]> Git Repo - qemu.git/blame - osdep.c
shared pages memory allocation
[qemu.git] / osdep.c
CommitLineData
ea88812f
FB
1/*
2 * QEMU low level functions
3 *
4 * Copyright (c) 2003 Fabrice Bellard
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22 * THE SOFTWARE.
23 */
24#include <stdlib.h>
25#include <stdio.h>
26#include <stdarg.h>
27#include <string.h>
ea88812f
FB
28#include <errno.h>
29#include <unistd.h>
30
31#include "cpu.h"
32
33#if defined(__i386__) && !defined(CONFIG_SOFTMMU) && !defined(CONFIG_USER_ONLY)
34
67b915a5
FB
35#include <sys/mman.h>
36#include <sys/ipc.h>
37
ea88812f
FB
38/* When not using soft mmu, libc independant functions are needed for
39 the CPU core because it needs to use alternates stacks and
40 libc/thread incompatibles settings */
41
42#include <linux/unistd.h>
43
44#define QEMU_SYSCALL0(name) \
45{ \
46long __res; \
47__asm__ volatile ("int $0x80" \
48 : "=a" (__res) \
49 : "0" (__NR_##name)); \
50return __res; \
51}
52
53#define QEMU_SYSCALL1(name,arg1) \
54{ \
55long __res; \
56__asm__ volatile ("int $0x80" \
57 : "=a" (__res) \
58 : "0" (__NR_##name),"b" ((long)(arg1))); \
59return __res; \
60}
61
62#define QEMU_SYSCALL2(name,arg1,arg2) \
63{ \
64long __res; \
65__asm__ volatile ("int $0x80" \
66 : "=a" (__res) \
67 : "0" (__NR_##name),"b" ((long)(arg1)),"c" ((long)(arg2))); \
68return __res; \
69}
70
71#define QEMU_SYSCALL3(name,arg1,arg2,arg3) \
72{ \
73long __res; \
74__asm__ volatile ("int $0x80" \
75 : "=a" (__res) \
76 : "0" (__NR_##name),"b" ((long)(arg1)),"c" ((long)(arg2)), \
77 "d" ((long)(arg3))); \
78return __res; \
79}
80
81#define QEMU_SYSCALL4(name,arg1,arg2,arg3,arg4) \
82{ \
83long __res; \
84__asm__ volatile ("int $0x80" \
85 : "=a" (__res) \
86 : "0" (__NR_##name),"b" ((long)(arg1)),"c" ((long)(arg2)), \
87 "d" ((long)(arg3)),"S" ((long)(arg4))); \
88return __res; \
89}
90
91#define QEMU_SYSCALL5(name,arg1,arg2,arg3,arg4,arg5) \
92{ \
93long __res; \
94__asm__ volatile ("int $0x80" \
95 : "=a" (__res) \
96 : "0" (__NR_##name),"b" ((long)(arg1)),"c" ((long)(arg2)), \
97 "d" ((long)(arg3)),"S" ((long)(arg4)),"D" ((long)(arg5))); \
98return __res; \
99}
100
101#define QEMU_SYSCALL6(name,arg1,arg2,arg3,arg4,arg5,arg6) \
102{ \
103long __res; \
104__asm__ volatile ("push %%ebp ; movl %%eax,%%ebp ; movl %1,%%eax ; int $0x80 ; pop %%ebp" \
105 : "=a" (__res) \
106 : "i" (__NR_##name),"b" ((long)(arg1)),"c" ((long)(arg2)), \
107 "d" ((long)(arg3)),"S" ((long)(arg4)),"D" ((long)(arg5)), \
108 "0" ((long)(arg6))); \
109return __res; \
110}
111
112int qemu_write(int fd, const void *buf, size_t n)
113{
114 QEMU_SYSCALL3(write, fd, buf, n);
115}
116
117
118
119/****************************************************************/
120/* shmat replacement */
121
122int qemu_ipc(int call, unsigned long first,
123 unsigned long second, unsigned long third,
124 void *ptr, unsigned long fifth)
125{
126 QEMU_SYSCALL6(ipc, call, first, second, third, ptr, fifth);
127}
128
129#define SHMAT 21
130
131/* we must define shmat so that a specific address will be used when
132 mapping the X11 ximage */
133void *shmat(int shmid, const void *shmaddr, int shmflg)
134{
135 void *ptr;
136 int ret;
137 /* we give an address in the right memory area */
138 if (!shmaddr)
139 shmaddr = get_mmap_addr(8192 * 1024);
140 ret = qemu_ipc(SHMAT, shmid, shmflg, (unsigned long)&ptr, (void *)shmaddr, 0);
141 if (ret < 0)
142 return NULL;
143 return ptr;
144}
145
d2bfb39a
FB
146/****************************************************************/
147/* sigaction bypassing the threads */
148
149static int kernel_sigaction(int signum, const struct qemu_sigaction *act,
150 struct qemu_sigaction *oldact,
151 int sigsetsize)
152{
153 QEMU_SYSCALL4(rt_sigaction, signum, act, oldact, sigsetsize);
154}
155
156int qemu_sigaction(int signum, const struct qemu_sigaction *act,
157 struct qemu_sigaction *oldact)
158{
159 return kernel_sigaction(signum, act, oldact, 8);
160}
161
ea88812f
FB
162/****************************************************************/
163/* memory allocation */
164
165//#define DEBUG_MALLOC
166
167#define MALLOC_BASE 0xab000000
168#define PHYS_RAM_BASE 0xac000000
169
170#define MALLOC_ALIGN 16
171#define BLOCK_HEADER_SIZE 16
172
173typedef struct MemoryBlock {
174 struct MemoryBlock *next;
175 unsigned long size; /* size of block, including header */
176} MemoryBlock;
177
178static MemoryBlock *first_free_block;
179static unsigned long malloc_addr = MALLOC_BASE;
180
181static void *malloc_get_space(size_t size)
182{
183 void *ptr;
184 size = TARGET_PAGE_ALIGN(size);
185 ptr = mmap((void *)malloc_addr, size,
186 PROT_WRITE | PROT_READ,
187 MAP_PRIVATE | MAP_FIXED | MAP_ANON, -1, 0);
188 if (ptr == MAP_FAILED)
189 return NULL;
190 malloc_addr += size;
191 return ptr;
192}
193
194void *qemu_malloc(size_t size)
195{
196 MemoryBlock *mb, *mb1, **pmb;
197 void *ptr;
198 size_t size1, area_size;
199
200 if (size == 0)
201 return NULL;
202
203 size = (size + BLOCK_HEADER_SIZE + MALLOC_ALIGN - 1) & ~(MALLOC_ALIGN - 1);
204 pmb = &first_free_block;
205 for(;;) {
206 mb = *pmb;
207 if (mb == NULL)
208 break;
209 if (size <= mb->size)
210 goto found;
211 pmb = &mb->next;
212 }
213 /* no big enough blocks found: get new space */
214 area_size = TARGET_PAGE_ALIGN(size);
215 mb = malloc_get_space(area_size);
216 if (!mb)
217 return NULL;
218 size1 = area_size - size;
219 if (size1 > 0) {
220 /* create a new free block */
221 mb1 = (MemoryBlock *)((uint8_t *)mb + size);
222 mb1->next = NULL;
223 mb1->size = size1;
224 *pmb = mb1;
225 }
226 goto the_end;
227 found:
228 /* a free block was found: use it */
229 size1 = mb->size - size;
230 if (size1 > 0) {
231 /* create a new free block */
232 mb1 = (MemoryBlock *)((uint8_t *)mb + size);
233 mb1->next = mb->next;
234 mb1->size = size1;
235 *pmb = mb1;
236 } else {
237 /* suppress the first block */
238 *pmb = mb->next;
239 }
240 the_end:
241 mb->size = size;
242 mb->next = NULL;
243 ptr = ((uint8_t *)mb + BLOCK_HEADER_SIZE);
244#ifdef DEBUG_MALLOC
245 qemu_printf("malloc: size=0x%x ptr=0x%lx\n", size, (unsigned long)ptr);
246#endif
247 return ptr;
248}
249
250void qemu_free(void *ptr)
251{
252 MemoryBlock *mb;
253
57c30724
FB
254 if (!ptr)
255 return;
ea88812f
FB
256 mb = (MemoryBlock *)((uint8_t *)ptr - BLOCK_HEADER_SIZE);
257 mb->next = first_free_block;
258 first_free_block = mb;
259}
260
261/****************************************************************/
262/* virtual memory allocation */
263
264unsigned long mmap_addr = PHYS_RAM_BASE;
265
266void *get_mmap_addr(unsigned long size)
267{
268 unsigned long addr;
269 addr = mmap_addr;
270 mmap_addr += ((size + 4095) & ~4095) + 4096;
271 return (void *)addr;
272}
273
274#else
275
49b470eb
FB
276#include <malloc.h>
277
ea88812f
FB
278int qemu_write(int fd, const void *buf, size_t n)
279{
280 int ret;
281 ret = write(fd, buf, n);
282 if (ret < 0)
283 return -errno;
284 else
285 return ret;
286}
287
288void *get_mmap_addr(unsigned long size)
289{
290 return NULL;
291}
292
293void qemu_free(void *ptr)
294{
295 free(ptr);
296}
297
298void *qemu_malloc(size_t size)
299{
300 return malloc(size);
301}
302
49b470eb
FB
303#if defined(USE_KQEMU)
304
305#include <sys/mman.h>
306#include <fcntl.h>
307
308void *qemu_vmalloc(size_t size)
309{
310 static int phys_ram_fd = -1;
311 static int phys_ram_size = 0;
312 const char *tmpdir;
313 char phys_ram_file[1024];
314 void *ptr;
315
316 if (phys_ram_fd < 0) {
317 tmpdir = getenv("QEMU_TMPDIR");
318 if (!tmpdir)
319 tmpdir = "/dev/shm";
320 snprintf(phys_ram_file, sizeof(phys_ram_file), "%s/qemuXXXXXX",
321 tmpdir);
322 if (mkstemp(phys_ram_file) < 0) {
323 fprintf(stderr,
324 "warning: could not create temporary file in '%s'.\n"
325 "Use QEMU_TMPDIR to select a directory in a tmpfs filesystem.\n"
326 "Using '/tmp' as fallback.\n",
327 tmpdir);
328 snprintf(phys_ram_file, sizeof(phys_ram_file), "%s/qemuXXXXXX",
329 "/tmp");
330 if (mkstemp(phys_ram_file) < 0) {
331 fprintf(stderr, "Could not create temporary memory file '%s'\n",
332 phys_ram_file);
333 exit(1);
334 }
335 }
336 phys_ram_fd = open(phys_ram_file, O_CREAT | O_TRUNC | O_RDWR, 0600);
337 if (phys_ram_fd < 0) {
338 fprintf(stderr, "Could not open temporary memory file '%s'\n",
339 phys_ram_file);
340 exit(1);
341 }
342 unlink(phys_ram_file);
343 }
344 size = (size + 4095) & ~4095;
345 ftruncate(phys_ram_fd, phys_ram_size + size);
346 ptr = mmap(NULL,
347 size,
348 PROT_WRITE | PROT_READ, MAP_SHARED,
349 phys_ram_fd, phys_ram_size);
350 if (ptr == MAP_FAILED) {
351 fprintf(stderr, "Could not map physical memory\n");
352 exit(1);
353 }
354 phys_ram_size += size;
355 return ptr;
356}
357
358void qemu_vfree(void *ptr)
359{
360 /* may be useful some day, but currently we do not need to free */
361}
362
363#else
364
365/* alloc shared memory pages */
366void *qemu_vmalloc(size_t size)
367{
368#ifdef _BSD
369 return valloc(size);
370#else
371 return memalign(4096, size);
372#endif
373}
374
375void qemu_vfree(void *ptr)
376{
377 free(ptr);
378}
379
380#endif
381
ea88812f
FB
382#endif
383
07d89866
FB
384void *qemu_mallocz(size_t size)
385{
386 void *ptr;
387 ptr = qemu_malloc(size);
388 if (!ptr)
389 return NULL;
390 memset(ptr, 0, size);
391 return ptr;
392}
393
2571929a
FB
394char *qemu_strdup(const char *str)
395{
396 char *ptr;
397 ptr = qemu_malloc(strlen(str) + 1);
398 if (!ptr)
399 return NULL;
400 strcpy(ptr, str);
401 return ptr;
402}
403
ea88812f
FB
404/****************************************************************/
405/* printf support */
406
407static inline int qemu_isdigit(int c)
408{
409 return c >= '0' && c <= '9';
410}
411
412#define OUTCHAR(c) (buflen > 0? (--buflen, *buf++ = (c)): 0)
413
414/* from BSD ppp sources */
415int qemu_vsnprintf(char *buf, int buflen, const char *fmt, va_list args)
416{
417 int c, i, n;
418 int width, prec, fillch;
419 int base, len, neg;
420 unsigned long val = 0;
421 const char *f;
422 char *str, *buf0;
423 char num[32];
424 static const char hexchars[] = "0123456789abcdef";
425
426 buf0 = buf;
427 --buflen;
428 while (buflen > 0) {
429 for (f = fmt; *f != '%' && *f != 0; ++f)
430 ;
431 if (f > fmt) {
432 len = f - fmt;
433 if (len > buflen)
434 len = buflen;
435 memcpy(buf, fmt, len);
436 buf += len;
437 buflen -= len;
438 fmt = f;
439 }
440 if (*fmt == 0)
441 break;
442 c = *++fmt;
443 width = prec = 0;
444 fillch = ' ';
445 if (c == '0') {
446 fillch = '0';
447 c = *++fmt;
448 }
449 if (c == '*') {
450 width = va_arg(args, int);
451 c = *++fmt;
452 } else {
453 while (qemu_isdigit(c)) {
454 width = width * 10 + c - '0';
455 c = *++fmt;
456 }
457 }
458 if (c == '.') {
459 c = *++fmt;
460 if (c == '*') {
461 prec = va_arg(args, int);
462 c = *++fmt;
463 } else {
464 while (qemu_isdigit(c)) {
465 prec = prec * 10 + c - '0';
466 c = *++fmt;
467 }
468 }
469 }
470 /* modifiers */
471 switch(c) {
472 case 'l':
473 c = *++fmt;
474 break;
475 default:
476 break;
477 }
478 str = 0;
479 base = 0;
480 neg = 0;
481 ++fmt;
482 switch (c) {
483 case 'd':
484 i = va_arg(args, int);
485 if (i < 0) {
486 neg = 1;
487 val = -i;
488 } else
489 val = i;
490 base = 10;
491 break;
492 case 'o':
493 val = va_arg(args, unsigned int);
494 base = 8;
495 break;
496 case 'x':
497 case 'X':
498 val = va_arg(args, unsigned int);
499 base = 16;
500 break;
501 case 'p':
502 val = (unsigned long) va_arg(args, void *);
503 base = 16;
504 neg = 2;
505 break;
506 case 's':
507 str = va_arg(args, char *);
508 break;
509 case 'c':
510 num[0] = va_arg(args, int);
511 num[1] = 0;
512 str = num;
513 break;
514 default:
515 *buf++ = '%';
516 if (c != '%')
517 --fmt; /* so %z outputs %z etc. */
518 --buflen;
519 continue;
520 }
521 if (base != 0) {
522 str = num + sizeof(num);
523 *--str = 0;
524 while (str > num + neg) {
525 *--str = hexchars[val % base];
526 val = val / base;
527 if (--prec <= 0 && val == 0)
528 break;
529 }
530 switch (neg) {
531 case 1:
532 *--str = '-';
533 break;
534 case 2:
535 *--str = 'x';
536 *--str = '0';
537 break;
538 }
539 len = num + sizeof(num) - 1 - str;
540 } else {
541 len = strlen(str);
542 if (prec > 0 && len > prec)
543 len = prec;
544 }
545 if (width > 0) {
546 if (width > buflen)
547 width = buflen;
548 if ((n = width - len) > 0) {
549 buflen -= n;
550 for (; n > 0; --n)
551 *buf++ = fillch;
552 }
553 }
554 if (len > buflen)
555 len = buflen;
556 memcpy(buf, str, len);
557 buf += len;
558 buflen -= len;
559 }
560 *buf = 0;
561 return buf - buf0;
562}
563
564void qemu_vprintf(const char *fmt, va_list ap)
565{
566 char buf[1024];
567 int len;
568
569 len = qemu_vsnprintf(buf, sizeof(buf), fmt, ap);
570 qemu_write(1, buf, len);
571}
572
573void qemu_printf(const char *fmt, ...)
574{
575 va_list ap;
576 va_start(ap, fmt);
577 qemu_vprintf(fmt, ap);
578 va_end(ap);
579}
580
This page took 0.122709 seconds and 4 git commands to generate.