx17TrainingInfoProtoEN4onnx10ModelProtoEN4onnx22StringStringEntryProtoEN4onnx16TensorAnnotationEN4onnx10GraphProtoEN4onnx19TensorProto_SegmentEN4onnx11TensorProtoEN4onnx17SparseTensorProtoEN4onnx26TensorShapeProto_DimensionEN4onnx16TensorShapeProtoEN4onnx16TypeProto_TensorEN4onnx18TypeProto_SequenceEN4onnx13TypeProto_MapEN4onnx22TypeProto_SparseTensorEN4onnx16TypeProto_OpaqueEN4onnx9TypeProtoEN4onnx18OperatorSetIdProtoEN6google8protobuf8internal29InternalMetadataWithArenaBaseISsNS1_29InternalMetadataWithArenaLiteEE9ContainerEonnx.FunctionProtoonnx.OperatorProtoonnx.OperatorSetProto/build/Release/external/onnx/onnx/onnx-operators-ml.pb.ccH0؛h(h(h(ȟEXPERIMENTALSTABLEN4onnx13FunctionProtoEN4onnx13OperatorProtoEN4onnx16OperatorSetProtoEonnx.SequenceProtoonnx.MapProto/build/Release/external/onnx/onnx/onnx-data.pb.ccPt MAPSEQUENCESPARSE_TENSORTENSORUNDEFINEDN4onnx13SequenceProtoEN4onnx8MapProtoE/onnxruntime_src/cmake/external/protobuf/src/google/protobuf/arena.ccCHECK failed: (min_bytes) <= (std::numeric_limits::max() - kBlockHeaderSize): /onnxruntime_src/cmake/external/protobuf/src/google/protobuf/generated_message_util.ccCHECK failed: (scc->visit_status.load(std::memory_order_relaxed)) == (SCCInfoBase::kRunning): Not implemented field number with type t D|$\ D|,"",TDt4d""L4D !$ T$"4""|t $ $ < DL""l,d <t\<""4S|SLSSRRQ|QDQ QP\P,PO4ON NTMdTdTLlLKKK4KJdJ,>=L==l<;dTdT,;:L:98<87\7666666l54|43D3dTdT,32L2211L100|0D0//l/= (0): /onnxruntime_src/cmake/external/protobuf/src/google/protobuf/io/zero_copy_stream_impl.ccCan't BackUp() after failed Next().CHECK failed: !is_closed_: close() failed: N6google8protobuf2io19CopyingOutputStreamEN6google8protobuf2io15FileInputStream22CopyingFileInputStreamEN6google8protobuf2io15FileInputStreamEN6google8protobuf2io16FileOutputStream23CopyingFileOutputStreamEN6google8protobuf2io16FileOutputStreamEN6google8protobuf2io18IstreamInputStream25CopyingIstreamInputStreamEN6google8protobuf2io18IstreamInputStreamEN6google8protobuf2io19OstreamOutputStream26CopyingOstreamOutputStreamEN6google8protobuf2io19OstreamOutputStreamEN6google8protobuf2io24ConcatenatingInputStreamE/onnxruntime_src/cmake/external/protobuf/src/google/protobuf/io/zero_copy_stream_impl_lite.ccCHECK failed: (last_returned_size_) > (0): BackUp() can only be called after a successful Next().CHECK failed: (count) <= (last_returned_size_): CHECK failed: (count) >= (0): CHECK failed: target_ != NULL: CHECK failed: (buffer_used_) == (buffer_size_): BackUp() can only be called after Next().CHECK failed: (count) <= (buffer_used_): Can't back up over more bytes than were returned by the last call to Next().CHECK failed: backup_bytes_ == 0 && buffer_.get() != NULL: Parameter to BackUp() can't be negative.CHECK failed: (count) <= (target_->size()): Cannot allocate buffer larger than kint32max for CHECK failed: (backup_bytes_) == (0): StringOutputStream.N6google8protobuf2io16ArrayInputStreamEN6google8protobuf2io17ArrayOutputStreamEN6google8protobuf2io18StringOutputStreamEN6google8protobuf2io18CopyingInputStreamEN6google8protobuf2io25CopyingInputStreamAdaptorEN6google8protobuf2io26CopyingOutputStreamAdaptorEN6google8protobuf2io19LimitingInputStreamE(cannot determine missing fields for lite message)" because it is missing required fields: /onnxruntime_src/cmake/external/protobuf/src/google/protobuf/message_lite.cc exceeded maximum protobuf size of 2GB: CHECK failed: (byte_size_before_serialization) == (byte_size_after_serialization): was modified concurrently during serialization.CHECK failed: (bytes_produced_by_serialization) == (byte_size_before_serialization): Byte size calculation and serialization were inconsistent. This may indicate a bug in protocol buffers or it may be caused by concurrent modification of This shouldn't be called if all the sizes are equal.MessageLite at 0xCan't parse message of type "N6google8protobuf11MessageLiteEN6google8protobuf24ZeroCopyCodedInputStreamEwnC=ĻparsingCan't happen/onnxruntime_src/cmake/external/protobuf/src/google/protobuf/parse_context.h @ [libprotobuf %s %s:%d] %s %d.%d.%d%c%g%p%lld%llu".)INFOWARNINGFATAL/onnxruntime_src/cmake/external/protobuf/src/google/protobuf/stubs/common.ccThis program requires version of the Protocol Buffer runtime library, but the installed version is . Please update your library. If you compiled the program yourself, make sure that your headers are from the same version of Protocol Buffers as your link-time library. (Version verification failed in "This program was compiled against version of the Protocol Buffer runtime library, which is not compatible with the installed version (). Contact the program author for an update. If you compiled the program yourself, make sure that your headers are from the same version of Protocol Buffers as your link-time library. (Version verification failed in "N6google8protobuf14FatalExceptionEN6google8protobuf7ClosureEN6google8protobuf8internal16FunctionClosure0E, lo=/onnxruntime_src/cmake/external/protobuf/src/google/protobuf/stubs/int128.ccDivision or mod by zero: dividend.hi=CANCELLEDUNKNOWNDEADLINE_EXCEEDEDNOT_FOUNDALREADY_EXISTSPERMISSION_DENIEDUNAUTHENTICATEDRESOURCE_EXHAUSTEDFAILED_PRECONDITIONABORTEDOUT_OF_RANGEUNIMPLEMENTEDINTERNALUNAVAILABLEDATA_LOSS(HhHh)Uk1?basic_string::eraseCHECK failed: dest: \x%02x\%03oCHECK failed: i >= 0: 0123456789abcdefnullptr output boolean given.%.*gCHECK failed: s != nullptr: Logic problem? szsrc = %.1fCHECK failed: (size) <= (6): /onnxruntime_src/cmake/external/protobuf/src/google/protobuf/stubs/strutil.ccCHECK failed: result != nullptr: FastHexToBuffer() wants non-negative integers, not CHECK failed: value != nullptr: This can't happen; base64 decoder state = CHECK failed: (temp[0]) == ('1'): CHECK failed: (temp[size - 1]) == ('5'): 000000000000000000000000000000000 0000000000000000000000000000000000000000000P000@00000 0000000000000000P0123456789abcdefABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/>456789:;<= ? !"#$%&'()*+,-./0123>?456789:;<=  !"#$%&'()*+,-./012300010203040506070809101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899?@dhdddddHg(hhffi  /onnxruntime_src/cmake/external/protobuf/src/google/protobuf/wire_format_lite.ccCHECK failed: (value.size()) <= (kint32max): buffer. Use the 'bytes' type if you intend to send raw '%s'String field contains invalid UTF-8 data when a protocol bytes. serializingN6google8protobuf8internal12FieldSkipperEN6google8protobuf8internal29CodedOutputStreamFieldSkipperEMultiple extension registrations for type "/onnxruntime_src/cmake/external/protobuf/src/google/protobuf/extension_set.ccCHECK failed: (type) != (WireFormatLite::TYPE_ENUM): CHECK failed: (type) != (WireFormatLite::TYPE_MESSAGE): CHECK failed: (type) != (WireFormatLite::TYPE_GROUP): CHECK failed: (type) == (WireFormatLite::TYPE_ENUM): CHECK failed: type == WireFormatLite::TYPE_MESSAGE || type == WireFormatLite::TYPE_GROUP: Non-primitive types can't be packed.Don't lookup extension types if they aren't present (1). Don't lookup extension types if they aren't present (2). CHECK failed: extension != NULL: Index out-of-bounds (field is empty).Invalid message set extension./onnxruntime_src/cmake/external/protobuf/src/google/protobuf/extension_set_inl.h", field number can't reach here.Can't get here.Extension not found.ޘ4LHQ˜H HX< ,P,mSp Kp)<؞*pddddddddt80XУ Ⱥ 0H`xȺp)ZP/C5G"xuA|[O3333S =(Pp0 l >  X     f 8 mzs <  ^ | l,l<$T$K! /! zzzzoF j-/$/
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T BEB E(A0D8G; 8D0A(B BBBF <,;(}BBG A(G@ (A ABBB Ll;}jBBE B(D0D8G`, 8D0A(B BBBE ;AO4$;[S BDA GP  DABD <po.K^,<%,;0,fS AGG XCA,;00:S ADG _CA;0$S D_<@<8<0 =(,l< ,R AGG XCAT= l==r<x#R D^== $4=xQ AM@F AA <\=Q BBI A(DP (A ABBA L=p`Q BBB I(H0A8DP 8A0A(B BBBH 4=Q BID D0]  AABA L>BBB E(A0A8DP< 8A0A(B BBBA ,?x"DN N ALL?BRB E(A0A8D`  8A0A(B BBBE 4>8P BAD GPo  CABE 4?P BAD GPo  CABE  @k.K^$@<@/D jT@?-O Hd@A\@@@@ A$A   J ADGz AAA 4XJfBM ADG AAA ,,YMGM ADGe AAA T\Y0M- M BIB B(A0A8D 8A0A(B BBBF <lZWBEE A(D@M (A ABBA LYhWN BEB E(I0H8D@ 8D0A(B BBBD LDZX:M BJE B(A0A8D@ 8A0A(B BBBA LL[YBBE B(A0A8D` 8A0A(B BBBA LZZwM BEB E(I0H8D@ 8D0A(B BBBD L4[(\OM BJE B(A0A8D`8A0A(B BBBD[\nM BBB A(C0K@ 0A(A BBBA l[_L BBE B(D0I8D& 8D0A(B BBBA } 8D0A(B BBBA L<\PbL BBH E(D0D8D` 8D0A(B BBBF T\hL BEB B(A0A8Jq 8A0A(B BBBA T\8q L BBE B(D0D8J  8D0A(B BBBJ T<]~g?M BBB E(D0I8D 8D0A(B BBBA T]耆 L BBB B(D0A8J 8A0A(B BBBA <]@M ACG`I AAJ  AAG ^Ѝ^ȍ_,_ȍD_Ѝ\_؍t_0An_>A|_-L_(AAG ] CAF k ACA R CAJ JCAL`hAAG ] CAF k ACA R CAJ JCAl`}DN E A`-AG cA`-AG cAL`AAG ] CAF [ ACA R CAJ JCALa؎AAG ] CAF c CAI R CAJ JCA,labD\ H P H Q G ILaXAAG ] CAF [ ACA R CAJ JCAa[LLaЏrI BBB B(E0A8J@ 8A0A(B BBBA <aI BBA A(D@(A ABBbUASb-Lb;I BEE E(A0D8G 8D0A(B BBBC c<|bP+I AAG0M DAE K DAA <bpH BED A(G@| (A ABBA DbИH BAA G0c  DABK k  DABA DcXSBBB D(A0D@ 0A(A BBBA LcpfNH BBB B(A0D8GP^ 8A0A(B BBBD Lc2H BBB B(A0A8GP 8A0A(B BBBB L,dG BBB B(A0A8GPd 8A0A(B BBBA 4eLe8{de|e(esLeBBB B(A0D8MP 8A0A(B BBBH 4DeF BFA K0  AABA 4fpLfhASlfh-AG cALexOF BFB E(A0A8GP 8A0A(B BBBH fȤ2Al$f褆_AAG LDADlf E BEE A(C0G@n 0A(A BBBC Lf襆E BBB H(D0M2 0D(A BBBD LgE BBB H(D0M2 0D(A BBBD LTgh E BBB H(D0M2 0D(A BBBD Lg( E BBB H(D0M2 0D(A BBBD 4g謆oE SGB A(A0D\,h9OE BBB A(A0J 0A(A BBBE s 0A(A BBBE Dh&E BBB A(A0J 0A(A BBBA <h貆 E BBA D(Jz (D ABBJ diBEB B(A0A8D@{ 8A0A(B BBBJ D 8A0A(B BBBA <|i %D BEA D(G (D ABBA LiD BEE E(A0C8J 8A0A(B BBBB d jD BEB B(A0A8D@ 8A0A(B BBBJ D 8A0A(B BBBA <tj8Z/D BDA z ABL A ABA LjX C BEB B(A0A8GP 8A0A(B HBBH kBkPBLk>BBB B(A0D8MPd 8A0A(B BBBA  BEE A(A0G 0A(A BBBA qP< rHBEB D(A0M (A BBBF 4LrZBDA y ABM A ABA 4ruBEA A(D@a(A ABB$r8fAAK0VAAD,r= BGB A(A0K@ 0A(A BBBA <,sOBBD A(D@;(A ABB$ls(iAAG0]AA4spBFD A(D@(A ABBds;BLB B(A0A8D`q 8A0A(B BBBE S 8A0A(B BBBK L|s< BBE B(H0D8M 8D0A(B BBBH Lt@MBBB B(A0D8Dp18A0A(B BBBLt@BBB B(A0A8Gp8A0A(B BBBL$uPBBL B(A0A8DP 8A0A(B BBBA LtuXBBB L(A0A8DP 8A0A(B BBBA T u; BBE J(A0A8Gi 8D0A(B BBBF LduH; BJB A(A0W (A BBDH ^(A BBBTu: BBB B(A0A8G 8A0A(B BBBA L v: BJB A(A0W (A BBDH ^(A BBB4w`uBEA A(D@a(A ABBLwALlwAAK sAwIAK {A$wVADD JAA,w@T9 BGA FAB,xpvBDA kAB$4xVADD JAAL\x)BEB B(A0A8D` 8A0A(B BBBA <xBHB D(A0(A BBB4xXBEA A(D@o(A ABB<$yBEE A(D0(A BBB4dy0BEA D(D0(A ABBDx7 BBB A(D0D@ 0A(A BBBA yp"DN N ADzBBB B(A0A8D`8A0A(B BBBLyH '7 BBE E(A0I8Dp> 8D0A(B BBBI ,ye7 AID l DAA Dz{7 BBB D(A0& (A BBBA D\z g7 BJB A(A0Gp 0A(A BBBA <\{BEB A(A0 (A BBBA 4{hBEA A(D@|(A ABB<{BEA A(D0o (A ABBA L|`BBB B(A0A8Gp8A0A(B BBB,{z06 AAG c AAB 4|0BEA A(D@o(A ABBL|BBB B(A0D8D`O 8A0A(B BBBF Td||5 BBD D(D@% (D ABBB ] (D ABBJ <|zC5 BBG A(G`k (D ABBI ,}vBAA i ABA 4}@~BEA A(D@j(A ABBL~BEB A(D0 (A BBBB O (A BBBJ ,l~HADD ] DAE <~BBD I(D0m (D ABBE <~ BBG A(G@ (A ABBG Ld~ 3 BEE E(D0A8G 8A0A(B BBBF L~8$3 BEB E(I0H8DP 8D0A(B BBBD 4%s3 BFD D0  DABA <&BBG A(G@ (A ABBG \4P'BBE B(A0D8D@g 8D0A(B BBBH D8C0A(B BBBT'2 BGB D(A0z (A BBDE H (A BBGA L4((a2 BBB B(A0D8Kp 8A0A(B BBBA \<H)BBE B(A0D8D@g 8D0A(B BBBH D8C0A(B BBBL) 1 BBL B(D0A8G 8A0A(B BBBA L4(6s w2 BBB E(D0D8J  8D0A(B BBBI D<XABBB B(A0G8G`c8D0A(B BBB<́A2 BLD D(G0 (A ABBE 4 `B=2 BFD D0  DABF <DhC{2 BED I(K@` (D ABBH TD[2 BBB B(A0D8J 8A0A(B BBBG <܂@G#2 BLD D(G0 (A ABBE <H2 BED I(KPc (D ABBE d\H1 BJE B(A0A8D@u 8F0A(B BBBC ^8F0A(B BBBL|(IBBB E(A0A8G  8A0A(B BBBF ̄LALT4L=1 BEB E(A0D8J 6 8D0A(B BBBH TSw1 BHE E(A0A8G 8D0A(B BBBG TUwc1 BBD A(GpO (D ABBH  (D ABBA  W1AK cAL\@W1 BEB E(I0H8D@ 8D0A(B BBBD LX0 BJE B(A0A8D`8A0A(B BBBTPY>0 BFE E(D0D8G 8D0A(B BBBJ TT8]0 BBB B(D0D8GT 8D0A(B BBBH DdbBBE A(A0D@` 0A(A BBBA L8co0 BEB E(I0H8D@ 8D0A(B BBBD LDd*G0 BJE B(A0A8D@ 8A0A(B BBBA LeW 0 BEB B(A0D8Oe 8D0A(B BBBG 4qhBEA A(G@Q(A ABB\ԈqBBD A(D@V (A ABBG Y (A ABBA a (A ABBI T|@r0 BBE B(A0D8J 8A0A(B BBBG #.K^ 腇%HX܉-H`%HX-H`T( F0 BBB J(D0A8K 8A0A(B BBBA T܉ 0 BJB B(D0D8N 8A0A(B BBBA T4( 0 BBB B(D0A8N 8A0A(B BBBA TW1 BBB B(A0D8G 8A0A(B BBBD (AL<(1 BEA D(G (D ABBD جzAD sALd80 BBE B(H0G8J! 8D0A(B BBBG 41 BDD L@]  DABA L1 BBE L(D0A8D 8D0A(B BBBI 4<p‡1 BDA LPz  DABA TtÇp1 BEB L(D0A8Gi 8D0A(B BBBI ŤŇ S1 BEB B(D0A8G 8D0A(B BBBE L$ЇG1 BBB B(A0D8J% 8D0A(B BBBD ,D\xtp hpxԎ%HX$-H`D%HXd-H`%HX-H`ď%HX-H`-,(0AF FK D $L(^AG b AA L` [0 BVB D(A0D3 0D(A BBBG T 50 BGB B(A0D8G 8D0A(B BBBH Ldx`>0 BLB E(A0A8Gp 8D0A(B BBBA L`0 BLB E(A0A8Gp 8D0A(B BBBA L`/ BLB E(A0A8Gp 8D0A(B BBBA , ADD0e AAA ,<AAG0M AAH 4W/ BAA G0c  AABF T #/ BBE E(A0A8G 8D0A(B BBBA LDXE. BBB B(A0A8G 8E0A(B BBBF ,X\. ADG l AAA TĒ. AAG@r AAC G AAG y AAE ] AAA L=. BBB B(D0A8DP 8D0A(B BBBA Tl4A. BBE E(K0A8G 8D0A(B BBBG <ē5T. NAG JH  CAA <5P. KAG MH  CAA tDL. BBB A(A0De 0A(A BBBG H 0A(A BBBH ( 0A(A BBFA tLԔ- BBB B(A0A8Gi 8A0A(B BBBD L$h - BBB B(D0A8GA{ 8A0A(B BBBG <,*7BBA A(G0\ (A ABBA dl+BBB E(D0D8Gp 8A0A(B BBBD f 8A0A(B BBBA Ԗ`.y\ \d.TBIB I(D0H8G 8A0A(B BBBJ Q 8A0A(B BBGH dT0BBE F(A0H8GP 8C0A(B BBBD  8F0A(B BBBE dx2@ 9. 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BBB B(A0A8GP 8G0A(B BBBP ^ 8A0A(B BBBH TD8Ex BEB B(A0A8G 8A0A(B BBBI T00 BEH B(A0F8I 8D0A(B BBBH T5 BGB B(A0A8J 8A0A(B BBBG TL09v BGB B(A0A8J 8A0A(B BBBG T<> BGB B(A0A8J 8A0A(B BBBG .K^̯(@ @,D(@[ AID t DAA TtX@< BBE B(D0A8G 8D0A(B BBBB , Y-AAG0!AADEYT BIA D(D (D ABBA TD(H3 BDB B(A0G8J 8D0A(B BBBB Tp.K^lVV,V[ AID t DAA ̱X\AG RA,,Y-AAG0!AA<dVC BIA D(Dp- (D ABBF T(Y BDB B(A0D8J  8A0A(B BBBA @.K^̲Hn@n8n0n,8nD@n,Hn[ AID t DAA ,Բxn[ AID t DAA ,n[ AID t DAA ,ZX-AAG0!AA4dn5= BHD D`  DABG 4q5 BHD D`  DABG 4Գt5 BHD D`  DABG T w BDH B(A0D8Gl 8D0A(B BBBA TdH| BDH B(A0D8Gd 8D0A(B BBBA TЀ[ BDH B(A0D8Gd 8D0A(B BBBA ̵X .K^@8,\@[O AID t DAA ,p[/ AID t DAA ,tW-AAG0!AA<p" BHD G  DABA <,`) BHD G  DABA DlP BBE A(H0D 0A(A BBBA <b BBA D(K (A ABBA L葜 BBE E(A0D8Gx 8A0A(B BBBD TD BDB B(D0A8M5 8D0A(B BBBB T .K^lزвȲв̸U\AG RAD4 BBB A(I0Dp 0D(A BBBG D|0 BBB A(I0Dp 0D(A BBBG Dĸ BBB A(I0Dp 0D(A BBBG D  } BBB A(I0Dp 0D(A BBBG DTW BBB A(I0Dp 0D(A BBBG D1 BBB A(I0Dp 0D(A BBBG D  BBB A(I0Dp 0D(A BBBG D, BBB A(I0Dp 0D(A BBBG ,,S-AAG0!AA4H5 BHD D`  DABG 4ܺP5q BHD D`  DABG 4XĜBS BHD D`  DABH 4LpǜB5 BHD D`  DABH 4ʜE BHD D`  DABK 4͜E BHD D`  DABK 4МE BHD D`  DABD 4,ӜE BHD D`  DABD Td֜G BBB G(D0A8M 8D0A(B BBBH TܜG BBB G(D0A8M 8D0A(B BBBH ̽.K^-AkTL  BBE B(A0H8G 8A0A(B BBBD \X.K^Dt8BBB B(A0A8 0A(B BBBA Dx8BBB B(A0A8 0A(B BBBA DpBBBB B(A0A8 0A(B BBBA DLxBBBB B(A0A8 0A(B BBBA xĿpܿh` h$p<xLTAAG e CAF S ACA R CAJ JCALADD e CAF [ ACI R CAJ JCALpADD e CAF [ ACI R CAJ JCALDAAG e CAF S ACA R CAJ JCAL`ADD e CAF [ ACI R CAJ JCALADD e CAF [ ACI R CAJ JCAL4`AAG e CAF S ACA R CAJ JCALADD e CAF [ ACI R CAJ JCALPADD e CAF [ ACI R CAJ JCAL$AAG e CAF S ACA R CAJ JCALt@ADD e CAF [ ACI R CAJ JCALADD e CAF [ ACI R CAJ JCA4@BEA A(X  ABBJ 4LBEA A(X  ABBJ ,BDA  ABD ,BDA z ABD <,q BBA A(D0[ (A ABBA TlT BBB B(A0D8N/ 8A0A(B BBBA ,h>y AID W DAA LxYY BBB E(A0A8N 8A0A(B BBBK ,D>> AID W DAA Ttr BEL B(D0A8G5 8A0A(B BBBA ,Z7 BHI s ABA ,> AID W DAA ,,Z BHI s ABA ,\0> AID W DAA ,DH-AAG0!AA4 BHD D`  DABD 4 i BHD D`  DABD 4, K BHD D`  DABE 4dx- BHD D`  DABE TZ BEE E(D0A8Gk 8D0A(B BBBK T| BEB E(A0D8JR 8D0A(B BBBD DL # BFD JPs  DABH F  DABA T# BGA D(J` (D ABBF x (D ABBG L$ BBB B(A0D8Jp 8D0A(B BBBF T< & BBE B(D0G8G 8A0A(B BBBB Th+Y BBE B(D0G8G 8A0A(B BBBB L0/- BBB B(A0D8M 8D0A(B BBBB <6BDA k ABK @ ABA L46QBBB B(A0A8D 8A0A(B BBBH L:QBBB B(A0A8D 8A0A(B BBBH L?fBBB B(A0A8GM 8A0A(B BBBH L$ CfBBB B(A0A8GM 8A0A(B BBBH t@GDHBHB B(A0A8DP8A0A(B BBBIDXKBHB B(A0A8DP8A0A(B BBB,4 LREKH  ABA DdPMBEE B(A0A8DP8A0A(B BBB,NREKH  ABA DHOBEE B(A0A8DP8A0A(B BBB,$PEG AE o AH DTQBHE E(D0A8DP8A0A(B BBBLxQ=BHE E(A0A8D@8A0A(B BBBLhSBBB B(A0A8GO 8A0A(B BBBA ,<XEG AE o AH DlYBHE E(D0A8DP8A0A(B BBBLZMBHE E(A0A8D@(8A0A(B BBBL\BBB B(A0A8GO 8A0A(B BBBA <TPaFDK  ABB w ABF L0bBHE E(D0A8DP 8A0A(B BBBK Lb@BHE E(A0A8D@ 8A0A(B BBBA L4dBBB B(A0A8Gl 8A0A(B BBBA <jFDK  ABB w ABF LjBHE E(D0A8DP 8A0A(B BBBK L`k@BHE E(A0A8D@ 8A0A(B BBBA LdPmBBB B(A0A8Gl 8A0A(B BBBA 0.K^rrrr,xrDpr\xrtrrr,r[ AID t DAA ,4r[` AID t DAA ,dr[@ AID t DAA ,(s[ AID t DAA ,Xs[ AID t DAA ,<-AAG0!AA4$Xs5 BHD D`  DABG 4\`v5 BHD D`  DABG 4hy5t BHD D`  DABG 4p|5V BHD D`  DABG 4x58 BHD D`  DABG T< BEE E(D0A8G* 8D0A(B BBBD T BDB B(A0D8G& 8A0A(B BBBA T  BDE H(A0A8G$ 8D0A(B BBBA TDȖ BDE H(A0A8G, 8D0A(B BBBA T  BDE H(A0A8G$ 8D0A(B BBBA Tئ+ BDE H(A0A8G$ 8D0A(B BBBA .K^x4pDxb BBB A(D0Kp 0A(A BBBJ ,> AID W DAA ,9-AAG0!AA4<5 BHD D`  DABG Lto BBE B(F0G8G 8D0A(B BBBI |.K^,0AF FK D T<|S BBE E(D0A8G 8D0A(B BBBE T(|9 BBE E(D0A8G 8D0A(B BBBE TPĝE  BBB E(A0A8N 8A0A(B BBBA ,DHΝ> AID W DAA ,,8-AAG0!AA<(ΝpU BHD G  DABA TXҝF BBE B(D0A8G 8D0A(B BBBG L< ם/ BBB B(D0F8Gb 8A0A(B BBBK Tٝk7 BBB B(A0F8J` 8A0A(B BBBE LޝK BBB B(D0F8Gb 8A0A(B BBBK T48 S BBB B(A0F8JD 8A0A(B BBBI Tg BBH E(F0A8G? 8D0A(B BBBE T BBB E(F0A8J> 8A0A(B BBBD T< BBB B(F0D8Gv 8A0A(B BBBG TH BBB B(D0F8Jy 8A0A(B BBBA T[ BBB G(A0D8M 8D0A(B BBBB x.K^DBBE A(A0D@ 0A(A BBBA D\BBE A(A0D@  0A(A BBBA ,@5-AAG0!AA< ` BHD G  DABA T\@  BBB E(A0G8L@ 8D0A(B BBBA < BLD D(G0 (A ABBE <* BED I(KPc (D ABBE <4 BLD D(G0 (A ABBE <th* BED I(KP_ (D ABBI TX- BBM B(A0D8G 8A0A(B BBBD , 0->K AID W DAA .K^ (-0Hg,8-7HjLX-0Hglh-7Hj-0Hg-7HjD-BBE A(A0D@g 0A(A BBBA D@.BBE A(A0D@g 0A(A BBBA D\.BBE A(A0D@g 0A(A BBBA DP/BBE A(A0D@o 0A(A BBBA D/BBE A(A0D@o 0A(A BBBA D40BBE A(A0D@o 0A(A BBBA ,|1-AAG0!AA<0Us BIA D(Dp  (D ABBI <44UM BIA D(Dp  (D ABBI <t(7U' BIA D(Dp  (D ABBI <H:U BIA D(Dp  (D ABBI <h=U BIA D(Dp  (D ABBI <4@U BIA D(Dp  (D ABBI LtC BBJ B(A0A8G 8D0A(B BBBD LFz BBJ B(A0A8G 8D0A(B BBBD LhHe BBJ B(A0A8G 8D0A(B BBBD LdJP BBB B(A0I8G 8D0A(B BBBD LM; BBB B(A0I8G 8D0A(B BBBD LhO& BBB B(A0I8G 8D0A(B BBBD TTQ BBE B(A0F8M9 8D0A(B BBBA T0V7 BBE B(A0F8M0 8D0A(B BBBA TZq[ BBG B(A0A8J 8A0A(B BBBA T\_v BBB E(A0A8L 8A0A(B BBBK Tdm BBB E(A0A8L 8A0A(B BBBD T j} BBB B(D0A8L 8A0A(B BBBG ـ.K^4o0HgT o7HjT@o BBB J(A0A8G? 8D0A(B BBBK Tr BEE E(D0A8G 8D0A(B BBBH Tl0xh BBE B(D0A8G 8D0A(B BBBG ,|+-AAG0!AA<| BHD Db  DABA T4Hc BBB B(F0A8G 8A0A(B BBBE D׀.K^\H>Hu|hEHx+\AG RATx  BBB B(D0A8N 8A0A(B BBBD ,\ >> AID W DAA ,D+-AAG0!AA< BHD DN  DABA T` BBE E(A0A8GV 8D0A(B BBBF TTȰ BBE B(D0A8GH 8D0A(B BBBD TS BBB G(D0A8M 8D0A(B BBBE xՀ.K^$ADD0AA$HADD0AA$$лADD0AA$LXADD0AA$t༞ADD0AA$hADD0AAD1BBE A(A0D@ 0A(A BBBA D 辞>BBB D(A0D@ 0A(A BBBA DT࿞FBBB D(A0D@ 0A(A BBBA DNBBB D(A0D@ 0A(A BBBA $^AG b AA LT(ž2 BGB B(A0K8U 8A0A(B BBBA <Þ BQA A(N` (A ABBA <Þ BQA A(N` (A ABBA <$XĞ BQA A(N` (A ABBA LdĞ2Y BGB B(A0K8U 8A0A(B BBBA <Ş! BQA A(N` (A ABBA <ƞ BQA A(N` (A ABBA $(ǞAAG0AA<\Ǟ BHA JI  DABA <ʞ BHA JI  DABA <P͞ BHA JI  DABA < Оp BHA JI  DABA <\Ҟa BHA JI  DABA <՞R BHA JI  DABA <؞C BHA JI  DABA <`۞44 BHA Ju  DABA D`ޞBBE A(A0D@l 0A(A BBBA $\ޞiAAG0]AA$@ߞqAAG0eAADߞBBE A(A0D@l 0A(A BBBA $0|AAG0pAAiAG _A<qAG gA$\8AAG0xAAT BEJ E(D0D8G 8D0A(B BBBG T$hMp BBB I(A0A8JN 8A0A(B BBBA ,|`> AID W DAA \dpBBE B(A0D8D@g 8D0A(B BBBH D8C0A(B BBBL  BBB E(A0G8I[ 8D0A(B BBBA <\ BGB D(A0~ (A BBBK T0M  BBB M(A0D8Gg 8A0A(B BBBA ,(>; AID W DAA T$8 BBB E(A0H8K 8A0A(B BBBA ,|>A AID W DAA T# BBB E(I0A8K} 8D0A(B BBBF T(  BBB B(A0H8JH 8A0A(B BBBA ,\ >" AID W DAA L  BEB E(I0H8DP 8D0A(B BBBD L BEB E(I0H8D@ 8D0A(B BBBA T,@' BBB I(A0A8J 8A0A(B BBBA ,> AID W DAA T( BBB E(I0A8K} 8D0A(B BBBF T `= BBB B(A0D8N 8A0A(B BBBA ,dH!> AID W DAA LX! 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H Q G I,4ebD\ H P H Q G I,debD\ H P H Q G I,0fbD\ H P H Q G I,pfbD\ H P H Q G I,fbD\ H P H Q G I4lfgRBAD D ABA \(gmA~ A l<xgBBD A(G@a (A ABBA 4(h~BAD D ABA T<phӵBZB J(A0A8G) 8A0A(B BBBD LX۵BBB B(A0A8DW 8D0A(B BBBF ,m_AAG o DAA ,m_AAG o DAA ,DnekADG r DAA TthWBBB B(A0A8Gw 8A0A(B BBBF TOBBB B(A0A8G 8A0A(B BBBG T$;BBB B(A0A8G 8A0A(B BBBG T|`BBB B(A0A8G 8A0A(B BBBG Tli5BBB B(A0D8G K 8A0A(B BBBG `{.K^,DH6ADG T AAA 4t}BAD G ABA L  BLH B(D0D8D@ 8A0A(B BBBG 4},BKA G  DABA 44~ BKA G  DABA Tl@BBB J(A0A8G 8D0A(B BBBD 4׷BKA G  DABA 4BKA G  DABA <4xBAD GS  DABA Tt؅hkBBE B(A0A8G> 8D0A(B BBBA <SBAD GS  DABA < P(BAD GS  DABA <LBAD GS  DABA <ҶBAD GS  DABA <pBAD GS  DABA < Џ|BAD G{  DABA <L`PBAD G{  DABA <$BAD G  DABA <BAD G{  DABA D 0'̵BBA D(G (D ABBA <TBAD GS  DABA <xnBAD GS  DABA <ؚCBAD GS  DABA <8BAI G  DABA <TBAD G  DABA <ƴBAD GS  DABA <BAD G  DABA TȢoBIE B(A0A8G 8D0A(B BBBG Tl@[BIE B(A0A8G 8D0A(B BBBG 4GBKA G  DABA 4&BKA G  DABA T4hBBB E(A0A8G 8D0A(B BBBI 4BRA G  DABA 4ȭγBRA G  DABA 4BRA G  DABA <48BAD GS  DABA <taBAD GS  DABA <6BAI Gl  DABA <BAI G  DABA T4XRBBB J(A0A8G 8D0A(B BBBB <`BAD GS  DABA <BAD GS  DABA <  BAD GS  DABA <LbBAD GS  DABA <7BAD GS  DABA <@ BAD GS  DABA T BBJ B(A0A8G  8D0A(B BBBJ <dHױBAD GS  DABA <BAD GS  DABA <BAD GS  DABA <$hVBAD GS  DABA <d+BAD GS  DABA T(hBBE B(A0A8G> 8D0A(B BBBA T@hBBE B(A0A8G> 8D0A(B BBBA <TXӰBAI G4  DABA <BAI GJ  DABA <HMBAD G  DABA <XYBAD GS  DABA <T.BAI GL  DABA D8BBBA I(G (D ABBA T@R߯BBB J(A0A8G 8D0A(B BBBB D4 HӯBBA I(G (D ABBA L4 BLB B(A0A8D 8A0A(B BBBA  T (5CBBB B(A0A8Jv 8F0A(B BBBA d< iBDB B(A0A8L\ 8A0A(B BBBB  8A0A(B BBBI L tBDB J(A0A8Ib 8A0A(B BBBG T  BDA I(Dp (A ABBA U (A ABBE TL 0UBDB E(A0C8GR 8A0A(B BBBA D xHBDB A(I0F`K 0A(A BBBE T VBDA C(L`^ (A ABBF  (A ABBE TD V۰BDA C(L`^ (A ABBF  (A ABBE T VBDA C(L`^ (A ABBF  (A ABBE L iBDB B(A0A8O\ 8A0A(B BBBG LD iiBLB B(A0A8IZ 8A0A(B BBBG , -AALP DAJ T x. BBB B(A0D8Ju 8F0A(B BBBA ,@;EAALP DAD ,L;.AALP DAK T|;BBB B(K0A8G 8A0A(B BBBA 4,~BAD D ABA ,d(ZAMQ` AAA ,XvAMQp AAA ,bӶAMQP& AAA ,_۶AAG o DAA ,$_AAG o DAA ,THeADG r DAA ,_oAAG o DAA ,_KAAG o DAA ,_'AAG o DAA ,eADG r DAA TDXǶBZB B(I0A8G 8A0A(B BBBJ TBNB O(A0A8GT 8A0A(B BBBH T+BBB B(A0A8G 8A0A(B BBBG p{.K^4d@BKA G  DABA 4`BKA G  DABA 4BKA G  DABA 4 ݸBKA G  DABA 4DBRA G  DABA 4|@ BRA G  DABA 4 zBRA G  DABA T YBBB B(I0A8Gm 8D0A(B BBBA <D ,BAD GS  DABA THBBB B(D0A8G 8D0A(B BBBA <ϷBAD GS  DABA <PBAD GS  DABA <\yBAD GS  DABA <NBAD GS  DABA <p#BAD GS  DABA <BAD GS  DABA <\0ͶBAD GS  DABA <BAD GS  DABA <wBAI G  DABA <PBAD GS  DABA T\0 U%BIB E(A0A8Ga 8D0A(B BBBA T8"UBIB E(A0A8Ga 8D0A(B BBBA 4 @$õBKA G  DABA 4D%BKA G  DABA T|%tBBB B(D0A8G 8D0A(B BBBA <)OBAI Gl  DABA < +)BAI G  DABA TT x-BBJ B(A0A8G  8D0A(B BBBJ T 3BBB B(D0A8G 8D0A(B BBBA T!5ŴBBB B(D0A8G 8D0A(B BBBA D\!`8BBA I(G (D ABBA 4!;kBRA G  DABA 4!`<JBRA G  DABA 4"=)BRA G  DABA 4L"=BKA G  DABA 4">BKA G  DABA 4"@?ƳBKA G  DABA 4"?BKA G  DABA 4,#@BKA G  DABA 4d#hAcBKA G  DABA 4# BBBKA G  DABA 4#B!BKA G  DABA D $CBBA D(G6 (D ABBA LT$FزBBB A(I0G, 0D(A BBBB 4$H=ADG DAA 4$I=ADG DAA 4%J=oADG DAA 4L%K=JADG DAA 4%L=%ADG DAA 4%M=ADG DAA 4%N=۱ADG DAA 4,&OeADG@ DAA 4d&(QADGh DAA 4&RelADG@ DAA 4&S=GADG DAA 4 'T="ADG DAA 4D'U=ADG DAA 4|'VyذADGT DAA <'XBAD G  DABA <'YBAD G  DABA 44(X[=]ADG DAA 4l(`\8ADGh DAA 4(]@ADG DAA 4(^@ADG DAA 4)_@ɯADG DAA 4L)`@ADG DAA 4)ayADGT DAA 4) cbZADG= DAA <)Xe5BAI G  DABA <4*8hBAI Gi  DABA <t*jBAI Gi  DABA <*xmîBAD GV  DABA <*nBAD GV  DABA <4+8pmBAD GV  DABA <t+qBBAD GV  DABA <+rBAI G  DABA <+taBAI G  DABA <4,v|ʭBAI G  DABA <t,(yBAD G  DABA <,zxBAD G  DABA 4,|MBKA G  DABA 4,-p},BKA G  DABA Td-(~R BBB B(A0I8J; 8F0A(B BBBA L-0xۮBBB B(F0A8Jp 8A0A(B BBBE d .`i[BBB B(A0A8L^ 8A0A(B BBBB  8A0A(B BBBI Lt.h(BBB B(A0C8O\ 8A0A(B BBBG .HBBB B(A0C8Lpq 8A0A(B BBBE 4 8A0A(B BBBJ / 8A0A(B BBBG LL/(ծBBB B(A0C8O\ 8A0A(B BBBG L/(ӮBBB B(A0C8O\ 8A0A(B BBBG D/"BBB A(I0F`E 0A(A BBBE D40BBB A(I0F`E 0A(A BBBE T|0PVBBA C(L`` (A ABBF  (A ABBE T0XVBBA C(L`` (A ABBF  (A ABBE T,1`VHBBA C(L`` (A ABBF  (A ABBE T1hVBBA C(L`` (A ABBF  (A ABBE L1pK֭BBJ B(A0A8Il 8A0A(B BBBG <,2pGĭBBA A(L (A ABBF Ll2 BBB B(A0A8Ov 8A0A(B BBBG L2@ϭBBB B(A0A8Ov 8A0A(B BBBG T 3 "BDB B(D0A8G, 8A0A(B BBBD 4L|3c 7BBB B(D0D8MP 8A0A(B BBBI 4AX4p<4W3BSA Q  AABA ,D4ASQpe AAA <t4 BYA Lt  AABA <4XQBYA L  AABA ,4x`ӭAYLp AAA ,$5 AMQp AAA L 6 AAG ] CAF [ ACA R CAJ JCAL\68 AAG ] CAF Z ACB R CAJ JCA,6h bD\ H P H Q G I,6 bD\ H P H Q G I, 7 bD\ H P H Q G I,<7( bD\ H P H Q G I,l7h bD\ H P H Q G I,7 bD\ H P H Q G I,7 bD\ H P H Q G I,7( bD\ H P H Q G I,,8h bD\ H P H Q G I,\8 bD\ H P H Q G I,8 bD\ H P H Q G I,8(bD\ H P H Q G I,8hbD\ H P H Q G I,9bD\ H P H Q G I,L9bD\ H P H Q G I,|9(bD\ H P H Q G I,9hbD\ H P H Q G I,9bD\ H P H Q G I, :bD\ H P H Q G I,<:(bD\ H P H Q G I,l:hbD\ H P H Q G I,:bD\ H P H Q G I:mA~ A l44:8~˨BAD D ABA <l:BBD A(G@a (A ABBA L:0BBB F(A0A8J@X 8A0A(B BBBA T:cBBB E(A0A8D 8D0A(B BBBA TT;xKOBTB B(A0A8QK 8A0A(B BBBA ,;ph0BDD y ABA ,;_ AAG o DAA , 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8A0A(B BBBA TD)BBB B(A0A8GR 8D0A(B BBBH T0,BBB B(A0A8GR 8D0A(B BBBH Tx.BBB B(A0A8G 8A0A(B BBBA TL0\BBB B(A0A8G 8A0A(B BBBA Tx3o3BBB B(A0A8GJ 8A0A(B BBBA T5 BBB B(A0A8G 8A0A(B BBBA TT8BBB B(A0A8G 8A0A(B BBBA ,dcbD\ H P H Q G I,dbD\ H P H Q G I,ĖPdbD\ H P H Q G I,dbD\ H P H Q G I,$dbD\ H P H Q G I,TebD\ H P H Q G I,PebD\ H P H Q G I,ebD\ H P H Q G IT,P#:BEE B(A0A8G 8A0A(B BBBI 4xe"3BAA GP  AABG T*BBB B(A0A8G 8A0A(B BBBD T#BEE B(A0A8G 8A0A(B BBBI Tl`#BEE B(A0A8G 8A0A(B BBBI TĘ8vBBB B(A0A8G7 8A0A(B BBBF T`#BEE B(A0A8G 8A0A(B BBBI ,te AAJ@} AAE ,fAAJ@j AAA Tԙ#vBEE B(A0A8G 8A0A(B BBBI L,fu BBB B(A0A8M 8A0A(B BBBG |4`BBB B(A0D8DP 8A0A(B BBBB  8A0A(B BBBE " 8A0A(B BBBD TBEB B(A0A8G= 8D0A(B BBBB LTHpBBB B(A0A8M 8A0A(B BBBG \U{.K^TBBJ B(A0A8Gi 8D0A(B BBBA TxBBB B(A0I8G 8D0A(B BBBA Tl@{ԮBBB B(A0I8G 8D0A(B BBBA TĜh;BBB B(A0I8Ge 8D0A(B BBBA TPBBJ B(A0A8G 8D0A(B BBBI TtVBBJ B(A0A8G 8D0A(B BBBA T̝BBB B(A0I8G 8D0A(B BBBA T$AnBBB B(A0I8Gh 8D0A(B BBBA T|SBBB B(A0A8M  8A0A(B BBBG 4ADD K AAJ ]DAT k BEB 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(A ABBF d (G AEBE , H$LZAAJ0^ DAA < h$6BEA D(D@Y (D ABBA < $BEA D(D@Y (D ABBA d %BEB D(D0K (A BBBE F (A BBBK d (A BBBE \t p%BEB D(D0C (A BBBE D (A BBDC L(A BBB % &4L `'BAD F`x  AABG < (FT @( l 8(  0( *4 *AAI  AAK DAA + +-AI@^D<$ +BBA F(D`V (D ABBB d +.AJ@^D< +BBA G(D`V (D ABBA  ,.AJ@^D< ,BBA G(D`V (D ABBA 4$ ,AFG N AAB GAT -BBD D(Gpa (A ABBF f (F ABBG , /NBDA G0{ AABD, /TFBBB A(A0J` 0A(A BBBF Dt 2BBB A(G0D` 0A(A BBBF D P5BBB A(A0J` 0A(A BBBF D 8BBB A(G0D` 0A(A BBBF 4 @;DJ0 DF Z DJ N DF < <+AG@^D\ gBEE E(D0D8GP 8D0A(B BBBA L P?E%BEE E(D0D8GP 8D0A(B BBBA Ll P@nBEE E(D0D8GP$ 8D0A(B BBBA L pABEE E(D0D8GPM 8D0A(B BBBA  B <$ BsGBBD D(G0U(A ABB<d BBBE D(D0`(L BFBL HCBEB E(D0D8G@8A0A(B BBBl CBEE E(A0A8D  8A0A(B BBBF D 8C0A(B BBBA  hEE4 E \ EBBB A(A0D` 0F(A BBBG  0D(A BBBE  K T KBED I(G0 (F ABBE X (C ABBH Td LeBED I(G0 (F ABBE X (C ABBH l MhJEA K(D` (A ABBH D (C ABBD XH` O (OL\ OBEE B(E0H8G@\ 8F0A(B BBBK d O| xO pO  hO `O < XOBDA A(G@X (C ABBA  (PL4 0PBED A(D0 (A ABBH } (G ABBG D Q.BDA G@G  AABG [  AABA L (RBBB B(A0D8Gb 8A0A(B BBBH 4 TAK0{ DE J DB v DF T U+AG@^D,t UeADG0| AAF L UdBBB B(D0D8Gp 8A0A(B BBBB L< @Y(9BBE E(D0A8Fp; 8A0A(B BBBA D )z.K^\ ht ` Z @ HT Z<BDC D0  AABH _  AABE _  AABA , [kAe A 4L [AFD0{ AAH I FAH  0]  (]< ]BDA ` ABF N ABA << ]XWBIA A(F`K (C ABBJ 4 cL cdd cBBE E(D0D8GPj 8C0A(B BBBE X 8F0A(B BBBA , fLAAN l AAA , 8fLAAN l AAA ,, XfLAAN l AAA ,\ xfLAAN l AAA , fLAAN l AAA , fLAAN l AAA , fGADG i AAA D f.AHG0 AAF ^ AAH _ AAA Dd g.AHG0 AAF ^ AAH _ AAA D h&AHF0 AAD ^ AAH _ AAA D i.AHG0 AAF ^ AAH _ AAA D< j.ACK0 AAD ^ AAH _ AAA D k>ADK0 AAF ^ AAH _ AAA , xlACK0Z AAE , mADK0[ AAC ,, mACK0Z AAE ,\ (nADK0[ AAC 4 nBAH G0i  AABA 4 @oBAH G0j  AABH , oACK0[ AAD D, Xp.AHG0 AAF ^ AAH _ AAA < @qBBD H(Gp (A ABBD T rBBD H(Gp (A ABBF ` (A ABBJ <T tBBD H(Gp (A ABBD T hvuBBD H(Gp (A ABBF ` (A ABBJ \ 0xWBEA H(N0 (A ABBI _ (A ABBK ` (A ABBA , 0y=BID  ABF 4 @zAU\T @zgBJH D(G0 (A ABBK _ (A ABBK ` (A ABBA , P{)BDH  AEN 4 P|ZADG b CAF K FDE 4 x|AAG0n CAE K FDK T |UBLB E(A0A8D+ 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e7contrib22RegisterContribSchemasEvE32op_schema_register_onceGRUUnit13_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE40op_schema_register_onceGivenTensorFill14_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE30op_schema_register_onceScale15_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE32op_schema_register_onceGRUUnit16_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE50op_schema_register_onceMeanVarianceNormalization17_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceScaledTanh18_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE31op_schema_register_onceAffine19_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE43op_schema_register_onceParametricSoftplus20_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE36op_schema_register_onceImageScaler21_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE29op_schema_register_onceCrop22_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE37op_schema_register_onceDynamicSlice23_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceScaledTanh24_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE33op_schema_register_onceSampleOp25_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE40op_schema_register_onceMaxpoolWithMask26_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE29op_schema_register_onceRfft27_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE30op_schema_register_onceIrfft28_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceComplexMul29_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE39op_schema_register_onceComplexMulConj30_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE53op_schema_register_onceConvTransposeWithDynamicPads31_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE34op_schema_register_onceFusedConv32_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE34op_schema_register_onceFusedGemm33_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceExpandDims34_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE33op_schema_register_onceAttnLSTM35_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE30op_schema_register_onceRange36_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE39op_schema_register_onceQuantizeLinear37_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE41op_schema_register_onceDequantizeLinear38_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE34op_schema_register_onceTokenizer39_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE40op_schema_register_onceMatMulInteger1640_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE46op_schema_register_onceDynamicQuantizeMatMul41_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE45op_schema_register_onceMatMulIntegerToFloat42_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE40op_schema_register_onceTransposeMatMul43_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE41op_schema_register_onceReduceSumInteger44_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceQLinearAdd45_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceQLinearMul46_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE42op_schema_register_onceQLinearReduceMean47_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceMulInteger48_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE43op_schema_register_onceQLinearAveragePool49_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE41op_schema_register_onceQLinearLeakyRelu50_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE39op_schema_register_onceQLinearSigmoid51_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE36op_schema_register_onceMurmurHash352_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE33op_schema_register_onceGatherND53_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE42op_schema_register_onceWordConvEmbedding54_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE28op_schema_register_oncePad55_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE31op_schema_register_onceUnique56_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE30op_schema_register_onceCDist57_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE38op_schema_register_onceCropAndResize58_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE43op_schema_register_onceLayerNormalization59_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE29op_schema_register_onceGelu60_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE33op_schema_register_onceBiasGelu61_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE32op_schema_register_onceInverse62_ZGVZN11onnxruntime7contrib22RegisterContribSchemasEvE30op_schema_register_onceTrilu63_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E23_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE30op_schema_register_onceTrilu63_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE29op_schema_register_onceGelu60_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE33op_schema_register_onceBiasGelu61_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E22_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE32op_schema_register_onceInverse62_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E20_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE38op_schema_register_onceCropAndResize58_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE30op_schema_register_onceCDist57_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E19_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE31op_schema_register_onceUnique56_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E18_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE28op_schema_register_oncePad55_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE42op_schema_register_onceWordConvEmbedding54_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E17_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE33op_schema_register_onceGatherND53_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE36op_schema_register_onceMurmurHash352_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE39op_schema_register_onceQLinearSigmoid51_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE41op_schema_register_onceQLinearLeakyRelu50_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E15_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE43op_schema_register_onceQLinearAveragePool49_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E14_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceMulInteger48_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E13_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE42op_schema_register_onceQLinearReduceMean47_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceQLinearMul46_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceQLinearAdd45_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE41op_schema_register_onceReduceSumInteger44_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E12_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE40op_schema_register_onceTransposeMatMul43_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E11_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE45op_schema_register_onceMatMulIntegerToFloat42_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E10_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE46op_schema_register_onceDynamicQuantizeMatMul41_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE40op_schema_register_onceMatMulInteger1640_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E8_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE34op_schema_register_onceTokenizer39_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE41op_schema_register_onceDequantizeLinear38_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E6_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE39op_schema_register_onceQuantizeLinear37_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE30op_schema_register_onceRange36_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE33op_schema_register_onceAttnLSTM35_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E5_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE35op_schema_register_onceExpandDims34_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E4_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE34op_schema_register_onceFusedGemm33_ZNSt17_Function_handlerIFvRN4onnx16InferenceContextEEZN11onnxruntime7contrib22RegisterContribSchemasEvEUlS2_E3_E9_M_invokeERKSt9_Any_dataS2__ZZN11onnxruntime7contrib22RegisterContribSchemasEvE34op_schema_register_onceFusedConv32_ZZN11onnxruntime7contrib22RegisterContribSchemasEvE53op_schema_register_onceConvTransposeWithDynam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