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[deliverable/binutils-gdb.git] / gdb / spu-linux-nat.c
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771b4502 1/* SPU native-dependent code for GDB, the GNU debugger.
61baf725 2 Copyright (C) 2006-2017 Free Software Foundation, Inc.
771b4502
UW
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
771b4502
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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/>. */
771b4502
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20
21#include "defs.h"
22#include "gdbcore.h"
771b4502
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23#include "target.h"
24#include "inferior.h"
dab06dbe 25#include "inf-child.h"
771b4502
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26#include "inf-ptrace.h"
27#include "regcache.h"
28#include "symfile.h"
29#include "gdb_wait.h"
d5b25491 30#include "gdbthread.h"
92107356 31#include "gdb_bfd.h"
771b4502 32
5826e159 33#include "nat/gdb_ptrace.h"
771b4502
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34#include <asm/ptrace.h>
35#include <sys/types.h>
771b4502
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36
37#include "spu-tdep.h"
38
39/* PPU side system calls. */
40#define INSTR_SC 0x44000002
41#define NR_spu_run 0x0116
42
43
44/* Fetch PPU register REGNO. */
4179a487 45static ULONGEST
771b4502
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46fetch_ppc_register (int regno)
47{
48 PTRACE_TYPE_RET res;
49
dfd4cc63 50 int tid = ptid_get_lwp (inferior_ptid);
771b4502 51 if (tid == 0)
dfd4cc63 52 tid = ptid_get_pid (inferior_ptid);
771b4502
UW
53
54#ifndef __powerpc64__
55 /* If running as a 32-bit process on a 64-bit system, we attempt
56 to get the full 64-bit register content of the target process.
57 If the PPC special ptrace call fails, we're on a 32-bit system;
58 just fall through to the regular ptrace call in that case. */
59 {
60 gdb_byte buf[8];
61
62 errno = 0;
63 ptrace (PPC_PTRACE_PEEKUSR_3264, tid,
64 (PTRACE_TYPE_ARG3) (regno * 8), buf);
65 if (errno == 0)
66 ptrace (PPC_PTRACE_PEEKUSR_3264, tid,
67 (PTRACE_TYPE_ARG3) (regno * 8 + 4), buf + 4);
68 if (errno == 0)
b9efddcd 69 return (ULONGEST) *(uint64_t *)buf;
771b4502
UW
70 }
71#endif
72
73 errno = 0;
74 res = ptrace (PT_READ_U, tid,
75 (PTRACE_TYPE_ARG3) (regno * sizeof (PTRACE_TYPE_RET)), 0);
76 if (errno != 0)
77 {
78 char mess[128];
79 xsnprintf (mess, sizeof mess, "reading PPC register #%d", regno);
80 perror_with_name (_(mess));
81 }
82
4179a487 83 return (ULONGEST) (unsigned long) res;
771b4502
UW
84}
85
86/* Fetch WORD from PPU memory at (aligned) MEMADDR in thread TID. */
87static int
4179a487 88fetch_ppc_memory_1 (int tid, ULONGEST memaddr, PTRACE_TYPE_RET *word)
771b4502
UW
89{
90 errno = 0;
91
92#ifndef __powerpc64__
93 if (memaddr >> 32)
94 {
b9efddcd 95 uint64_t addr_8 = (uint64_t) memaddr;
771b4502
UW
96 ptrace (PPC_PTRACE_PEEKTEXT_3264, tid, (PTRACE_TYPE_ARG3) &addr_8, word);
97 }
98 else
99#endif
100 *word = ptrace (PT_READ_I, tid, (PTRACE_TYPE_ARG3) (size_t) memaddr, 0);
101
102 return errno;
103}
104
105/* Store WORD into PPU memory at (aligned) MEMADDR in thread TID. */
106static int
4179a487 107store_ppc_memory_1 (int tid, ULONGEST memaddr, PTRACE_TYPE_RET word)
771b4502
UW
108{
109 errno = 0;
110
111#ifndef __powerpc64__
112 if (memaddr >> 32)
113 {
b9efddcd 114 uint64_t addr_8 = (uint64_t) memaddr;
771b4502
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115 ptrace (PPC_PTRACE_POKEDATA_3264, tid, (PTRACE_TYPE_ARG3) &addr_8, word);
116 }
117 else
118#endif
119 ptrace (PT_WRITE_D, tid, (PTRACE_TYPE_ARG3) (size_t) memaddr, word);
120
121 return errno;
122}
123
124/* Fetch LEN bytes of PPU memory at MEMADDR to MYADDR. */
125static int
4179a487 126fetch_ppc_memory (ULONGEST memaddr, gdb_byte *myaddr, int len)
771b4502
UW
127{
128 int i, ret;
129
4179a487 130 ULONGEST addr = memaddr & -(ULONGEST) sizeof (PTRACE_TYPE_RET);
771b4502
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131 int count = ((((memaddr + len) - addr) + sizeof (PTRACE_TYPE_RET) - 1)
132 / sizeof (PTRACE_TYPE_RET));
133 PTRACE_TYPE_RET *buffer;
134
dfd4cc63 135 int tid = ptid_get_lwp (inferior_ptid);
771b4502 136 if (tid == 0)
dfd4cc63 137 tid = ptid_get_pid (inferior_ptid);
771b4502
UW
138
139 buffer = (PTRACE_TYPE_RET *) alloca (count * sizeof (PTRACE_TYPE_RET));
140 for (i = 0; i < count; i++, addr += sizeof (PTRACE_TYPE_RET))
b9efddcd
UW
141 {
142 ret = fetch_ppc_memory_1 (tid, addr, &buffer[i]);
143 if (ret)
144 return ret;
145 }
771b4502
UW
146
147 memcpy (myaddr,
148 (char *) buffer + (memaddr & (sizeof (PTRACE_TYPE_RET) - 1)),
149 len);
150
151 return 0;
152}
153
154/* Store LEN bytes from MYADDR to PPU memory at MEMADDR. */
155static int
4179a487 156store_ppc_memory (ULONGEST memaddr, const gdb_byte *myaddr, int len)
771b4502
UW
157{
158 int i, ret;
159
4179a487 160 ULONGEST addr = memaddr & -(ULONGEST) sizeof (PTRACE_TYPE_RET);
771b4502
UW
161 int count = ((((memaddr + len) - addr) + sizeof (PTRACE_TYPE_RET) - 1)
162 / sizeof (PTRACE_TYPE_RET));
163 PTRACE_TYPE_RET *buffer;
164
dfd4cc63 165 int tid = ptid_get_lwp (inferior_ptid);
771b4502 166 if (tid == 0)
dfd4cc63 167 tid = ptid_get_pid (inferior_ptid);
771b4502
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168
169 buffer = (PTRACE_TYPE_RET *) alloca (count * sizeof (PTRACE_TYPE_RET));
170
171 if (addr != memaddr || len < (int) sizeof (PTRACE_TYPE_RET))
b9efddcd
UW
172 {
173 ret = fetch_ppc_memory_1 (tid, addr, &buffer[0]);
174 if (ret)
175 return ret;
176 }
771b4502
UW
177
178 if (count > 1)
b9efddcd
UW
179 {
180 ret = fetch_ppc_memory_1 (tid, addr + (count - 1)
771b4502 181 * sizeof (PTRACE_TYPE_RET),
b9efddcd
UW
182 &buffer[count - 1]);
183 if (ret)
184 return ret;
185 }
771b4502
UW
186
187 memcpy ((char *) buffer + (memaddr & (sizeof (PTRACE_TYPE_RET) - 1)),
188 myaddr, len);
189
190 for (i = 0; i < count; i++, addr += sizeof (PTRACE_TYPE_RET))
b9efddcd
UW
191 {
192 ret = store_ppc_memory_1 (tid, addr, buffer[i]);
193 if (ret)
194 return ret;
195 }
771b4502
UW
196
197 return 0;
198}
199
200
201/* If the PPU thread is currently stopped on a spu_run system call,
202 return to FD and ADDR the file handle and NPC parameter address
203 used with the system call. Return non-zero if successful. */
204static int
4179a487 205parse_spufs_run (int *fd, ULONGEST *addr)
771b4502 206{
f5656ead 207 enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
771b4502 208 gdb_byte buf[4];
4179a487 209 ULONGEST pc = fetch_ppc_register (32); /* nip */
771b4502
UW
210
211 /* Fetch instruction preceding current NIP. */
212 if (fetch_ppc_memory (pc-4, buf, 4) != 0)
213 return 0;
214 /* It should be a "sc" instruction. */
e17a4113 215 if (extract_unsigned_integer (buf, 4, byte_order) != INSTR_SC)
771b4502
UW
216 return 0;
217 /* System call number should be NR_spu_run. */
218 if (fetch_ppc_register (0) != NR_spu_run)
219 return 0;
220
221 /* Register 3 contains fd, register 4 the NPC param pointer. */
222 *fd = fetch_ppc_register (34); /* orig_gpr3 */
223 *addr = fetch_ppc_register (4);
224 return 1;
225}
226
227
edcc890f
YQ
228/* Implement the to_xfer_partial target_ops method for TARGET_OBJECT_SPU.
229 Copy LEN bytes at OFFSET in spufs file ANNEX into/from READBUF or WRITEBUF,
771b4502 230 using the /proc file system. */
edcc890f 231
9b409511 232static enum target_xfer_status
771b4502
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233spu_proc_xfer_spu (const char *annex, gdb_byte *readbuf,
234 const gdb_byte *writebuf,
9b409511 235 ULONGEST offset, ULONGEST len, ULONGEST *xfered_len)
771b4502
UW
236{
237 char buf[128];
238 int fd = 0;
239 int ret = -1;
dfd4cc63 240 int pid = ptid_get_pid (inferior_ptid);
771b4502
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241
242 if (!annex)
9b409511 243 return TARGET_XFER_EOF;
771b4502
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244
245 xsnprintf (buf, sizeof buf, "/proc/%d/fd/%s", pid, annex);
246 fd = open (buf, writebuf? O_WRONLY : O_RDONLY);
247 if (fd <= 0)
2ed4b548 248 return TARGET_XFER_E_IO;
771b4502
UW
249
250 if (offset != 0
251 && lseek (fd, (off_t) offset, SEEK_SET) != (off_t) offset)
252 {
253 close (fd);
9b409511 254 return TARGET_XFER_EOF;
771b4502
UW
255 }
256
257 if (writebuf)
258 ret = write (fd, writebuf, (size_t) len);
259 else if (readbuf)
260 ret = read (fd, readbuf, (size_t) len);
261
262 close (fd);
9b409511
YQ
263 if (ret < 0)
264 return TARGET_XFER_E_IO;
265 else if (ret == 0)
266 return TARGET_XFER_EOF;
267 else
268 {
269 *xfered_len = (ULONGEST) ret;
270 return TARGET_XFER_OK;
271 }
771b4502
UW
272}
273
274
275/* Inferior memory should contain an SPE executable image at location ADDR.
276 Allocate a BFD representing that executable. Return NULL on error. */
277
278static void *
279spu_bfd_iovec_open (struct bfd *nbfd, void *open_closure)
280{
281 return open_closure;
282}
283
284static int
285spu_bfd_iovec_close (struct bfd *nbfd, void *stream)
286{
287 xfree (stream);
39ed5604
JK
288
289 /* Zero means success. */
290 return 0;
771b4502
UW
291}
292
293static file_ptr
294spu_bfd_iovec_pread (struct bfd *abfd, void *stream, void *buf,
295 file_ptr nbytes, file_ptr offset)
296{
4179a487 297 ULONGEST addr = *(ULONGEST *)stream;
771b4502 298
c1aebf87 299 if (fetch_ppc_memory (addr + offset, (gdb_byte *)buf, nbytes) != 0)
771b4502
UW
300 {
301 bfd_set_error (bfd_error_invalid_operation);
302 return -1;
303 }
304
305 return nbytes;
306}
307
f6cf9273
AM
308static int
309spu_bfd_iovec_stat (struct bfd *abfd, void *stream, struct stat *sb)
310{
311 /* We don't have an easy way of finding the size of embedded spu
312 images. We could parse the in-memory ELF header and section
313 table to find the extent of the last section but that seems
314 pointless when the size is needed only for checks of other
315 parsed values in dbxread.c. */
326a5c7e 316 memset (sb, 0, sizeof (struct stat));
f6cf9273
AM
317 sb->st_size = INT_MAX;
318 return 0;
319}
320
192b62ce 321static gdb_bfd_ref_ptr
4179a487 322spu_bfd_open (ULONGEST addr)
771b4502 323{
9592c5d0 324 asection *spu_name;
771b4502 325
8d749320 326 ULONGEST *open_closure = XNEW (ULONGEST);
771b4502
UW
327 *open_closure = addr;
328
192b62ce
TT
329 gdb_bfd_ref_ptr nbfd (gdb_bfd_openr_iovec ("<in-memory>", "elf32-spu",
330 spu_bfd_iovec_open, open_closure,
331 spu_bfd_iovec_pread,
332 spu_bfd_iovec_close,
333 spu_bfd_iovec_stat));
334 if (nbfd == NULL)
771b4502
UW
335 return NULL;
336
192b62ce
TT
337 if (!bfd_check_format (nbfd.get (), bfd_object))
338 return NULL;
771b4502 339
9592c5d0 340 /* Retrieve SPU name note and update BFD name. */
192b62ce 341 spu_name = bfd_get_section_by_name (nbfd.get (), ".note.spu_name");
9592c5d0
UW
342 if (spu_name)
343 {
192b62ce 344 int sect_size = bfd_section_size (nbfd.get (), spu_name);
9592c5d0
UW
345 if (sect_size > 20)
346 {
c1aebf87 347 char *buf = (char *)alloca (sect_size - 20 + 1);
192b62ce
TT
348 bfd_get_section_contents (nbfd.get (), spu_name, buf, 20,
349 sect_size - 20);
9592c5d0
UW
350 buf[sect_size - 20] = '\0';
351
352 xfree ((char *)nbfd->filename);
353 nbfd->filename = xstrdup (buf);
354 }
355 }
356
771b4502
UW
357 return nbfd;
358}
359
360/* INFERIOR_FD is a file handle passed by the inferior to the
361 spu_run system call. Assuming the SPE context was allocated
362 by the libspe library, try to retrieve the main SPE executable
363 file from its copy within the target process. */
364static void
365spu_symbol_file_add_from_memory (int inferior_fd)
366{
4179a487 367 ULONGEST addr;
771b4502 368
22c90ac1 369 gdb_byte id[128];
771b4502 370 char annex[32];
9b409511
YQ
371 ULONGEST len;
372 enum target_xfer_status status;
771b4502
UW
373
374 /* Read object ID. */
375 xsnprintf (annex, sizeof annex, "%d/object-id", inferior_fd);
9b409511
YQ
376 status = spu_proc_xfer_spu (annex, id, NULL, 0, sizeof id, &len);
377 if (status != TARGET_XFER_OK || len >= sizeof id)
771b4502
UW
378 return;
379 id[len] = 0;
22c90ac1 380 addr = strtoulst ((const char *) id, NULL, 16);
b9efddcd 381 if (!addr)
771b4502
UW
382 return;
383
384 /* Open BFD representing SPE executable and read its symbols. */
192b62ce
TT
385 gdb_bfd_ref_ptr nbfd (spu_bfd_open (addr));
386 if (nbfd != NULL)
8ac244b4 387 {
192b62ce 388 symbol_file_add_from_bfd (nbfd.get (), bfd_get_filename (nbfd),
d64ad97c 389 SYMFILE_VERBOSE | SYMFILE_MAINLINE,
8ac244b4 390 NULL, 0, NULL);
8ac244b4 391 }
771b4502
UW
392}
393
394
395/* Override the post_startup_inferior routine to continue running
396 the inferior until the first spu_run system call. */
397static void
2e97a79e 398spu_child_post_startup_inferior (struct target_ops *self, ptid_t ptid)
771b4502
UW
399{
400 int fd;
4179a487 401 ULONGEST addr;
771b4502 402
dfd4cc63 403 int tid = ptid_get_lwp (ptid);
771b4502 404 if (tid == 0)
dfd4cc63 405 tid = ptid_get_pid (ptid);
771b4502
UW
406
407 while (!parse_spufs_run (&fd, &addr))
408 {
409 ptrace (PT_SYSCALL, tid, (PTRACE_TYPE_ARG3) 0, 0);
410 waitpid (tid, NULL, __WALL | __WNOTHREAD);
411 }
412}
413
414/* Override the post_attach routine to try load the SPE executable
415 file image from its copy inside the target process. */
416static void
f045800c 417spu_child_post_attach (struct target_ops *self, int pid)
771b4502
UW
418{
419 int fd;
4179a487 420 ULONGEST addr;
771b4502
UW
421
422 /* Like child_post_startup_inferior, if we happened to attach to
423 the inferior while it wasn't currently in spu_run, continue
424 running it until we get back there. */
425 while (!parse_spufs_run (&fd, &addr))
426 {
427 ptrace (PT_SYSCALL, pid, (PTRACE_TYPE_ARG3) 0, 0);
428 waitpid (pid, NULL, __WALL | __WNOTHREAD);
429 }
430
431 /* If the user has not provided an executable file, try to extract
432 the image from inside the target process. */
433 if (!get_exec_file (0))
434 spu_symbol_file_add_from_memory (fd);
435}
436
437/* Wait for child PTID to do something. Return id of the child,
438 minus_one_ptid in case of error; store status into *OURSTATUS. */
439static ptid_t
117de6a9 440spu_child_wait (struct target_ops *ops,
47608cb1 441 ptid_t ptid, struct target_waitstatus *ourstatus, int options)
771b4502
UW
442{
443 int save_errno;
444 int status;
445 pid_t pid;
446
447 do
448 {
449 set_sigint_trap (); /* Causes SIGINT to be passed on to the
450 attached process. */
771b4502 451
dfd4cc63 452 pid = waitpid (ptid_get_pid (ptid), &status, 0);
771b4502
UW
453 if (pid == -1 && errno == ECHILD)
454 /* Try again with __WCLONE to check cloned processes. */
dfd4cc63 455 pid = waitpid (ptid_get_pid (ptid), &status, __WCLONE);
771b4502
UW
456
457 save_errno = errno;
458
459 /* Make sure we don't report an event for the exit of the
460 original program, if we've detached from it. */
dfd4cc63
LM
461 if (pid != -1 && !WIFSTOPPED (status)
462 && pid != ptid_get_pid (inferior_ptid))
771b4502
UW
463 {
464 pid = -1;
465 save_errno = EINTR;
466 }
467
771b4502
UW
468 clear_sigint_trap ();
469 }
470 while (pid == -1 && save_errno == EINTR);
471
472 if (pid == -1)
473 {
b9efddcd 474 warning (_("Child process unexpectedly missing: %s"),
771b4502
UW
475 safe_strerror (save_errno));
476
477 /* Claim it exited with unknown signal. */
478 ourstatus->kind = TARGET_WAITKIND_SIGNALLED;
a493e3e2 479 ourstatus->value.sig = GDB_SIGNAL_UNKNOWN;
fb66883a 480 return inferior_ptid;
771b4502
UW
481 }
482
483 store_waitstatus (ourstatus, status);
484 return pid_to_ptid (pid);
485}
486
487/* Override the fetch_inferior_register routine. */
488static void
28439f5e
PA
489spu_fetch_inferior_registers (struct target_ops *ops,
490 struct regcache *regcache, int regno)
771b4502
UW
491{
492 int fd;
4179a487 493 ULONGEST addr;
771b4502
UW
494
495 /* We must be stopped on a spu_run system call. */
496 if (!parse_spufs_run (&fd, &addr))
497 return;
498
499 /* The ID register holds the spufs file handle. */
500 if (regno == -1 || regno == SPU_ID_REGNUM)
501 {
e17a4113
UW
502 struct gdbarch *gdbarch = get_regcache_arch (regcache);
503 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
e362b510 504 gdb_byte buf[4];
e17a4113 505 store_unsigned_integer (buf, 4, byte_order, fd);
56be3814 506 regcache_raw_supply (regcache, SPU_ID_REGNUM, buf);
771b4502
UW
507 }
508
509 /* The NPC register is found at ADDR. */
510 if (regno == -1 || regno == SPU_PC_REGNUM)
511 {
512 gdb_byte buf[4];
513 if (fetch_ppc_memory (addr, buf, 4) == 0)
56be3814 514 regcache_raw_supply (regcache, SPU_PC_REGNUM, buf);
771b4502
UW
515 }
516
517 /* The GPRs are found in the "regs" spufs file. */
518 if (regno == -1 || (regno >= 0 && regno < SPU_NUM_GPRS))
519 {
520 gdb_byte buf[16 * SPU_NUM_GPRS];
521 char annex[32];
522 int i;
9b409511 523 ULONGEST len;
771b4502
UW
524
525 xsnprintf (annex, sizeof annex, "%d/regs", fd);
9b409511
YQ
526 if ((spu_proc_xfer_spu (annex, buf, NULL, 0, sizeof buf, &len)
527 == TARGET_XFER_OK)
528 && len == sizeof buf)
771b4502 529 for (i = 0; i < SPU_NUM_GPRS; i++)
56be3814 530 regcache_raw_supply (regcache, i, buf + i*16);
771b4502
UW
531 }
532}
533
534/* Override the store_inferior_register routine. */
535static void
28439f5e
PA
536spu_store_inferior_registers (struct target_ops *ops,
537 struct regcache *regcache, int regno)
771b4502
UW
538{
539 int fd;
4179a487 540 ULONGEST addr;
771b4502
UW
541
542 /* We must be stopped on a spu_run system call. */
543 if (!parse_spufs_run (&fd, &addr))
544 return;
545
546 /* The NPC register is found at ADDR. */
547 if (regno == -1 || regno == SPU_PC_REGNUM)
548 {
549 gdb_byte buf[4];
56be3814 550 regcache_raw_collect (regcache, SPU_PC_REGNUM, buf);
771b4502
UW
551 store_ppc_memory (addr, buf, 4);
552 }
553
554 /* The GPRs are found in the "regs" spufs file. */
555 if (regno == -1 || (regno >= 0 && regno < SPU_NUM_GPRS))
556 {
557 gdb_byte buf[16 * SPU_NUM_GPRS];
558 char annex[32];
559 int i;
9b409511 560 ULONGEST len;
771b4502
UW
561
562 for (i = 0; i < SPU_NUM_GPRS; i++)
56be3814 563 regcache_raw_collect (regcache, i, buf + i*16);
771b4502
UW
564
565 xsnprintf (annex, sizeof annex, "%d/regs", fd);
9b409511 566 spu_proc_xfer_spu (annex, NULL, buf, 0, sizeof buf, &len);
771b4502
UW
567 }
568}
569
570/* Override the to_xfer_partial routine. */
9b409511 571static enum target_xfer_status
771b4502
UW
572spu_xfer_partial (struct target_ops *ops,
573 enum target_object object, const char *annex,
574 gdb_byte *readbuf, const gdb_byte *writebuf,
9b409511 575 ULONGEST offset, ULONGEST len, ULONGEST *xfered_len)
771b4502 576{
23d964e7 577 if (object == TARGET_OBJECT_SPU)
9b409511
YQ
578 return spu_proc_xfer_spu (annex, readbuf, writebuf, offset, len,
579 xfered_len);
23d964e7 580
771b4502
UW
581 if (object == TARGET_OBJECT_MEMORY)
582 {
583 int fd;
4179a487 584 ULONGEST addr;
d2ed6730
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585 char mem_annex[32], lslr_annex[32];
586 gdb_byte buf[32];
587 ULONGEST lslr;
9b409511 588 enum target_xfer_status ret;
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589
590 /* We must be stopped on a spu_run system call. */
591 if (!parse_spufs_run (&fd, &addr))
9b409511 592 return TARGET_XFER_EOF;
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593
594 /* Use the "mem" spufs file to access SPU local store. */
595 xsnprintf (mem_annex, sizeof mem_annex, "%d/mem", fd);
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596 ret = spu_proc_xfer_spu (mem_annex, readbuf, writebuf, offset, len,
597 xfered_len);
598 if (ret == TARGET_XFER_OK)
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599 return ret;
600
601 /* SPU local store access wraps the address around at the
602 local store limit. We emulate this here. To avoid needing
603 an extra access to retrieve the LSLR, we only do that after
604 trying the original address first, and getting end-of-file. */
605 xsnprintf (lslr_annex, sizeof lslr_annex, "%d/lslr", fd);
606 memset (buf, 0, sizeof buf);
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607 if (spu_proc_xfer_spu (lslr_annex, buf, NULL, 0, sizeof buf, xfered_len)
608 != TARGET_XFER_OK)
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609 return ret;
610
22c90ac1 611 lslr = strtoulst ((const char *) buf, NULL, 16);
d2ed6730 612 return spu_proc_xfer_spu (mem_annex, readbuf, writebuf,
9b409511 613 offset & lslr, len, xfered_len);
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614 }
615
2ed4b548 616 return TARGET_XFER_E_IO;
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617}
618
619/* Override the to_can_use_hw_breakpoint routine. */
620static int
5461485a 621spu_can_use_hw_breakpoint (struct target_ops *self,
f486487f 622 enum bptype type, int cnt, int othertype)
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623{
624 return 0;
625}
626
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627/* -Wmissing-prototypes */
628extern initialize_file_ftype _initialize_spu_nat;
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629
630/* Initialize SPU native target. */
631void
632_initialize_spu_nat (void)
633{
634 /* Generic ptrace methods. */
635 struct target_ops *t;
636 t = inf_ptrace_target ();
637
638 /* Add SPU methods. */
639 t->to_post_attach = spu_child_post_attach;
640 t->to_post_startup_inferior = spu_child_post_startup_inferior;
641 t->to_wait = spu_child_wait;
642 t->to_fetch_registers = spu_fetch_inferior_registers;
643 t->to_store_registers = spu_store_inferior_registers;
644 t->to_xfer_partial = spu_xfer_partial;
645 t->to_can_use_hw_breakpoint = spu_can_use_hw_breakpoint;
646
647 /* Register SPU target. */
648 add_target (t);
649}
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