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a13e2c95 1/* Low level interface to SPUs, for the remote server for GDB.
0b302171 2 Copyright (C) 2006-2012 Free Software Foundation, Inc.
a13e2c95
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3
4 Contributed by Ulrich Weigand <uweigand@de.ibm.com>.
5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
a13e2c95
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11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
a9762ec7 19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
a13e2c95
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20
21#include "server.h"
22
23#include <sys/wait.h>
24#include <stdio.h>
25#include <sys/ptrace.h>
26#include <fcntl.h>
27#include <string.h>
28#include <stdlib.h>
29#include <unistd.h>
30#include <errno.h>
31#include <sys/syscall.h>
32
33/* Some older glibc versions do not define this. */
34#ifndef __WNOTHREAD
35#define __WNOTHREAD 0x20000000 /* Don't wait on children of other
1b3f6016 36 threads in this group */
a13e2c95
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37#endif
38
39#define PTRACE_TYPE_RET long
40#define PTRACE_TYPE_ARG3 long
41
42/* Number of registers. */
43#define SPU_NUM_REGS 130
44#define SPU_NUM_CORE_REGS 128
45
46/* Special registers. */
47#define SPU_ID_REGNUM 128
48#define SPU_PC_REGNUM 129
49
50/* PPU side system calls. */
51#define INSTR_SC 0x44000002
52#define NR_spu_run 0x0116
53
54/* Get current thread ID (Linux task ID). */
5472f405 55#define current_ptid ((struct inferior_list_entry *)current_inferior)->id
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56
57/* These are used in remote-utils.c. */
58int using_threads = 0;
a13e2c95 59
d05b4ac3
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60/* Defined in auto-generated file reg-spu.c. */
61void init_registers_spu (void);
62
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63
64/* Fetch PPU register REGNO. */
65static CORE_ADDR
66fetch_ppc_register (int regno)
67{
68 PTRACE_TYPE_RET res;
69
5472f405 70 int tid = ptid_get_lwp (current_ptid);
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71
72#ifndef __powerpc64__
73 /* If running as a 32-bit process on a 64-bit system, we attempt
74 to get the full 64-bit register content of the target process.
75 If the PPC special ptrace call fails, we're on a 32-bit system;
76 just fall through to the regular ptrace call in that case. */
77 {
78 char buf[8];
79
80 errno = 0;
81 ptrace (PPC_PTRACE_PEEKUSR_3264, tid,
82 (PTRACE_TYPE_ARG3) (regno * 8), buf);
83 if (errno == 0)
84 ptrace (PPC_PTRACE_PEEKUSR_3264, tid,
85 (PTRACE_TYPE_ARG3) (regno * 8 + 4), buf + 4);
86 if (errno == 0)
87 return (CORE_ADDR) *(unsigned long long *)buf;
88 }
89#endif
90
91 errno = 0;
92 res = ptrace (PT_READ_U, tid,
1b3f6016 93 (PTRACE_TYPE_ARG3) (regno * sizeof (PTRACE_TYPE_RET)), 0);
a13e2c95
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94 if (errno != 0)
95 {
96 char mess[128];
97 sprintf (mess, "reading PPC register #%d", regno);
98 perror_with_name (mess);
99 }
100
101 return (CORE_ADDR) (unsigned long) res;
102}
103
104/* Fetch WORD from PPU memory at (aligned) MEMADDR in thread TID. */
105static int
106fetch_ppc_memory_1 (int tid, CORE_ADDR memaddr, PTRACE_TYPE_RET *word)
107{
108 errno = 0;
109
110#ifndef __powerpc64__
111 if (memaddr >> 32)
112 {
113 unsigned long long addr_8 = (unsigned long long) memaddr;
114 ptrace (PPC_PTRACE_PEEKTEXT_3264, tid, (PTRACE_TYPE_ARG3) &addr_8, word);
115 }
116 else
117#endif
118 *word = ptrace (PT_READ_I, tid, (PTRACE_TYPE_ARG3) (size_t) memaddr, 0);
119
120 return errno;
121}
122
123/* Store WORD into PPU memory at (aligned) MEMADDR in thread TID. */
124static int
125store_ppc_memory_1 (int tid, CORE_ADDR memaddr, PTRACE_TYPE_RET word)
126{
127 errno = 0;
128
129#ifndef __powerpc64__
130 if (memaddr >> 32)
131 {
132 unsigned long long addr_8 = (unsigned long long) memaddr;
133 ptrace (PPC_PTRACE_POKEDATA_3264, tid, (PTRACE_TYPE_ARG3) &addr_8, word);
134 }
135 else
136#endif
137 ptrace (PT_WRITE_D, tid, (PTRACE_TYPE_ARG3) (size_t) memaddr, word);
138
139 return errno;
140}
141
142/* Fetch LEN bytes of PPU memory at MEMADDR to MYADDR. */
143static int
144fetch_ppc_memory (CORE_ADDR memaddr, char *myaddr, int len)
145{
146 int i, ret;
147
148 CORE_ADDR addr = memaddr & -(CORE_ADDR) sizeof (PTRACE_TYPE_RET);
149 int count = ((((memaddr + len) - addr) + sizeof (PTRACE_TYPE_RET) - 1)
150 / sizeof (PTRACE_TYPE_RET));
151 PTRACE_TYPE_RET *buffer;
152
5472f405 153 int tid = ptid_get_lwp (current_ptid);
a13e2c95
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154
155 buffer = (PTRACE_TYPE_RET *) alloca (count * sizeof (PTRACE_TYPE_RET));
156 for (i = 0; i < count; i++, addr += sizeof (PTRACE_TYPE_RET))
157 if ((ret = fetch_ppc_memory_1 (tid, addr, &buffer[i])) != 0)
158 return ret;
159
160 memcpy (myaddr,
161 (char *) buffer + (memaddr & (sizeof (PTRACE_TYPE_RET) - 1)),
162 len);
163
164 return 0;
165}
166
167/* Store LEN bytes from MYADDR to PPU memory at MEMADDR. */
168static int
169store_ppc_memory (CORE_ADDR memaddr, char *myaddr, int len)
170{
171 int i, ret;
172
173 CORE_ADDR addr = memaddr & -(CORE_ADDR) sizeof (PTRACE_TYPE_RET);
174 int count = ((((memaddr + len) - addr) + sizeof (PTRACE_TYPE_RET) - 1)
175 / sizeof (PTRACE_TYPE_RET));
176 PTRACE_TYPE_RET *buffer;
177
5472f405 178 int tid = ptid_get_lwp (current_ptid);
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179
180 buffer = (PTRACE_TYPE_RET *) alloca (count * sizeof (PTRACE_TYPE_RET));
181
182 if (addr != memaddr || len < (int) sizeof (PTRACE_TYPE_RET))
183 if ((ret = fetch_ppc_memory_1 (tid, addr, &buffer[0])) != 0)
184 return ret;
185
186 if (count > 1)
187 if ((ret = fetch_ppc_memory_1 (tid, addr + (count - 1)
188 * sizeof (PTRACE_TYPE_RET),
189 &buffer[count - 1])) != 0)
190 return ret;
191
192 memcpy ((char *) buffer + (memaddr & (sizeof (PTRACE_TYPE_RET) - 1)),
1b3f6016 193 myaddr, len);
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194
195 for (i = 0; i < count; i++, addr += sizeof (PTRACE_TYPE_RET))
196 if ((ret = store_ppc_memory_1 (tid, addr, buffer[i])) != 0)
197 return ret;
198
199 return 0;
200}
201
202
203/* If the PPU thread is currently stopped on a spu_run system call,
204 return to FD and ADDR the file handle and NPC parameter address
205 used with the system call. Return non-zero if successful. */
1b3f6016 206static int
a13e2c95
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207parse_spufs_run (int *fd, CORE_ADDR *addr)
208{
9d236627 209 unsigned int insn;
a13e2c95
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210 CORE_ADDR pc = fetch_ppc_register (32); /* nip */
211
212 /* Fetch instruction preceding current NIP. */
9d236627 213 if (fetch_ppc_memory (pc-4, (char *) &insn, 4) != 0)
a13e2c95
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214 return 0;
215 /* It should be a "sc" instruction. */
9d236627 216 if (insn != INSTR_SC)
a13e2c95
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217 return 0;
218 /* System call number should be NR_spu_run. */
219 if (fetch_ppc_register (0) != NR_spu_run)
220 return 0;
221
222 /* Register 3 contains fd, register 4 the NPC param pointer. */
223 *fd = fetch_ppc_register (34); /* orig_gpr3 */
224 *addr = fetch_ppc_register (4);
225 return 1;
226}
227
228
229/* Copy LEN bytes at OFFSET in spufs file ANNEX into/from READBUF or WRITEBUF,
230 using the /proc file system. */
231static int
232spu_proc_xfer_spu (const char *annex, unsigned char *readbuf,
233 const unsigned char *writebuf,
234 CORE_ADDR offset, int len)
235{
236 char buf[128];
237 int fd = 0;
238 int ret = -1;
239
240 if (!annex)
241 return 0;
242
5472f405 243 sprintf (buf, "/proc/%ld/fd/%s", ptid_get_lwp (current_ptid), annex);
a13e2c95
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244 fd = open (buf, writebuf? O_WRONLY : O_RDONLY);
245 if (fd <= 0)
246 return -1;
247
248 if (offset != 0
249 && lseek (fd, (off_t) offset, SEEK_SET) != (off_t) offset)
250 {
251 close (fd);
374c1d38 252 return 0;
a13e2c95
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253 }
254
255 if (writebuf)
256 ret = write (fd, writebuf, (size_t) len);
257 else if (readbuf)
258 ret = read (fd, readbuf, (size_t) len);
259
260 close (fd);
261 return ret;
262}
263
264
265/* Start an inferior process and returns its pid.
266 ALLARGS is a vector of program-name and args. */
267static int
268spu_create_inferior (char *program, char **allargs)
269{
270 int pid;
95954743 271 ptid_t ptid;
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272
273 pid = fork ();
274 if (pid < 0)
275 perror_with_name ("fork");
276
277 if (pid == 0)
278 {
279 ptrace (PTRACE_TRACEME, 0, 0, 0);
280
281 setpgid (0, 0);
282
2b876972
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283 execv (program, allargs);
284 if (errno == ENOENT)
285 execvp (program, allargs);
a13e2c95
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286
287 fprintf (stderr, "Cannot exec %s: %s.\n", program,
288 strerror (errno));
289 fflush (stderr);
290 _exit (0177);
291 }
292
95954743
PA
293 add_process (pid, 0);
294
295 ptid = ptid_build (pid, pid, 0);
296 add_thread (ptid, NULL);
a13e2c95
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297 return pid;
298}
299
300/* Attach to an inferior process. */
301int
302spu_attach (unsigned long pid)
303{
95954743
PA
304 ptid_t ptid;
305
a13e2c95
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306 if (ptrace (PTRACE_ATTACH, pid, 0, 0) != 0)
307 {
308 fprintf (stderr, "Cannot attach to process %ld: %s (%d)\n", pid,
309 strerror (errno), errno);
310 fflush (stderr);
311 _exit (0177);
312 }
313
95954743
PA
314 add_process (pid, 1);
315 ptid = ptid_build (pid, pid, 0);
316 add_thread (ptid, NULL);
a13e2c95
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317 return 0;
318}
319
320/* Kill the inferior process. */
95954743 321static int
5472f405 322spu_kill (int pid)
a13e2c95 323{
4168d2d6 324 int status, ret;
5472f405
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325 struct process_info *process = find_process_pid (pid);
326 if (process == NULL)
327 return -1;
328
329 ptrace (PTRACE_KILL, pid, 0, 0);
4168d2d6
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330
331 do {
332 ret = waitpid (pid, &status, 0);
333 if (WIFEXITED (status) || WIFSIGNALED (status))
334 break;
335 } while (ret != -1 || errno != ECHILD);
336
337 clear_inferiors ();
5472f405 338 remove_process (process);
95954743 339 return 0;
a13e2c95
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340}
341
342/* Detach from inferior process. */
dd6953e1 343static int
95954743 344spu_detach (int pid)
a13e2c95 345{
5472f405
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346 struct process_info *process = find_process_pid (pid);
347 if (process == NULL)
348 return -1;
349
350 ptrace (PTRACE_DETACH, pid, 0, 0);
4168d2d6
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351
352 clear_inferiors ();
5472f405 353 remove_process (process);
dd6953e1 354 return 0;
a13e2c95
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355}
356
505106cd
PA
357static void
358spu_mourn (struct process_info *process)
359{
360 remove_process (process);
361}
362
444d6139 363static void
95954743 364spu_join (int pid)
444d6139
PA
365{
366 int status, ret;
367
368 do {
5472f405 369 ret = waitpid (pid, &status, 0);
444d6139
PA
370 if (WIFEXITED (status) || WIFSIGNALED (status))
371 break;
372 } while (ret != -1 || errno != ECHILD);
373}
374
a13e2c95
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375/* Return nonzero if the given thread is still alive. */
376static int
95954743 377spu_thread_alive (ptid_t ptid)
a13e2c95 378{
5472f405 379 return ptid_equal (ptid, current_ptid);
a13e2c95
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380}
381
382/* Resume process. */
383static void
2bd7c093 384spu_resume (struct thread_resume *resume_info, size_t n)
a13e2c95 385{
2bd7c093 386 size_t i;
a13e2c95 387
2bd7c093 388 for (i = 0; i < n; i++)
95954743 389 if (ptid_equal (resume_info[i].thread, minus_one_ptid)
5472f405 390 || ptid_equal (resume_info[i].thread, current_ptid))
2bd7c093
PA
391 break;
392
393 if (i == n)
a13e2c95
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394 return;
395
396 /* We don't support hardware single-stepping right now, assume
397 GDB knows to use software single-stepping. */
bd99dc85 398 if (resume_info[i].kind == resume_step)
a13e2c95
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399 fprintf (stderr, "Hardware single-step not supported.\n");
400
401 regcache_invalidate ();
402
403 errno = 0;
5472f405 404 ptrace (PTRACE_CONT, ptid_get_lwp (current_ptid), 0, resume_info[i].sig);
a13e2c95
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405 if (errno)
406 perror_with_name ("ptrace");
407}
408
409/* Wait for process, returns status. */
95954743
PA
410static ptid_t
411spu_wait (ptid_t ptid, struct target_waitstatus *ourstatus, int options)
a13e2c95 412{
5472f405 413 int pid = ptid_get_pid (ptid);
a13e2c95
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414 int w;
415 int ret;
416
a13e2c95
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417 while (1)
418 {
5472f405 419 ret = waitpid (pid, &w, WNOHANG | __WALL | __WNOTHREAD);
a13e2c95
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420
421 if (ret == -1)
422 {
423 if (errno != ECHILD)
424 perror_with_name ("waitpid");
425 }
426 else if (ret > 0)
427 break;
428
429 usleep (1000);
430 }
431
432 /* On the first wait, continue running the inferior until we are
433 blocked inside an spu_run system call. */
434 if (!server_waiting)
435 {
436 int fd;
437 CORE_ADDR addr;
438
439 while (!parse_spufs_run (&fd, &addr))
440 {
5472f405
UW
441 ptrace (PT_SYSCALL, pid, (PTRACE_TYPE_ARG3) 0, 0);
442 waitpid (pid, NULL, __WALL | __WNOTHREAD);
a13e2c95
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443 }
444 }
445
a13e2c95
UW
446 if (WIFEXITED (w))
447 {
448 fprintf (stderr, "\nChild exited with retcode = %x \n", WEXITSTATUS (w));
5b1c542e
PA
449 ourstatus->kind = TARGET_WAITKIND_EXITED;
450 ourstatus->value.integer = WEXITSTATUS (w);
a13e2c95 451 clear_inferiors ();
95954743 452 return pid_to_ptid (ret);
a13e2c95
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453 }
454 else if (!WIFSTOPPED (w))
455 {
456 fprintf (stderr, "\nChild terminated with signal = %x \n", WTERMSIG (w));
5b1c542e 457 ourstatus->kind = TARGET_WAITKIND_SIGNALLED;
2ea28649 458 ourstatus->value.sig = gdb_signal_from_host (WTERMSIG (w));
a13e2c95 459 clear_inferiors ();
95954743 460 return pid_to_ptid (ret);
a13e2c95
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461 }
462
463 /* After attach, we may have received a SIGSTOP. Do not return this
464 as signal to GDB, or else it will try to continue with SIGSTOP ... */
465 if (!server_waiting)
466 {
5b1c542e 467 ourstatus->kind = TARGET_WAITKIND_STOPPED;
a493e3e2 468 ourstatus->value.sig = GDB_SIGNAL_0;
95954743 469 return ptid_build (ret, ret, 0);
a13e2c95
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470 }
471
5b1c542e 472 ourstatus->kind = TARGET_WAITKIND_STOPPED;
2ea28649 473 ourstatus->value.sig = gdb_signal_from_host (WSTOPSIG (w));
95954743 474 return ptid_build (ret, ret, 0);
a13e2c95
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475}
476
477/* Fetch inferior registers. */
478static void
85492558 479spu_fetch_registers (struct regcache *regcache, int regno)
a13e2c95
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480{
481 int fd;
482 CORE_ADDR addr;
483
a13e2c95
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484 /* We must be stopped on a spu_run system call. */
485 if (!parse_spufs_run (&fd, &addr))
486 return;
487
488 /* The ID register holds the spufs file handle. */
489 if (regno == -1 || regno == SPU_ID_REGNUM)
85492558 490 supply_register (regcache, SPU_ID_REGNUM, (char *)&fd);
a13e2c95
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491
492 /* The NPC register is found at ADDR. */
493 if (regno == -1 || regno == SPU_PC_REGNUM)
494 {
495 char buf[4];
496 if (fetch_ppc_memory (addr, buf, 4) == 0)
85492558 497 supply_register (regcache, SPU_PC_REGNUM, buf);
a13e2c95
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498 }
499
500 /* The GPRs are found in the "regs" spufs file. */
501 if (regno == -1 || (regno >= 0 && regno < SPU_NUM_CORE_REGS))
502 {
503 unsigned char buf[16*SPU_NUM_CORE_REGS];
504 char annex[32];
505 int i;
506
507 sprintf (annex, "%d/regs", fd);
508 if (spu_proc_xfer_spu (annex, buf, NULL, 0, sizeof buf) == sizeof buf)
509 for (i = 0; i < SPU_NUM_CORE_REGS; i++)
85492558 510 supply_register (regcache, i, buf + i*16);
a13e2c95
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511 }
512}
513
514/* Store inferior registers. */
515static void
85492558 516spu_store_registers (struct regcache *regcache, int regno)
a13e2c95
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517{
518 int fd;
519 CORE_ADDR addr;
520
521 /* ??? Some callers use 0 to mean all registers. */
522 if (regno == 0)
523 regno = -1;
524
525 /* We must be stopped on a spu_run system call. */
526 if (!parse_spufs_run (&fd, &addr))
527 return;
528
529 /* The NPC register is found at ADDR. */
530 if (regno == -1 || regno == SPU_PC_REGNUM)
531 {
532 char buf[4];
85492558 533 collect_register (regcache, SPU_PC_REGNUM, buf);
a13e2c95
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534 store_ppc_memory (addr, buf, 4);
535 }
536
537 /* The GPRs are found in the "regs" spufs file. */
538 if (regno == -1 || (regno >= 0 && regno < SPU_NUM_CORE_REGS))
539 {
540 unsigned char buf[16*SPU_NUM_CORE_REGS];
541 char annex[32];
542 int i;
543
544 for (i = 0; i < SPU_NUM_CORE_REGS; i++)
85492558 545 collect_register (regcache, i, buf + i*16);
a13e2c95
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546
547 sprintf (annex, "%d/regs", fd);
548 spu_proc_xfer_spu (annex, NULL, buf, 0, sizeof buf);
549 }
550}
551
552/* Copy LEN bytes from inferior's memory starting at MEMADDR
553 to debugger memory starting at MYADDR. */
554static int
555spu_read_memory (CORE_ADDR memaddr, unsigned char *myaddr, int len)
556{
557 int fd, ret;
558 CORE_ADDR addr;
d2ed6730
UW
559 char annex[32], lslr_annex[32], buf[32];
560 CORE_ADDR lslr;
a13e2c95
UW
561
562 /* We must be stopped on a spu_run system call. */
563 if (!parse_spufs_run (&fd, &addr))
564 return 0;
565
566 /* Use the "mem" spufs file to access SPU local store. */
567 sprintf (annex, "%d/mem", fd);
568 ret = spu_proc_xfer_spu (annex, myaddr, NULL, memaddr, len);
d2ed6730
UW
569 if (ret > 0)
570 return ret == len ? 0 : EIO;
571
572 /* SPU local store access wraps the address around at the
573 local store limit. We emulate this here. To avoid needing
574 an extra access to retrieve the LSLR, we only do that after
575 trying the original address first, and getting end-of-file. */
576 sprintf (lslr_annex, "%d/lslr", fd);
577 memset (buf, 0, sizeof buf);
578 if (spu_proc_xfer_spu (lslr_annex, (unsigned char *)buf, NULL,
579 0, sizeof buf) <= 0)
580 return ret;
581
582 lslr = strtoul (buf, NULL, 16);
583 ret = spu_proc_xfer_spu (annex, myaddr, NULL, memaddr & lslr, len);
584
a13e2c95
UW
585 return ret == len ? 0 : EIO;
586}
587
588/* Copy LEN bytes of data from debugger memory at MYADDR
589 to inferior's memory at MEMADDR.
590 On failure (cannot write the inferior)
591 returns the value of errno. */
592static int
593spu_write_memory (CORE_ADDR memaddr, const unsigned char *myaddr, int len)
594{
595 int fd, ret;
596 CORE_ADDR addr;
d2ed6730
UW
597 char annex[32], lslr_annex[32], buf[32];
598 CORE_ADDR lslr;
a13e2c95
UW
599
600 /* We must be stopped on a spu_run system call. */
601 if (!parse_spufs_run (&fd, &addr))
602 return 0;
603
604 /* Use the "mem" spufs file to access SPU local store. */
605 sprintf (annex, "%d/mem", fd);
606 ret = spu_proc_xfer_spu (annex, NULL, myaddr, memaddr, len);
d2ed6730
UW
607 if (ret > 0)
608 return ret == len ? 0 : EIO;
609
610 /* SPU local store access wraps the address around at the
611 local store limit. We emulate this here. To avoid needing
612 an extra access to retrieve the LSLR, we only do that after
613 trying the original address first, and getting end-of-file. */
614 sprintf (lslr_annex, "%d/lslr", fd);
615 memset (buf, 0, sizeof buf);
616 if (spu_proc_xfer_spu (lslr_annex, (unsigned char *)buf, NULL,
617 0, sizeof buf) <= 0)
618 return ret;
619
620 lslr = strtoul (buf, NULL, 16);
621 ret = spu_proc_xfer_spu (annex, NULL, myaddr, memaddr & lslr, len);
622
a13e2c95
UW
623 return ret == len ? 0 : EIO;
624}
625
626/* Look up special symbols -- unneded here. */
627static void
628spu_look_up_symbols (void)
629{
630}
631
632/* Send signal to inferior. */
633static void
ef57601b 634spu_request_interrupt (void)
a13e2c95 635{
5472f405 636 syscall (SYS_tkill, ptid_get_lwp (current_ptid), SIGINT);
a13e2c95
UW
637}
638
a13e2c95
UW
639static struct target_ops spu_target_ops = {
640 spu_create_inferior,
641 spu_attach,
642 spu_kill,
643 spu_detach,
505106cd 644 spu_mourn,
444d6139 645 spu_join,
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646 spu_thread_alive,
647 spu_resume,
648 spu_wait,
649 spu_fetch_registers,
650 spu_store_registers,
90d74c30 651 NULL, /* prepare_to_access_memory */
0146f85b 652 NULL, /* done_accessing_memory */
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653 spu_read_memory,
654 spu_write_memory,
655 spu_look_up_symbols,
ef57601b 656 spu_request_interrupt,
a13e2c95 657 NULL,
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658 NULL,
659 NULL,
660 NULL,
661 NULL,
662 NULL,
663 NULL,
0e7f50da 664 spu_proc_xfer_spu,
59a016f0 665 hostio_last_error_from_errno,
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666};
667
668void
669initialize_low (void)
670{
671 static const unsigned char breakpoint[] = { 0x00, 0x00, 0x3f, 0xff };
672
673 set_target_ops (&spu_target_ops);
674 set_breakpoint_data (breakpoint, sizeof breakpoint);
d05b4ac3 675 init_registers_spu ();
a13e2c95 676}