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sewardjde4a1d02002-03-22 01:27:54 +00001
2/*--------------------------------------------------------------------*/
3/*--- Reimplementation of some C library stuff, to avoid depending ---*/
4/*--- on libc.so. ---*/
5/*--- vg_mylibc.c ---*/
6/*--------------------------------------------------------------------*/
7
8/*
njnc9539842002-10-02 13:26:35 +00009 This file is part of Valgrind, an extensible x86 protected-mode
10 emulator for monitoring program execution on x86-Unixes.
sewardjde4a1d02002-03-22 01:27:54 +000011
12 Copyright (C) 2000-2002 Julian Seward
13 jseward@acm.org
sewardjde4a1d02002-03-22 01:27:54 +000014
15 This program is free software; you can redistribute it and/or
16 modify it under the terms of the GNU General Public License as
17 published by the Free Software Foundation; either version 2 of the
18 License, or (at your option) any later version.
19
20 This program is distributed in the hope that it will be useful, but
21 WITHOUT ANY WARRANTY; without even the implied warranty of
22 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
23 General Public License for more details.
24
25 You should have received a copy of the GNU General Public License
26 along with this program; if not, write to the Free Software
27 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
28 02111-1307, USA.
29
njn25e49d8e72002-09-23 09:36:25 +000030 The GNU General Public License is contained in the file COPYING.
sewardjde4a1d02002-03-22 01:27:54 +000031*/
32
33#include "vg_include.h"
34
35
36
37/* ---------------------------------------------------------------------
38 Really Actually DO system calls.
39 ------------------------------------------------------------------ */
40
41/* Ripped off from /usr/include/asm/unistd.h. */
42
43static
44UInt vg_do_syscall0 ( UInt syscallno )
45{
46 UInt __res;
47 __asm__ volatile ("int $0x80"
48 : "=a" (__res)
49 : "0" (syscallno) );
50 return __res;
51}
52
53
54static
55UInt vg_do_syscall1 ( UInt syscallno, UInt arg1 )
56{
57 UInt __res;
58 __asm__ volatile ("int $0x80"
59 : "=a" (__res)
60 : "0" (syscallno),
61 "b" (arg1) );
62 return __res;
63}
64
65
66static
67UInt vg_do_syscall2 ( UInt syscallno,
68 UInt arg1, UInt arg2 )
69{
70 UInt __res;
71 __asm__ volatile ("int $0x80"
72 : "=a" (__res)
73 : "0" (syscallno),
74 "b" (arg1),
75 "c" (arg2) );
76 return __res;
77}
78
79
80static
81UInt vg_do_syscall3 ( UInt syscallno,
82 UInt arg1, UInt arg2, UInt arg3 )
83{
84 UInt __res;
85 __asm__ volatile ("int $0x80"
86 : "=a" (__res)
87 : "0" (syscallno),
88 "b" (arg1),
89 "c" (arg2),
90 "d" (arg3) );
91 return __res;
92}
93
94
95static
96UInt vg_do_syscall4 ( UInt syscallno,
97 UInt arg1, UInt arg2, UInt arg3, UInt arg4 )
98{
99 UInt __res;
100 __asm__ volatile ("int $0x80"
101 : "=a" (__res)
102 : "0" (syscallno),
103 "b" (arg1),
104 "c" (arg2),
105 "d" (arg3),
106 "S" (arg4) );
107 return __res;
108}
109
110
111#if 0
112static
113UInt vg_do_syscall5 ( UInt syscallno,
114 UInt arg1, UInt arg2, UInt arg3, UInt arg4,
115 UInt arg5 )
116{
117 UInt __res;
118 __asm__ volatile ("int $0x80"
119 : "=a" (__res)
120 : "0" (syscallno),
121 "b" (arg1),
122 "c" (arg2),
123 "d" (arg3),
124 "S" (arg4),
125 "D" (arg5) );
126 return __res;
127}
128#endif
129
130/* ---------------------------------------------------------------------
131 Wrappers around system calls, and other stuff, to do with signals.
132 ------------------------------------------------------------------ */
133
134/* sigemptyset, sigfullset, sigaddset and sigdelset return 0 on
135 success and -1 on error.
136*/
137Int VG_(ksigfillset)( vki_ksigset_t* set )
138{
139 Int i;
140 if (set == NULL)
141 return -1;
142 for (i = 0; i < VKI_KNSIG_WORDS; i++)
143 set->ws[i] = 0xFFFFFFFF;
144 return 0;
145}
146
147Int VG_(ksigemptyset)( vki_ksigset_t* set )
148{
149 Int i;
150 if (set == NULL)
151 return -1;
152 for (i = 0; i < VKI_KNSIG_WORDS; i++)
153 set->ws[i] = 0x0;
154 return 0;
155}
156
sewardjb48e5002002-05-13 00:16:03 +0000157Bool VG_(kisemptysigset)( vki_ksigset_t* set )
158{
159 Int i;
160 vg_assert(set != NULL);
161 for (i = 0; i < VKI_KNSIG_WORDS; i++)
162 if (set->ws[i] != 0x0) return False;
163 return True;
164}
165
sewardj018f7622002-05-15 21:13:39 +0000166Bool VG_(kisfullsigset)( vki_ksigset_t* set )
167{
168 Int i;
169 vg_assert(set != NULL);
170 for (i = 0; i < VKI_KNSIG_WORDS; i++)
171 if (set->ws[i] != ~0x0) return False;
172 return True;
173}
174
175
sewardjde4a1d02002-03-22 01:27:54 +0000176Int VG_(ksigaddset)( vki_ksigset_t* set, Int signum )
177{
178 if (set == NULL)
179 return -1;
njn25e49d8e72002-09-23 09:36:25 +0000180 if (signum < 1 || signum > VKI_KNSIG)
sewardjde4a1d02002-03-22 01:27:54 +0000181 return -1;
182 signum--;
183 set->ws[signum / VKI_KNSIG_BPW] |= (1 << (signum % VKI_KNSIG_BPW));
184 return 0;
185}
186
sewardj018f7622002-05-15 21:13:39 +0000187Int VG_(ksigdelset)( vki_ksigset_t* set, Int signum )
188{
189 if (set == NULL)
190 return -1;
njn25e49d8e72002-09-23 09:36:25 +0000191 if (signum < 1 || signum > VKI_KNSIG)
sewardj018f7622002-05-15 21:13:39 +0000192 return -1;
193 signum--;
194 set->ws[signum / VKI_KNSIG_BPW] &= ~(1 << (signum % VKI_KNSIG_BPW));
195 return 0;
196}
197
sewardjde4a1d02002-03-22 01:27:54 +0000198Int VG_(ksigismember) ( vki_ksigset_t* set, Int signum )
199{
200 if (set == NULL)
sewardjb48e5002002-05-13 00:16:03 +0000201 return 0;
njn25e49d8e72002-09-23 09:36:25 +0000202 if (signum < 1 || signum > VKI_KNSIG)
sewardjb48e5002002-05-13 00:16:03 +0000203 return 0;
sewardjde4a1d02002-03-22 01:27:54 +0000204 signum--;
205 if (1 & ((set->ws[signum / VKI_KNSIG_BPW]) >> (signum % VKI_KNSIG_BPW)))
206 return 1;
207 else
208 return 0;
209}
210
211
sewardjb48e5002002-05-13 00:16:03 +0000212/* Add all signals in src to dst. */
213void VG_(ksigaddset_from_set)( vki_ksigset_t* dst, vki_ksigset_t* src )
214{
215 Int i;
216 vg_assert(dst != NULL && src != NULL);
217 for (i = 0; i < VKI_KNSIG_WORDS; i++)
218 dst->ws[i] |= src->ws[i];
219}
220
221/* Remove all signals in src from dst. */
222void VG_(ksigdelset_from_set)( vki_ksigset_t* dst, vki_ksigset_t* src )
223{
224 Int i;
225 vg_assert(dst != NULL && src != NULL);
226 for (i = 0; i < VKI_KNSIG_WORDS; i++)
227 dst->ws[i] &= ~(src->ws[i]);
228}
229
230
sewardjde4a1d02002-03-22 01:27:54 +0000231/* The functions sigaction, sigprocmask, sigpending and sigsuspend
232 return 0 on success and -1 on error.
233*/
234Int VG_(ksigprocmask)( Int how,
235 const vki_ksigset_t* set,
236 vki_ksigset_t* oldset)
237{
238 Int res
239 = vg_do_syscall4(__NR_rt_sigprocmask,
240 how, (UInt)set, (UInt)oldset,
241 VKI_KNSIG_WORDS * VKI_BYTES_PER_WORD);
242 return VG_(is_kerror)(res) ? -1 : 0;
243}
244
245
246Int VG_(ksigaction) ( Int signum,
247 const vki_ksigaction* act,
248 vki_ksigaction* oldact)
249{
250 Int res
251 = vg_do_syscall4(__NR_rt_sigaction,
252 signum, (UInt)act, (UInt)oldact,
253 VKI_KNSIG_WORDS * VKI_BYTES_PER_WORD);
sewardj018f7622002-05-15 21:13:39 +0000254 /* VG_(printf)("res = %d\n",res); */
sewardjde4a1d02002-03-22 01:27:54 +0000255 return VG_(is_kerror)(res) ? -1 : 0;
256}
257
258
259Int VG_(ksigaltstack)( const vki_kstack_t* ss, vki_kstack_t* oss )
260{
261 Int res
262 = vg_do_syscall2(__NR_sigaltstack, (UInt)ss, (UInt)oss);
263 return VG_(is_kerror)(res) ? -1 : 0;
264}
265
266
267Int VG_(ksignal)(Int signum, void (*sighandler)(Int))
268{
269 Int res;
270 vki_ksigaction sa;
271 sa.ksa_handler = sighandler;
272 sa.ksa_flags = VKI_SA_ONSTACK | VKI_SA_RESTART;
273 sa.ksa_restorer = NULL;
274 res = VG_(ksigemptyset)( &sa.ksa_mask );
275 vg_assert(res == 0);
276 res = vg_do_syscall4(__NR_rt_sigaction,
277 signum, (UInt)(&sa), (UInt)NULL,
278 VKI_KNSIG_WORDS * VKI_BYTES_PER_WORD);
279 return VG_(is_kerror)(res) ? -1 : 0;
280}
281
282
sewardjdcaf3122002-09-30 23:12:33 +0000283Int VG_(kkill)( Int pid, Int signo )
sewardj018f7622002-05-15 21:13:39 +0000284{
285 Int res = vg_do_syscall2(__NR_kill, pid, signo);
286 return VG_(is_kerror)(res) ? -1 : 0;
287}
288
289
sewardjdcaf3122002-09-30 23:12:33 +0000290Int VG_(ksigpending) ( vki_ksigset_t* set )
sewardjefbfcdf2002-06-19 17:35:45 +0000291{
292 Int res = vg_do_syscall1(__NR_sigpending, (UInt)set);
293 return VG_(is_kerror)(res) ? -1 : 0;
294}
295
296
sewardjde4a1d02002-03-22 01:27:54 +0000297/* ---------------------------------------------------------------------
sewardj2e93c502002-04-12 11:12:52 +0000298 mmap/munmap, exit, fcntl
sewardjde4a1d02002-03-22 01:27:54 +0000299 ------------------------------------------------------------------ */
300
301/* Returns -1 on failure. */
302void* VG_(mmap)( void* start, UInt length,
303 UInt prot, UInt flags, UInt fd, UInt offset)
304{
305 Int res;
306 UInt args[6];
307 args[0] = (UInt)start;
308 args[1] = length;
309 args[2] = prot;
310 args[3] = flags;
311 args[4] = fd;
312 args[5] = offset;
313 res = vg_do_syscall1(__NR_mmap, (UInt)(&(args[0])) );
314 return VG_(is_kerror)(res) ? ((void*)(-1)) : (void*)res;
315}
316
317/* Returns -1 on failure. */
318Int VG_(munmap)( void* start, Int length )
319{
320 Int res = vg_do_syscall2(__NR_munmap, (UInt)start, (UInt)length );
321 return VG_(is_kerror)(res) ? -1 : 0;
322}
323
324void VG_(exit)( Int status )
325{
326 (void)vg_do_syscall1(__NR_exit, (UInt)status );
327 /* Why are we still alive here? */
328 /*NOTREACHED*/
329 vg_assert(2+2 == 5);
330}
331
sewardj2e93c502002-04-12 11:12:52 +0000332/* Returns -1 on error. */
333Int VG_(fcntl) ( Int fd, Int cmd, Int arg )
334{
335 Int res = vg_do_syscall3(__NR_fcntl, fd, cmd, arg);
336 return VG_(is_kerror)(res) ? -1 : res;
337}
338
339/* Returns -1 on error. */
340Int VG_(select)( Int n,
341 vki_fd_set* readfds,
342 vki_fd_set* writefds,
343 vki_fd_set* exceptfds,
344 struct vki_timeval * timeout )
345{
346 Int res;
347 UInt args[5];
348 args[0] = n;
349 args[1] = (UInt)readfds;
350 args[2] = (UInt)writefds;
351 args[3] = (UInt)exceptfds;
352 args[4] = (UInt)timeout;
353 res = vg_do_syscall1(__NR_select, (UInt)(&(args[0])) );
354 return VG_(is_kerror)(res) ? -1 : res;
sewardj2e93c502002-04-12 11:12:52 +0000355}
356
sewardj5f07b662002-04-23 16:52:51 +0000357/* Returns -1 on error, 0 if ok, 1 if interrupted. */
sewardj2e93c502002-04-12 11:12:52 +0000358Int VG_(nanosleep)( const struct vki_timespec *req,
359 struct vki_timespec *rem )
360{
361 Int res;
362 res = vg_do_syscall2(__NR_nanosleep, (UInt)req, (UInt)rem);
363 if (res == -VKI_EINVAL) return -1;
sewardj5f07b662002-04-23 16:52:51 +0000364 if (res == -VKI_EINTR) return 1;
sewardj2e93c502002-04-12 11:12:52 +0000365 return 0;
366}
367
sewardjb3586202002-05-09 17:38:13 +0000368void* VG_(brk) ( void* end_data_segment )
369{
370 Int res;
371 res = vg_do_syscall1(__NR_brk, (UInt)end_data_segment);
372 return (void*)( VG_(is_kerror)(res) ? -1 : res );
373}
374
sewardj2e93c502002-04-12 11:12:52 +0000375
sewardjde4a1d02002-03-22 01:27:54 +0000376/* ---------------------------------------------------------------------
377 printf implementation. The key function, vg_vprintf(), emits chars
378 into a caller-supplied function. Distantly derived from:
379
380 vprintf replacement for Checker.
381 Copyright 1993, 1994, 1995 Tristan Gingold
382 Written September 1993 Tristan Gingold
383 Tristan Gingold, 8 rue Parmentier, F-91120 PALAISEAU, FRANCE
384
385 (Checker itself was GPL'd.)
386 ------------------------------------------------------------------ */
387
388
389/* Some flags. */
390#define VG_MSG_SIGNED 1 /* The value is signed. */
391#define VG_MSG_ZJUSTIFY 2 /* Must justify with '0'. */
392#define VG_MSG_LJUSTIFY 4 /* Must justify on the left. */
sewardj78e3cd92002-10-22 04:45:48 +0000393#define VG_MSG_PAREN 8 /* Parenthesize if present (for %y) */
sewardjde4a1d02002-03-22 01:27:54 +0000394
395/* Copy a string into the buffer. */
sewardj78e3cd92002-10-22 04:45:48 +0000396static UInt
sewardjde4a1d02002-03-22 01:27:54 +0000397myvprintf_str ( void(*send)(Char), Int flags, Int width, Char* str,
398 Bool capitalise )
399{
400# define MAYBE_TOUPPER(ch) (capitalise ? VG_(toupper)(ch) : (ch))
sewardj78e3cd92002-10-22 04:45:48 +0000401 UInt ret = 0;
sewardjde4a1d02002-03-22 01:27:54 +0000402 Int i, extra;
403 Int len = VG_(strlen)(str);
404
405 if (width == 0) {
sewardj78e3cd92002-10-22 04:45:48 +0000406 ret += len;
sewardjde4a1d02002-03-22 01:27:54 +0000407 for (i = 0; i < len; i++)
408 send(MAYBE_TOUPPER(str[i]));
sewardj78e3cd92002-10-22 04:45:48 +0000409 return ret;
sewardjde4a1d02002-03-22 01:27:54 +0000410 }
411
412 if (len > width) {
sewardj78e3cd92002-10-22 04:45:48 +0000413 ret += width;
sewardjde4a1d02002-03-22 01:27:54 +0000414 for (i = 0; i < width; i++)
415 send(MAYBE_TOUPPER(str[i]));
sewardj78e3cd92002-10-22 04:45:48 +0000416 return ret;
sewardjde4a1d02002-03-22 01:27:54 +0000417 }
418
419 extra = width - len;
420 if (flags & VG_MSG_LJUSTIFY) {
sewardj78e3cd92002-10-22 04:45:48 +0000421 ret += extra;
sewardjde4a1d02002-03-22 01:27:54 +0000422 for (i = 0; i < extra; i++)
423 send(' ');
424 }
sewardj78e3cd92002-10-22 04:45:48 +0000425 ret += len;
sewardjde4a1d02002-03-22 01:27:54 +0000426 for (i = 0; i < len; i++)
427 send(MAYBE_TOUPPER(str[i]));
428 if (!(flags & VG_MSG_LJUSTIFY)) {
sewardj78e3cd92002-10-22 04:45:48 +0000429 ret += extra;
sewardjde4a1d02002-03-22 01:27:54 +0000430 for (i = 0; i < extra; i++)
431 send(' ');
432 }
433
434# undef MAYBE_TOUPPER
sewardj78e3cd92002-10-22 04:45:48 +0000435
436 return ret;
sewardjde4a1d02002-03-22 01:27:54 +0000437}
438
439/* Write P into the buffer according to these args:
440 * If SIGN is true, p is a signed.
441 * BASE is the base.
442 * If WITH_ZERO is true, '0' must be added.
443 * WIDTH is the width of the field.
444 */
sewardj78e3cd92002-10-22 04:45:48 +0000445static UInt
sewardjde4a1d02002-03-22 01:27:54 +0000446myvprintf_int64 ( void(*send)(Char), Int flags, Int base, Int width, ULong p)
447{
448 Char buf[40];
449 Int ind = 0;
450 Int i;
451 Bool neg = False;
452 Char *digits = "0123456789ABCDEF";
sewardj78e3cd92002-10-22 04:45:48 +0000453 UInt ret = 0;
454
sewardjde4a1d02002-03-22 01:27:54 +0000455 if (base < 2 || base > 16)
sewardj78e3cd92002-10-22 04:45:48 +0000456 return ret;
sewardjde4a1d02002-03-22 01:27:54 +0000457
458 if ((flags & VG_MSG_SIGNED) && (Long)p < 0) {
459 p = - (Long)p;
460 neg = True;
461 }
462
463 if (p == 0)
464 buf[ind++] = '0';
465 else {
466 while (p > 0) {
467 buf[ind++] = digits[p % base];
468 p /= base;
469 }
470 }
471
472 if (neg)
473 buf[ind++] = '-';
474
475 if (width > 0 && !(flags & VG_MSG_LJUSTIFY)) {
476 for(; ind < width; ind++) {
477 vg_assert(ind < 39);
478 buf[ind] = (flags & VG_MSG_ZJUSTIFY) ? '0': ' ';
479 }
480 }
481
482 /* Reverse copy to buffer. */
sewardj78e3cd92002-10-22 04:45:48 +0000483 ret += ind;
sewardjde4a1d02002-03-22 01:27:54 +0000484 for (i = ind -1; i >= 0; i--)
485 send(buf[i]);
sewardjde4a1d02002-03-22 01:27:54 +0000486 if (width > 0 && (flags & VG_MSG_LJUSTIFY)) {
sewardj78e3cd92002-10-22 04:45:48 +0000487 for(; ind < width; ind++) {
488 ret++;
sewardjde4a1d02002-03-22 01:27:54 +0000489 send((flags & VG_MSG_ZJUSTIFY) ? '0': ' ');
sewardj78e3cd92002-10-22 04:45:48 +0000490 }
sewardjde4a1d02002-03-22 01:27:54 +0000491 }
sewardj78e3cd92002-10-22 04:45:48 +0000492 return ret;
sewardjde4a1d02002-03-22 01:27:54 +0000493}
494
495
496/* A simple vprintf(). */
sewardj78e3cd92002-10-22 04:45:48 +0000497UInt
sewardjde4a1d02002-03-22 01:27:54 +0000498VG_(vprintf) ( void(*send)(Char), const Char *format, va_list vargs )
499{
sewardj78e3cd92002-10-22 04:45:48 +0000500 UInt ret = 0;
sewardjde4a1d02002-03-22 01:27:54 +0000501 int i;
502 int flags;
503 int width;
504 Bool is_long;
505
506 /* We assume that vargs has already been initialised by the
507 caller, using va_start, and that the caller will similarly
508 clean up with va_end.
509 */
510
511 for (i = 0; format[i] != 0; i++) {
512 if (format[i] != '%') {
513 send(format[i]);
sewardj78e3cd92002-10-22 04:45:48 +0000514 ret++;
sewardjde4a1d02002-03-22 01:27:54 +0000515 continue;
516 }
517 i++;
518 /* A '%' has been found. Ignore a trailing %. */
519 if (format[i] == 0)
520 break;
521 if (format[i] == '%') {
522 /* `%%' is replaced by `%'. */
523 send('%');
sewardj78e3cd92002-10-22 04:45:48 +0000524 ret++;
sewardjde4a1d02002-03-22 01:27:54 +0000525 continue;
526 }
527 flags = 0;
528 is_long = False;
529 width = 0; /* length of the field. */
sewardj78e3cd92002-10-22 04:45:48 +0000530 if (format[i] == '(') {
531 flags |= VG_MSG_PAREN;
532 i++;
533 }
sewardjde4a1d02002-03-22 01:27:54 +0000534 /* If '-' follows '%', justify on the left. */
535 if (format[i] == '-') {
536 flags |= VG_MSG_LJUSTIFY;
537 i++;
538 }
539 /* If '0' follows '%', pads will be inserted. */
540 if (format[i] == '0') {
541 flags |= VG_MSG_ZJUSTIFY;
542 i++;
543 }
544 /* Compute the field length. */
545 while (format[i] >= '0' && format[i] <= '9') {
546 width *= 10;
547 width += format[i++] - '0';
548 }
549 while (format[i] == 'l') {
550 i++;
551 is_long = True;
552 }
553
554 switch (format[i]) {
555 case 'd': /* %d */
556 flags |= VG_MSG_SIGNED;
557 if (is_long)
sewardj78e3cd92002-10-22 04:45:48 +0000558 ret += myvprintf_int64(send, flags, 10, width,
559 (ULong)(va_arg (vargs, Long)));
sewardjde4a1d02002-03-22 01:27:54 +0000560 else
sewardj78e3cd92002-10-22 04:45:48 +0000561 ret += myvprintf_int64(send, flags, 10, width,
562 (ULong)(va_arg (vargs, Int)));
sewardjde4a1d02002-03-22 01:27:54 +0000563 break;
564 case 'u': /* %u */
565 if (is_long)
sewardj78e3cd92002-10-22 04:45:48 +0000566 ret += myvprintf_int64(send, flags, 10, width,
567 (ULong)(va_arg (vargs, ULong)));
sewardjde4a1d02002-03-22 01:27:54 +0000568 else
sewardj78e3cd92002-10-22 04:45:48 +0000569 ret += myvprintf_int64(send, flags, 10, width,
570 (ULong)(va_arg (vargs, UInt)));
sewardjde4a1d02002-03-22 01:27:54 +0000571 break;
572 case 'p': /* %p */
sewardj78e3cd92002-10-22 04:45:48 +0000573 ret += 2;
sewardjde4a1d02002-03-22 01:27:54 +0000574 send('0');
575 send('x');
sewardj78e3cd92002-10-22 04:45:48 +0000576 ret += myvprintf_int64(send, flags, 16, width,
577 (ULong)((UInt)va_arg (vargs, void *)));
sewardjde4a1d02002-03-22 01:27:54 +0000578 break;
579 case 'x': /* %x */
580 if (is_long)
sewardj78e3cd92002-10-22 04:45:48 +0000581 ret += myvprintf_int64(send, flags, 16, width,
582 (ULong)(va_arg (vargs, ULong)));
sewardjde4a1d02002-03-22 01:27:54 +0000583 else
sewardj78e3cd92002-10-22 04:45:48 +0000584 ret += myvprintf_int64(send, flags, 16, width,
585 (ULong)(va_arg (vargs, UInt)));
sewardjde4a1d02002-03-22 01:27:54 +0000586 break;
587 case 'c': /* %c */
sewardj78e3cd92002-10-22 04:45:48 +0000588 ret++;
sewardjde4a1d02002-03-22 01:27:54 +0000589 send(va_arg (vargs, int));
590 break;
591 case 's': case 'S': { /* %s */
592 char *str = va_arg (vargs, char *);
593 if (str == (char*) 0) str = "(null)";
sewardj78e3cd92002-10-22 04:45:48 +0000594 ret += myvprintf_str(send, flags, width, str, format[i]=='S');
sewardjde4a1d02002-03-22 01:27:54 +0000595 break;
sewardj78e3cd92002-10-22 04:45:48 +0000596 }
597 case 'y': { /* %y - print symbol */
598 Char buf[100];
599 Char *cp = buf;
600 Addr a = va_arg(vargs, Addr);
601
602 if (flags & VG_MSG_PAREN)
603 *cp++ = '(';
604 if (VG_(get_fnname)(a, cp, sizeof(buf)-2)) {
605 if (flags & VG_MSG_PAREN) {
606 cp += VG_(strlen)(cp);
607 *cp++ = ')';
608 *cp = '\0';
609 }
610 ret += myvprintf_str(send, flags, width, buf, 0);
611 }
612
613 break;
614 }
sewardjde4a1d02002-03-22 01:27:54 +0000615 default:
616 break;
617 }
618 }
sewardj78e3cd92002-10-22 04:45:48 +0000619 return ret;
sewardjde4a1d02002-03-22 01:27:54 +0000620}
621
622
623/* A general replacement for printf(). Note that only low-level
624 debugging info should be sent via here. The official route is to
625 to use vg_message(). This interface is deprecated.
626*/
627static char myprintf_buf[100];
628static int n_myprintf_buf;
629
630static void add_to_myprintf_buf ( Char c )
631{
632 if (n_myprintf_buf >= 100-10 /*paranoia*/ ) {
sewardj73cf3bc2002-11-03 03:20:15 +0000633 if (VG_(clo_logfile_fd) >= 0) {
634 if (VG_(logging_to_filedes))
635 VG_(write)
636 (VG_(clo_logfile_fd), myprintf_buf, VG_(strlen)(myprintf_buf));
637 else
638 VG_(write_socket)
639 (VG_(clo_logfile_fd), myprintf_buf, VG_(strlen)(myprintf_buf));
640 }
sewardjde4a1d02002-03-22 01:27:54 +0000641 n_myprintf_buf = 0;
642 myprintf_buf[n_myprintf_buf] = 0;
643 }
644 myprintf_buf[n_myprintf_buf++] = c;
645 myprintf_buf[n_myprintf_buf] = 0;
646}
647
sewardj78e3cd92002-10-22 04:45:48 +0000648UInt VG_(printf) ( const char *format, ... )
sewardjde4a1d02002-03-22 01:27:54 +0000649{
sewardj78e3cd92002-10-22 04:45:48 +0000650 UInt ret;
sewardjde4a1d02002-03-22 01:27:54 +0000651 va_list vargs;
652 va_start(vargs,format);
653
654 n_myprintf_buf = 0;
655 myprintf_buf[n_myprintf_buf] = 0;
sewardj78e3cd92002-10-22 04:45:48 +0000656 ret = VG_(vprintf) ( add_to_myprintf_buf, format, vargs );
sewardjde4a1d02002-03-22 01:27:54 +0000657
sewardj73cf3bc2002-11-03 03:20:15 +0000658 if (n_myprintf_buf > 0 && VG_(clo_logfile_fd) >= 0) {
659 if (VG_(logging_to_filedes))
660 VG_(write)
661 ( VG_(clo_logfile_fd), myprintf_buf, n_myprintf_buf);
662 else
663 VG_(write_socket)
664 ( VG_(clo_logfile_fd), myprintf_buf, n_myprintf_buf);
665 }
sewardjde4a1d02002-03-22 01:27:54 +0000666
667 va_end(vargs);
sewardj78e3cd92002-10-22 04:45:48 +0000668
669 return ret;
sewardjde4a1d02002-03-22 01:27:54 +0000670}
671
672
673/* A general replacement for sprintf(). */
674static Char* vg_sprintf_ptr;
675
676static void add_to_vg_sprintf_buf ( Char c )
677{
678 *vg_sprintf_ptr++ = c;
679}
680
sewardj78e3cd92002-10-22 04:45:48 +0000681UInt VG_(sprintf) ( Char* buf, Char *format, ... )
sewardjde4a1d02002-03-22 01:27:54 +0000682{
sewardj78e3cd92002-10-22 04:45:48 +0000683 UInt ret;
684
sewardjde4a1d02002-03-22 01:27:54 +0000685 va_list vargs;
686 va_start(vargs,format);
687
688 vg_sprintf_ptr = buf;
sewardj78e3cd92002-10-22 04:45:48 +0000689 ret = VG_(vprintf) ( add_to_vg_sprintf_buf, format, vargs );
sewardjde4a1d02002-03-22 01:27:54 +0000690 add_to_vg_sprintf_buf(0);
691
692 va_end(vargs);
sewardj78e3cd92002-10-22 04:45:48 +0000693
694 vg_assert(VG_(strlen)(buf) == ret);
695 return ret;
sewardjde4a1d02002-03-22 01:27:54 +0000696}
697
698
699/* ---------------------------------------------------------------------
700 Misc str* functions.
701 ------------------------------------------------------------------ */
702
703Bool VG_(isspace) ( Char c )
704{
705 return (c == ' ' || c == '\n' || c == '\t' || c == 0);
706}
707
njn7cf0bd32002-06-08 13:36:03 +0000708Bool VG_(isdigit) ( Char c )
709{
710 return (c >= '0' && c <= '9');
711}
sewardjde4a1d02002-03-22 01:27:54 +0000712
713Int VG_(strlen) ( const Char* str )
714{
715 Int i = 0;
716 while (str[i] != 0) i++;
717 return i;
718}
719
720
721Long VG_(atoll) ( Char* str )
722{
723 Bool neg = False;
724 Long n = 0;
725 if (*str == '-') { str++; neg = True; };
726 while (*str >= '0' && *str <= '9') {
727 n = 10*n + (Long)(*str - '0');
728 str++;
729 }
730 if (neg) n = -n;
731 return n;
732}
733
734
njn25e49d8e72002-09-23 09:36:25 +0000735Long VG_(atoll16) ( Char* str )
sewardja70ca3f2002-05-30 01:22:20 +0000736{
737 Bool neg = False;
738 Long n = 0;
739 if (*str == '-') { str++; neg = True; };
740 while (True) {
741 if (*str >= '0' && *str <= '9') {
njn25e49d8e72002-09-23 09:36:25 +0000742 n = 16*n + (Long)(*str - '0');
sewardja70ca3f2002-05-30 01:22:20 +0000743 }
744 else
njn25e49d8e72002-09-23 09:36:25 +0000745 if (*str >= 'A' && *str <= 'F') {
746 n = 16*n + (Long)((*str - 'A') + 10);
sewardja70ca3f2002-05-30 01:22:20 +0000747 }
748 else
njn25e49d8e72002-09-23 09:36:25 +0000749 if (*str >= 'a' && *str <= 'f') {
750 n = 16*n + (Long)((*str - 'a') + 10);
751 }
752 else {
753 break;
754 }
755 str++;
756 }
757 if (neg) n = -n;
758 return n;
759}
760
761Long VG_(atoll36) ( UInt base, Char* str )
762{
763 Bool neg = False;
764 Long n = 0;
765 vg_assert(base >= 2 && base <= 36);
766 if (*str == '-') { str++; neg = True; };
767 while (True) {
768 if (*str >= '0' && *str <=('9' - (10 - base))) {
769 n = base*n + (Long)(*str - '0');
770 }
771 else
772 if (base > 10 && *str >= 'A' && *str <= ('Z' - (36 - base))) {
773 n = base*n + (Long)((*str - 'A') + 10);
774 }
775 else
776 if (base > 10 && *str >= 'a' && *str <= ('z' - (36 - base))) {
777 n = base*n + (Long)((*str - 'a') + 10);
sewardja70ca3f2002-05-30 01:22:20 +0000778 }
779 else {
780 break;
781 }
782 str++;
783 }
784 if (neg) n = -n;
785 return n;
786}
787
788
sewardjde4a1d02002-03-22 01:27:54 +0000789Char* VG_(strcat) ( Char* dest, const Char* src )
790{
791 Char* dest_orig = dest;
792 while (*dest) dest++;
793 while (*src) *dest++ = *src++;
794 *dest = 0;
795 return dest_orig;
796}
797
798
799Char* VG_(strncat) ( Char* dest, const Char* src, Int n )
800{
801 Char* dest_orig = dest;
802 while (*dest) dest++;
803 while (*src && n > 0) { *dest++ = *src++; n--; }
804 *dest = 0;
805 return dest_orig;
806}
807
808
809Char* VG_(strpbrk) ( const Char* s, const Char* accept )
810{
811 const Char* a;
812 while (*s) {
813 a = accept;
814 while (*a)
815 if (*a++ == *s)
816 return (Char *) s;
817 s++;
818 }
819 return NULL;
820}
821
822
823Char* VG_(strcpy) ( Char* dest, const Char* src )
824{
825 Char* dest_orig = dest;
826 while (*src) *dest++ = *src++;
827 *dest = 0;
828 return dest_orig;
829}
830
831
832/* Copy bytes, not overrunning the end of dest and always ensuring
833 zero termination. */
834void VG_(strncpy_safely) ( Char* dest, const Char* src, Int ndest )
835{
836 Int i;
837 vg_assert(ndest > 0);
838 i = 0;
839 dest[i] = 0;
840 while (True) {
841 if (src[i] == 0) return;
842 if (i >= ndest-1) return;
843 dest[i] = src[i];
844 i++;
845 dest[i] = 0;
846 }
847}
848
849
njn25e49d8e72002-09-23 09:36:25 +0000850Char* VG_(strncpy) ( Char* dest, const Char* src, Int ndest )
sewardjde4a1d02002-03-22 01:27:54 +0000851{
njn25e49d8e72002-09-23 09:36:25 +0000852 Int i = 0;
853 while (True) {
854 if (i >= ndest) return dest; /* reached limit */
855 dest[i] = src[i];
856 if (src[i++] == 0) {
857 /* reached NUL; pad rest with zeroes as required */
858 while (i < ndest) dest[i++] = 0;
859 return dest;
860 }
861 }
sewardjde4a1d02002-03-22 01:27:54 +0000862}
863
864
865Int VG_(strcmp) ( const Char* s1, const Char* s2 )
866{
867 while (True) {
868 if (*s1 == 0 && *s2 == 0) return 0;
869 if (*s1 == 0) return -1;
870 if (*s2 == 0) return 1;
871
872 if (*(UChar*)s1 < *(UChar*)s2) return -1;
873 if (*(UChar*)s1 > *(UChar*)s2) return 1;
874
875 s1++; s2++;
876 }
877}
878
879
880Int VG_(strcmp_ws) ( const Char* s1, const Char* s2 )
881{
882 while (True) {
883 if (VG_(isspace)(*s1) && VG_(isspace)(*s2)) return 0;
884 if (VG_(isspace)(*s1)) return -1;
885 if (VG_(isspace)(*s2)) return 1;
886
887 if (*(UChar*)s1 < *(UChar*)s2) return -1;
888 if (*(UChar*)s1 > *(UChar*)s2) return 1;
889
890 s1++; s2++;
891 }
892}
893
894
895Int VG_(strncmp) ( const Char* s1, const Char* s2, Int nmax )
896{
897 Int n = 0;
898 while (True) {
899 if (n >= nmax) return 0;
900 if (*s1 == 0 && *s2 == 0) return 0;
901 if (*s1 == 0) return -1;
902 if (*s2 == 0) return 1;
903
904 if (*(UChar*)s1 < *(UChar*)s2) return -1;
905 if (*(UChar*)s1 > *(UChar*)s2) return 1;
906
907 s1++; s2++; n++;
908 }
909}
910
911
912Int VG_(strncmp_ws) ( const Char* s1, const Char* s2, Int nmax )
913{
914 Int n = 0;
915 while (True) {
916 if (n >= nmax) return 0;
917 if (VG_(isspace)(*s1) && VG_(isspace)(*s2)) return 0;
918 if (VG_(isspace)(*s1)) return -1;
919 if (VG_(isspace)(*s2)) return 1;
920
921 if (*(UChar*)s1 < *(UChar*)s2) return -1;
922 if (*(UChar*)s1 > *(UChar*)s2) return 1;
923
924 s1++; s2++; n++;
925 }
926}
927
928
929Char* VG_(strstr) ( const Char* haystack, Char* needle )
930{
sewardj3984b852002-05-12 03:00:17 +0000931 Int n;
932 if (haystack == NULL)
933 return NULL;
934 n = VG_(strlen)(needle);
sewardjde4a1d02002-03-22 01:27:54 +0000935 while (True) {
936 if (haystack[0] == 0)
937 return NULL;
938 if (VG_(strncmp)(haystack, needle, n) == 0)
939 return (Char*)haystack;
940 haystack++;
941 }
942}
943
944
945Char* VG_(strchr) ( const Char* s, Char c )
946{
947 while (True) {
948 if (*s == c) return (Char*)s;
949 if (*s == 0) return NULL;
950 s++;
951 }
952}
953
954
sewardj7ab2aca2002-10-20 19:40:32 +0000955void* VG_(memcpy) ( void *dest, const void *src, Int sz )
956{
957 const Char *s = (const Char *)src;
958 Char *d = (Char *)dest;
959 vg_assert(sz >= 0);
960
961 while (sz--)
962 *d++ = *s++;
963
964 return dest;
965}
966
967
968void* VG_(memset) ( void *dest, Int c, Int sz )
969{
970 Char *d = (Char *)dest;
971 vg_assert(sz >= 0);
972
973 while (sz--)
974 *d++ = c;
975
976 return dest;
977}
978
979
sewardjde4a1d02002-03-22 01:27:54 +0000980Char VG_(toupper) ( Char c )
981{
982 if (c >= 'a' && c <= 'z')
983 return c + ('A' - 'a');
984 else
985 return c;
986}
987
988
njn25e49d8e72002-09-23 09:36:25 +0000989/* Inline just for the wrapper VG_(strdup) below */
990__inline__ Char* VG_(arena_strdup) ( ArenaId aid, const Char* s )
sewardjde4a1d02002-03-22 01:27:54 +0000991{
njn25e49d8e72002-09-23 09:36:25 +0000992 Int i;
993 Int len = VG_(strlen)(s) + 1;
994 Char* res = VG_(arena_malloc) (aid, len);
995 for (i = 0; i < len; i++)
996 res[i] = s[i];
997 return res;
sewardjde4a1d02002-03-22 01:27:54 +0000998}
999
njn25e49d8e72002-09-23 09:36:25 +00001000/* Wrapper to avoid exposing skins to ArenaId's */
1001Char* VG_(strdup) ( const Char* s )
1002{
1003 return VG_(arena_strdup) ( VG_AR_SKIN, s );
1004}
sewardjde4a1d02002-03-22 01:27:54 +00001005
1006/* ---------------------------------------------------------------------
1007 A simple string matching routine, purloined from Hugs98.
1008 `*' matches any sequence of zero or more characters
1009 `?' matches any single character exactly
1010 `\c' matches the character c only (ignoring special chars)
1011 c matches the character c only
1012 ------------------------------------------------------------------ */
1013
1014/* Keep track of recursion depth. */
1015static Int recDepth;
1016
njn4ba5a792002-09-30 10:23:54 +00001017static Bool string_match_wrk ( Char* pat, Char* str )
sewardjde4a1d02002-03-22 01:27:54 +00001018{
sewardjcad5c212002-05-16 23:16:13 +00001019 vg_assert(recDepth >= 0 && recDepth < 250);
sewardjde4a1d02002-03-22 01:27:54 +00001020 recDepth++;
1021 for (;;) {
1022 switch (*pat) {
1023 case '\0' : return (*str=='\0');
1024 case '*' : do {
njn4ba5a792002-09-30 10:23:54 +00001025 if (string_match_wrk(pat+1,str)) {
sewardjde4a1d02002-03-22 01:27:54 +00001026 recDepth--;
1027 return True;
1028 }
1029 } while (*str++);
1030 recDepth--;
1031 return False;
1032 case '?' : if (*str++=='\0') {
1033 recDepth--;
1034 return False;
1035 }
1036 pat++;
1037 break;
1038 case '\\' : if (*++pat == '\0') {
1039 recDepth--;
1040 return False; /* spurious trailing \ in pattern */
1041 }
1042 /* falls through to ... */
1043 default : if (*pat++ != *str++) {
1044 recDepth--;
1045 return False;
1046 }
1047 break;
1048 }
1049 }
1050}
1051
njn4ba5a792002-09-30 10:23:54 +00001052Bool VG_(string_match) ( Char* pat, Char* str )
sewardjde4a1d02002-03-22 01:27:54 +00001053{
1054 Bool b;
1055 recDepth = 0;
njn4ba5a792002-09-30 10:23:54 +00001056 b = string_match_wrk ( pat, str );
sewardjde4a1d02002-03-22 01:27:54 +00001057 /*
1058 VG_(printf)("%s %s %s\n",
1059 b?"TRUE ":"FALSE", pat, str);
1060 */
1061 return b;
1062}
1063
1064
1065/* ---------------------------------------------------------------------
1066 Assertery.
1067 ------------------------------------------------------------------ */
1068
njne427a662002-10-02 11:08:25 +00001069__attribute__ ((noreturn))
1070static void report_and_quit ( Char* report )
1071{
1072 VG_(pp_sched_status)();
1073 VG_(printf)("Please report this bug to: %s\n\n", report);
1074 VG_(shutdown_logging)();
1075 VG_(exit)(1);
1076}
1077
1078__attribute__ ((noreturn))
1079static void assert_fail ( Char* expr, Char* name, Char* report,
1080 Char* file, Int line, Char* fn )
sewardjde4a1d02002-03-22 01:27:54 +00001081{
sewardj018f7622002-05-15 21:13:39 +00001082 static Bool entered = False;
1083 if (entered)
1084 VG_(exit)(2);
1085 entered = True;
sewardjde4a1d02002-03-22 01:27:54 +00001086 VG_(printf)("\n%s: %s:%d (%s): Assertion `%s' failed.\n",
njne427a662002-10-02 11:08:25 +00001087 name, file, line, fn, expr );
1088 report_and_quit(report);
sewardjde4a1d02002-03-22 01:27:54 +00001089}
1090
njne427a662002-10-02 11:08:25 +00001091void VG_(skin_assert_fail) ( Char* expr, Char* file, Int line, Char* fn )
sewardjde4a1d02002-03-22 01:27:54 +00001092{
njnd04b7c62002-10-03 14:05:52 +00001093 assert_fail(expr, VG_(details).name, VG_(details).bug_reports_to,
njne427a662002-10-02 11:08:25 +00001094 file, line, fn);
1095}
1096
1097void VG_(core_assert_fail) ( Char* expr, Char* file, Int line, Char* fn )
1098{
1099 assert_fail(expr, "valgrind", VG_EMAIL_ADDR, file, line, fn);
1100}
1101
1102__attribute__ ((noreturn))
1103static void panic ( Char* name, Char* report, Char* str )
1104{
1105 VG_(printf)("\n%s: the `impossible' happened:\n %s\n", name, str);
sewardjde4a1d02002-03-22 01:27:54 +00001106 VG_(printf)("Basic block ctr is approximately %llu\n", VG_(bbs_done) );
njne427a662002-10-02 11:08:25 +00001107 report_and_quit(report);
sewardjde4a1d02002-03-22 01:27:54 +00001108}
1109
njne427a662002-10-02 11:08:25 +00001110void VG_(core_panic) ( Char* str )
njn25e49d8e72002-09-23 09:36:25 +00001111{
njne427a662002-10-02 11:08:25 +00001112 panic("valgrind", VG_EMAIL_ADDR, str);
njn25e49d8e72002-09-23 09:36:25 +00001113}
1114
njne427a662002-10-02 11:08:25 +00001115void VG_(skin_panic) ( Char* str )
1116{
njnd04b7c62002-10-03 14:05:52 +00001117 panic(VG_(details).name, VG_(details).bug_reports_to, str);
njne427a662002-10-02 11:08:25 +00001118}
sewardjde4a1d02002-03-22 01:27:54 +00001119
1120/* ---------------------------------------------------------------------
1121 Primitive support for reading files.
1122 ------------------------------------------------------------------ */
1123
1124/* Returns -1 on failure. */
njn25e49d8e72002-09-23 09:36:25 +00001125Int VG_(open) ( const Char* pathname, Int flags, Int mode )
1126{
sewardjde4a1d02002-03-22 01:27:54 +00001127 Int fd;
sewardjde4a1d02002-03-22 01:27:54 +00001128
njn25e49d8e72002-09-23 09:36:25 +00001129 /* (old comment, not sure if it still applies NJN 2002-sep-09) */
sewardjde4a1d02002-03-22 01:27:54 +00001130 /* This gets a segmentation fault if pathname isn't a valid file.
1131 I don't know why. It seems like the call to open is getting
1132 intercepted and messed with by glibc ... */
1133 /* fd = open( pathname, O_RDONLY ); */
1134 /* ... so we go direct to the horse's mouth, which seems to work
1135 ok: */
njn25e49d8e72002-09-23 09:36:25 +00001136 fd = vg_do_syscall3(__NR_open, (UInt)pathname, flags, mode);
njn4f9c9342002-04-29 16:03:24 +00001137 /* VG_(printf)("result = %d\n", fd); */
1138 if (VG_(is_kerror)(fd)) {
1139 fd = -1;
1140 }
1141 return fd;
1142}
sewardjde4a1d02002-03-22 01:27:54 +00001143
1144void VG_(close) ( Int fd )
1145{
1146 vg_do_syscall1(__NR_close, fd);
1147}
1148
1149
1150Int VG_(read) ( Int fd, void* buf, Int count)
1151{
1152 Int res;
1153 /* res = read( fd, buf, count ); */
1154 res = vg_do_syscall3(__NR_read, fd, (UInt)buf, count);
1155 if (VG_(is_kerror)(res)) res = -1;
1156 return res;
1157}
1158
1159Int VG_(write) ( Int fd, void* buf, Int count)
1160{
1161 Int res;
1162 /* res = write( fd, buf, count ); */
1163 res = vg_do_syscall3(__NR_write, fd, (UInt)buf, count);
1164 if (VG_(is_kerror)(res)) res = -1;
1165 return res;
1166}
1167
sewardjb3586202002-05-09 17:38:13 +00001168Int VG_(stat) ( Char* file_name, struct vki_stat* buf )
1169{
1170 Int res;
1171 res = vg_do_syscall2(__NR_stat, (UInt)file_name, (UInt)buf);
njn41557122002-10-14 09:25:37 +00001172 return VG_(is_kerror)(res) ? (-1) : 0;
1173}
1174
1175Int VG_(rename) ( Char* old_name, Char* new_name )
1176{
1177 Int res;
1178 res = vg_do_syscall2(__NR_rename, (UInt)old_name, (UInt)new_name);
1179 return VG_(is_kerror)(res) ? (-1) : 0;
sewardjb3586202002-05-09 17:38:13 +00001180}
1181
njn4aca2d22002-10-04 10:29:38 +00001182Int VG_(unlink) ( Char* file_name )
1183{
1184 Int res;
1185 res = vg_do_syscall1(__NR_unlink, (UInt)file_name);
njn41557122002-10-14 09:25:37 +00001186 return VG_(is_kerror)(res) ? (-1) : 0;
njn4aca2d22002-10-04 10:29:38 +00001187}
1188
sewardjde4a1d02002-03-22 01:27:54 +00001189/* Misc functions looking for a proper home. */
1190
1191/* We do getenv without libc's help by snooping around in
njn25e49d8e72002-09-23 09:36:25 +00001192 VG_(client_envp) as determined at startup time. */
sewardjde4a1d02002-03-22 01:27:54 +00001193Char* VG_(getenv) ( Char* varname )
1194{
1195 Int i, n;
1196 n = VG_(strlen)(varname);
1197 for (i = 0; VG_(client_envp)[i] != NULL; i++) {
1198 Char* s = VG_(client_envp)[i];
1199 if (VG_(strncmp)(varname, s, n) == 0 && s[n] == '=') {
1200 return & s[n+1];
1201 }
1202 }
1203 return NULL;
1204}
1205
sewardj4cf05692002-10-27 20:28:29 +00001206
sewardjde4a1d02002-03-22 01:27:54 +00001207/* You'd be amazed how many places need to know the current pid. */
1208Int VG_(getpid) ( void )
1209{
1210 Int res;
1211 /* res = getpid(); */
1212 res = vg_do_syscall0(__NR_getpid);
1213 return res;
1214}
1215
sewardj4cf05692002-10-27 20:28:29 +00001216Int VG_(getppid) ( void )
1217{
1218 Int res;
1219 res = vg_do_syscall0(__NR_getppid);
1220 return res;
1221}
1222
1223
sewardje6a25242002-04-21 22:03:07 +00001224/* Return -1 if error, else 0. NOTE does not indicate return code of
1225 child! */
1226Int VG_(system) ( Char* cmd )
1227{
1228 Int pid, res;
1229 void* environ[1] = { NULL };
1230 if (cmd == NULL)
1231 return 1;
1232 pid = vg_do_syscall0(__NR_fork);
1233 if (VG_(is_kerror)(pid))
1234 return -1;
1235 if (pid == 0) {
1236 /* child */
1237 Char* argv[4];
1238 argv[0] = "/bin/sh";
1239 argv[1] = "-c";
1240 argv[2] = cmd;
1241 argv[3] = 0;
1242 (void)vg_do_syscall3(__NR_execve,
1243 (UInt)"/bin/sh", (UInt)argv, (UInt)&environ);
1244 /* If we're still alive here, execve failed. */
1245 return -1;
1246 } else {
1247 /* parent */
1248 res = vg_do_syscall3(__NR_waitpid, pid, (UInt)NULL, 0);
1249 if (VG_(is_kerror)(res)) {
1250 return -1;
1251 } else {
1252 return 0;
1253 }
1254 }
1255}
1256
1257
sewardjde4a1d02002-03-22 01:27:54 +00001258/* ---------------------------------------------------------------------
sewardj5f07b662002-04-23 16:52:51 +00001259 Support for a millisecond-granularity counter using RDTSC.
1260 ------------------------------------------------------------------ */
1261
1262static __inline__ ULong do_rdtsc_insn ( void )
1263{
1264 ULong x;
1265 __asm__ volatile (".byte 0x0f, 0x31" : "=A" (x));
1266 return x;
1267}
1268
1269/* 0 = pre-calibration, 1 = calibration, 2 = running */
1270static Int rdtsc_calibration_state = 0;
1271static ULong rdtsc_ticks_per_millisecond = 0; /* invalid value */
1272
1273static struct vki_timeval rdtsc_cal_start_timeval;
1274static struct vki_timeval rdtsc_cal_end_timeval;
1275
1276static ULong rdtsc_cal_start_raw;
1277static ULong rdtsc_cal_end_raw;
1278
1279UInt VG_(read_millisecond_timer) ( void )
1280{
1281 ULong rdtsc_now;
1282 vg_assert(rdtsc_calibration_state == 2);
1283 rdtsc_now = do_rdtsc_insn();
1284 vg_assert(rdtsc_now > rdtsc_cal_end_raw);
1285 rdtsc_now -= rdtsc_cal_end_raw;
1286 rdtsc_now /= rdtsc_ticks_per_millisecond;
1287 return (UInt)rdtsc_now;
1288}
1289
1290
1291void VG_(start_rdtsc_calibration) ( void )
1292{
1293 Int res;
1294 vg_assert(rdtsc_calibration_state == 0);
1295 rdtsc_calibration_state = 1;
1296 rdtsc_cal_start_raw = do_rdtsc_insn();
1297 res = vg_do_syscall2(__NR_gettimeofday, (UInt)&rdtsc_cal_start_timeval,
1298 (UInt)NULL);
1299 vg_assert(!VG_(is_kerror)(res));
1300}
1301
1302void VG_(end_rdtsc_calibration) ( void )
1303{
1304 Int res, loops;
1305 ULong cpu_clock_MHZ;
1306 ULong cal_clock_ticks;
1307 ULong cal_wallclock_microseconds;
1308 ULong wallclock_start_microseconds;
1309 ULong wallclock_end_microseconds;
1310 struct vki_timespec req;
1311 struct vki_timespec rem;
1312
1313 vg_assert(rdtsc_calibration_state == 1);
1314 rdtsc_calibration_state = 2;
1315
1316 /* Try and delay for 20 milliseconds, so that we can at least have
1317 some minimum level of accuracy. */
1318 req.tv_sec = 0;
1319 req.tv_nsec = 20 * 1000 * 1000;
1320 loops = 0;
1321 while (True) {
1322 res = VG_(nanosleep)(&req, &rem);
1323 vg_assert(res == 0 /*ok*/ || res == 1 /*interrupted*/);
1324 if (res == 0)
1325 break;
1326 if (rem.tv_sec == 0 && rem.tv_nsec == 0)
1327 break;
1328 req = rem;
1329 loops++;
1330 if (loops > 100)
njne427a662002-10-02 11:08:25 +00001331 VG_(core_panic)("calibration nanosleep loop failed?!");
sewardj5f07b662002-04-23 16:52:51 +00001332 }
1333
1334 /* Now read both timers, and do the Math. */
1335 rdtsc_cal_end_raw = do_rdtsc_insn();
1336 res = vg_do_syscall2(__NR_gettimeofday, (UInt)&rdtsc_cal_end_timeval,
1337 (UInt)NULL);
1338
1339 vg_assert(rdtsc_cal_end_raw > rdtsc_cal_start_raw);
1340 cal_clock_ticks = rdtsc_cal_end_raw - rdtsc_cal_start_raw;
1341
1342 wallclock_start_microseconds
1343 = (1000000ULL * (ULong)(rdtsc_cal_start_timeval.tv_sec))
1344 + (ULong)(rdtsc_cal_start_timeval.tv_usec);
1345 wallclock_end_microseconds
1346 = (1000000ULL * (ULong)(rdtsc_cal_end_timeval.tv_sec))
1347 + (ULong)(rdtsc_cal_end_timeval.tv_usec);
1348 vg_assert(wallclock_end_microseconds > wallclock_start_microseconds);
1349 cal_wallclock_microseconds
1350 = wallclock_end_microseconds - wallclock_start_microseconds;
1351
1352 /* Since we just nanoslept for 20 ms ... */
1353 vg_assert(cal_wallclock_microseconds >= 20000);
1354
1355 /* Now we know (roughly) that cal_clock_ticks on RDTSC take
1356 cal_wallclock_microseconds elapsed time. Calculate the RDTSC
1357 ticks-per-millisecond value. */
1358 if (0)
1359 VG_(printf)("%lld ticks in %lld microseconds\n",
1360 cal_clock_ticks, cal_wallclock_microseconds );
1361
1362 rdtsc_ticks_per_millisecond
1363 = cal_clock_ticks / (cal_wallclock_microseconds / 1000ULL);
1364 cpu_clock_MHZ
1365 = (1000ULL * rdtsc_ticks_per_millisecond) / 1000000ULL;
1366 if (VG_(clo_verbosity) >= 1)
1367 VG_(message)(Vg_UserMsg, "Estimated CPU clock rate is %d MHz",
1368 (UInt)cpu_clock_MHZ);
sewardj09c55fd2002-06-13 11:37:41 +00001369 if (cpu_clock_MHZ < 50 || cpu_clock_MHZ > 10000)
njne427a662002-10-02 11:08:25 +00001370 VG_(core_panic)("end_rdtsc_calibration: "
sewardj09c55fd2002-06-13 11:37:41 +00001371 "estimated CPU MHz outside range 50 .. 10000");
sewardj5f07b662002-04-23 16:52:51 +00001372 /* Paranoia about division by zero later. */
1373 vg_assert(rdtsc_ticks_per_millisecond != 0);
1374 if (0)
1375 VG_(printf)("ticks per millisecond %llu\n",
1376 rdtsc_ticks_per_millisecond);
1377}
1378
1379
1380
1381/* ---------------------------------------------------------------------
sewardjde4a1d02002-03-22 01:27:54 +00001382 Primitive support for bagging memory via mmap.
1383 ------------------------------------------------------------------ */
1384
sewardje9047952002-06-05 20:28:33 +00001385void* VG_(get_memory_from_mmap) ( Int nBytes, Char* who )
sewardjde4a1d02002-03-22 01:27:54 +00001386{
1387 static UInt tot_alloc = 0;
sewardj7c2020b2002-09-30 22:56:03 +00001388 void* p;
1389 p = VG_(mmap)( 0, nBytes,
1390 VKI_PROT_READ|VKI_PROT_WRITE|VKI_PROT_EXEC,
1391 VKI_MAP_PRIVATE|VKI_MAP_ANONYMOUS, -1, 0 );
sewardjde4a1d02002-03-22 01:27:54 +00001392 if (p != ((void*)(-1))) {
1393 tot_alloc += (UInt)nBytes;
1394 if (0)
sewardje9047952002-06-05 20:28:33 +00001395 VG_(printf)(
1396 "get_memory_from_mmap: %d tot, %d req = %p .. %p, caller %s\n",
1397 tot_alloc, nBytes, p, ((char*)p) + nBytes - 1, who );
sewardjde4a1d02002-03-22 01:27:54 +00001398 return p;
1399 }
sewardj7c2020b2002-09-30 22:56:03 +00001400
njn25e49d8e72002-09-23 09:36:25 +00001401 VG_(printf)("\n");
1402 VG_(printf)("VG_(get_memory_from_mmap): request for %d bytes failed.\n",
sewardjde4a1d02002-03-22 01:27:54 +00001403 nBytes);
njn25e49d8e72002-09-23 09:36:25 +00001404 VG_(printf)("VG_(get_memory_from_mmap): %d bytes already allocated.\n",
1405 tot_alloc);
1406 VG_(printf)("\n");
1407 VG_(printf)("This may mean that you have run out of swap space,\n");
1408 VG_(printf)("since running programs on valgrind increases their memory\n");
1409 VG_(printf)("usage at least 3 times. You might want to use 'top'\n");
1410 VG_(printf)("to determine whether you really have run out of swap.\n");
1411 VG_(printf)("If so, you may be able to work around it by adding a\n");
1412 VG_(printf)("temporary swap file -- this is easier than finding a\n");
1413 VG_(printf)("new swap partition. Go ask your sysadmin(s) [politely!]\n");
1414 VG_(printf)("\n");
1415 VG_(printf)("VG_(get_memory_from_mmap): out of memory! Fatal! Bye!\n");
1416 VG_(printf)("\n");
1417 VG_(exit)(1);
sewardjde4a1d02002-03-22 01:27:54 +00001418}
1419
njn25e49d8e72002-09-23 09:36:25 +00001420/* ---------------------------------------------------------------------
1421 Generally useful...
1422 ------------------------------------------------------------------ */
1423
1424Int VG_(log2) ( Int x )
1425{
1426 Int i;
1427 /* Any more than 32 and we overflow anyway... */
1428 for (i = 0; i < 32; i++) {
1429 if (1 << i == x) return i;
1430 }
1431 return -1;
1432}
1433
1434
sewardj73cf3bc2002-11-03 03:20:15 +00001435/* ---------------------------------------------------------------------
1436 Gruesome hackery for connecting to a logging server over the network.
1437 This is all very Linux-kernel specific.
1438 ------------------------------------------------------------------ */
1439
1440/* Various needed constants from the kernel iface (2.4),
1441 /usr/src/linux-2.4.9-31 */
1442
1443/* kernel, ./include/linux/net.h */
1444#define SYS_SOCKET 1 /* sys_socket(2) */
1445#define SYS_CONNECT 3 /* sys_connect(2) */
1446#define SYS_SEND 9 /* sys_send(2) */
1447
1448typedef UInt __u32;
1449
1450/* Internet address. */
1451struct vki_in_addr {
1452 __u32 s_addr;
1453};
1454
1455/* kernel, include/linux/socket.h */
1456typedef unsigned short vki_sa_family_t;
1457#define AF_INET 2 /* Internet IP Protocol */
1458
1459/* kernel, ./include/asm-i386/socket.h */
1460#define SOCK_STREAM 1 /* stream (connection) socket */
1461
1462/* kernel, /usr/src/linux-2.4.9-31/linux/include/in.h */
1463/* Structure describing an Internet (IP) socket address. */
1464#define __SOCK_SIZE__ 16 /* sizeof(struct sockaddr) */
1465struct vki_sockaddr_in {
1466 vki_sa_family_t sin_family; /* Address family */
1467 unsigned short int sin_port; /* Port number */
1468 struct vki_in_addr sin_addr; /* Internet address */
1469
1470 /* Pad to size of `struct sockaddr'. */
1471 unsigned char __pad[__SOCK_SIZE__ - sizeof(short int) -
1472 sizeof(unsigned short int) -
1473 sizeof(struct vki_in_addr)];
1474};
1475
1476
1477static
1478Int parse_inet_addr_and_port ( UChar* str, UInt* ip_addr, UShort* port );
1479
1480static
1481Int my_socket ( Int domain, Int type, Int protocol );
1482
1483static
1484Int my_connect ( Int sockfd, struct vki_sockaddr_in* serv_addr,
1485 Int addrlen );
1486
1487static
1488UInt my_htonl ( UInt x )
1489{
1490 return
1491 (((x >> 24) & 0xFF) << 0) | (((x >> 16) & 0xFF) << 8)
1492 | (((x >> 8) & 0xFF) << 16) | (((x >> 0) & 0xFF) << 24);
1493}
1494
1495static
1496UShort my_htons ( UShort x )
1497{
1498 return
1499 (((x >> 8) & 0xFF) << 0) | (((x >> 0) & 0xFF) << 8);
1500}
1501
1502
1503/* The main function.
1504
1505 Supplied string contains either an ip address "192.168.0.1" or
1506 an ip address and port pair, "192.168.0.1:1500". Parse these,
1507 and return:
1508 -1 if there is a parse error
1509 -2 if no parse error, but specified host:port cannot be opened
1510 the relevant file (socket) descriptor, otherwise.
1511 If no socket is specified, VG_CLO_DEFAULT_LOGSOCKET is used.
1512*/
1513Int VG_(connect_via_socket)( UChar* str )
1514{
1515 Int sd, res;
1516 struct vki_sockaddr_in servAddr;
1517 UInt ip = 0;
1518 UShort port = VG_CLO_DEFAULT_LOGSOCKET;
1519 Bool ok = parse_inet_addr_and_port(str, &ip, &port);
1520 if (!ok)
1521 return -1;
1522
1523 if (0)
1524 VG_(printf)("ip = %d.%d.%d.%d, port %d\n",
1525 (ip >> 24) & 0xFF, (ip >> 16) & 0xFF,
1526 (ip >> 8) & 0xFF, ip & 0xFF,
1527 (UInt)port );
1528
1529 servAddr.sin_family = AF_INET;
1530 servAddr.sin_addr.s_addr = my_htonl(ip);
1531 servAddr.sin_port = my_htons(port);
1532
1533 /* create socket */
1534 sd = my_socket(AF_INET, SOCK_STREAM, 0 /* IPPROTO_IP ? */);
1535 if (sd < 0) {
1536 /* this shouldn't happen ... nevertheless */
1537 return -2;
1538 }
1539
1540 /* connect to server */
1541 res = my_connect(sd, (struct vki_sockaddr_in *) &servAddr,
1542 sizeof(servAddr));
1543 if (res < 0) {
1544 /* connection failed */
1545 return -2;
1546 }
1547
1548 return sd;
1549}
1550
1551
1552/* Let d = one or more digits. Accept either:
1553 d.d.d.d or d.d.d.d:d
1554*/
1555Int parse_inet_addr_and_port ( UChar* str, UInt* ip_addr, UShort* port )
1556{
1557# define GET_CH ((*str) ? (*str++) : 0)
1558 UInt ipa, i, j, c, any;
1559 ipa = 0;
1560 for (i = 0; i < 4; i++) {
1561 j = 0;
1562 any = 0;
1563 while (1) {
1564 c = GET_CH;
1565 if (c < '0' || c > '9') break;
1566 j = 10 * j + (int)(c - '0');
1567 any = 1;
1568 }
1569 if (any == 0 || j > 255) goto syntaxerr;
1570 ipa = (ipa << 8) + j;
1571 if (i <= 2 && c != '.') goto syntaxerr;
1572 }
1573 if (c == 0 || c == ':')
1574 *ip_addr = ipa;
1575 if (c == 0) goto ok;
1576 if (c != ':') goto syntaxerr;
1577 j = 0;
1578 any = 0;
1579 while (1) {
1580 c = GET_CH;
1581 if (c < '0' || c > '9') break;
1582 j = j * 10 + (int)(c - '0');
1583 any = 1;
1584 if (j > 65535) goto syntaxerr;
1585 }
1586 if (any == 0 || c != 0) goto syntaxerr;
1587 *port = (UShort)j;
1588 ok:
1589 return 1;
1590 syntaxerr:
1591 return 0;
1592# undef GET_CH
1593}
1594
1595
1596static
1597Int my_socket ( Int domain, Int type, Int protocol )
1598{
1599 Int res;
1600 UInt args[3];
1601 args[0] = domain;
1602 args[1] = type;
1603 args[2] = protocol;
1604 res = vg_do_syscall2(__NR_socketcall, SYS_SOCKET, (UInt)&args);
1605 if (VG_(is_kerror)(res))
1606 res = -1;
1607 return res;
1608}
1609
1610static
1611Int my_connect ( Int sockfd, struct vki_sockaddr_in* serv_addr,
1612 Int addrlen )
1613{
1614 Int res;
1615 UInt args[3];
1616 args[0] = sockfd;
1617 args[1] = (UInt)serv_addr;
1618 args[2] = addrlen;
1619 res = vg_do_syscall2(__NR_socketcall, SYS_CONNECT, (UInt)&args);
1620 if (VG_(is_kerror)(res))
1621 res = -1;
1622 return res;
1623}
1624
1625Int VG_(write_socket)( Int sd, void *msg, Int count )
1626{
1627 /* This is actually send(). */
1628 Int flags = 0;
1629 Int res;
1630 UInt args[4];
1631 args[0] = sd;
1632 args[1] = (UInt)msg;
1633 args[2] = count;
1634 args[3] = flags;
1635 res = vg_do_syscall2(__NR_socketcall, SYS_SEND, (UInt)&args);
1636 if (VG_(is_kerror)(res))
1637 res = -1;
1638 return res;
1639}
1640
sewardjde4a1d02002-03-22 01:27:54 +00001641
1642/*--------------------------------------------------------------------*/
1643/*--- end vg_mylibc.c ---*/
1644/*--------------------------------------------------------------------*/