317 lines
9.7 KiB
C
317 lines
9.7 KiB
C
/*===- InstrProfilingFile.c - Write instrumentation to a file -------------===*\
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|*
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|* The LLVM Compiler Infrastructure
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|*
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|* This file is distributed under the University of Illinois Open Source
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|* License. See LICENSE.TXT for details.
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|*
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\*===----------------------------------------------------------------------===*/
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#include "InstrProfiling.h"
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#include "InstrProfilingInternal.h"
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#include "InstrProfilingUtil.h"
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#include <errno.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#ifdef _MSC_VER
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/* For _alloca. */
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#include <malloc.h>
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#endif
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#define MAX_PID_SIZE 16
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/* Data structure holding the result of parsed filename pattern. */
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typedef struct lprofFilename {
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/* File name string possibly with %p or %h specifiers. */
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const char *FilenamePat;
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char PidChars[MAX_PID_SIZE];
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char Hostname[COMPILER_RT_MAX_HOSTLEN];
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unsigned NumPids;
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unsigned NumHosts;
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} lprofFilename;
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lprofFilename lprofCurFilename = {0, {0}, {0}, 0, 0};
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int getpid(void);
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static int getCurFilenameLength();
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static const char *getCurFilename(char *FilenameBuf);
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/* Return 1 if there is an error, otherwise return 0. */
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static uint32_t fileWriter(ProfDataIOVec *IOVecs, uint32_t NumIOVecs,
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void **WriterCtx) {
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uint32_t I;
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FILE *File = (FILE *)*WriterCtx;
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for (I = 0; I < NumIOVecs; I++) {
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if (fwrite(IOVecs[I].Data, IOVecs[I].ElmSize, IOVecs[I].NumElm, File) !=
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IOVecs[I].NumElm)
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return 1;
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}
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return 0;
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}
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COMPILER_RT_VISIBILITY ProfBufferIO *
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lprofCreateBufferIOInternal(void *File, uint32_t BufferSz) {
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FreeHook = &free;
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DynamicBufferIOBuffer = (uint8_t *)calloc(BufferSz, 1);
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VPBufferSize = BufferSz;
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return lprofCreateBufferIO(fileWriter, File);
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}
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static void setupIOBuffer() {
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const char *BufferSzStr = 0;
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BufferSzStr = getenv("LLVM_VP_BUFFER_SIZE");
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if (BufferSzStr && BufferSzStr[0]) {
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VPBufferSize = atoi(BufferSzStr);
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DynamicBufferIOBuffer = (uint8_t *)calloc(VPBufferSize, 1);
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}
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}
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/* Write profile data to file \c OutputName. */
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static int writeFile(const char *OutputName) {
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int RetVal;
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FILE *OutputFile;
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/* Append to the file to support profiling multiple shared objects. */
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OutputFile = fopen(OutputName, "ab");
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if (!OutputFile)
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return -1;
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FreeHook = &free;
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setupIOBuffer();
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RetVal = lprofWriteData(fileWriter, OutputFile, lprofGetVPDataReader());
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fclose(OutputFile);
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return RetVal;
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}
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static void truncateCurrentFile(void) {
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const char *Filename;
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char *FilenameBuf;
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FILE *File;
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int Length;
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Length = getCurFilenameLength();
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FilenameBuf = (char *)COMPILER_RT_ALLOCA(Length + 1);
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Filename = getCurFilename(FilenameBuf);
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if (!Filename)
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return;
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/* Create the directory holding the file, if needed. */
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if (strchr(Filename, '/') || strchr(Filename, '\\')) {
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char *Copy = (char *)COMPILER_RT_ALLOCA(Length + 1);
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strncpy(Copy, Filename, Length + 1);
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__llvm_profile_recursive_mkdir(Copy);
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}
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/* Truncate the file. Later we'll reopen and append. */
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File = fopen(Filename, "w");
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if (!File)
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return;
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fclose(File);
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}
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static void resetFilenameToDefault(void) {
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memset(&lprofCurFilename, 0, sizeof(lprofCurFilename));
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lprofCurFilename.FilenamePat = "default.profraw";
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}
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/* Parses the pattern string \p FilenamePat and store the result to
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* lprofcurFilename structure. */
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static int parseFilenamePattern(const char *FilenamePat) {
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int NumPids = 0, NumHosts = 0, I;
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char *PidChars = &lprofCurFilename.PidChars[0];
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char *Hostname = &lprofCurFilename.Hostname[0];
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lprofCurFilename.FilenamePat = FilenamePat;
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/* Check the filename for "%p", which indicates a pid-substitution. */
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for (I = 0; FilenamePat[I]; ++I)
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if (FilenamePat[I] == '%') {
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if (FilenamePat[++I] == 'p') {
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if (!NumPids++) {
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if (snprintf(PidChars, MAX_PID_SIZE, "%d", getpid()) <= 0) {
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PROF_WARN(
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"Unable to parse filename pattern %s. Using the default name.",
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FilenamePat);
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return -1;
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}
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}
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} else if (FilenamePat[I] == 'h') {
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if (!NumHosts++)
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if (COMPILER_RT_GETHOSTNAME(Hostname, COMPILER_RT_MAX_HOSTLEN)) {
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PROF_WARN(
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"Unable to parse filename pattern %s. Using the default name.",
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FilenamePat);
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return -1;
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}
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}
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}
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lprofCurFilename.NumPids = NumPids;
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lprofCurFilename.NumHosts = NumHosts;
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return 0;
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}
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static void parseAndSetFilename(const char *FilenamePat) {
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int NewFile;
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const char *OldFilenamePat = lprofCurFilename.FilenamePat;
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if (!FilenamePat || parseFilenamePattern(FilenamePat))
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resetFilenameToDefault();
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NewFile =
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!OldFilenamePat || (strcmp(OldFilenamePat, lprofCurFilename.FilenamePat));
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if (NewFile)
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truncateCurrentFile();
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}
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/* Return buffer length that is required to store the current profile
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* filename with PID and hostname substitutions. */
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static int getCurFilenameLength() {
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if (!lprofCurFilename.FilenamePat || !lprofCurFilename.FilenamePat[0])
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return 0;
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if (!(lprofCurFilename.NumPids || lprofCurFilename.NumHosts))
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return strlen(lprofCurFilename.FilenamePat);
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return strlen(lprofCurFilename.FilenamePat) +
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lprofCurFilename.NumPids * (strlen(lprofCurFilename.PidChars) - 2) +
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lprofCurFilename.NumHosts * (strlen(lprofCurFilename.Hostname) - 2);
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}
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/* Return the pointer to the current profile file name (after substituting
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* PIDs and Hostnames in filename pattern. \p FilenameBuf is the buffer
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* to store the resulting filename. If no substitution is needed, the
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* current filename pattern string is directly returned. */
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static const char *getCurFilename(char *FilenameBuf) {
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int I, J, PidLength, HostNameLength;
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const char *FilenamePat = lprofCurFilename.FilenamePat;
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if (!lprofCurFilename.FilenamePat || !lprofCurFilename.FilenamePat[0])
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return 0;
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if (!(lprofCurFilename.NumPids || lprofCurFilename.NumHosts))
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return lprofCurFilename.FilenamePat;
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PidLength = strlen(lprofCurFilename.PidChars);
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HostNameLength = strlen(lprofCurFilename.Hostname);
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/* Construct the new filename. */
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for (I = 0, J = 0; FilenamePat[I]; ++I)
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if (FilenamePat[I] == '%') {
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if (FilenamePat[++I] == 'p') {
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memcpy(FilenameBuf + J, lprofCurFilename.PidChars, PidLength);
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J += PidLength;
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} else if (FilenamePat[I] == 'h') {
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memcpy(FilenameBuf + J, lprofCurFilename.Hostname, HostNameLength);
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J += HostNameLength;
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}
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/* Drop any unknown substitutions. */
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} else
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FilenameBuf[J++] = FilenamePat[I];
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FilenameBuf[J] = 0;
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return FilenameBuf;
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}
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/* Returns the pointer to the environment variable
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* string. Returns null if the env var is not set. */
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static const char *getFilenamePatFromEnv(void) {
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const char *Filename = getenv("LLVM_PROFILE_FILE");
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if (!Filename || !Filename[0])
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return 0;
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return Filename;
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}
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/* This method is invoked by the runtime initialization hook
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* InstrProfilingRuntime.o if it is linked in. Both user specified
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* profile path via -fprofile-instr-generate= and LLVM_PROFILE_FILE
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* environment variable can override this default value. */
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COMPILER_RT_VISIBILITY
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void __llvm_profile_initialize_file(void) {
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const char *FilenamePat;
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/* Check if the filename has been initialized. */
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if (lprofCurFilename.FilenamePat)
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return;
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/* Detect the filename and truncate. */
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FilenamePat = getFilenamePatFromEnv();
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parseAndSetFilename(FilenamePat);
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}
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/* This API is directly called by the user application code. It has the
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* highest precedence compared with LLVM_PROFILE_FILE environment variable
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* and command line option -fprofile-instr-generate=<profile_name>.
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*/
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COMPILER_RT_VISIBILITY
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void __llvm_profile_set_filename(const char *FilenamePat) {
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parseAndSetFilename(FilenamePat);
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}
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/*
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* This API is invoked by the global initializers emitted by Clang/LLVM when
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* -fprofile-instr-generate=<..> is specified (vs -fprofile-instr-generate
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* without an argument). This option has lower precedence than the
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* LLVM_PROFILE_FILE environment variable.
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*/
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COMPILER_RT_VISIBILITY
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void __llvm_profile_override_default_filename(const char *FilenamePat) {
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/* If the env var is set, skip setting filename from argument. */
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const char *Env_Filename = getFilenamePatFromEnv();
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if (Env_Filename)
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return;
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parseAndSetFilename(FilenamePat);
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}
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/* The public API for writing profile data into the file with name
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* set by previous calls to __llvm_profile_set_filename or
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* __llvm_profile_override_default_filename or
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* __llvm_profile_initialize_file. */
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COMPILER_RT_VISIBILITY
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int __llvm_profile_write_file(void) {
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int rc, Length;
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const char *Filename;
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char *FilenameBuf;
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Length = getCurFilenameLength();
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FilenameBuf = (char *)COMPILER_RT_ALLOCA(Length + 1);
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Filename = getCurFilename(FilenameBuf);
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/* Check the filename. */
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if (!Filename) {
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PROF_ERR("Failed to write file : %s\n", "Filename not set");
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return -1;
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}
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/* Check if there is llvm/runtime version mismatch. */
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if (GET_VERSION(__llvm_profile_get_version()) != INSTR_PROF_RAW_VERSION) {
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PROF_ERR("Runtime and instrumentation version mismatch : "
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"expected %d, but get %d\n",
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INSTR_PROF_RAW_VERSION,
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(int)GET_VERSION(__llvm_profile_get_version()));
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return -1;
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}
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/* Write profile data to the file. */
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rc = writeFile(Filename);
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if (rc)
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PROF_ERR("Failed to write file \"%s\": %s\n", Filename, strerror(errno));
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return rc;
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}
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static void writeFileWithoutReturn(void) { __llvm_profile_write_file(); }
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COMPILER_RT_VISIBILITY
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int __llvm_profile_register_write_file_atexit(void) {
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static int HasBeenRegistered = 0;
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if (HasBeenRegistered)
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return 0;
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lprofSetupValueProfiler();
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HasBeenRegistered = 1;
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return atexit(writeFileWithoutReturn);
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}
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