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Dean Michael Berrisd6c18652017-01-11 06:39:09 +00001//===- Trace.cpp - XRay Trace Loading implementation. ---------------------===//
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// XRay log reader implementation.
11//
12//===----------------------------------------------------------------------===//
Dean Michael Berrisd6c18652017-01-11 06:39:09 +000013#include "llvm/XRay/Trace.h"
14#include "llvm/ADT/STLExtras.h"
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +000015#include "llvm/Support/DataExtractor.h"
Dean Michael Berrisd6c18652017-01-11 06:39:09 +000016#include "llvm/Support/Error.h"
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +000017#include "llvm/Support/FileSystem.h"
Dean Michael Berrisd6c18652017-01-11 06:39:09 +000018#include "llvm/XRay/YAMLXRayRecord.h"
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +000019
20using namespace llvm;
21using namespace llvm::xray;
22using llvm::yaml::Input;
23
Dean Michael Berrisd6c18652017-01-11 06:39:09 +000024using XRayRecordStorage =
25 std::aligned_storage<sizeof(XRayRecord), alignof(XRayRecord)>::type;
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +000026
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +000027// Populates the FileHeader reference by reading the first 32 bytes of the file.
28Error readBinaryFormatHeader(StringRef Data, XRayFileHeader &FileHeader) {
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +000029 // FIXME: Maybe deduce whether the data is little or big-endian using some
30 // magic bytes in the beginning of the file?
31
32 // First 32 bytes of the file will always be the header. We assume a certain
33 // format here:
34 //
35 // (2) uint16 : version
36 // (2) uint16 : type
37 // (4) uint32 : bitfield
38 // (8) uint64 : cycle frequency
39 // (16) - : padding
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +000040
41 DataExtractor HeaderExtractor(Data, true, 8);
42 uint32_t OffsetPtr = 0;
43 FileHeader.Version = HeaderExtractor.getU16(&OffsetPtr);
44 FileHeader.Type = HeaderExtractor.getU16(&OffsetPtr);
45 uint32_t Bitfield = HeaderExtractor.getU32(&OffsetPtr);
46 FileHeader.ConstantTSC = Bitfield & 1uL;
47 FileHeader.NonstopTSC = Bitfield & 1uL << 1;
48 FileHeader.CycleFrequency = HeaderExtractor.getU64(&OffsetPtr);
Dean Michael Berris60c24872017-03-29 06:10:12 +000049 std::memcpy(&FileHeader.FreeFormData, Data.bytes_begin() + OffsetPtr, 16);
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +000050 if (FileHeader.Version != 1)
51 return make_error<StringError>(
52 Twine("Unsupported XRay file version: ") + Twine(FileHeader.Version),
53 std::make_error_code(std::errc::invalid_argument));
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +000054 return Error::success();
55}
56
57Error loadNaiveFormatLog(StringRef Data, XRayFileHeader &FileHeader,
58 std::vector<XRayRecord> &Records) {
59 // Check that there is at least a header
60 if (Data.size() < 32)
61 return make_error<StringError>(
62 "Not enough bytes for an XRay log.",
63 std::make_error_code(std::errc::invalid_argument));
64
65 if (Data.size() - 32 == 0 || Data.size() % 32 != 0)
66 return make_error<StringError>(
67 "Invalid-sized XRay data.",
68 std::make_error_code(std::errc::invalid_argument));
69
70 if (auto E = readBinaryFormatHeader(Data, FileHeader))
71 return E;
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +000072
73 // Each record after the header will be 32 bytes, in the following format:
74 //
75 // (2) uint16 : record type
76 // (1) uint8 : cpu id
77 // (1) uint8 : type
78 // (4) sint32 : function id
79 // (8) uint64 : tsc
80 // (4) uint32 : thread id
81 // (12) - : padding
82 for (auto S = Data.drop_front(32); !S.empty(); S = S.drop_front(32)) {
83 DataExtractor RecordExtractor(S, true, 8);
84 uint32_t OffsetPtr = 0;
85 Records.emplace_back();
86 auto &Record = Records.back();
87 Record.RecordType = RecordExtractor.getU16(&OffsetPtr);
88 Record.CPU = RecordExtractor.getU8(&OffsetPtr);
89 auto Type = RecordExtractor.getU8(&OffsetPtr);
90 switch (Type) {
91 case 0:
92 Record.Type = RecordTypes::ENTER;
93 break;
94 case 1:
95 Record.Type = RecordTypes::EXIT;
96 break;
97 default:
98 return make_error<StringError>(
99 Twine("Unknown record type '") + Twine(int{Type}) + "'",
NAKAMURA Takumib09bec22017-01-11 01:06:57 +0000100 std::make_error_code(std::errc::executable_format_error));
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +0000101 }
102 Record.FuncId = RecordExtractor.getSigned(&OffsetPtr, sizeof(int32_t));
103 Record.TSC = RecordExtractor.getU64(&OffsetPtr);
104 Record.TId = RecordExtractor.getU32(&OffsetPtr);
105 }
106 return Error::success();
107}
108
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000109/// When reading from a Flight Data Recorder mode log, metadata records are
110/// sparse compared to packed function records, so we must maintain state as we
111/// read through the sequence of entries. This allows the reader to denormalize
112/// the CPUId and Thread Id onto each Function Record and transform delta
113/// encoded TSC values into absolute encodings on each record.
114struct FDRState {
115 uint16_t CPUId;
116 uint16_t ThreadId;
117 uint64_t BaseTSC;
118 /// Encode some of the state transitions for the FDR log reader as explicit
119 /// checks. These are expectations for the next Record in the stream.
120 enum class Token {
121 NEW_BUFFER_RECORD_OR_EOF,
122 WALLCLOCK_RECORD,
123 NEW_CPU_ID_RECORD,
Dean Michael Berris60c24872017-03-29 06:10:12 +0000124 FUNCTION_SEQUENCE,
125 SCAN_TO_END_OF_THREAD_BUF,
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000126 };
127 Token Expects;
Dean Michael Berris60c24872017-03-29 06:10:12 +0000128 // Each threads buffer may have trailing garbage to scan over, so we track our
129 // progress.
130 uint64_t CurrentBufferSize;
131 uint64_t CurrentBufferConsumed;
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000132};
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +0000133
Dean Michael Berris60c24872017-03-29 06:10:12 +0000134Twine fdrStateToTwine(const FDRState::Token &state) {
135 switch (state) {
136 case FDRState::Token::NEW_BUFFER_RECORD_OR_EOF:
137 return "NEW_BUFFER_RECORD_OR_EOF";
138 case FDRState::Token::WALLCLOCK_RECORD:
139 return "WALLCLOCK_RECORD";
140 case FDRState::Token::NEW_CPU_ID_RECORD:
141 return "NEW_CPU_ID_RECORD";
142 case FDRState::Token::FUNCTION_SEQUENCE:
143 return "FUNCTION_SEQUENCE";
144 case FDRState::Token::SCAN_TO_END_OF_THREAD_BUF:
145 return "SCAN_TO_END_OF_THREAD_BUF";
146 }
147 return "UNKNOWN";
148}
149
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000150/// State transition when a NewBufferRecord is encountered.
151Error processFDRNewBufferRecord(FDRState &State, uint8_t RecordFirstByte,
152 DataExtractor &RecordExtractor) {
153
Dean Michael Berris60c24872017-03-29 06:10:12 +0000154 if (State.Expects != FDRState::Token::NEW_BUFFER_RECORD_OR_EOF)
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000155 return make_error<StringError>(
156 "Malformed log. Read New Buffer record kind out of sequence",
157 std::make_error_code(std::errc::executable_format_error));
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000158 uint32_t OffsetPtr = 1; // 1 byte into record.
159 State.ThreadId = RecordExtractor.getU16(&OffsetPtr);
160 State.Expects = FDRState::Token::WALLCLOCK_RECORD;
161 return Error::success();
162}
163
164/// State transition when an EndOfBufferRecord is encountered.
165Error processFDREndOfBufferRecord(FDRState &State, uint8_t RecordFirstByte,
166 DataExtractor &RecordExtractor) {
Dean Michael Berris60c24872017-03-29 06:10:12 +0000167 if (State.Expects == FDRState::Token::NEW_BUFFER_RECORD_OR_EOF)
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000168 return make_error<StringError>(
169 "Malformed log. Received EOB message without current buffer.",
170 std::make_error_code(std::errc::executable_format_error));
Dean Michael Berris60c24872017-03-29 06:10:12 +0000171 State.Expects = FDRState::Token::SCAN_TO_END_OF_THREAD_BUF;
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000172 return Error::success();
173}
174
175/// State transition when a NewCPUIdRecord is encountered.
176Error processFDRNewCPUIdRecord(FDRState &State, uint8_t RecordFirstByte,
177 DataExtractor &RecordExtractor) {
178 if (State.Expects != FDRState::Token::FUNCTION_SEQUENCE &&
Dean Michael Berris60c24872017-03-29 06:10:12 +0000179 State.Expects != FDRState::Token::NEW_CPU_ID_RECORD)
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000180 return make_error<StringError>(
181 "Malformed log. Read NewCPUId record kind out of sequence",
182 std::make_error_code(std::errc::executable_format_error));
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000183 uint32_t OffsetPtr = 1; // Read starting after the first byte.
184 State.CPUId = RecordExtractor.getU16(&OffsetPtr);
185 State.BaseTSC = RecordExtractor.getU64(&OffsetPtr);
186 State.Expects = FDRState::Token::FUNCTION_SEQUENCE;
187 return Error::success();
188}
189
190/// State transition when a TSCWrapRecord (overflow detection) is encountered.
191Error processFDRTSCWrapRecord(FDRState &State, uint8_t RecordFirstByte,
192 DataExtractor &RecordExtractor) {
Dean Michael Berris60c24872017-03-29 06:10:12 +0000193 if (State.Expects != FDRState::Token::FUNCTION_SEQUENCE)
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000194 return make_error<StringError>(
195 "Malformed log. Read TSCWrap record kind out of sequence",
196 std::make_error_code(std::errc::executable_format_error));
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000197 uint32_t OffsetPtr = 1; // Read starting after the first byte.
198 State.BaseTSC = RecordExtractor.getU64(&OffsetPtr);
199 return Error::success();
200}
201
202/// State transition when a WallTimeMarkerRecord is encountered.
203Error processFDRWallTimeRecord(FDRState &State, uint8_t RecordFirstByte,
204 DataExtractor &RecordExtractor) {
Dean Michael Berris60c24872017-03-29 06:10:12 +0000205 if (State.Expects != FDRState::Token::WALLCLOCK_RECORD)
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000206 return make_error<StringError>(
207 "Malformed log. Read Wallclock record kind out of sequence",
208 std::make_error_code(std::errc::executable_format_error));
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000209 // We don't encode the wall time into any of the records.
210 // XRayRecords are concerned with the TSC instead.
211 State.Expects = FDRState::Token::NEW_CPU_ID_RECORD;
212 return Error::success();
213}
214
215/// Advances the state machine for reading the FDR record type by reading one
216/// Metadata Record and updating the State approriately based on the kind of
217/// record encountered. The RecordKind is encoded in the first byte of the
218/// Record, which the caller should pass in because they have already read it
219/// to determine that this is a metadata record as opposed to a function record.
220Error processFDRMetadataRecord(FDRState &State, uint8_t RecordFirstByte,
221 DataExtractor &RecordExtractor) {
222 // The remaining 7 bits are the RecordKind enum.
223 uint8_t RecordKind = RecordFirstByte >> 1;
224 switch (RecordKind) {
225 case 0: // NewBuffer
226 if (auto E =
227 processFDRNewBufferRecord(State, RecordFirstByte, RecordExtractor))
228 return E;
229 break;
230 case 1: // EndOfBuffer
231 if (auto E = processFDREndOfBufferRecord(State, RecordFirstByte,
232 RecordExtractor))
233 return E;
234 break;
235 case 2: // NewCPUId
236 if (auto E =
237 processFDRNewCPUIdRecord(State, RecordFirstByte, RecordExtractor))
238 return E;
239 break;
240 case 3: // TSCWrap
241 if (auto E =
242 processFDRTSCWrapRecord(State, RecordFirstByte, RecordExtractor))
243 return E;
244 break;
245 case 4: // WallTimeMarker
246 if (auto E =
247 processFDRWallTimeRecord(State, RecordFirstByte, RecordExtractor))
248 return E;
249 break;
250 default:
251 // Widen the record type to uint16_t to prevent conversion to char.
252 return make_error<StringError>(
253 Twine("Illegal metadata record type: ")
254 .concat(Twine(static_cast<unsigned>(RecordKind))),
255 std::make_error_code(std::errc::executable_format_error));
256 }
257 return Error::success();
258}
259
260/// Reads a function record from an FDR format log, appending a new XRayRecord
261/// to the vector being populated and updating the State with a new value
262/// reference value to interpret TSC deltas.
263///
264/// The XRayRecord constructed includes information from the function record
265/// processed here as well as Thread ID and CPU ID formerly extracted into
266/// State.
267Error processFDRFunctionRecord(FDRState &State, uint8_t RecordFirstByte,
268 DataExtractor &RecordExtractor,
269 std::vector<XRayRecord> &Records) {
270 switch (State.Expects) {
271 case FDRState::Token::NEW_BUFFER_RECORD_OR_EOF:
272 return make_error<StringError>(
273 "Malformed log. Received Function Record before new buffer setup.",
274 std::make_error_code(std::errc::executable_format_error));
275 case FDRState::Token::WALLCLOCK_RECORD:
276 return make_error<StringError>(
277 "Malformed log. Received Function Record when expecting wallclock.",
278 std::make_error_code(std::errc::executable_format_error));
279 case FDRState::Token::NEW_CPU_ID_RECORD:
280 return make_error<StringError>(
281 "Malformed log. Received Function Record before first CPU record.",
282 std::make_error_code(std::errc::executable_format_error));
283 default:
284 Records.emplace_back();
285 auto &Record = Records.back();
286 Record.RecordType = 0; // Record is type NORMAL.
287 // Strip off record type bit and use the next three bits.
288 uint8_t RecordType = (RecordFirstByte >> 1) & 0x07;
289 switch (RecordType) {
290 case static_cast<uint8_t>(RecordTypes::ENTER):
291 Record.Type = RecordTypes::ENTER;
292 break;
293 case static_cast<uint8_t>(RecordTypes::EXIT):
294 case 2: // TAIL_EXIT is not yet defined in RecordTypes.
295 Record.Type = RecordTypes::EXIT;
296 break;
297 default:
298 // When initializing the error, convert to uint16_t so that the record
299 // type isn't interpreted as a char.
300 return make_error<StringError>(
301 Twine("Illegal function record type: ")
302 .concat(Twine(static_cast<unsigned>(RecordType))),
303 std::make_error_code(std::errc::executable_format_error));
304 }
305 Record.CPU = State.CPUId;
306 Record.TId = State.ThreadId;
307 // Back up to read first 32 bits, including the 8 we pulled RecordType
308 // and RecordKind out of. The remaining 28 are FunctionId.
309 uint32_t OffsetPtr = 0;
310 // Despite function Id being a signed int on XRayRecord,
311 // when it is written to an FDR format, the top bits are truncated,
312 // so it is effectively an unsigned value. When we shift off the
313 // top four bits, we want the shift to be logical, so we read as
314 // uint32_t.
315 uint32_t FuncIdBitField = RecordExtractor.getU32(&OffsetPtr);
316 Record.FuncId = FuncIdBitField >> 4;
317 // FunctionRecords have a 32 bit delta from the previous absolute TSC
318 // or TSC delta. If this would overflow, we should read a TSCWrap record
319 // with an absolute TSC reading.
320 uint64_t new_tsc = State.BaseTSC + RecordExtractor.getU32(&OffsetPtr);
321 State.BaseTSC = new_tsc;
322 Record.TSC = new_tsc;
323 }
324 return Error::success();
325}
326
327/// Reads a log in FDR mode for version 1 of this binary format. FDR mode is
328/// defined as part of the compiler-rt project in xray_fdr_logging.h, and such
329/// a log consists of the familiar 32 bit XRayHeader, followed by sequences of
330/// of interspersed 16 byte Metadata Records and 8 byte Function Records.
331///
332/// The following is an attempt to document the grammar of the format, which is
333/// parsed by this function for little-endian machines. Since the format makes
334/// use of BitFields, when we support big-Endian architectures, we will need to
335/// adjust not only the endianess parameter to llvm's RecordExtractor, but also
336/// the bit twiddling logic, which is consistent with the little-endian
337/// convention that BitFields within a struct will first be packed into the
338/// least significant bits the address they belong to.
339///
340/// We expect a format complying with the grammar in the following pseudo-EBNF.
341///
342/// FDRLog: XRayFileHeader ThreadBuffer*
343/// XRayFileHeader: 32 bits to identify the log as FDR with machine metadata.
Dean Michael Berris60c24872017-03-29 06:10:12 +0000344/// ThreadBuffer: BufSize NewBuffer WallClockTime NewCPUId FunctionSequence EOB
345/// BufSize: 8 byte unsigned integer indicating how large the buffer is.
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000346/// NewBuffer: 16 byte metadata record with Thread Id.
347/// WallClockTime: 16 byte metadata record with human readable time.
348/// NewCPUId: 16 byte metadata record with CPUId and a 64 bit TSC reading.
Dean Michael Berris60c24872017-03-29 06:10:12 +0000349/// EOB: 16 byte record in a thread buffer plus mem garbage to fill BufSize.
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000350/// FunctionSequence: NewCPUId | TSCWrap | FunctionRecord
351/// TSCWrap: 16 byte metadata record with a full 64 bit TSC reading.
352/// FunctionRecord: 8 byte record with FunctionId, entry/exit, and TSC delta.
353Error loadFDRLog(StringRef Data, XRayFileHeader &FileHeader,
354 std::vector<XRayRecord> &Records) {
355 if (Data.size() < 32)
356 return make_error<StringError>(
357 "Not enough bytes for an XRay log.",
358 std::make_error_code(std::errc::invalid_argument));
359
360 // For an FDR log, there are records sized 16 and 8 bytes.
Dean Michael Berris60c24872017-03-29 06:10:12 +0000361 // There actually may be no records if no non-trivial functions are
362 // instrumented.
363 if (Data.size() % 8 != 0)
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000364 return make_error<StringError>(
365 "Invalid-sized XRay data.",
366 std::make_error_code(std::errc::invalid_argument));
367
368 if (auto E = readBinaryFormatHeader(Data, FileHeader))
369 return E;
370
Dean Michael Berris60c24872017-03-29 06:10:12 +0000371 uint64_t BufferSize = 0;
372 {
373 StringRef ExtraDataRef(FileHeader.FreeFormData, 16);
374 DataExtractor ExtraDataExtractor(ExtraDataRef, true, 8);
375 uint32_t ExtraDataOffset = 0;
376 BufferSize = ExtraDataExtractor.getU64(&ExtraDataOffset);
377 }
378 FDRState State{0, 0, 0, FDRState::Token::NEW_BUFFER_RECORD_OR_EOF,
379 BufferSize, 0};
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000380 // RecordSize will tell the loop how far to seek ahead based on the record
381 // type that we have just read.
382 size_t RecordSize = 0;
383 for (auto S = Data.drop_front(32); !S.empty(); S = S.drop_front(RecordSize)) {
384 DataExtractor RecordExtractor(S, true, 8);
385 uint32_t OffsetPtr = 0;
Dean Michael Berris60c24872017-03-29 06:10:12 +0000386 if (State.Expects == FDRState::Token::SCAN_TO_END_OF_THREAD_BUF) {
387 RecordSize = State.CurrentBufferSize - State.CurrentBufferConsumed;
388 if (S.size() < State.CurrentBufferSize - State.CurrentBufferConsumed) {
389 return make_error<StringError>(
390 Twine("Incomplete thread buffer. Expected ") +
391 Twine(State.CurrentBufferSize - State.CurrentBufferConsumed) +
392 " remaining bytes but found " + Twine(S.size()),
393 make_error_code(std::errc::invalid_argument));
394 }
395 State.CurrentBufferConsumed = 0;
396 State.Expects = FDRState::Token::NEW_BUFFER_RECORD_OR_EOF;
397 continue;
398 }
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000399 uint8_t BitField = RecordExtractor.getU8(&OffsetPtr);
400 bool isMetadataRecord = BitField & 0x01uL;
401 if (isMetadataRecord) {
402 RecordSize = 16;
403 if (auto E = processFDRMetadataRecord(State, BitField, RecordExtractor))
404 return E;
Dean Michael Berris60c24872017-03-29 06:10:12 +0000405 State.CurrentBufferConsumed += RecordSize;
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000406 } else { // Process Function Record
407 RecordSize = 8;
408 if (auto E = processFDRFunctionRecord(State, BitField, RecordExtractor,
409 Records))
410 return E;
Dean Michael Berris60c24872017-03-29 06:10:12 +0000411 State.CurrentBufferConsumed += RecordSize;
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000412 }
413 }
Dean Michael Berris60c24872017-03-29 06:10:12 +0000414 // There are two conditions
415 if (State.Expects != FDRState::Token::NEW_BUFFER_RECORD_OR_EOF &&
416 !(State.Expects == FDRState::Token::SCAN_TO_END_OF_THREAD_BUF &&
417 State.CurrentBufferSize == State.CurrentBufferConsumed))
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000418 return make_error<StringError>(
Dean Michael Berris60c24872017-03-29 06:10:12 +0000419 Twine("Encountered EOF with unexpected state expectation ") +
420 fdrStateToTwine(State.Expects) +
421 ". Remaining expected bytes in thread buffer total " +
422 Twine(State.CurrentBufferSize - State.CurrentBufferConsumed),
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000423 std::make_error_code(std::errc::executable_format_error));
424
425 return Error::success();
426}
427
428Error loadYAMLLog(StringRef Data, XRayFileHeader &FileHeader,
429 std::vector<XRayRecord> &Records) {
Dean Michael Berrisf8f909f2017-01-10 02:38:11 +0000430 // Load the documents from the MappedFile.
431 YAMLXRayTrace Trace;
432 Input In(Data);
433 In >> Trace;
434 if (In.error())
435 return make_error<StringError>("Failed loading YAML Data.", In.error());
436
437 FileHeader.Version = Trace.Header.Version;
438 FileHeader.Type = Trace.Header.Type;
439 FileHeader.ConstantTSC = Trace.Header.ConstantTSC;
440 FileHeader.NonstopTSC = Trace.Header.NonstopTSC;
441 FileHeader.CycleFrequency = Trace.Header.CycleFrequency;
442
443 if (FileHeader.Version != 1)
444 return make_error<StringError>(
445 Twine("Unsupported XRay file version: ") + Twine(FileHeader.Version),
446 std::make_error_code(std::errc::invalid_argument));
447
448 Records.clear();
449 std::transform(Trace.Records.begin(), Trace.Records.end(),
450 std::back_inserter(Records), [&](const YAMLXRayRecord &R) {
451 return XRayRecord{R.RecordType, R.CPU, R.Type,
452 R.FuncId, R.TSC, R.TId};
453 });
454 return Error::success();
455}
Dean Michael Berrisd6c18652017-01-11 06:39:09 +0000456
457Expected<Trace> llvm::xray::loadTraceFile(StringRef Filename, bool Sort) {
458 int Fd;
459 if (auto EC = sys::fs::openFileForRead(Filename, Fd)) {
460 return make_error<StringError>(
461 Twine("Cannot read log from '") + Filename + "'", EC);
462 }
463
464 // Attempt to get the filesize.
465 uint64_t FileSize;
466 if (auto EC = sys::fs::file_size(Filename, FileSize)) {
467 return make_error<StringError>(
468 Twine("Cannot read log from '") + Filename + "'", EC);
469 }
470 if (FileSize < 4) {
471 return make_error<StringError>(
472 Twine("File '") + Filename + "' too small for XRay.",
Hans Wennborg84da6612017-01-12 18:33:14 +0000473 std::make_error_code(std::errc::executable_format_error));
Dean Michael Berrisd6c18652017-01-11 06:39:09 +0000474 }
475
476 // Attempt to mmap the file.
477 std::error_code EC;
478 sys::fs::mapped_file_region MappedFile(
479 Fd, sys::fs::mapped_file_region::mapmode::readonly, FileSize, 0, EC);
480 if (EC) {
481 return make_error<StringError>(
482 Twine("Cannot read log from '") + Filename + "'", EC);
483 }
484
485 // Attempt to detect the file type using file magic. We have a slight bias
486 // towards the binary format, and we do this by making sure that the first 4
487 // bytes of the binary file is some combination of the following byte
488 // patterns:
489 //
490 // 0x0001 0x0000 - version 1, "naive" format
491 // 0x0001 0x0001 - version 1, "flight data recorder" format
492 //
493 // YAML files dont' typically have those first four bytes as valid text so we
494 // try loading assuming YAML if we don't find these bytes.
495 //
496 // Only if we can't load either the binary or the YAML format will we yield an
497 // error.
498 StringRef Magic(MappedFile.data(), 4);
499 DataExtractor HeaderExtractor(Magic, true, 8);
500 uint32_t OffsetPtr = 0;
501 uint16_t Version = HeaderExtractor.getU16(&OffsetPtr);
502 uint16_t Type = HeaderExtractor.getU16(&OffsetPtr);
503
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000504 enum BinaryFormatType { NAIVE_FORMAT = 0, FLIGHT_DATA_RECORDER_FORMAT = 1 };
505
Dean Michael Berrisd6c18652017-01-11 06:39:09 +0000506 Trace T;
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000507 if (Version == 1 && Type == NAIVE_FORMAT) {
508 if (auto E =
509 loadNaiveFormatLog(StringRef(MappedFile.data(), MappedFile.size()),
510 T.FileHeader, T.Records))
511 return std::move(E);
512 } else if (Version == 1 && Type == FLIGHT_DATA_RECORDER_FORMAT) {
513 if (auto E = loadFDRLog(StringRef(MappedFile.data(), MappedFile.size()),
514 T.FileHeader, T.Records))
Dean Michael Berrisd6c18652017-01-11 06:39:09 +0000515 return std::move(E);
516 } else {
Dean Michael Berris4f83c4d2017-02-17 01:47:16 +0000517 if (auto E = loadYAMLLog(StringRef(MappedFile.data(), MappedFile.size()),
518 T.FileHeader, T.Records))
Dean Michael Berrisd6c18652017-01-11 06:39:09 +0000519 return std::move(E);
520 }
521
522 if (Sort)
523 std::sort(T.Records.begin(), T.Records.end(),
524 [&](const XRayRecord &L, const XRayRecord &R) {
525 return L.TSC < R.TSC;
526 });
527
528 return std::move(T);
529}