blob: c7adc6c449f61f70625d4a202838620f6358d164 [file] [log] [blame]
Kevin May42477c12020-03-26 13:34:14 +00001//
2// Copyright © 2020 Arm Ltd. All rights reserved.
3// SPDX-License-Identifier: MIT
4//
Sadik Armagand7be72e2020-04-23 12:56:05 +01005// Note: the ArmnnFencedExecutionCallback and code snippet in the executeFenced() function
6// in this file is based on Android code
7// under the Apache 2.0 license. See comments below for details.
8//
Kevin May42477c12020-03-26 13:34:14 +00009
10#define LOG_TAG "ArmnnDriver"
11
12#include "ArmnnPreparedModel_1_3.hpp"
13#include "Utils.hpp"
14
15#include <Utils.h>
Sadik Armagand7be72e2020-04-23 12:56:05 +010016#include <android/sync.h>
Kevin May42477c12020-03-26 13:34:14 +000017#include <boost/format.hpp>
18#include <log/log.h>
19#include <OperationsUtils.h>
20#include <ExecutionBurstServer.h>
21#include <ValidateHal.h>
22
23#include <cassert>
24#include <cinttypes>
25
26using namespace android;
27using namespace android::hardware;
28
29namespace {
30
31static const Timing g_NoTiming = {.timeOnDevice = UINT64_MAX, .timeInDriver = UINT64_MAX};
32using namespace armnn_driver;
33using TimePoint = std::chrono::steady_clock::time_point;
34
35TimePoint Now()
36{
37 return std::chrono::steady_clock::now();
38}
39
40unsigned long MicrosecondsDuration(TimePoint endPoint, TimePoint startPoint)
41{
42 return static_cast<unsigned long>(std::chrono::duration_cast<std::chrono::microseconds>(
43 endPoint - startPoint).count());
44}
45
46void NotifyCallbackAndCheck(const ::android::sp<V1_0::IExecutionCallback>& callback,
47 V1_3::ErrorStatus errorStatus,
48 std::vector<OutputShape>,
49 const Timing,
50 std::string callingFunction)
51{
52 Return<void> returned = callback->notify(convertToV1_0(errorStatus));
53 // This check is required, if the callback fails and it isn't checked it will bring down the service
54 if (!returned.isOk())
55 {
56 ALOGE("ArmnnDriver::%s: hidl callback failed to return properly: %s",
57 callingFunction.c_str(), returned.description().c_str());
58 }
59}
60
61void NotifyCallbackAndCheck(const ::android::sp<V1_2::IExecutionCallback>& callback,
62 V1_3::ErrorStatus errorStatus,
63 std::vector<OutputShape> outputShapes,
64 const Timing timing,
65 std::string callingFunction)
66{
67 Return<void> returned = callback->notify_1_2(convertToV1_0(errorStatus), outputShapes, timing);
68 // This check is required, if the callback fails and it isn't checked it will bring down the service
69 if (!returned.isOk())
70 {
71 ALOGE("ArmnnDriver::%s: hidl callback failed to return properly: %s",
72 callingFunction.c_str(), returned.description().c_str());
73 }
74}
75
76void NotifyCallbackAndCheck(const ::android::sp<V1_3::IExecutionCallback>& callback,
77 V1_3::ErrorStatus errorStatus,
78 std::vector<OutputShape> outputShapes,
79 const Timing timing,
80 std::string callingFunction)
81{
82 Return<void> returned = callback->notify_1_3(errorStatus, outputShapes, timing);
83 // This check is required, if the callback fails and it isn't checked it will bring down the service
84 if (!returned.isOk())
85 {
86 ALOGE("ArmnnDriver::%s: hidl callback failed to return properly: %s",
87 callingFunction.c_str(), returned.description().c_str());
88 }
89}
90
91bool ValidateRequestArgument(const RequestArgument& requestArg, const armnn::TensorInfo& tensorInfo)
92{
93 if (requestArg.dimensions.size() != 0)
94 {
95 if (requestArg.dimensions.size() != tensorInfo.GetNumDimensions())
96 {
97 ALOGE("Mismatched dimensions (request argument: %zu, expected: %u)",
98 requestArg.dimensions.size(), tensorInfo.GetNumDimensions());
99 return false;
100 }
101
102 for (unsigned int d = 0; d < tensorInfo.GetNumDimensions(); ++d)
103 {
104 if (requestArg.dimensions[d] != tensorInfo.GetShape()[d])
105 {
106 ALOGE("Mismatched size for dimension %d (request argument: %u, expected %u)",
107 d, requestArg.dimensions[d], tensorInfo.GetShape()[d]);
108 return false;
109 }
110 }
111 }
112
113 return true;
114}
115
116armnn::Tensor GetTensorForRequestArgument(const RequestArgument& requestArg,
117 const armnn::TensorInfo& tensorInfo,
118 const std::vector<::android::nn::RunTimePoolInfo>& requestPools)
119{
120 if (!ValidateRequestArgument(requestArg, tensorInfo))
121 {
122 return armnn::Tensor();
123 }
124
125 return armnn::Tensor(tensorInfo, GetMemoryFromPool(requestArg.location, requestPools));
126}
127
128inline std::string BuildTensorName(const char* tensorNamePrefix, std::size_t index)
129{
130 return tensorNamePrefix + std::to_string(index);
131}
132
133} // anonymous namespace
134
135using namespace android::hardware;
136
137namespace armnn_driver
138{
139
140template<typename HalVersion>
Narumol Prangnawaratcad4e912020-06-02 12:07:43 +0100141RequestThread_1_3<ArmnnPreparedModel_1_3, HalVersion, CallbackContext_1_3>
Kevin May42477c12020-03-26 13:34:14 +0000142 ArmnnPreparedModel_1_3<HalVersion>::m_RequestThread;
143
144template<typename HalVersion>
145template<typename TensorBindingCollection>
146void ArmnnPreparedModel_1_3<HalVersion>::DumpTensorsIfRequired(char const* tensorNamePrefix,
147 const TensorBindingCollection& tensorBindings)
148{
149 if (!m_RequestInputsAndOutputsDumpDir.empty())
150 {
151 const std::string requestName = boost::str(boost::format("%1%_%2%.dump") % m_NetworkId % m_RequestCount);
152 for (std::size_t i = 0u; i < tensorBindings.size(); ++i)
153 {
154 DumpTensor(m_RequestInputsAndOutputsDumpDir,
155 requestName,
156 BuildTensorName(tensorNamePrefix, i),
157 tensorBindings[i].second);
158 }
159 }
160}
161
162template<typename HalVersion>
163ArmnnPreparedModel_1_3<HalVersion>::ArmnnPreparedModel_1_3(armnn::NetworkId networkId,
164 armnn::IRuntime* runtime,
165 const V1_3::Model& model,
166 const std::string& requestInputsAndOutputsDumpDir,
Narumol Prangnawaratcad4e912020-06-02 12:07:43 +0100167 const bool gpuProfilingEnabled,
168 V1_3::Priority priority)
Kevin May42477c12020-03-26 13:34:14 +0000169 : m_NetworkId(networkId)
170 , m_Runtime(runtime)
171 , m_Model(model)
172 , m_RequestCount(0)
173 , m_RequestInputsAndOutputsDumpDir(requestInputsAndOutputsDumpDir)
174 , m_GpuProfilingEnabled(gpuProfilingEnabled)
Narumol Prangnawaratcad4e912020-06-02 12:07:43 +0100175 , m_ModelPriority(priority)
Kevin May42477c12020-03-26 13:34:14 +0000176{
177 // Enable profiling if required.
178 m_Runtime->GetProfiler(m_NetworkId)->EnableProfiling(m_GpuProfilingEnabled);
179}
180
181template<typename HalVersion>
182ArmnnPreparedModel_1_3<HalVersion>::~ArmnnPreparedModel_1_3()
183{
184 // Get a hold of the profiler used by this model.
185 std::shared_ptr<armnn::IProfiler> profiler = m_Runtime->GetProfiler(m_NetworkId);
186
187 // Unload the network associated with this model.
188 m_Runtime->UnloadNetwork(m_NetworkId);
189
190 // Dump the profiling info to a file if required.
191 DumpJsonProfilingIfRequired(m_GpuProfilingEnabled, m_RequestInputsAndOutputsDumpDir, m_NetworkId, profiler.get());
192}
193
194template<typename HalVersion>
195Return <V1_0::ErrorStatus> ArmnnPreparedModel_1_3<HalVersion>::execute(const V1_0::Request& request,
196 const ::android::sp<V1_0::IExecutionCallback>& callback)
197{
198 if (callback.get() == nullptr)
199 {
200 ALOGE("ArmnnPreparedModel_1_3::execute invalid callback passed");
201 return V1_0::ErrorStatus::INVALID_ARGUMENT;
202 }
203
204 auto cb = [callback](V1_3::ErrorStatus errorStatus,
205 std::vector<OutputShape> outputShapes,
206 const Timing& timing,
207 std::string callingFunction)
208 {
209 NotifyCallbackAndCheck(callback, errorStatus, outputShapes, timing, callingFunction);
210 };
211
212
213 return convertToV1_0(Execute(convertToV1_3(request), MeasureTiming::NO, cb));
214}
215
216template<typename HalVersion>
217Return <V1_0::ErrorStatus> ArmnnPreparedModel_1_3<HalVersion>::execute_1_2(
218 const V1_0::Request& request,
219 MeasureTiming measureTiming,
220 const sp<V1_2::IExecutionCallback>& callback)
221{
222 if (callback.get() == nullptr)
223 {
224 ALOGE("ArmnnPreparedModel_1_3::execute_1_2 invalid callback passed");
225 return V1_0::ErrorStatus::INVALID_ARGUMENT;
226 }
227
228 auto cb = [callback](V1_3::ErrorStatus errorStatus,
229 std::vector<OutputShape> outputShapes,
230 const Timing& timing,
231 std::string callingFunction)
232 {
233 NotifyCallbackAndCheck(callback, errorStatus, outputShapes, timing, callingFunction);
234 };
235
236 return convertToV1_0(Execute(convertToV1_3(request), measureTiming, cb));
237}
238
239template<typename HalVersion>
240Return <V1_3::ErrorStatus> ArmnnPreparedModel_1_3<HalVersion>::execute_1_3(
241 const V1_3::Request& request,
242 MeasureTiming measureTiming,
243 const V1_3::OptionalTimePoint&,
Kevin May352d8382020-03-31 15:03:42 +0100244 const V1_3::OptionalTimeoutDuration&,
Kevin May42477c12020-03-26 13:34:14 +0000245 const sp<V1_3::IExecutionCallback>& callback)
246{
247 if (callback.get() == nullptr)
248 {
249 ALOGE("ArmnnPreparedModel_1_3::execute_1_3 invalid callback passed");
250 return V1_3::ErrorStatus::INVALID_ARGUMENT;
251 }
252
253 auto cb = [callback](V1_3::ErrorStatus errorStatus,
254 std::vector<OutputShape> outputShapes,
255 const Timing& timing,
256 std::string callingFunction)
257 {
258 NotifyCallbackAndCheck(callback, errorStatus, outputShapes, timing, callingFunction);
259 };
260
261 return Execute(request, measureTiming, cb);
262}
263
Sadik Armagand7be72e2020-04-23 12:56:05 +0100264/// This class is inspired by the sample implementation in Android named SampleFencedExecutionCallback.
265/// The original code is licensed under Apache-2.0 and can be found at the following link:
266/// https://android.googlesource.com/platform/frameworks/ml/+/master/nn/driver/sample/SampleDriver.h
267class ArmnnFencedExecutionCallback : public V1_3::IFencedExecutionCallback
268{
269public:
270 ArmnnFencedExecutionCallback(V1_3::ErrorStatus errorStatus, Timing timing, Timing fenceTiming)
271 : m_ErrorStatus(errorStatus), m_Timing(timing), m_FenceTiming(fenceTiming) {}
272 ~ArmnnFencedExecutionCallback() {}
273
274 Return<void> getExecutionInfo(getExecutionInfo_cb callback) override
275 {
276 callback(m_ErrorStatus, m_Timing, m_FenceTiming);
277 return Void();
278 }
279private:
280 V1_3::ErrorStatus m_ErrorStatus;
281 Timing m_Timing;
282 Timing m_FenceTiming;
283};
284
Kevin May42477c12020-03-26 13:34:14 +0000285template<typename HalVersion>
Sadik Armagand7be72e2020-04-23 12:56:05 +0100286Return<void> ArmnnPreparedModel_1_3<HalVersion>::executeFenced(const V1_3::Request& request,
287 const hidl_vec<hidl_handle>& fenceWaitFor,
288 MeasureTiming measureTiming,
Sadik Armagan7b9ce8d2020-04-21 10:39:28 +0100289 const OptionalTimePoint& deadline,
290 const OptionalTimeoutDuration& loopTimeoutDuration,
Kevin May352d8382020-03-31 15:03:42 +0100291 const OptionalTimeoutDuration&,
Kevin May42477c12020-03-26 13:34:14 +0000292 executeFenced_cb cb)
293{
Sadik Armagan7b9ce8d2020-04-21 10:39:28 +0100294 ALOGV("ArmnnPreparedModel_1_3::executeFenced(...)");
295 if (cb == nullptr)
296 {
297 ALOGE("ArmnnPreparedModel_1_3::executeFenced invalid callback passed");
298 cb(ErrorStatus::INVALID_ARGUMENT, hidl_handle(nullptr), nullptr);
299 return Void();
300 }
301
302 if (deadline.getDiscriminator() != OptionalTimePoint::hidl_discriminator::none)
303 {
304 ALOGW("ArmnnPreparedModel_1_3::executeFenced parameter deadline is set but not supported.");
305 }
306
307 if (loopTimeoutDuration.getDiscriminator() != OptionalTimeoutDuration::hidl_discriminator::none)
308 {
309 ALOGW("ArmnnPreparedModel_1_3::executeFenced parameter loopTimeoutDuration is set but not supported.");
310 }
311
Sadik Armagand7be72e2020-04-23 12:56:05 +0100312 ExecutionContext_1_3 ctx;
313 if (measureTiming == MeasureTiming::YES)
314 {
315 ctx.measureTimings = measureTiming;
316 ctx.driverStart = Now();
317 }
318
319 ALOGV("ArmnnPreparedModel_1_3::executeFenced(): %s", GetModelSummary(m_Model).c_str());
320 m_RequestCount++;
321
322 if (!android::nn::validateRequest(request, m_Model))
323 {
324 cb(ErrorStatus::INVALID_ARGUMENT, hidl_handle(nullptr), nullptr);
325 return Void();
326 }
327
328 if (!m_RequestInputsAndOutputsDumpDir.empty())
329 {
330 ALOGD("Dumping inputs and outputs for request %" PRIuPTR, reinterpret_cast<std::uintptr_t>(&cb));
331 }
332
333 // This code snippet is inspired by the sample implementation in Android named SampleDriver::executeFenced()
334 // function. The original code is licensed under Apache-2.0 and can be found at the following link:
335 // https://android.googlesource.com/platform/frameworks/ml/+/master/nn/driver/sample/SampleDriver.cpp
336 const auto fenceSize = fenceWaitFor.size();
337 for (unsigned int index = 0; index < fenceSize; ++index)
338 {
339 auto fenceNativeHandle = fenceWaitFor[index].getNativeHandle();
340 if (!fenceNativeHandle)
341 {
342 cb(ErrorStatus::INVALID_ARGUMENT, hidl_handle(nullptr), nullptr);
343 return Void();
344 }
345
346 if (sync_wait(fenceNativeHandle->data[0], -1) < 0)
347 {
348 ALOGE("ArmnnPreparedModel_1_3::executeFenced sync fence failed.");
349 cb(ErrorStatus::GENERAL_FAILURE, hidl_handle(nullptr), nullptr);
350 return Void();
351 }
352 }
353
354 TimePoint fenceExecutionStart;
355 if (measureTiming == MeasureTiming::YES)
356 {
357 fenceExecutionStart = Now();
358 }
359
360 // map the memory pool into shared pointers
361 // use a shared memory pools vector on the heap, as it is passed to the request thread
362 auto memPools = std::make_shared<std::vector<android::nn::RunTimePoolInfo>>();
363
364 // allocate the tensors on the heap, as they are passed to the request thread
365 auto inputs = std::make_shared<armnn::InputTensors>();
366 auto outputs = std::make_shared<armnn::OutputTensors>();
367
368 auto [status, outShapes, timings, message] = PrepareMemoryForIO(*inputs, *outputs, *memPools, request);
369 if (status != V1_3::ErrorStatus::NONE)
370 {
371 cb(ErrorStatus::INVALID_ARGUMENT, hidl_handle(nullptr), nullptr);
372 return Void();
373 }
374
375 ALOGV("ArmnnPreparedModel_1_3::executeFenced(...) before ExecuteGraph");
376
377 // call it with nullCallback for now as we will report the error status from here..
378 auto nullCallback = [](V1_3::ErrorStatus, std::vector<OutputShape>, const Timing&, std::string) {};
379 CallbackContext_1_3 cbCtx;
380 cbCtx.callback = nullCallback;
381 cbCtx.ctx = ctx;
382
383 auto errorStatus = ExecuteGraph(memPools, *inputs, *outputs, cbCtx);
384 if (errorStatus != V1_3::ErrorStatus::NONE)
385 {
386 cb(errorStatus, hidl_handle(nullptr), nullptr);
387 return Void();
388 }
389 ALOGV("ArmnnPreparedModel_1_3::executeFenced(...) after ExecuteGraph");
390
391 Timing timing = g_NoTiming;
392 Timing fenceTiming = g_NoTiming;
393 if (measureTiming == MeasureTiming::YES)
394 {
Sadik Armagand7be72e2020-04-23 12:56:05 +0100395 fenceTiming.timeOnDevice = MicrosecondsDuration(ctx.deviceEnd, ctx.deviceStart);
Kevin May949a69e2020-04-24 10:21:40 +0100396 fenceTiming.timeInDriver = MicrosecondsDuration(ctx.driverEnd, fenceExecutionStart);
397 ALOGV("ArmnnPreparedModel_1_3::fenceFinishExecutionTiming - Device = %lu Driver = %lu",
Sadik Armagand7be72e2020-04-23 12:56:05 +0100398 fenceTiming.timeOnDevice, fenceTiming.timeInDriver);
399 }
400
401 sp<ArmnnFencedExecutionCallback> armnnFencedExecutionCallback =
402 new ArmnnFencedExecutionCallback(ErrorStatus::NONE, timing, fenceTiming);
403 cb(ErrorStatus::NONE, hidl_handle(nullptr), armnnFencedExecutionCallback);
Kevin May42477c12020-03-26 13:34:14 +0000404 return Void();
405}
406
407template<typename HalVersion>
408Return<V1_3::ErrorStatus> ArmnnPreparedModel_1_3<HalVersion>::PrepareMemoryForInputs(
409 armnn::InputTensors& inputs,
410 const V1_3::Request& request,
411 const std::vector<android::nn::RunTimePoolInfo>& memPools)
412{
413 inputs.reserve(request.inputs.size());
414 for (unsigned int i = 0; i < request.inputs.size(); i++)
415 {
416 const auto& inputArg = request.inputs[i];
417
418 const armnn::TensorInfo inputTensorInfo = m_Runtime->GetInputTensorInfo(m_NetworkId, i);
419 const armnn::Tensor inputTensor = GetTensorForRequestArgument(inputArg, inputTensorInfo, memPools);
420
421 if (inputTensor.GetMemoryArea() == nullptr)
422 {
423 ALOGE("Cannot execute request. Error converting request input %u to tensor", i);
424 return V1_3::ErrorStatus::GENERAL_FAILURE;
425 }
426
427 inputs.emplace_back(i, inputTensor);
428 }
429
430 return V1_3::ErrorStatus::NONE;
431}
432
433template<typename HalVersion>
434Return<V1_3::ErrorStatus> ArmnnPreparedModel_1_3<HalVersion>::PrepareMemoryForOutputs(
435 armnn::OutputTensors& outputs,
436 std::vector<OutputShape> &outputShapes,
437 const V1_3::Request& request,
438 const std::vector<android::nn::RunTimePoolInfo>& memPools)
439{
440 outputs.reserve(request.outputs.size());
441 for (unsigned int i = 0; i < request.outputs.size(); i++)
442 {
443 const auto& outputArg = request.outputs[i];
444
445 const armnn::TensorInfo outputTensorInfo = m_Runtime->GetOutputTensorInfo(m_NetworkId, i);
446 const armnn::Tensor outputTensor = GetTensorForRequestArgument(outputArg, outputTensorInfo, memPools);
447 if (outputTensor.GetMemoryArea() == nullptr)
448 {
449 ALOGE("Cannot execute request. Error converting request output %u to tensor", i);
450 return V1_3::ErrorStatus::GENERAL_FAILURE;
451 }
452
453 const size_t outputSize = outputTensorInfo.GetNumBytes();
454 const size_t bufferSize = memPools.at(outputArg.location.poolIndex).getHidlMemory().size();
455 if (bufferSize < outputSize)
456 {
457 ALOGW("ArmnnPreparedModel_1_3::Execute failed");
458 return V1_3::ErrorStatus::OUTPUT_INSUFFICIENT_SIZE;
459 }
460
461 outputs.emplace_back(i, outputTensor);
462 outputShapes[i] = ComputeShape(outputTensorInfo);
463 }
464
465 return V1_3::ErrorStatus::NONE;
466}
467
468template<typename HalVersion>
469std::tuple<V1_3::ErrorStatus, hidl_vec<OutputShape>, Timing, std::string>
470 ArmnnPreparedModel_1_3<HalVersion>::PrepareMemoryForIO(armnn::InputTensors& inputs,
471 armnn::OutputTensors& outputs,
472 std::vector<android::nn::RunTimePoolInfo>& memPools,
473 const V1_3::Request& request)
474{
475 if (!setRunTimePoolInfosFromMemoryPools(&memPools, request.pools))
476 {
Sadik Armaganef8a3932020-04-09 17:21:50 +0100477 return {ErrorStatus::INVALID_ARGUMENT, {}, g_NoTiming, "ArmnnPreparedModel_1_3::execute"};
Kevin May42477c12020-03-26 13:34:14 +0000478 }
479
480 // add the inputs and outputs with their data
481 try
482 {
483 if (PrepareMemoryForInputs(inputs, request, memPools) != V1_3::ErrorStatus::NONE)
484 {
485 return {ErrorStatus::GENERAL_FAILURE, {}, g_NoTiming, "ArmnnPreparedModel_1_3::execute"};
486 }
487
488 std::vector<OutputShape> outputShapes(request.outputs.size());
489
490 auto errorStatus = PrepareMemoryForOutputs(outputs, outputShapes, request, memPools);
491 if (errorStatus != V1_3::ErrorStatus::NONE)
492 {
493 return {errorStatus, outputShapes, g_NoTiming, "ArmnnPreparedModel_1_3::execute"};
494 }
495 }
496 catch (armnn::Exception& e)
497 {
498 ALOGW("armnn::Exception caught while preparing for EnqueueWorkload: %s", e.what());
499 return {ErrorStatus::GENERAL_FAILURE, {}, g_NoTiming, "ArmnnPreparedModel_1_3::execute"};
500 }
501 catch (std::exception& e)
502 {
503 ALOGE("std::exception caught while preparing for EnqueueWorkload: %s", e.what());
504 return {ErrorStatus::GENERAL_FAILURE, {}, g_NoTiming, "ArmnnPreparedModel_1_3::execute"};
505 }
506
507 return {V1_3::ErrorStatus::NONE, {}, g_NoTiming, "ArmnnPreparedModel_1_3::execute"};
508}
509
510template<typename HalVersion>
511template<typename CallbackContext>
512Return<void> ArmnnPreparedModel_1_3<HalVersion>::ExecuteSynchronously(const V1_3::Request& request,
513 CallbackContext cbCtx)
514{
515 if (cbCtx.ctx.measureTimings == MeasureTiming::YES)
516 {
517 cbCtx.ctx.driverStart = Now();
518 }
519
520 if (!android::nn::validateRequest(convertToV1_3(request), m_Model))
521 {
522 ALOGE("ArmnnPreparedModel_1_3::ExecuteSynchronously invalid request model");
523 cbCtx.callback(V1_3::ErrorStatus::INVALID_ARGUMENT,
524 {},
525 g_NoTiming,
526 "ArmnnPreparedModel_1_3::ExecuteSynchronously invalid request model");
527 return Void();
528 }
529
530 if (!android::nn::validateRequest(request, m_Model))
531 {
532 ALOGE("ArmnnPreparedModel_1_3::ExecuteSynchronously invalid request model");
533 cbCtx.callback(V1_3::ErrorStatus::INVALID_ARGUMENT,
534 {},
535 g_NoTiming,
536 "ArmnnPreparedModel_1_3::ExecuteSynchronously invalid request model");
Sadik Armaganef8a3932020-04-09 17:21:50 +0100537 return Void();
Kevin May42477c12020-03-26 13:34:14 +0000538 }
539
540
541 // map the memory pool into shared pointers
542 // use a shared memory pools vector on the heap, as it is passed to the request thread
543 auto memPools = std::make_shared<std::vector<android::nn::RunTimePoolInfo>>();
544
545 // allocate the tensors on the heap, as they are passed to the request thread
546 auto inputs = std::make_shared<armnn::InputTensors>();
547 auto outputs = std::make_shared<armnn::OutputTensors>();
548
549 auto [status, outputShapes, timing, message] = PrepareMemoryForIO(*inputs, *outputs, *memPools, request);
550 if (status != V1_3::ErrorStatus::NONE)
551 {
552 cbCtx.callback(status, outputShapes, timing, message);
Sadik Armaganef8a3932020-04-09 17:21:50 +0100553 return Void();
Kevin May42477c12020-03-26 13:34:14 +0000554 }
555
556 ALOGV("ArmnnPreparedModel_1_3::ExecuteSynchronously() before Execution");
557
558 ExecuteGraph(memPools, *inputs, *outputs, cbCtx);
559 return Void();
560}
561
562template<typename HalVersion>
563Return<void> ArmnnPreparedModel_1_3<HalVersion>::executeSynchronously(const V1_0::Request& request,
564 MeasureTiming measureTiming,
565 executeSynchronously_cb cb)
566{
567 ALOGV("ArmnnPreparedModel_1_3::executeSynchronously(): %s", GetModelSummary(m_Model).c_str());
568 m_RequestCount++;
569
570 if (cb == nullptr)
571 {
572 ALOGE("ArmnnPreparedModel_1_3::executeSynchronously invalid callback passed");
573 return Void();
574 }
575
576 auto cbWrapper = [cb](V1_3::ErrorStatus errorStatus,
577 std::vector<OutputShape> outputShapes,
578 const Timing& timing,
579 std::string)
580 {
581 cb(convertToV1_0(errorStatus), outputShapes, timing);
582 };
583
584 CallbackContext_1_3 cbCtx;
585 cbCtx.callback = cbWrapper;
586 cbCtx.ctx.measureTimings = measureTiming;
587
588 ExecuteSynchronously(convertToV1_3(request), cbCtx);
589 return Void();
590}
591
592template<typename HalVersion>
Kevin May352d8382020-03-31 15:03:42 +0100593Return<void> ArmnnPreparedModel_1_3<HalVersion>::executeSynchronously_1_3(
594 const V1_3::Request& request,
595 MeasureTiming measureTiming,
596 const V1_3::OptionalTimePoint& deadline,
597 const V1_3::OptionalTimeoutDuration& loopTimeoutDuration,
598 executeSynchronously_1_3_cb cb)
Kevin May42477c12020-03-26 13:34:14 +0000599{
600 ALOGV("ArmnnPreparedModel_1_3::executeSynchronously_1_3(): %s", GetModelSummary(m_Model).c_str());
601 m_RequestCount++;
602
603 if (cb == nullptr)
604 {
605 ALOGE("ArmnnPreparedModel_1_3::executeSynchronously_1_3 invalid callback passed");
606 return Void();
607 }
608
609 if (deadline.getDiscriminator() != OptionalTimePoint::hidl_discriminator::none)
610 {
Sadik Armagan7b9ce8d2020-04-21 10:39:28 +0100611 ALOGW("ArmnnPreparedModel_1_3::executeSynchronously_1_3 parameter deadline is set but not supported.");
Kevin May42477c12020-03-26 13:34:14 +0000612 }
613
Kevin May352d8382020-03-31 15:03:42 +0100614 if (loopTimeoutDuration.getDiscriminator() != OptionalTimeoutDuration::hidl_discriminator::none)
Sadik Armagan7b9ce8d2020-04-21 10:39:28 +0100615 {
616 ALOGW(
617 "ArmnnPreparedModel_1_3::executeSynchronously_1_3 parameter loopTimeoutDuration is set but not supported.");
Kevin May352d8382020-03-31 15:03:42 +0100618 }
619
Kevin May42477c12020-03-26 13:34:14 +0000620 auto cbWrapper = [cb](V1_3::ErrorStatus errorStatus,
621 std::vector<OutputShape> outputShapes,
622 const Timing& timing,
623 std::string)
624 {
625 cb(errorStatus, outputShapes, timing);
626 };
627
628 CallbackContext_1_3 cbCtx;
629 cbCtx.callback = cbWrapper;
630 cbCtx.ctx.measureTimings = measureTiming;
631
632 ExecuteSynchronously(request, cbCtx);
633 return Void();
634}
635
636template<typename HalVersion>
637Return<void> ArmnnPreparedModel_1_3<HalVersion>::configureExecutionBurst(
638 const sp<V1_2::IBurstCallback>& callback,
639 const MQDescriptorSync<V1_2::FmqRequestDatum>& requestChannel,
640 const MQDescriptorSync<V1_2::FmqResultDatum>& resultChannel,
641 V1_3::IPreparedModel::configureExecutionBurst_cb cb)
642{
643 ALOGV("ArmnnPreparedModel_1_3::configureExecutionBurst");
644 const sp<V1_2::IBurstContext> burst = ExecutionBurstServer::create(callback,
645 requestChannel,
646 resultChannel,
647 this);
648
649 if (burst == nullptr)
650 {
651 cb(V1_0::ErrorStatus::GENERAL_FAILURE, {});
652 }
653 else
654 {
655 cb(V1_0::ErrorStatus::NONE, burst);
656 }
657 return Void();
658}
659
660template<typename HalVersion>
661template<typename CallbackContext>
Sadik Armagand7be72e2020-04-23 12:56:05 +0100662Return <V1_3::ErrorStatus> ArmnnPreparedModel_1_3<HalVersion>::ExecuteGraph(
Kevin May42477c12020-03-26 13:34:14 +0000663 std::shared_ptr<std::vector<::android::nn::RunTimePoolInfo>>& pMemPools,
664 armnn::InputTensors& inputTensors,
665 armnn::OutputTensors& outputTensors,
666 CallbackContext cb)
667{
668 ALOGV("ArmnnPreparedModel_1_3::ExecuteGraph(...)");
669
Kevin May42477c12020-03-26 13:34:14 +0000670 DumpTensorsIfRequired("Input", inputTensors);
671
672 std::vector<OutputShape> outputShapes(outputTensors.size());
673 for (unsigned int i = 0; i < outputTensors.size(); i++)
674 {
675 std::pair<int, armnn::Tensor> outputTensorPair = outputTensors[i];
676 const armnn::Tensor outputTensor = outputTensorPair.second;
677 const armnn::TensorInfo outputTensorInfo = outputTensor.GetInfo();
678
679 outputShapes[i] = ComputeShape(outputTensorInfo);
680 }
681
682 // run it
683 try
684 {
685 if (cb.ctx.measureTimings == MeasureTiming::YES)
686 {
Sadik Armagand7be72e2020-04-23 12:56:05 +0100687 cb.ctx.deviceStart = Now();
Kevin May42477c12020-03-26 13:34:14 +0000688 }
689
690 armnn::Status status = m_Runtime->EnqueueWorkload(m_NetworkId, inputTensors, outputTensors);
691
692 if (cb.ctx.measureTimings == MeasureTiming::YES)
693 {
Sadik Armagand7be72e2020-04-23 12:56:05 +0100694 cb.ctx.deviceEnd = Now();
Kevin May42477c12020-03-26 13:34:14 +0000695 }
696 if (status != armnn::Status::Success)
697 {
698 ALOGW("EnqueueWorkload failed");
Sadik Armagand7be72e2020-04-23 12:56:05 +0100699 cb.callback(V1_3::ErrorStatus::GENERAL_FAILURE, {}, g_NoTiming, "ArmnnPreparedModel_1_3::ExecuteGraph");
700 return V1_3::ErrorStatus::GENERAL_FAILURE;
Kevin May42477c12020-03-26 13:34:14 +0000701 }
702 }
703 catch (armnn::Exception& e)
704 {
705 ALOGW("armnn:Exception caught from EnqueueWorkload: %s", e.what());
706 cb.callback(V1_3::ErrorStatus::GENERAL_FAILURE, {}, g_NoTiming, "ArmnnPreparedModel_1_3::ExecuteGraph");
Sadik Armagand7be72e2020-04-23 12:56:05 +0100707 return V1_3::ErrorStatus::GENERAL_FAILURE;
Kevin May42477c12020-03-26 13:34:14 +0000708 }
709 catch (std::exception& e)
710 {
711 ALOGE("std::exception caught from EnqueueWorkload: %s", e.what());
712 cb.callback(V1_3::ErrorStatus::GENERAL_FAILURE, {}, g_NoTiming, "ArmnnPreparedModel_1_3::ExecuteGraph");
Sadik Armagand7be72e2020-04-23 12:56:05 +0100713 return V1_3::ErrorStatus::GENERAL_FAILURE;
Kevin May42477c12020-03-26 13:34:14 +0000714 }
715
716 CommitPools(*pMemPools);
717
718 DumpTensorsIfRequired("Output", outputTensors);
719
720 if (cb.ctx.measureTimings == MeasureTiming::YES)
721 {
Kevin May949a69e2020-04-24 10:21:40 +0100722 cb.ctx.driverEnd = Now();
Kevin May42477c12020-03-26 13:34:14 +0000723 Timing timing;
Sadik Armagand7be72e2020-04-23 12:56:05 +0100724 timing.timeOnDevice = MicrosecondsDuration(cb.ctx.deviceEnd, cb.ctx.deviceStart);
Kevin May949a69e2020-04-24 10:21:40 +0100725 timing.timeInDriver = MicrosecondsDuration(cb.ctx.driverEnd, cb.ctx.driverStart);
726 ALOGV("ArmnnPreparedModel_1_3::execute timing - Device = %lu Driver = %lu", timing.timeOnDevice,
Kevin May42477c12020-03-26 13:34:14 +0000727 timing.timeInDriver);
728 cb.callback(V1_3::ErrorStatus::NONE, outputShapes, timing, "ArmnnPreparedModel_1_3::ExecuteGraph");
Sadik Armagand7be72e2020-04-23 12:56:05 +0100729 } else
730 {
Kevin May42477c12020-03-26 13:34:14 +0000731 cb.callback(V1_3::ErrorStatus::NONE, outputShapes, g_NoTiming, "ArmnnPreparedModel_1_3::ExecuteGraph");
732 }
Sadik Armagand7be72e2020-04-23 12:56:05 +0100733 return V1_3::ErrorStatus::NONE;
Kevin May42477c12020-03-26 13:34:14 +0000734}
735
736template<typename HalVersion>
737bool ArmnnPreparedModel_1_3<HalVersion>::ExecuteWithDummyInputs()
738{
739 std::vector<std::vector<char>> storage;
740 armnn::InputTensors inputTensors;
741 for (unsigned int i = 0; i < getMainModel(m_Model).inputIndexes.size(); i++)
742 {
743 const armnn::TensorInfo inputTensorInfo = m_Runtime->GetInputTensorInfo(m_NetworkId, i);
744 storage.emplace_back(inputTensorInfo.GetNumBytes());
745 const armnn::ConstTensor inputTensor(inputTensorInfo, storage.back().data());
746
747 inputTensors.emplace_back(i, inputTensor);
748 }
749
750 armnn::OutputTensors outputTensors;
751 for (unsigned int i = 0; i < getMainModel(m_Model).outputIndexes.size(); i++)
752 {
753 const armnn::TensorInfo outputTensorInfo = m_Runtime->GetOutputTensorInfo(m_NetworkId, i);
754 storage.emplace_back(outputTensorInfo.GetNumBytes());
755 const armnn::Tensor outputTensor(outputTensorInfo, storage.back().data());
756
757 outputTensors.emplace_back(i, outputTensor);
758 }
759
760 auto nullCallback = [](V1_3::ErrorStatus, std::vector<OutputShape>, const Timing&, std::string) {};
761 CallbackContext_1_3 callbackContext;
762 callbackContext.callback = nullCallback;
763 callbackContext.ctx.measureTimings = MeasureTiming::NO;
764 auto memPools = std::make_shared<std::vector<::android::nn::RunTimePoolInfo>>();
Sadik Armagand7be72e2020-04-23 12:56:05 +0100765
766 auto errorStatus = ExecuteGraph(memPools,
767 inputTensors,
768 outputTensors,
769 callbackContext);
770 return errorStatus == V1_3::ErrorStatus::NONE;
Kevin May42477c12020-03-26 13:34:14 +0000771}
772
773template<typename HalVersion>
774Return <V1_3::ErrorStatus> ArmnnPreparedModel_1_3<HalVersion>::Execute(const V1_3::Request& request,
775 MeasureTiming measureTiming,
776 CallbackAsync_1_3 callback)
777{
778 ExecutionContext_1_3 ctx;
779 if (measureTiming == MeasureTiming::YES)
780 {
781 ctx.measureTimings = measureTiming;
782 ctx.driverStart = Now();
783 }
784
785 ALOGV("ArmnnPreparedModel_1_3::execute(): %s", GetModelSummary(m_Model).c_str());
786 m_RequestCount++;
787
788 if (!android::nn::validateRequest(request, m_Model))
789 {
790 callback(V1_3::ErrorStatus::INVALID_ARGUMENT, {}, g_NoTiming, "ArmnnPreparedModel_1_3::execute");
791 return V1_3::ErrorStatus::INVALID_ARGUMENT;
792 }
793
794 if (!m_RequestInputsAndOutputsDumpDir.empty())
795 {
796 ALOGD("Dumping inputs and outputs for request %" PRIuPTR, reinterpret_cast<std::uintptr_t>(&callback));
797 }
798
799 // map the memory pool into shared pointers
800 // use a shared memory pools vector on the heap, as it is passed to the request thread
801 auto memPools = std::make_shared<std::vector<android::nn::RunTimePoolInfo>>();
802
803 // allocate the tensors on the heap, as they are passed to the request thread
804 auto inputTensors = std::make_shared<armnn::InputTensors>();
805 auto outputTensors = std::make_shared<armnn::OutputTensors>();
806
807 auto [status, outShapes, timing, message] = PrepareMemoryForIO(*inputTensors, *outputTensors,
808 *memPools, request);
809 if (status != V1_3::ErrorStatus::NONE)
810 {
811 callback(status, outShapes, timing, message);
812 }
813
814 switch(status)
815 {
816 case V1_3::ErrorStatus::OUTPUT_INSUFFICIENT_SIZE:
817 return V1_3::ErrorStatus::NONE;
818 case V1_3::ErrorStatus::GENERAL_FAILURE:
819 return V1_3::ErrorStatus::GENERAL_FAILURE;
820 default:
821 {}
822 }
823
824 ALOGV("ArmnnPreparedModel_1_3::execute(...) before PostMsg");
825
826 // post the request for asynchronous execution
827 CallbackContext_1_3 cb;
828 cb.callback = callback;
829 cb.ctx = ctx;
830 m_RequestThread.PostMsg(this, memPools, inputTensors, outputTensors, cb);
831 ALOGV("ArmnnPreparedModel_1_3::execute(...) after PostMsg");
832 return V1_3::ErrorStatus::NONE;
833}
834
Narumol Prangnawaratcad4e912020-06-02 12:07:43 +0100835template<typename HalVersion>
836V1_3::Priority ArmnnPreparedModel_1_3<HalVersion>::GetModelPriority()
837{
838 return m_ModelPriority;
839}
840
Kevin May42477c12020-03-26 13:34:14 +0000841#ifdef ARMNN_ANDROID_NN_V1_3
842template class ArmnnPreparedModel_1_3<hal_1_3::HalPolicy>;
Sadik Armagand7be72e2020-04-23 12:56:05 +0100843template Return <V1_3::ErrorStatus> ArmnnPreparedModel_1_3<hal_1_3::HalPolicy>::ExecuteGraph<CallbackContext_1_3>(
Kevin May42477c12020-03-26 13:34:14 +0000844 std::shared_ptr<std::vector<::android::nn::RunTimePoolInfo>>& pMemPools,
845 armnn::InputTensors& pInputTensors,
846 armnn::OutputTensors& pOutputTensors,
847 CallbackContext_1_3 cb);
848#endif
849
850} // namespace armnn_driver