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GCDAProfiling.c revision 1.1.1.4.2.2
      1 /*===- GCDAProfiling.c - Support library for GCDA file emission -----------===*\
      2 |*
      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 |* This file implements the call back routines for the gcov profiling
     11 |* instrumentation pass. Link against this library when running code through
     12 |* the -insert-gcov-profiling LLVM pass.
     13 |*
     14 |* We emit files in a corrupt version of GCOV's "gcda" file format. These files
     15 |* are only close enough that LCOV will happily parse them. Anything that lcov
     16 |* ignores is missing.
     17 |*
     18 |* TODO: gcov is multi-process safe by having each exit open the existing file
     19 |* and append to it. We'd like to achieve that and be thread-safe too.
     20 |*
     21 \*===----------------------------------------------------------------------===*/
     22 
     23 #include <errno.h>
     24 #include <fcntl.h>
     25 #include <stdio.h>
     26 #include <stdlib.h>
     27 #include <string.h>
     28 #include <sys/stat.h>
     29 #include <sys/mman.h>
     30 #include <sys/types.h>
     31 #ifdef _WIN32
     32 #include <direct.h>
     33 #endif
     34 
     35 #ifndef _MSC_VER
     36 #include <stdint.h>
     37 #else
     38 typedef unsigned int uint32_t;
     39 typedef unsigned int uint64_t;
     40 #endif
     41 
     42 /* #define DEBUG_GCDAPROFILING */
     43 
     44 /*
     45  * --- GCOV file format I/O primitives ---
     46  */
     47 
     48 /*
     49  * The current file name we're outputting. Used primarily for error logging.
     50  */
     51 static char *filename = NULL;
     52 
     53 /*
     54  * The current file we're outputting.
     55  */
     56 static FILE *output_file = NULL;
     57 
     58 /*
     59  * Buffer that we write things into.
     60  */
     61 #define WRITE_BUFFER_SIZE (128 * 1024)
     62 static char *write_buffer = NULL;
     63 static uint64_t cur_buffer_size = 0;
     64 static uint64_t cur_pos = 0;
     65 static uint64_t file_size = 0;
     66 static int new_file = 0;
     67 static int fd = -1;
     68 
     69 /*
     70  * A list of functions to write out the data.
     71  */
     72 typedef void (*writeout_fn)();
     73 
     74 struct writeout_fn_node {
     75   writeout_fn fn;
     76   struct writeout_fn_node *next;
     77 };
     78 
     79 static struct writeout_fn_node *writeout_fn_head = NULL;
     80 static struct writeout_fn_node *writeout_fn_tail = NULL;
     81 
     82 /*
     83  *  A list of flush functions that our __gcov_flush() function should call.
     84  */
     85 typedef void (*flush_fn)();
     86 
     87 struct flush_fn_node {
     88   flush_fn fn;
     89   struct flush_fn_node *next;
     90 };
     91 
     92 static struct flush_fn_node *flush_fn_head = NULL;
     93 static struct flush_fn_node *flush_fn_tail = NULL;
     94 
     95 static void resize_write_buffer(uint64_t size) {
     96   if (!new_file) return;
     97   size += cur_pos;
     98   if (size <= cur_buffer_size) return;
     99   size = (size - 1) / WRITE_BUFFER_SIZE + 1;
    100   size *= WRITE_BUFFER_SIZE;
    101   write_buffer = realloc(write_buffer, size);
    102   cur_buffer_size = size;
    103 }
    104 
    105 static void write_bytes(const char *s, size_t len) {
    106   resize_write_buffer(len);
    107   memcpy(&write_buffer[cur_pos], s, len);
    108   cur_pos += len;
    109 }
    110 
    111 static void write_32bit_value(uint32_t i) {
    112   write_bytes((char*)&i, 4);
    113 }
    114 
    115 static void write_64bit_value(uint64_t i) {
    116   write_bytes((char*)&i, 8);
    117 }
    118 
    119 static uint32_t length_of_string(const char *s) {
    120   return (strlen(s) / 4) + 1;
    121 }
    122 
    123 static void write_string(const char *s) {
    124   uint32_t len = length_of_string(s);
    125   write_32bit_value(len);
    126   write_bytes(s, strlen(s));
    127   write_bytes("\0\0\0\0", 4 - (strlen(s) % 4));
    128 }
    129 
    130 static uint32_t read_32bit_value() {
    131   uint32_t val;
    132 
    133   if (new_file)
    134     return (uint32_t)-1;
    135 
    136   val = *(uint32_t*)&write_buffer[cur_pos];
    137   cur_pos += 4;
    138   return val;
    139 }
    140 
    141 static uint64_t read_64bit_value() {
    142   uint64_t val;
    143 
    144   if (new_file)
    145     return (uint64_t)-1;
    146 
    147   val = *(uint64_t*)&write_buffer[cur_pos];
    148   cur_pos += 8;
    149   return val;
    150 }
    151 
    152 static char *mangle_filename(const char *orig_filename) {
    153   char *new_filename;
    154   size_t filename_len, prefix_len;
    155   int prefix_strip;
    156   int level = 0;
    157   const char *fname, *ptr;
    158   const char *prefix = getenv("GCOV_PREFIX");
    159   const char *prefix_strip_str = getenv("GCOV_PREFIX_STRIP");
    160 
    161   if (prefix == NULL || prefix[0] == '\0')
    162     return strdup(orig_filename);
    163 
    164   if (prefix_strip_str) {
    165     prefix_strip = atoi(prefix_strip_str);
    166 
    167     /* Negative GCOV_PREFIX_STRIP values are ignored */
    168     if (prefix_strip < 0)
    169       prefix_strip = 0;
    170   } else {
    171     prefix_strip = 0;
    172   }
    173 
    174   fname = orig_filename;
    175   for (level = 0, ptr = fname + 1; level < prefix_strip; ++ptr) {
    176     if (*ptr == '\0')
    177       break;
    178     if (*ptr != '/')
    179       continue;
    180     fname = ptr;
    181     ++level;
    182   }
    183 
    184   filename_len = strlen(fname);
    185   prefix_len = strlen(prefix);
    186   new_filename = malloc(prefix_len + 1 + filename_len + 1);
    187   memcpy(new_filename, prefix, prefix_len);
    188 
    189   if (prefix[prefix_len - 1] != '/')
    190     new_filename[prefix_len++] = '/';
    191   memcpy(new_filename + prefix_len, fname, filename_len + 1);
    192 
    193   return new_filename;
    194 }
    195 
    196 static void recursive_mkdir(char *path) {
    197   int i;
    198 
    199   for (i = 1; path[i] != '\0'; ++i) {
    200     if (path[i] != '/') continue;
    201     path[i] = '\0';
    202 #ifdef _WIN32
    203     _mkdir(path);
    204 #else
    205     mkdir(path, 0755);  /* Some of these will fail, ignore it. */
    206 #endif
    207     path[i] = '/';
    208   }
    209 }
    210 
    211 static int map_file() {
    212   fseek(output_file, 0L, SEEK_END);
    213   file_size = ftell(output_file);
    214 
    215   /* A size of 0 is invalid to `mmap'. Return a fail here, but don't issue an
    216    * error message because it should "just work" for the user. */
    217   if (file_size == 0)
    218     return -1;
    219 
    220   write_buffer = mmap(0, file_size, PROT_READ | PROT_WRITE,
    221                       MAP_FILE | MAP_SHARED, fd, 0);
    222   if (write_buffer == (void *)-1) {
    223     int errnum = errno;
    224     fprintf(stderr, "profiling: %s: cannot map: %s\n", filename,
    225             strerror(errnum));
    226     return -1;
    227   }
    228   return 0;
    229 }
    230 
    231 static void unmap_file() {
    232   if (msync(write_buffer, file_size, MS_SYNC) == -1) {
    233     int errnum = errno;
    234     fprintf(stderr, "profiling: %s: cannot msync: %s\n", filename,
    235             strerror(errnum));
    236   }
    237 
    238   /* We explicitly ignore errors from unmapping because at this point the data
    239    * is written and we don't care.
    240    */
    241   (void)munmap(write_buffer, file_size);
    242   write_buffer = NULL;
    243   file_size = 0;
    244 }
    245 
    246 /*
    247  * --- LLVM line counter API ---
    248  */
    249 
    250 /* A file in this case is a translation unit. Each .o file built with line
    251  * profiling enabled will emit to a different file. Only one file may be
    252  * started at a time.
    253  */
    254 void llvm_gcda_start_file(const char *orig_filename, const char version[4],
    255                           uint32_t checksum) {
    256   const char *mode = "r+b";
    257   filename = mangle_filename(orig_filename);
    258 
    259   /* Try just opening the file. */
    260   new_file = 0;
    261   fd = open(filename, O_RDWR);
    262 
    263   if (fd == -1) {
    264     /* Try opening the file, creating it if necessary. */
    265     new_file = 1;
    266     mode = "w+b";
    267     fd = open(filename, O_RDWR | O_CREAT, 0644);
    268     if (fd == -1) {
    269       /* Try creating the directories first then opening the file. */
    270       recursive_mkdir(filename);
    271       fd = open(filename, O_RDWR | O_CREAT, 0644);
    272       if (fd == -1) {
    273         /* Bah! It's hopeless. */
    274         int errnum = errno;
    275         fprintf(stderr, "profiling: %s: cannot open: %s\n", filename,
    276                 strerror(errnum));
    277         return;
    278       }
    279     }
    280   }
    281 
    282   output_file = fdopen(fd, mode);
    283 
    284   /* Initialize the write buffer. */
    285   write_buffer = NULL;
    286   cur_buffer_size = 0;
    287   cur_pos = 0;
    288 
    289   if (new_file) {
    290     resize_write_buffer(WRITE_BUFFER_SIZE);
    291     memset(write_buffer, 0, WRITE_BUFFER_SIZE);
    292   } else {
    293     if (map_file() == -1) {
    294       /* mmap failed, try to recover by clobbering */
    295       new_file = 1;
    296       write_buffer = NULL;
    297       cur_buffer_size = 0;
    298       resize_write_buffer(WRITE_BUFFER_SIZE);
    299       memset(write_buffer, 0, WRITE_BUFFER_SIZE);
    300     }
    301   }
    302 
    303   /* gcda file, version, stamp checksum. */
    304   write_bytes("adcg", 4);
    305   write_bytes(version, 4);
    306   write_32bit_value(checksum);
    307 
    308 #ifdef DEBUG_GCDAPROFILING
    309   fprintf(stderr, "llvmgcda: [%s]\n", orig_filename);
    310 #endif
    311 }
    312 
    313 /* Given an array of pointers to counters (counters), increment the n-th one,
    314  * where we're also given a pointer to n (predecessor).
    315  */
    316 void llvm_gcda_increment_indirect_counter(uint32_t *predecessor,
    317                                           uint64_t **counters) {
    318   uint64_t *counter;
    319   uint32_t pred;
    320 
    321   pred = *predecessor;
    322   if (pred == 0xffffffff)
    323     return;
    324   counter = counters[pred];
    325 
    326   /* Don't crash if the pred# is out of sync. This can happen due to threads,
    327      or because of a TODO in GCOVProfiling.cpp buildEdgeLookupTable(). */
    328   if (counter)
    329     ++*counter;
    330 #ifdef DEBUG_GCDAPROFILING
    331   else
    332     fprintf(stderr,
    333             "llvmgcda: increment_indirect_counter counters=%08llx, pred=%u\n",
    334             *counter, *predecessor);
    335 #endif
    336 }
    337 
    338 void llvm_gcda_emit_function(uint32_t ident, const char *function_name,
    339                              uint32_t func_checksum, uint8_t use_extra_checksum,
    340                              uint32_t cfg_checksum) {
    341   uint32_t len = 2;
    342 
    343   if (use_extra_checksum)
    344     len++;
    345 #ifdef DEBUG_GCDAPROFILING
    346   fprintf(stderr, "llvmgcda: function id=0x%08x name=%s\n", ident,
    347           function_name ? function_name : "NULL");
    348 #endif
    349   if (!output_file) return;
    350 
    351   /* function tag */
    352   write_bytes("\0\0\0\1", 4);
    353   if (function_name)
    354     len += 1 + length_of_string(function_name);
    355   write_32bit_value(len);
    356   write_32bit_value(ident);
    357   write_32bit_value(func_checksum);
    358   if (use_extra_checksum)
    359     write_32bit_value(cfg_checksum);
    360   if (function_name)
    361     write_string(function_name);
    362 }
    363 
    364 void llvm_gcda_emit_arcs(uint32_t num_counters, uint64_t *counters) {
    365   uint32_t i;
    366   uint64_t *old_ctrs = NULL;
    367   uint32_t val = 0;
    368   uint64_t save_cur_pos = cur_pos;
    369 
    370   if (!output_file) return;
    371 
    372   val = read_32bit_value();
    373 
    374   if (val != (uint32_t)-1) {
    375     /* There are counters present in the file. Merge them. */
    376     if (val != 0x01a10000) {
    377       fprintf(stderr, "profiling:invalid arc tag (0x%08x)\n", val);
    378       return;
    379     }
    380 
    381     val = read_32bit_value();
    382     if (val == (uint32_t)-1 || val / 2 != num_counters) {
    383       fprintf(stderr, "profiling:invalid number of counters (%d)\n", val);
    384       return;
    385     }
    386 
    387     old_ctrs = malloc(sizeof(uint64_t) * num_counters);
    388     for (i = 0; i < num_counters; ++i)
    389       old_ctrs[i] = read_64bit_value();
    390   }
    391 
    392   cur_pos = save_cur_pos;
    393 
    394   /* Counter #1 (arcs) tag */
    395   write_bytes("\0\0\xa1\1", 4);
    396   write_32bit_value(num_counters * 2);
    397   for (i = 0; i < num_counters; ++i) {
    398     counters[i] += (old_ctrs ? old_ctrs[i] : 0);
    399     write_64bit_value(counters[i]);
    400   }
    401 
    402   free(old_ctrs);
    403 
    404 #ifdef DEBUG_GCDAPROFILING
    405   fprintf(stderr, "llvmgcda:   %u arcs\n", num_counters);
    406   for (i = 0; i < num_counters; ++i)
    407     fprintf(stderr, "llvmgcda:   %llu\n", (unsigned long long)counters[i]);
    408 #endif
    409 }
    410 
    411 void llvm_gcda_summary_info() {
    412   const uint32_t obj_summary_len = 9; /* Length for gcov compatibility. */
    413   uint32_t i;
    414   uint32_t runs = 1;
    415   uint32_t val = 0;
    416   uint64_t save_cur_pos = cur_pos;
    417 
    418   if (!output_file) return;
    419 
    420   val = read_32bit_value();
    421 
    422   if (val != (uint32_t)-1) {
    423     /* There are counters present in the file. Merge them. */
    424     if (val != 0xa1000000) {
    425       fprintf(stderr, "profiling:invalid object tag (0x%08x)\n", val);
    426       return;
    427     }
    428 
    429     val = read_32bit_value(); /* length */
    430     if (val != obj_summary_len) {
    431       fprintf(stderr, "profiling:invalid object length (%d)\n", val);
    432       return;
    433     }
    434 
    435     read_32bit_value(); /* checksum, unused */
    436     read_32bit_value(); /* num, unused */
    437     runs += read_32bit_value(); /* Add previous run count to new counter. */
    438   }
    439 
    440   cur_pos = save_cur_pos;
    441 
    442   /* Object summary tag */
    443   write_bytes("\0\0\0\xa1", 4);
    444   write_32bit_value(obj_summary_len);
    445   write_32bit_value(0); /* checksum, unused */
    446   write_32bit_value(0); /* num, unused */
    447   write_32bit_value(runs);
    448   for (i = 3; i < obj_summary_len; ++i)
    449     write_32bit_value(0);
    450 
    451   /* Program summary tag */
    452   write_bytes("\0\0\0\xa3", 4); /* tag indicates 1 program */
    453   write_32bit_value(0); /* 0 length */
    454 
    455 #ifdef DEBUG_GCDAPROFILING
    456   fprintf(stderr, "llvmgcda:   %u runs\n", runs);
    457 #endif
    458 }
    459 
    460 void llvm_gcda_end_file() {
    461   /* Write out EOF record. */
    462   if (output_file) {
    463     write_bytes("\0\0\0\0\0\0\0\0", 8);
    464 
    465     if (new_file) {
    466       fwrite(write_buffer, cur_pos, 1, output_file);
    467       free(write_buffer);
    468     } else {
    469       unmap_file();
    470     }
    471 
    472     fclose(output_file);
    473     output_file = NULL;
    474     write_buffer = NULL;
    475   }
    476   free(filename);
    477 
    478 #ifdef DEBUG_GCDAPROFILING
    479   fprintf(stderr, "llvmgcda: -----\n");
    480 #endif
    481 }
    482 
    483 void llvm_register_writeout_function(writeout_fn fn) {
    484   struct writeout_fn_node *new_node = malloc(sizeof(struct writeout_fn_node));
    485   new_node->fn = fn;
    486   new_node->next = NULL;
    487 
    488   if (!writeout_fn_head) {
    489     writeout_fn_head = writeout_fn_tail = new_node;
    490   } else {
    491     writeout_fn_tail->next = new_node;
    492     writeout_fn_tail = new_node;
    493   }
    494 }
    495 
    496 void llvm_writeout_files() {
    497   struct writeout_fn_node *curr = writeout_fn_head;
    498 
    499   while (curr) {
    500     curr->fn();
    501     curr = curr->next;
    502   }
    503 }
    504 
    505 void llvm_delete_writeout_function_list() {
    506   while (writeout_fn_head) {
    507     struct writeout_fn_node *node = writeout_fn_head;
    508     writeout_fn_head = writeout_fn_head->next;
    509     free(node);
    510   }
    511 
    512   writeout_fn_head = writeout_fn_tail = NULL;
    513 }
    514 
    515 void llvm_register_flush_function(flush_fn fn) {
    516   struct flush_fn_node *new_node = malloc(sizeof(struct flush_fn_node));
    517   new_node->fn = fn;
    518   new_node->next = NULL;
    519 
    520   if (!flush_fn_head) {
    521     flush_fn_head = flush_fn_tail = new_node;
    522   } else {
    523     flush_fn_tail->next = new_node;
    524     flush_fn_tail = new_node;
    525   }
    526 }
    527 
    528 void __gcov_flush() {
    529   struct flush_fn_node *curr = flush_fn_head;
    530 
    531   while (curr) {
    532     curr->fn();
    533     curr = curr->next;
    534   }
    535 }
    536 
    537 void llvm_delete_flush_function_list() {
    538   while (flush_fn_head) {
    539     struct flush_fn_node *node = flush_fn_head;
    540     flush_fn_head = flush_fn_head->next;
    541     free(node);
    542   }
    543 
    544   flush_fn_head = flush_fn_tail = NULL;
    545 }
    546 
    547 void llvm_gcov_init(writeout_fn wfn, flush_fn ffn) {
    548   static int atexit_ran = 0;
    549 
    550   if (wfn)
    551     llvm_register_writeout_function(wfn);
    552 
    553   if (ffn)
    554     llvm_register_flush_function(ffn);
    555 
    556   if (atexit_ran == 0) {
    557     atexit_ran = 1;
    558 
    559     /* Make sure we write out the data and delete the data structures. */
    560     atexit(llvm_delete_flush_function_list);
    561     atexit(llvm_delete_writeout_function_list);
    562     atexit(llvm_writeout_files);
    563   }
    564 }
    565