TensorRT 11.4.0
NvInferImpl.h
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1/*
2 * SPDX-FileCopyrightText: Copyright (c) 1993-2026 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
3 * SPDX-License-Identifier: Apache-2.0
4 *
5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at
8 *
9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
16 */
17
18#ifndef NV_INFER_IMPL_H
19#define NV_INFER_IMPL_H
20
21#include "NvInferLegacyDims.h"
23
24// @cond SuppressDoxyWarnings
25
26namespace nvinfer1
27{
28
29namespace v_1_0
30{
31class ILogger;
33} // namespace v_1_0
36
37namespace v_1_0
38{
39class IProfiler;
40} // namespace v_1_0
42
43
44namespace v_1_0
45{
47} // namespace v_1_0
49
50namespace v_1_0
51{
52class IDebugListener;
53} // namespace v_1_0
55
56class IActivationLayer;
57class IAssertionLayer;
58class IAttention;
59class IBuilder;
60class IBuilderConfig;
61class IConcatenationLayer;
62class IConditionLayer;
63class IConstantLayer;
64class IConvolutionLayer;
65class ICudaEngine;
66class ICumulativeLayer;
67class IDeconvolutionLayer;
68class IDequantizeLayer;
69class IDimensionExpr;
70class IDynamicQuantizeLayer;
71class IEinsumLayer;
72class IElementWiseLayer;
73class IEngineInspector;
74class IExecutionContext;
75class IFillLayer;
76class IGatherLayer;
77class IGridSampleLayer;
78class IHostMemory;
79class IIdentityLayer;
80class ICastLayer;
81class IIfConditional;
82class IIfConditionalInputLayer;
83class IIfConditionalOutputLayer;
84class IIteratorLayer;
85class IKVCacheUpdateLayer;
86class ILayer;
87class ILoop;
88class ILoopOutputLayer;
89class ILRNLayer;
90class IMatrixMultiplyLayer;
91class IMoELayer;
92class IDistCollectiveLayer;
93class INetworkDefinition;
94class INormalizationLayer;
95class INMSLayer;
96class INonZeroLayer;
97class IOneHotLayer;
98class IOptimizationProfile;
99class IPaddingLayer;
100class IParametricReLULayer;
101class IPlugin;
102class IPluginExt;
103class IPluginFactory;
104class IPluginLayer;
105class IPluginRegistry;
106class IPluginV2Layer;
107class IRotaryEmbeddingLayer;
108class IRuntimeConfig;
109
110namespace v_1_0
111{
112class IPluginV3;
113} // namespace v_1_0
115
116namespace v_1_0
117{
118class IStreamReader;
119class IStreamWriter;
120} // namespace v_1_0
123namespace v_1_0
124{
125class IStreamReaderV2;
126} // namespace v_1_0
128
129class IPluginV3Layer;
130class IPoolingLayer;
131class IQuantizeLayer;
132class IRaggedSoftMaxLayer;
133class IRecurrenceLayer;
134class IReduceLayer;
135class IRefitter;
136class IResizeLayer;
137class IReverseSequenceLayer;
138class IRuntime;
139class ISafeSerializedNetworkArtifacts;
140class IScaleLayer;
141class IScatterLayer;
142class ISelectLayer;
143class ISerializationConfig;
144class IShapeLayer;
145class IShuffleLayer;
146class ISliceLayer;
147class ISoftMaxLayer;
148class ISqueezeLayer;
149class ITensor;
150
151namespace v_1_0
152{
153struct TimingCacheKey;
154struct TimingCacheValue;
155} // namespace v_1_0
156using TimingCacheKey = v_1_0::TimingCacheKey;
157using TimingCacheValue = v_1_0::TimingCacheValue;
158
159class ITimingCache;
160class ITopKLayer;
161class ITripLimitLayer;
162class IUnaryLayer;
163class IUnsqueezeLayer;
164struct Permutation;
165class Weights;
166
167enum class ActivationType : int32_t;
168enum class AttentionIOForm : int32_t;
169enum class AttentionNormalizationOp : int32_t;
170enum class BoundingBoxFormat : int32_t;
171enum class CausalMaskKind : int32_t;
172enum class BuilderFlag : int32_t;
173enum class CumulativeOperation : int32_t;
174enum class DeviceType : int32_t;
175enum class DimensionOperation : int32_t;
176enum class ElementWiseOperation : int32_t;
177enum class EngineCapability : int32_t;
178enum class FillOperation : int32_t;
179enum class GatherMode : int32_t;
180enum class KVCacheMode : int32_t;
181enum class LayerInformationFormat : int32_t;
182enum class LayerType : int32_t;
183enum class LoopOutput : int32_t;
184enum class MatrixOperation : int32_t;
185enum class MemoryPoolType : int32_t;
186enum class MoEActType : int32_t;
187enum class NetworkDefinitionCreationFlag : int32_t;
188enum class OptProfileSelector : int32_t;
189enum class PaddingMode : int32_t;
190enum class PoolingType : int32_t;
191enum class ProfilingVerbosity : int32_t;
192enum class ReduceOperation : int32_t;
193enum class CollectiveOperation : int32_t;
194enum class ResizeCoordinateTransformation : int32_t;
195enum class InterpolationMode : int32_t;
196enum class ResizeRoundMode : int32_t;
197enum class ResizeSelector : int32_t;
198enum class ScaleMode : int32_t;
199enum class ScatterMode : int32_t;
200enum class SampleMode : int32_t;
201enum class SerializationFlag : int32_t;
202enum class TensorIOMode : int32_t;
203enum class TensorLocation : int32_t;
204enum class TopKOperation : int32_t;
205enum class TripLimit : int32_t;
206enum class UnaryOperation : int32_t;
207enum class WeightsRole : int32_t;
208enum class PreviewFeature : int32_t;
209enum class HardwareCompatibilityLevel : int32_t;
210enum class ExecutionContextAllocationStrategy : int32_t;
211enum class RuntimePlatform : int32_t;
212enum class TilingOptimizationLevel : int32_t;
213enum class EngineStat : int32_t;
214
215
216enum class DLAWorkspaceAllocationStrategy : int32_t;
217
218using TacticSources = uint32_t;
219using TensorFormats = uint32_t;
220using BuilderFlags = uint32_t;
221using NetworkDefinitionCreationFlags = uint32_t;
222using TempfileControlFlags = uint32_t;
223using SerializationFlags = uint32_t;
224
232
233namespace apiv
234{
235
236class VRoot
237{
238public:
239 virtual ~VRoot() noexcept = default;
240};
241
242class VHostMemory : public VRoot
243{
244public:
245 virtual void* data() const noexcept = 0;
246 virtual std::size_t size() const noexcept = 0;
247 virtual DataType type() const noexcept = 0;
248};
249
250
251class VDimensionExpr : public VRoot
252{
253public:
254 virtual bool isConstant() const = 0;
255 virtual int64_t getConstantValue() const = 0;
256 virtual bool isSizeTensor() const = 0;
257};
258
259class VExprBuilder : public VRoot
260{
261public:
262 virtual IDimensionExpr const* constant(int64_t value) = 0;
263 virtual IDimensionExpr const* operation(
264 DimensionOperation op, IDimensionExpr const& first, IDimensionExpr const& second)
265 = 0;
266 virtual IDimensionExpr const* declareSizeTensor(
267 int32_t outputIndex, IDimensionExpr const& opt, IDimensionExpr const& upper)
268 = 0;
269};
270
271class VRuntime : public VRoot
272{
273public:
274 virtual IRuntime* getPImpl() noexcept = 0;
275 virtual nvinfer1::ICudaEngine* deserializeCudaEngine(void const* blob, std::size_t size) noexcept = 0;
276 virtual void setDLACore(int32_t dlaCore) noexcept = 0;
277 virtual int32_t getDLACore() const noexcept = 0;
278 virtual int32_t getNbDLACores() const noexcept = 0;
279 virtual void setGpuAllocator(IGpuAllocator* allocator) noexcept = 0;
280 virtual void setErrorRecorder(IErrorRecorder* recorder) noexcept = 0;
281 virtual IErrorRecorder* getErrorRecorder() const noexcept = 0;
282 virtual ILogger* getLogger() const noexcept = 0;
283 virtual bool setMaxThreads(int32_t maxThreads) noexcept = 0;
284 virtual int32_t getMaxThreads() const noexcept = 0;
285 virtual void setTemporaryDirectory(char const*) noexcept = 0;
286 virtual char const* getTemporaryDirectory() const noexcept = 0;
287 virtual void setTempfileControlFlags(TempfileControlFlags) noexcept = 0;
288 virtual TempfileControlFlags getTempfileControlFlags() const noexcept = 0;
289 virtual IPluginRegistry& getPluginRegistry() noexcept = 0;
290 virtual void setPluginRegistryParent(IPluginRegistry* parent) noexcept = 0;
291 virtual IRuntime* loadRuntime(char const* path) noexcept = 0;
292 virtual void setEngineHostCodeAllowed(bool allowed) noexcept = 0;
293 virtual bool getEngineHostCodeAllowed() const noexcept = 0;
294 // Added in TensorRT version 10.7
295 virtual nvinfer1::ICudaEngine* deserializeCudaEngineV2(IStreamReaderV2& streamReader) noexcept = 0;
296 // Added in TensorRT version 11.3
300 virtual bool setDLAWorkspaceAllocationStrategy(DLAWorkspaceAllocationStrategy strategy) noexcept = 0;
304 TRT_NODISCARD virtual DLAWorkspaceAllocationStrategy getDLAWorkspaceAllocationStrategy() const noexcept = 0;
305};
306
307
308class VRefitter : public VRoot
309{
310public:
311 virtual IRefitter* getPImpl() noexcept = 0;
312 virtual bool setWeights(char const* layerName, WeightsRole role, const Weights weights) noexcept = 0;
313 virtual bool refitCudaEngine() noexcept = 0;
314 virtual int32_t getMissing(int32_t size, char const** layerNames, WeightsRole* roles) noexcept = 0;
315 virtual int32_t getAll(int32_t size, char const** layerNames, WeightsRole* roles) noexcept = 0;
316 virtual void setErrorRecorder(IErrorRecorder* recorder) noexcept = 0;
317 virtual IErrorRecorder* getErrorRecorder() const noexcept = 0;
318 virtual bool setNamedWeights(char const* name, Weights weights) noexcept = 0;
319 virtual int32_t getMissingWeights(int32_t size, char const** weightsNames) noexcept = 0;
320 virtual int32_t getAllWeights(int32_t size, char const** weightsNames) noexcept = 0;
321 virtual ILogger* getLogger() const noexcept = 0;
322 virtual bool setMaxThreads(int32_t maxThreads) noexcept = 0;
323 virtual int32_t getMaxThreads() const noexcept = 0;
324 virtual bool setNamedWeightsWithLocation(char const* name, Weights weights, TensorLocation location) noexcept = 0;
325 virtual Weights getNamedWeights(char const* weightsName) const noexcept = 0;
326 virtual TensorLocation getWeightsLocation(char const* weightsName) const noexcept = 0;
327 virtual bool unsetNamedWeights(char const* weightsName) noexcept = 0;
328 virtual void setWeightsValidation(bool weightsValidation) noexcept = 0;
329 virtual bool getWeightsValidation() const noexcept = 0;
330 virtual bool refitCudaEngineAsync(cudaStream_t stream) noexcept = 0;
331 virtual Weights getWeightsPrototype(char const* weightsName) const noexcept = 0;
332 // Added in TensorRT 11.4
333 virtual bool releaseRefitResources() noexcept = 0;
334};
335
336class VOptimizationProfile : public VRoot
337{
338public:
339 virtual bool setDimensions(char const* inputName, OptProfileSelector select, Dims const& dims) noexcept = 0;
340 virtual Dims getDimensions(char const* inputName, OptProfileSelector select) const noexcept = 0;
341 virtual int32_t getNbShapeValues(char const* inputName) const noexcept = 0;
342 virtual bool setExtraMemoryTarget(float target) noexcept = 0;
343 virtual float getExtraMemoryTarget() const noexcept = 0;
344 virtual bool isValid() const noexcept = 0;
345 // Added in TensorRT 10.11
346 TRT_NODISCARD virtual bool setShapeValuesV2(
347 char const* inputName, OptProfileSelector select, int64_t const* values, int32_t nbValues) noexcept
348 = 0;
349 TRT_NODISCARD virtual int64_t const* getShapeValuesV2(
350 char const* inputName, OptProfileSelector select) const noexcept
351 = 0;
352 // Added in TensorRT 11.4
353 virtual void setProfileStream(cudaStream_t stream) noexcept = 0;
354 TRT_NODISCARD virtual cudaStream_t getProfileStream() const noexcept = 0;
355};
356
357class VCudaEngine : public VRoot
358{
359public:
360 virtual ICudaEngine* getPImpl() noexcept = 0;
361 virtual int32_t getNbLayers() const noexcept = 0;
362 virtual IHostMemory* serialize() const noexcept = 0;
363 virtual IExecutionContext* createExecutionContext(ExecutionContextAllocationStrategy strategy) noexcept = 0;
364 virtual bool isRefittable() const noexcept = 0;
365 virtual char const* getName() const noexcept = 0;
366 virtual int32_t getNbOptimizationProfiles() const noexcept = 0;
367 virtual EngineCapability getEngineCapability() const noexcept = 0;
368 virtual void setErrorRecorder(IErrorRecorder* recorder) noexcept = 0;
369 virtual IErrorRecorder* getErrorRecorder() const noexcept = 0;
370 virtual TacticSources getTacticSources() const noexcept = 0;
371 virtual ProfilingVerbosity getProfilingVerbosity() const noexcept = 0;
372 virtual IEngineInspector* createEngineInspector() const noexcept = 0;
373 virtual Dims getTensorShape(char const* tensorName) const noexcept = 0;
374 virtual DataType getTensorDataType(char const* tensorName) const noexcept = 0;
375 virtual TensorLocation getTensorLocation(char const* tensorName) const noexcept = 0;
376 virtual bool isShapeInferenceIO(char const* tensorName) const noexcept = 0;
377 virtual TensorIOMode getTensorIOMode(char const* tensorName) const noexcept = 0;
378 virtual int32_t getTensorBytesPerComponent(char const* tensorName) const noexcept = 0;
379 virtual int32_t getTensorComponentsPerElement(char const* tensorName) const noexcept = 0;
380 virtual TensorFormat getTensorFormat(char const* tensorName) const noexcept = 0;
381 virtual char const* getTensorFormatDesc(char const* tensorName) const noexcept = 0;
382 virtual int32_t getTensorVectorizedDim(char const* tensorName) const noexcept = 0;
383 virtual Dims getProfileShape(
384 char const* tensorName, int32_t profileIndex, OptProfileSelector select) const noexcept = 0;
385 virtual int32_t getNbIOTensors() const noexcept = 0;
386 virtual char const* getIOTensorName(int32_t index) const noexcept = 0;
387 virtual HardwareCompatibilityLevel getHardwareCompatibilityLevel() const noexcept = 0;
388 virtual int32_t getNbAuxStreams() const noexcept = 0;
389
390 virtual int32_t getTensorBytesPerComponentV2(char const* tensorName, int32_t profileIndex) const noexcept = 0;
391 virtual int32_t getTensorComponentsPerElementV2(char const* tensorName, int32_t profileIndex) const noexcept = 0;
392 virtual TensorFormat getTensorFormatV2(char const* tensorName, int32_t profileIndex) const noexcept = 0;
393 virtual char const* getTensorFormatDescV2(char const* tensorName, int32_t profileIndex) const noexcept = 0;
394 virtual int32_t getTensorVectorizedDimV2(char const* tensorName, int32_t profileIndex) const noexcept = 0;
395
396 virtual ISerializationConfig* createSerializationConfig() noexcept = 0;
397 virtual IHostMemory* serializeWithConfig(ISerializationConfig& config) const noexcept = 0;
398
399 virtual IRefitter* createRefitter(ILogger& logger) noexcept = 0;
400
401 virtual int64_t getStreamableWeightsSize() const noexcept = 0;
402
403 virtual bool isDebugTensor(char const* name) const noexcept = 0;
404
405 // Added in TensorRT 10.1
406 virtual bool setWeightStreamingBudgetV2(int64_t gpuMemoryBudget) noexcept = 0;
407 virtual int64_t getWeightStreamingBudgetV2() const noexcept = 0;
408 virtual int64_t getWeightStreamingAutomaticBudget() const noexcept = 0;
409 virtual int64_t getWeightStreamingScratchMemorySize() const noexcept = 0;
410 virtual int64_t getDeviceMemorySizeV2() const noexcept = 0;
411 virtual int64_t getDeviceMemorySizeForProfileV2(int32_t profileIndex) const noexcept = 0;
412 // Added in TensorRT 10.11
413 TRT_NODISCARD virtual int64_t const* getProfileTensorValuesV2(
414 char const* tensorName, int32_t profileIndex, OptProfileSelector select) const noexcept = 0;
415 TRT_NODISCARD virtual IExecutionContext* createExecutionContextWithRuntimeConfig(
416 IRuntimeConfig* runtimeConfig) noexcept = 0;
417 TRT_NODISCARD virtual IRuntimeConfig* createRuntimeConfig() noexcept = 0;
418 TRT_NODISCARD virtual int64_t getEngineStat(EngineStat stat) const noexcept = 0;
419 // Added in TensorRT 10.15
420 TRT_NODISCARD virtual char const* getAliasedInputTensor(char const* tensorName) const noexcept = 0;
421};
422
423class VExecutionContext : public VRoot
424{
425public:
426 virtual IExecutionContext* getPImpl() noexcept = 0;
427 virtual void setDebugSync(bool sync) noexcept = 0;
428 virtual bool getDebugSync() const noexcept = 0;
429 virtual void setProfiler(IProfiler*) noexcept = 0;
430 virtual IProfiler* getProfiler() const noexcept = 0;
431 virtual ICudaEngine const& getEngine() const noexcept = 0;
432 virtual void setName(char const* name) noexcept = 0;
433 virtual char const* getName() const noexcept = 0;
434 virtual void setDeviceMemory(void* memory) noexcept = 0;
435 virtual int32_t getOptimizationProfile() const noexcept = 0;
436 virtual bool allInputDimensionsSpecified() const noexcept = 0;
437 virtual void setErrorRecorder(IErrorRecorder* recorder) noexcept = 0;
438 virtual IErrorRecorder* getErrorRecorder() const noexcept = 0;
439 virtual bool executeV2(void* const* bindings) noexcept = 0;
440 virtual bool setOptimizationProfileAsync(int32_t profileIndex, cudaStream_t stream) noexcept = 0;
441 virtual void setEnqueueEmitsProfile(bool enqueueEmitsProfile) noexcept = 0;
442 virtual bool getEnqueueEmitsProfile() const noexcept = 0;
443 virtual bool reportToProfiler() const noexcept = 0;
444 virtual bool setInputShape(char const* tensorName, Dims const& dims) noexcept = 0;
445 virtual Dims getTensorShape(char const* tensorName) const noexcept = 0;
446 virtual Dims getTensorStrides(char const* tensorName) const noexcept = 0;
447 virtual bool setTensorAddress(char const* tensorName, void* data) noexcept = 0;
448 virtual void const* getTensorAddress(char const* tensorName) const noexcept = 0;
449 virtual bool setInputTensorAddress(char const* tensorName, void const* data) noexcept = 0;
450 virtual bool setOutputTensorAddress(char const* tensorName, void* data) noexcept = 0;
451 virtual int32_t inferShapes(int32_t nbMaxNames, char const** tensorNames) noexcept = 0;
452 virtual bool setInputConsumedEvent(cudaEvent_t event) noexcept = 0;
453 virtual cudaEvent_t getInputConsumedEvent() const noexcept = 0;
454 virtual void* getOutputTensorAddress(char const* tensorName) const noexcept = 0;
455 virtual bool setOutputAllocator(char const* tensorName, IOutputAllocator* outputAllocator) noexcept = 0;
456 virtual IOutputAllocator* getOutputAllocator(char const* name) noexcept = 0;
457 virtual int64_t getMaxOutputSize(char const* tensorName) const noexcept = 0;
458 virtual bool setTemporaryStorageAllocator(IGpuAllocator* allocator) noexcept = 0;
459 virtual IGpuAllocator* getTemporaryStorageAllocator() const noexcept = 0;
460 virtual bool enqueueV3(cudaStream_t stream) noexcept = 0;
461 virtual void setPersistentCacheLimit(size_t size) noexcept = 0;
462 virtual size_t getPersistentCacheLimit() const noexcept = 0;
463 virtual bool setNvtxVerbosity(ProfilingVerbosity verbosity) noexcept = 0;
464 virtual ProfilingVerbosity getNvtxVerbosity() const noexcept = 0;
465 virtual void setAuxStreams(cudaStream_t* auxStreams, int32_t nbStreams) noexcept = 0;
466 virtual bool setDebugListener(IDebugListener* listener) noexcept = 0;
467 virtual IDebugListener* getDebugListener() noexcept = 0;
468 virtual bool setTensorDebugState(char const* name, bool flag) noexcept = 0;
469 virtual bool getDebugState(char const* name) const noexcept = 0;
470 virtual bool setAllTensorsDebugState(bool flag) noexcept = 0;
471 virtual size_t updateDeviceMemorySizeForShapes() noexcept = 0;
472 virtual void setDeviceMemoryV2(void* memory, int64_t size) noexcept = 0;
473 TRT_NODISCARD virtual IRuntimeConfig* getRuntimeConfig() const noexcept = 0;
474 virtual bool setUnfusedTensorsDebugState(bool flag) noexcept = 0;
475 virtual bool getUnfusedTensorsDebugState() const noexcept = 0;
476 virtual bool setCommunicator(void* communicator) noexcept = 0;
477};
478
479class VEngineInspector : public VRoot
480{
481public:
482 virtual IEngineInspector* getPImpl() noexcept = 0;
483 virtual bool setExecutionContext(IExecutionContext const* context) noexcept = 0;
484 virtual IExecutionContext const* getExecutionContext() const noexcept = 0;
485 virtual char const* getLayerInformation(int32_t layerIndex, LayerInformationFormat format) const noexcept = 0;
486 virtual char const* getEngineInformation(LayerInformationFormat format) const noexcept = 0;
487 virtual void setErrorRecorder(IErrorRecorder* recorder) noexcept = 0;
488 virtual IErrorRecorder* getErrorRecorder() const noexcept = 0;
489};
490
491class VTensor : public VRoot
492{
493public:
494 virtual void setName(char const* name) noexcept = 0;
495 virtual char const* getName() const noexcept = 0;
496 virtual void setDimensions(Dims const& dimensions) noexcept = 0;
497 virtual Dims getDimensions() const noexcept = 0;
498 virtual DataType getType() const noexcept = 0;
499 virtual bool isNetworkInput() const noexcept = 0;
500 virtual bool isNetworkOutput() const noexcept = 0;
501 virtual void setBroadcastAcrossBatch(bool broadcastAcrossBatch) noexcept = 0;
502 virtual bool getBroadcastAcrossBatch() const noexcept = 0;
503 virtual TensorLocation getLocation() const noexcept = 0;
504 virtual void setLocation(TensorLocation location) noexcept = 0;
505 virtual void setAllowedFormats(TensorFormats formats) noexcept = 0;
506 virtual TensorFormats getAllowedFormats() const noexcept = 0;
507 virtual bool isShapeTensor() const noexcept = 0;
508 virtual bool isExecutionTensor() const noexcept = 0;
509 virtual void setDimensionName(int32_t index, char const* name) noexcept = 0;
510 virtual char const* getDimensionName(int32_t index) const noexcept = 0;
511};
512
513class VLayer : public VRoot
514{
515public:
516 virtual LayerType getType() const noexcept = 0;
517 virtual void setName(char const* name) noexcept = 0;
518 virtual char const* getName() const noexcept = 0;
519 virtual int32_t getNbInputs() const noexcept = 0;
520 virtual ITensor* getInput(int32_t index) const noexcept = 0;
521 virtual int32_t getNbOutputs() const noexcept = 0;
522 virtual ITensor* getOutput(int32_t index) const noexcept = 0;
523 virtual void setInput(int32_t index, ITensor& tensor) noexcept = 0;
524 virtual DataType getOutputType(int32_t index) const noexcept = 0;
525 virtual void setMetadata(char const* docString) noexcept = 0;
526 virtual char const* getMetadata() const noexcept = 0;
527 virtual bool setNbRanks(int32_t nbRanks) noexcept = 0;
528 virtual int32_t getNbRanks() const noexcept = 0;
529};
530
531class VConvolutionLayer : public VRoot
532{
533public:
534 virtual void setNbOutputMaps(int64_t nbOutputMaps) noexcept = 0;
535 virtual int64_t getNbOutputMaps() const noexcept = 0;
536 virtual void setNbGroups(int64_t nbGroups) noexcept = 0;
537 virtual int64_t getNbGroups() const noexcept = 0;
538 virtual void setKernelWeights(Weights weights) noexcept = 0;
539 virtual Weights getKernelWeights() const noexcept = 0;
540 virtual void setBiasWeights(Weights weights) noexcept = 0;
541 virtual Weights getBiasWeights() const noexcept = 0;
542 virtual void setPrePadding(Dims const& padding) noexcept = 0;
543 virtual Dims getPrePadding() const noexcept = 0;
544 virtual void setPostPadding(Dims const& padding) noexcept = 0;
545 virtual Dims getPostPadding() const noexcept = 0;
546 virtual void setPaddingMode(PaddingMode paddingMode) noexcept = 0;
547 virtual PaddingMode getPaddingMode() const noexcept = 0;
548 virtual void setKernelSizeNd(Dims const& kernelSize) noexcept = 0;
549 virtual Dims getKernelSizeNd() const noexcept = 0;
550 virtual void setStrideNd(Dims const& stride) noexcept = 0;
551 virtual Dims getStrideNd() const noexcept = 0;
552 virtual void setPaddingNd(Dims const& padding) noexcept = 0;
553 virtual Dims getPaddingNd() const noexcept = 0;
554 virtual void setDilationNd(Dims const& dilation) noexcept = 0;
555 virtual Dims getDilationNd() const noexcept = 0;
556};
557
558class VActivationLayer : public VRoot
559{
560public:
561 virtual void setActivationType(ActivationType type) noexcept = 0;
562 virtual ActivationType getActivationType() const noexcept = 0;
563 virtual void setAlpha(float alpha) noexcept = 0;
564 virtual void setBeta(float beta) noexcept = 0;
565 virtual float getAlpha() const noexcept = 0;
566 virtual float getBeta() const noexcept = 0;
567};
568
569class VPoolingLayer : public VRoot
570{
571public:
572 virtual void setPoolingType(PoolingType type) noexcept = 0;
573 virtual PoolingType getPoolingType() const noexcept = 0;
574 virtual void setBlendFactor(float blendFactor) noexcept = 0;
575 virtual float getBlendFactor() const noexcept = 0;
576 virtual void setAverageCountExcludesPadding(bool exclusive) noexcept = 0;
577 virtual bool getAverageCountExcludesPadding() const noexcept = 0;
578 virtual void setPrePadding(Dims const& padding) noexcept = 0;
579 virtual Dims getPrePadding() const noexcept = 0;
580 virtual void setPostPadding(Dims const& padding) noexcept = 0;
581 virtual Dims getPostPadding() const noexcept = 0;
582 virtual void setPaddingMode(PaddingMode paddingMode) noexcept = 0;
583 virtual PaddingMode getPaddingMode() const noexcept = 0;
584 virtual void setWindowSizeNd(Dims const& windowSize) noexcept = 0;
585 virtual Dims getWindowSizeNd() const noexcept = 0;
586 virtual void setStrideNd(Dims const& stride) noexcept = 0;
587 virtual Dims getStrideNd() const noexcept = 0;
588 virtual void setPaddingNd(Dims const& padding) noexcept = 0;
589 virtual Dims getPaddingNd() const noexcept = 0;
590};
591
592class VLRNLayer : public VRoot
593{
594public:
595 virtual void setWindowSize(int64_t windowSize) noexcept = 0;
596 virtual int64_t getWindowSize() const noexcept = 0;
597 virtual void setAlpha(float alpha) noexcept = 0;
598 virtual float getAlpha() const noexcept = 0;
599 virtual void setBeta(float beta) noexcept = 0;
600 virtual float getBeta() const noexcept = 0;
601 virtual void setK(float k) noexcept = 0;
602 virtual float getK() const noexcept = 0;
603};
604
605class VScaleLayer : public VRoot
606{
607public:
608 virtual void setMode(ScaleMode mode) noexcept = 0;
609 virtual ScaleMode getMode() const noexcept = 0;
610 virtual void setShift(Weights shift) noexcept = 0;
611 virtual Weights getShift() const noexcept = 0;
612 virtual void setScale(Weights scale) noexcept = 0;
613 virtual Weights getScale() const noexcept = 0;
614 virtual void setPower(Weights power) noexcept = 0;
615 virtual Weights getPower() const noexcept = 0;
616 virtual int32_t getChannelAxis() const noexcept = 0;
617 virtual void setChannelAxis(int32_t channelAxis) noexcept = 0;
618};
619
620class VSoftMaxLayer : public VRoot
621{
622public:
623 virtual void setAxes(uint32_t axes) noexcept = 0;
624 virtual uint32_t getAxes() const noexcept = 0;
625};
626
627class VConcatenationLayer : public VRoot
628{
629public:
630 virtual void setAxis(int32_t axis) noexcept = 0;
631 virtual int32_t getAxis() const noexcept = 0;
632};
633
634class VDeconvolutionLayer : public VRoot
635{
636public:
637 virtual void setNbOutputMaps(int64_t nbOutputMaps) noexcept = 0;
638 virtual int64_t getNbOutputMaps() const noexcept = 0;
639 virtual void setNbGroups(int64_t nbGroups) noexcept = 0;
640 virtual int64_t getNbGroups() const noexcept = 0;
641 virtual void setKernelWeights(Weights weights) noexcept = 0;
642 virtual Weights getKernelWeights() const noexcept = 0;
643 virtual void setBiasWeights(Weights weights) noexcept = 0;
644 virtual Weights getBiasWeights() const noexcept = 0;
645 virtual void setPrePadding(Dims const& padding) noexcept = 0;
646 virtual Dims getPrePadding() const noexcept = 0;
647 virtual void setPostPadding(Dims const& padding) noexcept = 0;
648 virtual Dims getPostPadding() const noexcept = 0;
649 virtual void setPaddingMode(PaddingMode paddingMode) noexcept = 0;
650 virtual PaddingMode getPaddingMode() const noexcept = 0;
651 virtual void setKernelSizeNd(Dims const& kernelSize) noexcept = 0;
652 virtual Dims getKernelSizeNd() const noexcept = 0;
653 virtual void setStrideNd(Dims const& stride) noexcept = 0;
654 virtual Dims getStrideNd() const noexcept = 0;
655 virtual void setPaddingNd(Dims const& padding) noexcept = 0;
656 virtual Dims getPaddingNd() const noexcept = 0;
657 virtual void setDilationNd(Dims const& dilation) noexcept = 0;
658 virtual Dims getDilationNd() const noexcept = 0;
659};
660
661class VElementWiseLayer : public VRoot
662{
663public:
664 virtual void setOperation(ElementWiseOperation op) noexcept = 0;
665 virtual ElementWiseOperation getOperation() const noexcept = 0;
666};
667
668class VGatherLayer : public VRoot
669{
670public:
671 virtual void setGatherAxis(int32_t axis) noexcept = 0;
672 virtual int32_t getGatherAxis() const noexcept = 0;
673 virtual void setNbElementWiseDims(int32_t k) noexcept = 0;
674 virtual int32_t getNbElementWiseDims() const noexcept = 0;
675 virtual void setMode(GatherMode mode) noexcept = 0;
676 virtual GatherMode getMode() const noexcept = 0;
677};
678
679class VPluginLayer : public VRoot
680{
681public:
682 virtual IPlugin& getPlugin() noexcept = 0;
683};
684
685class VPluginV2Layer : public VRoot
686{
687public:
688 virtual IPluginV2& getPlugin() noexcept = 0;
689};
690
691class VPluginV3Layer : public VRoot
692{
693public:
694 virtual IPluginV3& getPlugin() noexcept = 0;
695};
696
697class VUnaryLayer : public VRoot
698{
699public:
700 virtual void setOperation(UnaryOperation op) noexcept = 0;
701 virtual UnaryOperation getOperation() const noexcept = 0;
702};
703
704class VReduceLayer : public VRoot
705{
706public:
707 virtual void setOperation(ReduceOperation op) noexcept = 0;
708 virtual ReduceOperation getOperation() const noexcept = 0;
709 virtual void setReduceAxes(uint32_t reduceAxes) noexcept = 0;
710 virtual uint32_t getReduceAxes() const noexcept = 0;
711 virtual void setKeepDimensions(bool keepDimensions) noexcept = 0;
712 virtual bool getKeepDimensions() const noexcept = 0;
713};
714
715class VPaddingLayer : public VRoot
716{
717public:
718 virtual void setPrePaddingNd(Dims const& padding) noexcept = 0;
719 virtual Dims getPrePaddingNd() const noexcept = 0;
720 virtual void setPostPaddingNd(Dims const& padding) noexcept = 0;
721 virtual Dims getPostPaddingNd() const noexcept = 0;
722};
723
724class VShuffleLayer : public VRoot
725{
726public:
727 virtual void setFirstTranspose(Permutation const& permutation) noexcept = 0;
728 virtual Permutation const& getFirstTranspose() const noexcept = 0;
729 virtual void setReshapeDimensions(Dims const& dimensions) noexcept = 0;
730 virtual Dims getReshapeDimensions() const noexcept = 0;
731 virtual void setSecondTranspose(Permutation const& permutation) noexcept = 0;
732 virtual Permutation const& getSecondTranspose() const noexcept = 0;
733 virtual void setZeroIsPlaceholder(bool zeroIsPlaceholder) noexcept = 0;
734 virtual bool getZeroIsPlaceholder() const noexcept = 0;
735};
736
737class VSliceLayer : public VRoot
738{
739public:
740 virtual void setStart(Dims const& start) noexcept = 0;
741 virtual Dims getStart() const noexcept = 0;
742 virtual void setSize(Dims const& size) noexcept = 0;
743 virtual Dims getSize() const noexcept = 0;
744 virtual void setStride(Dims const& stride) noexcept = 0;
745 virtual Dims getStride() const noexcept = 0;
746 virtual void setMode(SampleMode mode) noexcept = 0;
747 virtual SampleMode getMode() const noexcept = 0;
748 virtual void setAxes(Dims const& axes) noexcept = 0;
749 virtual Dims getAxes() const noexcept = 0;
750};
751
752class VShapeLayer : public VRoot
753{
754public:
755};
756
757class VTopKLayer : public VRoot
758{
759public:
760 virtual void setOperation(TopKOperation op) noexcept = 0;
761 virtual TopKOperation getOperation() const noexcept = 0;
762 virtual void setK(int32_t k) noexcept = 0;
763 virtual int32_t getK() const noexcept = 0;
764 virtual void setReduceAxes(uint32_t reduceAxes) noexcept = 0;
765 virtual uint32_t getReduceAxes() const noexcept = 0;
766 virtual bool setIndicesType(DataType type) noexcept = 0;
767 virtual DataType getIndicesType() const noexcept = 0;
768};
769
770class VMatrixMultiplyLayer : public VRoot
771{
772public:
773 virtual void setOperation(int32_t index, MatrixOperation op) noexcept = 0;
774 virtual MatrixOperation getOperation(int32_t index) const noexcept = 0;
775};
776
777class VNonZeroLayer : public VRoot
778{
779public:
780 virtual bool setIndicesType(DataType type) noexcept = 0;
781 virtual DataType getIndicesType() const noexcept = 0;
782};
783
784class VRaggedSoftMaxLayer : public VRoot
785{
786public:
787};
788
789class VIdentityLayer : public VRoot
790{
791public:
792};
793
794class VCastLayer : public VRoot
795{
796public:
797 virtual void setToType(DataType toType) noexcept = 0;
798 virtual DataType getToType() const noexcept = 0;
799};
800
801class VConstantLayer : public VRoot
802{
803public:
804 virtual void setWeights(Weights weights) noexcept = 0;
805 virtual Weights getWeights() const noexcept = 0;
806 virtual void setDimensions(Dims const& dimensions) noexcept = 0;
807 virtual Dims getDimensions() const noexcept = 0;
808};
809
810class VParametricReLULayer : public VRoot
811{
812public:
813};
814
815class VResizeLayer : public VRoot
816{
817public:
818 virtual void setOutputDimensions(Dims const& dimensions) noexcept = 0;
819 virtual Dims getOutputDimensions() const noexcept = 0;
820 virtual void setScales(float const* scales, int32_t nbScales) noexcept = 0;
821 virtual int32_t getScales(int32_t size, float* scales) const noexcept = 0;
822 virtual void setResizeMode(InterpolationMode interpolationMode) noexcept = 0;
823 virtual InterpolationMode getResizeMode() const noexcept = 0;
824 virtual void setCoordinateTransformation(ResizeCoordinateTransformation coordTransform) noexcept = 0;
825 virtual ResizeCoordinateTransformation getCoordinateTransformation() const noexcept = 0;
826 virtual void setSelectorForSinglePixel(ResizeSelector selector) noexcept = 0;
827 virtual ResizeSelector getSelectorForSinglePixel() const noexcept = 0;
828 virtual void setNearestRounding(ResizeRoundMode value) noexcept = 0;
829 virtual ResizeRoundMode getNearestRounding() const noexcept = 0;
830 virtual void setCubicCoeff(float value) noexcept = 0;
831 virtual float getCubicCoeff() const noexcept = 0;
832 virtual void setExcludeOutside(bool value) noexcept = 0;
833 virtual bool getExcludeOutside() const noexcept = 0;
834};
835
836class VLoopBoundaryLayer : public VRoot
837{
838public:
839 virtual ILoop* getLoop() const noexcept = 0;
840};
841
842class VRecurrenceLayer : public VRoot
843{
844public:
845};
846
847class VLoopOutputLayer : public VRoot
848{
849public:
850 virtual LoopOutput getLoopOutput() const noexcept = 0;
851 virtual void setAxis(int32_t axis) noexcept = 0;
852 virtual int32_t getAxis() const noexcept = 0;
853};
854
855class VTripLimitLayer : public VRoot
856{
857public:
858 virtual TripLimit getTripLimit() const noexcept = 0;
859};
860
861class VIteratorLayer : public VRoot
862{
863public:
864 virtual void setAxis(int32_t axis) noexcept = 0;
865 virtual int32_t getAxis() const noexcept = 0;
866 virtual void setReverse(bool reverse) noexcept = 0;
867 virtual bool getReverse() const noexcept = 0;
868};
869class VLoop : public VRoot
870{
871public:
872 virtual IRecurrenceLayer* addRecurrence(ITensor& initialValue) noexcept = 0;
873 virtual ITripLimitLayer* addTripLimit(ITensor& tensor, TripLimit limit) noexcept = 0;
874 virtual IIteratorLayer* addIterator(ITensor& tensor, int32_t axis = 0, bool reverse = false) noexcept = 0;
875 virtual ILoopOutputLayer* addLoopOutput(ITensor& tensor, LoopOutput outputKind, int32_t axis = 0) noexcept = 0;
876 virtual void setName(char const* name) noexcept = 0;
877 virtual char const* getName() const noexcept = 0;
878};
879
880class VConditionalBoundaryLayer : public VRoot
881{
882public:
883 virtual IIfConditional* getConditional() const noexcept = 0;
884};
885
886class VConditionLayer : public VRoot
887{
888public:
889};
890
891class VConditionalInputLayer : public VRoot
892{
893public:
894};
895
896class VConditionalOutputLayer : public VRoot
897{
898public:
899};
900
901class VIfConditional : public VRoot
902{
903public:
904 virtual IConditionLayer* setCondition(ITensor& tensor) noexcept = 0;
905 virtual IIfConditionalInputLayer* addInput(ITensor& tensor) noexcept = 0;
906 virtual IIfConditionalOutputLayer* addOutput(ITensor& trueTensor, ITensor& falseTensor) noexcept = 0;
907 virtual void setName(char const* name) noexcept = 0;
908 virtual char const* getName() const noexcept = 0;
909};
910
911class VAttentionBoundaryLayer : public VRoot
912{
913public:
914 virtual IAttention* getAttention() const noexcept = 0;
915};
916
917class VAttentionInputLayer : public VRoot
918{
919public:
920};
921
922class VAttentionOutputLayer : public VRoot
923{
924public:
925};
926
927class VAttention : public VRoot
928{
929public:
930 TRT_NODISCARD virtual bool setInput(int32_t index, ITensor& input) noexcept = 0;
931 TRT_NODISCARD virtual int32_t getNbInputs() const noexcept = 0;
932 TRT_NODISCARD virtual ITensor* getInput(int32_t index) const noexcept = 0;
933 TRT_NODISCARD virtual int32_t getNbOutputs() const noexcept = 0;
934 TRT_NODISCARD virtual ITensor* getOutput(int32_t index) const noexcept = 0;
935 TRT_NODISCARD virtual bool setName(char const* name) noexcept = 0;
936 TRT_NODISCARD virtual char const* getName() const noexcept = 0;
937 TRT_NODISCARD virtual bool setNormalizationOperation(AttentionNormalizationOp op) noexcept = 0;
938 TRT_NODISCARD virtual AttentionNormalizationOp getNormalizationOperation() const noexcept = 0;
939 TRT_DEPRECATED virtual bool setCausal(bool isCausal) noexcept = 0;
940 TRT_DEPRECATED virtual bool getCausal() const noexcept = 0;
941 TRT_NODISCARD virtual bool setMask(ITensor& mask) noexcept = 0;
942 TRT_NODISCARD virtual ITensor* getMask() const noexcept = 0;
943 TRT_NODISCARD virtual bool setDecomposable(bool decomposable) noexcept = 0;
944 TRT_NODISCARD virtual bool getDecomposable() const noexcept = 0;
945 TRT_NODISCARD virtual bool setNormalizationQuantizeScale(ITensor& tensor) noexcept = 0;
946 TRT_NODISCARD virtual ITensor* getNormalizationQuantizeScale() const noexcept = 0;
947 TRT_NODISCARD virtual bool setNormalizationQuantizeToType(DataType type) noexcept = 0;
948 TRT_NODISCARD virtual DataType getNormalizationQuantizeToType() const noexcept = 0;
949 TRT_NODISCARD virtual bool setMetadata(char const* docString) noexcept = 0;
950 TRT_NODISCARD virtual char const* getMetadata() const noexcept = 0;
951 TRT_NODISCARD virtual bool setNbRanks(int32_t nbRanks) noexcept = 0;
952 TRT_NODISCARD virtual int32_t getNbRanks() const noexcept = 0;
953 TRT_NODISCARD virtual bool setCausalKind(CausalMaskKind kind) noexcept = 0;
954 TRT_NODISCARD virtual CausalMaskKind getCausalKind() const noexcept = 0;
955 TRT_NODISCARD virtual bool setQueryForm(AttentionIOForm form) noexcept = 0;
956 TRT_NODISCARD virtual AttentionIOForm getQueryForm() const noexcept = 0;
957 TRT_NODISCARD virtual bool setKeyValueForm(AttentionIOForm form) noexcept = 0;
958 TRT_NODISCARD virtual AttentionIOForm getKeyValueForm() const noexcept = 0;
959 TRT_NODISCARD virtual bool setQueryLengths(ITensor* lengths) noexcept = 0;
960 TRT_NODISCARD virtual ITensor* getQueryLengths() const noexcept = 0;
961 TRT_NODISCARD virtual bool setKeyValueLengths(ITensor* lengths) noexcept = 0;
962 TRT_NODISCARD virtual ITensor* getKeyValueLengths() const noexcept = 0;
963}; // class VAttention
964
965class VSelectLayer : public VRoot
966{
967};
968
969class VAssertionLayer : public VRoot
970{
971public:
972 virtual void setMessage(char const* message) noexcept = 0;
973 virtual char const* getMessage() const noexcept = 0;
974};
975
976class VFillLayer : public VRoot
977{
978public:
979 virtual void setDimensions(Dims const& dimensions) noexcept = 0;
980 virtual Dims getDimensions() const noexcept = 0;
981 virtual void setOperation(FillOperation op) noexcept = 0;
982 virtual FillOperation getOperation() const noexcept = 0;
983 virtual void setAlpha(double alpha) noexcept = 0;
984 virtual double getAlpha() const noexcept = 0;
985 virtual void setBeta(double beta) noexcept = 0;
986 virtual double getBeta() const noexcept = 0;
987 virtual void setAlphaInt64(int64_t alpha) noexcept = 0;
988 virtual int64_t getAlphaInt64() const noexcept = 0;
989 virtual void setBetaInt64(int64_t beta) noexcept = 0;
990 virtual int64_t getBetaInt64() const noexcept = 0;
991 virtual bool isAlphaBetaInt64() const noexcept = 0;
992 virtual DataType getToType() const noexcept = 0;
993 virtual void setToType(DataType toType) noexcept = 0;
994};
995
996class VQuantizeLayer : public VRoot
997{
998public:
999 virtual int32_t getAxis() const noexcept = 0;
1000 virtual void setAxis(int32_t axis) noexcept = 0;
1001 virtual DataType getToType() const noexcept = 0;
1002 virtual void setToType(DataType toType) noexcept = 0;
1003 virtual Dims getBlockShape() const noexcept = 0;
1004 virtual bool setBlockShape(Dims const& blockShape) noexcept = 0;
1005};
1006
1007class VDequantizeLayer : public VRoot
1008{
1009public:
1010 virtual int32_t getAxis() const noexcept = 0;
1011 virtual void setAxis(int32_t axis) noexcept = 0;
1012 virtual DataType getToType() const noexcept = 0;
1013 virtual void setToType(DataType toType) noexcept = 0;
1014 virtual Dims getBlockShape() const noexcept = 0;
1015 virtual bool setBlockShape(Dims const& blockShape) noexcept = 0;
1016};
1017
1018class VDynamicQuantizeLayer : public VRoot
1019{
1020public:
1021 TRT_DEPRECATED virtual int32_t getAxis() const noexcept = 0;
1022 TRT_DEPRECATED virtual void setAxis(int32_t axis) noexcept = 0;
1023 TRT_DEPRECATED virtual int32_t getBlockSize() const noexcept = 0;
1024 TRT_DEPRECATED virtual void setBlockSize(int32_t axis) noexcept = 0;
1025 virtual DataType getScaleType() const noexcept = 0;
1026 virtual void setScaleType(DataType axis) noexcept = 0;
1027 virtual DataType getToType() const noexcept = 0;
1028 virtual void setToType(DataType toType) noexcept = 0;
1029 virtual Dims getBlockShape() const noexcept = 0;
1030 virtual void setBlockShape(Dims const& blockShape) noexcept = 0;
1031};
1032
1033class VScatterLayer : public VRoot
1034{
1035public:
1036 virtual void setMode(ScatterMode mode) noexcept = 0;
1037 virtual ScatterMode getMode() const noexcept = 0;
1038 virtual void setAxis(int32_t axis) noexcept = 0;
1039 virtual int32_t getAxis() const noexcept = 0;
1040}; // class VScatterLayer
1041
1042class VEinsumLayer : public VRoot
1043{
1044public:
1045 virtual bool setEquation(char const* equation) noexcept = 0;
1046 virtual char const* getEquation() const noexcept = 0;
1047};
1048
1049class VOneHotLayer : public VRoot
1050{
1051public:
1052 virtual int32_t getAxis() const noexcept = 0;
1053 virtual void setAxis(int32_t axis) noexcept = 0;
1054}; // class VOneHotLayer
1055
1056class VGridSampleLayer : public VRoot
1057{
1058public:
1059 virtual void setInterpolationMode(InterpolationMode mode) noexcept = 0;
1060 virtual InterpolationMode getInterpolationMode() const noexcept = 0;
1061 virtual void setAlignCorners(bool alignCorners) noexcept = 0;
1062 virtual bool getAlignCorners() const noexcept = 0;
1063 virtual bool setSampleMode(SampleMode mode) noexcept = 0;
1064 virtual SampleMode getSampleMode() const noexcept = 0;
1065}; // class VGridSampleLayer
1066
1067class VNMSLayer : public VRoot
1068{
1069public:
1070 virtual void setBoundingBoxFormat(BoundingBoxFormat fmt) noexcept = 0;
1071 virtual BoundingBoxFormat getBoundingBoxFormat() const noexcept = 0;
1072 virtual void setTopKBoxLimit(int32_t limit) noexcept = 0;
1073 virtual int32_t getTopKBoxLimit() const noexcept = 0;
1074 virtual bool setIndicesType(DataType type) noexcept = 0;
1075 virtual DataType getIndicesType() const noexcept = 0;
1076}; // class VNMSLayer
1077
1078class VReverseSequenceLayer : public VRoot
1079{
1080public:
1081 virtual void setBatchAxis(int32_t batchAxis) noexcept = 0;
1082 virtual int32_t getBatchAxis() const noexcept = 0;
1083
1084 virtual void setSequenceAxis(int32_t sequenceAxis) noexcept = 0;
1085 virtual int32_t getSequenceAxis() const noexcept = 0;
1086}; // class VReverseSequenceLayer
1087
1088class VNormalizationLayer : public VRoot
1089{
1090public:
1091 virtual void setEpsilon(float eps) noexcept = 0;
1092 virtual float getEpsilon() const noexcept = 0;
1093 virtual void setAxes(uint32_t axesMask) noexcept = 0;
1094 virtual uint32_t getAxes() const noexcept = 0;
1095 virtual void setNbGroups(int64_t nbGroups) noexcept = 0;
1096 virtual int64_t getNbGroups() const noexcept = 0;
1097 virtual bool isV2() const noexcept = 0;
1098}; // class VNormalizationLayer
1099
1100class VSqueezeLayer : public VRoot
1101{
1102};
1103
1104class VUnsqueezeLayer : public VRoot
1105{
1106};
1107
1108class VCumulativeLayer : public VRoot
1109{
1110public:
1111 virtual bool setOperation(CumulativeOperation op) noexcept = 0;
1112 virtual CumulativeOperation getOperation() const noexcept = 0;
1113 virtual void setExclusive(bool exclusive) noexcept = 0;
1114 virtual bool getExclusive() const noexcept = 0;
1115 virtual void setReverse(bool reverse) noexcept = 0;
1116 virtual bool getReverse() const noexcept = 0;
1117}; // class VCumulativeLayer
1118
1119class VRotaryEmbeddingLayer : public VRoot
1120{
1121public:
1122 virtual void setInterleaved(bool interleaved) noexcept = 0;
1123 virtual bool getInterleaved() const noexcept = 0;
1124 virtual bool setRotaryEmbeddingDim(int32_t rotaryEmbeddingDim) noexcept = 0;
1125 virtual int32_t getRotaryEmbeddingDim() const noexcept = 0;
1126 virtual void setInput(int32_t index, ITensor& input) noexcept = 0;
1127}; // class VRotaryEmbeddingLayer
1128
1129class VKVCacheUpdateLayer : public VRoot
1130{
1131public:
1132 TRT_NODISCARD virtual bool setCacheMode(KVCacheMode cacheMode) noexcept = 0;
1133 TRT_NODISCARD virtual KVCacheMode getCacheMode() const noexcept = 0;
1134 TRT_NODISCARD virtual bool setUpdateForm(AttentionIOForm form) noexcept = 0;
1135 TRT_NODISCARD virtual AttentionIOForm getUpdateForm() const noexcept = 0;
1136 TRT_NODISCARD virtual bool setUpdateLengths(ITensor* lengths) noexcept = 0;
1137 TRT_NODISCARD virtual ITensor* getUpdateLengths() const noexcept = 0;
1138}; // class VKVCacheUpdateLayer
1139
1140class VMoELayer : public VRoot
1141{
1142public:
1143 virtual void setGatedWeights(ITensor& fcGateWeights, ITensor& fcUpWeights, ITensor& fcDownWeights, MoEActType activationType) noexcept = 0;
1144 virtual void setGatedBiases(ITensor& fcGateBiases, ITensor& fcUpBiases, ITensor& fcDownBiases) noexcept = 0;
1145 virtual void setActivationType(MoEActType activationType) noexcept = 0;
1146 virtual MoEActType getActivationType() const noexcept = 0;
1147 virtual void setQuantizationStatic(ITensor& fcDownActivationScale, DataType dataType) noexcept = 0;
1148 virtual void setQuantizationDynamicDblQ(ITensor& fcDownActivationDblQScale, DataType dataType, Dims const& blockShape, DataType dynQOutputScaleType) noexcept = 0;
1149 virtual void setQuantizationToType(DataType type) noexcept = 0;
1150 virtual DataType getQuantizationToType() const noexcept = 0;
1151 virtual void setQuantizationBlockShape(Dims const& blockShape) noexcept = 0;
1152 virtual Dims getQuantizationBlockShape() const noexcept = 0;
1153 virtual void setDynQOutputScaleType(DataType type) noexcept = 0;
1154 virtual DataType getDynQOutputScaleType() const noexcept = 0;
1155 virtual void setSwigluParams(float limit, float alpha, float beta) noexcept = 0;
1156 virtual void setSwigluParamLimit(float limit) noexcept = 0;
1157 virtual float getSwigluParamLimit() const noexcept = 0;
1158 virtual void setSwigluParamAlpha(float alpha) noexcept = 0;
1159 virtual float getSwigluParamAlpha() const noexcept = 0;
1160 virtual void setSwigluParamBeta(float beta) noexcept = 0;
1161 virtual float getSwigluParamBeta() const noexcept = 0;
1162 virtual void setInput(int32_t index, ITensor& tensor) noexcept = 0;
1163}; // class VMoELayer
1164
1165
1166class VNetworkDefinition : public VRoot
1167{
1168public:
1169 virtual ITensor* addInput(char const* name, DataType type, Dims const& dimensions) noexcept = 0;
1170 virtual void markOutput(ITensor& tensor) noexcept = 0;
1171 virtual IActivationLayer* addActivation(ITensor& input, ActivationType type) noexcept = 0;
1172 virtual ILRNLayer* addLRN(ITensor& input, int64_t window, float alpha, float beta, float k) noexcept = 0;
1173 virtual IScaleLayer* addScale(
1174 ITensor& input, ScaleMode mode, Weights shift, Weights scale, Weights power) noexcept = 0;
1175 virtual ISoftMaxLayer* addSoftMax(ITensor& input) noexcept = 0;
1176 virtual IConcatenationLayer* addConcatenation(ITensor* const* inputs, int32_t nbInputs) noexcept = 0;
1177 virtual IElementWiseLayer* addElementWise(ITensor& input1, ITensor& input2, ElementWiseOperation op) noexcept = 0;
1178 virtual IUnaryLayer* addUnary(ITensor& input, UnaryOperation operation) noexcept = 0;
1179 virtual IShuffleLayer* addShuffle(ITensor& input) noexcept = 0;
1180 virtual int32_t getNbLayers() const noexcept = 0;
1181 virtual ILayer* getLayer(int32_t index) const noexcept = 0;
1182 virtual int32_t getNbInputs() const noexcept = 0;
1183 virtual ITensor* getInput(int32_t index) const noexcept = 0;
1184 virtual int32_t getNbOutputs() const noexcept = 0;
1185 virtual ITensor* getOutput(int32_t index) const noexcept = 0;
1186 virtual IReduceLayer* addReduce(
1187 ITensor& input, ReduceOperation operation, uint32_t reduceAxes, bool keepDimensions) noexcept
1188 = 0;
1189 virtual ITopKLayer* addTopK(ITensor& input, TopKOperation op, int32_t k, uint32_t reduceAxes) noexcept = 0;
1190 virtual IGatherLayer* addGather(ITensor& data, ITensor& indices, int32_t axis) noexcept = 0;
1191 virtual IRaggedSoftMaxLayer* addRaggedSoftMax(ITensor& input, ITensor& bounds) noexcept = 0;
1192 virtual IMatrixMultiplyLayer* addMatrixMultiply(
1193 ITensor& input0, MatrixOperation op0, ITensor& input1, MatrixOperation op1) noexcept = 0;
1194 virtual IConstantLayer* addConstant(Dims const& dimensions, Weights weights) noexcept = 0;
1195 virtual IIdentityLayer* addIdentity(ITensor& input) noexcept = 0;
1196 virtual void removeTensor(ITensor& tensor) noexcept = 0;
1197 virtual void unmarkOutput(ITensor& tensor) noexcept = 0;
1198 virtual IPluginV2Layer* addPluginV2(ITensor* const* inputs, int32_t nbInputs, IPluginV2& plugin) noexcept = 0;
1199 virtual IPluginV3Layer* addPluginV3(ITensor* const* inputs, int32_t nbInputs, ITensor* const* shapeInputs,
1200 int32_t nbShapeInputs, IPluginV3& plugin) noexcept = 0;
1201 virtual ISliceLayer* addSlice(ITensor& input, Dims const& start, Dims const& size, Dims const& stride) noexcept = 0;
1202 virtual void setName(char const* name) noexcept = 0;
1203 virtual char const* getName() const noexcept = 0;
1204 virtual IShapeLayer* addShape(ITensor& input) noexcept = 0;
1205 virtual bool hasImplicitBatchDimension() const noexcept = 0;
1206 virtual bool markOutputForShapes(ITensor& tensor) noexcept = 0;
1207 virtual bool unmarkOutputForShapes(ITensor& tensor) noexcept = 0;
1208 virtual IParametricReLULayer* addParametricReLU(ITensor& input, ITensor& slope) noexcept = 0;
1209 virtual IConvolutionLayer* addConvolutionNd(
1210 ITensor& input, int64_t nbOutputMaps, Dims const& kernelSize, Weights kernelWeights, Weights biasWeights) noexcept
1211 = 0;
1212 virtual IPoolingLayer* addPoolingNd(ITensor& input, PoolingType type, Dims const& windowSize) noexcept = 0;
1213 virtual IDeconvolutionLayer* addDeconvolutionNd(
1214 ITensor& input, int64_t nbOutputMaps, Dims const& kernelSize, Weights kernelWeights, Weights biasWeights) noexcept
1215 = 0;
1216 virtual IScaleLayer* addScaleNd(
1217 ITensor& input, ScaleMode mode, Weights shift, Weights scale, Weights power, int32_t channelAxis) noexcept = 0;
1218 virtual IResizeLayer* addResize(ITensor& input) noexcept = 0;
1219 virtual ILoop* addLoop() noexcept = 0;
1220 virtual ISelectLayer* addSelect(ITensor& condition, ITensor& thenInput, ITensor& elseInput) noexcept = 0;
1221 virtual IPaddingLayer* addPaddingNd(ITensor& input, Dims const& prePadding, Dims const& postPadding) noexcept = 0;
1222 virtual bool setWeightsName(Weights weights, char const* name) noexcept = 0;
1223 virtual void setErrorRecorder(IErrorRecorder* recorder) noexcept = 0;
1224 virtual IErrorRecorder* getErrorRecorder() const noexcept = 0;
1225 virtual IGatherLayer* addGatherV2(ITensor& data, ITensor& indices, GatherMode mode) noexcept = 0;
1226 virtual IIfConditional* addIfConditional() noexcept = 0;
1227 virtual IScatterLayer* addScatter(ITensor& data, ITensor& indices, ITensor& updates, ScatterMode mode) noexcept = 0;
1228 virtual IEinsumLayer* addEinsum(ITensor* const* inputs, int32_t nbInputs, char const* equation) noexcept = 0;
1229 virtual IAssertionLayer* addAssertion(ITensor& condition, char const* message) noexcept = 0;
1230 virtual IOneHotLayer* addOneHot(ITensor& indices, ITensor& values, ITensor& depth, int32_t axis) noexcept = 0;
1231 virtual INonZeroLayer* addNonZero(ITensor& input) noexcept = 0;
1232 virtual IGridSampleLayer* addGridSample(ITensor& input, ITensor& grid) noexcept = 0;
1233 virtual INMSLayer* addNMS(ITensor& boxes, ITensor& scores, ITensor& maxOutputBoxesPerClass) noexcept = 0;
1234 virtual IReverseSequenceLayer* addReverseSequence(ITensor& input, ITensor& sequenceLens) noexcept = 0;
1235 virtual INormalizationLayer* addNormalization(
1236 ITensor& input, ITensor& scale, ITensor& bias, uint32_t axesMask) noexcept = 0;
1237 virtual ICastLayer* addCast(ITensor& input, DataType toType) noexcept = 0;
1238 virtual IBuilder& getBuilder() const noexcept = 0;
1239 virtual NetworkDefinitionCreationFlags getFlags() const noexcept = 0;
1240 virtual bool getFlag(NetworkDefinitionCreationFlag networkDefinitionCreationFlag) const noexcept = 0;
1241 virtual IQuantizeLayer* addQuantizeV2(ITensor& input, ITensor& scale, DataType outputType) noexcept = 0;
1242 virtual IDequantizeLayer* addDequantizeV2(ITensor& input, ITensor& scale, DataType outputType) noexcept = 0;
1243 virtual IFillLayer* addFillV2(Dims const& dimensions, FillOperation op, DataType outputType) noexcept = 0;
1244 virtual bool markDebug(ITensor& tensor) noexcept = 0;
1245 virtual bool unmarkDebug(ITensor& tensor) noexcept = 0;
1246 virtual bool isDebugTensor(ITensor const& tensor) const noexcept = 0;
1247 virtual bool markWeightsRefittable(char const* name) noexcept = 0;
1248 virtual bool unmarkWeightsRefittable(char const* name) noexcept = 0;
1249 virtual bool areWeightsMarkedRefittable(char const* name) const noexcept = 0;
1250 virtual ISqueezeLayer* addSqueeze(ITensor& input, ITensor& axes) noexcept = 0;
1251 virtual IUnsqueezeLayer* addUnsqueeze(ITensor& input, ITensor& axes) noexcept = 0;
1252 virtual IDynamicQuantizeLayer* addDynamicQuantize(
1253 ITensor& input, int32_t axis, int32_t blockSize, DataType toType, DataType scaleType) noexcept = 0;
1254 virtual ICumulativeLayer* addCumulative(
1255 ITensor& input, ITensor& axis, CumulativeOperation operation, bool exclusive, bool reverse) noexcept = 0;
1256 virtual bool markUnfusedTensorsAsDebugTensors() noexcept = 0;
1257 virtual bool unmarkUnfusedTensorsAsDebugTensors() noexcept = 0;
1258 virtual ITopKLayer* addTopKV2(
1259 ITensor& input, TopKOperation op, int32_t k, uint32_t reduceAxes, DataType indicesType) noexcept = 0;
1260 virtual INonZeroLayer* addNonZeroV2(ITensor& input, DataType indicesType) noexcept = 0;
1261 virtual INMSLayer* addNMSV2(
1262 ITensor& boxes, ITensor& scores, ITensor& maxOutputBoxesPerClass, DataType indicesType) noexcept = 0;
1263 TRT_DEPRECATED virtual IAttention* addAttention(
1264 ITensor& query, ITensor& key, ITensor& value, AttentionNormalizationOp normOp, bool isCausal) noexcept = 0;
1265 virtual IRotaryEmbeddingLayer* addRotaryEmbedding(ITensor& input, ITensor& cosCache, ITensor& sinCache,
1266 bool interleaved, int32_t rotaryEmbeddingDim) noexcept = 0;
1267 virtual IDynamicQuantizeLayer* addDynamicQuantizeV2(
1268 ITensor& input, Dims const& blockShape, DataType toType, DataType scaleType) noexcept = 0;
1269 virtual IKVCacheUpdateLayer* addKVCacheUpdate(
1270 ITensor& cache, ITensor& update, ITensor& writeIndices, KVCacheMode cacheMode) noexcept = 0;
1271 virtual INormalizationLayer* addNormalizationV2(
1272 ITensor& input, ITensor& scale, ITensor& bias, uint32_t axesMask) noexcept = 0;
1273 virtual IMoELayer* addMoE(
1274 ITensor& hiddenStates, ITensor& selectedExpertsForTokens, ITensor& scoresForSelectedExperts) noexcept = 0;
1275 virtual IDistCollectiveLayer* addDistCollective(ITensor& input, CollectiveOperation distCollectiveOp,
1276 ReduceOperation reduceOp, int64_t root, int64_t* groups, int64_t groupSize) noexcept = 0;
1277 virtual IAttention* addAttentionV2(ITensor& query, ITensor& key, ITensor& value, AttentionNormalizationOp normOp,
1278 CausalMaskKind causalKind) noexcept = 0;
1279 virtual ISqueezeLayer* addSqueezeV2(ITensor& input, ITensor* axes) noexcept = 0;
1280};
1281
1282class VTimingCache : public VRoot
1283{
1284public:
1285 virtual nvinfer1::IHostMemory* serialize() const noexcept = 0;
1286 virtual bool combine(ITimingCache const& inputCache, bool ignoreMismatch) noexcept = 0;
1287 virtual bool reset() noexcept = 0;
1288 virtual int64_t queryKeys(TimingCacheKey* keyBuffer, int64_t capacity) const noexcept = 0;
1289 virtual TimingCacheValue query(TimingCacheKey const& key) const noexcept = 0;
1290 virtual bool update(TimingCacheKey const& key, TimingCacheValue const& value) noexcept = 0;
1291};
1292
1293
1294class VBuilderConfig : public VRoot
1295{
1296public:
1297 virtual void setAvgTimingIterations(int32_t avgTiming) noexcept = 0;
1298 virtual int32_t getAvgTimingIterations() const noexcept = 0;
1299 virtual void setEngineCapability(EngineCapability capability) noexcept = 0;
1300 virtual EngineCapability getEngineCapability() const noexcept = 0;
1301 virtual void setFlags(BuilderFlags builderFlags) noexcept = 0;
1302 virtual BuilderFlags getFlags() const noexcept = 0;
1303 virtual void clearFlag(BuilderFlag builderFlag) noexcept = 0;
1304 virtual void setFlag(BuilderFlag builderFlag) noexcept = 0;
1305 virtual bool getFlag(BuilderFlag builderFlag) const noexcept = 0;
1306 virtual void setDeviceType(ILayer const* layer, DeviceType deviceType) noexcept = 0;
1307 virtual DeviceType getDeviceType(ILayer const* layer) const noexcept = 0;
1308 virtual bool isDeviceTypeSet(ILayer const* layer) const noexcept = 0;
1309 virtual void resetDeviceType(ILayer const* layer) noexcept = 0;
1310 virtual bool canRunOnDLA(ILayer const* layer) const noexcept = 0;
1311 virtual void setDLACore(int32_t dlaCore) noexcept = 0;
1312 virtual int32_t getDLACore() const noexcept = 0;
1313 virtual void setDefaultDeviceType(DeviceType deviceType) noexcept = 0;
1314 virtual DeviceType getDefaultDeviceType() const noexcept = 0;
1315 virtual void reset() noexcept = 0;
1316 virtual void setProfileStream(const cudaStream_t stream) noexcept = 0;
1317 virtual cudaStream_t getProfileStream() const noexcept = 0;
1318 virtual int32_t addOptimizationProfile(IOptimizationProfile const* profile) noexcept = 0;
1319 virtual int32_t getNbOptimizationProfiles() const noexcept = 0;
1320 virtual void setProfilingVerbosity(ProfilingVerbosity verbosity) noexcept = 0;
1321 virtual ProfilingVerbosity getProfilingVerbosity() const noexcept = 0;
1322 virtual bool setTacticSources(TacticSources tacticSources) noexcept = 0;
1323 virtual TacticSources getTacticSources() const noexcept = 0;
1324 virtual nvinfer1::ITimingCache* createTimingCache(void const* blob, std::size_t size) const noexcept = 0;
1325 virtual bool setTimingCache(ITimingCache const& cache, bool ignoreMismatch) noexcept = 0;
1326 virtual nvinfer1::ITimingCache const* getTimingCache() const noexcept = 0;
1327 virtual void setMemoryPoolLimit(MemoryPoolType pool, std::size_t poolSize) noexcept = 0;
1328 virtual std::size_t getMemoryPoolLimit(MemoryPoolType pool) const noexcept = 0;
1329 virtual void setPreviewFeature(PreviewFeature feature, bool enable) noexcept = 0;
1330 virtual bool getPreviewFeature(PreviewFeature feature) const noexcept = 0;
1331 virtual void setBuilderOptimizationLevel(int32_t level) noexcept = 0;
1332 virtual int32_t getBuilderOptimizationLevel() const noexcept = 0;
1333 virtual void setHardwareCompatibilityLevel(HardwareCompatibilityLevel hardwareCompatibilityLevel) noexcept = 0;
1334 virtual HardwareCompatibilityLevel getHardwareCompatibilityLevel() const noexcept = 0;
1335 virtual void setPluginsToSerialize(char const* const* paths, int32_t nbPaths) noexcept = 0;
1336 virtual char const* getPluginToSerialize(int32_t index) const noexcept = 0;
1337 virtual int32_t getNbPluginsToSerialize() const noexcept = 0;
1338 virtual bool setMaxAuxStreams(int32_t nbStreams) noexcept = 0;
1339 virtual int32_t getMaxAuxStreams() const noexcept = 0;
1340 virtual void setProgressMonitor(IProgressMonitor* monitor) noexcept = 0;
1341 virtual IProgressMonitor* getProgressMonitor() const noexcept = 0;
1342 virtual void setRuntimePlatform(RuntimePlatform runtimePlatform) noexcept = 0;
1343 virtual RuntimePlatform getRuntimePlatform() const noexcept = 0;
1344 virtual void setMaxNbTactics(int32_t maxTactics) noexcept = 0;
1345 virtual int32_t getMaxNbTactics() const noexcept = 0;
1346 virtual bool setTilingOptimizationLevel(TilingOptimizationLevel level) noexcept = 0;
1347 virtual TilingOptimizationLevel getTilingOptimizationLevel() const noexcept = 0;
1348 virtual bool setL2LimitForTiling(int64_t size) noexcept = 0;
1349 virtual int64_t getL2LimitForTiling() const noexcept = 0;
1350 virtual bool setRemoteAutoTuningConfig(char const* config) noexcept = 0;
1351 virtual char const* getRemoteAutoTuningConfig() const noexcept = 0;
1352 virtual bool setBuildRoute(char const* buildRoute) noexcept = 0;
1353 virtual char const* getBuildRoute() const noexcept = 0;
1354 virtual char const* getAllBuildRoutes() const noexcept = 0;
1355};
1356
1357class VSerializationConfig : public VRoot
1358{
1359public:
1360 virtual bool setFlags(SerializationFlags serializationFlags) noexcept = 0;
1361 virtual SerializationFlags getFlags() const noexcept = 0;
1362 virtual bool clearFlag(SerializationFlag serializationFlag) noexcept = 0;
1363 virtual bool setFlag(SerializationFlag serializationFlag) noexcept = 0;
1364 virtual bool getFlag(SerializationFlag serializationFlag) const noexcept = 0;
1365};
1366
1367class VBuilder : public VRoot
1368{
1369public:
1370 virtual int32_t getMaxDLABatchSize() const noexcept = 0;
1371 virtual int32_t getNbDLACores() const noexcept = 0;
1372 virtual void setGpuAllocator(IGpuAllocator* allocator) noexcept = 0;
1373 virtual nvinfer1::IBuilderConfig* createBuilderConfig() noexcept = 0;
1374 virtual nvinfer1::INetworkDefinition* createNetworkV2(NetworkDefinitionCreationFlags flags) noexcept = 0;
1375 virtual nvinfer1::IOptimizationProfile* createOptimizationProfile() noexcept = 0;
1376 virtual void setErrorRecorder(IErrorRecorder* recorder) noexcept = 0;
1377 virtual IErrorRecorder* getErrorRecorder() const noexcept = 0;
1378 virtual void reset() noexcept = 0;
1379 virtual nvinfer1::IHostMemory* buildSerializedNetwork(
1380 INetworkDefinition& network, IBuilderConfig& config) noexcept = 0;
1381 virtual bool isNetworkSupported(INetworkDefinition const& network, IBuilderConfig const& config) const noexcept = 0;
1382 virtual ILogger* getLogger() const noexcept = 0;
1383 virtual bool setMaxThreads(int32_t maxThreads) noexcept = 0;
1384 virtual int32_t getMaxThreads() const noexcept = 0;
1385 virtual IPluginRegistry& getPluginRegistry() noexcept = 0;
1386 virtual ICudaEngine* buildEngineWithConfig(INetworkDefinition& network, IBuilderConfig& config) noexcept = 0;
1387 virtual bool buildSerializedNetworkToStream(
1388 INetworkDefinition& network, IBuilderConfig& config, IStreamWriter& writer) noexcept = 0;
1389 virtual nvinfer1::IHostMemory* buildSerializedNetworkWithKernelText(
1390 INetworkDefinition& network, IBuilderConfig& config, IHostMemory*& kernelText) noexcept
1391 = 0;
1392};
1393
1394class VRuntimeConfig : public VRoot
1395{
1396public:
1397 virtual IRuntimeConfig* getPImpl() noexcept = 0;
1398 virtual void setExecutionContextAllocationStrategy(ExecutionContextAllocationStrategy strategy) noexcept = 0;
1399 virtual ExecutionContextAllocationStrategy getExecutionContextAllocationStrategy() const noexcept = 0;
1400};
1401
1402
1403class VDistCollectiveLayer : public VRoot
1404{
1405}; // VDistCollectiveLayer
1406
1407} // namespace apiv
1408} // namespace nvinfer1
1409
1410// @endcond
1411
1412#endif // NV_INFER_RUNTIME_IMPL_H
TENSORRTAPI nvinfer1::IPluginRegistry * getPluginRegistry() noexcept
Return the plugin registry.
TENSORRTAPI nvinfer1::ILogger * getLogger() noexcept
Return the logger object.
#define TRT_NODISCARD
A stand-in for [[nodiscard]] and [[nodiscard(REASON)]] that works with older compilers.
Definition: NvInferRuntimeBase.h:57
#define TRT_DEPRECATED
Definition: NvInferRuntimeBase.h:42
Structure to define the dimensions of a tensor.
User-implemented callback for notification when value of a debug tensor is updated.
Reference counted application-implemented error reporting interface for TensorRT objects.
Application-implemented class for controlling allocation on the GPU.
Callback from ExecutionContext::enqueueV3()
Plugin class for the V3 generation of user-implemented layers.
Application-implemented interface for profiling.
Application-implemented progress reporting interface for TensorRT.
Application-implemented class for reading data in a stream-based manner.
Application-implemented class for reading data in a stream-based manner asynchronously....
Application-implemented class for writing data in a stream-based manner.
Class to handle library allocated memory that is accessible to the user.
Definition: NvInferRuntime.h:150
The TensorRT API version 1 namespace.
Definition: NvInferSafePlugin.h:33
uint32_t TacticSources
Represents a collection of one or more TacticSource values combine using bitwise-OR operations.
Definition: NvInferRuntime.h:2910
v_1_0::IOutputAllocator IOutputAllocator
Definition: NvInferRuntime.h:4036
ResizeSelector
The coordinate selector when resize to single pixel output.
Definition: NvInfer.h:3979
EngineCapability
List of supported engine capability flows.
Definition: NvInferRuntime.h:76
DimensionOperation
An operation on two IDimensionExpr, which represent integer expressions used in dimension computation...
Definition: NvInferRuntime.h:189
MemoryPoolType
The type for memory pools used by TensorRT.
Definition: NvInfer.h:10334
AttentionIOForm
Enumerates the layout of the input/output tensors in an Attention layer.
Definition: NvInfer.h:6796
ScaleMode
Controls how shift, scale and power are applied in a Scale layer.
Definition: NvInfer.h:1649
RuntimePlatform
Describes the intended runtime platform (operating system and CPU architecture) for the execution of ...
Definition: NvInfer.h:9958
TensorIOMode
Definition of tensor IO Mode.
Definition: NvInferRuntimeBase.h:664
HardwareCompatibilityLevel
Describes requirements of compatibility with GPU architectures other than that of the GPU on which th...
Definition: NvInfer.h:10447
CumulativeOperation
Enumerates the cumulative operations that may be performed by a Cumulative layer.
Definition: NvInfer.h:6604
SerializationFlag
List of valid flags that the engine can enable when serializing the bytes.
Definition: NvInferRuntime.h:2951
BoundingBoxFormat
Representation of bounding box data used for the Boxes input tensor in INMSLayer.
Definition: NvInfer.h:6165
v_1_0::IPluginV3 IPluginV3
Definition: NvInferPluginBase.h:273
UnaryOperation
Enumerates the unary operations that may be performed by a Unary layer.
Definition: NvInfer.h:2607
DLAWorkspaceAllocationStrategy
Describes how DLA workspace memory is allocated.
Definition: NvInferRuntime.h:1576
v_1_0::IStreamWriter IStreamWriter
Definition: NvInferRuntime.h:710
v_1_0::IProfiler IProfiler
Definition: NvInferRuntime.h:1320
v_1_0::IStreamReaderV2 IStreamReaderV2
Definition: NvInferRuntime.h:787
ActivationType
Enumerates the types of activation to perform in an activation layer.
Definition: NvInfer.h:143
uint32_t TempfileControlFlags
Represents a collection of one or more TempfileControlFlag values combined using bitwise-OR operation...
Definition: NvInferRuntime.h:1398
FillOperation
Enumerates the tensor fill operations that may performed by a fill layer.
Definition: NvInfer.h:4982
EngineStat
The kind of engine statistics that queried from the ICudaEngine.
Definition: NvInferRuntime.h:3121
ResizeRoundMode
The rounding mode for nearest neighbor resize.
Definition: NvInfer.h:4006
v_1_0::ILogger ILogger
Definition: NvInferRuntimeBase.h:125
CausalMaskKind
Enumerates the causal mask alignment orientation for the attention.
Definition: NvInfer.h:6768
PaddingMode
Enumerates the modes of padding to perform in convolution, deconvolution and pooling layer,...
Definition: NvInfer.h:826
TripLimit
Enum that describes kinds of trip limits.
Definition: NvInfer.h:4364
uint32_t NetworkDefinitionCreationFlags
Represents one or more NetworkDefinitionCreationFlag flags using binary OR operations....
Definition: NvInfer.h:11533
PreviewFeature
Define preview features.
Definition: NvInfer.h:10413
TilingOptimizationLevel
Define the optimization levels for Tiling.
Definition: NvInfer.h:10500
DataType
The type of weights and tensors. The datatypes other than kBOOL, kINT32, and kINT64 are "activation d...
Definition: NvInferRuntimeBase.h:151
uint32_t BuilderFlags
Represents one or more BuilderFlag values using binary OR operations, e.g., 1U << BuilderFlag::kDEBUG...
Definition: NvInfer.h:9988
DeviceType
The device that this layer/network will execute on.
Definition: NvInferRuntime.h:1352
LayerType
The type values of layer classes.
Definition: NvInfer.h:58
SampleMode
Controls how ISliceLayer and IGridSample handle out-of-bounds coordinates.
Definition: NvInfer.h:3109
GatherMode
Control form of IGatherLayer.
Definition: NvInfer.h:2348
v_1_0::IDebugListener IDebugListener
Definition: NvInferRuntime.h:4077
MoEActType
Enumerates the activation type for the MoE layer.
Definition: NvInfer.h:7685
WeightsRole
How a layer uses particular Weights.
Definition: NvInferRuntime.h:1330
uint32_t TensorFormats
It is capable of representing one or more TensorFormat by binary OR operations, e....
Definition: NvInfer.h:135
ProfilingVerbosity
List of verbosity levels of layer information exposed in NVTX annotations and in IEngineInspector.
Definition: NvInferRuntime.h:2922
NetworkDefinitionCreationFlag
List of immutable network properties expressed at network creation time. NetworkDefinitionCreationFla...
Definition: NvInfer.h:11544
ElementWiseOperation
Enumerates the binary operations that may be performed by an ElementWise layer.
Definition: NvInfer.h:2259
CollectiveOperation
Enumerates the collective operations that may be performed by a DistCollective layer.
Definition: NvInfer.h:2737
uint32_t SerializationFlags
Represents one or more SerializationFlag values using binary OR operations, e.g., 1U << Serialization...
Definition: NvInferRuntime.h:2941
InterpolationMode
Enumerates various modes of interpolation.
Definition: NvInfer.h:3903
BuilderFlag
List of valid modes that the builder can enable when creating an engine from a network definition.
Definition: NvInfer.h:9998
TensorFormat
Format of the input/output tensors.
Definition: NvInferRuntime.h:1432
ExecutionContextAllocationStrategy
Different memory allocation behaviors for IExecutionContext.
Definition: NvInferRuntime.h:3058
TopKOperation
Enumerates the operations that may be performed by a TopK layer.
Definition: NvInfer.h:3394
ReduceOperation
Enumerates the reduce operations that may be performed by a Reduce layer.
Definition: NvInfer.h:2709
LayerInformationFormat
The format in which the IEngineInspector prints the layer information.
Definition: NvInferRuntime.h:5041
ScatterMode
Control form of IScatterLayer.
Definition: NvInfer.h:5892
MatrixOperation
Enumerates the operations that may be performed on a tensor by IMatrixMultiplyLayer before multiplica...
Definition: NvInfer.h:3549
ResizeCoordinateTransformation
The resize coordinate transformation function.
Definition: NvInfer.h:3928
LoopOutput
Enum that describes kinds of loop outputs.
Definition: NvInfer.h:4336
KVCacheMode
Enumerates the KVCache modes that may be performed by a KVCacheUpdate layer.
Definition: NvInfer.h:7532
v_1_0::IStreamReader IStreamReader
Definition: NvInferRuntime.h:700
PoolingType
The type of pooling to perform in a pooling layer.
Definition: NvInfer.h:1263
v_1_0::IProgressMonitor IProgressMonitor
Definition: NvInfer.h:10613
TensorLocation
The location for tensor data storage, device or host.
Definition: NvInferRuntime.h:214
OptProfileSelector
When setting or querying optimization profile parameters (such as shape tensor inputs or dynamic dime...
Definition: NvInferRuntime.h:2631
AttentionNormalizationOp
Enumerates the operations that may be performed by the normalization in the attention subgraph.
Definition: NvInfer.h:6736

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