Update copyright year range in all GDB files
[deliverable/binutils-gdb.git] / gdb / x86-linux-nat.c
1 /* Native-dependent code for GNU/Linux x86 (i386 and x86-64).
2
3 Copyright (C) 1999-2018 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21 #include "inferior.h"
22 #include "elf/common.h"
23 #include "gdb_proc_service.h"
24 #include "nat/gdb_ptrace.h"
25 #include <sys/user.h>
26 #include <sys/procfs.h>
27 #include <sys/uio.h>
28
29 #include "x86-nat.h"
30 #include "linux-nat.h"
31 #ifndef __x86_64__
32 #include "i386-linux-nat.h"
33 #endif
34 #include "x86-linux-nat.h"
35 #include "i386-linux-tdep.h"
36 #ifdef __x86_64__
37 #include "amd64-linux-tdep.h"
38 #endif
39 #include "x86-xstate.h"
40 #include "nat/linux-btrace.h"
41 #include "nat/linux-nat.h"
42 #include "nat/x86-linux.h"
43 #include "nat/x86-linux-dregs.h"
44 #include "nat/linux-ptrace.h"
45
46 /* linux_nat_new_fork hook. */
47
48 static void
49 x86_linux_new_fork (struct lwp_info *parent, pid_t child_pid)
50 {
51 pid_t parent_pid;
52 struct x86_debug_reg_state *parent_state;
53 struct x86_debug_reg_state *child_state;
54
55 /* NULL means no watchpoint has ever been set in the parent. In
56 that case, there's nothing to do. */
57 if (parent->arch_private == NULL)
58 return;
59
60 /* Linux kernel before 2.6.33 commit
61 72f674d203cd230426437cdcf7dd6f681dad8b0d
62 will inherit hardware debug registers from parent
63 on fork/vfork/clone. Newer Linux kernels create such tasks with
64 zeroed debug registers.
65
66 GDB core assumes the child inherits the watchpoints/hw
67 breakpoints of the parent, and will remove them all from the
68 forked off process. Copy the debug registers mirrors into the
69 new process so that all breakpoints and watchpoints can be
70 removed together. The debug registers mirror will become zeroed
71 in the end before detaching the forked off process, thus making
72 this compatible with older Linux kernels too. */
73
74 parent_pid = ptid_get_pid (parent->ptid);
75 parent_state = x86_debug_reg_state (parent_pid);
76 child_state = x86_debug_reg_state (child_pid);
77 *child_state = *parent_state;
78 }
79 \f
80
81 static void (*super_post_startup_inferior) (struct target_ops *self,
82 ptid_t ptid);
83
84 static void
85 x86_linux_child_post_startup_inferior (struct target_ops *self, ptid_t ptid)
86 {
87 x86_cleanup_dregs ();
88 super_post_startup_inferior (self, ptid);
89 }
90
91 #ifdef __x86_64__
92 /* Value of CS segment register:
93 64bit process: 0x33
94 32bit process: 0x23 */
95 #define AMD64_LINUX_USER64_CS 0x33
96
97 /* Value of DS segment register:
98 LP64 process: 0x0
99 X32 process: 0x2b */
100 #define AMD64_LINUX_X32_DS 0x2b
101 #endif
102
103 /* Get Linux/x86 target description from running target. */
104
105 static const struct target_desc *
106 x86_linux_read_description (struct target_ops *ops)
107 {
108 int tid;
109 int is_64bit = 0;
110 #ifdef __x86_64__
111 int is_x32;
112 #endif
113 static uint64_t xcr0;
114 uint64_t xcr0_features_bits;
115
116 /* GNU/Linux LWP ID's are process ID's. */
117 tid = ptid_get_lwp (inferior_ptid);
118 if (tid == 0)
119 tid = ptid_get_pid (inferior_ptid); /* Not a threaded program. */
120
121 #ifdef __x86_64__
122 {
123 unsigned long cs;
124 unsigned long ds;
125
126 /* Get CS register. */
127 errno = 0;
128 cs = ptrace (PTRACE_PEEKUSER, tid,
129 offsetof (struct user_regs_struct, cs), 0);
130 if (errno != 0)
131 perror_with_name (_("Couldn't get CS register"));
132
133 is_64bit = cs == AMD64_LINUX_USER64_CS;
134
135 /* Get DS register. */
136 errno = 0;
137 ds = ptrace (PTRACE_PEEKUSER, tid,
138 offsetof (struct user_regs_struct, ds), 0);
139 if (errno != 0)
140 perror_with_name (_("Couldn't get DS register"));
141
142 is_x32 = ds == AMD64_LINUX_X32_DS;
143
144 if (sizeof (void *) == 4 && is_64bit && !is_x32)
145 error (_("Can't debug 64-bit process with 32-bit GDB"));
146 }
147 #elif HAVE_PTRACE_GETFPXREGS
148 if (have_ptrace_getfpxregs == -1)
149 {
150 elf_fpxregset_t fpxregs;
151
152 if (ptrace (PTRACE_GETFPXREGS, tid, 0, (int) &fpxregs) < 0)
153 {
154 have_ptrace_getfpxregs = 0;
155 have_ptrace_getregset = TRIBOOL_FALSE;
156 return i386_linux_read_description (X86_XSTATE_X87_MASK);
157 }
158 }
159 #endif
160
161 if (have_ptrace_getregset == TRIBOOL_UNKNOWN)
162 {
163 uint64_t xstateregs[(X86_XSTATE_SSE_SIZE / sizeof (uint64_t))];
164 struct iovec iov;
165
166 iov.iov_base = xstateregs;
167 iov.iov_len = sizeof (xstateregs);
168
169 /* Check if PTRACE_GETREGSET works. */
170 if (ptrace (PTRACE_GETREGSET, tid,
171 (unsigned int) NT_X86_XSTATE, &iov) < 0)
172 have_ptrace_getregset = TRIBOOL_FALSE;
173 else
174 {
175 have_ptrace_getregset = TRIBOOL_TRUE;
176
177 /* Get XCR0 from XSAVE extended state. */
178 xcr0 = xstateregs[(I386_LINUX_XSAVE_XCR0_OFFSET
179 / sizeof (uint64_t))];
180 }
181 }
182
183 /* Check the native XCR0 only if PTRACE_GETREGSET is available. If
184 PTRACE_GETREGSET is not available then set xcr0_features_bits to
185 zero so that the "no-features" descriptions are returned by the
186 switches below. */
187 if (have_ptrace_getregset == TRIBOOL_TRUE)
188 xcr0_features_bits = xcr0 & X86_XSTATE_ALL_MASK;
189 else
190 xcr0_features_bits = 0;
191
192 if (is_64bit)
193 {
194 #ifdef __x86_64__
195 return amd64_linux_read_description (xcr0_features_bits, is_x32);
196 #endif
197 }
198 else
199 {
200 const struct target_desc * tdesc
201 = i386_linux_read_description (xcr0_features_bits);
202
203 if (tdesc == NULL)
204 tdesc = i386_linux_read_description (X86_XSTATE_SSE_MASK);
205
206 return tdesc;
207 }
208
209 gdb_assert_not_reached ("failed to return tdesc");
210 }
211 \f
212
213 /* Enable branch tracing. */
214
215 static struct btrace_target_info *
216 x86_linux_enable_btrace (struct target_ops *self, ptid_t ptid,
217 const struct btrace_config *conf)
218 {
219 struct btrace_target_info *tinfo;
220
221 errno = 0;
222 tinfo = linux_enable_btrace (ptid, conf);
223
224 if (tinfo == NULL)
225 error (_("Could not enable branch tracing for %s: %s."),
226 target_pid_to_str (ptid), safe_strerror (errno));
227
228 return tinfo;
229 }
230
231 /* Disable branch tracing. */
232
233 static void
234 x86_linux_disable_btrace (struct target_ops *self,
235 struct btrace_target_info *tinfo)
236 {
237 enum btrace_error errcode = linux_disable_btrace (tinfo);
238
239 if (errcode != BTRACE_ERR_NONE)
240 error (_("Could not disable branch tracing."));
241 }
242
243 /* Teardown branch tracing. */
244
245 static void
246 x86_linux_teardown_btrace (struct target_ops *self,
247 struct btrace_target_info *tinfo)
248 {
249 /* Ignore errors. */
250 linux_disable_btrace (tinfo);
251 }
252
253 static enum btrace_error
254 x86_linux_read_btrace (struct target_ops *self,
255 struct btrace_data *data,
256 struct btrace_target_info *btinfo,
257 enum btrace_read_type type)
258 {
259 return linux_read_btrace (data, btinfo, type);
260 }
261
262 /* See to_btrace_conf in target.h. */
263
264 static const struct btrace_config *
265 x86_linux_btrace_conf (struct target_ops *self,
266 const struct btrace_target_info *btinfo)
267 {
268 return linux_btrace_conf (btinfo);
269 }
270
271 \f
272
273 /* Helper for ps_get_thread_area. Sets BASE_ADDR to a pointer to
274 the thread local storage (or its descriptor) and returns PS_OK
275 on success. Returns PS_ERR on failure. */
276
277 ps_err_e
278 x86_linux_get_thread_area (pid_t pid, void *addr, unsigned int *base_addr)
279 {
280 /* NOTE: cagney/2003-08-26: The definition of this buffer is found
281 in the kernel header <asm-i386/ldt.h>. It, after padding, is 4 x
282 4 byte integers in size: `entry_number', `base_addr', `limit',
283 and a bunch of status bits.
284
285 The values returned by this ptrace call should be part of the
286 regcache buffer, and ps_get_thread_area should channel its
287 request through the regcache. That way remote targets could
288 provide the value using the remote protocol and not this direct
289 call.
290
291 Is this function needed? I'm guessing that the `base' is the
292 address of a descriptor that libthread_db uses to find the
293 thread local address base that GDB needs. Perhaps that
294 descriptor is defined by the ABI. Anyway, given that
295 libthread_db calls this function without prompting (gdb
296 requesting tls base) I guess it needs info in there anyway. */
297 unsigned int desc[4];
298
299 /* This code assumes that "int" is 32 bits and that
300 GET_THREAD_AREA returns no more than 4 int values. */
301 gdb_assert (sizeof (int) == 4);
302
303 #ifndef PTRACE_GET_THREAD_AREA
304 #define PTRACE_GET_THREAD_AREA 25
305 #endif
306
307 if (ptrace (PTRACE_GET_THREAD_AREA, pid, addr, &desc) < 0)
308 return PS_ERR;
309
310 *base_addr = desc[1];
311 return PS_OK;
312 }
313 \f
314
315 /* Create an x86 GNU/Linux target. */
316
317 struct target_ops *
318 x86_linux_create_target (void)
319 {
320 /* Fill in the generic GNU/Linux methods. */
321 struct target_ops *t = linux_target ();
322
323 /* Initialize the debug register function vectors. */
324 x86_use_watchpoints (t);
325 x86_dr_low.set_control = x86_linux_dr_set_control;
326 x86_dr_low.set_addr = x86_linux_dr_set_addr;
327 x86_dr_low.get_addr = x86_linux_dr_get_addr;
328 x86_dr_low.get_status = x86_linux_dr_get_status;
329 x86_dr_low.get_control = x86_linux_dr_get_control;
330 x86_set_debug_register_length (sizeof (void *));
331
332 /* Override the GNU/Linux inferior startup hook. */
333 super_post_startup_inferior = t->to_post_startup_inferior;
334 t->to_post_startup_inferior = x86_linux_child_post_startup_inferior;
335
336 /* Add the description reader. */
337 t->to_read_description = x86_linux_read_description;
338
339 /* Add btrace methods. */
340 t->to_supports_btrace = linux_supports_btrace;
341 t->to_enable_btrace = x86_linux_enable_btrace;
342 t->to_disable_btrace = x86_linux_disable_btrace;
343 t->to_teardown_btrace = x86_linux_teardown_btrace;
344 t->to_read_btrace = x86_linux_read_btrace;
345 t->to_btrace_conf = x86_linux_btrace_conf;
346
347 return t;
348 }
349
350 /* Add an x86 GNU/Linux target. */
351
352 void
353 x86_linux_add_target (struct target_ops *t)
354 {
355 linux_nat_add_target (t);
356 linux_nat_set_new_thread (t, x86_linux_new_thread);
357 linux_nat_set_delete_thread (t, x86_linux_delete_thread);
358 linux_nat_set_new_fork (t, x86_linux_new_fork);
359 linux_nat_set_forget_process (t, x86_forget_process);
360 linux_nat_set_prepare_to_resume (t, x86_linux_prepare_to_resume);
361 }
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