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CommitLineData
a4f81979
FB
1/*
2 * Arm "Angel" semihosting syscalls
5fafdf24 3 *
8e71621f
PB
4 * Copyright (c) 2005, 2007 CodeSourcery.
5 * Written by Paul Brook.
a4f81979
FB
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
8167ee88 18 * along with this program; if not, see <http://www.gnu.org/licenses/>.
a4f81979
FB
19 */
20
74c21bd0 21#include "qemu/osdep.h"
a4f81979 22
8e71621f 23#include "cpu.h"
a59d31a1 24#include "exec/semihost.h"
8e71621f 25#ifdef CONFIG_USER_ONLY
a4f81979
FB
26#include "qemu.h"
27
28#define ARM_ANGEL_HEAP_SIZE (128 * 1024 * 1024)
8e71621f 29#else
87ecb68b 30#include "qemu-common.h"
022c62cb 31#include "exec/gdbstub.h"
bd2be150 32#include "hw/arm/arm.h"
f348b6d1 33#include "qemu/cutils.h"
8e71621f 34#endif
a4f81979 35
3881725c
SW
36#define TARGET_SYS_OPEN 0x01
37#define TARGET_SYS_CLOSE 0x02
38#define TARGET_SYS_WRITEC 0x03
39#define TARGET_SYS_WRITE0 0x04
40#define TARGET_SYS_WRITE 0x05
41#define TARGET_SYS_READ 0x06
42#define TARGET_SYS_READC 0x07
43#define TARGET_SYS_ISTTY 0x09
44#define TARGET_SYS_SEEK 0x0a
45#define TARGET_SYS_FLEN 0x0c
46#define TARGET_SYS_TMPNAM 0x0d
47#define TARGET_SYS_REMOVE 0x0e
48#define TARGET_SYS_RENAME 0x0f
49#define TARGET_SYS_CLOCK 0x10
50#define TARGET_SYS_TIME 0x11
51#define TARGET_SYS_SYSTEM 0x12
52#define TARGET_SYS_ERRNO 0x13
53#define TARGET_SYS_GET_CMDLINE 0x15
54#define TARGET_SYS_HEAPINFO 0x16
55#define TARGET_SYS_EXIT 0x18
e9ebfbfc 56#define TARGET_SYS_SYNCCACHE 0x19
a4f81979 57
1ecc3a2d
LI
58/* ADP_Stopped_ApplicationExit is used for exit(0),
59 * anything else is implemented as exit(1) */
60#define ADP_Stopped_ApplicationExit (0x20026)
61
a4f81979
FB
62#ifndef O_BINARY
63#define O_BINARY 0
64#endif
65
a2d1ebaf
PB
66#define GDB_O_RDONLY 0x000
67#define GDB_O_WRONLY 0x001
68#define GDB_O_RDWR 0x002
69#define GDB_O_APPEND 0x008
70#define GDB_O_CREAT 0x200
71#define GDB_O_TRUNC 0x400
72#define GDB_O_BINARY 0
73
74static int gdb_open_modeflags[12] = {
75 GDB_O_RDONLY,
76 GDB_O_RDONLY | GDB_O_BINARY,
77 GDB_O_RDWR,
78 GDB_O_RDWR | GDB_O_BINARY,
79 GDB_O_WRONLY | GDB_O_CREAT | GDB_O_TRUNC,
80 GDB_O_WRONLY | GDB_O_CREAT | GDB_O_TRUNC | GDB_O_BINARY,
81 GDB_O_RDWR | GDB_O_CREAT | GDB_O_TRUNC,
82 GDB_O_RDWR | GDB_O_CREAT | GDB_O_TRUNC | GDB_O_BINARY,
83 GDB_O_WRONLY | GDB_O_CREAT | GDB_O_APPEND,
84 GDB_O_WRONLY | GDB_O_CREAT | GDB_O_APPEND | GDB_O_BINARY,
85 GDB_O_RDWR | GDB_O_CREAT | GDB_O_APPEND,
86 GDB_O_RDWR | GDB_O_CREAT | GDB_O_APPEND | GDB_O_BINARY
87};
88
89static int open_modeflags[12] = {
a4f81979
FB
90 O_RDONLY,
91 O_RDONLY | O_BINARY,
92 O_RDWR,
93 O_RDWR | O_BINARY,
94 O_WRONLY | O_CREAT | O_TRUNC,
95 O_WRONLY | O_CREAT | O_TRUNC | O_BINARY,
96 O_RDWR | O_CREAT | O_TRUNC,
97 O_RDWR | O_CREAT | O_TRUNC | O_BINARY,
98 O_WRONLY | O_CREAT | O_APPEND,
99 O_WRONLY | O_CREAT | O_APPEND | O_BINARY,
100 O_RDWR | O_CREAT | O_APPEND,
101 O_RDWR | O_CREAT | O_APPEND | O_BINARY
102};
103
8e71621f 104#ifdef CONFIG_USER_ONLY
a4f81979
FB
105static inline uint32_t set_swi_errno(TaskState *ts, uint32_t code)
106{
8e71621f
PB
107 if (code == (uint32_t)-1)
108 ts->swi_errno = errno;
109 return code;
110}
111#else
81926f47 112static inline uint32_t set_swi_errno(CPUARMState *env, uint32_t code)
8e71621f
PB
113{
114 return code;
115}
116
022c62cb 117#include "exec/softmmu-semi.h"
8e71621f 118#endif
a4f81979 119
a2d1ebaf
PB
120static target_ulong arm_semi_syscall_len;
121
33d9cc8a
PB
122#if !defined(CONFIG_USER_ONLY)
123static target_ulong syscall_err;
124#endif
125
9e0c5422 126static void arm_semi_cb(CPUState *cs, target_ulong ret, target_ulong err)
a2d1ebaf 127{
9e0c5422
AF
128 ARMCPU *cpu = ARM_CPU(cs);
129 CPUARMState *env = &cpu->env;
a2d1ebaf 130#ifdef CONFIG_USER_ONLY
0429a971 131 TaskState *ts = cs->opaque;
a2d1ebaf 132#endif
faacc041 133 target_ulong reg0 = is_a64(env) ? env->xregs[0] : env->regs[0];
33d9cc8a 134
a2d1ebaf
PB
135 if (ret == (target_ulong)-1) {
136#ifdef CONFIG_USER_ONLY
137 ts->swi_errno = err;
33d9cc8a
PB
138#else
139 syscall_err = err;
a2d1ebaf 140#endif
bb19cbc9 141 reg0 = ret;
a2d1ebaf
PB
142 } else {
143 /* Fixup syscalls that use nonstardard return conventions. */
bb19cbc9 144 switch (reg0) {
3881725c
SW
145 case TARGET_SYS_WRITE:
146 case TARGET_SYS_READ:
bb19cbc9 147 reg0 = arm_semi_syscall_len - ret;
a2d1ebaf 148 break;
3881725c 149 case TARGET_SYS_SEEK:
bb19cbc9 150 reg0 = 0;
a2d1ebaf
PB
151 break;
152 default:
bb19cbc9 153 reg0 = ret;
a2d1ebaf
PB
154 break;
155 }
156 }
faacc041
PM
157 if (is_a64(env)) {
158 env->xregs[0] = reg0;
159 } else {
160 env->regs[0] = reg0;
161 }
162}
163
164static target_ulong arm_flen_buf(ARMCPU *cpu)
165{
166 /* Return an address in target memory of 64 bytes where the remote
167 * gdb should write its stat struct. (The format of this structure
168 * is defined by GDB's remote protocol and is not target-specific.)
169 * We put this on the guest's stack just below SP.
170 */
171 CPUARMState *env = &cpu->env;
172 target_ulong sp;
173
174 if (is_a64(env)) {
175 sp = env->xregs[31];
176 } else {
177 sp = env->regs[13];
178 }
179
180 return sp - 64;
a2d1ebaf
PB
181}
182
9e0c5422 183static void arm_semi_flen_cb(CPUState *cs, target_ulong ret, target_ulong err)
33d9cc8a 184{
9e0c5422
AF
185 ARMCPU *cpu = ARM_CPU(cs);
186 CPUARMState *env = &cpu->env;
33d9cc8a
PB
187 /* The size is always stored in big-endian order, extract
188 the value. We assume the size always fit in 32 bits. */
189 uint32_t size;
faacc041
PM
190 cpu_memory_rw_debug(cs, arm_flen_buf(cpu) + 32, (uint8_t *)&size, 4, 0);
191 size = be32_to_cpu(size);
192 if (is_a64(env)) {
193 env->xregs[0] = size;
194 } else {
195 env->regs[0] = size;
196 }
33d9cc8a 197#ifdef CONFIG_USER_ONLY
0429a971 198 ((TaskState *)cs->opaque)->swi_errno = err;
33d9cc8a
PB
199#else
200 syscall_err = err;
201#endif
202}
203
bb19cbc9
PM
204static target_ulong arm_gdb_syscall(ARMCPU *cpu, gdb_syscall_complete_cb cb,
205 const char *fmt, ...)
206{
207 va_list va;
208 CPUARMState *env = &cpu->env;
209
210 va_start(va, fmt);
211 gdb_do_syscallv(cb, fmt, va);
212 va_end(va);
213
214 /* FIXME: we are implicitly relying on the syscall completing
215 * before this point, which is not guaranteed. We should
216 * put in an explicit synchronization between this and
217 * the callback function.
218 */
219
faacc041 220 return is_a64(env) ? env->xregs[0] : env->regs[0];
bb19cbc9
PM
221}
222
f296c0d1
PM
223/* Read the input value from the argument block; fail the semihosting
224 * call if the memory read fails.
225 */
226#define GET_ARG(n) do { \
faacc041
PM
227 if (is_a64(env)) { \
228 if (get_user_u64(arg ## n, args + (n) * 8)) { \
229 return -1; \
230 } \
231 } else { \
232 if (get_user_u32(arg ## n, args + (n) * 4)) { \
233 return -1; \
234 } \
f296c0d1
PM
235 } \
236} while (0)
237
faacc041
PM
238#define SET_ARG(n, val) \
239 (is_a64(env) ? \
240 put_user_u64(val, args + (n) * 8) : \
241 put_user_u32(val, args + (n) * 4))
242
243target_ulong do_arm_semihosting(CPUARMState *env)
a4f81979 244{
878096ee 245 ARMCPU *cpu = arm_env_get_cpu(env);
0429a971 246 CPUState *cs = CPU(cpu);
53a5960a 247 target_ulong args;
f296c0d1 248 target_ulong arg0, arg1, arg2, arg3;
a4f81979
FB
249 char * s;
250 int nr;
251 uint32_t ret;
8e71621f
PB
252 uint32_t len;
253#ifdef CONFIG_USER_ONLY
0429a971 254 TaskState *ts = cs->opaque;
8e71621f 255#else
81926f47 256 CPUARMState *ts = env;
8e71621f 257#endif
a4f81979 258
faacc041
PM
259 if (is_a64(env)) {
260 /* Note that the syscall number is in W0, not X0 */
261 nr = env->xregs[0] & 0xffffffffU;
262 args = env->xregs[1];
263 } else {
264 nr = env->regs[0];
265 args = env->regs[1];
266 }
267
a4f81979 268 switch (nr) {
3881725c 269 case TARGET_SYS_OPEN:
f296c0d1
PM
270 GET_ARG(0);
271 GET_ARG(1);
272 GET_ARG(2);
273 s = lock_user_string(arg0);
274 if (!s) {
579a97f7
FB
275 /* FIXME - should this error code be -TARGET_EFAULT ? */
276 return (uint32_t)-1;
f296c0d1
PM
277 }
278 if (arg1 >= 12) {
279 unlock_user(s, arg0, 0);
579a97f7 280 return (uint32_t)-1;
396bef4b 281 }
a4f81979 282 if (strcmp(s, ":tt") == 0) {
f296c0d1
PM
283 int result_fileno = arg1 < 4 ? STDIN_FILENO : STDOUT_FILENO;
284 unlock_user(s, arg0, 0);
396bef4b 285 return result_fileno;
a4f81979 286 }
a2d1ebaf 287 if (use_gdb_syscalls()) {
bb19cbc9
PM
288 ret = arm_gdb_syscall(cpu, arm_semi_cb, "open,%s,%x,1a4", arg0,
289 (int)arg2+1, gdb_open_modeflags[arg1]);
a2d1ebaf 290 } else {
f296c0d1 291 ret = set_swi_errno(ts, open(s, open_modeflags[arg1], 0644));
a2d1ebaf 292 }
f296c0d1 293 unlock_user(s, arg0, 0);
8e71621f 294 return ret;
3881725c 295 case TARGET_SYS_CLOSE:
f296c0d1 296 GET_ARG(0);
a2d1ebaf 297 if (use_gdb_syscalls()) {
bb19cbc9 298 return arm_gdb_syscall(cpu, arm_semi_cb, "close,%x", arg0);
a2d1ebaf 299 } else {
f296c0d1 300 return set_swi_errno(ts, close(arg0));
a2d1ebaf 301 }
3881725c 302 case TARGET_SYS_WRITEC:
53a5960a 303 {
2f619698
FB
304 char c;
305
306 if (get_user_u8(c, args))
307 /* FIXME - should this error code be -TARGET_EFAULT ? */
308 return (uint32_t)-1;
53a5960a 309 /* Write to debug console. stderr is near enough. */
a2d1ebaf 310 if (use_gdb_syscalls()) {
bb19cbc9 311 return arm_gdb_syscall(cpu, arm_semi_cb, "write,2,%x,1", args);
a2d1ebaf
PB
312 } else {
313 return write(STDERR_FILENO, &c, 1);
314 }
53a5960a 315 }
3881725c 316 case TARGET_SYS_WRITE0:
579a97f7
FB
317 if (!(s = lock_user_string(args)))
318 /* FIXME - should this error code be -TARGET_EFAULT ? */
319 return (uint32_t)-1;
a2d1ebaf
PB
320 len = strlen(s);
321 if (use_gdb_syscalls()) {
bb19cbc9
PM
322 return arm_gdb_syscall(cpu, arm_semi_cb, "write,2,%x,%x",
323 args, len);
a2d1ebaf
PB
324 } else {
325 ret = write(STDERR_FILENO, s, len);
326 }
53a5960a
PB
327 unlock_user(s, args, 0);
328 return ret;
3881725c 329 case TARGET_SYS_WRITE:
f296c0d1
PM
330 GET_ARG(0);
331 GET_ARG(1);
332 GET_ARG(2);
333 len = arg2;
a2d1ebaf
PB
334 if (use_gdb_syscalls()) {
335 arm_semi_syscall_len = len;
bb19cbc9
PM
336 return arm_gdb_syscall(cpu, arm_semi_cb, "write,%x,%x,%x",
337 arg0, arg1, len);
a2d1ebaf 338 } else {
f296c0d1
PM
339 s = lock_user(VERIFY_READ, arg1, len, 1);
340 if (!s) {
579a97f7
FB
341 /* FIXME - should this error code be -TARGET_EFAULT ? */
342 return (uint32_t)-1;
f296c0d1
PM
343 }
344 ret = set_swi_errno(ts, write(arg0, s, len));
345 unlock_user(s, arg1, 0);
a2d1ebaf
PB
346 if (ret == (uint32_t)-1)
347 return -1;
348 return len - ret;
349 }
3881725c 350 case TARGET_SYS_READ:
f296c0d1
PM
351 GET_ARG(0);
352 GET_ARG(1);
353 GET_ARG(2);
354 len = arg2;
a2d1ebaf
PB
355 if (use_gdb_syscalls()) {
356 arm_semi_syscall_len = len;
bb19cbc9
PM
357 return arm_gdb_syscall(cpu, arm_semi_cb, "read,%x,%x,%x",
358 arg0, arg1, len);
a2d1ebaf 359 } else {
f296c0d1
PM
360 s = lock_user(VERIFY_WRITE, arg1, len, 0);
361 if (!s) {
579a97f7
FB
362 /* FIXME - should this error code be -TARGET_EFAULT ? */
363 return (uint32_t)-1;
f296c0d1
PM
364 }
365 do {
366 ret = set_swi_errno(ts, read(arg0, s, len));
367 } while (ret == -1 && errno == EINTR);
368 unlock_user(s, arg1, len);
a2d1ebaf
PB
369 if (ret == (uint32_t)-1)
370 return -1;
371 return len - ret;
372 }
3881725c 373 case TARGET_SYS_READC:
b90372ad 374 /* XXX: Read from debug console. Not implemented. */
a4f81979 375 return 0;
3881725c 376 case TARGET_SYS_ISTTY:
f296c0d1 377 GET_ARG(0);
a2d1ebaf 378 if (use_gdb_syscalls()) {
bb19cbc9 379 return arm_gdb_syscall(cpu, arm_semi_cb, "isatty,%x", arg0);
a2d1ebaf 380 } else {
f296c0d1 381 return isatty(arg0);
a2d1ebaf 382 }
3881725c 383 case TARGET_SYS_SEEK:
f296c0d1
PM
384 GET_ARG(0);
385 GET_ARG(1);
a2d1ebaf 386 if (use_gdb_syscalls()) {
bb19cbc9
PM
387 return arm_gdb_syscall(cpu, arm_semi_cb, "lseek,%x,%x,0",
388 arg0, arg1);
a2d1ebaf 389 } else {
f296c0d1 390 ret = set_swi_errno(ts, lseek(arg0, arg1, SEEK_SET));
a2d1ebaf
PB
391 if (ret == (uint32_t)-1)
392 return -1;
393 return 0;
394 }
3881725c 395 case TARGET_SYS_FLEN:
f296c0d1 396 GET_ARG(0);
a2d1ebaf 397 if (use_gdb_syscalls()) {
bb19cbc9 398 return arm_gdb_syscall(cpu, arm_semi_flen_cb, "fstat,%x,%x",
faacc041 399 arg0, arm_flen_buf(cpu));
a2d1ebaf 400 } else {
a4f81979 401 struct stat buf;
f296c0d1 402 ret = set_swi_errno(ts, fstat(arg0, &buf));
a4f81979
FB
403 if (ret == (uint32_t)-1)
404 return -1;
405 return buf.st_size;
406 }
3881725c 407 case TARGET_SYS_TMPNAM:
a4f81979
FB
408 /* XXX: Not implemented. */
409 return -1;
3881725c 410 case TARGET_SYS_REMOVE:
f296c0d1
PM
411 GET_ARG(0);
412 GET_ARG(1);
a2d1ebaf 413 if (use_gdb_syscalls()) {
bb19cbc9
PM
414 ret = arm_gdb_syscall(cpu, arm_semi_cb, "unlink,%s",
415 arg0, (int)arg1+1);
a2d1ebaf 416 } else {
f296c0d1
PM
417 s = lock_user_string(arg0);
418 if (!s) {
579a97f7
FB
419 /* FIXME - should this error code be -TARGET_EFAULT ? */
420 return (uint32_t)-1;
f296c0d1 421 }
a2d1ebaf 422 ret = set_swi_errno(ts, remove(s));
f296c0d1 423 unlock_user(s, arg0, 0);
a2d1ebaf 424 }
8e71621f 425 return ret;
3881725c 426 case TARGET_SYS_RENAME:
f296c0d1
PM
427 GET_ARG(0);
428 GET_ARG(1);
429 GET_ARG(2);
430 GET_ARG(3);
a2d1ebaf 431 if (use_gdb_syscalls()) {
bb19cbc9
PM
432 return arm_gdb_syscall(cpu, arm_semi_cb, "rename,%s,%s",
433 arg0, (int)arg1+1, arg2, (int)arg3+1);
a2d1ebaf 434 } else {
8e71621f 435 char *s2;
f296c0d1
PM
436 s = lock_user_string(arg0);
437 s2 = lock_user_string(arg2);
579a97f7
FB
438 if (!s || !s2)
439 /* FIXME - should this error code be -TARGET_EFAULT ? */
440 ret = (uint32_t)-1;
441 else
442 ret = set_swi_errno(ts, rename(s, s2));
443 if (s2)
f296c0d1 444 unlock_user(s2, arg2, 0);
579a97f7 445 if (s)
f296c0d1 446 unlock_user(s, arg0, 0);
8e71621f
PB
447 return ret;
448 }
3881725c 449 case TARGET_SYS_CLOCK:
a4f81979 450 return clock() / (CLOCKS_PER_SEC / 100);
3881725c 451 case TARGET_SYS_TIME:
a4f81979 452 return set_swi_errno(ts, time(NULL));
3881725c 453 case TARGET_SYS_SYSTEM:
f296c0d1
PM
454 GET_ARG(0);
455 GET_ARG(1);
a2d1ebaf 456 if (use_gdb_syscalls()) {
bb19cbc9
PM
457 return arm_gdb_syscall(cpu, arm_semi_cb, "system,%s",
458 arg0, (int)arg1+1);
a2d1ebaf 459 } else {
f296c0d1
PM
460 s = lock_user_string(arg0);
461 if (!s) {
579a97f7
FB
462 /* FIXME - should this error code be -TARGET_EFAULT ? */
463 return (uint32_t)-1;
f296c0d1 464 }
a2d1ebaf 465 ret = set_swi_errno(ts, system(s));
f296c0d1 466 unlock_user(s, arg0, 0);
a982b531 467 return ret;
a2d1ebaf 468 }
3881725c 469 case TARGET_SYS_ERRNO:
8e71621f 470#ifdef CONFIG_USER_ONLY
a4f81979 471 return ts->swi_errno;
8e71621f 472#else
33d9cc8a 473 return syscall_err;
8e71621f 474#endif
3881725c 475 case TARGET_SYS_GET_CMDLINE:
38d0662a 476 {
1c1b40c1
CV
477 /* Build a command-line from the original argv.
478 *
479 * The inputs are:
f296c0d1
PM
480 * * arg0, pointer to a buffer of at least the size
481 * specified in arg1.
482 * * arg1, size of the buffer pointed to by arg0 in
1c1b40c1
CV
483 * bytes.
484 *
485 * The outputs are:
f296c0d1 486 * * arg0, pointer to null-terminated string of the
1c1b40c1 487 * command line.
f296c0d1 488 * * arg1, length of the string pointed to by arg0.
1c1b40c1 489 */
579a97f7 490
1c1b40c1 491 char *output_buffer;
f296c0d1 492 size_t input_size;
1c1b40c1
CV
493 size_t output_size;
494 int status = 0;
f3c2bda2
LI
495#if !defined(CONFIG_USER_ONLY)
496 const char *cmdline;
497#endif
f296c0d1
PM
498 GET_ARG(0);
499 GET_ARG(1);
500 input_size = arg1;
1c1b40c1
CV
501 /* Compute the size of the output string. */
502#if !defined(CONFIG_USER_ONLY)
f3c2bda2
LI
503 cmdline = semihosting_get_cmdline();
504 if (cmdline == NULL) {
505 cmdline = ""; /* Default to an empty line. */
506 }
507 output_size = strlen(cmdline) + 1; /* Count terminating 0. */
1c1b40c1
CV
508#else
509 unsigned int i;
38d0662a 510
1c1b40c1
CV
511 output_size = ts->info->arg_end - ts->info->arg_start;
512 if (!output_size) {
2e8785ac
WS
513 /* We special-case the "empty command line" case (argc==0).
514 Just provide the terminating 0. */
1c1b40c1
CV
515 output_size = 1;
516 }
517#endif
38d0662a 518
1c1b40c1
CV
519 if (output_size > input_size) {
520 /* Not enough space to store command-line arguments. */
521 return -1;
38d0662a 522 }
38d0662a 523
1c1b40c1 524 /* Adjust the command-line length. */
f296c0d1
PM
525 if (SET_ARG(1, output_size - 1)) {
526 /* Couldn't write back to argument block */
527 return -1;
528 }
38d0662a 529
1c1b40c1 530 /* Lock the buffer on the ARM side. */
f296c0d1 531 output_buffer = lock_user(VERIFY_WRITE, arg0, output_size, 0);
1c1b40c1
CV
532 if (!output_buffer) {
533 return -1;
534 }
38d0662a 535
1c1b40c1
CV
536 /* Copy the command-line arguments. */
537#if !defined(CONFIG_USER_ONLY)
f3c2bda2 538 pstrcpy(output_buffer, output_size, cmdline);
1c1b40c1
CV
539#else
540 if (output_size == 1) {
541 /* Empty command-line. */
542 output_buffer[0] = '\0';
543 goto out;
544 }
2e8785ac 545
1c1b40c1
CV
546 if (copy_from_user(output_buffer, ts->info->arg_start,
547 output_size)) {
548 status = -1;
549 goto out;
2e8785ac
WS
550 }
551
1c1b40c1
CV
552 /* Separate arguments by white spaces. */
553 for (i = 0; i < output_size - 1; i++) {
554 if (output_buffer[i] == 0) {
555 output_buffer[i] = ' ';
556 }
557 }
558 out:
559#endif
560 /* Unlock the buffer on the ARM side. */
f296c0d1 561 unlock_user(output_buffer, arg0, output_size);
2e8785ac 562
1c1b40c1 563 return status;
38d0662a 564 }
3881725c 565 case TARGET_SYS_HEAPINFO:
a4f81979 566 {
f5666418 567 target_ulong retvals[4];
a4f81979 568 uint32_t limit;
f5666418
PM
569 int i;
570
f296c0d1 571 GET_ARG(0);
a4f81979 572
8e71621f
PB
573#ifdef CONFIG_USER_ONLY
574 /* Some C libraries assume the heap immediately follows .bss, so
a4f81979
FB
575 allocate it using sbrk. */
576 if (!ts->heap_limit) {
206ae74a 577 abi_ulong ret;
a4f81979 578
53a5960a 579 ts->heap_base = do_brk(0);
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FB
580 limit = ts->heap_base + ARM_ANGEL_HEAP_SIZE;
581 /* Try a big heap, and reduce the size if that fails. */
582 for (;;) {
53a5960a 583 ret = do_brk(limit);
206ae74a 584 if (ret >= limit) {
a4f81979 585 break;
206ae74a 586 }
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FB
587 limit = (ts->heap_base >> 1) + (limit >> 1);
588 }
589 ts->heap_limit = limit;
590 }
3b46e624 591
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592 retvals[0] = ts->heap_base;
593 retvals[1] = ts->heap_limit;
594 retvals[2] = ts->stack_base;
595 retvals[3] = 0; /* Stack limit. */
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PB
596#else
597 limit = ram_size;
8e71621f 598 /* TODO: Make this use the limit of the loaded application. */
f5666418
PM
599 retvals[0] = limit / 2;
600 retvals[1] = limit;
601 retvals[2] = limit; /* Stack base */
602 retvals[3] = 0; /* Stack limit. */
8e71621f 603#endif
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604
605 for (i = 0; i < ARRAY_SIZE(retvals); i++) {
606 bool fail;
607
608 if (is_a64(env)) {
609 fail = put_user_u64(retvals[i], arg0 + i * 8);
610 } else {
611 fail = put_user_u32(retvals[i], arg0 + i * 4);
612 }
613
614 if (fail) {
615 /* Couldn't write back to argument block */
616 return -1;
617 }
618 }
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FB
619 return 0;
620 }
3881725c 621 case TARGET_SYS_EXIT:
7446d35e
PM
622 if (is_a64(env)) {
623 /* The A64 version of this call takes a parameter block,
624 * so the application-exit type can return a subcode which
625 * is the exit status code from the application.
626 */
627 GET_ARG(0);
628 GET_ARG(1);
629
630 if (arg0 == ADP_Stopped_ApplicationExit) {
631 ret = arg1;
632 } else {
633 ret = 1;
634 }
635 } else {
636 /* ARM specifies only Stopped_ApplicationExit as normal
637 * exit, everything else is considered an error */
638 ret = (args == ADP_Stopped_ApplicationExit) ? 0 : 1;
639 }
1ecc3a2d
LI
640 gdb_exit(env, ret);
641 exit(ret);
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PM
642 case TARGET_SYS_SYNCCACHE:
643 /* Clean the D-cache and invalidate the I-cache for the specified
644 * virtual address range. This is a nop for us since we don't
645 * implement caches. This is only present on A64.
646 */
647 if (is_a64(env)) {
648 return 0;
649 }
650 /* fall through -- invalid for A32/T32 */
a4f81979
FB
651 default:
652 fprintf(stderr, "qemu: Unsupported SemiHosting SWI 0x%02x\n", nr);
0429a971 653 cpu_dump_state(cs, stderr, fprintf, 0);
a4f81979
FB
654 abort();
655 }
656}