ArmNN
 20.02
SendCounterPacket.cpp
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1 //
2 // Copyright © 2017 Arm Ltd. All rights reserved.
3 // SPDX-License-Identifier: MIT
4 //
5 
6 #include "SendCounterPacket.hpp"
7 #include "EncodeVersion.hpp"
8 
9 #include <armnn/Exceptions.hpp>
10 #include <armnn/Conversion.hpp>
11 #include <Processes.hpp>
13 
14 #include <boost/format.hpp>
15 #include <boost/numeric/conversion/cast.hpp>
16 
17 #include <cstring>
18 
19 namespace armnn
20 {
21 
22 namespace profiling
23 {
24 
26 
27 const unsigned int SendCounterPacket::PIPE_MAGIC;
28 
30 {
31  std::string info(GetSoftwareInfo());
32  std::string hardwareVersion(GetHardwareVersion());
33  std::string softwareVersion(GetSoftwareVersion());
34  std::string processName = GetProcessName().substr(0, 60);
35 
36  uint32_t infoSize = numeric_cast<uint32_t>(info.size()) > 0 ? numeric_cast<uint32_t>(info.size()) + 1 : 0;
37  uint32_t hardwareVersionSize = numeric_cast<uint32_t>(hardwareVersion.size()) > 0 ?
38  numeric_cast<uint32_t>(hardwareVersion.size()) + 1 : 0;
39  uint32_t softwareVersionSize = numeric_cast<uint32_t>(softwareVersion.size()) > 0 ?
40  numeric_cast<uint32_t>(softwareVersion.size()) + 1 : 0;
41  uint32_t processNameSize = numeric_cast<uint32_t>(processName.size()) > 0 ?
42  numeric_cast<uint32_t>(processName.size()) + 1 : 0;
43 
44  uint32_t sizeUint32 = numeric_cast<uint32_t>(sizeof(uint32_t));
45 
46  uint32_t headerSize = 2 * sizeUint32;
47  uint32_t bodySize = 10 * sizeUint32;
48  uint32_t packetVersionCountSize = sizeUint32;
49 
50  // Supported Packets
51  // Stream metadata packet (packet family=0; packet id=0)
52  // Connection Acknowledged packet (packet family=0, packet id=1)
53  // Counter Directory packet (packet family=0; packet id=2)
54  // Request Counter Directory packet (packet family=0, packet id=3)
55  // Periodic Counter Selection packet (packet family=0, packet id=4)
56  // Periodic Counter Capture packet (packet family=1, packet class=0, type=0)
57  uint32_t packetVersionEntries = 6;
58 
59  uint32_t payloadSize = numeric_cast<uint32_t>(infoSize + hardwareVersionSize + softwareVersionSize +
60  processNameSize + packetVersionCountSize +
61  (packetVersionEntries * 2 * sizeUint32));
62 
63  uint32_t totalSize = headerSize + bodySize + payloadSize;
64  uint32_t offset = 0;
65  uint32_t reserved = 0;
66 
67  IPacketBufferPtr writeBuffer = m_BufferManager.Reserve(totalSize, reserved);
68 
69  if (writeBuffer == nullptr || reserved < totalSize)
70  {
71  CancelOperationAndThrow<BufferExhaustion>(
72  writeBuffer,
73  boost::str(boost::format("No space left in buffer. Unable to reserve (%1%) bytes.") % totalSize));
74  }
75 
76  try
77  {
78  // Create header
79 
80  WriteUint32(writeBuffer, offset, 0);
81  offset += sizeUint32;
82  WriteUint32(writeBuffer, offset, totalSize - headerSize);
83 
84  // Packet body
85 
86  offset += sizeUint32;
87  WriteUint32(writeBuffer, offset, PIPE_MAGIC); // pipe_magic
88  offset += sizeUint32;
89  WriteUint32(writeBuffer, offset, EncodeVersion(1, 0, 0)); // stream_metadata_version
90  offset += sizeUint32;
91  WriteUint32(writeBuffer, offset, MAX_METADATA_PACKET_LENGTH); // max_data_length
92  offset += sizeUint32;
94  WriteUint32(writeBuffer, offset, numeric_cast<uint32_t>(pid)); // pid
95  offset += sizeUint32;
96  uint32_t poolOffset = bodySize;
97  WriteUint32(writeBuffer, offset, infoSize ? poolOffset : 0); // offset_info
98  offset += sizeUint32;
99  poolOffset += infoSize;
100  WriteUint32(writeBuffer, offset, hardwareVersionSize ? poolOffset : 0); // offset_hw_version
101  offset += sizeUint32;
102  poolOffset += hardwareVersionSize;
103  WriteUint32(writeBuffer, offset, softwareVersionSize ? poolOffset : 0); // offset_sw_version
104  offset += sizeUint32;
105  poolOffset += softwareVersionSize;
106  WriteUint32(writeBuffer, offset, processNameSize ? poolOffset : 0); // offset_process_name
107  offset += sizeUint32;
108  poolOffset += processNameSize;
109  WriteUint32(writeBuffer, offset, packetVersionEntries ? poolOffset : 0); // offset_packet_version_table
110  offset += sizeUint32;
111  WriteUint32(writeBuffer, offset, 0); // reserved
112  offset += sizeUint32;
113 
114  // Pool
115 
116  if (infoSize)
117  {
118  memcpy(&writeBuffer->GetWritableData()[offset], info.c_str(), infoSize);
119  offset += infoSize;
120  }
121 
122  if (hardwareVersionSize)
123  {
124  memcpy(&writeBuffer->GetWritableData()[offset], hardwareVersion.c_str(), hardwareVersionSize);
125  offset += hardwareVersionSize;
126  }
127 
128  if (softwareVersionSize)
129  {
130  memcpy(&writeBuffer->GetWritableData()[offset], softwareVersion.c_str(), softwareVersionSize);
131  offset += softwareVersionSize;
132  }
133 
134  if (processNameSize)
135  {
136  memcpy(&writeBuffer->GetWritableData()[offset], processName.c_str(), processNameSize);
137  offset += processNameSize;
138  }
139 
140  if (packetVersionEntries)
141  {
142  // Packet Version Count
143  WriteUint32(writeBuffer, offset, packetVersionEntries << 16);
144 
145  // Packet Version Entries
146  uint32_t packetFamily = 0;
147  uint32_t packetId = 0;
148 
149  offset += sizeUint32;
150  for (uint32_t i = 0; i < packetVersionEntries - 1; ++i)
151  {
152  WriteUint32(writeBuffer, offset, ((packetFamily & 0x3F) << 26) | ((packetId++ & 0x3FF) << 16));
153  offset += sizeUint32;
154  WriteUint32(writeBuffer, offset, EncodeVersion(1, 0, 0));
155  offset += sizeUint32;
156  }
157 
158  packetFamily = 1;
159  packetId = 0;
160 
161  WriteUint32(writeBuffer, offset, ((packetFamily & 0x3F) << 26) | ((packetId & 0x3FF) << 16));
162  offset += sizeUint32;
163  WriteUint32(writeBuffer, offset, EncodeVersion(1, 0, 0));
164  }
165  }
166  catch(...)
167  {
168  CancelOperationAndThrow<RuntimeException>(writeBuffer, "Error processing packet.");
169  }
170 
171  m_BufferManager.Commit(writeBuffer, totalSize, false);
172 }
173 
175  const Counters& counters,
176  CategoryRecord& categoryRecord,
177  std::string& errorMessage)
178 {
179  using namespace boost::numeric;
180 
181  BOOST_ASSERT(category);
182 
183  const std::string& categoryName = category->m_Name;
184  const std::vector<uint16_t> categoryCounters = category->m_Counters;
185 
186  BOOST_ASSERT(!categoryName.empty());
187 
188  // Utils
189  size_t uint32_t_size = sizeof(uint32_t);
190 
191  // Category record word 1:
192  // 16:31 [16] event_count: number of events belonging to this category
193  // 0:15 [16] reserved: all zeros
194  uint32_t categoryRecordWord1 = static_cast<uint32_t>(categoryCounters.size()) << 16;
195 
196  // Category record word 2:
197  // 0:31 [32] event_pointer_table_offset: offset from the beginning of the category data pool to
198  // the event_pointer_table
199  uint32_t categoryRecordWord2 = 0; // The offset is always zero here, as the event pointer table field is always
200  // the first item in the pool
201 
202  // Convert the device name into a SWTrace namestring
203  std::vector<uint32_t> categoryNameBuffer;
204  if (!StringToSwTraceString<SwTraceNameCharPolicy>(categoryName, categoryNameBuffer))
205  {
206  errorMessage = boost::str(boost::format("Cannot convert the name of category \"%1%\" to an SWTrace namestring")
207  % categoryName);
208  return false;
209  }
210 
211  // Process the event records
212  size_t counterCount = categoryCounters.size();
213  std::vector<EventRecord> eventRecords(counterCount);
214  std::vector<uint32_t> eventRecordOffsets(counterCount, 0);
215  size_t eventRecordsSize = 0;
216  uint32_t eventRecordsOffset =
217  numeric_cast<uint32_t>((eventRecords.size() + categoryNameBuffer.size()) * uint32_t_size);
218  for (size_t counterIndex = 0, eventRecordIndex = 0, eventRecordOffsetIndex = 0;
219  counterIndex < counterCount;
220  counterIndex++, eventRecordIndex++, eventRecordOffsetIndex++)
221  {
222  uint16_t counterUid = categoryCounters.at(counterIndex);
223  auto it = counters.find(counterUid);
224  BOOST_ASSERT(it != counters.end());
225  const CounterPtr& counter = it->second;
226 
227  EventRecord& eventRecord = eventRecords.at(eventRecordIndex);
228  if (!CreateEventRecord(counter, eventRecord, errorMessage))
229  {
230  return false;
231  }
232 
233  // Update the total size in words of the event records
234  eventRecordsSize += eventRecord.size();
235 
236  // Add the event record offset to the event pointer table offset field
237  eventRecordOffsets[eventRecordOffsetIndex] = eventRecordsOffset;
238  eventRecordsOffset += numeric_cast<uint32_t>(eventRecord.size() * uint32_t_size);
239  }
240 
241  // Category record word 3:
242  // 0:31 [32] name_offset (offset from the beginning of the category data pool to the name field)
243  uint32_t categoryRecordWord3 = numeric_cast<uint32_t>(eventRecordOffsets.size() * uint32_t_size);
244 
245  // Calculate the size in words of the category record
246  size_t categoryRecordSize = 3u + // The size of the fixed part (device + counter_set + event_count + reserved +
247  // event_pointer_table_offset + name_offset)
248  eventRecordOffsets.size() + // The size of the variable part (the event pointer table +
249  categoryNameBuffer.size() + // and the category name including the null-terminator +
250  eventRecordsSize; // the event records)
251 
252  // Allocate the necessary space for the category record
253  categoryRecord.resize(categoryRecordSize);
254 
256  // Create the category record
257  categoryRecord[0] = categoryRecordWord1; // event_count + reserved
258  categoryRecord[1] = categoryRecordWord2; // event_pointer_table_offset
259  categoryRecord[2] = categoryRecordWord3; // name_offset
260  auto offset = categoryRecord.begin() + 3u;
261  std::copy(eventRecordOffsets.begin(), eventRecordOffsets.end(), offset); // event_pointer_table
262  offset += eventRecordOffsets.size();
263  std::copy(categoryNameBuffer.begin(), categoryNameBuffer.end(), offset); // name
264  offset += categoryNameBuffer.size();
265  for (const EventRecord& eventRecord : eventRecords)
266  {
267  std::copy(eventRecord.begin(), eventRecord.end(), offset); // event_record
268  offset += eventRecord.size();
269  }
271 
272  return true;
273 }
274 
276  DeviceRecord& deviceRecord,
277  std::string& errorMessage)
278 {
279  BOOST_ASSERT(device);
280 
281  uint16_t deviceUid = device->m_Uid;
282  const std::string& deviceName = device->m_Name;
283  uint16_t deviceCores = device->m_Cores;
284 
285  BOOST_ASSERT(!deviceName.empty());
286 
287  // Device record word 0:
288  // 16:31 [16] uid: the unique identifier for the device
289  // 0:15 [16] cores: the number of individual streams of counters for one or more cores of some device
290  uint32_t deviceRecordWord0 = (static_cast<uint32_t>(deviceUid) << 16) |
291  (static_cast<uint32_t>(deviceCores));
292 
293  // Device record word 1:
294  // 0:31 [32] name_offset: offset from the beginning of the device record pool to the name field
295  uint32_t deviceRecordWord1 = 0; // The offset is always zero here, as the name field is always
296  // the first (and only) item in the pool
297 
298  // Convert the device name into a SWTrace string
299  std::vector<uint32_t> deviceNameBuffer;
300  if (!StringToSwTraceString<SwTraceCharPolicy>(deviceName, deviceNameBuffer))
301  {
302  errorMessage = boost::str(boost::format("Cannot convert the name of device %1% (\"%2%\") to an SWTrace string")
303  % deviceUid
304  % deviceName);
305  return false;
306  }
307 
308  // Calculate the size in words of the device record
309  size_t deviceRecordSize = 2u + // The size of the fixed part (uid + cores + name_offset)
310  deviceNameBuffer.size(); // The size of the variable part (the device name including
311  // the null-terminator)
312 
313  // Allocate the necessary space for the device record
314  deviceRecord.resize(deviceRecordSize);
315 
316  // Create the device record
317  deviceRecord[0] = deviceRecordWord0; // uid + core
318  deviceRecord[1] = deviceRecordWord1; // name_offset
319  auto offset = deviceRecord.begin() + 2u;
320  std::copy(deviceNameBuffer.begin(), deviceNameBuffer.end(), offset); // name
321 
322  return true;
323 }
324 
326  CounterSetRecord& counterSetRecord,
327  std::string& errorMessage)
328 {
329  BOOST_ASSERT(counterSet);
330 
331  uint16_t counterSetUid = counterSet->m_Uid;
332  const std::string& counterSetName = counterSet->m_Name;
333  uint16_t counterSetCount = counterSet->m_Count;
334 
335  BOOST_ASSERT(!counterSetName.empty());
336 
337  // Counter set record word 0:
338  // 16:31 [16] uid: the unique identifier for the counter_set
339  // 0:15 [16] count: the number of counters which can be active in this set at any one time
340  uint32_t counterSetRecordWord0 = (static_cast<uint32_t>(counterSetUid) << 16) |
341  (static_cast<uint32_t>(counterSetCount));
342 
343  // Counter set record word 1:
344  // 0:31 [32] name_offset: offset from the beginning of the counter set pool to the name field
345  uint32_t counterSetRecordWord1 = 0; // The offset is always zero here, as the name field is always
346  // the first (and only) item in the pool
347 
348  // Convert the device name into a SWTrace namestring
349  std::vector<uint32_t> counterSetNameBuffer;
350  if (!StringToSwTraceString<SwTraceNameCharPolicy>(counterSet->m_Name, counterSetNameBuffer))
351  {
352  errorMessage = boost::str(boost::format("Cannot convert the name of counter set %1% (\"%2%\") to "
353  "an SWTrace namestring")
354  % counterSetUid
355  % counterSetName);
356  return false;
357  }
358 
359  // Calculate the size in words of the counter set record
360  size_t counterSetRecordSize = 2u + // The size of the fixed part (uid + cores + name_offset)
361  counterSetNameBuffer.size(); // The size of the variable part (the counter set name
362  // including the null-terminator)
363 
364  // Allocate the space for the counter set record
365  counterSetRecord.resize(counterSetRecordSize);
366 
367  // Create the counter set record
368  counterSetRecord[0] = counterSetRecordWord0; // uid + core
369  counterSetRecord[1] = counterSetRecordWord1; // name_offset
370  auto offset = counterSetRecord.begin() + 2u;
371  std::copy(counterSetNameBuffer.begin(), counterSetNameBuffer.end(), offset); // name
372 
373  return true;
374 }
375 
377  EventRecord& eventRecord,
378  std::string& errorMessage)
379 {
380  using namespace boost::numeric;
381 
382  BOOST_ASSERT(counter);
383 
384  uint16_t counterUid = counter->m_Uid;
385  uint16_t maxCounterUid = counter->m_MaxCounterUid;
386  uint16_t deviceUid = counter->m_DeviceUid;
387  uint16_t counterSetUid = counter->m_CounterSetUid;
388  uint16_t counterClass = counter->m_Class;
389  uint16_t counterInterpolation = counter->m_Interpolation;
390  double counterMultiplier = counter->m_Multiplier;
391  const std::string& counterName = counter->m_Name;
392  const std::string& counterDescription = counter->m_Description;
393  const std::string& counterUnits = counter->m_Units;
394 
395  BOOST_ASSERT(counterClass == 0 || counterClass == 1);
396  BOOST_ASSERT(counterInterpolation == 0 || counterInterpolation == 1);
397  BOOST_ASSERT(counterMultiplier);
398 
399  // Utils
400  size_t uint32_t_size = sizeof(uint32_t);
401 
402  // Event record word 0:
403  // 16:31 [16] max_counter_uid: if the device this event is associated with has more than one core and there
404  // is one of these counters per core this value will be set to
405  // (counter_uid + cores (from device_record)) - 1.
406  // If there is only a single core then this value will be the same as
407  // the counter_uid value
408  // 0:15 [16] count_uid: unique ID for the counter. Must be unique across all counters in all categories
409  uint32_t eventRecordWord0 = (static_cast<uint32_t>(maxCounterUid) << 16) |
410  (static_cast<uint32_t>(counterUid));
411 
412  // Event record word 1:
413  // 16:31 [16] device: UID of the device this event is associated with. Set to zero if the event is NOT
414  // associated with a device
415  // 0:15 [16] counter_set: UID of the counter_set this event is associated with. Set to zero if the event
416  // is NOT associated with a counter_set
417  uint32_t eventRecordWord1 = (static_cast<uint32_t>(deviceUid) << 16) |
418  (static_cast<uint32_t>(counterSetUid));
419 
420  // Event record word 2:
421  // 16:31 [16] class: type describing how to treat each data point in a stream of data points
422  // 0:15 [16] interpolation: type describing how to interpolate each data point in a stream of data points
423  uint32_t eventRecordWord2 = (static_cast<uint32_t>(counterClass) << 16) |
424  (static_cast<uint32_t>(counterInterpolation));
425 
426  // Event record word 3-4:
427  // 0:63 [64] multiplier: internal data stream is represented as integer values, this allows scaling of
428  // those values as if they are fixed point numbers. Zero is not a valid value
429  uint32_t multiplier[2] = { 0u, 0u };
430  BOOST_ASSERT(sizeof(counterMultiplier) == sizeof(multiplier));
431  std::memcpy(multiplier, &counterMultiplier, sizeof(multiplier));
432  uint32_t eventRecordWord3 = multiplier[0];
433  uint32_t eventRecordWord4 = multiplier[1];
434 
435  // Event record word 5:
436  // 0:31 [32] name_offset: offset from the beginning of the event record pool to the name field
437  uint32_t eventRecordWord5 = 0; // The offset is always zero here, as the name field is always
438  // the first item in the pool
439 
440  // Convert the counter name into a SWTrace string
441  std::vector<uint32_t> counterNameBuffer;
442  if (!StringToSwTraceString<SwTraceCharPolicy>(counterName, counterNameBuffer))
443  {
444  errorMessage = boost::str(boost::format("Cannot convert the name of counter %1% (name: \"%2%\") "
445  "to an SWTrace string")
446  % counterUid
447  % counterName);
448  return false;
449  }
450 
451  // Event record word 6:
452  // 0:31 [32] description_offset: offset from the beginning of the event record pool to the description field
453  // The size of the name buffer in bytes
454  uint32_t eventRecordWord6 = numeric_cast<uint32_t>(counterNameBuffer.size() * uint32_t_size);
455 
456  // Convert the counter description into a SWTrace string
457  std::vector<uint32_t> counterDescriptionBuffer;
458  if (!StringToSwTraceString<SwTraceCharPolicy>(counterDescription, counterDescriptionBuffer))
459  {
460  errorMessage = boost::str(boost::format("Cannot convert the description of counter %1% (description: \"%2%\") "
461  "to an SWTrace string")
462  % counterUid
463  % counterName);
464  return false;
465  }
466 
467  // Event record word 7:
468  // 0:31 [32] units_offset: (optional) offset from the beginning of the event record pool to the units field.
469  // An offset value of zero indicates this field is not provided
470  bool includeUnits = !counterUnits.empty();
471  // The size of the description buffer in bytes
472  uint32_t eventRecordWord7 = includeUnits ?
473  eventRecordWord6 +
474  numeric_cast<uint32_t>(counterDescriptionBuffer.size() * uint32_t_size) :
475  0;
476 
477  // Convert the counter units into a SWTrace namestring (optional)
478  std::vector<uint32_t> counterUnitsBuffer;
479  if (includeUnits)
480  {
481  // Convert the counter units into a SWTrace namestring
482  if (!StringToSwTraceString<SwTraceNameCharPolicy>(counterUnits, counterUnitsBuffer))
483  {
484  errorMessage = boost::str(boost::format("Cannot convert the units of counter %1% (units: \"%2%\") "
485  "to an SWTrace string")
486  % counterUid
487  % counterName);
488  return false;
489  }
490  }
491 
492  // Calculate the size in words of the event record
493  size_t eventRecordSize = 8u + // The size of the fixed part (counter_uid + max_counter_uid + device +
494  // counter_set + class + interpolation +
495  // multiplier + name_offset + description_offset +
496  // units_offset)
497  counterNameBuffer.size() + // The size of the variable part (the counter name,
498  counterDescriptionBuffer.size() + // description and units including the null-terminator)
499  counterUnitsBuffer.size();
500 
501  // Allocate the space for the event record
502  eventRecord.resize(eventRecordSize);
503 
505  // Create the event record
506  eventRecord[0] = eventRecordWord0; // max_counter_uid + counter_uid
507  eventRecord[1] = eventRecordWord1; // device + counter_set
508  eventRecord[2] = eventRecordWord2; // class + interpolation
509  eventRecord[3] = eventRecordWord3; // multiplier
510  eventRecord[4] = eventRecordWord4; // multiplier
511  eventRecord[5] = eventRecordWord5; // name_offset
512  eventRecord[6] = eventRecordWord6; // description_offset
513  eventRecord[7] = eventRecordWord7; // units_offset
514  auto offset = eventRecord.begin() + 8u;
515  std::copy(counterNameBuffer.begin(), counterNameBuffer.end(), offset); // name
516  offset += counterNameBuffer.size();
517  std::copy(counterDescriptionBuffer.begin(), counterDescriptionBuffer.end(), offset); // description
518  if (includeUnits)
519  {
520  offset += counterDescriptionBuffer.size();
521  std::copy(counterUnitsBuffer.begin(), counterUnitsBuffer.end(), offset); // units
522  }
524 
525  return true;
526 }
527 
529 {
530  using namespace boost::numeric;
531 
532  // Get the amount of data that needs to be put into the packet
533  uint16_t categoryCount = counterDirectory.GetCategoryCount();
534  uint16_t deviceCount = counterDirectory.GetDeviceCount();
535  uint16_t counterSetCount = counterDirectory.GetCounterSetCount();
536 
537  // Utils
538  size_t uint32_t_size = sizeof(uint32_t);
539  size_t packetHeaderSize = 2u;
540  size_t bodyHeaderSize = 6u;
541 
542  // Initialize the offset for the pointer tables
543  uint32_t pointerTableOffset = 0;
544 
545  // --------------
546  // Device records
547  // --------------
548 
549  // Process device records
550  std::vector<DeviceRecord> deviceRecords(deviceCount);
551  const Devices& devices = counterDirectory.GetDevices();
552  std::vector<uint32_t> deviceRecordOffsets(deviceCount, 0); // device_records_pointer_table
553  size_t deviceRecordsSize = 0;
554  size_t deviceIndex = 0;
555  size_t deviceRecordOffsetIndex = 0;
556  for (auto it = devices.begin(); it != devices.end(); it++)
557  {
558  const DevicePtr& device = it->second;
559  DeviceRecord& deviceRecord = deviceRecords.at(deviceIndex);
560 
561  std::string errorMessage;
562  if (!CreateDeviceRecord(device, deviceRecord, errorMessage))
563  {
564  CancelOperationAndThrow<RuntimeException>(errorMessage);
565  }
566 
567  // Update the total size in words of the device records
568  deviceRecordsSize += deviceRecord.size();
569 
570  // Add the device record offset to the device records pointer table offset field
571  deviceRecordOffsets[deviceRecordOffsetIndex] = pointerTableOffset;
572  pointerTableOffset += numeric_cast<uint32_t>(deviceRecord.size() * uint32_t_size);
573 
574  deviceIndex++;
575  deviceRecordOffsetIndex++;
576  }
577 
578  // -------------------
579  // Counter set records
580  // -------------------
581 
582  // Process counter set records
583  std::vector<CounterSetRecord> counterSetRecords(counterSetCount);
584  const CounterSets& counterSets = counterDirectory.GetCounterSets();
585  std::vector<uint32_t> counterSetRecordOffsets(counterSetCount, 0); // counter_set_records_pointer_table
586  size_t counterSetRecordsSize = 0;
587  size_t counterSetIndex = 0;
588  size_t counterSetRecordOffsetIndex = 0;
589  for (auto it = counterSets.begin(); it != counterSets.end(); it++)
590  {
591  const CounterSetPtr& counterSet = it->second;
592  CounterSetRecord& counterSetRecord = counterSetRecords.at(counterSetIndex);
593 
594  std::string errorMessage;
595  if (!CreateCounterSetRecord(counterSet, counterSetRecord, errorMessage))
596  {
597  CancelOperationAndThrow<RuntimeException>(errorMessage);
598  }
599 
600  // Update the total size in words of the counter set records
601  counterSetRecordsSize += counterSetRecord.size();
602 
603  // Add the counter set record offset to the counter set records pointer table offset field
604  counterSetRecordOffsets[counterSetRecordOffsetIndex] = pointerTableOffset;
605  pointerTableOffset += numeric_cast<uint32_t>(counterSetRecord.size() * uint32_t_size);
606 
607  counterSetIndex++;
608  counterSetRecordOffsetIndex++;
609  }
610 
611  // ----------------
612  // Category records
613  // ----------------
614 
615  // Process category records
616  std::vector<CategoryRecord> categoryRecords(categoryCount);
617  const Categories& categories = counterDirectory.GetCategories();
618  std::vector<uint32_t> categoryRecordOffsets(categoryCount, 0); // category_records_pointer_table
619  size_t categoryRecordsSize = 0;
620  size_t categoryIndex = 0;
621  size_t categoryRecordOffsetIndex = 0;
622  for (auto it = categories.begin(); it != categories.end(); it++)
623  {
624  const CategoryPtr& category = *it;
625  CategoryRecord& categoryRecord = categoryRecords.at(categoryIndex);
626 
627  std::string errorMessage;
628  if (!CreateCategoryRecord(category, counterDirectory.GetCounters(), categoryRecord, errorMessage))
629  {
630  CancelOperationAndThrow<RuntimeException>(errorMessage);
631  }
632 
633  // Update the total size in words of the category records
634  categoryRecordsSize += categoryRecord.size();
635 
636  // Add the category record offset to the category records pointer table offset field
637  categoryRecordOffsets[categoryRecordOffsetIndex] = pointerTableOffset;
638  pointerTableOffset += numeric_cast<uint32_t>(categoryRecord.size() * uint32_t_size);
639 
640  categoryIndex++;
641  categoryRecordOffsetIndex++;
642  }
643 
644 
645 
646  // Calculate the length in words of the counter directory packet's data (excludes the packet header size)
647  size_t counterDirectoryPacketDataLength =
648  bodyHeaderSize + // The size of the body header
649  deviceRecordOffsets.size() + // The size of the device records pointer table
650  counterSetRecordOffsets.size() + // The size of counter set pointer table
651  categoryRecordOffsets.size() + // The size of category records pointer table
652  deviceRecordsSize + // The total size of the device records
653  counterSetRecordsSize + // The total size of the counter set records
654  categoryRecordsSize; // The total size of the category records
655 
656  // Calculate the size in words of the counter directory packet (the data length plus the packet header size)
657  size_t counterDirectoryPacketSize = packetHeaderSize + // The size of the packet header
658  counterDirectoryPacketDataLength; // The data length
659 
660 
661  // Allocate the necessary space for the counter directory packet
662  std::vector<uint32_t> counterDirectoryPacket(counterDirectoryPacketSize, 0);
663 
664  // -------------
665  // Packet header
666  // -------------
667 
668  // Packet header word 0:
669  // 26:31 [6] packet_family: control Packet Family
670  // 16:25 [10] packet_id: packet identifier
671  // 8:15 [8] reserved: all zeros
672  // 0:7 [8] reserved: all zeros
673  uint32_t packetFamily = 0;
674  uint32_t packetId = 2;
675  uint32_t packetHeaderWord0 = ((packetFamily & 0x3F) << 26) | ((packetId & 0x3FF) << 16);
676 
677  // Packet header word 1:
678  // 0:31 [32] data_length: length of data, in bytes
679  uint32_t packetHeaderWord1 = numeric_cast<uint32_t>(counterDirectoryPacketDataLength * uint32_t_size);
680 
681  // Create the packet header
682  uint32_t packetHeader[2]
683  {
684  packetHeaderWord0, // packet_family + packet_id + reserved + reserved
685  packetHeaderWord1 // data_length
686  };
687 
688  // -----------
689  // Body header
690  // -----------
691 
692  // Body header word 0:
693  // 16:31 [16] device_records_count: number of entries in the device_records_pointer_table
694  // 0:15 [16] reserved: all zeros
695  uint32_t bodyHeaderWord0 = static_cast<uint32_t>(deviceCount) << 16;
696 
697  // Body header word 1:
698  // 0:31 [32] device_records_pointer_table_offset: offset to the device_records_pointer_table
699  uint32_t bodyHeaderWord1 = 0; // The offset is always zero here, as the device record pointer table field is always
700  // the first item in the pool
701 
702  // Body header word 2:
703  // 16:31 [16] counter_set_count: number of entries in the counter_set_pointer_table
704  // 0:15 [16] reserved: all zeros
705  uint32_t bodyHeaderWord2 = static_cast<uint32_t>(counterSetCount) << 16;
706 
707  // Body header word 3:
708  // 0:31 [32] counter_set_pointer_table_offset: offset to the counter_set_pointer_table
709  uint32_t bodyHeaderWord3 =
710  numeric_cast<uint32_t>(deviceRecordOffsets.size() * uint32_t_size); // The size of the device records
711  // pointer table
712 
713 
714  // Body header word 4:
715  // 16:31 [16] categories_count: number of entries in the categories_pointer_table
716  // 0:15 [16] reserved: all zeros
717  uint32_t bodyHeaderWord4 = static_cast<uint32_t>(categoryCount) << 16;
718 
719  // Body header word 3:
720  // 0:31 [32] categories_pointer_table_offset: offset to the categories_pointer_table
721  uint32_t bodyHeaderWord5 =
722  numeric_cast<uint32_t>(deviceRecordOffsets.size() * uint32_t_size + // The size of the device records
723  counterSetRecordOffsets.size() * uint32_t_size); // pointer table, plus the size of
724  // the counter set pointer table
725 
726  // Create the body header
727  uint32_t bodyHeader[6]
728  {
729  bodyHeaderWord0, // device_records_count + reserved
730  bodyHeaderWord1, // device_records_pointer_table_offset
731  bodyHeaderWord2, // counter_set_count + reserved
732  bodyHeaderWord3, // counter_set_pointer_table_offset
733  bodyHeaderWord4, // categories_count + reserved
734  bodyHeaderWord5 // categories_pointer_table_offset
735  };
736 
738  // Create the counter directory packet
739  auto counterDirectoryPacketOffset = counterDirectoryPacket.begin();
740  // packet_header
741  std::copy(packetHeader, packetHeader + packetHeaderSize, counterDirectoryPacketOffset);
742  counterDirectoryPacketOffset += packetHeaderSize;
743  // body_header
744  std::copy(bodyHeader, bodyHeader + bodyHeaderSize, counterDirectoryPacketOffset);
745  counterDirectoryPacketOffset += bodyHeaderSize;
746  // device_records_pointer_table
747  std::copy(deviceRecordOffsets.begin(), deviceRecordOffsets.end(), counterDirectoryPacketOffset);
748  counterDirectoryPacketOffset += deviceRecordOffsets.size();
749  // counter_set_pointer_table
750  std::copy(counterSetRecordOffsets.begin(), counterSetRecordOffsets.end(), counterDirectoryPacketOffset);
751  counterDirectoryPacketOffset += counterSetRecordOffsets.size();
752  // category_pointer_table
753  std::copy(categoryRecordOffsets.begin(), categoryRecordOffsets.end(), counterDirectoryPacketOffset);
754  counterDirectoryPacketOffset += categoryRecordOffsets.size();
755  // device_records
756  for (const DeviceRecord& deviceRecord : deviceRecords)
757  {
758  std::copy(deviceRecord.begin(), deviceRecord.end(), counterDirectoryPacketOffset); // device_record
759  counterDirectoryPacketOffset += deviceRecord.size();
760  }
761  // counter_set_records
762  for (const CounterSetRecord& counterSetRecord : counterSetRecords)
763  {
764  std::copy(counterSetRecord.begin(), counterSetRecord.end(), counterDirectoryPacketOffset); // counter_set_record
765  counterDirectoryPacketOffset += counterSetRecord.size();
766  }
767  // category_records
768  for (const CategoryRecord& categoryRecord : categoryRecords)
769  {
770  std::copy(categoryRecord.begin(), categoryRecord.end(), counterDirectoryPacketOffset); // category_record
771  counterDirectoryPacketOffset += categoryRecord.size();
772  }
774 
775  // Calculate the total size in bytes of the counter directory packet
776  uint32_t totalSize = numeric_cast<uint32_t>(counterDirectoryPacketSize * uint32_t_size);
777 
778  // Reserve space in the buffer for the packet
779  uint32_t reserved = 0;
780  IPacketBufferPtr writeBuffer = m_BufferManager.Reserve(totalSize, reserved);
781 
782  if (writeBuffer == nullptr || reserved < totalSize)
783  {
784  CancelOperationAndThrow<BufferExhaustion>(
785  writeBuffer,
786  boost::str(boost::format("No space left in buffer. Unable to reserve (%1%) bytes.") % totalSize));
787  }
788 
789  // Offset for writing to the buffer
790  uint32_t offset = 0;
791 
792  // Write the counter directory packet to the buffer
793  for (uint32_t counterDirectoryPacketWord : counterDirectoryPacket)
794  {
795  WriteUint32(writeBuffer, offset, counterDirectoryPacketWord);
796  offset += numeric_cast<uint32_t>(uint32_t_size);
797  }
798 
799  m_BufferManager.Commit(writeBuffer, totalSize);
800 }
801 
803 {
804  uint32_t uint16_t_size = sizeof(uint16_t);
805  uint32_t uint32_t_size = sizeof(uint32_t);
806  uint32_t uint64_t_size = sizeof(uint64_t);
807 
808  uint32_t packetFamily = 3;
809  uint32_t packetClass = 0;
810  uint32_t packetType = 0;
811  uint32_t headerSize = 2 * uint32_t_size;
812  uint32_t bodySize = uint64_t_size + numeric_cast<uint32_t>(values.size()) * (uint16_t_size + uint32_t_size);
813  uint32_t totalSize = headerSize + bodySize;
814  uint32_t offset = 0;
815  uint32_t reserved = 0;
816 
817  IPacketBufferPtr writeBuffer = m_BufferManager.Reserve(totalSize, reserved);
818 
819  if (writeBuffer == nullptr || reserved < totalSize)
820  {
821  CancelOperationAndThrow<BufferExhaustion>(
822  writeBuffer,
823  boost::str(boost::format("No space left in buffer. Unable to reserve (%1%) bytes.") % totalSize));
824  }
825 
826  // Create header.
827  WriteUint32(writeBuffer,
828  offset,
829  ((packetFamily & 0x0000003F) << 26) |
830  ((packetClass & 0x0000007F) << 19) |
831  ((packetType & 0x00000007) << 16));
832  offset += uint32_t_size;
833  WriteUint32(writeBuffer, offset, bodySize);
834 
835  // Copy captured Timestamp.
836  offset += uint32_t_size;
837  WriteUint64(writeBuffer, offset, timestamp);
838 
839  // Copy selectedCounterIds.
840  offset += uint64_t_size;
841  for (const auto& pair: values)
842  {
843  WriteUint16(writeBuffer, offset, pair.counterId);
844  offset += uint16_t_size;
845  WriteUint32(writeBuffer, offset, pair.counterValue);
846  offset += uint32_t_size;
847  }
848 
849  m_BufferManager.Commit(writeBuffer, totalSize);
850 }
851 
853  const std::vector<uint16_t>& selectedCounterIds)
854 {
855  uint32_t uint16_t_size = sizeof(uint16_t);
856  uint32_t uint32_t_size = sizeof(uint32_t);
857 
858  uint32_t packetFamily = 0;
859  uint32_t packetId = 4;
860  uint32_t headerSize = 2 * uint32_t_size;
861  uint32_t bodySize = uint32_t_size + numeric_cast<uint32_t>(selectedCounterIds.size()) * uint16_t_size;
862  uint32_t totalSize = headerSize + bodySize;
863  uint32_t offset = 0;
864  uint32_t reserved = 0;
865 
866  IPacketBufferPtr writeBuffer = m_BufferManager.Reserve(totalSize, reserved);
867 
868  if (writeBuffer == nullptr || reserved < totalSize)
869  {
870  CancelOperationAndThrow<BufferExhaustion>(
871  writeBuffer,
872  boost::str(boost::format("No space left in buffer. Unable to reserve (%1%) bytes.") % totalSize));
873  }
874 
875  // Create header.
876  WriteUint32(writeBuffer, offset, ((packetFamily & 0x3F) << 26) | ((packetId & 0x3FF) << 16));
877  offset += uint32_t_size;
878  WriteUint32(writeBuffer, offset, bodySize);
879 
880  // Copy capturePeriod.
881  offset += uint32_t_size;
882  WriteUint32(writeBuffer, offset, capturePeriod);
883 
884  // Copy selectedCounterIds.
885  offset += uint32_t_size;
886  for(const uint16_t& id: selectedCounterIds)
887  {
888  WriteUint16(writeBuffer, offset, id);
889  offset += uint16_t_size;
890  }
891 
892  m_BufferManager.Commit(writeBuffer, totalSize);
893 }
894 
895 } // namespace profiling
896 
897 } // namespace armnn
virtual IPacketBufferPtr Reserve(unsigned int requestedSize, unsigned int &reservedSize)=0
std::vector< uint32_t > CounterSetRecord
std::vector< CounterValue > IndexValuePairsVector
std::string GetHardwareVersion()
void WriteUint16(const IPacketBufferPtr &packetBuffer, unsigned int offset, uint16_t value)
void WriteUint32(const IPacketBufferPtr &packetBuffer, unsigned int offset, uint32_t value)
bool CreateDeviceRecord(const DevicePtr &device, DeviceRecord &deviceRecord, std::string &errorMessage)
void SendCounterDirectoryPacket(const ICounterDirectory &counterDirectory) override
Create and write a CounterDirectoryPacket from the parameters to the buffer.
std::unordered_map< uint16_t, CounterPtr > Counters
#define ARMNN_NO_CONVERSION_WARN_END
Definition: Conversion.hpp:37
std::unique_ptr< Device > DevicePtr
std::string GetProcessName()
void SendStreamMetaDataPacket() override
Create and write a StreamMetaDataPacket in the buffer.
std::unique_ptr< CounterSet > CounterSetPtr
virtual void Commit(IPacketBufferPtr &packetBuffer, unsigned int size, bool notifyConsumer=true)=0
Copyright (c) 2020 ARM Limited.
virtual const CounterSets & GetCounterSets() const =0
std::string GetSoftwareInfo()
virtual uint16_t GetCategoryCount() const =0
constexpr uint32_t EncodeVersion(uint32_t major, uint32_t minor, uint32_t patch)
std::unordered_map< uint16_t, CounterSetPtr > CounterSets
virtual const Categories & GetCategories() const =0
virtual const Devices & GetDevices() const =0
std::shared_ptr< Counter > CounterPtr
void SendPeriodicCounterCapturePacket(uint64_t timestamp, const IndexValuePairsVector &values) override
Create and write a PeriodicCounterCapturePacket from the parameters to the buffer.
bool CreateCounterSetRecord(const CounterSetPtr &counterSet, CounterSetRecord &counterSetRecord, std::string &errorMessage)
virtual uint16_t GetDeviceCount() const =0
std::enable_if_t< std::is_unsigned< Source >::value &&std::is_unsigned< Dest >::value, Dest > numeric_cast(Source source)
Definition: NumericCast.hpp:33
#define MAX_METADATA_PACKET_LENGTH
void WriteUint64(const std::unique_ptr< IPacketBuffer > &packetBuffer, unsigned int offset, uint64_t value)
std::unordered_set< CategoryPtr > Categories
virtual uint16_t GetCounterSetCount() const =0
#define ARMNN_NO_CONVERSION_WARN_BEGIN
Definition: Conversion.hpp:36
std::string GetSoftwareVersion()
void SendPeriodicCounterSelectionPacket(uint32_t capturePeriod, const std::vector< uint16_t > &selectedCounterIds) override
Create and write a PeriodicCounterSelectionPacket from the parameters to the buffer.
std::vector< uint32_t > CategoryRecord
std::unique_ptr< Category > CategoryPtr
static const unsigned int PIPE_MAGIC
virtual const Counters & GetCounters() const =0
std::unordered_map< uint16_t, DevicePtr > Devices
bool CreateEventRecord(const CounterPtr &counter, EventRecord &eventRecord, std::string &errorMessage)
std::unique_ptr< IPacketBuffer > IPacketBufferPtr
bool CreateCategoryRecord(const CategoryPtr &category, const Counters &counters, CategoryRecord &categoryRecord, std::string &errorMessage)