Remove regcache_raw_supply
[deliverable/binutils-gdb.git] / gdb / aix-thread.c
CommitLineData
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1/* Low level interface for debugging AIX 4.3+ pthreads.
2
e2882c85 3 Copyright (C) 1999-2018 Free Software Foundation, Inc.
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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
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
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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/>. */
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20
21
22/* This module uses the libpthdebug.a library provided by AIX 4.3+ for
23 debugging pthread applications.
24
25 Some name prefix conventions:
26 pthdb_ provided by libpthdebug.a
27 pdc_ callbacks that this module provides to libpthdebug.a
28 pd_ variables or functions interfacing with libpthdebug.a
29
30 libpthdebug peculiarities:
31
0fe7bf7b
MS
32 - pthdb_ptid_pthread() is prototyped in <sys/pthdebug.h>, but
33 it's not documented, and after several calls it stops working
34 and causes other libpthdebug functions to fail.
c11d79f2 35
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MS
36 - pthdb_tid_pthread() doesn't always work after
37 pthdb_session_update(), but it does work after cycling through
38 all threads using pthdb_pthread().
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39
40 */
41
42#include "defs.h"
43#include "gdbthread.h"
44#include "target.h"
45#include "inferior.h"
46#include "regcache.h"
8e2c28d4 47#include "gdbcmd.h"
27bae383 48#include "ppc-tdep.h"
76727919 49#include "observable.h"
77e371c0 50#include "objfiles.h"
c11d79f2 51
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52#include <procinfo.h>
53#include <sys/types.h>
54#include <sys/ptrace.h>
55#include <sys/reg.h>
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56#include <sched.h>
57#include <sys/pthdebug.h>
58
d645e32e 59#if !HAVE_DECL_GETTHRDS
eff44fea 60extern int getthrds (pid_t, struct thrdsinfo64 *, int, tid_t *, int);
d645e32e
JB
61#endif
62
0fe7bf7b 63/* Whether to emit debugging output. */
8e2c28d4 64static int debug_aix_thread;
c11d79f2 65
0fe7bf7b 66/* In AIX 5.1, functions use pthdb_tid_t instead of tid_t. */
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67#ifndef PTHDB_VERSION_3
68#define pthdb_tid_t tid_t
69#endif
70
0fe7bf7b 71/* Return whether to treat PID as a debuggable thread id. */
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72
73#define PD_TID(ptid) (pd_active && ptid_get_tid (ptid) != 0)
74
c11d79f2 75/* pthdb_user_t value that we pass to pthdb functions. 0 causes
0fe7bf7b 76 PTHDB_BAD_USER errors, so use 1. */
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77
78#define PD_USER 1
79
0fe7bf7b 80/* Success and failure values returned by pthdb callbacks. */
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81
82#define PDC_SUCCESS PTHDB_SUCCESS
83#define PDC_FAILURE PTHDB_CALLBACK
84
0fe7bf7b 85/* Private data attached to each element in GDB's thread list. */
c11d79f2 86
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SM
87struct aix_thread_info : public private_thread_info
88{
0fe7bf7b 89 pthdb_pthread_t pdtid; /* thread's libpthdebug id */
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90 pthdb_tid_t tid; /* kernel thread id */
91};
92
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SM
93/* Return the aix_thread_info attached to THREAD. */
94
95static aix_thread_info *
96get_aix_thread_info (thread_info *thread)
97{
98 return static_cast<aix_thread_info *> (thread->priv.get ());
99}
100
0fe7bf7b 101/* Information about a thread of which libpthdebug is aware. */
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102
103struct pd_thread {
104 pthdb_pthread_t pdtid;
105 pthread_t pthid;
106 pthdb_tid_t tid;
107};
108
0fe7bf7b 109/* This module's target-specific operations, active while pd_able is true. */
c11d79f2 110
d9f719f1
PA
111static const target_info aix_thread_target_info = {
112 "aix-threads",
113 N_("AIX pthread support"),
114 N_("AIX pthread support")
115};
116
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PA
117class aix_thread_target final : public target_ops
118{
119public:
120 aix_thread_target ()
121 { to_stratum = thread_stratum; }
122
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123 const target_info &info () const override
124 { return aix_thread_target_info; }
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125
126 void detach (inferior *, int) override;
127 void resume (ptid_t, int, enum gdb_signal) override;
128 ptid_t wait (ptid_t, struct target_waitstatus *, int) override;
129
130 void fetch_registers (struct regcache *, int) override;
131 void store_registers (struct regcache *, int) override;
132
133 enum target_xfer_status xfer_partial (enum target_object object,
134 const char *annex,
135 gdb_byte *readbuf,
136 const gdb_byte *writebuf,
137 ULONGEST offset, ULONGEST len,
138 ULONGEST *xfered_len) override;
139
140 void mourn_inferior () override;
141
57810aa7 142 bool thread_alive (ptid_t ptid) override;
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143
144 const char *pid_to_str (ptid_t) override;
145
146 const char *extra_thread_info (struct thread_info *) override;
147
148 ptid_t get_ada_task_ptid (long lwp, long thread) override;
149};
150
151static aix_thread_target aix_thread_ops;
c11d79f2 152
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153/* Address of the function that libpthread will call when libpthdebug
154 is ready to be initialized. */
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155
156static CORE_ADDR pd_brk_addr;
157
0fe7bf7b 158/* Whether the current application is debuggable by pthdb. */
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159
160static int pd_able = 0;
161
0fe7bf7b 162/* Whether a threaded application is being debugged. */
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163
164static int pd_active = 0;
165
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166/* Whether the current architecture is 64-bit.
167 Only valid when pd_able is true. */
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168
169static int arch64;
170
0fe7bf7b 171/* Forward declarations for pthdb callbacks. */
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172
173static int pdc_symbol_addrs (pthdb_user_t, pthdb_symbol_t *, int);
174static int pdc_read_data (pthdb_user_t, void *, pthdb_addr_t, size_t);
175static int pdc_write_data (pthdb_user_t, void *, pthdb_addr_t, size_t);
176static int pdc_read_regs (pthdb_user_t user, pthdb_tid_t tid,
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177 unsigned long long flags,
178 pthdb_context_t *context);
c11d79f2 179static int pdc_write_regs (pthdb_user_t user, pthdb_tid_t tid,
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180 unsigned long long flags,
181 pthdb_context_t *context);
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182static int pdc_alloc (pthdb_user_t, size_t, void **);
183static int pdc_realloc (pthdb_user_t, void *, size_t, void **);
184static int pdc_dealloc (pthdb_user_t, void *);
185
0fe7bf7b 186/* pthdb callbacks. */
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187
188static pthdb_callbacks_t pd_callbacks = {
189 pdc_symbol_addrs,
190 pdc_read_data,
191 pdc_write_data,
192 pdc_read_regs,
193 pdc_write_regs,
194 pdc_alloc,
195 pdc_realloc,
196 pdc_dealloc,
197 NULL
198};
199
0fe7bf7b 200/* Current pthdb session. */
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201
202static pthdb_session_t pd_session;
203
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204/* Return a printable representation of pthdebug function return
205 STATUS. */
c11d79f2 206
0a31ccfb 207static const char *
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208pd_status2str (int status)
209{
210 switch (status)
211 {
212 case PTHDB_SUCCESS: return "SUCCESS";
213 case PTHDB_NOSYS: return "NOSYS";
214 case PTHDB_NOTSUP: return "NOTSUP";
215 case PTHDB_BAD_VERSION: return "BAD_VERSION";
216 case PTHDB_BAD_USER: return "BAD_USER";
217 case PTHDB_BAD_SESSION: return "BAD_SESSION";
218 case PTHDB_BAD_MODE: return "BAD_MODE";
219 case PTHDB_BAD_FLAGS: return "BAD_FLAGS";
220 case PTHDB_BAD_CALLBACK: return "BAD_CALLBACK";
221 case PTHDB_BAD_POINTER: return "BAD_POINTER";
222 case PTHDB_BAD_CMD: return "BAD_CMD";
223 case PTHDB_BAD_PTHREAD: return "BAD_PTHREAD";
224 case PTHDB_BAD_ATTR: return "BAD_ATTR";
225 case PTHDB_BAD_MUTEX: return "BAD_MUTEX";
226 case PTHDB_BAD_MUTEXATTR: return "BAD_MUTEXATTR";
227 case PTHDB_BAD_COND: return "BAD_COND";
228 case PTHDB_BAD_CONDATTR: return "BAD_CONDATTR";
229 case PTHDB_BAD_RWLOCK: return "BAD_RWLOCK";
230 case PTHDB_BAD_RWLOCKATTR: return "BAD_RWLOCKATTR";
231 case PTHDB_BAD_KEY: return "BAD_KEY";
232 case PTHDB_BAD_PTID: return "BAD_PTID";
233 case PTHDB_BAD_TID: return "BAD_TID";
234 case PTHDB_CALLBACK: return "CALLBACK";
235 case PTHDB_CONTEXT: return "CONTEXT";
236 case PTHDB_HELD: return "HELD";
237 case PTHDB_NOT_HELD: return "NOT_HELD";
238 case PTHDB_MEMORY: return "MEMORY";
239 case PTHDB_NOT_PTHREADED: return "NOT_PTHREADED";
240 case PTHDB_SYMBOL: return "SYMBOL";
241 case PTHDB_NOT_AVAIL: return "NOT_AVAIL";
242 case PTHDB_INTERNAL: return "INTERNAL";
243 default: return "UNKNOWN";
244 }
245}
246
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247/* A call to ptrace(REQ, ID, ...) just returned RET. Check for
248 exceptional conditions and either return nonlocally or else return
249 1 for success and 0 for failure. */
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250
251static int
252ptrace_check (int req, int id, int ret)
253{
254 if (ret == 0 && !errno)
255 return 1;
256
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MS
257 /* According to ptrace(2), ptrace may fail with EPERM if "the
258 Identifier parameter corresponds to a kernel thread which is
259 stopped in kernel mode and whose computational state cannot be
260 read or written." This happens quite often with register reads. */
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261
262 switch (req)
263 {
264 case PTT_READ_GPRS:
265 case PTT_READ_FPRS:
266 case PTT_READ_SPRS:
267 if (ret == -1 && errno == EPERM)
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268 {
269 if (debug_aix_thread)
0fe7bf7b 270 fprintf_unfiltered (gdb_stdlog,
27bae383 271 "ptrace (%d, %d) = %d (errno = %d)\n",
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272 req, id, ret, errno);
273 return ret == -1 ? 0 : 1;
274 }
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275 break;
276 }
edefbb7c 277 error (_("aix-thread: ptrace (%d, %d) returned %d (errno = %d %s)"),
be006b8b 278 req, id, ret, errno, safe_strerror (errno));
0fe7bf7b 279 return 0; /* Not reached. */
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280}
281
fecf803e
UW
282/* Call ptracex (REQ, ID, ADDR, DATA, BUF) or
283 ptrace64 (REQ, ID, ADDR, DATA, BUF) if HAVE_PTRACE64.
284 Return success. */
285
286#ifdef HAVE_PTRACE64
287# define ptracex(request, pid, addr, data, buf) \
288 ptrace64 (request, pid, addr, data, buf)
289#endif
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290
291static int
292ptrace64aix (int req, int id, long long addr, int data, int *buf)
293{
294 errno = 0;
295 return ptrace_check (req, id, ptracex (req, id, addr, data, buf));
296}
297
fecf803e
UW
298/* Call ptrace (REQ, ID, ADDR, DATA, BUF) or
299 ptrace64 (REQ, ID, ADDR, DATA, BUF) if HAVE_PTRACE64.
300 Return success. */
301
302#ifdef HAVE_PTRACE64
303# define ptrace(request, pid, addr, data, buf) \
304 ptrace64 (request, pid, addr, data, buf)
305# define addr_ptr long long
306#else
307# define addr_ptr int *
308#endif
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309
310static int
fecf803e 311ptrace32 (int req, int id, addr_ptr addr, int data, int *buf)
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312{
313 errno = 0;
0fe7bf7b 314 return ptrace_check (req, id,
26f0edc1 315 ptrace (req, id, addr, data, buf));
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316}
317
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318/* If *PIDP is a composite process/thread id, convert it to a
319 process id. */
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320
321static void
322pid_to_prc (ptid_t *ptidp)
323{
324 ptid_t ptid;
325
326 ptid = *ptidp;
327 if (PD_TID (ptid))
dfd4cc63 328 *ptidp = pid_to_ptid (ptid_get_pid (ptid));
c11d79f2
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329}
330
0fe7bf7b
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331/* pthdb callback: for <i> from 0 to COUNT, set SYMBOLS[<i>].addr to
332 the address of SYMBOLS[<i>].name. */
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333
334static int
335pdc_symbol_addrs (pthdb_user_t user, pthdb_symbol_t *symbols, int count)
336{
3b7344d5 337 struct bound_minimal_symbol ms;
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338 int i;
339 char *name;
340
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341 if (debug_aix_thread)
342 fprintf_unfiltered (gdb_stdlog,
27bae383 343 "pdc_symbol_addrs (user = %ld, symbols = 0x%lx, count = %d)\n",
8e2c28d4 344 user, (long) symbols, count);
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345
346 for (i = 0; i < count; i++)
347 {
348 name = symbols[i].name;
8e2c28d4 349 if (debug_aix_thread)
0fe7bf7b 350 fprintf_unfiltered (gdb_stdlog,
27bae383 351 " symbols[%d].name = \"%s\"\n", i, name);
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352
353 if (!*name)
354 symbols[i].addr = 0;
355 else
356 {
3b7344d5
TT
357 ms = lookup_minimal_symbol (name, NULL, NULL);
358 if (ms.minsym == NULL)
c11d79f2 359 {
8e2c28d4 360 if (debug_aix_thread)
27bae383 361 fprintf_unfiltered (gdb_stdlog, " returning PDC_FAILURE\n");
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362 return PDC_FAILURE;
363 }
77e371c0 364 symbols[i].addr = BMSYMBOL_VALUE_ADDRESS (ms);
c11d79f2 365 }
8e2c28d4 366 if (debug_aix_thread)
27bae383 367 fprintf_unfiltered (gdb_stdlog, " symbols[%d].addr = %s\n",
bb599908 368 i, hex_string (symbols[i].addr));
c11d79f2 369 }
8e2c28d4 370 if (debug_aix_thread)
27bae383 371 fprintf_unfiltered (gdb_stdlog, " returning PDC_SUCCESS\n");
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372 return PDC_SUCCESS;
373}
374
0fe7bf7b
MS
375/* Read registers call back function should be able to read the
376 context information of a debuggee kernel thread from an active
377 process or from a core file. The information should be formatted
378 in context64 form for both 32-bit and 64-bit process.
379 If successful return 0, else non-zero is returned. */
380
c11d79f2
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381static int
382pdc_read_regs (pthdb_user_t user,
383 pthdb_tid_t tid,
384 unsigned long long flags,
385 pthdb_context_t *context)
386{
0fe7bf7b
MS
387 /* This function doesn't appear to be used, so we could probably
388 just return 0 here. HOWEVER, if it is not defined, the OS will
389 complain and several thread debug functions will fail. In case
390 this is needed, I have implemented what I think it should do,
391 however this code is untested. */
392
063715bf
JB
393 uint64_t gprs64[ppc_num_gprs];
394 uint32_t gprs32[ppc_num_gprs];
395 double fprs[ppc_num_fprs];
c11d79f2
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396 struct ptxsprs sprs64;
397 struct ptsprs sprs32;
398
8e2c28d4 399 if (debug_aix_thread)
27bae383 400 fprintf_unfiltered (gdb_stdlog, "pdc_read_regs tid=%d flags=%s\n",
bb599908 401 (int) tid, hex_string (flags));
c11d79f2 402
0fe7bf7b 403 /* General-purpose registers. */
c11d79f2
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404 if (flags & PTHDB_FLAG_GPRS)
405 {
406 if (arch64)
407 {
0fe7bf7b
MS
408 if (!ptrace64aix (PTT_READ_GPRS, tid,
409 (unsigned long) gprs64, 0, NULL))
c11d79f2
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410 memset (gprs64, 0, sizeof (gprs64));
411 memcpy (context->gpr, gprs64, sizeof(gprs64));
412 }
413 else
414 {
3b631e37 415 if (!ptrace32 (PTT_READ_GPRS, tid, (uintptr_t) gprs32, 0, NULL))
c11d79f2
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416 memset (gprs32, 0, sizeof (gprs32));
417 memcpy (context->gpr, gprs32, sizeof(gprs32));
418 }
419 }
420
0fe7bf7b 421 /* Floating-point registers. */
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422 if (flags & PTHDB_FLAG_FPRS)
423 {
3b631e37 424 if (!ptrace32 (PTT_READ_FPRS, tid, (uintptr_t) fprs, 0, NULL))
c11d79f2 425 memset (fprs, 0, sizeof (fprs));
46bba1ef 426 memcpy (context->fpr, fprs, sizeof(fprs));
c11d79f2
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427 }
428
0fe7bf7b 429 /* Special-purpose registers. */
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430 if (flags & PTHDB_FLAG_SPRS)
431 {
432 if (arch64)
433 {
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MS
434 if (!ptrace64aix (PTT_READ_SPRS, tid,
435 (unsigned long) &sprs64, 0, NULL))
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436 memset (&sprs64, 0, sizeof (sprs64));
437 memcpy (&context->msr, &sprs64, sizeof(sprs64));
438 }
439 else
440 {
3b631e37 441 if (!ptrace32 (PTT_READ_SPRS, tid, (uintptr_t) &sprs32, 0, NULL))
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442 memset (&sprs32, 0, sizeof (sprs32));
443 memcpy (&context->msr, &sprs32, sizeof(sprs32));
444 }
445 }
446 return 0;
447}
448
0fe7bf7b 449/* Write register function should be able to write requested context
0963b4bd 450 information to specified debuggee's kernel thread id.
0fe7bf7b
MS
451 If successful return 0, else non-zero is returned. */
452
c11d79f2
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453static int
454pdc_write_regs (pthdb_user_t user,
455 pthdb_tid_t tid,
456 unsigned long long flags,
457 pthdb_context_t *context)
458{
0fe7bf7b
MS
459 /* This function doesn't appear to be used, so we could probably
460 just return 0 here. HOWEVER, if it is not defined, the OS will
461 complain and several thread debug functions will fail. In case
462 this is needed, I have implemented what I think it should do,
463 however this code is untested. */
c11d79f2 464
8e2c28d4 465 if (debug_aix_thread)
27bae383 466 fprintf_unfiltered (gdb_stdlog, "pdc_write_regs tid=%d flags=%s\n",
bb599908 467 (int) tid, hex_string (flags));
c11d79f2 468
0fe7bf7b 469 /* General-purpose registers. */
c11d79f2
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470 if (flags & PTHDB_FLAG_GPRS)
471 {
472 if (arch64)
0fe7bf7b 473 ptrace64aix (PTT_WRITE_GPRS, tid,
206d3d3c 474 (unsigned long) context->gpr, 0, NULL);
c11d79f2 475 else
3b631e37 476 ptrace32 (PTT_WRITE_GPRS, tid, (uintptr_t) context->gpr, 0, NULL);
c11d79f2
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477 }
478
0fe7bf7b 479 /* Floating-point registers. */
c11d79f2
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480 if (flags & PTHDB_FLAG_FPRS)
481 {
3b631e37 482 ptrace32 (PTT_WRITE_FPRS, tid, (uintptr_t) context->fpr, 0, NULL);
c11d79f2
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483 }
484
0fe7bf7b 485 /* Special-purpose registers. */
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486 if (flags & PTHDB_FLAG_SPRS)
487 {
488 if (arch64)
489 {
0fe7bf7b
MS
490 ptrace64aix (PTT_WRITE_SPRS, tid,
491 (unsigned long) &context->msr, 0, NULL);
c11d79f2
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492 }
493 else
494 {
3b631e37 495 ptrace32 (PTT_WRITE_SPRS, tid, (uintptr_t) &context->msr, 0, NULL);
c11d79f2
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496 }
497 }
498 return 0;
499}
500
0fe7bf7b 501/* pthdb callback: read LEN bytes from process ADDR into BUF. */
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502
503static int
0fe7bf7b
MS
504pdc_read_data (pthdb_user_t user, void *buf,
505 pthdb_addr_t addr, size_t len)
c11d79f2
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506{
507 int status, ret;
508
8e2c28d4
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509 if (debug_aix_thread)
510 fprintf_unfiltered (gdb_stdlog,
27bae383 511 "pdc_read_data (user = %ld, buf = 0x%lx, addr = %s, len = %ld)\n",
bb599908 512 user, (long) buf, hex_string (addr), len);
c11d79f2 513
71829b1a 514 status = target_read_memory (addr, (gdb_byte *) buf, len);
c11d79f2
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515 ret = status == 0 ? PDC_SUCCESS : PDC_FAILURE;
516
8e2c28d4 517 if (debug_aix_thread)
27bae383 518 fprintf_unfiltered (gdb_stdlog, " status=%d, returning %s\n",
0fe7bf7b 519 status, pd_status2str (ret));
c11d79f2
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520 return ret;
521}
522
0fe7bf7b 523/* pthdb callback: write LEN bytes from BUF to process ADDR. */
c11d79f2
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524
525static int
0fe7bf7b
MS
526pdc_write_data (pthdb_user_t user, void *buf,
527 pthdb_addr_t addr, size_t len)
c11d79f2
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528{
529 int status, ret;
530
8e2c28d4
KB
531 if (debug_aix_thread)
532 fprintf_unfiltered (gdb_stdlog,
27bae383 533 "pdc_write_data (user = %ld, buf = 0x%lx, addr = %s, len = %ld)\n",
bb599908 534 user, (long) buf, hex_string (addr), len);
c11d79f2 535
71829b1a 536 status = target_write_memory (addr, (gdb_byte *) buf, len);
c11d79f2
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537 ret = status == 0 ? PDC_SUCCESS : PDC_FAILURE;
538
8e2c28d4 539 if (debug_aix_thread)
27bae383 540 fprintf_unfiltered (gdb_stdlog, " status=%d, returning %s\n", status,
8e2c28d4 541 pd_status2str (ret));
c11d79f2
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542 return ret;
543}
544
0fe7bf7b
MS
545/* pthdb callback: allocate a LEN-byte buffer and store a pointer to it
546 in BUFP. */
c11d79f2
KB
547
548static int
549pdc_alloc (pthdb_user_t user, size_t len, void **bufp)
550{
8e2c28d4
KB
551 if (debug_aix_thread)
552 fprintf_unfiltered (gdb_stdlog,
27bae383 553 "pdc_alloc (user = %ld, len = %ld, bufp = 0x%lx)\n",
8e2c28d4 554 user, len, (long) bufp);
c11d79f2 555 *bufp = xmalloc (len);
8e2c28d4 556 if (debug_aix_thread)
0fe7bf7b 557 fprintf_unfiltered (gdb_stdlog,
27bae383 558 " malloc returned 0x%lx\n", (long) *bufp);
0fe7bf7b
MS
559
560 /* Note: xmalloc() can't return 0; therefore PDC_FAILURE will never
561 be returned. */
562
c11d79f2
KB
563 return *bufp ? PDC_SUCCESS : PDC_FAILURE;
564}
565
0fe7bf7b
MS
566/* pthdb callback: reallocate BUF, which was allocated by the alloc or
567 realloc callback, so that it contains LEN bytes, and store a
568 pointer to the result in BUFP. */
c11d79f2
KB
569
570static int
571pdc_realloc (pthdb_user_t user, void *buf, size_t len, void **bufp)
572{
8e2c28d4
KB
573 if (debug_aix_thread)
574 fprintf_unfiltered (gdb_stdlog,
27bae383 575 "pdc_realloc (user = %ld, buf = 0x%lx, len = %ld, bufp = 0x%lx)\n",
8e2c28d4 576 user, (long) buf, len, (long) bufp);
be006b8b 577 *bufp = xrealloc (buf, len);
8e2c28d4 578 if (debug_aix_thread)
0fe7bf7b 579 fprintf_unfiltered (gdb_stdlog,
27bae383 580 " realloc returned 0x%lx\n", (long) *bufp);
c11d79f2
KB
581 return *bufp ? PDC_SUCCESS : PDC_FAILURE;
582}
583
0fe7bf7b
MS
584/* pthdb callback: free BUF, which was allocated by the alloc or
585 realloc callback. */
c11d79f2
KB
586
587static int
588pdc_dealloc (pthdb_user_t user, void *buf)
589{
8e2c28d4 590 if (debug_aix_thread)
0fe7bf7b 591 fprintf_unfiltered (gdb_stdlog,
27bae383 592 "pdc_free (user = %ld, buf = 0x%lx)\n", user,
8e2c28d4 593 (long) buf);
c11d79f2
KB
594 xfree (buf);
595 return PDC_SUCCESS;
596}
597
0fe7bf7b 598/* Return a printable representation of pthread STATE. */
c11d79f2
KB
599
600static char *
601state2str (pthdb_state_t state)
602{
603 switch (state)
604 {
edefbb7c
AC
605 case PST_IDLE:
606 /* i18n: Like "Thread-Id %d, [state] idle" */
607 return _("idle"); /* being created */
608 case PST_RUN:
609 /* i18n: Like "Thread-Id %d, [state] running" */
610 return _("running"); /* running */
611 case PST_SLEEP:
612 /* i18n: Like "Thread-Id %d, [state] sleeping" */
613 return _("sleeping"); /* awaiting an event */
614 case PST_READY:
615 /* i18n: Like "Thread-Id %d, [state] ready" */
616 return _("ready"); /* runnable */
617 case PST_TERM:
618 /* i18n: Like "Thread-Id %d, [state] finished" */
619 return _("finished"); /* awaiting a join/detach */
620 default:
621 /* i18n: Like "Thread-Id %d, [state] unknown" */
622 return _("unknown");
c11d79f2
KB
623 }
624}
625
0fe7bf7b 626/* qsort() comparison function for sorting pd_thread structs by pthid. */
c11d79f2
KB
627
628static int
629pcmp (const void *p1v, const void *p2v)
630{
631 struct pd_thread *p1 = (struct pd_thread *) p1v;
632 struct pd_thread *p2 = (struct pd_thread *) p2v;
633 return p1->pthid < p2->pthid ? -1 : p1->pthid > p2->pthid;
634}
635
77f0be4e
JB
636/* iterate_over_threads() callback for counting GDB threads.
637
638 Do not count the main thread (whose tid is zero). This matches
639 the list of threads provided by the pthreaddebug library, which
640 does not include that main thread either, and thus allows us
641 to compare the two lists. */
c11d79f2
KB
642
643static int
644giter_count (struct thread_info *thread, void *countp)
645{
77f0be4e
JB
646 if (PD_TID (thread->ptid))
647 (*(int *) countp)++;
c11d79f2
KB
648 return 0;
649}
650
77f0be4e
JB
651/* iterate_over_threads() callback for accumulating GDB thread pids.
652
653 Do not include the main thread (whose tid is zero). This matches
654 the list of threads provided by the pthreaddebug library, which
655 does not include that main thread either, and thus allows us
656 to compare the two lists. */
c11d79f2
KB
657
658static int
659giter_accum (struct thread_info *thread, void *bufp)
660{
77f0be4e
JB
661 if (PD_TID (thread->ptid))
662 {
663 **(struct thread_info ***) bufp = thread;
664 (*(struct thread_info ***) bufp)++;
665 }
c11d79f2
KB
666 return 0;
667}
668
669/* ptid comparison function */
0fe7bf7b 670
c11d79f2
KB
671static int
672ptid_cmp (ptid_t ptid1, ptid_t ptid2)
673{
674 int pid1, pid2;
675
676 if (ptid_get_pid (ptid1) < ptid_get_pid (ptid2))
677 return -1;
678 else if (ptid_get_pid (ptid1) > ptid_get_pid (ptid2))
679 return 1;
680 else if (ptid_get_tid (ptid1) < ptid_get_tid (ptid2))
681 return -1;
682 else if (ptid_get_tid (ptid1) > ptid_get_tid (ptid2))
683 return 1;
684 else if (ptid_get_lwp (ptid1) < ptid_get_lwp (ptid2))
685 return -1;
686 else if (ptid_get_lwp (ptid1) > ptid_get_lwp (ptid2))
687 return 1;
688 else
689 return 0;
690}
691
0fe7bf7b 692/* qsort() comparison function for sorting thread_info structs by pid. */
c11d79f2
KB
693
694static int
695gcmp (const void *t1v, const void *t2v)
696{
697 struct thread_info *t1 = *(struct thread_info **) t1v;
698 struct thread_info *t2 = *(struct thread_info **) t2v;
699 return ptid_cmp (t1->ptid, t2->ptid);
700}
701
9ad7bec7
JB
702/* Search through the list of all kernel threads for the thread
703 that has stopped on a SIGTRAP signal, and return its TID.
704 Return 0 if none found. */
705
706static pthdb_tid_t
707get_signaled_thread (void)
708{
709 struct thrdsinfo64 thrinf;
eff44fea 710 tid_t ktid = 0;
9ad7bec7
JB
711 int result = 0;
712
9ad7bec7
JB
713 while (1)
714 {
dfd4cc63 715 if (getthrds (ptid_get_pid (inferior_ptid), &thrinf,
9ad7bec7
JB
716 sizeof (thrinf), &ktid, 1) != 1)
717 break;
718
719 if (thrinf.ti_cursig == SIGTRAP)
720 return thrinf.ti_tid;
721 }
722
723 /* Didn't find any thread stopped on a SIGTRAP signal. */
724 return 0;
725}
726
c11d79f2
KB
727/* Synchronize GDB's thread list with libpthdebug's.
728
729 There are some benefits of doing this every time the inferior stops:
730
0fe7bf7b
MS
731 - allows users to run thread-specific commands without needing to
732 run "info threads" first
c11d79f2
KB
733
734 - helps pthdb_tid_pthread() work properly (see "libpthdebug
735 peculiarities" at the top of this module)
736
0fe7bf7b
MS
737 - simplifies the demands placed on libpthdebug, which seems to
738 have difficulty with certain call patterns */
c11d79f2
KB
739
740static void
741sync_threadlists (void)
742{
743 int cmd, status, infpid;
744 int pcount, psize, pi, gcount, gi;
745 struct pd_thread *pbuf;
746 struct thread_info **gbuf, **g, *thread;
747 pthdb_pthread_t pdtid;
748 pthread_t pthid;
749 pthdb_tid_t tid;
c11d79f2 750
0fe7bf7b 751 /* Accumulate an array of libpthdebug threads sorted by pthread id. */
c11d79f2
KB
752
753 pcount = 0;
754 psize = 1;
8d749320 755 pbuf = XNEWVEC (struct pd_thread, psize);
c11d79f2
KB
756
757 for (cmd = PTHDB_LIST_FIRST;; cmd = PTHDB_LIST_NEXT)
758 {
759 status = pthdb_pthread (pd_session, &pdtid, cmd);
760 if (status != PTHDB_SUCCESS || pdtid == PTHDB_INVALID_PTHREAD)
761 break;
762
763 status = pthdb_pthread_ptid (pd_session, pdtid, &pthid);
764 if (status != PTHDB_SUCCESS || pthid == PTHDB_INVALID_PTID)
765 continue;
766
767 if (pcount == psize)
768 {
769 psize *= 2;
0fe7bf7b
MS
770 pbuf = (struct pd_thread *) xrealloc (pbuf,
771 psize * sizeof *pbuf);
c11d79f2
KB
772 }
773 pbuf[pcount].pdtid = pdtid;
774 pbuf[pcount].pthid = pthid;
775 pcount++;
776 }
777
778 for (pi = 0; pi < pcount; pi++)
779 {
780 status = pthdb_pthread_tid (pd_session, pbuf[pi].pdtid, &tid);
781 if (status != PTHDB_SUCCESS)
782 tid = PTHDB_INVALID_TID;
783 pbuf[pi].tid = tid;
784 }
785
786 qsort (pbuf, pcount, sizeof *pbuf, pcmp);
787
0fe7bf7b 788 /* Accumulate an array of GDB threads sorted by pid. */
c11d79f2
KB
789
790 gcount = 0;
791 iterate_over_threads (giter_count, &gcount);
8d749320 792 g = gbuf = XNEWVEC (struct thread_info *, gcount);
c11d79f2
KB
793 iterate_over_threads (giter_accum, &g);
794 qsort (gbuf, gcount, sizeof *gbuf, gcmp);
795
0fe7bf7b 796 /* Apply differences between the two arrays to GDB's thread list. */
c11d79f2 797
dfd4cc63 798 infpid = ptid_get_pid (inferior_ptid);
c11d79f2
KB
799 for (pi = gi = 0; pi < pcount || gi < gcount;)
800 {
c11d79f2 801 if (pi == pcount)
c11d79f2 802 {
42cc437f 803 delete_thread (gbuf[gi]->ptid);
c11d79f2
KB
804 gi++;
805 }
42cc437f 806 else if (gi == gcount)
c11d79f2 807 {
7aabaf9d
SM
808 aix_thread_info *priv = new aix_thread_info;
809 priv->pdtid = pbuf[pi].pdtid;
810 priv->tid = pbuf[pi].tid;
811
812 thread = add_thread_with_info (ptid_t (infpid, 0, pbuf[pi].pthid), priv);
813
c11d79f2
KB
814 pi++;
815 }
42cc437f
KB
816 else
817 {
818 ptid_t pptid, gptid;
819 int cmp_result;
820
dfd4cc63 821 pptid = ptid_build (infpid, 0, pbuf[pi].pthid);
42cc437f
KB
822 gptid = gbuf[gi]->ptid;
823 pdtid = pbuf[pi].pdtid;
824 tid = pbuf[pi].tid;
c11d79f2 825
42cc437f
KB
826 cmp_result = ptid_cmp (pptid, gptid);
827
828 if (cmp_result == 0)
829 {
7aabaf9d
SM
830 aix_thread_info *priv = get_aix_thread_info (gbuf[gi]);
831
832 priv->pdtid = pdtid;
833 priv->tid = tid;
42cc437f
KB
834 pi++;
835 gi++;
836 }
837 else if (cmp_result > 0)
838 {
839 delete_thread (gptid);
840 gi++;
841 }
842 else
843 {
844 thread = add_thread (pptid);
7aabaf9d
SM
845
846 aix_thread_info *priv = new aix_thread_info;
847 thread->priv.reset (priv);
848 priv->pdtid = pdtid;
849 priv->tid = tid;
42cc437f
KB
850 pi++;
851 }
852 }
c11d79f2
KB
853 }
854
855 xfree (pbuf);
856 xfree (gbuf);
857}
858
9ad7bec7
JB
859/* Iterate_over_threads() callback for locating a thread, using
860 the TID of its associated kernel thread. */
c11d79f2
KB
861
862static int
9ad7bec7 863iter_tid (struct thread_info *thread, void *tidp)
c11d79f2 864{
9ad7bec7 865 const pthdb_tid_t tid = *(pthdb_tid_t *)tidp;
7aabaf9d 866 aix_thread_info *priv = get_aix_thread_info (thread);
c11d79f2 867
7aabaf9d 868 return priv->tid == tid;
c11d79f2
KB
869}
870
0fe7bf7b
MS
871/* Synchronize libpthdebug's state with the inferior and with GDB,
872 generate a composite process/thread <pid> for the current thread,
873 set inferior_ptid to <pid> if SET_INFPID, and return <pid>. */
c11d79f2
KB
874
875static ptid_t
876pd_update (int set_infpid)
877{
878 int status;
879 ptid_t ptid;
9ad7bec7
JB
880 pthdb_tid_t tid;
881 struct thread_info *thread = NULL;
c11d79f2
KB
882
883 if (!pd_active)
884 return inferior_ptid;
885
886 status = pthdb_session_update (pd_session);
887 if (status != PTHDB_SUCCESS)
888 return inferior_ptid;
889
890 sync_threadlists ();
891
0fe7bf7b 892 /* Define "current thread" as one that just received a trap signal. */
c11d79f2 893
9ad7bec7
JB
894 tid = get_signaled_thread ();
895 if (tid != 0)
896 thread = iterate_over_threads (iter_tid, &tid);
c11d79f2
KB
897 if (!thread)
898 ptid = inferior_ptid;
899 else
900 {
901 ptid = thread->ptid;
902 if (set_infpid)
903 inferior_ptid = ptid;
904 }
905 return ptid;
906}
907
0963b4bd 908/* Try to start debugging threads in the current process.
0fe7bf7b
MS
909 If successful and SET_INFPID, set inferior_ptid to reflect the
910 current thread. */
c11d79f2
KB
911
912static ptid_t
913pd_activate (int set_infpid)
914{
915 int status;
916
917 status = pthdb_session_init (PD_USER, arch64 ? PEM_64BIT : PEM_32BIT,
0fe7bf7b
MS
918 PTHDB_FLAG_REGS, &pd_callbacks,
919 &pd_session);
c11d79f2
KB
920 if (status != PTHDB_SUCCESS)
921 {
922 return inferior_ptid;
923 }
924 pd_active = 1;
925 return pd_update (set_infpid);
926}
927
0fe7bf7b 928/* Undo the effects of pd_activate(). */
c11d79f2
KB
929
930static void
931pd_deactivate (void)
932{
933 if (!pd_active)
934 return;
935 pthdb_session_destroy (pd_session);
936
937 pid_to_prc (&inferior_ptid);
938 pd_active = 0;
939}
940
0fe7bf7b
MS
941/* An object file has just been loaded. Check whether the current
942 application is pthreaded, and if so, prepare for thread debugging. */
c11d79f2
KB
943
944static void
945pd_enable (void)
946{
947 int status;
948 char *stub_name;
3b7344d5 949 struct bound_minimal_symbol ms;
c11d79f2 950
0fe7bf7b 951 /* Don't initialize twice. */
c11d79f2
KB
952 if (pd_able)
953 return;
954
0fe7bf7b 955 /* Check application word size. */
f5656ead 956 arch64 = register_size (target_gdbarch (), 0) == 8;
c11d79f2 957
0fe7bf7b 958 /* Check whether the application is pthreaded. */
c11d79f2 959 stub_name = NULL;
0fe7bf7b
MS
960 status = pthdb_session_pthreaded (PD_USER, PTHDB_FLAG_REGS,
961 &pd_callbacks, &stub_name);
f8bf5763
PM
962 if ((status != PTHDB_SUCCESS
963 && status != PTHDB_NOT_PTHREADED) || !stub_name)
c11d79f2
KB
964 return;
965
0fe7bf7b 966 /* Set a breakpoint on the returned stub function. */
3b7344d5
TT
967 ms = lookup_minimal_symbol (stub_name, NULL, NULL);
968 if (ms.minsym == NULL)
c11d79f2 969 return;
77e371c0 970 pd_brk_addr = BMSYMBOL_VALUE_ADDRESS (ms);
f5656ead 971 if (!create_thread_event_breakpoint (target_gdbarch (), pd_brk_addr))
c11d79f2
KB
972 return;
973
0fe7bf7b 974 /* Prepare for thread debugging. */
206d3d3c 975 push_target (&aix_thread_ops);
c11d79f2
KB
976 pd_able = 1;
977
0fe7bf7b
MS
978 /* If we're debugging a core file or an attached inferior, the
979 pthread library may already have been initialized, so try to
980 activate thread debugging. */
c11d79f2
KB
981 pd_activate (1);
982}
983
0fe7bf7b 984/* Undo the effects of pd_enable(). */
c11d79f2
KB
985
986static void
987pd_disable (void)
988{
989 if (!pd_able)
990 return;
991 if (pd_active)
992 pd_deactivate ();
993 pd_able = 0;
206d3d3c 994 unpush_target (&aix_thread_ops);
c11d79f2
KB
995}
996
06d3b283 997/* new_objfile observer callback.
c11d79f2 998
0fe7bf7b
MS
999 If OBJFILE is non-null, check whether a threaded application is
1000 being debugged, and if so, prepare for thread debugging.
c11d79f2 1001
0fe7bf7b 1002 If OBJFILE is null, stop debugging threads. */
c11d79f2
KB
1003
1004static void
1005new_objfile (struct objfile *objfile)
1006{
1007 if (objfile)
1008 pd_enable ();
1009 else
1010 pd_disable ();
c11d79f2
KB
1011}
1012
0fe7bf7b 1013/* Attach to process specified by ARGS. */
c11d79f2
KB
1014
1015static void
b3ccfe11 1016aix_thread_inferior_created (struct target_ops *ops, int from_tty)
c11d79f2 1017{
b3ccfe11 1018 pd_enable ();
c11d79f2
KB
1019}
1020
206d3d3c 1021/* Detach from the process attached to by aix_thread_attach(). */
c11d79f2 1022
f6ac5f3d
PA
1023void
1024aix_thread_target::detach (inferior *inf, int from_tty)
c11d79f2 1025{
f6ac5f3d 1026 struct target_ops *beneath = find_target_beneath (this);
d30acaa7 1027
6c0c456d 1028 pd_disable ();
f6ac5f3d 1029 beneath->detach (inf, from_tty);
c11d79f2
KB
1030}
1031
1032/* Tell the inferior process to continue running thread PID if != -1
0fe7bf7b 1033 and all threads otherwise. */
c11d79f2 1034
f6ac5f3d
PA
1035void
1036aix_thread_target::resume (ptid_t ptid, int step, enum gdb_signal sig)
c11d79f2
KB
1037{
1038 struct thread_info *thread;
1039 pthdb_tid_t tid[2];
1040
1041 if (!PD_TID (ptid))
14fa3751 1042 {
2989a365 1043 scoped_restore save_inferior_ptid = make_scoped_restore (&inferior_ptid);
f6ac5f3d 1044 struct target_ops *beneath = find_target_beneath (this);
d30acaa7 1045
dfd4cc63 1046 inferior_ptid = pid_to_ptid (ptid_get_pid (inferior_ptid));
f6ac5f3d 1047 beneath->resume (ptid, step, sig);
14fa3751 1048 }
c11d79f2
KB
1049 else
1050 {
e09875d4 1051 thread = find_thread_ptid (ptid);
c11d79f2 1052 if (!thread)
edefbb7c 1053 error (_("aix-thread resume: unknown pthread %ld"),
dfd4cc63 1054 ptid_get_lwp (ptid));
c11d79f2 1055
7aabaf9d
SM
1056 aix_thread_info *priv = get_aix_thread_info (thread);
1057
1058 tid[0] = priv->tid;
c11d79f2 1059 if (tid[0] == PTHDB_INVALID_TID)
edefbb7c 1060 error (_("aix-thread resume: no tid for pthread %ld"),
dfd4cc63 1061 ptid_get_lwp (ptid));
c11d79f2
KB
1062 tid[1] = 0;
1063
1064 if (arch64)
fecf803e 1065 ptrace64aix (PTT_CONTINUE, tid[0], (long long) 1,
71829b1a 1066 gdb_signal_to_host (sig), (PTRACE_TYPE_ARG5) tid);
c11d79f2 1067 else
fecf803e 1068 ptrace32 (PTT_CONTINUE, tid[0], (addr_ptr) 1,
71829b1a 1069 gdb_signal_to_host (sig), (PTRACE_TYPE_ARG5) tid);
c11d79f2
KB
1070 }
1071}
1072
0fe7bf7b
MS
1073/* Wait for thread/process ID if != -1 or for any thread otherwise.
1074 If an error occurs, return -1, else return the pid of the stopped
1075 thread. */
c11d79f2 1076
f6ac5f3d
PA
1077ptid_t
1078aix_thread_target::wait (ptid_t ptid, struct target_waitstatus *status,
1079 int options)
c11d79f2 1080{
f6ac5f3d 1081 struct target_ops *beneath = find_target_beneath (this);
14fa3751 1082
2989a365
TT
1083 {
1084 scoped_restore save_inferior_ptid = make_scoped_restore (&inferior_ptid);
14fa3751 1085
2989a365
TT
1086 pid_to_prc (&ptid);
1087
1088 inferior_ptid = pid_to_ptid (ptid_get_pid (inferior_ptid));
f6ac5f3d 1089 ptid = beneath->wait (ptid, status, options);
2989a365 1090 }
14fa3751 1091
dfd4cc63 1092 if (ptid_get_pid (ptid) == -1)
c11d79f2
KB
1093 return pid_to_ptid (-1);
1094
0fe7bf7b 1095 /* Check whether libpthdebug might be ready to be initialized. */
515630c5 1096 if (!pd_active && status->kind == TARGET_WAITKIND_STOPPED
a493e3e2 1097 && status->value.sig == GDB_SIGNAL_TRAP)
515630c5
UW
1098 {
1099 struct regcache *regcache = get_thread_regcache (ptid);
ac7936df 1100 struct gdbarch *gdbarch = regcache->arch ();
515630c5
UW
1101
1102 if (regcache_read_pc (regcache)
527a273a 1103 - gdbarch_decr_pc_after_break (gdbarch) == pd_brk_addr)
515630c5
UW
1104 return pd_activate (0);
1105 }
c11d79f2
KB
1106
1107 return pd_update (0);
1108}
1109
0fe7bf7b 1110/* Record that the 64-bit general-purpose registers contain VALS. */
c11d79f2
KB
1111
1112static void
647478e0 1113supply_gprs64 (struct regcache *regcache, uint64_t *vals)
c11d79f2 1114{
ac7936df 1115 struct gdbarch_tdep *tdep = gdbarch_tdep (regcache->arch ());
c11d79f2
KB
1116 int regno;
1117
063715bf 1118 for (regno = 0; regno < ppc_num_gprs; regno++)
73e1c03f
SM
1119 regcache->raw_supply (tdep->ppc_gp0_regnum + regno,
1120 (char *) (vals + regno));
c11d79f2
KB
1121}
1122
0fe7bf7b 1123/* Record that 32-bit register REGNO contains VAL. */
c11d79f2
KB
1124
1125static void
647478e0 1126supply_reg32 (struct regcache *regcache, int regno, uint32_t val)
c11d79f2 1127{
73e1c03f 1128 regcache->raw_supply (regno, (char *) &val);
c11d79f2
KB
1129}
1130
0fe7bf7b 1131/* Record that the floating-point registers contain VALS. */
c11d79f2
KB
1132
1133static void
647478e0 1134supply_fprs (struct regcache *regcache, double *vals)
c11d79f2 1135{
ac7936df 1136 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1137 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
c11d79f2
KB
1138 int regno;
1139
383f0f5b
JB
1140 /* This function should never be called on architectures without
1141 floating-point registers. */
c7f30c7a 1142 gdb_assert (ppc_floating_point_unit_p (gdbarch));
383f0f5b 1143
786c562f
JB
1144 for (regno = tdep->ppc_fp0_regnum;
1145 regno < tdep->ppc_fp0_regnum + ppc_num_fprs;
1146 regno++)
73e1c03f
SM
1147 regcache->raw_supply (regno,
1148 (char *) (vals + regno - tdep->ppc_fp0_regnum));
c11d79f2
KB
1149}
1150
f1a91342
KB
1151/* Predicate to test whether given register number is a "special" register. */
1152static int
9970f04b 1153special_register_p (struct gdbarch *gdbarch, int regno)
f1a91342 1154{
9970f04b 1155 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
f1a91342 1156
9970f04b 1157 return regno == gdbarch_pc_regnum (gdbarch)
f1a91342
KB
1158 || regno == tdep->ppc_ps_regnum
1159 || regno == tdep->ppc_cr_regnum
1160 || regno == tdep->ppc_lr_regnum
1161 || regno == tdep->ppc_ctr_regnum
1162 || regno == tdep->ppc_xer_regnum
383f0f5b 1163 || (tdep->ppc_fpscr_regnum >= 0 && regno == tdep->ppc_fpscr_regnum)
f1a91342
KB
1164 || (tdep->ppc_mq_regnum >= 0 && regno == tdep->ppc_mq_regnum);
1165}
1166
1167
0fe7bf7b
MS
1168/* Record that the special registers contain the specified 64-bit and
1169 32-bit values. */
c11d79f2
KB
1170
1171static void
647478e0
UW
1172supply_sprs64 (struct regcache *regcache,
1173 uint64_t iar, uint64_t msr, uint32_t cr,
0e061eef
KB
1174 uint64_t lr, uint64_t ctr, uint32_t xer,
1175 uint32_t fpscr)
c11d79f2 1176{
ac7936df 1177 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1178 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
f1a91342 1179
73e1c03f
SM
1180 regcache->raw_supply (gdbarch_pc_regnum (gdbarch), (char *) &iar);
1181 regcache->raw_supply (tdep->ppc_ps_regnum, (char *) &msr);
1182 regcache->raw_supply (tdep->ppc_cr_regnum, (char *) &cr);
1183 regcache->raw_supply (tdep->ppc_lr_regnum, (char *) &lr);
1184 regcache->raw_supply (tdep->ppc_ctr_regnum, (char *) &ctr);
1185 regcache->raw_supply (tdep->ppc_xer_regnum, (char *) &xer);
383f0f5b 1186 if (tdep->ppc_fpscr_regnum >= 0)
73e1c03f 1187 regcache->raw_supply (tdep->ppc_fpscr_regnum, (char *) &fpscr);
c11d79f2
KB
1188}
1189
0fe7bf7b
MS
1190/* Record that the special registers contain the specified 32-bit
1191 values. */
c11d79f2
KB
1192
1193static void
647478e0
UW
1194supply_sprs32 (struct regcache *regcache,
1195 uint32_t iar, uint32_t msr, uint32_t cr,
0e061eef
KB
1196 uint32_t lr, uint32_t ctr, uint32_t xer,
1197 uint32_t fpscr)
c11d79f2 1198{
ac7936df 1199 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1200 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
f1a91342 1201
73e1c03f
SM
1202 regcache->raw_supply (gdbarch_pc_regnum (gdbarch), (char *) &iar);
1203 regcache->raw_supply (tdep->ppc_ps_regnum, (char *) &msr);
1204 regcache->raw_supply (tdep->ppc_cr_regnum, (char *) &cr);
1205 regcache->raw_supply (tdep->ppc_lr_regnum, (char *) &lr);
1206 regcache->raw_supply (tdep->ppc_ctr_regnum, (char *) &ctr);
1207 regcache->raw_supply (tdep->ppc_xer_regnum, (char *) &xer);
383f0f5b 1208 if (tdep->ppc_fpscr_regnum >= 0)
73e1c03f 1209 regcache->raw_supply (tdep->ppc_fpscr_regnum, (char *) &fpscr);
c11d79f2
KB
1210}
1211
1212/* Fetch all registers from pthread PDTID, which doesn't have a kernel
1213 thread.
1214
0fe7bf7b
MS
1215 There's no way to query a single register from a non-kernel
1216 pthread, so there's no need for a single-register version of this
1217 function. */
c11d79f2
KB
1218
1219static void
647478e0 1220fetch_regs_user_thread (struct regcache *regcache, pthdb_pthread_t pdtid)
c11d79f2 1221{
ac7936df 1222 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1223 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
c11d79f2
KB
1224 int status, i;
1225 pthdb_context_t ctx;
1226
8e2c28d4 1227 if (debug_aix_thread)
206d3d3c
KB
1228 fprintf_unfiltered (gdb_stdlog,
1229 "fetch_regs_user_thread %lx\n", (long) pdtid);
c11d79f2
KB
1230 status = pthdb_pthread_context (pd_session, pdtid, &ctx);
1231 if (status != PTHDB_SUCCESS)
edefbb7c 1232 error (_("aix-thread: fetch_registers: pthdb_pthread_context returned %s"),
14fa3751 1233 pd_status2str (status));
c11d79f2 1234
0fe7bf7b 1235 /* General-purpose registers. */
c11d79f2
KB
1236
1237 if (arch64)
647478e0 1238 supply_gprs64 (regcache, ctx.gpr);
c11d79f2 1239 else
063715bf 1240 for (i = 0; i < ppc_num_gprs; i++)
647478e0 1241 supply_reg32 (regcache, tdep->ppc_gp0_regnum + i, ctx.gpr[i]);
c11d79f2 1242
0fe7bf7b 1243 /* Floating-point registers. */
c11d79f2 1244
c7f30c7a 1245 if (ppc_floating_point_unit_p (gdbarch))
647478e0 1246 supply_fprs (regcache, ctx.fpr);
c11d79f2 1247
0fe7bf7b 1248 /* Special registers. */
c11d79f2
KB
1249
1250 if (arch64)
647478e0
UW
1251 supply_sprs64 (regcache, ctx.iar, ctx.msr, ctx.cr, ctx.lr, ctx.ctr,
1252 ctx.xer, ctx.fpscr);
c11d79f2 1253 else
647478e0
UW
1254 supply_sprs32 (regcache, ctx.iar, ctx.msr, ctx.cr, ctx.lr, ctx.ctr,
1255 ctx.xer, ctx.fpscr);
c11d79f2
KB
1256}
1257
0fe7bf7b
MS
1258/* Fetch register REGNO if != -1 or all registers otherwise from
1259 kernel thread TID.
c11d79f2 1260
0fe7bf7b
MS
1261 AIX provides a way to query all of a kernel thread's GPRs, FPRs, or
1262 SPRs, but there's no way to query individual registers within those
1263 groups. Therefore, if REGNO != -1, this function fetches an entire
1264 group.
c11d79f2 1265
0fe7bf7b
MS
1266 Unfortunately, kernel thread register queries often fail with
1267 EPERM, indicating that the thread is in kernel space. This breaks
1268 backtraces of threads other than the current one. To make that
1269 breakage obvious without throwing an error to top level (which is
1270 bad e.g. during "info threads" output), zero registers that can't
1271 be retrieved. */
c11d79f2
KB
1272
1273static void
647478e0
UW
1274fetch_regs_kernel_thread (struct regcache *regcache, int regno,
1275 pthdb_tid_t tid)
c11d79f2 1276{
ac7936df 1277 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1278 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
063715bf
JB
1279 uint64_t gprs64[ppc_num_gprs];
1280 uint32_t gprs32[ppc_num_gprs];
1281 double fprs[ppc_num_fprs];
c11d79f2
KB
1282 struct ptxsprs sprs64;
1283 struct ptsprs sprs32;
1284 int i;
1285
8e2c28d4
KB
1286 if (debug_aix_thread)
1287 fprintf_unfiltered (gdb_stdlog,
206d3d3c
KB
1288 "fetch_regs_kernel_thread tid=%lx regno=%d arch64=%d\n",
1289 (long) tid, regno, arch64);
c11d79f2 1290
0fe7bf7b 1291 /* General-purpose registers. */
daf6dc85
JB
1292 if (regno == -1
1293 || (tdep->ppc_gp0_regnum <= regno
1294 && regno < tdep->ppc_gp0_regnum + ppc_num_gprs))
c11d79f2
KB
1295 {
1296 if (arch64)
1297 {
0fe7bf7b
MS
1298 if (!ptrace64aix (PTT_READ_GPRS, tid,
1299 (unsigned long) gprs64, 0, NULL))
c11d79f2 1300 memset (gprs64, 0, sizeof (gprs64));
647478e0 1301 supply_gprs64 (regcache, gprs64);
c11d79f2
KB
1302 }
1303 else
1304 {
3b631e37 1305 if (!ptrace32 (PTT_READ_GPRS, tid, (uintptr_t) gprs32, 0, NULL))
c11d79f2 1306 memset (gprs32, 0, sizeof (gprs32));
063715bf 1307 for (i = 0; i < ppc_num_gprs; i++)
647478e0 1308 supply_reg32 (regcache, tdep->ppc_gp0_regnum + i, gprs32[i]);
c11d79f2
KB
1309 }
1310 }
1311
0fe7bf7b 1312 /* Floating-point registers. */
c11d79f2 1313
c7f30c7a 1314 if (ppc_floating_point_unit_p (gdbarch)
383f0f5b
JB
1315 && (regno == -1
1316 || (regno >= tdep->ppc_fp0_regnum
1317 && regno < tdep->ppc_fp0_regnum + ppc_num_fprs)))
c11d79f2 1318 {
3b631e37 1319 if (!ptrace32 (PTT_READ_FPRS, tid, (uintptr_t) fprs, 0, NULL))
c11d79f2 1320 memset (fprs, 0, sizeof (fprs));
647478e0 1321 supply_fprs (regcache, fprs);
c11d79f2
KB
1322 }
1323
0fe7bf7b 1324 /* Special-purpose registers. */
c11d79f2 1325
9970f04b 1326 if (regno == -1 || special_register_p (gdbarch, regno))
c11d79f2
KB
1327 {
1328 if (arch64)
1329 {
0fe7bf7b
MS
1330 if (!ptrace64aix (PTT_READ_SPRS, tid,
1331 (unsigned long) &sprs64, 0, NULL))
c11d79f2 1332 memset (&sprs64, 0, sizeof (sprs64));
647478e0
UW
1333 supply_sprs64 (regcache, sprs64.pt_iar, sprs64.pt_msr,
1334 sprs64.pt_cr, sprs64.pt_lr, sprs64.pt_ctr,
1335 sprs64.pt_xer, sprs64.pt_fpscr);
c11d79f2
KB
1336 }
1337 else
1338 {
c7f30c7a 1339 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
f1a91342 1340
3b631e37 1341 if (!ptrace32 (PTT_READ_SPRS, tid, (uintptr_t) &sprs32, 0, NULL))
c11d79f2 1342 memset (&sprs32, 0, sizeof (sprs32));
647478e0 1343 supply_sprs32 (regcache, sprs32.pt_iar, sprs32.pt_msr, sprs32.pt_cr,
0e061eef
KB
1344 sprs32.pt_lr, sprs32.pt_ctr, sprs32.pt_xer,
1345 sprs32.pt_fpscr);
c11d79f2 1346
f1a91342 1347 if (tdep->ppc_mq_regnum >= 0)
73e1c03f 1348 regcache->raw_supply (tdep->ppc_mq_regnum, (char *) &sprs32.pt_mq);
c11d79f2
KB
1349 }
1350 }
1351}
1352
edb5fb00
SM
1353/* Fetch register REGNO if != -1 or all registers otherwise from the
1354 thread/process connected to REGCACHE. */
c11d79f2 1355
f6ac5f3d
PA
1356void
1357aix_thread_target::fetch_registers (struct regcache *regcache, int regno)
c11d79f2
KB
1358{
1359 struct thread_info *thread;
1360 pthdb_tid_t tid;
f6ac5f3d 1361 struct target_ops *beneath = find_target_beneath (this);
c11d79f2 1362
222312d3 1363 if (!PD_TID (regcache->ptid ()))
f6ac5f3d 1364 beneath->fetch_registers (regcache, regno);
c11d79f2
KB
1365 else
1366 {
222312d3 1367 thread = find_thread_ptid (regcache->ptid ());
7aabaf9d
SM
1368 aix_thread_info *priv = get_aix_thread_info (thread);
1369 tid = priv->tid;
c11d79f2
KB
1370
1371 if (tid == PTHDB_INVALID_TID)
7aabaf9d 1372 fetch_regs_user_thread (regcache, priv->pdtid);
c11d79f2 1373 else
56be3814 1374 fetch_regs_kernel_thread (regcache, regno, tid);
c11d79f2
KB
1375 }
1376}
1377
61c5da0b
KB
1378/* Store the gp registers into an array of uint32_t or uint64_t. */
1379
1380static void
647478e0 1381fill_gprs64 (const struct regcache *regcache, uint64_t *vals)
61c5da0b 1382{
ac7936df 1383 struct gdbarch_tdep *tdep = gdbarch_tdep (regcache->arch ());
61c5da0b
KB
1384 int regno;
1385
daf6dc85 1386 for (regno = 0; regno < ppc_num_gprs; regno++)
0ec9f114
SM
1387 if (REG_VALID == regcache->get_register_status
1388 (tdep->ppc_gp0_regnum + regno))
647478e0 1389 regcache_raw_collect (regcache, tdep->ppc_gp0_regnum + regno,
822c9732 1390 vals + regno);
61c5da0b
KB
1391}
1392
1393static void
647478e0 1394fill_gprs32 (const struct regcache *regcache, uint32_t *vals)
61c5da0b 1395{
ac7936df 1396 struct gdbarch_tdep *tdep = gdbarch_tdep (regcache->arch ());
61c5da0b
KB
1397 int regno;
1398
daf6dc85 1399 for (regno = 0; regno < ppc_num_gprs; regno++)
0ec9f114
SM
1400 if (REG_VALID == regcache->get_register_status
1401 (tdep->ppc_gp0_regnum + regno))
647478e0 1402 regcache_raw_collect (regcache, tdep->ppc_gp0_regnum + regno,
822c9732 1403 vals + regno);
61c5da0b
KB
1404}
1405
1406/* Store the floating point registers into a double array. */
1407static void
647478e0 1408fill_fprs (const struct regcache *regcache, double *vals)
61c5da0b 1409{
ac7936df 1410 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1411 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
61c5da0b
KB
1412 int regno;
1413
383f0f5b
JB
1414 /* This function should never be called on architectures without
1415 floating-point registers. */
c7f30c7a 1416 gdb_assert (ppc_floating_point_unit_p (gdbarch));
383f0f5b 1417
366f009f
JB
1418 for (regno = tdep->ppc_fp0_regnum;
1419 regno < tdep->ppc_fp0_regnum + ppc_num_fprs;
1420 regno++)
0ec9f114 1421 if (REG_VALID == regcache->get_register_status (regno))
e3ebf1bb
JB
1422 regcache_raw_collect (regcache, regno,
1423 vals + regno - tdep->ppc_fp0_regnum);
61c5da0b
KB
1424}
1425
c11d79f2 1426/* Store the special registers into the specified 64-bit and 32-bit
0fe7bf7b 1427 locations. */
c11d79f2
KB
1428
1429static void
647478e0
UW
1430fill_sprs64 (const struct regcache *regcache,
1431 uint64_t *iar, uint64_t *msr, uint32_t *cr,
0e061eef
KB
1432 uint64_t *lr, uint64_t *ctr, uint32_t *xer,
1433 uint32_t *fpscr)
c11d79f2 1434{
ac7936df 1435 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1436 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
f1a91342
KB
1437
1438 /* Verify that the size of the size of the IAR buffer is the
1439 same as the raw size of the PC (in the register cache). If
1440 they're not, then either GDB has been built incorrectly, or
1441 there's some other kind of internal error. To be really safe,
1442 we should check all of the sizes. */
3e8c568d 1443 gdb_assert (sizeof (*iar) == register_size
c7f30c7a 1444 (gdbarch, gdbarch_pc_regnum (gdbarch)));
f1a91342 1445
0ec9f114 1446 if (REG_VALID == regcache->get_register_status (gdbarch_pc_regnum (gdbarch)))
c7f30c7a 1447 regcache_raw_collect (regcache, gdbarch_pc_regnum (gdbarch), iar);
0ec9f114 1448 if (REG_VALID == regcache->get_register_status (tdep->ppc_ps_regnum))
647478e0 1449 regcache_raw_collect (regcache, tdep->ppc_ps_regnum, msr);
0ec9f114 1450 if (REG_VALID == regcache->get_register_status (tdep->ppc_cr_regnum))
647478e0 1451 regcache_raw_collect (regcache, tdep->ppc_cr_regnum, cr);
0ec9f114 1452 if (REG_VALID == regcache->get_register_status (tdep->ppc_lr_regnum))
647478e0 1453 regcache_raw_collect (regcache, tdep->ppc_lr_regnum, lr);
0ec9f114 1454 if (REG_VALID == regcache->get_register_status (tdep->ppc_ctr_regnum))
647478e0 1455 regcache_raw_collect (regcache, tdep->ppc_ctr_regnum, ctr);
0ec9f114 1456 if (REG_VALID == regcache->get_register_status (tdep->ppc_xer_regnum))
647478e0 1457 regcache_raw_collect (regcache, tdep->ppc_xer_regnum, xer);
383f0f5b 1458 if (tdep->ppc_fpscr_regnum >= 0
0ec9f114 1459 && REG_VALID == regcache->get_register_status (tdep->ppc_fpscr_regnum))
647478e0 1460 regcache_raw_collect (regcache, tdep->ppc_fpscr_regnum, fpscr);
61c5da0b
KB
1461}
1462
1463static void
647478e0
UW
1464fill_sprs32 (const struct regcache *regcache,
1465 uint32_t *iar, uint32_t *msr, uint32_t *cr,
0d16ee5d
UW
1466 uint32_t *lr, uint32_t *ctr, uint32_t *xer,
1467 uint32_t *fpscr)
61c5da0b 1468{
ac7936df 1469 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1470 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
f1a91342
KB
1471
1472 /* Verify that the size of the size of the IAR buffer is the
1473 same as the raw size of the PC (in the register cache). If
1474 they're not, then either GDB has been built incorrectly, or
1475 there's some other kind of internal error. To be really safe,
0d16ee5d 1476 we should check all of the sizes. */
c7f30c7a
UW
1477 gdb_assert (sizeof (*iar) == register_size (gdbarch,
1478 gdbarch_pc_regnum (gdbarch)));
f1a91342 1479
0ec9f114 1480 if (REG_VALID == regcache->get_register_status (gdbarch_pc_regnum (gdbarch)))
c7f30c7a 1481 regcache_raw_collect (regcache, gdbarch_pc_regnum (gdbarch), iar);
0ec9f114 1482 if (REG_VALID == regcache->get_register_status (tdep->ppc_ps_regnum))
647478e0 1483 regcache_raw_collect (regcache, tdep->ppc_ps_regnum, msr);
0ec9f114 1484 if (REG_VALID == regcache->get_register_status (tdep->ppc_cr_regnum))
647478e0 1485 regcache_raw_collect (regcache, tdep->ppc_cr_regnum, cr);
0ec9f114 1486 if (REG_VALID == regcache->get_register_status (tdep->ppc_lr_regnum))
647478e0 1487 regcache_raw_collect (regcache, tdep->ppc_lr_regnum, lr);
0ec9f114 1488 if (REG_VALID == regcache->get_register_status (tdep->ppc_ctr_regnum))
647478e0 1489 regcache_raw_collect (regcache, tdep->ppc_ctr_regnum, ctr);
0ec9f114 1490 if (REG_VALID == regcache->get_register_status (tdep->ppc_xer_regnum))
647478e0 1491 regcache_raw_collect (regcache, tdep->ppc_xer_regnum, xer);
383f0f5b 1492 if (tdep->ppc_fpscr_regnum >= 0
0ec9f114 1493 && REG_VALID == regcache->get_register_status (tdep->ppc_fpscr_regnum))
647478e0 1494 regcache_raw_collect (regcache, tdep->ppc_fpscr_regnum, fpscr);
c11d79f2
KB
1495}
1496
1497/* Store all registers into pthread PDTID, which doesn't have a kernel
1498 thread.
1499
0fe7bf7b
MS
1500 It's possible to store a single register into a non-kernel pthread,
1501 but I doubt it's worth the effort. */
c11d79f2
KB
1502
1503static void
647478e0 1504store_regs_user_thread (const struct regcache *regcache, pthdb_pthread_t pdtid)
c11d79f2 1505{
ac7936df 1506 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1507 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
c11d79f2
KB
1508 int status, i;
1509 pthdb_context_t ctx;
61c5da0b
KB
1510 uint32_t int32;
1511 uint64_t int64;
1512 double dbl;
c11d79f2 1513
8e2c28d4 1514 if (debug_aix_thread)
0fe7bf7b 1515 fprintf_unfiltered (gdb_stdlog,
206d3d3c 1516 "store_regs_user_thread %lx\n", (long) pdtid);
c11d79f2 1517
0fe7bf7b
MS
1518 /* Retrieve the thread's current context for its non-register
1519 values. */
c11d79f2
KB
1520 status = pthdb_pthread_context (pd_session, pdtid, &ctx);
1521 if (status != PTHDB_SUCCESS)
edefbb7c 1522 error (_("aix-thread: store_registers: pthdb_pthread_context returned %s"),
14fa3751 1523 pd_status2str (status));
c11d79f2 1524
61c5da0b 1525 /* Collect general-purpose register values from the regcache. */
c11d79f2 1526
063715bf 1527 for (i = 0; i < ppc_num_gprs; i++)
0ec9f114 1528 if (REG_VALID == regcache->get_register_status (tdep->ppc_gp0_regnum + i))
cbe92db4
KB
1529 {
1530 if (arch64)
1531 {
647478e0 1532 regcache_raw_collect (regcache, tdep->ppc_gp0_regnum + i,
822c9732 1533 (void *) &int64);
cbe92db4
KB
1534 ctx.gpr[i] = int64;
1535 }
1536 else
1537 {
647478e0 1538 regcache_raw_collect (regcache, tdep->ppc_gp0_regnum + i,
822c9732 1539 (void *) &int32);
cbe92db4
KB
1540 ctx.gpr[i] = int32;
1541 }
1542 }
c11d79f2 1543
61c5da0b 1544 /* Collect floating-point register values from the regcache. */
c7f30c7a 1545 if (ppc_floating_point_unit_p (gdbarch))
647478e0 1546 fill_fprs (regcache, ctx.fpr);
c11d79f2 1547
61c5da0b
KB
1548 /* Special registers (always kept in ctx as 64 bits). */
1549 if (arch64)
1550 {
647478e0
UW
1551 fill_sprs64 (regcache, &ctx.iar, &ctx.msr, &ctx.cr, &ctx.lr, &ctx.ctr,
1552 &ctx.xer, &ctx.fpscr);
61c5da0b
KB
1553 }
1554 else
1555 {
1556 /* Problem: ctx.iar etc. are 64 bits, but raw_registers are 32.
0d16ee5d
UW
1557 Solution: use 32-bit temp variables. */
1558 uint32_t tmp_iar, tmp_msr, tmp_cr, tmp_lr, tmp_ctr, tmp_xer,
1559 tmp_fpscr;
61c5da0b 1560
647478e0
UW
1561 fill_sprs32 (regcache, &tmp_iar, &tmp_msr, &tmp_cr, &tmp_lr, &tmp_ctr,
1562 &tmp_xer, &tmp_fpscr);
0ec9f114
SM
1563 if (REG_VALID == regcache->get_register_status
1564 (gdbarch_pc_regnum (gdbarch)))
cbe92db4 1565 ctx.iar = tmp_iar;
0ec9f114 1566 if (REG_VALID == regcache->get_register_status (tdep->ppc_ps_regnum))
cbe92db4 1567 ctx.msr = tmp_msr;
0ec9f114 1568 if (REG_VALID == regcache->get_register_status (tdep->ppc_cr_regnum))
cbe92db4 1569 ctx.cr = tmp_cr;
0ec9f114 1570 if (REG_VALID == regcache->get_register_status (tdep->ppc_lr_regnum))
cbe92db4 1571 ctx.lr = tmp_lr;
0ec9f114 1572 if (REG_VALID == regcache->get_register_status (tdep->ppc_ctr_regnum))
cbe92db4 1573 ctx.ctr = tmp_ctr;
0ec9f114 1574 if (REG_VALID == regcache->get_register_status (tdep->ppc_xer_regnum))
cbe92db4 1575 ctx.xer = tmp_xer;
0ec9f114 1576 if (REG_VALID == regcache->get_register_status (tdep->ppc_xer_regnum))
0e061eef 1577 ctx.fpscr = tmp_fpscr;
61c5da0b 1578 }
c11d79f2
KB
1579
1580 status = pthdb_pthread_setcontext (pd_session, pdtid, &ctx);
1581 if (status != PTHDB_SUCCESS)
0963b4bd
MS
1582 error (_("aix-thread: store_registers: "
1583 "pthdb_pthread_setcontext returned %s"),
14fa3751 1584 pd_status2str (status));
c11d79f2
KB
1585}
1586
0fe7bf7b
MS
1587/* Store register REGNO if != -1 or all registers otherwise into
1588 kernel thread TID.
c11d79f2 1589
0fe7bf7b
MS
1590 AIX provides a way to set all of a kernel thread's GPRs, FPRs, or
1591 SPRs, but there's no way to set individual registers within those
1592 groups. Therefore, if REGNO != -1, this function stores an entire
1593 group. */
c11d79f2
KB
1594
1595static void
647478e0
UW
1596store_regs_kernel_thread (const struct regcache *regcache, int regno,
1597 pthdb_tid_t tid)
c11d79f2 1598{
ac7936df 1599 struct gdbarch *gdbarch = regcache->arch ();
c7f30c7a 1600 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
063715bf
JB
1601 uint64_t gprs64[ppc_num_gprs];
1602 uint32_t gprs32[ppc_num_gprs];
1603 double fprs[ppc_num_fprs];
c11d79f2 1604 struct ptxsprs sprs64;
61c5da0b
KB
1605 struct ptsprs sprs32;
1606 int i;
c11d79f2 1607
8e2c28d4 1608 if (debug_aix_thread)
206d3d3c
KB
1609 fprintf_unfiltered (gdb_stdlog,
1610 "store_regs_kernel_thread tid=%lx regno=%d\n",
1611 (long) tid, regno);
c11d79f2 1612
0fe7bf7b 1613 /* General-purpose registers. */
daf6dc85
JB
1614 if (regno == -1
1615 || (tdep->ppc_gp0_regnum <= regno
1616 && regno < tdep->ppc_gp0_regnum + ppc_num_fprs))
c11d79f2 1617 {
c11d79f2 1618 if (arch64)
61c5da0b 1619 {
cbe92db4
KB
1620 /* Pre-fetch: some regs may not be in the cache. */
1621 ptrace64aix (PTT_READ_GPRS, tid, (unsigned long) gprs64, 0, NULL);
647478e0 1622 fill_gprs64 (regcache, gprs64);
61c5da0b
KB
1623 ptrace64aix (PTT_WRITE_GPRS, tid, (unsigned long) gprs64, 0, NULL);
1624 }
c11d79f2 1625 else
61c5da0b 1626 {
cbe92db4 1627 /* Pre-fetch: some regs may not be in the cache. */
3b631e37 1628 ptrace32 (PTT_READ_GPRS, tid, (uintptr_t) gprs32, 0, NULL);
647478e0 1629 fill_gprs32 (regcache, gprs32);
3b631e37 1630 ptrace32 (PTT_WRITE_GPRS, tid, (uintptr_t) gprs32, 0, NULL);
61c5da0b 1631 }
c11d79f2
KB
1632 }
1633
0fe7bf7b 1634 /* Floating-point registers. */
c11d79f2 1635
c7f30c7a 1636 if (ppc_floating_point_unit_p (gdbarch)
383f0f5b
JB
1637 && (regno == -1
1638 || (regno >= tdep->ppc_fp0_regnum
1639 && regno < tdep->ppc_fp0_regnum + ppc_num_fprs)))
c11d79f2 1640 {
cbe92db4 1641 /* Pre-fetch: some regs may not be in the cache. */
3b631e37 1642 ptrace32 (PTT_READ_FPRS, tid, (uintptr_t) fprs, 0, NULL);
647478e0 1643 fill_fprs (regcache, fprs);
3b631e37 1644 ptrace32 (PTT_WRITE_FPRS, tid, (uintptr_t) fprs, 0, NULL);
c11d79f2
KB
1645 }
1646
0fe7bf7b 1647 /* Special-purpose registers. */
c11d79f2 1648
9970f04b 1649 if (regno == -1 || special_register_p (gdbarch, regno))
c11d79f2
KB
1650 {
1651 if (arch64)
1652 {
cbe92db4 1653 /* Pre-fetch: some registers won't be in the cache. */
0fe7bf7b
MS
1654 ptrace64aix (PTT_READ_SPRS, tid,
1655 (unsigned long) &sprs64, 0, NULL);
647478e0
UW
1656 fill_sprs64 (regcache, &sprs64.pt_iar, &sprs64.pt_msr,
1657 &sprs64.pt_cr, &sprs64.pt_lr, &sprs64.pt_ctr,
1658 &sprs64.pt_xer, &sprs64.pt_fpscr);
0fe7bf7b
MS
1659 ptrace64aix (PTT_WRITE_SPRS, tid,
1660 (unsigned long) &sprs64, 0, NULL);
c11d79f2
KB
1661 }
1662 else
1663 {
0d16ee5d
UW
1664 /* The contents of "struct ptspr" were declared as "unsigned
1665 long" up to AIX 5.2, but are "unsigned int" since 5.3.
1666 Use temporaries to work around this problem. Also, add an
1667 assert here to make sure we fail if the system header files
1668 use "unsigned long", and the size of that type is not what
1669 the headers expect. */
1670 uint32_t tmp_iar, tmp_msr, tmp_cr, tmp_lr, tmp_ctr, tmp_xer,
1671 tmp_fpscr;
1672
1673 gdb_assert (sizeof (sprs32.pt_iar) == 4);
1674
cbe92db4 1675 /* Pre-fetch: some registers won't be in the cache. */
3b631e37 1676 ptrace32 (PTT_READ_SPRS, tid, (uintptr_t) &sprs32, 0, NULL);
c11d79f2 1677
647478e0
UW
1678 fill_sprs32 (regcache, &tmp_iar, &tmp_msr, &tmp_cr, &tmp_lr,
1679 &tmp_ctr, &tmp_xer, &tmp_fpscr);
0d16ee5d
UW
1680
1681 sprs32.pt_iar = tmp_iar;
1682 sprs32.pt_msr = tmp_msr;
1683 sprs32.pt_cr = tmp_cr;
1684 sprs32.pt_lr = tmp_lr;
1685 sprs32.pt_ctr = tmp_ctr;
1686 sprs32.pt_xer = tmp_xer;
1687 sprs32.pt_fpscr = tmp_fpscr;
c11d79f2 1688
f1a91342 1689 if (tdep->ppc_mq_regnum >= 0)
0ec9f114
SM
1690 if (REG_VALID == regcache->get_register_status
1691 (tdep->ppc_mq_regnum))
647478e0 1692 regcache_raw_collect (regcache, tdep->ppc_mq_regnum,
822c9732 1693 &sprs32.pt_mq);
c11d79f2 1694
3b631e37 1695 ptrace32 (PTT_WRITE_SPRS, tid, (uintptr_t) &sprs32, 0, NULL);
c11d79f2
KB
1696 }
1697 }
1698}
1699
0fe7bf7b 1700/* Store gdb's current view of the register set into the
edb5fb00 1701 thread/process connected to REGCACHE. */
c11d79f2 1702
f6ac5f3d
PA
1703void
1704aix_thread_target::store_registers (struct regcache *regcache, int regno)
c11d79f2
KB
1705{
1706 struct thread_info *thread;
1707 pthdb_tid_t tid;
f6ac5f3d 1708 struct target_ops *beneath = find_target_beneath (this);
c11d79f2 1709
222312d3 1710 if (!PD_TID (regcache->ptid ()))
f6ac5f3d 1711 beneath->store_registers (regcache, regno);
c11d79f2
KB
1712 else
1713 {
222312d3 1714 thread = find_thread_ptid (regcache->ptid ());
7aabaf9d
SM
1715 aix_thread_info *priv = get_aix_thread_info (thread);
1716 tid = priv->tid;
c11d79f2
KB
1717
1718 if (tid == PTHDB_INVALID_TID)
7aabaf9d 1719 store_regs_user_thread (regcache, priv->pdtid);
c11d79f2 1720 else
56be3814 1721 store_regs_kernel_thread (regcache, regno, tid);
c11d79f2
KB
1722 }
1723}
1724
edcc890f 1725/* Implement the to_xfer_partial target_ops method. */
037a727e 1726
f6ac5f3d
PA
1727enum target_xfer_status
1728aix_thread_target::xfer_partial (enum target_object object,
1729 const char *annex, gdb_byte *readbuf,
1730 const gdb_byte *writebuf,
1731 ULONGEST offset, ULONGEST len,
1732 ULONGEST *xfered_len)
c11d79f2 1733{
2989a365 1734 scoped_restore save_inferior_ptid = make_scoped_restore (&inferior_ptid);
f6ac5f3d 1735 struct target_ops *beneath = find_target_beneath (this);
14fa3751 1736
dfd4cc63 1737 inferior_ptid = pid_to_ptid (ptid_get_pid (inferior_ptid));
f6ac5f3d
PA
1738 return beneath->xfer_partial (object, annex, readbuf,
1739 writebuf, offset, len, xfered_len);
c11d79f2
KB
1740}
1741
0fe7bf7b 1742/* Clean up after the inferior exits. */
c11d79f2 1743
f6ac5f3d
PA
1744void
1745aix_thread_target::mourn_inferior ()
c11d79f2 1746{
f6ac5f3d 1747 struct target_ops *beneath = find_target_beneath (this);
d30acaa7 1748
c11d79f2 1749 pd_deactivate ();
f6ac5f3d 1750 beneath->mourn_inferior ();
c11d79f2
KB
1751}
1752
0fe7bf7b 1753/* Return whether thread PID is still valid. */
c11d79f2 1754
57810aa7 1755bool
f6ac5f3d 1756aix_thread_target::thread_alive (ptid_t ptid)
c11d79f2 1757{
f6ac5f3d 1758 struct target_ops *beneath = find_target_beneath (this);
d30acaa7 1759
c11d79f2 1760 if (!PD_TID (ptid))
f6ac5f3d 1761 return beneath->thread_alive (ptid);
c11d79f2 1762
0fe7bf7b
MS
1763 /* We update the thread list every time the child stops, so all
1764 valid threads should be in the thread list. */
c11d79f2
KB
1765 return in_thread_list (ptid);
1766}
1767
0fe7bf7b
MS
1768/* Return a printable representation of composite PID for use in
1769 "info threads" output. */
c11d79f2 1770
f6ac5f3d
PA
1771const char *
1772aix_thread_target::pid_to_str (ptid_t ptid)
c11d79f2
KB
1773{
1774 static char *ret = NULL;
f6ac5f3d 1775 struct target_ops *beneath = find_target_beneath (this);
c11d79f2
KB
1776
1777 if (!PD_TID (ptid))
f6ac5f3d 1778 return beneath->pid_to_str (ptid);
c11d79f2
KB
1779
1780 /* Free previous return value; a new one will be allocated by
b435e160 1781 xstrprintf(). */
c11d79f2
KB
1782 xfree (ret);
1783
edefbb7c 1784 ret = xstrprintf (_("Thread %ld"), ptid_get_tid (ptid));
c11d79f2
KB
1785 return ret;
1786}
1787
0fe7bf7b
MS
1788/* Return a printable representation of extra information about
1789 THREAD, for use in "info threads" output. */
c11d79f2 1790
f6ac5f3d
PA
1791const char *
1792aix_thread_target::extra_thread_info (struct thread_info *thread)
c11d79f2 1793{
c11d79f2
KB
1794 int status;
1795 pthdb_pthread_t pdtid;
1796 pthdb_tid_t tid;
1797 pthdb_state_t state;
1798 pthdb_suspendstate_t suspendstate;
1799 pthdb_detachstate_t detachstate;
1800 int cancelpend;
c11d79f2
KB
1801 static char *ret = NULL;
1802
1803 if (!PD_TID (thread->ptid))
1804 return NULL;
1805
d7e74731 1806 string_file buf;
7aabaf9d 1807 aix_thread_info *priv = get_aix_thread_info (thread);
c11d79f2 1808
7aabaf9d
SM
1809 pdtid = priv->pdtid;
1810 tid = priv->tid;
c11d79f2
KB
1811
1812 if (tid != PTHDB_INVALID_TID)
edefbb7c 1813 /* i18n: Like "thread-identifier %d, [state] running, suspended" */
d7e74731 1814 buf.printf (_("tid %d"), (int)tid);
c11d79f2
KB
1815
1816 status = pthdb_pthread_state (pd_session, pdtid, &state);
1817 if (status != PTHDB_SUCCESS)
1818 state = PST_NOTSUP;
d7e74731 1819 buf.printf (", %s", state2str (state));
c11d79f2 1820
0fe7bf7b
MS
1821 status = pthdb_pthread_suspendstate (pd_session, pdtid,
1822 &suspendstate);
c11d79f2 1823 if (status == PTHDB_SUCCESS && suspendstate == PSS_SUSPENDED)
edefbb7c 1824 /* i18n: Like "Thread-Id %d, [state] running, suspended" */
d7e74731 1825 buf.printf (_(", suspended"));
c11d79f2 1826
0fe7bf7b
MS
1827 status = pthdb_pthread_detachstate (pd_session, pdtid,
1828 &detachstate);
c11d79f2 1829 if (status == PTHDB_SUCCESS && detachstate == PDS_DETACHED)
edefbb7c 1830 /* i18n: Like "Thread-Id %d, [state] running, detached" */
d7e74731 1831 buf.printf (_(", detached"));
c11d79f2
KB
1832
1833 pthdb_pthread_cancelpend (pd_session, pdtid, &cancelpend);
1834 if (status == PTHDB_SUCCESS && cancelpend)
edefbb7c 1835 /* i18n: Like "Thread-Id %d, [state] running, cancel pending" */
d7e74731 1836 buf.printf (_(", cancel pending"));
c11d79f2 1837
d7e74731 1838 buf.write ("", 1);
c11d79f2
KB
1839
1840 xfree (ret); /* Free old buffer. */
1841
d7e74731 1842 ret = xstrdup (buf.c_str ());
c11d79f2
KB
1843
1844 return ret;
1845}
1846
f6ac5f3d
PA
1847ptid_t
1848aix_thread_target::get_ada_task_ptid (long lwp, long thread)
c7660128
JB
1849{
1850 return ptid_build (ptid_get_pid (inferior_ptid), 0, thread);
1851}
1852
c11d79f2
KB
1853
1854/* Module startup initialization function, automagically called by
0fe7bf7b 1855 init.c. */
c11d79f2
KB
1856
1857void
1858_initialize_aix_thread (void)
1859{
0fe7bf7b 1860 /* Notice when object files get loaded and unloaded. */
76727919 1861 gdb::observers::new_objfile.attach (new_objfile);
8e2c28d4 1862
b3ccfe11
TT
1863 /* Add ourselves to inferior_created event chain.
1864 This is needed to enable the thread target on "attach". */
76727919 1865 gdb::observers::inferior_created.attach (aix_thread_inferior_created);
b3ccfe11 1866
577b7047 1867 add_setshow_boolean_cmd ("aix-thread", class_maintenance, &debug_aix_thread,
0963b4bd
MS
1868 _("Set debugging of AIX thread module."),
1869 _("Show debugging of AIX thread module."),
1870 _("Enables debugging output (used to debug GDB)."),
1871 NULL, NULL,
1872 /* FIXME: i18n: Debugging of AIX thread
1873 module is \"%d\". */
1874 &setdebuglist, &showdebuglist);
c11d79f2 1875}
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