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1 /* File format for coverage information
2 Copyright (C) 1996, 1997, 1998, 2000, 2002,
3 2003 Free Software Foundation, Inc.
4 Contributed by Bob Manson <manson@cygnus.com>.
5 Completely remangled by Nathan Sidwell <nathan@codesourcery.com>.
6
7 This file is part of GCC.
8
9 GCC is free software; you can redistribute it and/or modify it under
10 the terms of the GNU General Public License as published by the Free
11 Software Foundation; either version 2, or (at your option) any later
12 version.
13
14 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
15 WARRANTY; without even the implied warranty of MERCHANTABILITY or
16 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with GCC; see the file COPYING. If not, write to the Free
21 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
22 02111-1307, USA. */
23
24 /* As a special exception, if you link this library with other files,
25 some of which are compiled with GCC, to produce an executable,
26 this library does not by itself cause the resulting executable
27 to be covered by the GNU General Public License.
28 This exception does not however invalidate any other reasons why
29 the executable file might be covered by the GNU General Public License. */
30
31 /* Coverage information is held in two files. A notes file, which is
32 generated by the compiler, and a data file, which is generated
33 by the program under test. Both files use a similar structure. We
34 do not attempt to make these files backwards compatible with
35 previous versions, as you only need coverage information when
36 developing a program. We do hold version information, so that
37 mismatches can be detected, and we use a format that allows tools
38 to skip information they do not understand or are not interested
39 in.
40
41 Numbers are recorded in the 32 bit unsigned binary form of the
42 endianness of the machine generating the file. 64 bit numbers are
43 stored as two 32 bit numbers, the low part first. Strings are
44 padded with 1 to 4 NUL bytes, to bring the length up to a multiple
45 of 4. The number of 4 bytes is stored, followed by the padded
46 string. Zero length and NULL strings are simply stored as
47 a length of zero (they have no trailing NUL or padding).
48
49 int32: byte3 byte2 byte1 byte0 | byte0 byte1 byte2 byte3
50 int64: int32:low int32:high
51 string: int32:0 | int32:length char* char:0 padding
52 padding: | char:0 | char:0 char:0 | char:0 char:0 char:0
53 item: int32 | int64 | string
54
55 The basic format of the files is
56
57 file : int32:magic int32:version int32:stamp record*
58
59 The magic ident is different for the notes and the data files. The
60 magic ident is used to determine the endianness of the file, when
61 reading. The version is the same for both files and is derived
62 from gcc's version number. The stamp value is used to synchronize
63 note and data files and to synchronize merging within a data
64 file. It need not be an absolute time stamp, merely a ticker that
65 increments fast enough and cycles slow enough to distinguish
66 different compile/run/compile cycles.
67
68 Although the ident and version are formally 32 bit numbers, they
69 are derived from 4 character ASCII strings. The version number
70 consists of the single character major version number, a two
71 character minor version number (leading zero for versions less than
72 10), and a single character indicating the status of the release.
73 That will be 'e' experimental, 'p' prerelease and 'r' for release.
74 Because, by good fortune, these are in alphabetical order, string
75 collating can be used to compare version strings. Be aware that
76 the 'e' designation will (naturally) be unstable and might be
77 incompatible with itself. For gcc 3.4 experimental, it would be
78 '304e' (0x33303465). When the major version reaches 10, the
79 letters A-Z will be used. Assuming minor increments releases every
80 6 months, we have to make a major increment every 50 years.
81 Assuming major increments releases every 5 years, we're ok for the
82 next 155 years -- good enough for me.
83
84 A record has a tag, length and variable amount of data.
85
86 record: header data
87 header: int32:tag int32:length
88 data: item*
89
90 Records are not nested, but there is a record hierarchy. Tag
91 numbers reflect this hierarchy. Tags are unique across note and
92 data files. Some record types have a varying amount of data. The
93 LENGTH is the number of 4bytes that follow and is usually used to
94 determine how much data. The tag value is split into 4 8-bit
95 fields, one for each of four possible levels. The most significant
96 is allocated first. Unused levels are zero. Active levels are
97 odd-valued, so that the LSB of the level is one. A sub-level
98 incorporates the values of its superlevels. This formatting allows
99 you to determine the tag hierarchy, without understanding the tags
100 themselves, and is similar to the standard section numbering used
101 in technical documents. Level values [1..3f] are used for common
102 tags, values [41..9f] for the notes file and [a1..ff] for the data
103 file.
104
105 The basic block graph file contains the following records
106 note: unit function-graph*
107 unit: header int32:checksum string:source
108 function-graph: announce_function basic_blocks {arcs | lines}*
109 announce_function: header int32:ident int32:checksum
110 string:name string:source int32:lineno
111 basic_block: header int32:flags*
112 arcs: header int32:block_no arc*
113 arc: int32:dest_block int32:flags
114 lines: header int32:block_no line*
115 int32:0 string:NULL
116 line: int32:line_no | int32:0 string:filename
117
118 The BASIC_BLOCK record holds per-bb flags. The number of blocks
119 can be inferred from its data length. There is one ARCS record per
120 basic block. The number of arcs from a bb is implicit from the
121 data length. It enumerates the destination bb and per-arc flags.
122 There is one LINES record per basic block, it enumerates the source
123 lines which belong to that basic block. Source file names are
124 introduced by a line number of 0, following lines are from the new
125 source file. The initial source file for the function is NULL, but
126 the current source file should be remembered from one LINES record
127 to the next. The end of a block is indicated by an empty filename
128 - this does not reset the current source file. Note there is no
129 ordering of the ARCS and LINES records: they may be in any order,
130 interleaved in any manner. The current filename follows the order
131 the LINES records are stored in the file, *not* the ordering of the
132 blocks they are for.
133
134 The data file contains the following records.
135 data: {unit function-data* summary:object summary:program*}*
136 unit: header int32:checksum
137 function-data: announce_function arc_counts
138 announce_function: header int32:ident int32:checksum
139 arc_counts: header int64:count*
140 summary: int32:checksum {count-summary}GCOV_COUNTERS
141 count-summary: int32:num int32:runs int64:sum
142 int64:max int64:sum_max
143
144 The ANNOUNCE_FUNCTION record is the same as that in the note file,
145 but without the source location. The ARC_COUNTS gives the counter
146 values for those arcs that are instrumented. The SUMMARY records
147 give information about the whole object file and about the whole
148 program. The checksum is used for whole program summaries, and
149 disambiguates different programs which include the same
150 instrumented object file. There may be several program summaries,
151 each with a unique checksum. The object summary's checksum is zero.
152 Note that the data file might contain information from several runs
153 concatenated, or the data might be merged.
154
155 This file is included by both the compiler, gcov tools and the
156 runtime support library libgcov. IN_LIBGCOV and IN_GCOV are used to
157 distinguish which case is which. If IN_LIBGCOV is nonzero,
158 libgcov is being built. If IN_GCOV is nonzero, the gcov tools are
159 being built. Otherwise the compiler is being built. IN_GCOV may be
160 positive or negative. If positive, we are compiling a tool that
161 requires additional functions (see the code for knowledge of what
162 those functions are). */
163
164 #ifndef GCC_GCOV_IO_H
165 #define GCC_GCOV_IO_H
166
167 #if IN_LIBGCOV
168 /* About the target */
169
170 typedef unsigned gcov_unsigned_t __attribute__ ((mode (SI)));
171 typedef unsigned gcov_position_t __attribute__ ((mode (SI)));
172 #if LONG_LONG_TYPE_SIZE > 32
173 typedef signed gcov_type __attribute__ ((mode (DI)));
174 #else
175 typedef signed gcov_type __attribute__ ((mode (SI)));
176 #endif
177
178 #if defined (TARGET_HAS_F_SETLKW)
179 #define GCOV_LOCKED 1
180 #else
181 #define GCOV_LOCKED 0
182 #endif
183
184 #else /* !IN_LIBGCOV */
185 /* About the host */
186
187 typedef unsigned gcov_unsigned_t;
188 typedef unsigned gcov_position_t;
189 /* gcov_type is typedef'd elsewhere for the compiler */
190 #if IN_GCOV
191 #define GCOV_LINKAGE static
192 typedef HOST_WIDEST_INT gcov_type;
193 #if IN_GCOV > 0
194 #include <sys/types.h>
195 #endif
196 #else /*!IN_GCOV */
197 #if LONG_LONG_TYPE_SIZE > 32
198 #define GCOV_TYPE_NODE intDI_type_node
199 #else
200 #define GCOV_TYPE_NODE intSI_type_node
201 #endif
202 #endif
203
204 #if defined (HOST_HAS_F_SETLKW)
205 #define GCOV_LOCKED 1
206 #else
207 #define GCOV_LOCKED 0
208 #endif
209
210 #endif /* !IN_LIBGCOV */
211
212 /* In gcov we want function linkage to be static. In libgcov we need
213 these functions to be extern, so prefix them with __gcov. In the
214 compiler we want it extern, so that they can be accessed from
215 elsewhere. */
216 #if IN_LIBGCOV
217 #define gcov_var __gcov_var
218 #define gcov_open __gcov_open
219 #define gcov_close __gcov_close
220 #define gcov_write_tag_length __gcov_write_tag_length
221 #define gcov_position __gcov_position
222 #define gcov_seek __gcov_seek
223 #define gcov_rewrite __gcov_rewrite
224 #define gcov_is_error __gcov_is_error
225 #define gcov_is_eof __gcov_is_eof
226 #define gcov_write_unsigned __gcov_write_unsigned
227 #define gcov_write_counter __gcov_write_counter
228 #define gcov_write_summary __gcov_write_summary
229 #define gcov_read_unsigned __gcov_read_unsigned
230 #define gcov_read_counter __gcov_read_counter
231 #define gcov_read_summary __gcov_read_summary
232
233 /* Poison these, so they don't accidentally slip in. */
234 #pragma GCC poison gcov_write_string gcov_write_tag gcov_write_length
235 #pragma GCC poison gcov_read_string gcov_sync gcov_time gcov_magic
236
237 #endif
238
239 #ifndef GCOV_LINKAGE
240 #define GCOV_LINKAGE extern
241 #endif
242
243 /* File suffixes. */
244 #define GCOV_DATA_SUFFIX ".gcda"
245 #define GCOV_NOTE_SUFFIX ".gcno"
246
247 /* File magic. Must not be palindromes. */
248 #define GCOV_DATA_MAGIC ((gcov_unsigned_t)0x67636461) /* "gcda" */
249 #define GCOV_NOTE_MAGIC ((gcov_unsigned_t)0x67636e6f) /* "gcno" */
250
251 /* gcov-iov.h is automatically generated by the makefile from
252 version.c, it looks like
253 #define GCOV_VERSION ((gcov_unsigned_t)0x89abcdef)
254 */
255 #include "gcov-iov.h"
256
257 /* Convert a magic or version number to a 4 character string. */
258 #define GCOV_UNSIGNED2STRING(ARRAY,VALUE) \
259 ((ARRAY)[0] = (char)((VALUE) >> 24), \
260 (ARRAY)[1] = (char)((VALUE) >> 16), \
261 (ARRAY)[2] = (char)((VALUE) >> 8), \
262 (ARRAY)[3] = (char)((VALUE) >> 0))
263
264 /* The record tags. Values [1..3f] are for tags which may be in either
265 file. Values [41..9f] for those in the note file and [a1..ff] for
266 the data file. */
267
268 #define GCOV_TAG_FUNCTION ((gcov_unsigned_t)0x01000000)
269 #define GCOV_TAG_FUNCTION_LENGTH (2)
270 #define GCOV_TAG_BLOCKS ((gcov_unsigned_t)0x01410000)
271 #define GCOV_TAG_BLOCKS_LENGTH(NUM) (NUM)
272 #define GCOV_TAG_BLOCKS_NUM(LENGTH) (LENGTH)
273 #define GCOV_TAG_ARCS ((gcov_unsigned_t)0x01430000)
274 #define GCOV_TAG_ARCS_LENGTH(NUM) (1 + (NUM) * 2)
275 #define GCOV_TAG_ARCS_NUM(LENGTH) (((LENGTH) - 1) / 2)
276 #define GCOV_TAG_LINES ((gcov_unsigned_t)0x01450000)
277 #define GCOV_TAG_COUNTER_BASE ((gcov_unsigned_t)0x01a10000)
278 #define GCOV_TAG_COUNTER_LENGTH(NUM) ((NUM) * 2)
279 #define GCOV_TAG_COUNTER_NUM(LENGTH) ((LENGTH) / 2)
280 #define GCOV_TAG_OBJECT_SUMMARY ((gcov_unsigned_t)0xa1000000)
281 #define GCOV_TAG_PROGRAM_SUMMARY ((gcov_unsigned_t)0xa3000000)
282 #define GCOV_TAG_SUMMARY_LENGTH \
283 (1 + GCOV_COUNTERS_SUMMABLE * (2 + 3 * 2))
284
285 /* Counters that are collected. */
286 #define GCOV_COUNTER_ARCS 0 /* Arc transitions. */
287 #define GCOV_COUNTERS_SUMMABLE 1 /* Counters which can be
288 summaried. */
289 #define GCOV_FIRST_VALUE_COUNTER 1 /* The first of counters used for value
290 profiling. They must form a consecutive
291 interval and their order must match
292 the order of HIST_TYPEs in
293 value-prof.h. */
294 #define GCOV_COUNTER_V_INTERVAL 1 /* Histogram of value inside an interval. */
295 #define GCOV_COUNTER_V_POW2 2 /* Histogram of exact power2 logarithm
296 of a value. */
297 #define GCOV_COUNTER_V_SINGLE 3 /* The most common value of expression. */
298 #define GCOV_COUNTER_V_DELTA 4 /* The most common difference between
299 consecutive values of expression. */
300 #define GCOV_LAST_VALUE_COUNTER 4 /* The last of counters used for value
301 profiling. */
302 #define GCOV_COUNTERS 5
303
304 /* Number of counters used for value profiling. */
305 #define GCOV_N_VALUE_COUNTERS \
306 (GCOV_LAST_VALUE_COUNTER - GCOV_FIRST_VALUE_COUNTER + 1)
307
308 /* A list of human readable names of the counters */
309 #define GCOV_COUNTER_NAMES {"arcs", "interval", "pow2", "single", "delta"}
310
311 /* Names of merge functions for counters. */
312 #define GCOV_MERGE_FUNCTIONS {"__gcov_merge_add", \
313 "__gcov_merge_add", \
314 "__gcov_merge_add", \
315 "__gcov_merge_single", \
316 "__gcov_merge_delta"}
317
318 /* Convert a counter index to a tag. */
319 #define GCOV_TAG_FOR_COUNTER(COUNT) \
320 (GCOV_TAG_COUNTER_BASE + ((gcov_unsigned_t)(COUNT) << 17))
321 /* Convert a tag to a counter. */
322 #define GCOV_COUNTER_FOR_TAG(TAG) \
323 ((unsigned)(((TAG) - GCOV_TAG_COUNTER_BASE) >> 17))
324 /* Check whether a tag is a counter tag. */
325 #define GCOV_TAG_IS_COUNTER(TAG) \
326 (!((TAG) & 0xFFFF) && GCOV_COUNTER_FOR_TAG (TAG) < GCOV_COUNTERS)
327
328 /* The tag level mask has 1's in the position of the inner levels, &
329 the lsb of the current level, and zero on the current and outer
330 levels. */
331 #define GCOV_TAG_MASK(TAG) (((TAG) - 1) ^ (TAG))
332
333 /* Return nonzero if SUB is an immediate subtag of TAG. */
334 #define GCOV_TAG_IS_SUBTAG(TAG,SUB) \
335 (GCOV_TAG_MASK (TAG) >> 8 == GCOV_TAG_MASK (SUB) \
336 && !(((SUB) ^ (TAG)) & ~GCOV_TAG_MASK(TAG)))
337
338 /* Return nonzero if SUB is at a sublevel to TAG. */
339 #define GCOV_TAG_IS_SUBLEVEL(TAG,SUB) \
340 (GCOV_TAG_MASK (TAG) > GCOV_TAG_MASK (SUB))
341
342 /* Basic block flags. */
343 #define GCOV_BLOCK_UNEXPECTED (1 << 1)
344
345 /* Arc flags. */
346 #define GCOV_ARC_ON_TREE (1 << 0)
347 #define GCOV_ARC_FAKE (1 << 1)
348 #define GCOV_ARC_FALLTHROUGH (1 << 2)
349
350 /* Structured records. */
351
352 /* Cumulative counter data. */
353 struct gcov_ctr_summary
354 {
355 gcov_unsigned_t num; /* number of counters. */
356 gcov_unsigned_t runs; /* number of program runs */
357 gcov_type sum_all; /* sum of all counters accumulated. */
358 gcov_type run_max; /* maximum value on a single run. */
359 gcov_type sum_max; /* sum of individual run max values. */
360 };
361
362 /* Object & program summary record. */
363 struct gcov_summary
364 {
365 gcov_unsigned_t checksum; /* checksum of program */
366 struct gcov_ctr_summary ctrs[GCOV_COUNTERS_SUMMABLE];
367 };
368
369 /* Structures embedded in coveraged program. The structures generated
370 by write_profile must match these. */
371
372 #if IN_LIBGCOV
373 /* Information about a single function. This uses the trailing array
374 idiom. The number of counters is determined from the counter_mask
375 in gcov_info. We hold an array of function info, so have to
376 explicitly calculate the correct array stride. */
377 struct gcov_fn_info
378 {
379 gcov_unsigned_t ident; /* unique ident of function */
380 gcov_unsigned_t checksum; /* function checksum */
381 unsigned n_ctrs[0]; /* instrumented counters */
382 };
383
384 /* Type of function used to merge counters. */
385 typedef void (*gcov_merge_fn) (gcov_type *, gcov_unsigned_t);
386
387 /* Information about counters. */
388 struct gcov_ctr_info
389 {
390 gcov_unsigned_t num; /* number of counters. */
391 gcov_type *values; /* their values. */
392 gcov_merge_fn merge; /* The function used to merge them. */
393 };
394
395 /* Information about a single object file. */
396 struct gcov_info
397 {
398 gcov_unsigned_t version; /* expected version number */
399 struct gcov_info *next; /* link to next, used by libgcov */
400
401 gcov_unsigned_t stamp; /* uniquifying time stamp */
402 const char *filename; /* output file name */
403
404 unsigned n_functions; /* number of functions */
405 const struct gcov_fn_info *functions; /* table of functions */
406
407 unsigned ctr_mask; /* mask of counters instrumented. */
408 struct gcov_ctr_info counts[0]; /* count data. The number of bits
409 set in the ctr_mask field
410 determines how big this array
411 is. */
412 };
413
414 /* Register a new object file module. */
415 extern void __gcov_init (struct gcov_info *);
416
417 /* Called before fork, to avoid double counting. */
418 extern void __gcov_flush (void);
419
420 /* The merge function that just sums the counters. */
421 extern void __gcov_merge_add (gcov_type *, unsigned);
422
423 /* The merge function to choose the most common value. */
424 extern void __gcov_merge_single (gcov_type *, unsigned);
425
426 /* The merge function to choose the most common difference between
427 consecutive values. */
428 extern void __gcov_merge_delta (gcov_type *, unsigned);
429 #endif /* IN_LIBGCOV */
430
431 #if IN_LIBGCOV >= 0
432
433 /* Optimum number of gcov_unsigned_t's read from or written to disk. */
434 #define GCOV_BLOCK_SIZE (1 << 10)
435
436 GCOV_LINKAGE struct gcov_var
437 {
438 FILE *file;
439 gcov_position_t start; /* Position of first byte of block */
440 unsigned offset; /* Read/write position within the block. */
441 unsigned length; /* Read limit in the block. */
442 unsigned overread; /* Number of words overread. */
443 int error; /* < 0 overflow, > 0 disk error. */
444 int mode; /* < 0 writing, > 0 reading */
445 #if IN_LIBGCOV
446 /* Holds one block plus 4 bytes, thus all coverage reads & writes
447 fit within this buffer and we always can transfer GCOV_BLOCK_SIZE
448 to and from the disk. libgcov never backtracks and only writes 4
449 or 8 byte objects. */
450 gcov_unsigned_t buffer[GCOV_BLOCK_SIZE + 1];
451 #else
452 int endian; /* Swap endianness. */
453 /* Holds a variable length block, as the compiler can write
454 strings and needs to backtrack. */
455 size_t alloc;
456 gcov_unsigned_t *buffer;
457 #endif
458 } gcov_var;
459
460 /* Functions for reading and writing gcov files. In libgcov you can
461 open the file for reading then writing. Elsewhere you can open the
462 file either for reading or for writing. When reading a file you may
463 use the gcov_read_* functions, gcov_sync, gcov_position, &
464 gcov_error. When writing a file you may use the gcov_write
465 functions, gcov_seek & gcov_error. When a file is to be rewritten
466 you use the functions for reading, then gcov_rewrite then the
467 functions for writing. Your file may become corrupted if you break
468 these invariants. */
469 #if IN_LIBGCOV
470 GCOV_LINKAGE int gcov_open (const char */*name*/);
471 #else
472 GCOV_LINKAGE int gcov_open (const char */*name*/, int /*direction*/);
473 GCOV_LINKAGE int gcov_magic (gcov_unsigned_t, gcov_unsigned_t);
474 #endif
475 GCOV_LINKAGE int gcov_close (void);
476
477 /* Available everywhere. */
478 static gcov_position_t gcov_position (void);
479 static int gcov_is_error (void);
480 static int gcov_is_eof (void);
481
482 GCOV_LINKAGE gcov_unsigned_t gcov_read_unsigned (void);
483 GCOV_LINKAGE gcov_type gcov_read_counter (void);
484 GCOV_LINKAGE void gcov_read_summary (struct gcov_summary *);
485
486 #if IN_LIBGCOV
487 /* Available only in libgcov */
488 GCOV_LINKAGE void gcov_write_counter (gcov_type);
489 GCOV_LINKAGE void gcov_write_tag_length (gcov_unsigned_t, gcov_unsigned_t);
490 GCOV_LINKAGE void gcov_write_summary (gcov_unsigned_t /*tag*/,
491 const struct gcov_summary *);
492 static void gcov_truncate (void);
493 static void gcov_rewrite (void);
494 GCOV_LINKAGE void gcov_seek (gcov_position_t /*position*/);
495 #else
496 /* Available outside libgcov */
497 GCOV_LINKAGE const char *gcov_read_string (void);
498 GCOV_LINKAGE void gcov_sync (gcov_position_t /*base*/,
499 gcov_unsigned_t /*length */);
500 #endif
501
502 #if !IN_GCOV
503 /* Available outside gcov */
504 GCOV_LINKAGE void gcov_write_unsigned (gcov_unsigned_t);
505 #endif
506
507 #if !IN_GCOV && !IN_LIBGCOV
508 /* Available only in compiler */
509 GCOV_LINKAGE void gcov_write_string (const char *);
510 GCOV_LINKAGE gcov_position_t gcov_write_tag (gcov_unsigned_t);
511 GCOV_LINKAGE void gcov_write_length (gcov_position_t /*position*/);
512 #endif
513
514 #if IN_GCOV > 0
515 /* Available in gcov */
516 GCOV_LINKAGE time_t gcov_time (void);
517 #endif
518
519 /* Make sure the library is used correctly. */
520 #if ENABLE_CHECKING
521 #define GCOV_CHECK(expr) ((expr) ? (void)0 : (void)abort ())
522 #else
523 #define GCOV_CHECK(expr)
524 #endif
525 #define GCOV_CHECK_READING() GCOV_CHECK(gcov_var.mode > 0)
526 #define GCOV_CHECK_WRITING() GCOV_CHECK(gcov_var.mode < 0)
527
528 /* Save the current position in the gcov file. */
529
530 static inline gcov_position_t
531 gcov_position (void)
532 {
533 GCOV_CHECK_READING ();
534 return gcov_var.start + gcov_var.offset;
535 }
536
537 /* Return nonzero if we read to end of file. */
538
539 static inline int
540 gcov_is_eof (void)
541 {
542 return !gcov_var.overread;
543 }
544
545 /* Return nonzero if the error flag is set. */
546
547 static inline int
548 gcov_is_error (void)
549 {
550 return gcov_var.file ? gcov_var.error : 1;
551 }
552
553 #if IN_LIBGCOV
554 /* Move to beginning of file and initialize for writing. */
555
556 static inline void
557 gcov_rewrite (void)
558 {
559 GCOV_CHECK_READING ();
560 gcov_var.mode = -1;
561 gcov_var.start = 0;
562 gcov_var.offset = 0;
563 fseek (gcov_var.file, 0L, SEEK_SET);
564 }
565
566 static inline void
567 gcov_truncate (void)
568 {
569 ftruncate (fileno (gcov_var.file), 0L);
570 }
571 #endif
572
573 #endif /* IN_LIBGCOV >= 0 */
574
575 #endif /* GCC_GCOV_IO_H */