ArmNN
 20.11
ExecuteNetworkProgramOptions.cpp
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1 //
2 // Copyright © 2020 Arm Ltd and Contributors. All rights reserved.
3 // SPDX-License-Identifier: MIT
4 //
5 
8 #include "InferenceTest.hpp"
9 
11 #include <armnn/Exceptions.hpp>
12 #include <armnn/utility/Assert.hpp>
14 #include <armnn/Logging.hpp>
15 
16 #include <fmt/format.h>
17 
18 bool CheckOption(const cxxopts::ParseResult& result,
19  const char* option)
20 {
21  // Check that the given option is valid.
22  if (option == nullptr)
23  {
24  return false;
25  }
26 
27  // Check whether 'option' is provided.
28  return ((result.count(option)) ? true : false);
29 }
30 
31 void CheckOptionDependency(const cxxopts::ParseResult& result,
32  const char* option,
33  const char* required)
34 {
35  // Check that the given options are valid.
36  if (option == nullptr || required == nullptr)
37  {
38  throw cxxopts::OptionParseException("Invalid option to check dependency for");
39  }
40 
41  // Check that if 'option' is provided, 'required' is also provided.
42  if (CheckOption(result, option) && !result[option].has_default())
43  {
44  if (CheckOption(result, required) == 0 || result[required].has_default())
45  {
46  throw cxxopts::OptionParseException(
47  std::string("Option '") + option + "' requires option '" + required + "'.");
48  }
49  }
50 }
51 
52 void CheckOptionDependencies(const cxxopts::ParseResult& result)
53 {
54  CheckOptionDependency(result, "model-path", "model-format");
55  CheckOptionDependency(result, "input-tensor-shape", "model-path");
56  CheckOptionDependency(result, "tuning-level", "tuning-path");
57 }
58 
59 void RemoveDuplicateDevices(std::vector<armnn::BackendId>& computeDevices)
60 {
61  // Mark the duplicate devices as 'Undefined'.
62  for (auto i = computeDevices.begin(); i != computeDevices.end(); ++i)
63  {
64  for (auto j = std::next(i); j != computeDevices.end(); ++j)
65  {
66  if (*j == *i)
67  {
69  }
70  }
71  }
72 
73  // Remove 'Undefined' devices.
74  computeDevices.erase(std::remove(computeDevices.begin(), computeDevices.end(), armnn::Compute::Undefined),
75  computeDevices.end());
76 }
77 
78 /// Takes a vector of backend strings and returns a vector of backendIDs. Removes duplicate entries.
79 std::vector<armnn::BackendId> GetBackendIDs(const std::vector<std::string>& backendStrings)
80 {
81  std::vector<armnn::BackendId> backendIDs;
82  for (const auto& b : backendStrings)
83  {
84  backendIDs.push_back(armnn::BackendId(b));
85  }
86 
87  RemoveDuplicateDevices(backendIDs);
88 
89  return backendIDs;
90 }
91 
92 /// Provides a segfault safe way to get cxxopts option values by checking if the option was defined.
93 /// If the option wasn't defined it returns an empty object.
94 template<typename optionType>
95 optionType GetOptionValue(std::string&& optionName, const cxxopts::ParseResult& result)
96 {
97  optionType out;
98  if(result.count(optionName))
99  {
100  out = result[optionName].as<optionType>();
101  }
102  return out;
103 }
104 
105 void LogAndThrowFatal(std::string errorMessage)
106 {
107  throw armnn::InvalidArgumentException (errorMessage);
108 }
109 
110 void CheckRequiredOptions(const cxxopts::ParseResult& result)
111 {
112 
113  // For each option in option-group "a) Required
114  std::vector<std::string> requiredOptions{"compute",
115  "model-format",
116  "model-path",
117  "input-name",
118  "output-name"};
119 
120  bool requiredMissing = false;
121  for(auto const& str : requiredOptions)
122  {
123  if(!(result.count(str) > 0))
124  {
125  ARMNN_LOG(error) << fmt::format("The program option '{}' is mandatory but wasn't provided.", str);
126  requiredMissing = true;
127  }
128  }
129  if(requiredMissing)
130  {
131  throw armnn::InvalidArgumentException ("Some required arguments are missing");
132  }
133 }
134 
136 {
138 }
139 
141 {
144  {
145  LogAndThrowFatal("Timeline profiling requires external profiling to be turned on");
146  }
147 }
148 
149 
151  "Executes a neural network model using the provided input "
152  "tensor. Prints the resulting output tensor."}
153 {
154  try
155  {
156  // cxxopts doesn't provide a mechanism to ensure required options are given. There is a
157  // separate function CheckRequiredOptions() for that.
158  m_CxxOptions.add_options("a) Required")
159  ("c,compute",
160  "Which device to run layers on by default. Possible choices: "
162  + " NOTE: Compute devices need to be passed as a comma separated list without whitespaces "
163  "e.g. CpuRef,CpuAcc",
164  cxxopts::value<std::vector<std::string>>())
165 
166  ("f,model-format",
167  "armnn-binary, caffe-binary, caffe-text, onnx-binary, onnx-text, tflite-binary, tensorflow-binary or "
168  "tensorflow-text.",
169  cxxopts::value<std::string>())
170 
171  ("D,armnn-tflite-delegate",
172  "enable Arm NN TfLite delegate",
173  cxxopts::value<bool>(m_ExNetParams.m_EnableDelegate)->default_value("false")->implicit_value("true"))
174 
175  ("m,model-path",
176  "Path to model file, e.g. .armnn, .caffemodel, .prototxt, .tflite, .onnx",
177  cxxopts::value<std::string>(m_ExNetParams.m_ModelPath))
178 
179  ("i,input-name",
180  "Identifier of the input tensors in the network separated by comma.",
181  cxxopts::value<std::string>())
182 
183  ("o,output-name",
184  "Identifier of the output tensors in the network separated by comma.",
185  cxxopts::value<std::string>());
186 
187  m_CxxOptions.add_options("b) General")
188  ("b,dynamic-backends-path",
189  "Path where to load any available dynamic backend from. "
190  "If left empty (the default), dynamic backends will not be used.",
191  cxxopts::value<std::string>(m_RuntimeOptions.m_DynamicBackendsPath))
192 
193  ("d,input-tensor-data",
194  "Path to files containing the input data as a flat array separated by whitespace. "
195  "Several paths can be passed by separating them with a comma. If not specified, the network will be "
196  "run with dummy data (useful for profiling).",
197  cxxopts::value<std::string>()->default_value(""))
198 
199  ("h,help", "Display usage information")
200 
201  ("infer-output-shape",
202  "Infers output tensor shape from input tensor shape and validate where applicable (where supported by "
203  "parser)",
204  cxxopts::value<bool>(m_ExNetParams.m_InferOutputShape)->default_value("false")->implicit_value("true"))
205 
206  ("iterations",
207  "Number of iterations to run the network for, default is set to 1",
208  cxxopts::value<size_t>(m_ExNetParams.m_Iterations)->default_value("1"))
209 
210  ("l,dequantize-output",
211  "If this option is enabled, all quantized outputs will be dequantized to float. "
212  "If unset, default to not get dequantized. "
213  "Accepted values (true or false)",
214  cxxopts::value<bool>(m_ExNetParams.m_DequantizeOutput)->default_value("false")->implicit_value("true"))
215 
216  ("p,print-intermediate-layers",
217  "If this option is enabled, the output of every graph layer will be printed.",
218  cxxopts::value<bool>(m_ExNetParams.m_PrintIntermediate)->default_value("false")
219  ->implicit_value("true"))
220 
221  ("parse-unsupported",
222  "Add unsupported operators as stand-in layers (where supported by parser)",
223  cxxopts::value<bool>(m_ExNetParams.m_ParseUnsupported)->default_value("false")->implicit_value("true"))
224 
225  ("q,quantize-input",
226  "If this option is enabled, all float inputs will be quantized to qasymm8. "
227  "If unset, default to not quantized. Accepted values (true or false)",
228  cxxopts::value<bool>(m_ExNetParams.m_QuantizeInput)->default_value("false")->implicit_value("true"))
229 
230  ("r,threshold-time",
231  "Threshold time is the maximum allowed time for inference measured in milliseconds. If the actual "
232  "inference time is greater than the threshold time, the test will fail. By default, no threshold "
233  "time is used.",
234  cxxopts::value<double>(m_ExNetParams.m_ThresholdTime)->default_value("0.0"))
235 
236  ("s,input-tensor-shape",
237  "The shape of the input tensors in the network as a flat array of integers separated by comma."
238  "Several shapes can be passed by separating them with a colon (:).",
239  cxxopts::value<std::string>())
240 
241  ("v,visualize-optimized-model",
242  "Enables built optimized model visualizer. If unset, defaults to off.",
243  cxxopts::value<bool>(m_ExNetParams.m_EnableLayerDetails)->default_value("false")
244  ->implicit_value("true"))
245 
246  ("w,write-outputs-to-file",
247  "Comma-separated list of output file paths keyed with the binding-id of the output slot. "
248  "If left empty (the default), the output tensors will not be written to a file.",
249  cxxopts::value<std::string>())
250 
251  ("x,subgraph-number",
252  "Id of the subgraph to be executed. Defaults to 0.",
253  cxxopts::value<size_t>(m_ExNetParams.m_SubgraphId)->default_value("0"))
254 
255  ("y,input-type",
256  "The type of the input tensors in the network separated by comma. "
257  "If unset, defaults to \"float\" for all defined inputs. "
258  "Accepted values (float, int or qasymm8).",
259  cxxopts::value<std::string>())
260 
261  ("z,output-type",
262  "The type of the output tensors in the network separated by comma. "
263  "If unset, defaults to \"float\" for all defined outputs. "
264  "Accepted values (float, int or qasymm8).",
265  cxxopts::value<std::string>());
266 
267  m_CxxOptions.add_options("c) Optimization")
268  ("bf16-turbo-mode",
269  "If this option is enabled, FP32 layers, "
270  "weights and biases will be converted to BFloat16 where the backend supports it",
271  cxxopts::value<bool>(m_ExNetParams.m_EnableBf16TurboMode)
272  ->default_value("false")->implicit_value("true"))
273 
274  ("enable-fast-math",
275  "Enables fast_math options in backends that support it. Using the fast_math flag can lead to "
276  "performance improvements but may result in reduced or different precision.",
277  cxxopts::value<bool>(m_ExNetParams.m_EnableFastMath)->default_value("false")->implicit_value("true"))
278 
279  ("fp16-turbo-mode",
280  "If this option is enabled, FP32 layers, "
281  "weights and biases will be converted to FP16 where the backend supports it",
282  cxxopts::value<bool>(m_ExNetParams.m_EnableFp16TurboMode)
283  ->default_value("false")->implicit_value("true"))
284 
285  ("tuning-level",
286  "Sets the tuning level which enables a tuning run which will update/create a tuning file. "
287  "Available options are: 1 (Rapid), 2 (Normal), 3 (Exhaustive). "
288  "Requires tuning-path to be set, default is set to 0 (No tuning run)",
289  cxxopts::value<int>(m_ExNetParams.m_TuningLevel)->default_value("0"))
290 
291  ("tuning-path",
292  "Path to tuning file. Enables use of CL tuning",
293  cxxopts::value<std::string>(m_ExNetParams.m_TuningPath));
294 
295  m_CxxOptions.add_options("d) Profiling")
296  ("a,enable-external-profiling",
297  "If enabled external profiling will be switched on",
299  ->default_value("false")->implicit_value("true"))
300 
301  ("e,event-based-profiling",
302  "Enables built in profiler. If unset, defaults to off.",
303  cxxopts::value<bool>(m_ExNetParams.m_EnableProfiling)->default_value("false")->implicit_value("true"))
304 
305  ("g,file-only-external-profiling",
306  "If enabled then the 'file-only' test mode of external profiling will be enabled",
307  cxxopts::value<bool>(m_RuntimeOptions.m_ProfilingOptions.m_FileOnly)
308  ->default_value("false")->implicit_value("true"))
309 
310  ("file-format",
311  "If profiling is enabled specifies the output file format",
312  cxxopts::value<std::string>(m_RuntimeOptions.m_ProfilingOptions.m_FileFormat)->default_value("binary"))
313 
314  ("j,outgoing-capture-file",
315  "If specified the outgoing external profiling packets will be captured in this binary file",
316  cxxopts::value<std::string>(m_RuntimeOptions.m_ProfilingOptions.m_OutgoingCaptureFile))
317 
318  ("k,incoming-capture-file",
319  "If specified the incoming external profiling packets will be captured in this binary file",
320  cxxopts::value<std::string>(m_RuntimeOptions.m_ProfilingOptions.m_IncomingCaptureFile))
321 
322  ("timeline-profiling",
323  "If enabled timeline profiling will be switched on, requires external profiling",
325  ->default_value("false")->implicit_value("true"))
326 
327  ("u,counter-capture-period",
328  "If profiling is enabled in 'file-only' mode this is the capture period that will be used in the test",
329  cxxopts::value<uint32_t>(m_RuntimeOptions.m_ProfilingOptions.m_CapturePeriod)->default_value("150"));
330  }
331  catch (const std::exception& e)
332  {
333  ARMNN_ASSERT_MSG(false, "Caught unexpected exception");
334  ARMNN_LOG(fatal) << "Fatal internal error: " << e.what();
335  exit(EXIT_FAILURE);
336  }
337 }
338 
339 ProgramOptions::ProgramOptions(int ac, const char* av[]): ProgramOptions()
340 {
341  ParseOptions(ac, av);
342 }
343 
344 void ProgramOptions::ParseOptions(int ac, const char* av[])
345 {
346  // Parses the command-line.
347  m_CxxResult = m_CxxOptions.parse(ac, av);
348 
349  if (m_CxxResult.count("help") || ac <= 1)
350  {
351  std::cout << m_CxxOptions.help() << std::endl;
352  exit(EXIT_SUCCESS);
353  }
354 
357 
358  // Some options can't be assigned directly because they need some post-processing:
359  auto computeDevices = GetOptionValue<std::vector<std::string>>("compute", m_CxxResult);
360  m_ExNetParams.m_ComputeDevices = GetBackendIDs(computeDevices);
362  armnn::stringUtils::StringTrimCopy(GetOptionValue<std::string>("model-format", m_CxxResult));
364  ParseStringList(GetOptionValue<std::string>("input-name", m_CxxResult), ",");
366  ParseStringList(GetOptionValue<std::string>("input-tensor-data", m_CxxResult), ",");
368  ParseStringList(GetOptionValue<std::string>("output-name", m_CxxResult), ",");
370  ParseStringList(GetOptionValue<std::string>("input-type", m_CxxResult), ",");
372  ParseStringList(GetOptionValue<std::string>("output-type", m_CxxResult), ",");
374  ParseStringList(GetOptionValue<std::string>("write-outputs-to-file", m_CxxResult), ",");
378 
379  // Parse input tensor shape from the string we got from the command-line.
380  std::vector<std::string> inputTensorShapesVector =
381  ParseStringList(GetOptionValue<std::string>("input-tensor-shape", m_CxxResult), ":");
382 
383  if (!inputTensorShapesVector.empty())
384  {
385  m_ExNetParams.m_InputTensorShapes.reserve(inputTensorShapesVector.size());
386 
387  for(const std::string& shape : inputTensorShapesVector)
388  {
389  std::stringstream ss(shape);
390  std::vector<unsigned int> dims = ParseArray(ss);
391 
393  std::make_unique<armnn::TensorShape>(static_cast<unsigned int>(dims.size()), dims.data()));
394  }
395  }
396 
397  // We have to validate ExecuteNetworkParams first so that the tuning path and level is validated
399 
400  // Parse CL tuning parameters to runtime options
401  if (!m_ExNetParams.m_TuningPath.empty())
402  {
403  m_RuntimeOptions.m_BackendOptions.emplace_back(
405  {
406  "GpuAcc",
407  {
408  {"TuningLevel", m_ExNetParams.m_TuningLevel},
409  {"TuningFile", m_ExNetParams.m_TuningPath.c_str()},
410  {"KernelProfilingEnabled", m_ExNetParams.m_EnableProfiling}
411  }
412  }
413  );
414  }
415 
417 }
418 
ExecuteNetworkParams m_ExNetParams
std::vector< std::string > m_InputTypes
void ValidateExecuteNetworkParams()
Ensures that the parameters for ExecuteNetwork fit together.
optionType GetOptionValue(std::string &&optionName, const cxxopts::ParseResult &result)
Provides a segfault safe way to get cxxopts option values by checking if the option was defined...
std::vector< TensorShapePtr > m_InputTensorShapes
std::vector< unsigned int > ParseArray(std::istream &stream)
void RemoveDuplicateDevices(std::vector< armnn::BackendId > &computeDevices)
std::vector< std::string > ParseStringList(const std::string &inputString, const char *delimiter)
Splits a given string at every accurance of delimiter into a vector of string.
armnn::IRuntime::CreationOptions m_RuntimeOptions
#define ARMNN_LOG(severity)
Definition: Logging.hpp:163
BackendRegistry & BackendRegistryInstance()
std::vector< std::string > m_OutputNames
std::string GetBackendIdsAsString() const
std::vector< std::string > m_OutputTensorFiles
bool CheckOption(const cxxopts::ParseResult &result, const char *option)
std::vector< armnn::BackendId > m_ComputeDevices
std::vector< std::string > m_OutputTypes
std::string StringTrimCopy(const std::string &str, const std::string &chars="\\\")
Trim from both the start and the end of a string, returns a trimmed copy of the string.
Definition: StringUtils.hpp:85
std::vector< BackendOptions > m_BackendOptions
Pass backend specific options.
Definition: IRuntime.hpp:115
ProgramOptions()
Initializes ProgramOptions by adding options to the underlying cxxopts::options object.
#define ARMNN_ASSERT_MSG(COND, MSG)
Definition: Assert.hpp:15
std::vector< armnn::BackendId > GetBackendIDs(const std::vector< std::string > &backendStrings)
Takes a vector of backend strings and returns a vector of backendIDs. Removes duplicate entries...
std::vector< std::string > m_InputNames
std::vector< std::string > m_InputTensorDataFilePaths
void ParseOptions(int ac, const char *av[])
Parses program options from the command line or another source and stores the values in member variab...
Struct for the users to pass backend specific options.
void LogAndThrowFatal(std::string errorMessage)
std::string m_DynamicBackendsPath
Setting this value will override the paths set by the DYNAMIC_BACKEND_PATHS compiler directive Only a...
Definition: IRuntime.hpp:59
Holds and parses program options for the ExecuteNetwork application.
void CheckOptionDependency(const cxxopts::ParseResult &result, const char *option, const char *required)
void ValidateRuntimeOptions()
Ensures that the runtime options are valid.
void CheckOptionDependencies(const cxxopts::ParseResult &result)
cxxopts::ParseResult m_CxxResult
void CheckRequiredOptions(const cxxopts::ParseResult &result)
ExternalProfilingOptions m_ProfilingOptions
Definition: IRuntime.hpp:83