ArmNN
 20.02
DirectoryCaptureCommandHandler.cpp
Go to the documentation of this file.
1 //
2 // Copyright © 2019 Arm Ltd. All rights reserved.
3 // SPDX-License-Identifier: MIT
4 //
6 
7 #include <armnn/BackendId.hpp>
8 #include "ProfilingUtils.hpp"
9 
10 #include <atomic>
11 #include <iostream>
12 
13 namespace armnn
14 {
15 
16 namespace profiling
17 {
18 
19 // Utils
20 uint32_t uint16_t_size = sizeof(uint16_t);
21 uint32_t uint32_t_size = sizeof(uint32_t);
22 
23 void DirectoryCaptureCommandHandler::ParseData(const armnn::profiling::Packet& packet)
24 {
25  uint16_t categoryRecordCount;
26  uint16_t counterSetRecordCount;
27  uint16_t deviceRecordCount;
28 
29  uint32_t offset = 0;
30 
31  if (packet.GetLength() < 8)
32  {
33  std::cout << "Counter directory packet received." << std::endl;
34  return;
35  }
36 
37  const unsigned char* data = packet.GetData();
38  // Body header word 0:
39  // 0:15 [16] reserved: all zeros
40  offset += uint16_t_size;
41  // 16:31 [16] device_records_count: number of entries in the device_records_pointer_table
42  deviceRecordCount = profiling::ReadUint16(data, offset);
43  offset += uint16_t_size;
44 
45  // Body header word 1:
46  // 0:31 [32] device_records_pointer_table_offset: offset to the device_records_pointer_table
47  // The offset is always zero here, as the device record pointer table field is always the first item in the pool
48  offset += uint32_t_size;
49 
50  // Body header word 2:
51  // 0:15 [16] reserved: all zeros
52  offset += uint16_t_size;
53  // 16:31 [16] counter_set_count: number of entries in the counter_set_pointer_table
54  counterSetRecordCount = profiling::ReadUint16(data, offset);
55  offset += uint16_t_size;
56 
57  // Body header word 3:
58  // 0:31 [32] counter_set_pointer_table_offset: offset to the counter_set_pointer_table
59  // counterPointerTableSetOffset = profiling::ReadUint32(data, offset);
60  offset += uint32_t_size;
61 
62  // Body header word 4:
63  // 0:15 [16] reserved: all zeros
64  offset += uint16_t_size;
65  // 16:31 [16] categories_count: number of entries in the categories_pointer_table
66  categoryRecordCount = profiling::ReadUint16(data, offset);
67  offset += uint16_t_size;
68 
69  // Body header word 5:
70  // 0:31 [32] categories_pointer_table_offset: offset to the categories_pointer_table
71  // categoriesPointerTableOffset = profiling::ReadUint32(data, offset);
72  offset += uint32_t_size;
73 
74  std::vector<uint32_t> deviceRecordOffsets(deviceRecordCount);
75  std::vector<uint32_t> counterSetOffsets(counterSetRecordCount);
76  std::vector<uint32_t> categoryOffsets(categoryRecordCount);
77 
78  for (uint32_t i = 0; i < deviceRecordCount; ++i)
79  {
80  deviceRecordOffsets[i] = profiling::ReadUint32(data, offset);
81  offset += uint32_t_size;
82  }
83 
84  for (uint32_t i = 0; i < counterSetRecordCount; ++i)
85  {
86  counterSetOffsets[i] = profiling::ReadUint32(data, offset);
87  offset += uint32_t_size;
88  }
89 
90  for (uint32_t i = 0; i < categoryRecordCount; ++i)
91  {
92  categoryOffsets[i] = profiling::ReadUint32(data, offset);
93  offset += uint32_t_size;
94  }
95 
96  for (uint32_t deviceIndex = 0; deviceIndex < deviceRecordCount; ++deviceIndex)
97  {
98  uint32_t deviceRecordOffset = offset + deviceRecordOffsets[deviceIndex];
99  // Device record word 0:
100  // 0:15 [16] cores: the number of individual streams of counters for one or more cores of some device
101  uint16_t deviceCores = profiling::ReadUint16(data, deviceRecordOffset);
102  // 16:31 [16] deviceUid: the unique identifier for the device
103  deviceRecordOffset += uint16_t_size;
104  uint16_t deviceUid = profiling::ReadUint16(data, deviceRecordOffset);
105  deviceRecordOffset += uint16_t_size;
106 
107  // Device record word 1:
108  // Offset from the beginning of the device record pool to the name field.
109  uint32_t nameOffset = profiling::ReadUint32(data, deviceRecordOffset);
110 
111  deviceRecordOffset += uint32_t_size;
112  deviceRecordOffset += uint32_t_size;
113  deviceRecordOffset += nameOffset;
114 
115  const std::string& deviceName = GetStringNameFromBuffer(data, deviceRecordOffset);
116  const Device* registeredDevice = m_CounterDirectory.RegisterDevice(deviceName, deviceCores);
117  m_UidTranslation[registeredDevice->m_Uid] = deviceUid;
118  }
119 
120  for (uint32_t counterSetIndex = 0; counterSetIndex < counterSetRecordCount; ++counterSetIndex)
121  {
122  uint32_t counterSetOffset = offset + counterSetOffsets[counterSetIndex];
123 
124  // Counter set record word 0:
125  // 0:15 [16] count: the number of counters which can be active in this set at any one time
126  uint16_t counterSetCount = profiling::ReadUint16(data, counterSetOffset);
127  counterSetOffset += uint16_t_size;
128 
129  // 16:31 [16] deviceUid: the unique identifier for the counter_set
130  uint16_t counterSetUid = profiling::ReadUint16(data, counterSetOffset);
131  counterSetOffset += uint16_t_size;
132 
133  // Counter set record word 1:
134  // 0:31 [32] name_offset: offset from the beginning of the counter set pool to the name field
135  // The offset is always zero here, as the name field is always the first (and only) item in the pool
136  counterSetOffset += uint32_t_size;
137  counterSetOffset += uint32_t_size;
138 
139  auto counterSet =
140  m_CounterDirectory.RegisterCounterSet(GetStringNameFromBuffer(data, counterSetOffset), counterSetCount);
141  m_UidTranslation[counterSet->m_Uid] = counterSetUid;
142  }
143  ReadCategoryRecords(data, offset, categoryOffsets);
144 }
145 
146 void DirectoryCaptureCommandHandler::ReadCategoryRecords(const unsigned char* const data,
147  uint32_t offset,
148  std::vector<uint32_t> categoryOffsets)
149 {
150  uint32_t categoryRecordCount = static_cast<uint32_t>(categoryOffsets.size());
151 
152  for (uint32_t categoryIndex = 0; categoryIndex < categoryRecordCount; ++categoryIndex)
153  {
154  uint32_t categoryRecordOffset = offset + categoryOffsets[categoryIndex];
155 
156  // Category record word 1:
157  // 0:15 Reserved, value 0x0000.
158  categoryRecordOffset += uint16_t_size;
159  // 16:31 Number of events belonging to this category.
160  uint32_t eventCount = profiling::ReadUint16(data, categoryRecordOffset);
161  categoryRecordOffset += uint16_t_size;
162 
163  // Category record word 2
164  // 0:31 Offset from the beginning of the category data pool to the event_pointer_table
165  uint32_t eventPointerTableOffset = profiling::ReadUint32(data, categoryRecordOffset);
166  categoryRecordOffset += uint32_t_size;
167 
168  // Category record word 3
169  // 0:31 Offset from the beginning of the category data pool to the name field.
170  uint32_t nameOffset = profiling::ReadUint32(data, categoryRecordOffset);
171  categoryRecordOffset += uint32_t_size;
172 
173  std::vector<uint32_t> eventRecordsOffsets(eventCount);
174 
175  eventPointerTableOffset += categoryRecordOffset;
176 
177  for (uint32_t eventIndex = 0; eventIndex < eventCount; ++eventIndex)
178  {
179  eventRecordsOffsets[eventIndex] =
180  profiling::ReadUint32(data, eventPointerTableOffset + uint32_t_size * eventIndex);
181  }
182 
183  const std::vector<CounterDirectoryEventRecord>& eventRecords =
184  ReadEventRecords(data, categoryRecordOffset, eventRecordsOffsets);
185  categoryRecordOffset += uint32_t_size;
186 
187  const Category* category = m_CounterDirectory.RegisterCategory(
188  GetStringNameFromBuffer(data, categoryRecordOffset + nameOffset));
189  for (auto& counter : eventRecords)
190  {
191  const Counter* registeredCounter = m_CounterDirectory.RegisterCounter(armnn::profiling::BACKEND_ID,
192  counter.m_CounterUid,
193  category->m_Name,
194  counter.m_CounterClass,
195  counter.m_CounterInterpolation,
196  counter.m_CounterMultiplier,
197  counter.m_CounterName,
198  counter.m_CounterDescription,
199  counter.m_CounterUnits);
200  m_UidTranslation[registeredCounter->m_Uid] = counter.m_CounterUid;
201  }
202  }
203 }
204 
205 std::vector<CounterDirectoryEventRecord> DirectoryCaptureCommandHandler::ReadEventRecords(
206  const unsigned char* data, uint32_t offset, std::vector<uint32_t> eventRecordsOffsets)
207 {
208  uint32_t eventCount = static_cast<uint32_t>(eventRecordsOffsets.size());
209 
210  std::vector<CounterDirectoryEventRecord> eventRecords(eventCount);
211  for (unsigned long i = 0; i < eventCount; ++i)
212  {
213  uint32_t eventRecordOffset = eventRecordsOffsets[i] + offset;
214 
215  // Event record word 0:
216  // 0:15 [16] count_uid: unique ID for the counter. Must be unique across all counters in all categories
217  eventRecords[i].m_CounterUid = profiling::ReadUint16(data, eventRecordOffset);
218  eventRecordOffset += uint16_t_size;
219  // 16:31 [16] max_counter_uid: if the device this event is associated with has more than one core and there
220  // is one of these counters per core this value will be set to
221  // (counter_uid + cores (from device_record)) - 1.
222  // If there is only a single core then this value will be the same as
223  // the counter_uid value
224  eventRecords[i].m_MaxCounterUid = profiling::ReadUint16(data, eventRecordOffset);
225  eventRecordOffset += uint16_t_size;
226 
227  // Event record word 1:
228  // 0:15 [16] counter_set: UID of the counter_set this event is associated with. Set to zero if the event
229  // is NOT associated with a counter_set
230  eventRecords[i].m_DeviceUid = profiling::ReadUint16(data, eventRecordOffset);
231  eventRecordOffset += uint16_t_size;
232 
233  // 16:31 [16] device: UID of the device this event is associated with. Set to zero if the event is NOT
234  // associated with a device
235  eventRecords[i].m_CounterSetUid = profiling::ReadUint16(data, eventRecordOffset);
236  eventRecordOffset += uint16_t_size;
237 
238  // Event record word 2:
239  // 0:15 [16] interpolation: type describing how to interpolate each data point in a stream of data points
240  eventRecords[i].m_CounterClass = profiling::ReadUint16(data, eventRecordOffset);
241  eventRecordOffset += uint16_t_size;
242 
243  // 16:31 [16] class: type describing how to treat each data point in a stream of data points
244  eventRecords[i].m_CounterInterpolation = profiling::ReadUint16(data, eventRecordOffset);
245  eventRecordOffset += uint16_t_size;
246 
247  // Event record word 3-4:
248  // 0:63 [64] multiplier: internal data stream is represented as integer values, this allows scaling of
249  // those values as if they are fixed point numbers. Zero is not a valid value
250  uint32_t multiplier[2] = { 0u, 0u };
251 
252  multiplier[0] = profiling::ReadUint32(data, eventRecordOffset);
253  eventRecordOffset += uint32_t_size;
254  multiplier[1] = profiling::ReadUint32(data, eventRecordOffset);
255  eventRecordOffset += uint32_t_size;
256 
257  std::memcpy(&eventRecords[i].m_CounterMultiplier, &multiplier, sizeof(multiplier));
258 
259  // Event record word 5:
260  // 0:31 [32] name_eventRecordOffset: eventRecordOffset from the
261  // beginning of the event record pool to the name field
262  // The eventRecordOffset is always zero here, as the name field is always the first item in the pool
263  eventRecordOffset += uint32_t_size;
264 
265  // Event record word 6:
266  // 0:31 [32] description_eventRecordOffset: eventRecordOffset from the
267  // beginning of the event record pool to the description field
268  // The size of the name buffer in bytes
269  uint32_t descriptionOffset = profiling::ReadUint32(data, eventRecordOffset);
270  eventRecordOffset += uint32_t_size;
271 
272  // Event record word 7:
273  // 0:31 [32] units_eventRecordOffset: (optional) eventRecordOffset from the
274  // beginning of the event record pool to the units field.
275  // An eventRecordOffset value of zero indicates this field is not provided
276  uint32_t unitsOffset = profiling::ReadUint32(data, eventRecordOffset);
277  eventRecordOffset += uint32_t_size;
278  eventRecordOffset += uint32_t_size;
279 
280  eventRecords[i].m_CounterName = GetStringNameFromBuffer(data, eventRecordOffset);
281 
282  eventRecords[i].m_CounterDescription = GetStringNameFromBuffer(data, eventRecordOffset + descriptionOffset);
283 
284  eventRecords[i].m_CounterUnits = GetStringNameFromBuffer(data, eventRecordOffset + unitsOffset);
285  }
286 
287  return eventRecords;
288 }
289 
291 {
292  if (!m_QuietOperation) // Are we supposed to print to stdout?
293  {
294  std::cout << "Counter directory packet received." << std::endl;
295  }
296 
297  // The ArmNN counter directory is static per ArmNN instance. Ensure we don't parse it a second time.
298  if (!ParsedCounterDirectory())
299  {
300  ParseData(packet);
301  m_AlreadyParsed = true;
302  }
303 
304  if (!m_QuietOperation)
305  {
306  armnn::profiling::PrintCounterDirectory(m_CounterDirectory);
307  }
308 }
309 
311 {
312  return m_CounterDirectory;
313 }
314 
315 std::string DirectoryCaptureCommandHandler::GetStringNameFromBuffer(const unsigned char* const data, uint32_t offset)
316 {
317  std::string deviceName;
318  uint8_t nextChar = profiling::ReadUint8(data, offset);
319 
320  while (isprint(nextChar))
321  {
322  deviceName += static_cast<char>(nextChar);
323  offset++;
324  nextChar = profiling::ReadUint8(data, offset);
325  }
326 
327  return deviceName;
328 }
329 
330 } // namespace profiling
331 
332 } // namespace armnn
const Category * RegisterCategory(const std::string &categoryName) override
const Counter * RegisterCounter(const BackendId &backendId, const uint16_t uid, const std::string &parentCategoryName, uint16_t counterClass, uint16_t interpolation, double multiplier, const std::string &name, const std::string &description, const Optional< std::string > &units=EmptyOptional(), const Optional< uint16_t > &numberOfCores=EmptyOptional(), const Optional< uint16_t > &deviceUid=EmptyOptional(), const Optional< uint16_t > &counterSetUid=EmptyOptional()) override
void operator()(const armnn::profiling::Packet &packet) override
uint16_t ReadUint16(const IPacketBufferPtr &packetBuffer, unsigned int offset)
uint8_t ReadUint8(const IPacketBufferPtr &packetBuffer, unsigned int offset)
Copyright (c) 2020 ARM Limited.
uint32_t ReadUint32(const IPacketBufferPtr &packetBuffer, unsigned int offset)
uint32_t GetLength() const
Definition: Packet.hpp:74
const Device * RegisterDevice(const std::string &deviceName, uint16_t cores=0, const Optional< std::string > &parentCategoryName=EmptyOptional()) override
const CounterSet * RegisterCounterSet(const std::string &counterSetName, uint16_t count=0, const Optional< std::string > &parentCategoryName=EmptyOptional()) override
const unsigned char * GetData() const
Definition: Packet.hpp:75
void PrintCounterDirectory(ICounterDirectory &counterDirectory)