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Ferran Balaguer73882172019-09-02 16:39:42 +01001//
2// Copyright © 2017 Arm Ltd. All rights reserved.
3// SPDX-License-Identifier: MIT
4//
5
6#include "ProfilingUtils.hpp"
7
Jim Flynn4e755a52020-03-29 17:48:26 +01008#include "common/include/ProfilingException.hpp"
9
Ferran Balaguer47d0fe92019-09-04 16:47:34 +010010#include <armnn/Version.hpp>
11
Matteo Martincigh5dc816e2019-11-04 14:05:28 +000012#include <WallClockTimer.hpp>
13
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +010014#include <armnn/utility/Assert.hpp>
Ferran Balaguer73882172019-09-02 16:39:42 +010015
Ferran Balaguer47d0fe92019-09-04 16:47:34 +010016#include <fstream>
Keith Davis3201eea2019-10-24 17:30:41 +010017#include <iostream>
Matteo Martincighab173e92019-09-05 12:02:04 +010018#include <limits>
Ferran Balaguer47d0fe92019-09-04 16:47:34 +010019
Ferran Balaguer73882172019-09-02 16:39:42 +010020namespace armnn
21{
22
23namespace profiling
24{
25
Matteo Martincigh6db5f202019-09-05 12:02:04 +010026namespace
Matteo Martincighab173e92019-09-05 12:02:04 +010027{
Matteo Martincighab173e92019-09-05 12:02:04 +010028
Matteo Martincigh6db5f202019-09-05 12:02:04 +010029void ThrowIfCantGenerateNextUid(uint16_t uid, uint16_t cores = 0)
30{
Matteo Martincighab173e92019-09-05 12:02:04 +010031 // Check that it is possible to generate the next UID without causing an overflow
Matteo Martincigh6db5f202019-09-05 12:02:04 +010032 switch (cores)
Matteo Martincighab173e92019-09-05 12:02:04 +010033 {
Matteo Martincigh6db5f202019-09-05 12:02:04 +010034 case 0:
35 case 1:
36 // Number of cores not specified or set to 1 (a value of zero indicates the device is not capable of
37 // running multiple parallel workloads and will not provide multiple streams of data for each event)
38 if (uid == std::numeric_limits<uint16_t>::max())
39 {
40 throw RuntimeException("Generating the next UID for profiling would result in an overflow");
41 }
42 break;
43 default: // cores > 1
44 // Multiple cores available, as max_counter_uid has to be set to: counter_uid + cores - 1, the maximum
45 // allowed value for a counter UID is consequently: uint16_t_max - cores + 1
46 if (uid >= std::numeric_limits<uint16_t>::max() - cores + 1)
47 {
48 throw RuntimeException("Generating the next UID for profiling would result in an overflow");
49 }
50 break;
Matteo Martincighab173e92019-09-05 12:02:04 +010051 }
Matteo Martincigh6db5f202019-09-05 12:02:04 +010052}
Matteo Martincighab173e92019-09-05 12:02:04 +010053
Matteo Martincigh6db5f202019-09-05 12:02:04 +010054} // Anonymous namespace
55
56uint16_t GetNextUid(bool peekOnly)
57{
58 // The UID used for profiling objects and events. The first valid UID is 1, as 0 is a reserved value
59 static uint16_t uid = 1;
60
61 // Check that it is possible to generate the next UID without causing an overflow (throws in case of error)
62 ThrowIfCantGenerateNextUid(uid);
63
64 if (peekOnly)
65 {
66 // Peek only
67 return uid;
68 }
69 else
70 {
71 // Get the next UID
72 return uid++;
73 }
74}
75
Keith Davise394bd92019-12-02 15:12:19 +000076std::vector<uint16_t> GetNextCounterUids(uint16_t firstUid, uint16_t cores)
Matteo Martincigh6db5f202019-09-05 12:02:04 +010077{
Matteo Martincigh6db5f202019-09-05 12:02:04 +010078 // Check that it is possible to generate the next counter UID without causing an overflow (throws in case of error)
Keith Davise394bd92019-12-02 15:12:19 +000079 ThrowIfCantGenerateNextUid(firstUid, cores);
Matteo Martincigh6db5f202019-09-05 12:02:04 +010080
81 // Get the next counter UIDs
82 size_t counterUidsSize = cores == 0 ? 1 : cores;
83 std::vector<uint16_t> counterUids(counterUidsSize, 0);
84 for (size_t i = 0; i < counterUidsSize; i++)
85 {
Keith Davise394bd92019-12-02 15:12:19 +000086 counterUids[i] = firstUid++;
Matteo Martincigh6db5f202019-09-05 12:02:04 +010087 }
88 return counterUids;
Matteo Martincighab173e92019-09-05 12:02:04 +010089}
90
Matteo Martincigh378bbfc2019-11-04 14:05:28 +000091void WriteBytes(const IPacketBufferPtr& packetBuffer, unsigned int offset, const void* value, unsigned int valueSize)
92{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +010093 ARMNN_ASSERT(packetBuffer);
Matteo Martincigh378bbfc2019-11-04 14:05:28 +000094
95 WriteBytes(packetBuffer->GetWritableData(), offset, value, valueSize);
96}
97
Keith Davis3201eea2019-10-24 17:30:41 +010098uint32_t ConstructHeader(uint32_t packetFamily,
99 uint32_t packetId)
100{
Keith Davis33ed2212020-03-30 10:43:41 +0100101 return (( packetFamily & 0x0000003F ) << 26 )|
102 (( packetId & 0x000003FF ) << 16 );
Keith Davis3201eea2019-10-24 17:30:41 +0100103}
104
105void WriteUint64(const std::unique_ptr<IPacketBuffer>& packetBuffer, unsigned int offset, uint64_t value)
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100106{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100107 ARMNN_ASSERT(packetBuffer);
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100108
109 WriteUint64(packetBuffer->GetWritableData(), offset, value);
110}
111
Matteo Martincigh2ffcc412019-11-05 11:47:40 +0000112void WriteUint32(const IPacketBufferPtr& packetBuffer, unsigned int offset, uint32_t value)
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100113{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100114 ARMNN_ASSERT(packetBuffer);
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100115
116 WriteUint32(packetBuffer->GetWritableData(), offset, value);
117}
118
Matteo Martincigh2ffcc412019-11-05 11:47:40 +0000119void WriteUint16(const IPacketBufferPtr& packetBuffer, unsigned int offset, uint16_t value)
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100120{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100121 ARMNN_ASSERT(packetBuffer);
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100122
123 WriteUint16(packetBuffer->GetWritableData(), offset, value);
124}
125
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000126void WriteUint8(const IPacketBufferPtr& packetBuffer, unsigned int offset, uint8_t value)
127{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100128 ARMNN_ASSERT(packetBuffer);
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000129
130 WriteUint8(packetBuffer->GetWritableData(), offset, value);
131}
132
Matteo Martincigh378bbfc2019-11-04 14:05:28 +0000133void WriteBytes(unsigned char* buffer, unsigned int offset, const void* value, unsigned int valueSize)
134{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100135 ARMNN_ASSERT(buffer);
136 ARMNN_ASSERT(value);
Matteo Martincigh378bbfc2019-11-04 14:05:28 +0000137
138 for (unsigned int i = 0; i < valueSize; i++, offset++)
139 {
140 buffer[offset] = *(reinterpret_cast<const unsigned char*>(value) + i);
141 }
142}
143
Francis Murtagh3a161982019-09-04 15:25:02 +0100144void WriteUint64(unsigned char* buffer, unsigned int offset, uint64_t value)
145{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100146 ARMNN_ASSERT(buffer);
Francis Murtagh3a161982019-09-04 15:25:02 +0100147
148 buffer[offset] = static_cast<unsigned char>(value & 0xFF);
149 buffer[offset + 1] = static_cast<unsigned char>((value >> 8) & 0xFF);
150 buffer[offset + 2] = static_cast<unsigned char>((value >> 16) & 0xFF);
151 buffer[offset + 3] = static_cast<unsigned char>((value >> 24) & 0xFF);
152 buffer[offset + 4] = static_cast<unsigned char>((value >> 32) & 0xFF);
153 buffer[offset + 5] = static_cast<unsigned char>((value >> 40) & 0xFF);
154 buffer[offset + 6] = static_cast<unsigned char>((value >> 48) & 0xFF);
155 buffer[offset + 7] = static_cast<unsigned char>((value >> 56) & 0xFF);
156}
157
Ferran Balaguer73882172019-09-02 16:39:42 +0100158void WriteUint32(unsigned char* buffer, unsigned int offset, uint32_t value)
159{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100160 ARMNN_ASSERT(buffer);
Ferran Balaguer73882172019-09-02 16:39:42 +0100161
Matteo Martincigh149528e2019-09-05 12:02:04 +0100162 buffer[offset] = static_cast<unsigned char>(value & 0xFF);
Ferran Balaguer73882172019-09-02 16:39:42 +0100163 buffer[offset + 1] = static_cast<unsigned char>((value >> 8) & 0xFF);
164 buffer[offset + 2] = static_cast<unsigned char>((value >> 16) & 0xFF);
165 buffer[offset + 3] = static_cast<unsigned char>((value >> 24) & 0xFF);
166}
167
168void WriteUint16(unsigned char* buffer, unsigned int offset, uint16_t value)
169{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100170 ARMNN_ASSERT(buffer);
Ferran Balaguer73882172019-09-02 16:39:42 +0100171
Matteo Martincigh149528e2019-09-05 12:02:04 +0100172 buffer[offset] = static_cast<unsigned char>(value & 0xFF);
Ferran Balaguer73882172019-09-02 16:39:42 +0100173 buffer[offset + 1] = static_cast<unsigned char>((value >> 8) & 0xFF);
174}
175
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000176void WriteUint8(unsigned char* buffer, unsigned int offset, uint8_t value)
177{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100178 ARMNN_ASSERT(buffer);
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000179
180 buffer[offset] = static_cast<unsigned char>(value);
181}
182
Matteo Martincigh378bbfc2019-11-04 14:05:28 +0000183void ReadBytes(const IPacketBufferPtr& packetBuffer, unsigned int offset, unsigned int valueSize, uint8_t outValue[])
184{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100185 ARMNN_ASSERT(packetBuffer);
Matteo Martincigh378bbfc2019-11-04 14:05:28 +0000186
187 ReadBytes(packetBuffer->GetReadableData(), offset, valueSize, outValue);
188}
189
Matteo Martincigh2ffcc412019-11-05 11:47:40 +0000190uint64_t ReadUint64(const IPacketBufferPtr& packetBuffer, unsigned int offset)
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100191{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100192 ARMNN_ASSERT(packetBuffer);
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100193
194 return ReadUint64(packetBuffer->GetReadableData(), offset);
195}
196
Matteo Martincigh2ffcc412019-11-05 11:47:40 +0000197uint32_t ReadUint32(const IPacketBufferPtr& packetBuffer, unsigned int offset)
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100198{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100199 ARMNN_ASSERT(packetBuffer);
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100200
201 return ReadUint32(packetBuffer->GetReadableData(), offset);
202}
203
Matteo Martincigh2ffcc412019-11-05 11:47:40 +0000204uint16_t ReadUint16(const IPacketBufferPtr& packetBuffer, unsigned int offset)
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100205{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100206 ARMNN_ASSERT(packetBuffer);
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100207
208 return ReadUint16(packetBuffer->GetReadableData(), offset);
209}
210
Matteo Martincigh2ffcc412019-11-05 11:47:40 +0000211uint8_t ReadUint8(const IPacketBufferPtr& packetBuffer, unsigned int offset)
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100212{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100213 ARMNN_ASSERT(packetBuffer);
Narumol Prangnawarat404b2752019-09-24 17:23:16 +0100214
215 return ReadUint8(packetBuffer->GetReadableData(), offset);
216}
217
Matteo Martincigh378bbfc2019-11-04 14:05:28 +0000218void ReadBytes(const unsigned char* buffer, unsigned int offset, unsigned int valueSize, uint8_t outValue[])
219{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100220 ARMNN_ASSERT(buffer);
221 ARMNN_ASSERT(outValue);
Matteo Martincigh378bbfc2019-11-04 14:05:28 +0000222
223 for (unsigned int i = 0; i < valueSize; i++, offset++)
224 {
225 outValue[i] = static_cast<uint8_t>(buffer[offset]);
226 }
227}
228
Francis Murtagh3a161982019-09-04 15:25:02 +0100229uint64_t ReadUint64(const unsigned char* buffer, unsigned int offset)
230{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100231 ARMNN_ASSERT(buffer);
Francis Murtagh3a161982019-09-04 15:25:02 +0100232
233 uint64_t value = 0;
Matteo Martincighab173e92019-09-05 12:02:04 +0100234 value = static_cast<uint64_t>(buffer[offset]);
Francis Murtagh3a161982019-09-04 15:25:02 +0100235 value |= static_cast<uint64_t>(buffer[offset + 1]) << 8;
236 value |= static_cast<uint64_t>(buffer[offset + 2]) << 16;
237 value |= static_cast<uint64_t>(buffer[offset + 3]) << 24;
238 value |= static_cast<uint64_t>(buffer[offset + 4]) << 32;
239 value |= static_cast<uint64_t>(buffer[offset + 5]) << 40;
240 value |= static_cast<uint64_t>(buffer[offset + 6]) << 48;
241 value |= static_cast<uint64_t>(buffer[offset + 7]) << 56;
242
243 return value;
244}
245
Ferran Balaguer73882172019-09-02 16:39:42 +0100246uint32_t ReadUint32(const unsigned char* buffer, unsigned int offset)
247{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100248 ARMNN_ASSERT(buffer);
Ferran Balaguer73882172019-09-02 16:39:42 +0100249
250 uint32_t value = 0;
Matteo Martincigh149528e2019-09-05 12:02:04 +0100251 value = static_cast<uint32_t>(buffer[offset]);
Ferran Balaguer73882172019-09-02 16:39:42 +0100252 value |= static_cast<uint32_t>(buffer[offset + 1]) << 8;
253 value |= static_cast<uint32_t>(buffer[offset + 2]) << 16;
254 value |= static_cast<uint32_t>(buffer[offset + 3]) << 24;
255 return value;
256}
257
258uint16_t ReadUint16(const unsigned char* buffer, unsigned int offset)
259{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100260 ARMNN_ASSERT(buffer);
Ferran Balaguer73882172019-09-02 16:39:42 +0100261
262 uint32_t value = 0;
Matteo Martincigh149528e2019-09-05 12:02:04 +0100263 value = static_cast<uint32_t>(buffer[offset]);
Ferran Balaguer73882172019-09-02 16:39:42 +0100264 value |= static_cast<uint32_t>(buffer[offset + 1]) << 8;
265 return static_cast<uint16_t>(value);
266}
267
Matteo Martincigh42f9d9e2019-09-05 12:02:04 +0100268uint8_t ReadUint8(const unsigned char* buffer, unsigned int offset)
269{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100270 ARMNN_ASSERT(buffer);
Matteo Martincigh42f9d9e2019-09-05 12:02:04 +0100271
272 return buffer[offset];
273}
274
Ferran Balaguer47d0fe92019-09-04 16:47:34 +0100275std::string GetSoftwareInfo()
276{
277 return std::string("ArmNN");
278}
279
280std::string GetHardwareVersion()
281{
282 return std::string();
283}
284
285std::string GetSoftwareVersion()
286{
Francis Murtaghd36c5282020-05-22 12:49:25 +0100287 std::string result = "Armnn " + std::to_string(ARMNN_MAJOR_VERSION) + "." + std::to_string(ARMNN_MINOR_VERSION);
Ferran Balaguer47d0fe92019-09-04 16:47:34 +0100288 return result;
289}
290
291std::string GetProcessName()
292{
293 std::ifstream comm("/proc/self/comm");
294 std::string name;
295 getline(comm, name);
296 return name;
297}
298
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000299// Calculate the actual length an SwString will be including the terminating null character
300// padding to bring it to the next uint32_t boundary but minus the leading uint32_t encoding
301// the size to allow the offset to be correctly updated when decoding a binary packet.
302uint32_t CalculateSizeOfPaddedSwString(const std::string& str)
303{
304 std::vector<uint32_t> swTraceString;
305 StringToSwTraceString<SwTraceCharPolicy>(str, swTraceString);
306 unsigned int uint32_t_size = sizeof(uint32_t);
307 uint32_t size = (boost::numeric_cast<uint32_t>(swTraceString.size()) - 1) * uint32_t_size;
308 return size;
309}
310
311// Read TimelineMessageDirectoryPacket from given IPacketBuffer and offset
312SwTraceMessage ReadSwTraceMessage(const unsigned char* packetBuffer, unsigned int& offset)
313{
Narumol Prangnawaratac2770a2020-04-01 16:51:23 +0100314 ARMNN_ASSERT(packetBuffer);
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000315
316 unsigned int uint32_t_size = sizeof(uint32_t);
317
318 SwTraceMessage swTraceMessage;
319
320 // Read the decl_id
321 uint32_t readDeclId = ReadUint32(packetBuffer, offset);
322 swTraceMessage.m_Id = readDeclId;
323
324 // SWTrace "namestring" format
325 // length of the string (first 4 bytes) + string + null terminator
326
327 // Check the decl_name
328 offset += uint32_t_size;
329 uint32_t swTraceDeclNameLength = ReadUint32(packetBuffer, offset);
330
331 offset += uint32_t_size;
332 std::vector<unsigned char> swTraceStringBuffer(swTraceDeclNameLength - 1);
333 std::memcpy(swTraceStringBuffer.data(),
334 packetBuffer + offset, swTraceStringBuffer.size());
335
336 swTraceMessage.m_Name.assign(swTraceStringBuffer.begin(), swTraceStringBuffer.end()); // name
337
338 // Check the ui_name
339 offset += CalculateSizeOfPaddedSwString(swTraceMessage.m_Name);
340 uint32_t swTraceUINameLength = ReadUint32(packetBuffer, offset);
341
342 offset += uint32_t_size;
343 swTraceStringBuffer.resize(swTraceUINameLength - 1);
344 std::memcpy(swTraceStringBuffer.data(),
345 packetBuffer + offset, swTraceStringBuffer.size());
346
347 swTraceMessage.m_UiName.assign(swTraceStringBuffer.begin(), swTraceStringBuffer.end()); // ui_name
348
349 // Check arg_types
350 offset += CalculateSizeOfPaddedSwString(swTraceMessage.m_UiName);
351 uint32_t swTraceArgTypesLength = ReadUint32(packetBuffer, offset);
352
353 offset += uint32_t_size;
354 swTraceStringBuffer.resize(swTraceArgTypesLength - 1);
355 std::memcpy(swTraceStringBuffer.data(),
356 packetBuffer + offset, swTraceStringBuffer.size());
357
358 swTraceMessage.m_ArgTypes.assign(swTraceStringBuffer.begin(), swTraceStringBuffer.end()); // arg_types
359
360 std::string swTraceString(swTraceStringBuffer.begin(), swTraceStringBuffer.end());
361
362 // Check arg_names
363 offset += CalculateSizeOfPaddedSwString(swTraceString);
364 uint32_t swTraceArgNamesLength = ReadUint32(packetBuffer, offset);
365
366 offset += uint32_t_size;
367 swTraceStringBuffer.resize(swTraceArgNamesLength - 1);
368 std::memcpy(swTraceStringBuffer.data(),
369 packetBuffer + offset, swTraceStringBuffer.size());
370
371 swTraceString.assign(swTraceStringBuffer.begin(), swTraceStringBuffer.end());
372 std::stringstream stringStream(swTraceString);
373 std::string argName;
374 while (std::getline(stringStream, argName, ','))
375 {
376 swTraceMessage.m_ArgNames.push_back(argName);
377 }
378
379 offset += CalculateSizeOfPaddedSwString(swTraceString);
380
381 return swTraceMessage;
382}
383
Jan Eilers92fa15b2019-10-15 15:23:25 +0100384/// Creates a timeline packet header
385///
386/// \params
387/// packetFamiliy Timeline Packet Family
388/// packetClass Timeline Packet Class
389/// packetType Timeline Packet Type
390/// streamId Stream identifier
391/// seqeunceNumbered When non-zero the 4 bytes following the header is a u32 sequence number
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100392/// dataLength Unsigned 24-bit integer. Length of data, in bytes. Zero is permitted
Jan Eilers92fa15b2019-10-15 15:23:25 +0100393///
394/// \returns
395/// Pair of uint32_t containing word0 and word1 of the header
396std::pair<uint32_t, uint32_t> CreateTimelinePacketHeader(uint32_t packetFamily,
397 uint32_t packetClass,
398 uint32_t packetType,
399 uint32_t streamId,
400 uint32_t sequenceNumbered,
401 uint32_t dataLength)
402{
403 // Packet header word 0:
404 // 26:31 [6] packet_family: timeline Packet Family, value 0b000001
405 // 19:25 [7] packet_class: packet class
406 // 16:18 [3] packet_type: packet type
407 // 8:15 [8] reserved: all zeros
408 // 0:7 [8] stream_id: stream identifier
409 uint32_t packetHeaderWord0 = ((packetFamily & 0x0000003F) << 26) |
410 ((packetClass & 0x0000007F) << 19) |
411 ((packetType & 0x00000007) << 16) |
412 ((streamId & 0x00000007) << 0);
413
414 // Packet header word 1:
415 // 25:31 [7] reserved: all zeros
416 // 24 [1] sequence_numbered: when non-zero the 4 bytes following the header is a u32 sequence number
417 // 0:23 [24] data_length: unsigned 24-bit integer. Length of data, in bytes. Zero is permitted
418 uint32_t packetHeaderWord1 = ((sequenceNumbered & 0x00000001) << 24) |
419 ((dataLength & 0x00FFFFFF) << 0);
420
421 return std::make_pair(packetHeaderWord0, packetHeaderWord1);
422}
423
424/// Creates a packet header for the timeline messages:
425/// * declareLabel
426/// * declareEntity
427/// * declareEventClass
428/// * declareRelationship
429/// * declareEvent
430///
431/// \param
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100432/// dataLength The length of the message body in bytes
Jan Eilers92fa15b2019-10-15 15:23:25 +0100433///
434/// \returns
435/// Pair of uint32_t containing word0 and word1 of the header
436std::pair<uint32_t, uint32_t> CreateTimelineMessagePacketHeader(unsigned int dataLength)
437{
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100438 return CreateTimelinePacketHeader(1, // Packet family
439 0, // Packet class
440 1, // Packet type
441 0, // Stream id
442 0, // Sequence number
443 dataLength); // Data length
Jan Eilers92fa15b2019-10-15 15:23:25 +0100444}
445
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100446TimelinePacketStatus WriteTimelineLabelBinaryPacket(uint64_t profilingGuid,
447 const std::string& label,
448 unsigned char* buffer,
Keith Davis97da5e22020-03-05 16:25:28 +0000449 unsigned int remainingBufferSize,
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100450 unsigned int& numberOfBytesWritten)
451{
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100452 // Initialize the output value
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100453 numberOfBytesWritten = 0;
454
455 // Check that the given buffer is valid
Keith Davis97da5e22020-03-05 16:25:28 +0000456 if (buffer == nullptr || remainingBufferSize == 0)
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100457 {
458 return TimelinePacketStatus::BufferExhaustion;
459 }
460
461 // Utils
462 unsigned int uint32_t_size = sizeof(uint32_t);
463 unsigned int uint64_t_size = sizeof(uint64_t);
464
465 // Convert the label into a SWTrace string
466 std::vector<uint32_t> swTraceLabel;
467 bool result = StringToSwTraceString<SwTraceCharPolicy>(label, swTraceLabel);
468 if (!result)
469 {
470 return TimelinePacketStatus::Error;
471 }
472
473 // Calculate the size of the SWTrace string label (in bytes)
474 unsigned int swTraceLabelSize = boost::numeric_cast<unsigned int>(swTraceLabel.size()) * uint32_t_size;
475
476 // Calculate the length of the data (in bytes)
Jan Eilersb884ea42019-10-16 09:54:15 +0100477 unsigned int timelineLabelPacketDataLength = uint32_t_size + // decl_Id
478 uint64_t_size + // Profiling GUID
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100479 swTraceLabelSize; // Label
480
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100481 // Check whether the timeline binary packet fits in the given buffer
Keith Davis97da5e22020-03-05 16:25:28 +0000482 if (timelineLabelPacketDataLength > remainingBufferSize)
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100483 {
484 return TimelinePacketStatus::BufferExhaustion;
485 }
486
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100487 // Initialize the offset for writing in the buffer
488 unsigned int offset = 0;
489
Jan Eilersb884ea42019-10-16 09:54:15 +0100490 // Write decl_Id to the buffer
491 WriteUint32(buffer, offset, 0u);
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100492 offset += uint32_t_size;
493
494 // Write the timeline binary packet payload to the buffer
495 WriteUint64(buffer, offset, profilingGuid); // Profiling GUID
496 offset += uint64_t_size;
497 for (uint32_t swTraceLabelWord : swTraceLabel)
498 {
499 WriteUint32(buffer, offset, swTraceLabelWord); // Label
500 offset += uint32_t_size;
501 }
502
503 // Update the number of bytes written
Keith Davis97da5e22020-03-05 16:25:28 +0000504 numberOfBytesWritten = timelineLabelPacketDataLength;
Matteo Martincigh0aed4f92019-10-01 14:25:34 +0100505
506 return TimelinePacketStatus::Ok;
507}
508
Keith Davis97da5e22020-03-05 16:25:28 +0000509TimelinePacketStatus WriteTimelineEntityBinary(uint64_t profilingGuid,
510 unsigned char* buffer,
511 unsigned int remainingBufferSize,
512 unsigned int& numberOfBytesWritten)
David Monahanf21f6062019-10-07 15:11:15 +0100513{
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100514 // Initialize the output value
David Monahanf21f6062019-10-07 15:11:15 +0100515 numberOfBytesWritten = 0;
516
517 // Check that the given buffer is valid
Keith Davis97da5e22020-03-05 16:25:28 +0000518 if (buffer == nullptr || remainingBufferSize == 0)
David Monahanf21f6062019-10-07 15:11:15 +0100519 {
520 return TimelinePacketStatus::BufferExhaustion;
521 }
522
523 // Utils
524 unsigned int uint32_t_size = sizeof(uint32_t);
525 unsigned int uint64_t_size = sizeof(uint64_t);
526
527 // Calculate the length of the data (in bytes)
Keith Davis97da5e22020-03-05 16:25:28 +0000528 unsigned int timelineEntityDataLength = uint32_t_size + uint64_t_size; // decl_id + Profiling GUID
David Monahanf21f6062019-10-07 15:11:15 +0100529
530 // Check whether the timeline binary packet fits in the given buffer
Keith Davis97da5e22020-03-05 16:25:28 +0000531 if (timelineEntityDataLength > remainingBufferSize)
David Monahanf21f6062019-10-07 15:11:15 +0100532 {
533 return TimelinePacketStatus::BufferExhaustion;
534 }
535
David Monahanf21f6062019-10-07 15:11:15 +0100536 // Initialize the offset for writing in the buffer
537 unsigned int offset = 0;
538
Jan Eilersb884ea42019-10-16 09:54:15 +0100539 // Write the decl_Id to the buffer
540 WriteUint32(buffer, offset, 1u);
David Monahanf21f6062019-10-07 15:11:15 +0100541 offset += uint32_t_size;
542
543 // Write the timeline binary packet payload to the buffer
544 WriteUint64(buffer, offset, profilingGuid); // Profiling GUID
545
546 // Update the number of bytes written
Keith Davis97da5e22020-03-05 16:25:28 +0000547 numberOfBytesWritten = timelineEntityDataLength;
David Monahanf21f6062019-10-07 15:11:15 +0100548
549 return TimelinePacketStatus::Ok;
550}
551
Keith Davis97da5e22020-03-05 16:25:28 +0000552TimelinePacketStatus WriteTimelineRelationshipBinary(ProfilingRelationshipType relationshipType,
553 uint64_t relationshipGuid,
554 uint64_t headGuid,
555 uint64_t tailGuid,
556 unsigned char* buffer,
557 unsigned int remainingBufferSize,
558 unsigned int& numberOfBytesWritten)
Narumol Prangnawarat7e5eec72019-10-16 12:16:26 +0100559{
560 // Initialize the output value
561 numberOfBytesWritten = 0;
562
563 // Check that the given buffer is valid
Keith Davis97da5e22020-03-05 16:25:28 +0000564 if (buffer == nullptr || remainingBufferSize == 0)
Narumol Prangnawarat7e5eec72019-10-16 12:16:26 +0100565 {
566 return TimelinePacketStatus::BufferExhaustion;
567 }
568
569 // Utils
570 unsigned int uint32_t_size = sizeof(uint32_t);
571 unsigned int uint64_t_size = sizeof(uint64_t);
572
573 // Calculate the length of the data (in bytes)
Keith Davis97da5e22020-03-05 16:25:28 +0000574 unsigned int timelineRelationshipDataLength = uint32_t_size * 2 + // decl_id + Relationship Type
575 uint64_t_size * 3; // Relationship GUID + Head GUID + tail GUID
Narumol Prangnawarat7e5eec72019-10-16 12:16:26 +0100576
Keith Davis97da5e22020-03-05 16:25:28 +0000577 // Check whether the timeline binary fits in the given buffer
578 if (timelineRelationshipDataLength > remainingBufferSize)
Narumol Prangnawarat7e5eec72019-10-16 12:16:26 +0100579 {
580 return TimelinePacketStatus::BufferExhaustion;
581 }
582
Narumol Prangnawarat7e5eec72019-10-16 12:16:26 +0100583 // Initialize the offset for writing in the buffer
584 unsigned int offset = 0;
585
Narumol Prangnawarat7e5eec72019-10-16 12:16:26 +0100586 uint32_t relationshipTypeUint = 0;
587
588 switch (relationshipType)
589 {
590 case ProfilingRelationshipType::RetentionLink:
591 relationshipTypeUint = 0;
592 break;
593 case ProfilingRelationshipType::ExecutionLink:
594 relationshipTypeUint = 1;
595 break;
596 case ProfilingRelationshipType::DataLink:
597 relationshipTypeUint = 2;
598 break;
599 case ProfilingRelationshipType::LabelLink:
600 relationshipTypeUint = 3;
601 break;
602 default:
603 throw InvalidArgumentException("Unknown relationship type given.");
604 }
605
Keith Davis97da5e22020-03-05 16:25:28 +0000606 // Write the timeline binary payload to the buffer
Narumol Prangnawarat7e5eec72019-10-16 12:16:26 +0100607 // decl_id of the timeline message
608 uint32_t declId = 3;
609 WriteUint32(buffer, offset, declId); // decl_id
610 offset += uint32_t_size;
611 WriteUint32(buffer, offset, relationshipTypeUint); // Relationship Type
612 offset += uint32_t_size;
613 WriteUint64(buffer, offset, relationshipGuid); // GUID of this relationship
614 offset += uint64_t_size;
615 WriteUint64(buffer, offset, headGuid); // head of relationship GUID
616 offset += uint64_t_size;
617 WriteUint64(buffer, offset, tailGuid); // tail of relationship GUID
618
619 // Update the number of bytes written
Keith Davis97da5e22020-03-05 16:25:28 +0000620 numberOfBytesWritten = timelineRelationshipDataLength;
Narumol Prangnawarat7e5eec72019-10-16 12:16:26 +0100621
622 return TimelinePacketStatus::Ok;
623}
624
Sadik Armagan784db772019-10-08 15:05:38 +0100625TimelinePacketStatus WriteTimelineMessageDirectoryPackage(unsigned char* buffer,
Keith Davis97da5e22020-03-05 16:25:28 +0000626 unsigned int remainingBufferSize,
Sadik Armagan784db772019-10-08 15:05:38 +0100627 unsigned int& numberOfBytesWritten)
628{
629 // Initialize the output value
630 numberOfBytesWritten = 0;
631
632 // Check that the given buffer is valid
Keith Davis97da5e22020-03-05 16:25:28 +0000633 if (buffer == nullptr || remainingBufferSize == 0)
Sadik Armagan784db772019-10-08 15:05:38 +0100634 {
635 return TimelinePacketStatus::BufferExhaustion;
636 }
637
638 // Utils
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000639 unsigned int uint8_t_size = sizeof(uint8_t);
Sadik Armagan784db772019-10-08 15:05:38 +0100640 unsigned int uint32_t_size = sizeof(uint32_t);
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000641 unsigned int uint64_t_size = sizeof(uint64_t);
Sadik Armagan784db772019-10-08 15:05:38 +0100642
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100643 // The payload/data of the packet consists of swtrace event definitions encoded according
Sadik Armagan784db772019-10-08 15:05:38 +0100644 // to the swtrace directory specification. The messages being the five defined below:
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000645 //
646 // | decl_id | decl_name | ui_name | arg_types | arg_names |
Sadik Armagan784db772019-10-08 15:05:38 +0100647 // |-----------|---------------------|-----------------------|-------------|-------------------------------------|
648 // | 0 | declareLabel | declare label | ps | guid,value |
649 // | 1 | declareEntity | declare entity | p | guid |
650 // | 2 | declareEventClass | declare event class | p | guid |
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100651 // | 3 | declareRelationship | declare relationship | Ippp | relationshipType,relationshipGuid, |
652 // | | | | | headGuid,tailGuid |
Sadik Armagan784db772019-10-08 15:05:38 +0100653 // | 4 | declareEvent | declare event | @tp | timestamp,threadId,eventGuid |
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100654 std::vector<std::vector<std::string>> timelineDirectoryMessages
655 {
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000656 { "0", "declareLabel", "declare label", "ps", "guid,value" },
657 { "1", "declareEntity", "declare entity", "p", "guid" },
658 { "2", "declareEventClass", "declare event class", "p", "guid" },
659 { "3", "declareRelationship", "declare relationship", "Ippp",
660 "relationshipType,relationshipGuid,headGuid,tailGuid" },
661 { "4", "declareEvent", "declare event", "@tp", "timestamp,threadId,eventGuid" }
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100662 };
Sadik Armagan784db772019-10-08 15:05:38 +0100663
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000664 // Build the message declarations
665 std::vector<uint32_t> swTraceBuffer;
666 for (const auto& directoryComponent : timelineDirectoryMessages)
Sadik Armagan784db772019-10-08 15:05:38 +0100667 {
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000668 // decl_id
669 uint32_t declId = 0;
670 try
Sadik Armagan784db772019-10-08 15:05:38 +0100671 {
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000672 declId = boost::numeric_cast<uint32_t>(std::stoul(directoryComponent[0]));
Sadik Armagan784db772019-10-08 15:05:38 +0100673 }
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000674 catch (const std::exception&)
675 {
676 return TimelinePacketStatus::Error;
677 }
678 swTraceBuffer.push_back(declId);
679
680 bool result = true;
681 result &= ConvertDirectoryComponent<SwTraceNameCharPolicy>(directoryComponent[1], swTraceBuffer); // decl_name
682 result &= ConvertDirectoryComponent<SwTraceCharPolicy> (directoryComponent[2], swTraceBuffer); // ui_name
683 result &= ConvertDirectoryComponent<SwTraceTypeCharPolicy>(directoryComponent[3], swTraceBuffer); // arg_types
684 result &= ConvertDirectoryComponent<SwTraceCharPolicy> (directoryComponent[4], swTraceBuffer); // arg_names
685 if (!result)
686 {
687 return TimelinePacketStatus::Error;
688 }
Sadik Armagan784db772019-10-08 15:05:38 +0100689 }
690
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000691 unsigned int dataLength = 3 * uint8_t_size + // Stream header (3 bytes)
692 boost::numeric_cast<unsigned int>(swTraceBuffer.size()) *
693 uint32_t_size; // Trace directory (5 messages)
694
Sadik Armagan784db772019-10-08 15:05:38 +0100695 // Calculate the timeline directory binary packet size (in bytes)
696 unsigned int timelineDirectoryPacketSize = 2 * uint32_t_size + // Header (2 words)
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000697 dataLength; // Payload
Sadik Armagan784db772019-10-08 15:05:38 +0100698
699 // Check whether the timeline directory binary packet fits in the given buffer
Keith Davis97da5e22020-03-05 16:25:28 +0000700 if (timelineDirectoryPacketSize > remainingBufferSize)
Sadik Armagan784db772019-10-08 15:05:38 +0100701 {
702 return TimelinePacketStatus::BufferExhaustion;
703 }
704
Jan Eilersb884ea42019-10-16 09:54:15 +0100705 // Create packet header
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000706 auto packetHeader = CreateTimelinePacketHeader(1, 0, 0, 0, 0, boost::numeric_cast<uint32_t>(dataLength));
Sadik Armagan784db772019-10-08 15:05:38 +0100707
708 // Initialize the offset for writing in the buffer
709 unsigned int offset = 0;
710
711 // Write the timeline binary packet header to the buffer
Jan Eilersb884ea42019-10-16 09:54:15 +0100712 WriteUint32(buffer, offset, packetHeader.first);
Sadik Armagan784db772019-10-08 15:05:38 +0100713 offset += uint32_t_size;
Jan Eilersb884ea42019-10-16 09:54:15 +0100714 WriteUint32(buffer, offset, packetHeader.second);
Sadik Armagan784db772019-10-08 15:05:38 +0100715 offset += uint32_t_size;
716
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000717 // Write the stream header
718 uint8_t streamVersion = 4;
719 uint8_t pointerBytes = boost::numeric_cast<uint8_t>(uint64_t_size); // All GUIDs are uint64_t
Colm Donelan5bb3d8a2020-05-12 16:36:46 +0100720 uint8_t threadIdBytes = boost::numeric_cast<uint8_t>(ThreadIdSize);
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000721 switch (threadIdBytes)
Sadik Armagan784db772019-10-08 15:05:38 +0100722 {
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000723 case 4: // Typically Windows and Android
724 case 8: // Typically Linux
725 break; // Valid values
726 default:
727 return TimelinePacketStatus::Error; // Invalid value
728 }
729 WriteUint8(buffer, offset, streamVersion);
730 offset += uint8_t_size;
731 WriteUint8(buffer, offset, pointerBytes);
732 offset += uint8_t_size;
733 WriteUint8(buffer, offset, threadIdBytes);
734 offset += uint8_t_size;
Sadik Armagan784db772019-10-08 15:05:38 +0100735
Matteo Martincigh34a407d2019-11-06 15:30:54 +0000736 // Write the SWTrace directory
737 uint32_t numberOfDeclarations = boost::numeric_cast<uint32_t>(timelineDirectoryMessages.size());
738 WriteUint32(buffer, offset, numberOfDeclarations); // Number of declarations
739 offset += uint32_t_size;
740 for (uint32_t i : swTraceBuffer)
741 {
742 WriteUint32(buffer, offset, i); // Message declarations
743 offset += uint32_t_size;
Sadik Armagan784db772019-10-08 15:05:38 +0100744 }
745
746 // Update the number of bytes written
747 numberOfBytesWritten = timelineDirectoryPacketSize;
748
749 return TimelinePacketStatus::Ok;
750}
751
Keith Davis97da5e22020-03-05 16:25:28 +0000752TimelinePacketStatus WriteTimelineEventClassBinary(uint64_t profilingGuid,
753 unsigned char* buffer,
754 unsigned int remainingBufferSize,
755 unsigned int& numberOfBytesWritten)
Jan Eilers92fa15b2019-10-15 15:23:25 +0100756{
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100757 // Initialize the output value
Jan Eilers92fa15b2019-10-15 15:23:25 +0100758 numberOfBytesWritten = 0;
759
760 // Check that the given buffer is valid
Keith Davis97da5e22020-03-05 16:25:28 +0000761 if (buffer == nullptr || remainingBufferSize == 0)
Jan Eilers92fa15b2019-10-15 15:23:25 +0100762 {
763 return TimelinePacketStatus::BufferExhaustion;
764 }
765
766 // Utils
767 unsigned int uint32_t_size = sizeof(uint32_t);
768 unsigned int uint64_t_size = sizeof(uint64_t);
769
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100770 // decl_id of the timeline message
771 uint32_t declId = 2;
Jan Eilers92fa15b2019-10-15 15:23:25 +0100772
773 // Calculate the length of the data (in bytes)
Keith Davis97da5e22020-03-05 16:25:28 +0000774 unsigned int dataSize = uint32_t_size + uint64_t_size; // decl_id + Profiling GUID
Jan Eilers92fa15b2019-10-15 15:23:25 +0100775
Keith Davis97da5e22020-03-05 16:25:28 +0000776 // Check whether the timeline binary fits in the given buffer
777 if (dataSize > remainingBufferSize)
Jan Eilers92fa15b2019-10-15 15:23:25 +0100778 {
779 return TimelinePacketStatus::BufferExhaustion;
780 }
781
Jan Eilers92fa15b2019-10-15 15:23:25 +0100782 // Initialize the offset for writing in the buffer
783 unsigned int offset = 0;
784
Keith Davis97da5e22020-03-05 16:25:28 +0000785 // Write the timeline binary payload to the buffer
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100786 WriteUint32(buffer, offset, declId); // decl_id
Jan Eilers92fa15b2019-10-15 15:23:25 +0100787 offset += uint32_t_size;
788 WriteUint64(buffer, offset, profilingGuid); // Profiling GUID
789
790 // Update the number of bytes written
Keith Davis97da5e22020-03-05 16:25:28 +0000791 numberOfBytesWritten = dataSize;
Jan Eilers92fa15b2019-10-15 15:23:25 +0100792
793 return TimelinePacketStatus::Ok;
794}
795
Keith Davis97da5e22020-03-05 16:25:28 +0000796TimelinePacketStatus WriteTimelineEventBinary(uint64_t timestamp,
797 std::thread::id threadId,
798 uint64_t profilingGuid,
799 unsigned char* buffer,
800 unsigned int remainingBufferSize,
801 unsigned int& numberOfBytesWritten)
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100802{
803 // Initialize the output value
804 numberOfBytesWritten = 0;
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100805 // Check that the given buffer is valid
Keith Davis97da5e22020-03-05 16:25:28 +0000806 if (buffer == nullptr || remainingBufferSize == 0)
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100807 {
808 return TimelinePacketStatus::BufferExhaustion;
809 }
810
811 // Utils
812 unsigned int uint32_t_size = sizeof(uint32_t);
813 unsigned int uint64_t_size = sizeof(uint64_t);
814
815 // decl_id of the timeline message
816 uint32_t declId = 4;
817
818 // Calculate the length of the data (in bytes)
Keith Davis97da5e22020-03-05 16:25:28 +0000819 unsigned int timelineEventDataLength = uint32_t_size + // decl_id
820 uint64_t_size + // Timestamp
Colm Donelan5bb3d8a2020-05-12 16:36:46 +0100821 ThreadIdSize + // Thread id
Keith Davis97da5e22020-03-05 16:25:28 +0000822 uint64_t_size; // Profiling GUID
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100823
824 // Check whether the timeline binary packet fits in the given buffer
Keith Davis97da5e22020-03-05 16:25:28 +0000825 if (timelineEventDataLength > remainingBufferSize)
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100826 {
827 return TimelinePacketStatus::BufferExhaustion;
828 }
829
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100830 // Initialize the offset for writing in the buffer
831 unsigned int offset = 0;
832
Keith Davis97da5e22020-03-05 16:25:28 +0000833 // Write the timeline binary payload to the buffer
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100834 WriteUint32(buffer, offset, declId); // decl_id
835 offset += uint32_t_size;
836 WriteUint64(buffer, offset, timestamp); // Timestamp
837 offset += uint64_t_size;
Colm Donelan5bb3d8a2020-05-12 16:36:46 +0100838 WriteBytes(buffer, offset, &threadId, ThreadIdSize); // Thread id
839 offset += ThreadIdSize;
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100840 WriteUint64(buffer, offset, profilingGuid); // Profiling GUID
841 offset += uint64_t_size;
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100842 // Update the number of bytes written
Keith Davis97da5e22020-03-05 16:25:28 +0000843 numberOfBytesWritten = timelineEventDataLength;
Matteo Martincigh8844c2f2019-10-16 10:29:17 +0100844
845 return TimelinePacketStatus::Ok;
846}
847
Keith Davis3201eea2019-10-24 17:30:41 +0100848std::string CentreAlignFormatting(const std::string& stringToPass, const int spacingWidth)
849{
850 std::stringstream outputStream, centrePadding;
851 int padding = spacingWidth - static_cast<int>(stringToPass.size());
852
853 for (int i = 0; i < padding / 2; ++i)
854 {
855 centrePadding << " ";
856 }
857
858 outputStream << centrePadding.str() << stringToPass << centrePadding.str();
859
860 if (padding > 0 && padding %2 != 0)
861 {
862 outputStream << " ";
863 }
864
865 return outputStream.str();
866}
867
868void PrintDeviceDetails(const std::pair<const unsigned short, std::unique_ptr<Device>>& devicePair)
869{
870 std::string body;
871
872 body.append(CentreAlignFormatting(devicePair.second->m_Name, 20));
873 body.append(" | ");
874 body.append(CentreAlignFormatting(std::to_string(devicePair.first), 13));
875 body.append(" | ");
876 body.append(CentreAlignFormatting(std::to_string(devicePair.second->m_Cores), 10));
877 body.append("\n");
878
879 std::cout << std::string(body.size(), '-') << "\n";
880 std::cout<< body;
881}
882
883void PrintCounterSetDetails(const std::pair<const unsigned short, std::unique_ptr<CounterSet>>& counterSetPair)
884{
885 std::string body;
886
887 body.append(CentreAlignFormatting(counterSetPair.second->m_Name, 20));
888 body.append(" | ");
889 body.append(CentreAlignFormatting(std::to_string(counterSetPair.first), 13));
890 body.append(" | ");
891 body.append(CentreAlignFormatting(std::to_string(counterSetPair.second->m_Count), 10));
892 body.append("\n");
893
894 std::cout << std::string(body.size(), '-') << "\n";
895
896 std::cout<< body;
897}
898
899void PrintCounterDetails(std::shared_ptr<Counter>& counter)
900{
901 std::string body;
902
903 body.append(CentreAlignFormatting(counter->m_Name, 20));
904 body.append(" | ");
905 body.append(CentreAlignFormatting(counter->m_Description, 50));
906 body.append(" | ");
907 body.append(CentreAlignFormatting(counter->m_Units, 14));
908 body.append(" | ");
909 body.append(CentreAlignFormatting(std::to_string(counter->m_Uid), 6));
910 body.append(" | ");
911 body.append(CentreAlignFormatting(std::to_string(counter->m_MaxCounterUid), 10));
912 body.append(" | ");
913 body.append(CentreAlignFormatting(std::to_string(counter->m_Class), 8));
914 body.append(" | ");
915 body.append(CentreAlignFormatting(std::to_string(counter->m_Interpolation), 14));
916 body.append(" | ");
917 body.append(CentreAlignFormatting(std::to_string(counter->m_Multiplier), 20));
918 body.append(" | ");
919 body.append(CentreAlignFormatting(std::to_string(counter->m_CounterSetUid), 16));
920 body.append(" | ");
921 body.append(CentreAlignFormatting(std::to_string(counter->m_DeviceUid), 14));
922
923 body.append("\n");
924
925 std::cout << std::string(body.size(), '-') << "\n";
926
927 std::cout << body;
928}
929
930void PrintCategoryDetails(const std::unique_ptr<Category>& category,
931 std::unordered_map<unsigned short, std::shared_ptr<Counter>> counterMap)
932{
933 std::string categoryBody;
934 std::string categoryHeader;
935
936 categoryHeader.append(CentreAlignFormatting("Name", 20));
937 categoryHeader.append(" | ");
Keith Davis3201eea2019-10-24 17:30:41 +0100938 categoryHeader.append(CentreAlignFormatting("Event Count", 14));
939 categoryHeader.append("\n");
940
941 categoryBody.append(CentreAlignFormatting(category->m_Name, 20));
942 categoryBody.append(" | ");
Keith Davis3201eea2019-10-24 17:30:41 +0100943 categoryBody.append(CentreAlignFormatting(std::to_string(category->m_Counters.size()), 14));
944
945 std::cout << "\n" << "\n";
946 std::cout << CentreAlignFormatting("CATEGORY", static_cast<int>(categoryHeader.size()));
947 std::cout << "\n";
948 std::cout << std::string(categoryHeader.size(), '=') << "\n";
949
950 std::cout << categoryHeader;
951
952 std::cout << std::string(categoryBody.size(), '-') << "\n";
953
954 std::cout << categoryBody;
955
956 std::string counterHeader;
957
958 counterHeader.append(CentreAlignFormatting("Counter Name", 20));
959 counterHeader.append(" | ");
960 counterHeader.append(CentreAlignFormatting("Description", 50));
961 counterHeader.append(" | ");
962 counterHeader.append(CentreAlignFormatting("Units", 14));
963 counterHeader.append(" | ");
964 counterHeader.append(CentreAlignFormatting("UID", 6));
965 counterHeader.append(" | ");
966 counterHeader.append(CentreAlignFormatting("Max UID", 10));
967 counterHeader.append(" | ");
968 counterHeader.append(CentreAlignFormatting("Class", 8));
969 counterHeader.append(" | ");
970 counterHeader.append(CentreAlignFormatting("Interpolation", 14));
971 counterHeader.append(" | ");
972 counterHeader.append(CentreAlignFormatting("Multiplier", 20));
973 counterHeader.append(" | ");
974 counterHeader.append(CentreAlignFormatting("Counter set UID", 16));
975 counterHeader.append(" | ");
976 counterHeader.append(CentreAlignFormatting("Device UID", 14));
977 counterHeader.append("\n");
978
979 std::cout << "\n" << "\n";
980 std::cout << CentreAlignFormatting("EVENTS IN CATEGORY: " + category->m_Name,
981 static_cast<int>(counterHeader.size()));
982 std::cout << "\n";
983 std::cout << std::string(counterHeader.size(), '=') << "\n";
984 std::cout << counterHeader;
985 for (auto& it: category->m_Counters) {
986 auto search = counterMap.find(it);
987 if(search != counterMap.end()) {
988 PrintCounterDetails(search->second);
989 }
990 }
991}
992
993void PrintCounterDirectory(ICounterDirectory& counterDirectory)
994{
995 std::string devicesHeader;
996
997 devicesHeader.append(CentreAlignFormatting("Device name", 20));
998 devicesHeader.append(" | ");
999 devicesHeader.append(CentreAlignFormatting("UID", 13));
1000 devicesHeader.append(" | ");
1001 devicesHeader.append(CentreAlignFormatting("Cores", 10));
1002 devicesHeader.append("\n");
1003
1004 std::cout << "\n" << "\n";
1005 std::cout << CentreAlignFormatting("DEVICES", static_cast<int>(devicesHeader.size()));
1006 std::cout << "\n";
1007 std::cout << std::string(devicesHeader.size(), '=') << "\n";
1008 std::cout << devicesHeader;
1009 for (auto& it: counterDirectory.GetDevices()) {
1010 PrintDeviceDetails(it);
1011 }
1012
1013 std::string counterSetHeader;
1014
1015 counterSetHeader.append(CentreAlignFormatting("Counter set name", 20));
1016 counterSetHeader.append(" | ");
1017 counterSetHeader.append(CentreAlignFormatting("UID", 13));
1018 counterSetHeader.append(" | ");
1019 counterSetHeader.append(CentreAlignFormatting("Count", 10));
1020 counterSetHeader.append("\n");
1021
1022 std::cout << "\n" << "\n";
1023 std::cout << CentreAlignFormatting("COUNTER SETS", static_cast<int>(counterSetHeader.size()));
1024 std::cout << "\n";
1025 std::cout << std::string(counterSetHeader.size(), '=') << "\n";
1026
1027 std::cout << counterSetHeader;
1028
1029 for (auto& it: counterDirectory.GetCounterSets()) {
1030 PrintCounterSetDetails(it);
1031 }
1032
1033 auto counters = counterDirectory.GetCounters();
1034 for (auto& it: counterDirectory.GetCategories()) {
1035 PrintCategoryDetails(it, counters);
1036 }
1037 std::cout << "\n";
1038}
1039
Matteo Martincigh5dc816e2019-11-04 14:05:28 +00001040uint64_t GetTimestamp()
1041{
1042#if USE_CLOCK_MONOTONIC_RAW
1043 using clock = MonotonicClockRaw;
1044#else
1045 using clock = std::chrono::steady_clock;
1046#endif
1047
1048 // Take a timestamp
Finn Williamsd9ba1a72020-04-16 15:32:28 +01001049 auto timestamp = std::chrono::duration_cast<std::chrono::nanoseconds>(clock::now().time_since_epoch());
Matteo Martincigh5dc816e2019-11-04 14:05:28 +00001050
Finn Williamsd9ba1a72020-04-16 15:32:28 +01001051 return static_cast<uint64_t>(timestamp.count());
Matteo Martincigh5dc816e2019-11-04 14:05:28 +00001052}
Keith Davis3201eea2019-10-24 17:30:41 +01001053
Jim Flynn4e755a52020-03-29 17:48:26 +01001054Packet ReceivePacket(const unsigned char* buffer, uint32_t length)
1055{
1056 if (buffer == nullptr)
1057 {
1058 throw armnnProfiling::ProfilingException("data buffer is nullptr");
1059 }
1060 if (length < 8)
1061 {
1062 throw armnnProfiling::ProfilingException("length of data buffer is less than 8");
1063 }
1064
1065 uint32_t metadataIdentifier = 0;
1066 std::memcpy(&metadataIdentifier, buffer, sizeof(metadataIdentifier));
1067
1068 uint32_t dataLength = 0;
1069 std::memcpy(&dataLength, buffer + 4u, sizeof(dataLength));
1070
1071 std::unique_ptr<unsigned char[]> packetData;
1072 if (dataLength > 0)
1073 {
1074 packetData = std::make_unique<unsigned char[]>(dataLength);
1075 std::memcpy(packetData.get(), buffer + 8u, dataLength);
1076 }
1077
1078 return Packet(metadataIdentifier, dataLength, packetData);
1079}
1080
Ferran Balaguer73882172019-09-02 16:39:42 +01001081} // namespace profiling
1082
Matteo Martincigh149528e2019-09-05 12:02:04 +01001083} // namespace armnn
Matteo Martincigh378bbfc2019-11-04 14:05:28 +00001084
1085namespace std
1086{
1087
1088bool operator==(const std::vector<uint8_t>& left, std::thread::id right)
1089{
1090 return std::memcmp(left.data(), &right, left.size()) == 0;
1091}
1092
1093} // namespace std