2004-05-13 Andrew Cagney <cagney@redhat.com>
[deliverable/binutils-gdb.git] / gdb / aix-thread.c
CommitLineData
c11d79f2
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1/* Low level interface for debugging AIX 4.3+ pthreads.
2
3 Copyright 1999, 2000, 2002 Free Software Foundation, Inc.
4 Written by Nick Duffek <nsd@redhat.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
10 the Free Software Foundation; either version 2 of the License, or
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
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 59 Temple Place - Suite 330,
21 Boston, MA 02111-1307, USA. */
22
23
24/* This module uses the libpthdebug.a library provided by AIX 4.3+ for
25 debugging pthread applications.
26
27 Some name prefix conventions:
28 pthdb_ provided by libpthdebug.a
29 pdc_ callbacks that this module provides to libpthdebug.a
30 pd_ variables or functions interfacing with libpthdebug.a
31
32 libpthdebug peculiarities:
33
0fe7bf7b
MS
34 - pthdb_ptid_pthread() is prototyped in <sys/pthdebug.h>, but
35 it's not documented, and after several calls it stops working
36 and causes other libpthdebug functions to fail.
c11d79f2 37
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MS
38 - pthdb_tid_pthread() doesn't always work after
39 pthdb_session_update(), but it does work after cycling through
40 all threads using pthdb_pthread().
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41
42 */
43
44#include "defs.h"
61c5da0b 45#include "gdb_assert.h"
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46#include "gdbthread.h"
47#include "target.h"
48#include "inferior.h"
49#include "regcache.h"
8e2c28d4 50#include "gdbcmd.h"
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51#include "language.h" /* for local_hex_string() */
52#include "ppc-tdep.h"
c11d79f2 53
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54#include <procinfo.h>
55#include <sys/types.h>
56#include <sys/ptrace.h>
57#include <sys/reg.h>
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58#include <sched.h>
59#include <sys/pthdebug.h>
60
0fe7bf7b 61/* Whether to emit debugging output. */
8e2c28d4 62static int debug_aix_thread;
c11d79f2 63
0fe7bf7b 64/* In AIX 5.1, functions use pthdb_tid_t instead of tid_t. */
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65#ifndef PTHDB_VERSION_3
66#define pthdb_tid_t tid_t
67#endif
68
0fe7bf7b 69/* Return whether to treat PID as a debuggable thread id. */
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70
71#define PD_TID(ptid) (pd_active && ptid_get_tid (ptid) != 0)
72
73/* Build a thread ptid. */
74#define BUILD_THREAD(TID, PID) ptid_build (PID, 0, TID)
75
76/* Build and lwp ptid. */
77#define BUILD_LWP(LWP, PID) MERGEPID (PID, LWP)
78
c11d79f2 79/* pthdb_user_t value that we pass to pthdb functions. 0 causes
0fe7bf7b 80 PTHDB_BAD_USER errors, so use 1. */
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81
82#define PD_USER 1
83
0fe7bf7b 84/* Success and failure values returned by pthdb callbacks. */
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85
86#define PDC_SUCCESS PTHDB_SUCCESS
87#define PDC_FAILURE PTHDB_CALLBACK
88
0fe7bf7b 89/* Private data attached to each element in GDB's thread list. */
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90
91struct private_thread_info {
0fe7bf7b 92 pthdb_pthread_t pdtid; /* thread's libpthdebug id */
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93 pthdb_tid_t tid; /* kernel thread id */
94};
95
0fe7bf7b 96/* Information about a thread of which libpthdebug is aware. */
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97
98struct pd_thread {
99 pthdb_pthread_t pdtid;
100 pthread_t pthid;
101 pthdb_tid_t tid;
102};
103
0fe7bf7b 104/* This module's target-specific operations, active while pd_able is true. */
c11d79f2 105
206d3d3c 106static struct target_ops aix_thread_ops;
c11d79f2 107
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108/* Copy of the target over which ops is pushed.
109 This is more convenient than a pointer to child_ops or core_ops,
110 because they lack current_target's default callbacks. */
c11d79f2 111
206d3d3c 112static struct target_ops base_target;
c11d79f2 113
0fe7bf7b
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114/* Address of the function that libpthread will call when libpthdebug
115 is ready to be initialized. */
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116
117static CORE_ADDR pd_brk_addr;
118
0fe7bf7b 119/* Whether the current application is debuggable by pthdb. */
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120
121static int pd_able = 0;
122
0fe7bf7b 123/* Whether a threaded application is being debugged. */
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124
125static int pd_active = 0;
126
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127/* Whether the current architecture is 64-bit.
128 Only valid when pd_able is true. */
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129
130static int arch64;
131
9a4105ab
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132/* Saved pointer to previous owner of
133 deprecated_target_new_objfile_hook. */
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134
135static void (*target_new_objfile_chain)(struct objfile *);
136
0fe7bf7b 137/* Forward declarations for pthdb callbacks. */
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138
139static int pdc_symbol_addrs (pthdb_user_t, pthdb_symbol_t *, int);
140static int pdc_read_data (pthdb_user_t, void *, pthdb_addr_t, size_t);
141static int pdc_write_data (pthdb_user_t, void *, pthdb_addr_t, size_t);
142static int pdc_read_regs (pthdb_user_t user, pthdb_tid_t tid,
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143 unsigned long long flags,
144 pthdb_context_t *context);
c11d79f2 145static int pdc_write_regs (pthdb_user_t user, pthdb_tid_t tid,
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146 unsigned long long flags,
147 pthdb_context_t *context);
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148static int pdc_alloc (pthdb_user_t, size_t, void **);
149static int pdc_realloc (pthdb_user_t, void *, size_t, void **);
150static int pdc_dealloc (pthdb_user_t, void *);
151
0fe7bf7b 152/* pthdb callbacks. */
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153
154static pthdb_callbacks_t pd_callbacks = {
155 pdc_symbol_addrs,
156 pdc_read_data,
157 pdc_write_data,
158 pdc_read_regs,
159 pdc_write_regs,
160 pdc_alloc,
161 pdc_realloc,
162 pdc_dealloc,
163 NULL
164};
165
0fe7bf7b 166/* Current pthdb session. */
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167
168static pthdb_session_t pd_session;
169
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170/* Return a printable representation of pthdebug function return
171 STATUS. */
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172
173static char *
174pd_status2str (int status)
175{
176 switch (status)
177 {
178 case PTHDB_SUCCESS: return "SUCCESS";
179 case PTHDB_NOSYS: return "NOSYS";
180 case PTHDB_NOTSUP: return "NOTSUP";
181 case PTHDB_BAD_VERSION: return "BAD_VERSION";
182 case PTHDB_BAD_USER: return "BAD_USER";
183 case PTHDB_BAD_SESSION: return "BAD_SESSION";
184 case PTHDB_BAD_MODE: return "BAD_MODE";
185 case PTHDB_BAD_FLAGS: return "BAD_FLAGS";
186 case PTHDB_BAD_CALLBACK: return "BAD_CALLBACK";
187 case PTHDB_BAD_POINTER: return "BAD_POINTER";
188 case PTHDB_BAD_CMD: return "BAD_CMD";
189 case PTHDB_BAD_PTHREAD: return "BAD_PTHREAD";
190 case PTHDB_BAD_ATTR: return "BAD_ATTR";
191 case PTHDB_BAD_MUTEX: return "BAD_MUTEX";
192 case PTHDB_BAD_MUTEXATTR: return "BAD_MUTEXATTR";
193 case PTHDB_BAD_COND: return "BAD_COND";
194 case PTHDB_BAD_CONDATTR: return "BAD_CONDATTR";
195 case PTHDB_BAD_RWLOCK: return "BAD_RWLOCK";
196 case PTHDB_BAD_RWLOCKATTR: return "BAD_RWLOCKATTR";
197 case PTHDB_BAD_KEY: return "BAD_KEY";
198 case PTHDB_BAD_PTID: return "BAD_PTID";
199 case PTHDB_BAD_TID: return "BAD_TID";
200 case PTHDB_CALLBACK: return "CALLBACK";
201 case PTHDB_CONTEXT: return "CONTEXT";
202 case PTHDB_HELD: return "HELD";
203 case PTHDB_NOT_HELD: return "NOT_HELD";
204 case PTHDB_MEMORY: return "MEMORY";
205 case PTHDB_NOT_PTHREADED: return "NOT_PTHREADED";
206 case PTHDB_SYMBOL: return "SYMBOL";
207 case PTHDB_NOT_AVAIL: return "NOT_AVAIL";
208 case PTHDB_INTERNAL: return "INTERNAL";
209 default: return "UNKNOWN";
210 }
211}
212
0fe7bf7b
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213/* A call to ptrace(REQ, ID, ...) just returned RET. Check for
214 exceptional conditions and either return nonlocally or else return
215 1 for success and 0 for failure. */
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216
217static int
218ptrace_check (int req, int id, int ret)
219{
220 if (ret == 0 && !errno)
221 return 1;
222
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223 /* According to ptrace(2), ptrace may fail with EPERM if "the
224 Identifier parameter corresponds to a kernel thread which is
225 stopped in kernel mode and whose computational state cannot be
226 read or written." This happens quite often with register reads. */
c11d79f2
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227
228 switch (req)
229 {
230 case PTT_READ_GPRS:
231 case PTT_READ_FPRS:
232 case PTT_READ_SPRS:
233 if (ret == -1 && errno == EPERM)
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234 {
235 if (debug_aix_thread)
0fe7bf7b 236 fprintf_unfiltered (gdb_stdlog,
27bae383 237 "ptrace (%d, %d) = %d (errno = %d)\n",
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238 req, id, ret, errno);
239 return ret == -1 ? 0 : 1;
240 }
c11d79f2
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241 break;
242 }
243 error ("aix-thread: ptrace (%d, %d) returned %d (errno = %d %s)",
be006b8b 244 req, id, ret, errno, safe_strerror (errno));
0fe7bf7b 245 return 0; /* Not reached. */
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246}
247
0fe7bf7b 248/* Call ptracex (REQ, ID, ADDR, DATA, BUF). Return success. */
c11d79f2
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249
250static int
251ptrace64aix (int req, int id, long long addr, int data, int *buf)
252{
253 errno = 0;
254 return ptrace_check (req, id, ptracex (req, id, addr, data, buf));
255}
256
0fe7bf7b 257/* Call ptrace (REQ, ID, ADDR, DATA, BUF). Return success. */
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258
259static int
260ptrace32 (int req, int id, int *addr, int data, int *buf)
261{
262 errno = 0;
0fe7bf7b 263 return ptrace_check (req, id,
206d3d3c 264 ptrace (req, id, (int *) addr, data, buf));
c11d79f2
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265}
266
0fe7bf7b
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267/* If *PIDP is a composite process/thread id, convert it to a
268 process id. */
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269
270static void
271pid_to_prc (ptid_t *ptidp)
272{
273 ptid_t ptid;
274
275 ptid = *ptidp;
276 if (PD_TID (ptid))
277 *ptidp = pid_to_ptid (PIDGET (ptid));
278}
279
0fe7bf7b
MS
280/* pthdb callback: for <i> from 0 to COUNT, set SYMBOLS[<i>].addr to
281 the address of SYMBOLS[<i>].name. */
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282
283static int
284pdc_symbol_addrs (pthdb_user_t user, pthdb_symbol_t *symbols, int count)
285{
286 struct minimal_symbol *ms;
287 int i;
288 char *name;
289
8e2c28d4
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290 if (debug_aix_thread)
291 fprintf_unfiltered (gdb_stdlog,
27bae383 292 "pdc_symbol_addrs (user = %ld, symbols = 0x%lx, count = %d)\n",
8e2c28d4 293 user, (long) symbols, count);
c11d79f2
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294
295 for (i = 0; i < count; i++)
296 {
297 name = symbols[i].name;
8e2c28d4 298 if (debug_aix_thread)
0fe7bf7b 299 fprintf_unfiltered (gdb_stdlog,
27bae383 300 " symbols[%d].name = \"%s\"\n", i, name);
c11d79f2
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301
302 if (!*name)
303 symbols[i].addr = 0;
304 else
305 {
306 if (!(ms = lookup_minimal_symbol (name, NULL, NULL)))
307 {
8e2c28d4 308 if (debug_aix_thread)
27bae383 309 fprintf_unfiltered (gdb_stdlog, " returning PDC_FAILURE\n");
c11d79f2
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310 return PDC_FAILURE;
311 }
312 symbols[i].addr = SYMBOL_VALUE_ADDRESS (ms);
313 }
8e2c28d4 314 if (debug_aix_thread)
27bae383
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315 fprintf_unfiltered (gdb_stdlog, " symbols[%d].addr = %s\n",
316 i, local_hex_string (symbols[i].addr));
c11d79f2 317 }
8e2c28d4 318 if (debug_aix_thread)
27bae383 319 fprintf_unfiltered (gdb_stdlog, " returning PDC_SUCCESS\n");
c11d79f2
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320 return PDC_SUCCESS;
321}
322
0fe7bf7b
MS
323/* Read registers call back function should be able to read the
324 context information of a debuggee kernel thread from an active
325 process or from a core file. The information should be formatted
326 in context64 form for both 32-bit and 64-bit process.
327 If successful return 0, else non-zero is returned. */
328
c11d79f2
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329static int
330pdc_read_regs (pthdb_user_t user,
331 pthdb_tid_t tid,
332 unsigned long long flags,
333 pthdb_context_t *context)
334{
0fe7bf7b
MS
335 /* This function doesn't appear to be used, so we could probably
336 just return 0 here. HOWEVER, if it is not defined, the OS will
337 complain and several thread debug functions will fail. In case
338 this is needed, I have implemented what I think it should do,
339 however this code is untested. */
340
c11d79f2
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341 uint64_t gprs64[32];
342 uint32_t gprs32[32];
343 double fprs[32];
344 struct ptxsprs sprs64;
345 struct ptsprs sprs32;
346
8e2c28d4 347 if (debug_aix_thread)
27bae383
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348 fprintf_unfiltered (gdb_stdlog, "pdc_read_regs tid=%d flags=%s\n",
349 (int) tid, local_hex_string (flags));
c11d79f2 350
0fe7bf7b 351 /* General-purpose registers. */
c11d79f2
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352 if (flags & PTHDB_FLAG_GPRS)
353 {
354 if (arch64)
355 {
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MS
356 if (!ptrace64aix (PTT_READ_GPRS, tid,
357 (unsigned long) gprs64, 0, NULL))
c11d79f2
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358 memset (gprs64, 0, sizeof (gprs64));
359 memcpy (context->gpr, gprs64, sizeof(gprs64));
360 }
361 else
362 {
363 if (!ptrace32 (PTT_READ_GPRS, tid, gprs32, 0, NULL))
364 memset (gprs32, 0, sizeof (gprs32));
365 memcpy (context->gpr, gprs32, sizeof(gprs32));
366 }
367 }
368
0fe7bf7b 369 /* Floating-point registers. */
c11d79f2
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370 if (flags & PTHDB_FLAG_FPRS)
371 {
372 if (!ptrace32 (PTT_READ_FPRS, tid, (int *) fprs, 0, NULL))
373 memset (fprs, 0, sizeof (fprs));
374 memcpy (context->fpr, fprs, sizeof(fprs));
375 }
376
0fe7bf7b 377 /* Special-purpose registers. */
c11d79f2
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378 if (flags & PTHDB_FLAG_SPRS)
379 {
380 if (arch64)
381 {
0fe7bf7b
MS
382 if (!ptrace64aix (PTT_READ_SPRS, tid,
383 (unsigned long) &sprs64, 0, NULL))
c11d79f2
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384 memset (&sprs64, 0, sizeof (sprs64));
385 memcpy (&context->msr, &sprs64, sizeof(sprs64));
386 }
387 else
388 {
389 if (!ptrace32 (PTT_READ_SPRS, tid, (int *) &sprs32, 0, NULL))
390 memset (&sprs32, 0, sizeof (sprs32));
391 memcpy (&context->msr, &sprs32, sizeof(sprs32));
392 }
393 }
394 return 0;
395}
396
0fe7bf7b
MS
397/* Write register function should be able to write requested context
398 information to specified debuggee's kernel thread id.
399 If successful return 0, else non-zero is returned. */
400
c11d79f2
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401static int
402pdc_write_regs (pthdb_user_t user,
403 pthdb_tid_t tid,
404 unsigned long long flags,
405 pthdb_context_t *context)
406{
0fe7bf7b
MS
407 /* This function doesn't appear to be used, so we could probably
408 just return 0 here. HOWEVER, if it is not defined, the OS will
409 complain and several thread debug functions will fail. In case
410 this is needed, I have implemented what I think it should do,
411 however this code is untested. */
c11d79f2 412
8e2c28d4 413 if (debug_aix_thread)
27bae383
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414 fprintf_unfiltered (gdb_stdlog, "pdc_write_regs tid=%d flags=%s\n",
415 (int) tid, local_hex_string (flags));
c11d79f2 416
0fe7bf7b 417 /* General-purpose registers. */
c11d79f2
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418 if (flags & PTHDB_FLAG_GPRS)
419 {
420 if (arch64)
0fe7bf7b 421 ptrace64aix (PTT_WRITE_GPRS, tid,
206d3d3c 422 (unsigned long) context->gpr, 0, NULL);
c11d79f2 423 else
206d3d3c 424 ptrace32 (PTT_WRITE_GPRS, tid, (int *) context->gpr, 0, NULL);
c11d79f2
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425 }
426
0fe7bf7b 427 /* Floating-point registers. */
c11d79f2
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428 if (flags & PTHDB_FLAG_FPRS)
429 {
206d3d3c 430 ptrace32 (PTT_WRITE_FPRS, tid, (int *) context->fpr, 0, NULL);
c11d79f2
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431 }
432
0fe7bf7b 433 /* Special-purpose registers. */
c11d79f2
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434 if (flags & PTHDB_FLAG_SPRS)
435 {
436 if (arch64)
437 {
0fe7bf7b
MS
438 ptrace64aix (PTT_WRITE_SPRS, tid,
439 (unsigned long) &context->msr, 0, NULL);
c11d79f2
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440 }
441 else
442 {
206d3d3c 443 ptrace32 (PTT_WRITE_SPRS, tid, (int *) &context->msr, 0, NULL);
c11d79f2
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444 }
445 }
446 return 0;
447}
448
0fe7bf7b 449/* pthdb callback: read LEN bytes from process ADDR into BUF. */
c11d79f2
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450
451static int
0fe7bf7b
MS
452pdc_read_data (pthdb_user_t user, void *buf,
453 pthdb_addr_t addr, size_t len)
c11d79f2
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454{
455 int status, ret;
456
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457 if (debug_aix_thread)
458 fprintf_unfiltered (gdb_stdlog,
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459 "pdc_read_data (user = %ld, buf = 0x%lx, addr = %s, len = %ld)\n",
460 user, (long) buf, local_hex_string (addr), len);
c11d79f2
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461
462 status = target_read_memory (addr, buf, len);
463 ret = status == 0 ? PDC_SUCCESS : PDC_FAILURE;
464
8e2c28d4 465 if (debug_aix_thread)
27bae383 466 fprintf_unfiltered (gdb_stdlog, " status=%d, returning %s\n",
0fe7bf7b 467 status, pd_status2str (ret));
c11d79f2
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468 return ret;
469}
470
0fe7bf7b 471/* pthdb callback: write LEN bytes from BUF to process ADDR. */
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472
473static int
0fe7bf7b
MS
474pdc_write_data (pthdb_user_t user, void *buf,
475 pthdb_addr_t addr, size_t len)
c11d79f2
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476{
477 int status, ret;
478
8e2c28d4
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479 if (debug_aix_thread)
480 fprintf_unfiltered (gdb_stdlog,
27bae383
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481 "pdc_write_data (user = %ld, buf = 0x%lx, addr = %s, len = %ld)\n",
482 user, (long) buf, local_hex_string (addr), len);
c11d79f2
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483
484 status = target_write_memory (addr, buf, len);
485 ret = status == 0 ? PDC_SUCCESS : PDC_FAILURE;
486
8e2c28d4 487 if (debug_aix_thread)
27bae383 488 fprintf_unfiltered (gdb_stdlog, " status=%d, returning %s\n", status,
8e2c28d4 489 pd_status2str (ret));
c11d79f2
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490 return ret;
491}
492
0fe7bf7b
MS
493/* pthdb callback: allocate a LEN-byte buffer and store a pointer to it
494 in BUFP. */
c11d79f2
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495
496static int
497pdc_alloc (pthdb_user_t user, size_t len, void **bufp)
498{
8e2c28d4
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499 if (debug_aix_thread)
500 fprintf_unfiltered (gdb_stdlog,
27bae383 501 "pdc_alloc (user = %ld, len = %ld, bufp = 0x%lx)\n",
8e2c28d4 502 user, len, (long) bufp);
c11d79f2 503 *bufp = xmalloc (len);
8e2c28d4 504 if (debug_aix_thread)
0fe7bf7b 505 fprintf_unfiltered (gdb_stdlog,
27bae383 506 " malloc returned 0x%lx\n", (long) *bufp);
0fe7bf7b
MS
507
508 /* Note: xmalloc() can't return 0; therefore PDC_FAILURE will never
509 be returned. */
510
c11d79f2
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511 return *bufp ? PDC_SUCCESS : PDC_FAILURE;
512}
513
0fe7bf7b
MS
514/* pthdb callback: reallocate BUF, which was allocated by the alloc or
515 realloc callback, so that it contains LEN bytes, and store a
516 pointer to the result in BUFP. */
c11d79f2
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517
518static int
519pdc_realloc (pthdb_user_t user, void *buf, size_t len, void **bufp)
520{
8e2c28d4
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521 if (debug_aix_thread)
522 fprintf_unfiltered (gdb_stdlog,
27bae383 523 "pdc_realloc (user = %ld, buf = 0x%lx, len = %ld, bufp = 0x%lx)\n",
8e2c28d4 524 user, (long) buf, len, (long) bufp);
be006b8b 525 *bufp = xrealloc (buf, len);
8e2c28d4 526 if (debug_aix_thread)
0fe7bf7b 527 fprintf_unfiltered (gdb_stdlog,
27bae383 528 " realloc returned 0x%lx\n", (long) *bufp);
c11d79f2
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529 return *bufp ? PDC_SUCCESS : PDC_FAILURE;
530}
531
0fe7bf7b
MS
532/* pthdb callback: free BUF, which was allocated by the alloc or
533 realloc callback. */
c11d79f2
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534
535static int
536pdc_dealloc (pthdb_user_t user, void *buf)
537{
8e2c28d4 538 if (debug_aix_thread)
0fe7bf7b 539 fprintf_unfiltered (gdb_stdlog,
27bae383 540 "pdc_free (user = %ld, buf = 0x%lx)\n", user,
8e2c28d4 541 (long) buf);
c11d79f2
KB
542 xfree (buf);
543 return PDC_SUCCESS;
544}
545
0fe7bf7b 546/* Return a printable representation of pthread STATE. */
c11d79f2
KB
547
548static char *
549state2str (pthdb_state_t state)
550{
551 switch (state)
552 {
553 case PST_IDLE: return "idle"; /* being created */
554 case PST_RUN: return "running"; /* running */
555 case PST_SLEEP: return "sleeping"; /* awaiting an event */
556 case PST_READY: return "ready"; /* runnable */
557 case PST_TERM: return "finished"; /* awaiting a join/detach */
558 default: return "unknown";
559 }
560}
561
0fe7bf7b 562/* qsort() comparison function for sorting pd_thread structs by pthid. */
c11d79f2
KB
563
564static int
565pcmp (const void *p1v, const void *p2v)
566{
567 struct pd_thread *p1 = (struct pd_thread *) p1v;
568 struct pd_thread *p2 = (struct pd_thread *) p2v;
569 return p1->pthid < p2->pthid ? -1 : p1->pthid > p2->pthid;
570}
571
0fe7bf7b 572/* iterate_over_threads() callback for counting GDB threads. */
c11d79f2
KB
573
574static int
575giter_count (struct thread_info *thread, void *countp)
576{
577 (*(int *) countp)++;
578 return 0;
579}
580
0fe7bf7b 581/* iterate_over_threads() callback for accumulating GDB thread pids. */
c11d79f2
KB
582
583static int
584giter_accum (struct thread_info *thread, void *bufp)
585{
586 **(struct thread_info ***) bufp = thread;
587 (*(struct thread_info ***) bufp)++;
588 return 0;
589}
590
591/* ptid comparison function */
0fe7bf7b 592
c11d79f2
KB
593static int
594ptid_cmp (ptid_t ptid1, ptid_t ptid2)
595{
596 int pid1, pid2;
597
598 if (ptid_get_pid (ptid1) < ptid_get_pid (ptid2))
599 return -1;
600 else if (ptid_get_pid (ptid1) > ptid_get_pid (ptid2))
601 return 1;
602 else if (ptid_get_tid (ptid1) < ptid_get_tid (ptid2))
603 return -1;
604 else if (ptid_get_tid (ptid1) > ptid_get_tid (ptid2))
605 return 1;
606 else if (ptid_get_lwp (ptid1) < ptid_get_lwp (ptid2))
607 return -1;
608 else if (ptid_get_lwp (ptid1) > ptid_get_lwp (ptid2))
609 return 1;
610 else
611 return 0;
612}
613
0fe7bf7b 614/* qsort() comparison function for sorting thread_info structs by pid. */
c11d79f2
KB
615
616static int
617gcmp (const void *t1v, const void *t2v)
618{
619 struct thread_info *t1 = *(struct thread_info **) t1v;
620 struct thread_info *t2 = *(struct thread_info **) t2v;
621 return ptid_cmp (t1->ptid, t2->ptid);
622}
623
624/* Synchronize GDB's thread list with libpthdebug's.
625
626 There are some benefits of doing this every time the inferior stops:
627
0fe7bf7b
MS
628 - allows users to run thread-specific commands without needing to
629 run "info threads" first
c11d79f2
KB
630
631 - helps pthdb_tid_pthread() work properly (see "libpthdebug
632 peculiarities" at the top of this module)
633
0fe7bf7b
MS
634 - simplifies the demands placed on libpthdebug, which seems to
635 have difficulty with certain call patterns */
c11d79f2
KB
636
637static void
638sync_threadlists (void)
639{
640 int cmd, status, infpid;
641 int pcount, psize, pi, gcount, gi;
642 struct pd_thread *pbuf;
643 struct thread_info **gbuf, **g, *thread;
644 pthdb_pthread_t pdtid;
645 pthread_t pthid;
646 pthdb_tid_t tid;
c11d79f2 647
0fe7bf7b 648 /* Accumulate an array of libpthdebug threads sorted by pthread id. */
c11d79f2
KB
649
650 pcount = 0;
651 psize = 1;
652 pbuf = (struct pd_thread *) xmalloc (psize * sizeof *pbuf);
653
654 for (cmd = PTHDB_LIST_FIRST;; cmd = PTHDB_LIST_NEXT)
655 {
656 status = pthdb_pthread (pd_session, &pdtid, cmd);
657 if (status != PTHDB_SUCCESS || pdtid == PTHDB_INVALID_PTHREAD)
658 break;
659
660 status = pthdb_pthread_ptid (pd_session, pdtid, &pthid);
661 if (status != PTHDB_SUCCESS || pthid == PTHDB_INVALID_PTID)
662 continue;
663
664 if (pcount == psize)
665 {
666 psize *= 2;
0fe7bf7b
MS
667 pbuf = (struct pd_thread *) xrealloc (pbuf,
668 psize * sizeof *pbuf);
c11d79f2
KB
669 }
670 pbuf[pcount].pdtid = pdtid;
671 pbuf[pcount].pthid = pthid;
672 pcount++;
673 }
674
675 for (pi = 0; pi < pcount; pi++)
676 {
677 status = pthdb_pthread_tid (pd_session, pbuf[pi].pdtid, &tid);
678 if (status != PTHDB_SUCCESS)
679 tid = PTHDB_INVALID_TID;
680 pbuf[pi].tid = tid;
681 }
682
683 qsort (pbuf, pcount, sizeof *pbuf, pcmp);
684
0fe7bf7b 685 /* Accumulate an array of GDB threads sorted by pid. */
c11d79f2
KB
686
687 gcount = 0;
688 iterate_over_threads (giter_count, &gcount);
689 g = gbuf = (struct thread_info **) xmalloc (gcount * sizeof *gbuf);
690 iterate_over_threads (giter_accum, &g);
691 qsort (gbuf, gcount, sizeof *gbuf, gcmp);
692
0fe7bf7b 693 /* Apply differences between the two arrays to GDB's thread list. */
c11d79f2
KB
694
695 infpid = PIDGET (inferior_ptid);
696 for (pi = gi = 0; pi < pcount || gi < gcount;)
697 {
c11d79f2 698 if (pi == pcount)
c11d79f2 699 {
42cc437f 700 delete_thread (gbuf[gi]->ptid);
c11d79f2
KB
701 gi++;
702 }
42cc437f 703 else if (gi == gcount)
c11d79f2 704 {
42cc437f 705 thread = add_thread (BUILD_THREAD (pbuf[pi].pthid, infpid));
c11d79f2 706 thread->private = xmalloc (sizeof (struct private_thread_info));
42cc437f
KB
707 thread->private->pdtid = pbuf[pi].pdtid;
708 thread->private->tid = pbuf[pi].tid;
c11d79f2
KB
709 pi++;
710 }
42cc437f
KB
711 else
712 {
713 ptid_t pptid, gptid;
714 int cmp_result;
715
716 pptid = BUILD_THREAD (pbuf[pi].pthid, infpid);
717 gptid = gbuf[gi]->ptid;
718 pdtid = pbuf[pi].pdtid;
719 tid = pbuf[pi].tid;
c11d79f2 720
42cc437f
KB
721 cmp_result = ptid_cmp (pptid, gptid);
722
723 if (cmp_result == 0)
724 {
725 gbuf[gi]->private->pdtid = pdtid;
726 gbuf[gi]->private->tid = tid;
727 pi++;
728 gi++;
729 }
730 else if (cmp_result > 0)
731 {
732 delete_thread (gptid);
733 gi++;
734 }
735 else
736 {
737 thread = add_thread (pptid);
738 thread->private = xmalloc (sizeof (struct private_thread_info));
739 thread->private->pdtid = pdtid;
740 thread->private->tid = tid;
741 pi++;
742 }
743 }
c11d79f2
KB
744 }
745
746 xfree (pbuf);
747 xfree (gbuf);
748}
749
0fe7bf7b
MS
750/* Iterate_over_threads() callback for locating a thread whose kernel
751 thread just received a trap signal. */
c11d79f2
KB
752
753static int
754iter_trap (struct thread_info *thread, void *unused)
755{
756 struct thrdsinfo64 thrinf;
757 pthdb_tid_t tid;
758
0fe7bf7b
MS
759 /* getthrds(3) isn't prototyped in any AIX 4.3.3 #include file. */
760 extern int getthrds (pid_t, struct thrdsinfo64 *,
761 int, pthdb_tid_t *, int);
c11d79f2
KB
762
763 tid = thread->private->tid;
764 if (tid == PTHDB_INVALID_TID)
765 return 0;
766
0fe7bf7b
MS
767 if (getthrds (PIDGET (inferior_ptid), &thrinf,
768 sizeof (thrinf), &tid, 1) != 1)
c11d79f2
KB
769 return 0;
770
771 return thrinf.ti_cursig == SIGTRAP;
772}
773
0fe7bf7b
MS
774/* Synchronize libpthdebug's state with the inferior and with GDB,
775 generate a composite process/thread <pid> for the current thread,
776 set inferior_ptid to <pid> if SET_INFPID, and return <pid>. */
c11d79f2
KB
777
778static ptid_t
779pd_update (int set_infpid)
780{
781 int status;
782 ptid_t ptid;
783 struct thread_info *thread;
784
785 if (!pd_active)
786 return inferior_ptid;
787
788 status = pthdb_session_update (pd_session);
789 if (status != PTHDB_SUCCESS)
790 return inferior_ptid;
791
792 sync_threadlists ();
793
0fe7bf7b 794 /* Define "current thread" as one that just received a trap signal. */
c11d79f2
KB
795
796 thread = iterate_over_threads (iter_trap, NULL);
797 if (!thread)
798 ptid = inferior_ptid;
799 else
800 {
801 ptid = thread->ptid;
802 if (set_infpid)
803 inferior_ptid = ptid;
804 }
805 return ptid;
806}
807
0fe7bf7b
MS
808/* Try to start debugging threads in the current process.
809 If successful and SET_INFPID, set inferior_ptid to reflect the
810 current thread. */
c11d79f2
KB
811
812static ptid_t
813pd_activate (int set_infpid)
814{
815 int status;
816
817 status = pthdb_session_init (PD_USER, arch64 ? PEM_64BIT : PEM_32BIT,
0fe7bf7b
MS
818 PTHDB_FLAG_REGS, &pd_callbacks,
819 &pd_session);
c11d79f2
KB
820 if (status != PTHDB_SUCCESS)
821 {
822 return inferior_ptid;
823 }
824 pd_active = 1;
825 return pd_update (set_infpid);
826}
827
0fe7bf7b 828/* Undo the effects of pd_activate(). */
c11d79f2
KB
829
830static void
831pd_deactivate (void)
832{
833 if (!pd_active)
834 return;
835 pthdb_session_destroy (pd_session);
836
837 pid_to_prc (&inferior_ptid);
838 pd_active = 0;
839}
840
0fe7bf7b
MS
841/* An object file has just been loaded. Check whether the current
842 application is pthreaded, and if so, prepare for thread debugging. */
c11d79f2
KB
843
844static void
845pd_enable (void)
846{
847 int status;
848 char *stub_name;
849 struct minimal_symbol *ms;
850
0fe7bf7b 851 /* Don't initialize twice. */
c11d79f2
KB
852 if (pd_able)
853 return;
854
0fe7bf7b 855 /* Check application word size. */
12c266ea 856 arch64 = DEPRECATED_REGISTER_RAW_SIZE (0) == 8;
c11d79f2 857
0fe7bf7b 858 /* Check whether the application is pthreaded. */
c11d79f2 859 stub_name = NULL;
0fe7bf7b
MS
860 status = pthdb_session_pthreaded (PD_USER, PTHDB_FLAG_REGS,
861 &pd_callbacks, &stub_name);
862 if ((status != PTHDB_SUCCESS &&
863 status != PTHDB_NOT_PTHREADED) || !stub_name)
c11d79f2
KB
864 return;
865
0fe7bf7b 866 /* Set a breakpoint on the returned stub function. */
c11d79f2
KB
867 if (!(ms = lookup_minimal_symbol (stub_name, NULL, NULL)))
868 return;
869 pd_brk_addr = SYMBOL_VALUE_ADDRESS (ms);
870 if (!create_thread_event_breakpoint (pd_brk_addr))
871 return;
872
0fe7bf7b 873 /* Prepare for thread debugging. */
206d3d3c
KB
874 base_target = current_target;
875 push_target (&aix_thread_ops);
c11d79f2
KB
876 pd_able = 1;
877
0fe7bf7b
MS
878 /* If we're debugging a core file or an attached inferior, the
879 pthread library may already have been initialized, so try to
880 activate thread debugging. */
c11d79f2
KB
881 pd_activate (1);
882}
883
0fe7bf7b 884/* Undo the effects of pd_enable(). */
c11d79f2
KB
885
886static void
887pd_disable (void)
888{
889 if (!pd_able)
890 return;
891 if (pd_active)
892 pd_deactivate ();
893 pd_able = 0;
206d3d3c 894 unpush_target (&aix_thread_ops);
c11d79f2
KB
895}
896
9a4105ab 897/* deprecated_target_new_objfile_hook callback.
c11d79f2 898
0fe7bf7b
MS
899 If OBJFILE is non-null, check whether a threaded application is
900 being debugged, and if so, prepare for thread debugging.
c11d79f2 901
0fe7bf7b 902 If OBJFILE is null, stop debugging threads. */
c11d79f2
KB
903
904static void
905new_objfile (struct objfile *objfile)
906{
907 if (objfile)
908 pd_enable ();
909 else
910 pd_disable ();
911
912 if (target_new_objfile_chain)
913 target_new_objfile_chain (objfile);
914}
915
0fe7bf7b 916/* Attach to process specified by ARGS. */
c11d79f2
KB
917
918static void
206d3d3c 919aix_thread_attach (char *args, int from_tty)
c11d79f2 920{
206d3d3c 921 base_target.to_attach (args, from_tty);
c11d79f2
KB
922 pd_activate (1);
923}
924
206d3d3c 925/* Detach from the process attached to by aix_thread_attach(). */
c11d79f2
KB
926
927static void
206d3d3c 928aix_thread_detach (char *args, int from_tty)
c11d79f2 929{
6c0c456d 930 pd_disable ();
206d3d3c 931 base_target.to_detach (args, from_tty);
c11d79f2
KB
932}
933
934/* Tell the inferior process to continue running thread PID if != -1
0fe7bf7b 935 and all threads otherwise. */
c11d79f2
KB
936
937static void
206d3d3c 938aix_thread_resume (ptid_t ptid, int step, enum target_signal sig)
c11d79f2
KB
939{
940 struct thread_info *thread;
941 pthdb_tid_t tid[2];
942
943 if (!PD_TID (ptid))
14fa3751
KB
944 {
945 struct cleanup *cleanup = save_inferior_ptid ();
946 inferior_ptid = pid_to_ptid (PIDGET (inferior_ptid));
206d3d3c 947 base_target.to_resume (ptid, step, sig);
14fa3751
KB
948 do_cleanups (cleanup);
949 }
c11d79f2
KB
950 else
951 {
952 thread = find_thread_pid (ptid);
953 if (!thread)
0fe7bf7b
MS
954 error ("aix-thread resume: unknown pthread %ld",
955 TIDGET (ptid));
c11d79f2
KB
956
957 tid[0] = thread->private->tid;
958 if (tid[0] == PTHDB_INVALID_TID)
0fe7bf7b
MS
959 error ("aix-thread resume: no tid for pthread %ld",
960 TIDGET (ptid));
c11d79f2
KB
961 tid[1] = 0;
962
963 if (arch64)
0fe7bf7b 964 ptrace64aix (PTT_CONTINUE, tid[0], 1,
206d3d3c 965 target_signal_to_host (sig), (int *) tid);
c11d79f2
KB
966 else
967 ptrace32 (PTT_CONTINUE, tid[0], (int *) 1,
206d3d3c 968 target_signal_to_host (sig), (int *) tid);
c11d79f2
KB
969 }
970}
971
0fe7bf7b
MS
972/* Wait for thread/process ID if != -1 or for any thread otherwise.
973 If an error occurs, return -1, else return the pid of the stopped
974 thread. */
c11d79f2
KB
975
976static ptid_t
206d3d3c 977aix_thread_wait (ptid_t ptid, struct target_waitstatus *status)
c11d79f2 978{
14fa3751
KB
979 struct cleanup *cleanup = save_inferior_ptid ();
980
c11d79f2 981 pid_to_prc (&ptid);
14fa3751
KB
982
983 inferior_ptid = pid_to_ptid (PIDGET (inferior_ptid));
206d3d3c 984 ptid = base_target.to_wait (ptid, status);
14fa3751
KB
985 do_cleanups (cleanup);
986
c11d79f2
KB
987 if (PIDGET (ptid) == -1)
988 return pid_to_ptid (-1);
989
0fe7bf7b 990 /* Check whether libpthdebug might be ready to be initialized. */
c11d79f2
KB
991 if (!pd_active && status->kind == TARGET_WAITKIND_STOPPED &&
992 status->value.sig == TARGET_SIGNAL_TRAP &&
993 read_pc_pid (ptid) - DECR_PC_AFTER_BREAK == pd_brk_addr)
994 return pd_activate (0);
995
996 return pd_update (0);
997}
998
0fe7bf7b 999/* Record that the 64-bit general-purpose registers contain VALS. */
c11d79f2
KB
1000
1001static void
1002supply_gprs64 (uint64_t *vals)
1003{
cdf2c5f5 1004 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
c11d79f2
KB
1005 int regno;
1006
1007 for (regno = 0; regno < 32; regno++)
cdf2c5f5 1008 supply_register (tdep->ppc_gp0_regnum + regno, (char *) (vals + regno));
c11d79f2
KB
1009}
1010
0fe7bf7b 1011/* Record that 32-bit register REGNO contains VAL. */
c11d79f2
KB
1012
1013static void
1014supply_reg32 (int regno, uint32_t val)
1015{
1016 supply_register (regno, (char *) &val);
1017}
1018
0fe7bf7b 1019/* Record that the floating-point registers contain VALS. */
c11d79f2
KB
1020
1021static void
1022supply_fprs (double *vals)
1023{
366f009f 1024 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
c11d79f2
KB
1025 int regno;
1026
383f0f5b
JB
1027 /* This function should never be called on architectures without
1028 floating-point registers. */
1029 gdb_assert (ppc_floating_point_p (current_gdbarch));
1030
c11d79f2 1031 for (regno = 0; regno < 32; regno++)
366f009f 1032 supply_register (regno + tdep->ppc_fp0_regnum, (char *) (vals + regno));
c11d79f2
KB
1033}
1034
f1a91342
KB
1035/* Predicate to test whether given register number is a "special" register. */
1036static int
1037special_register_p (int regno)
1038{
1039 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
1040
1041 return regno == PC_REGNUM
1042 || regno == tdep->ppc_ps_regnum
1043 || regno == tdep->ppc_cr_regnum
1044 || regno == tdep->ppc_lr_regnum
1045 || regno == tdep->ppc_ctr_regnum
1046 || regno == tdep->ppc_xer_regnum
383f0f5b 1047 || (tdep->ppc_fpscr_regnum >= 0 && regno == tdep->ppc_fpscr_regnum)
f1a91342
KB
1048 || (tdep->ppc_mq_regnum >= 0 && regno == tdep->ppc_mq_regnum);
1049}
1050
1051
0fe7bf7b
MS
1052/* Record that the special registers contain the specified 64-bit and
1053 32-bit values. */
c11d79f2
KB
1054
1055static void
1056supply_sprs64 (uint64_t iar, uint64_t msr, uint32_t cr,
0e061eef
KB
1057 uint64_t lr, uint64_t ctr, uint32_t xer,
1058 uint32_t fpscr)
c11d79f2 1059{
f1a91342
KB
1060 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
1061
1062 supply_register (PC_REGNUM, (char *) &iar);
1063 supply_register (tdep->ppc_ps_regnum, (char *) &msr);
1064 supply_register (tdep->ppc_cr_regnum, (char *) &cr);
1065 supply_register (tdep->ppc_lr_regnum, (char *) &lr);
1066 supply_register (tdep->ppc_ctr_regnum, (char *) &ctr);
1067 supply_register (tdep->ppc_xer_regnum, (char *) &xer);
383f0f5b
JB
1068 if (tdep->ppc_fpscr_regnum >= 0)
1069 supply_register (tdep->ppc_fpscr_regnum, (char *) &fpscr);
c11d79f2
KB
1070}
1071
0fe7bf7b
MS
1072/* Record that the special registers contain the specified 32-bit
1073 values. */
c11d79f2
KB
1074
1075static void
1076supply_sprs32 (uint32_t iar, uint32_t msr, uint32_t cr,
0e061eef
KB
1077 uint32_t lr, uint32_t ctr, uint32_t xer,
1078 uint32_t fpscr)
c11d79f2 1079{
f1a91342
KB
1080 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
1081
1082 supply_register (PC_REGNUM, (char *) &iar);
1083 supply_register (tdep->ppc_ps_regnum, (char *) &msr);
1084 supply_register (tdep->ppc_cr_regnum, (char *) &cr);
1085 supply_register (tdep->ppc_lr_regnum, (char *) &lr);
1086 supply_register (tdep->ppc_ctr_regnum, (char *) &ctr);
1087 supply_register (tdep->ppc_xer_regnum, (char *) &xer);
383f0f5b
JB
1088 if (tdep->ppc_fpscr_regnum >= 0)
1089 supply_register (tdep->ppc_fpscr_regnum, (char *) &fpscr);
c11d79f2
KB
1090}
1091
1092/* Fetch all registers from pthread PDTID, which doesn't have a kernel
1093 thread.
1094
0fe7bf7b
MS
1095 There's no way to query a single register from a non-kernel
1096 pthread, so there's no need for a single-register version of this
1097 function. */
c11d79f2
KB
1098
1099static void
206d3d3c 1100fetch_regs_user_thread (pthdb_pthread_t pdtid)
c11d79f2 1101{
cdf2c5f5 1102 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
c11d79f2
KB
1103 int status, i;
1104 pthdb_context_t ctx;
1105
8e2c28d4 1106 if (debug_aix_thread)
206d3d3c
KB
1107 fprintf_unfiltered (gdb_stdlog,
1108 "fetch_regs_user_thread %lx\n", (long) pdtid);
c11d79f2
KB
1109 status = pthdb_pthread_context (pd_session, pdtid, &ctx);
1110 if (status != PTHDB_SUCCESS)
14fa3751
KB
1111 error ("aix-thread: fetch_registers: pthdb_pthread_context returned %s",
1112 pd_status2str (status));
c11d79f2 1113
0fe7bf7b 1114 /* General-purpose registers. */
c11d79f2
KB
1115
1116 if (arch64)
1117 supply_gprs64 (ctx.gpr);
1118 else
1119 for (i = 0; i < 32; i++)
cdf2c5f5 1120 supply_reg32 (tdep->ppc_gp0_regnum + i, ctx.gpr[i]);
c11d79f2 1121
0fe7bf7b 1122 /* Floating-point registers. */
c11d79f2 1123
383f0f5b
JB
1124 if (ppc_floating_point_p (current_gdbarch))
1125 supply_fprs (ctx.fpr);
c11d79f2 1126
0fe7bf7b 1127 /* Special registers. */
c11d79f2
KB
1128
1129 if (arch64)
0e061eef
KB
1130 supply_sprs64 (ctx.iar, ctx.msr, ctx.cr, ctx.lr, ctx.ctr, ctx.xer,
1131 ctx.fpscr);
c11d79f2 1132 else
0e061eef
KB
1133 supply_sprs32 (ctx.iar, ctx.msr, ctx.cr, ctx.lr, ctx.ctr, ctx.xer,
1134 ctx.fpscr);
c11d79f2
KB
1135}
1136
0fe7bf7b
MS
1137/* Fetch register REGNO if != -1 or all registers otherwise from
1138 kernel thread TID.
c11d79f2 1139
0fe7bf7b
MS
1140 AIX provides a way to query all of a kernel thread's GPRs, FPRs, or
1141 SPRs, but there's no way to query individual registers within those
1142 groups. Therefore, if REGNO != -1, this function fetches an entire
1143 group.
c11d79f2 1144
0fe7bf7b
MS
1145 Unfortunately, kernel thread register queries often fail with
1146 EPERM, indicating that the thread is in kernel space. This breaks
1147 backtraces of threads other than the current one. To make that
1148 breakage obvious without throwing an error to top level (which is
1149 bad e.g. during "info threads" output), zero registers that can't
1150 be retrieved. */
c11d79f2
KB
1151
1152static void
206d3d3c 1153fetch_regs_kernel_thread (int regno, pthdb_tid_t tid)
c11d79f2 1154{
366f009f 1155 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
c11d79f2
KB
1156 uint64_t gprs64[32];
1157 uint32_t gprs32[32];
1158 double fprs[32];
1159 struct ptxsprs sprs64;
1160 struct ptsprs sprs32;
1161 int i;
1162
8e2c28d4
KB
1163 if (debug_aix_thread)
1164 fprintf_unfiltered (gdb_stdlog,
206d3d3c
KB
1165 "fetch_regs_kernel_thread tid=%lx regno=%d arch64=%d\n",
1166 (long) tid, regno, arch64);
c11d79f2 1167
0fe7bf7b 1168 /* General-purpose registers. */
daf6dc85
JB
1169 if (regno == -1
1170 || (tdep->ppc_gp0_regnum <= regno
1171 && regno < tdep->ppc_gp0_regnum + ppc_num_gprs))
c11d79f2
KB
1172 {
1173 if (arch64)
1174 {
0fe7bf7b
MS
1175 if (!ptrace64aix (PTT_READ_GPRS, tid,
1176 (unsigned long) gprs64, 0, NULL))
c11d79f2
KB
1177 memset (gprs64, 0, sizeof (gprs64));
1178 supply_gprs64 (gprs64);
1179 }
1180 else
1181 {
1182 if (!ptrace32 (PTT_READ_GPRS, tid, gprs32, 0, NULL))
1183 memset (gprs32, 0, sizeof (gprs32));
1184 for (i = 0; i < 32; i++)
cdf2c5f5 1185 supply_reg32 (tdep->ppc_gp0_regnum + i, gprs32[i]);
c11d79f2
KB
1186 }
1187 }
1188
0fe7bf7b 1189 /* Floating-point registers. */
c11d79f2 1190
383f0f5b
JB
1191 if (ppc_floating_point_unit_p (current_gdbarch)
1192 && (regno == -1
1193 || (regno >= tdep->ppc_fp0_regnum
1194 && regno < tdep->ppc_fp0_regnum + ppc_num_fprs)))
c11d79f2
KB
1195 {
1196 if (!ptrace32 (PTT_READ_FPRS, tid, (int *) fprs, 0, NULL))
1197 memset (fprs, 0, sizeof (fprs));
1198 supply_fprs (fprs);
1199 }
1200
0fe7bf7b 1201 /* Special-purpose registers. */
c11d79f2 1202
f1a91342 1203 if (regno == -1 || special_register_p (regno))
c11d79f2
KB
1204 {
1205 if (arch64)
1206 {
0fe7bf7b
MS
1207 if (!ptrace64aix (PTT_READ_SPRS, tid,
1208 (unsigned long) &sprs64, 0, NULL))
c11d79f2
KB
1209 memset (&sprs64, 0, sizeof (sprs64));
1210 supply_sprs64 (sprs64.pt_iar, sprs64.pt_msr, sprs64.pt_cr,
0e061eef
KB
1211 sprs64.pt_lr, sprs64.pt_ctr, sprs64.pt_xer,
1212 sprs64.pt_fpscr);
c11d79f2
KB
1213 }
1214 else
1215 {
f1a91342
KB
1216 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
1217
c11d79f2
KB
1218 if (!ptrace32 (PTT_READ_SPRS, tid, (int *) &sprs32, 0, NULL))
1219 memset (&sprs32, 0, sizeof (sprs32));
1220 supply_sprs32 (sprs32.pt_iar, sprs32.pt_msr, sprs32.pt_cr,
0e061eef
KB
1221 sprs32.pt_lr, sprs32.pt_ctr, sprs32.pt_xer,
1222 sprs32.pt_fpscr);
c11d79f2 1223
f1a91342
KB
1224 if (tdep->ppc_mq_regnum >= 0)
1225 supply_register (tdep->ppc_mq_regnum, (char *) &sprs32.pt_mq);
c11d79f2
KB
1226 }
1227 }
1228}
1229
1230/* Fetch register REGNO if != -1 or all registers otherwise in the
0fe7bf7b 1231 thread/process specified by inferior_ptid. */
c11d79f2
KB
1232
1233static void
206d3d3c 1234aix_thread_fetch_registers (int regno)
c11d79f2
KB
1235{
1236 struct thread_info *thread;
1237 pthdb_tid_t tid;
1238
1239 if (!PD_TID (inferior_ptid))
206d3d3c 1240 base_target.to_fetch_registers (regno);
c11d79f2
KB
1241 else
1242 {
1243 thread = find_thread_pid (inferior_ptid);
1244 tid = thread->private->tid;
1245
1246 if (tid == PTHDB_INVALID_TID)
206d3d3c 1247 fetch_regs_user_thread (thread->private->pdtid);
c11d79f2 1248 else
206d3d3c 1249 fetch_regs_kernel_thread (regno, tid);
c11d79f2
KB
1250 }
1251}
1252
61c5da0b
KB
1253/* Store the gp registers into an array of uint32_t or uint64_t. */
1254
1255static void
1256fill_gprs64 (uint64_t *vals)
1257{
366f009f 1258 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
61c5da0b
KB
1259 int regno;
1260
daf6dc85
JB
1261 for (regno = 0; regno < ppc_num_gprs; regno++)
1262 if (register_cached (tdep->ppc_gp0_regnum + regno))
1263 regcache_collect (tdep->ppc_gp0_regnum + regno, vals + regno);
61c5da0b
KB
1264}
1265
1266static void
1267fill_gprs32 (uint32_t *vals)
1268{
366f009f 1269 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
61c5da0b
KB
1270 int regno;
1271
daf6dc85
JB
1272 for (regno = 0; regno < ppc_num_gprs; regno++)
1273 if (register_cached (tdep->ppc_gp0_regnum + regno))
1274 regcache_collect (tdep->ppc_gp0_regnum + regno, vals + regno);
61c5da0b
KB
1275}
1276
1277/* Store the floating point registers into a double array. */
1278static void
1279fill_fprs (double *vals)
1280{
366f009f 1281 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
61c5da0b
KB
1282 int regno;
1283
383f0f5b
JB
1284 /* This function should never be called on architectures without
1285 floating-point registers. */
1286 gdb_assert (ppc_floating_point_p (current_gdbarch));
1287
366f009f
JB
1288 for (regno = tdep->ppc_fp0_regnum;
1289 regno < tdep->ppc_fp0_regnum + ppc_num_fprs;
1290 regno++)
cbe92db4
KB
1291 if (register_cached (regno))
1292 regcache_collect (regno, vals + regno);
61c5da0b
KB
1293}
1294
c11d79f2 1295/* Store the special registers into the specified 64-bit and 32-bit
0fe7bf7b 1296 locations. */
c11d79f2
KB
1297
1298static void
1299fill_sprs64 (uint64_t *iar, uint64_t *msr, uint32_t *cr,
0e061eef
KB
1300 uint64_t *lr, uint64_t *ctr, uint32_t *xer,
1301 uint32_t *fpscr)
c11d79f2 1302{
f1a91342
KB
1303 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
1304
1305 /* Verify that the size of the size of the IAR buffer is the
1306 same as the raw size of the PC (in the register cache). If
1307 they're not, then either GDB has been built incorrectly, or
1308 there's some other kind of internal error. To be really safe,
1309 we should check all of the sizes. */
12c266ea 1310 gdb_assert (sizeof (*iar) == DEPRECATED_REGISTER_RAW_SIZE (PC_REGNUM));
f1a91342
KB
1311
1312 if (register_cached (PC_REGNUM))
1313 regcache_collect (PC_REGNUM, iar);
1314 if (register_cached (tdep->ppc_ps_regnum))
1315 regcache_collect (tdep->ppc_ps_regnum, msr);
1316 if (register_cached (tdep->ppc_cr_regnum))
1317 regcache_collect (tdep->ppc_cr_regnum, cr);
1318 if (register_cached (tdep->ppc_lr_regnum))
1319 regcache_collect (tdep->ppc_lr_regnum, lr);
1320 if (register_cached (tdep->ppc_ctr_regnum))
1321 regcache_collect (tdep->ppc_ctr_regnum, ctr);
1322 if (register_cached (tdep->ppc_xer_regnum))
1323 regcache_collect (tdep->ppc_xer_regnum, xer);
383f0f5b
JB
1324 if (tdep->ppc_fpscr_regnum >= 0
1325 && register_cached (tdep->ppc_fpscr_regnum))
0e061eef 1326 regcache_collect (tdep->ppc_fpscr_regnum, fpscr);
61c5da0b
KB
1327}
1328
1329static void
1330fill_sprs32 (unsigned long *iar, unsigned long *msr, unsigned long *cr,
0e061eef
KB
1331 unsigned long *lr, unsigned long *ctr, unsigned long *xer,
1332 unsigned long *fpscr)
61c5da0b 1333{
f1a91342
KB
1334 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
1335
1336 /* Verify that the size of the size of the IAR buffer is the
1337 same as the raw size of the PC (in the register cache). If
1338 they're not, then either GDB has been built incorrectly, or
1339 there's some other kind of internal error. To be really safe,
1340 we should check all of the sizes.
61c5da0b 1341
f1a91342 1342 If this assert() fails, the most likely reason is that GDB was
61c5da0b
KB
1343 built incorrectly. In order to make use of many of the header
1344 files in /usr/include/sys, GDB needs to be configured so that
1345 sizeof (long) == 4). */
12c266ea 1346 gdb_assert (sizeof (*iar) == DEPRECATED_REGISTER_RAW_SIZE (PC_REGNUM));
f1a91342
KB
1347
1348 if (register_cached (PC_REGNUM))
1349 regcache_collect (PC_REGNUM, iar);
1350 if (register_cached (tdep->ppc_ps_regnum))
1351 regcache_collect (tdep->ppc_ps_regnum, msr);
1352 if (register_cached (tdep->ppc_cr_regnum))
1353 regcache_collect (tdep->ppc_cr_regnum, cr);
1354 if (register_cached (tdep->ppc_lr_regnum))
1355 regcache_collect (tdep->ppc_lr_regnum, lr);
1356 if (register_cached (tdep->ppc_ctr_regnum))
1357 regcache_collect (tdep->ppc_ctr_regnum, ctr);
1358 if (register_cached (tdep->ppc_xer_regnum))
1359 regcache_collect (tdep->ppc_xer_regnum, xer);
383f0f5b
JB
1360 if (tdep->ppc_fpscr_regnum >= 0
1361 && register_cached (tdep->ppc_fpscr_regnum))
0e061eef 1362 regcache_collect (tdep->ppc_fpscr_regnum, fpscr);
c11d79f2
KB
1363}
1364
1365/* Store all registers into pthread PDTID, which doesn't have a kernel
1366 thread.
1367
0fe7bf7b
MS
1368 It's possible to store a single register into a non-kernel pthread,
1369 but I doubt it's worth the effort. */
c11d79f2
KB
1370
1371static void
206d3d3c 1372store_regs_user_thread (pthdb_pthread_t pdtid)
c11d79f2 1373{
cdf2c5f5 1374 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
c11d79f2
KB
1375 int status, i;
1376 pthdb_context_t ctx;
61c5da0b
KB
1377 uint32_t int32;
1378 uint64_t int64;
1379 double dbl;
c11d79f2 1380
8e2c28d4 1381 if (debug_aix_thread)
0fe7bf7b 1382 fprintf_unfiltered (gdb_stdlog,
206d3d3c 1383 "store_regs_user_thread %lx\n", (long) pdtid);
c11d79f2 1384
0fe7bf7b
MS
1385 /* Retrieve the thread's current context for its non-register
1386 values. */
c11d79f2
KB
1387 status = pthdb_pthread_context (pd_session, pdtid, &ctx);
1388 if (status != PTHDB_SUCCESS)
14fa3751
KB
1389 error ("aix-thread: store_registers: pthdb_pthread_context returned %s",
1390 pd_status2str (status));
c11d79f2 1391
61c5da0b 1392 /* Collect general-purpose register values from the regcache. */
c11d79f2
KB
1393
1394 for (i = 0; i < 32; i++)
cdf2c5f5 1395 if (register_cached (tdep->ppc_gp0_regnum + i))
cbe92db4
KB
1396 {
1397 if (arch64)
1398 {
cdf2c5f5 1399 regcache_collect (tdep->ppc_gp0_regnum + i, (void *) &int64);
cbe92db4
KB
1400 ctx.gpr[i] = int64;
1401 }
1402 else
1403 {
cdf2c5f5 1404 regcache_collect (tdep->ppc_gp0_regnum + i, (void *) &int32);
cbe92db4
KB
1405 ctx.gpr[i] = int32;
1406 }
1407 }
c11d79f2 1408
61c5da0b 1409 /* Collect floating-point register values from the regcache. */
383f0f5b
JB
1410 if (ppc_floating_point_p (current_gdbarch))
1411 fill_fprs (ctx.fpr);
c11d79f2 1412
61c5da0b
KB
1413 /* Special registers (always kept in ctx as 64 bits). */
1414 if (arch64)
1415 {
0e061eef
KB
1416 fill_sprs64 (&ctx.iar, &ctx.msr, &ctx.cr, &ctx.lr, &ctx.ctr, &ctx.xer,
1417 &ctx.fpscr);
61c5da0b
KB
1418 }
1419 else
1420 {
1421 /* Problem: ctx.iar etc. are 64 bits, but raw_registers are 32.
1422 Solution: use 32-bit temp variables. (The assert() in fill_sprs32()
1423 will fail if the size of an unsigned long is incorrect. If this
1424 happens, GDB needs to be reconfigured so that longs are 32-bits.) */
0e061eef
KB
1425 unsigned long tmp_iar, tmp_msr, tmp_cr, tmp_lr, tmp_ctr, tmp_xer,
1426 tmp_fpscr;
61c5da0b 1427
0e061eef
KB
1428 fill_sprs32 (&tmp_iar, &tmp_msr, &tmp_cr, &tmp_lr, &tmp_ctr, &tmp_xer,
1429 &tmp_fpscr);
f1a91342 1430 if (register_cached (PC_REGNUM))
cbe92db4 1431 ctx.iar = tmp_iar;
f1a91342 1432 if (register_cached (tdep->ppc_ps_regnum))
cbe92db4 1433 ctx.msr = tmp_msr;
f1a91342 1434 if (register_cached (tdep->ppc_cr_regnum))
cbe92db4 1435 ctx.cr = tmp_cr;
f1a91342 1436 if (register_cached (tdep->ppc_lr_regnum))
cbe92db4 1437 ctx.lr = tmp_lr;
f1a91342 1438 if (register_cached (tdep->ppc_ctr_regnum))
cbe92db4 1439 ctx.ctr = tmp_ctr;
f1a91342 1440 if (register_cached (tdep->ppc_xer_regnum))
cbe92db4 1441 ctx.xer = tmp_xer;
0e061eef
KB
1442 if (register_cached (tdep->ppc_xer_regnum))
1443 ctx.fpscr = tmp_fpscr;
61c5da0b 1444 }
c11d79f2
KB
1445
1446 status = pthdb_pthread_setcontext (pd_session, pdtid, &ctx);
1447 if (status != PTHDB_SUCCESS)
14fa3751
KB
1448 error ("aix-thread: store_registers: pthdb_pthread_setcontext returned %s",
1449 pd_status2str (status));
c11d79f2
KB
1450}
1451
0fe7bf7b
MS
1452/* Store register REGNO if != -1 or all registers otherwise into
1453 kernel thread TID.
c11d79f2 1454
0fe7bf7b
MS
1455 AIX provides a way to set all of a kernel thread's GPRs, FPRs, or
1456 SPRs, but there's no way to set individual registers within those
1457 groups. Therefore, if REGNO != -1, this function stores an entire
1458 group. */
c11d79f2
KB
1459
1460static void
206d3d3c 1461store_regs_kernel_thread (int regno, pthdb_tid_t tid)
c11d79f2 1462{
366f009f 1463 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
61c5da0b
KB
1464 uint64_t gprs64[32];
1465 uint32_t gprs32[32];
1466 double fprs[32];
c11d79f2 1467 struct ptxsprs sprs64;
61c5da0b
KB
1468 struct ptsprs sprs32;
1469 int i;
f1a91342 1470 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
c11d79f2 1471
8e2c28d4 1472 if (debug_aix_thread)
206d3d3c
KB
1473 fprintf_unfiltered (gdb_stdlog,
1474 "store_regs_kernel_thread tid=%lx regno=%d\n",
1475 (long) tid, regno);
c11d79f2 1476
0fe7bf7b 1477 /* General-purpose registers. */
daf6dc85
JB
1478 if (regno == -1
1479 || (tdep->ppc_gp0_regnum <= regno
1480 && regno < tdep->ppc_gp0_regnum + ppc_num_fprs))
c11d79f2 1481 {
c11d79f2 1482 if (arch64)
61c5da0b 1483 {
cbe92db4
KB
1484 /* Pre-fetch: some regs may not be in the cache. */
1485 ptrace64aix (PTT_READ_GPRS, tid, (unsigned long) gprs64, 0, NULL);
61c5da0b
KB
1486 fill_gprs64 (gprs64);
1487 ptrace64aix (PTT_WRITE_GPRS, tid, (unsigned long) gprs64, 0, NULL);
1488 }
c11d79f2 1489 else
61c5da0b 1490 {
cbe92db4
KB
1491 /* Pre-fetch: some regs may not be in the cache. */
1492 ptrace32 (PTT_READ_GPRS, tid, gprs32, 0, NULL);
61c5da0b
KB
1493 fill_gprs32 (gprs32);
1494 ptrace32 (PTT_WRITE_GPRS, tid, gprs32, 0, NULL);
1495 }
c11d79f2
KB
1496 }
1497
0fe7bf7b 1498 /* Floating-point registers. */
c11d79f2 1499
383f0f5b
JB
1500 if (ppc_floating_point_unit_p (current_gdbarch)
1501 && (regno == -1
1502 || (regno >= tdep->ppc_fp0_regnum
1503 && regno < tdep->ppc_fp0_regnum + ppc_num_fprs)))
c11d79f2 1504 {
cbe92db4
KB
1505 /* Pre-fetch: some regs may not be in the cache. */
1506 ptrace32 (PTT_READ_FPRS, tid, (int *) fprs, 0, NULL);
61c5da0b
KB
1507 fill_fprs (fprs);
1508 ptrace32 (PTT_WRITE_FPRS, tid, (int *) fprs, 0, NULL);
c11d79f2
KB
1509 }
1510
0fe7bf7b 1511 /* Special-purpose registers. */
c11d79f2 1512
f1a91342 1513 if (regno == -1 || special_register_p (regno))
c11d79f2
KB
1514 {
1515 if (arch64)
1516 {
cbe92db4 1517 /* Pre-fetch: some registers won't be in the cache. */
0fe7bf7b
MS
1518 ptrace64aix (PTT_READ_SPRS, tid,
1519 (unsigned long) &sprs64, 0, NULL);
c11d79f2 1520 fill_sprs64 (&sprs64.pt_iar, &sprs64.pt_msr, &sprs64.pt_cr,
0e061eef
KB
1521 &sprs64.pt_lr, &sprs64.pt_ctr, &sprs64.pt_xer,
1522 &sprs64.pt_fpscr);
0fe7bf7b
MS
1523 ptrace64aix (PTT_WRITE_SPRS, tid,
1524 (unsigned long) &sprs64, 0, NULL);
c11d79f2
KB
1525 }
1526 else
1527 {
cbe92db4 1528 /* Pre-fetch: some registers won't be in the cache. */
c11d79f2
KB
1529 ptrace32 (PTT_READ_SPRS, tid, (int *) &sprs32, 0, NULL);
1530
61c5da0b 1531 fill_sprs32 (&sprs32.pt_iar, &sprs32.pt_msr, &sprs32.pt_cr,
0e061eef
KB
1532 &sprs32.pt_lr, &sprs32.pt_ctr, &sprs32.pt_xer,
1533 &sprs32.pt_fpscr);
c11d79f2 1534
f1a91342
KB
1535 if (tdep->ppc_mq_regnum >= 0)
1536 if (register_cached (tdep->ppc_mq_regnum))
1537 regcache_collect (tdep->ppc_mq_regnum, &sprs32.pt_mq);
c11d79f2
KB
1538
1539 ptrace32 (PTT_WRITE_SPRS, tid, (int *) &sprs32, 0, NULL);
1540 }
1541 }
1542}
1543
0fe7bf7b
MS
1544/* Store gdb's current view of the register set into the
1545 thread/process specified by inferior_ptid. */
c11d79f2
KB
1546
1547static void
206d3d3c 1548aix_thread_store_registers (int regno)
c11d79f2
KB
1549{
1550 struct thread_info *thread;
1551 pthdb_tid_t tid;
1552
1553 if (!PD_TID (inferior_ptid))
206d3d3c 1554 base_target.to_store_registers (regno);
c11d79f2
KB
1555 else
1556 {
1557 thread = find_thread_pid (inferior_ptid);
1558 tid = thread->private->tid;
1559
1560 if (tid == PTHDB_INVALID_TID)
206d3d3c 1561 store_regs_user_thread (thread->private->pdtid);
c11d79f2 1562 else
206d3d3c 1563 store_regs_kernel_thread (regno, tid);
c11d79f2
KB
1564 }
1565}
1566
0fe7bf7b
MS
1567/* Transfer LEN bytes of memory from GDB address MYADDR to target
1568 address MEMADDR if WRITE and vice versa otherwise. */
c11d79f2
KB
1569
1570static int
206d3d3c
KB
1571aix_thread_xfer_memory (CORE_ADDR memaddr, char *myaddr, int len, int write,
1572 struct mem_attrib *attrib,
1573 struct target_ops *target)
c11d79f2
KB
1574{
1575 int n;
14fa3751
KB
1576 struct cleanup *cleanup = save_inferior_ptid ();
1577
1578 inferior_ptid = pid_to_ptid (PIDGET (inferior_ptid));
206d3d3c
KB
1579 n = base_target.to_xfer_memory (memaddr, myaddr, len,
1580 write, attrib, &base_target);
14fa3751 1581 do_cleanups (cleanup);
c11d79f2 1582
c11d79f2
KB
1583 return n;
1584}
1585
0fe7bf7b 1586/* Kill and forget about the inferior process. */
c11d79f2
KB
1587
1588static void
206d3d3c 1589aix_thread_kill (void)
c11d79f2 1590{
14fa3751
KB
1591 struct cleanup *cleanup = save_inferior_ptid ();
1592
1593 inferior_ptid = pid_to_ptid (PIDGET (inferior_ptid));
206d3d3c 1594 base_target.to_kill ();
14fa3751 1595 do_cleanups (cleanup);
c11d79f2
KB
1596}
1597
0fe7bf7b 1598/* Clean up after the inferior exits. */
c11d79f2
KB
1599
1600static void
206d3d3c 1601aix_thread_mourn_inferior (void)
c11d79f2
KB
1602{
1603 pd_deactivate ();
206d3d3c 1604 base_target.to_mourn_inferior ();
c11d79f2
KB
1605}
1606
0fe7bf7b 1607/* Return whether thread PID is still valid. */
c11d79f2
KB
1608
1609static int
206d3d3c 1610aix_thread_thread_alive (ptid_t ptid)
c11d79f2
KB
1611{
1612 if (!PD_TID (ptid))
206d3d3c 1613 return base_target.to_thread_alive (ptid);
c11d79f2 1614
0fe7bf7b
MS
1615 /* We update the thread list every time the child stops, so all
1616 valid threads should be in the thread list. */
c11d79f2
KB
1617 return in_thread_list (ptid);
1618}
1619
0fe7bf7b
MS
1620/* Return a printable representation of composite PID for use in
1621 "info threads" output. */
c11d79f2
KB
1622
1623static char *
206d3d3c 1624aix_thread_pid_to_str (ptid_t ptid)
c11d79f2
KB
1625{
1626 static char *ret = NULL;
1627
1628 if (!PD_TID (ptid))
206d3d3c 1629 return base_target.to_pid_to_str (ptid);
c11d79f2
KB
1630
1631 /* Free previous return value; a new one will be allocated by
1632 xasprintf(). */
1633 xfree (ret);
1634
1635 xasprintf (&ret, "Thread %ld", ptid_get_tid (ptid));
1636 return ret;
1637}
1638
0fe7bf7b
MS
1639/* Return a printable representation of extra information about
1640 THREAD, for use in "info threads" output. */
c11d79f2
KB
1641
1642static char *
206d3d3c 1643aix_thread_extra_thread_info (struct thread_info *thread)
c11d79f2
KB
1644{
1645 struct ui_file *buf;
1646 int status;
1647 pthdb_pthread_t pdtid;
1648 pthdb_tid_t tid;
1649 pthdb_state_t state;
1650 pthdb_suspendstate_t suspendstate;
1651 pthdb_detachstate_t detachstate;
1652 int cancelpend;
1653 long length;
1654 static char *ret = NULL;
1655
1656 if (!PD_TID (thread->ptid))
1657 return NULL;
1658
1659 buf = mem_fileopen ();
1660
1661 pdtid = thread->private->pdtid;
1662 tid = thread->private->tid;
1663
1664 if (tid != PTHDB_INVALID_TID)
1665 fprintf_unfiltered (buf, "tid %d", tid);
1666
1667 status = pthdb_pthread_state (pd_session, pdtid, &state);
1668 if (status != PTHDB_SUCCESS)
1669 state = PST_NOTSUP;
1670 fprintf_unfiltered (buf, ", %s", state2str (state));
1671
0fe7bf7b
MS
1672 status = pthdb_pthread_suspendstate (pd_session, pdtid,
1673 &suspendstate);
c11d79f2
KB
1674 if (status == PTHDB_SUCCESS && suspendstate == PSS_SUSPENDED)
1675 fprintf_unfiltered (buf, ", suspended");
1676
0fe7bf7b
MS
1677 status = pthdb_pthread_detachstate (pd_session, pdtid,
1678 &detachstate);
c11d79f2
KB
1679 if (status == PTHDB_SUCCESS && detachstate == PDS_DETACHED)
1680 fprintf_unfiltered (buf, ", detached");
1681
1682 pthdb_pthread_cancelpend (pd_session, pdtid, &cancelpend);
1683 if (status == PTHDB_SUCCESS && cancelpend)
1684 fprintf_unfiltered (buf, ", cancel pending");
1685
1686 ui_file_write (buf, "", 1);
1687
1688 xfree (ret); /* Free old buffer. */
1689
1690 ret = ui_file_xstrdup (buf, &length);
1691 ui_file_delete (buf);
1692
1693 return ret;
1694}
1695
206d3d3c 1696/* Initialize target aix_thread_ops. */
c11d79f2
KB
1697
1698static void
206d3d3c 1699init_aix_thread_ops (void)
c11d79f2 1700{
206d3d3c
KB
1701 aix_thread_ops.to_shortname = "aix-threads";
1702 aix_thread_ops.to_longname = "AIX pthread support";
1703 aix_thread_ops.to_doc = "AIX pthread support";
1704
1705 aix_thread_ops.to_attach = aix_thread_attach;
1706 aix_thread_ops.to_detach = aix_thread_detach;
1707 aix_thread_ops.to_resume = aix_thread_resume;
1708 aix_thread_ops.to_wait = aix_thread_wait;
1709 aix_thread_ops.to_fetch_registers = aix_thread_fetch_registers;
1710 aix_thread_ops.to_store_registers = aix_thread_store_registers;
1711 aix_thread_ops.to_xfer_memory = aix_thread_xfer_memory;
1712 /* No need for aix_thread_ops.to_create_inferior, because we activate thread
0fe7bf7b 1713 debugging when the inferior reaches pd_brk_addr. */
206d3d3c
KB
1714 aix_thread_ops.to_kill = aix_thread_kill;
1715 aix_thread_ops.to_mourn_inferior = aix_thread_mourn_inferior;
1716 aix_thread_ops.to_thread_alive = aix_thread_thread_alive;
1717 aix_thread_ops.to_pid_to_str = aix_thread_pid_to_str;
1718 aix_thread_ops.to_extra_thread_info = aix_thread_extra_thread_info;
1719 aix_thread_ops.to_stratum = thread_stratum;
1720 aix_thread_ops.to_magic = OPS_MAGIC;
c11d79f2
KB
1721}
1722
1723/* Module startup initialization function, automagically called by
0fe7bf7b 1724 init.c. */
c11d79f2
KB
1725
1726void
1727_initialize_aix_thread (void)
1728{
206d3d3c
KB
1729 init_aix_thread_ops ();
1730 add_target (&aix_thread_ops);
c11d79f2 1731
0fe7bf7b 1732 /* Notice when object files get loaded and unloaded. */
9a4105ab
AC
1733 target_new_objfile_chain = deprecated_target_new_objfile_hook;
1734 deprecated_target_new_objfile_hook = new_objfile;
8e2c28d4
KB
1735
1736 add_show_from_set (add_set_cmd ("aix-thread", no_class, var_zinteger,
1737 (char *) &debug_aix_thread,
1738 "Set debugging of AIX thread module.\n"
1739 "Enables printf debugging output.\n",
1740 &setdebuglist),
1741 &showdebuglist);
c11d79f2 1742}
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