Merge branch 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/jikos/trivial
[deliverable/linux.git] / kernel / debug / debug_core.c
CommitLineData
dc7d5527 1/*
53197fc4 2 * Kernel Debug Core
dc7d5527
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3 *
4 * Maintainer: Jason Wessel <jason.wessel@windriver.com>
5 *
6 * Copyright (C) 2000-2001 VERITAS Software Corporation.
7 * Copyright (C) 2002-2004 Timesys Corporation
8 * Copyright (C) 2003-2004 Amit S. Kale <amitkale@linsyssoft.com>
a2531293 9 * Copyright (C) 2004 Pavel Machek <pavel@ucw.cz>
dc7d5527
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10 * Copyright (C) 2004-2006 Tom Rini <trini@kernel.crashing.org>
11 * Copyright (C) 2004-2006 LinSysSoft Technologies Pvt. Ltd.
53197fc4 12 * Copyright (C) 2005-2009 Wind River Systems, Inc.
dc7d5527
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13 * Copyright (C) 2007 MontaVista Software, Inc.
14 * Copyright (C) 2008 Red Hat, Inc., Ingo Molnar <mingo@redhat.com>
15 *
16 * Contributors at various stages not listed above:
17 * Jason Wessel ( jason.wessel@windriver.com )
18 * George Anzinger <george@mvista.com>
19 * Anurekh Saxena (anurekh.saxena@timesys.com)
20 * Lake Stevens Instrument Division (Glenn Engel)
21 * Jim Kingdon, Cygnus Support.
22 *
23 * Original KGDB stub: David Grothe <dave@gcom.com>,
24 * Tigran Aivazian <tigran@sco.com>
25 *
26 * This file is licensed under the terms of the GNU General Public License
27 * version 2. This program is licensed "as is" without any warranty of any
28 * kind, whether express or implied.
29 */
30#include <linux/pid_namespace.h>
7c3078b6 31#include <linux/clocksource.h>
16559ae4 32#include <linux/serial_core.h>
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33#include <linux/interrupt.h>
34#include <linux/spinlock.h>
35#include <linux/console.h>
36#include <linux/threads.h>
37#include <linux/uaccess.h>
38#include <linux/kernel.h>
39#include <linux/module.h>
40#include <linux/ptrace.h>
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41#include <linux/string.h>
42#include <linux/delay.h>
43#include <linux/sched.h>
44#include <linux/sysrq.h>
2366e047 45#include <linux/reboot.h>
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46#include <linux/init.h>
47#include <linux/kgdb.h>
dcc78711 48#include <linux/kdb.h>
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49#include <linux/pid.h>
50#include <linux/smp.h>
51#include <linux/mm.h>
fb70b588 52#include <linux/rcupdate.h>
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53
54#include <asm/cacheflush.h>
55#include <asm/byteorder.h>
60063497 56#include <linux/atomic.h>
dc7d5527 57
53197fc4 58#include "debug_core.h"
dc7d5527 59
53197fc4 60static int kgdb_break_asap;
62fae312 61
53197fc4 62struct debuggerinfo_struct kgdb_info[NR_CPUS];
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63
64/**
65 * kgdb_connected - Is a host GDB connected to us?
66 */
67int kgdb_connected;
68EXPORT_SYMBOL_GPL(kgdb_connected);
69
70/* All the KGDB handlers are installed */
f503b5ae 71int kgdb_io_module_registered;
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72
73/* Guard for recursive entry */
74static int exception_level;
75
53197fc4 76struct kgdb_io *dbg_io_ops;
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77static DEFINE_SPINLOCK(kgdb_registration_lock);
78
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79/* Action for the reboot notifiter, a global allow kdb to change it */
80static int kgdbreboot;
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81/* kgdb console driver is loaded */
82static int kgdb_con_registered;
83/* determine if kgdb console output should be used */
84static int kgdb_use_con;
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85/* Flag for alternate operations for early debugging */
86bool dbg_is_early = true;
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87/* Next cpu to become the master debug core */
88int dbg_switch_cpu;
89
90/* Use kdb or gdbserver mode */
a0de055c 91int dbg_kdb_mode = 1;
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92
93static int __init opt_kgdb_con(char *str)
94{
95 kgdb_use_con = 1;
96 return 0;
97}
98
99early_param("kgdbcon", opt_kgdb_con);
100
101module_param(kgdb_use_con, int, 0644);
bec4d62e 102module_param(kgdbreboot, int, 0644);
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103
104/*
105 * Holds information about breakpoints in a kernel. These breakpoints are
106 * added and removed by gdb.
107 */
108static struct kgdb_bkpt kgdb_break[KGDB_MAX_BREAKPOINTS] = {
109 [0 ... KGDB_MAX_BREAKPOINTS-1] = { .state = BP_UNDEFINED }
110};
111
112/*
113 * The CPU# of the active CPU, or -1 if none:
114 */
115atomic_t kgdb_active = ATOMIC_INIT(-1);
dcc78711 116EXPORT_SYMBOL_GPL(kgdb_active);
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117static DEFINE_RAW_SPINLOCK(dbg_master_lock);
118static DEFINE_RAW_SPINLOCK(dbg_slave_lock);
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119
120/*
121 * We use NR_CPUs not PERCPU, in case kgdb is used to debug early
122 * bootup code (which might not have percpu set up yet):
123 */
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124static atomic_t masters_in_kgdb;
125static atomic_t slaves_in_kgdb;
1cee5e35 126static atomic_t kgdb_break_tasklet_var;
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127atomic_t kgdb_setting_breakpoint;
128
129struct task_struct *kgdb_usethread;
130struct task_struct *kgdb_contthread;
131
132int kgdb_single_step;
53197fc4 133static pid_t kgdb_sstep_pid;
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134
135/* to keep track of the CPU which is doing the single stepping*/
136atomic_t kgdb_cpu_doing_single_step = ATOMIC_INIT(-1);
137
138/*
139 * If you are debugging a problem where roundup (the collection of
140 * all other CPUs) is a problem [this should be extremely rare],
141 * then use the nokgdbroundup option to avoid roundup. In that case
142 * the other CPUs might interfere with your debugging context, so
143 * use this with care:
144 */
688b744d 145static int kgdb_do_roundup = 1;
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146
147static int __init opt_nokgdbroundup(char *str)
148{
149 kgdb_do_roundup = 0;
150
151 return 0;
152}
153
154early_param("nokgdbroundup", opt_nokgdbroundup);
155
156/*
157 * Finally, some KGDB code :-)
158 */
159
160/*
161 * Weak aliases for breakpoint management,
162 * can be overriden by architectures when needed:
163 */
98b54aa1 164int __weak kgdb_arch_set_breakpoint(struct kgdb_bkpt *bpt)
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165{
166 int err;
167
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168 err = probe_kernel_read(bpt->saved_instr, (char *)bpt->bpt_addr,
169 BREAK_INSTR_SIZE);
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170 if (err)
171 return err;
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172 err = probe_kernel_write((char *)bpt->bpt_addr,
173 arch_kgdb_ops.gdb_bpt_instr, BREAK_INSTR_SIZE);
174 return err;
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175}
176
98b54aa1 177int __weak kgdb_arch_remove_breakpoint(struct kgdb_bkpt *bpt)
dc7d5527 178{
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179 return probe_kernel_write((char *)bpt->bpt_addr,
180 (char *)bpt->saved_instr, BREAK_INSTR_SIZE);
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181}
182
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183int __weak kgdb_validate_break_address(unsigned long addr)
184{
98b54aa1 185 struct kgdb_bkpt tmp;
a9b60bf4 186 int err;
98b54aa1 187 /* Validate setting the breakpoint and then removing it. If the
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188 * remove fails, the kernel needs to emit a bad message because we
189 * are deep trouble not being able to put things back the way we
190 * found them.
191 */
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192 tmp.bpt_addr = addr;
193 err = kgdb_arch_set_breakpoint(&tmp);
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194 if (err)
195 return err;
98b54aa1 196 err = kgdb_arch_remove_breakpoint(&tmp);
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197 if (err)
198 printk(KERN_ERR "KGDB: Critical breakpoint error, kernel "
199 "memory destroyed at: %lx", addr);
200 return err;
201}
202
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203unsigned long __weak kgdb_arch_pc(int exception, struct pt_regs *regs)
204{
205 return instruction_pointer(regs);
206}
207
208int __weak kgdb_arch_init(void)
209{
210 return 0;
211}
212
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213int __weak kgdb_skipexception(int exception, struct pt_regs *regs)
214{
215 return 0;
216}
217
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218/*
219 * Some architectures need cache flushes when we set/clear a
220 * breakpoint:
221 */
222static void kgdb_flush_swbreak_addr(unsigned long addr)
223{
224 if (!CACHE_FLUSH_IS_SAFE)
225 return;
226
737a460f 227 if (current->mm && current->mm->mmap_cache) {
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228 flush_cache_range(current->mm->mmap_cache,
229 addr, addr + BREAK_INSTR_SIZE);
dc7d5527 230 }
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231 /* Force flush instruction cache if it was outside the mm */
232 flush_icache_range(addr, addr + BREAK_INSTR_SIZE);
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233}
234
235/*
236 * SW breakpoint management:
237 */
53197fc4 238int dbg_activate_sw_breakpoints(void)
dc7d5527 239{
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240 int error;
241 int ret = 0;
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242 int i;
243
244 for (i = 0; i < KGDB_MAX_BREAKPOINTS; i++) {
245 if (kgdb_break[i].state != BP_SET)
246 continue;
247
98b54aa1 248 error = kgdb_arch_set_breakpoint(&kgdb_break[i]);
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249 if (error) {
250 ret = error;
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251 printk(KERN_INFO "KGDB: BP install failed: %lx",
252 kgdb_break[i].bpt_addr);
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253 continue;
254 }
dc7d5527 255
98b54aa1 256 kgdb_flush_swbreak_addr(kgdb_break[i].bpt_addr);
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257 kgdb_break[i].state = BP_ACTIVE;
258 }
7f8b7ed6 259 return ret;
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260}
261
53197fc4 262int dbg_set_sw_break(unsigned long addr)
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263{
264 int err = kgdb_validate_break_address(addr);
265 int breakno = -1;
266 int i;
267
268 if (err)
269 return err;
270
271 for (i = 0; i < KGDB_MAX_BREAKPOINTS; i++) {
272 if ((kgdb_break[i].state == BP_SET) &&
273 (kgdb_break[i].bpt_addr == addr))
274 return -EEXIST;
275 }
276 for (i = 0; i < KGDB_MAX_BREAKPOINTS; i++) {
277 if (kgdb_break[i].state == BP_REMOVED &&
278 kgdb_break[i].bpt_addr == addr) {
279 breakno = i;
280 break;
281 }
282 }
283
284 if (breakno == -1) {
285 for (i = 0; i < KGDB_MAX_BREAKPOINTS; i++) {
286 if (kgdb_break[i].state == BP_UNDEFINED) {
287 breakno = i;
288 break;
289 }
290 }
291 }
292
293 if (breakno == -1)
294 return -E2BIG;
295
296 kgdb_break[breakno].state = BP_SET;
297 kgdb_break[breakno].type = BP_BREAKPOINT;
298 kgdb_break[breakno].bpt_addr = addr;
299
300 return 0;
301}
302
dcc78711 303int dbg_deactivate_sw_breakpoints(void)
dc7d5527 304{
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305 int error;
306 int ret = 0;
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307 int i;
308
309 for (i = 0; i < KGDB_MAX_BREAKPOINTS; i++) {
310 if (kgdb_break[i].state != BP_ACTIVE)
311 continue;
98b54aa1 312 error = kgdb_arch_remove_breakpoint(&kgdb_break[i]);
7f8b7ed6 313 if (error) {
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314 printk(KERN_INFO "KGDB: BP remove failed: %lx\n",
315 kgdb_break[i].bpt_addr);
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316 ret = error;
317 }
dc7d5527 318
98b54aa1 319 kgdb_flush_swbreak_addr(kgdb_break[i].bpt_addr);
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320 kgdb_break[i].state = BP_SET;
321 }
7f8b7ed6 322 return ret;
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323}
324
53197fc4 325int dbg_remove_sw_break(unsigned long addr)
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326{
327 int i;
328
329 for (i = 0; i < KGDB_MAX_BREAKPOINTS; i++) {
330 if ((kgdb_break[i].state == BP_SET) &&
331 (kgdb_break[i].bpt_addr == addr)) {
332 kgdb_break[i].state = BP_REMOVED;
333 return 0;
334 }
335 }
336 return -ENOENT;
337}
338
339int kgdb_isremovedbreak(unsigned long addr)
340{
341 int i;
342
343 for (i = 0; i < KGDB_MAX_BREAKPOINTS; i++) {
344 if ((kgdb_break[i].state == BP_REMOVED) &&
345 (kgdb_break[i].bpt_addr == addr))
346 return 1;
347 }
348 return 0;
349}
350
53197fc4 351int dbg_remove_all_break(void)
dc7d5527 352{
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353 int error;
354 int i;
355
356 /* Clear memory breakpoints. */
357 for (i = 0; i < KGDB_MAX_BREAKPOINTS; i++) {
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358 if (kgdb_break[i].state != BP_ACTIVE)
359 goto setundefined;
98b54aa1 360 error = kgdb_arch_remove_breakpoint(&kgdb_break[i]);
dc7d5527 361 if (error)
737a460f 362 printk(KERN_ERR "KGDB: breakpoint remove failed: %lx\n",
98b54aa1 363 kgdb_break[i].bpt_addr);
737a460f
JW
364setundefined:
365 kgdb_break[i].state = BP_UNDEFINED;
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366 }
367
368 /* Clear hardware breakpoints. */
369 if (arch_kgdb_ops.remove_all_hw_break)
370 arch_kgdb_ops.remove_all_hw_break();
371
372 return 0;
373}
374
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375/*
376 * Return true if there is a valid kgdb I/O module. Also if no
377 * debugger is attached a message can be printed to the console about
378 * waiting for the debugger to attach.
379 *
380 * The print_wait argument is only to be true when called from inside
381 * the core kgdb_handle_exception, because it will wait for the
382 * debugger to attach.
383 */
384static int kgdb_io_ready(int print_wait)
385{
53197fc4 386 if (!dbg_io_ops)
dc7d5527
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387 return 0;
388 if (kgdb_connected)
389 return 1;
390 if (atomic_read(&kgdb_setting_breakpoint))
391 return 1;
dcc78711
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392 if (print_wait) {
393#ifdef CONFIG_KGDB_KDB
394 if (!dbg_kdb_mode)
395 printk(KERN_CRIT "KGDB: waiting... or $3#33 for KDB\n");
396#else
dc7d5527 397 printk(KERN_CRIT "KGDB: Waiting for remote debugger\n");
dcc78711
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398#endif
399 }
dc7d5527
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400 return 1;
401}
402
dc7d5527
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403static int kgdb_reenter_check(struct kgdb_state *ks)
404{
405 unsigned long addr;
406
407 if (atomic_read(&kgdb_active) != raw_smp_processor_id())
408 return 0;
409
410 /* Panic on recursive debugger calls: */
411 exception_level++;
412 addr = kgdb_arch_pc(ks->ex_vector, ks->linux_regs);
dcc78711 413 dbg_deactivate_sw_breakpoints();
dc7d5527
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414
415 /*
416 * If the break point removed ok at the place exception
417 * occurred, try to recover and print a warning to the end
418 * user because the user planted a breakpoint in a place that
419 * KGDB needs in order to function.
420 */
53197fc4 421 if (dbg_remove_sw_break(addr) == 0) {
dc7d5527
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422 exception_level = 0;
423 kgdb_skipexception(ks->ex_vector, ks->linux_regs);
53197fc4 424 dbg_activate_sw_breakpoints();
67baf94c
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425 printk(KERN_CRIT "KGDB: re-enter error: breakpoint removed %lx\n",
426 addr);
dc7d5527
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427 WARN_ON_ONCE(1);
428
429 return 1;
430 }
53197fc4 431 dbg_remove_all_break();
dc7d5527
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432 kgdb_skipexception(ks->ex_vector, ks->linux_regs);
433
434 if (exception_level > 1) {
435 dump_stack();
436 panic("Recursive entry to debugger");
437 }
438
439 printk(KERN_CRIT "KGDB: re-enter exception: ALL breakpoints killed\n");
6d906340
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440#ifdef CONFIG_KGDB_KDB
441 /* Allow kdb to debug itself one level */
442 return 0;
443#endif
dc7d5527
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444 dump_stack();
445 panic("Recursive entry to debugger");
446
447 return 1;
448}
449
16cdc628
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450static void dbg_touch_watchdogs(void)
451{
452 touch_softlockup_watchdog_sync();
453 clocksource_touch_watchdog();
fb70b588 454 rcu_cpu_stall_reset();
16cdc628
JW
455}
456
dfee3a7b
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457static int kgdb_cpu_enter(struct kgdb_state *ks, struct pt_regs *regs,
458 int exception_state)
dc7d5527 459{
dc7d5527 460 unsigned long flags;
028e7b17 461 int sstep_tries = 100;
dcc78711 462 int error;
dfee3a7b 463 int cpu;
4da75b9c 464 int trace_on = 0;
dfee3a7b 465 int online_cpus = num_online_cpus();
c1bb9a9c 466
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467 kgdb_info[ks->cpu].enter_kgdb++;
468 kgdb_info[ks->cpu].exception_state |= exception_state;
469
470 if (exception_state == DCPU_WANT_MASTER)
471 atomic_inc(&masters_in_kgdb);
472 else
473 atomic_inc(&slaves_in_kgdb);
d7ba979d
DD
474
475 if (arch_kgdb_ops.disable_hw_break)
476 arch_kgdb_ops.disable_hw_break(regs);
c1bb9a9c 477
dc7d5527
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478acquirelock:
479 /*
480 * Interrupts will be restored by the 'trap return' code, except when
481 * single stepping.
482 */
483 local_irq_save(flags);
484
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485 cpu = ks->cpu;
486 kgdb_info[cpu].debuggerinfo = regs;
487 kgdb_info[cpu].task = current;
dcc78711
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488 kgdb_info[cpu].ret_state = 0;
489 kgdb_info[cpu].irq_depth = hardirq_count() >> HARDIRQ_SHIFT;
dc7d5527 490
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491 /* Make sure the above info reaches the primary CPU */
492 smp_mb();
493
494 if (exception_level == 1) {
495 if (raw_spin_trylock(&dbg_master_lock))
496 atomic_xchg(&kgdb_active, cpu);
6d906340 497 goto cpu_master_loop;
dfee3a7b 498 }
6d906340 499
dc7d5527 500 /*
62fae312
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501 * CPU will loop if it is a slave or request to become a kgdb
502 * master cpu and acquire the kgdb_active lock:
dc7d5527 503 */
62fae312 504 while (1) {
dcc78711
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505cpu_loop:
506 if (kgdb_info[cpu].exception_state & DCPU_NEXT_MASTER) {
507 kgdb_info[cpu].exception_state &= ~DCPU_NEXT_MASTER;
508 goto cpu_master_loop;
509 } else if (kgdb_info[cpu].exception_state & DCPU_WANT_MASTER) {
dfee3a7b
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510 if (raw_spin_trylock(&dbg_master_lock)) {
511 atomic_xchg(&kgdb_active, cpu);
62fae312 512 break;
dfee3a7b 513 }
62fae312 514 } else if (kgdb_info[cpu].exception_state & DCPU_IS_SLAVE) {
dfee3a7b 515 if (!raw_spin_is_locked(&dbg_slave_lock))
62fae312
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516 goto return_normal;
517 } else {
518return_normal:
519 /* Return to normal operation by executing any
520 * hw breakpoint fixup.
521 */
522 if (arch_kgdb_ops.correct_hw_break)
523 arch_kgdb_ops.correct_hw_break();
4da75b9c
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524 if (trace_on)
525 tracing_on();
dfee3a7b
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526 kgdb_info[cpu].exception_state &=
527 ~(DCPU_WANT_MASTER | DCPU_IS_SLAVE);
528 kgdb_info[cpu].enter_kgdb--;
529 smp_mb__before_atomic_dec();
530 atomic_dec(&slaves_in_kgdb);
16cdc628 531 dbg_touch_watchdogs();
62fae312
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532 local_irq_restore(flags);
533 return 0;
534 }
dc7d5527 535 cpu_relax();
62fae312 536 }
dc7d5527
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537
538 /*
028e7b17 539 * For single stepping, try to only enter on the processor
25985edc 540 * that was single stepping. To guard against a deadlock, the
028e7b17
JW
541 * kernel will only try for the value of sstep_tries before
542 * giving up and continuing on.
dc7d5527
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543 */
544 if (atomic_read(&kgdb_cpu_doing_single_step) != -1 &&
028e7b17
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545 (kgdb_info[cpu].task &&
546 kgdb_info[cpu].task->pid != kgdb_sstep_pid) && --sstep_tries) {
dc7d5527 547 atomic_set(&kgdb_active, -1);
dfee3a7b 548 raw_spin_unlock(&dbg_master_lock);
16cdc628 549 dbg_touch_watchdogs();
dc7d5527
JW
550 local_irq_restore(flags);
551
552 goto acquirelock;
553 }
554
555 if (!kgdb_io_ready(1)) {
dcc78711 556 kgdb_info[cpu].ret_state = 1;
53197fc4 557 goto kgdb_restore; /* No I/O connection, resume the system */
dc7d5527
JW
558 }
559
560 /*
561 * Don't enter if we have hit a removed breakpoint.
562 */
563 if (kgdb_skipexception(ks->ex_vector, ks->linux_regs))
564 goto kgdb_restore;
565
566 /* Call the I/O driver's pre_exception routine */
53197fc4
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567 if (dbg_io_ops->pre_exception)
568 dbg_io_ops->pre_exception();
dc7d5527 569
dc7d5527
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570 /*
571 * Get the passive CPU lock which will hold all the non-primary
572 * CPU in a spin state while the debugger is active
573 */
dfee3a7b
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574 if (!kgdb_single_step)
575 raw_spin_lock(&dbg_slave_lock);
dc7d5527 576
56fb7093 577#ifdef CONFIG_SMP
8daaa5f8
MT
578 /* If send_ready set, slaves are already waiting */
579 if (ks->send_ready)
580 atomic_set(ks->send_ready, 1);
581
56fb7093 582 /* Signal the other CPUs to enter kgdb_wait() */
8daaa5f8 583 else if ((!kgdb_single_step) && kgdb_do_roundup)
56fb7093
JW
584 kgdb_roundup_cpus(flags);
585#endif
586
dc7d5527
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587 /*
588 * Wait for the other CPUs to be notified and be waiting for us:
589 */
dfee3a7b
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590 while (kgdb_do_roundup && (atomic_read(&masters_in_kgdb) +
591 atomic_read(&slaves_in_kgdb)) != online_cpus)
592 cpu_relax();
dc7d5527
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593
594 /*
595 * At this point the primary processor is completely
596 * in the debugger and all secondary CPUs are quiescent
597 */
dcc78711 598 dbg_deactivate_sw_breakpoints();
dc7d5527 599 kgdb_single_step = 0;
d7161a65 600 kgdb_contthread = current;
dc7d5527 601 exception_level = 0;
4da75b9c
JW
602 trace_on = tracing_is_on();
603 if (trace_on)
604 tracing_off();
dc7d5527 605
dcc78711
JW
606 while (1) {
607cpu_master_loop:
608 if (dbg_kdb_mode) {
609 kgdb_connected = 1;
610 error = kdb_stub(ks);
3fa43aba
JW
611 if (error == -1)
612 continue;
b0679c63 613 kgdb_connected = 0;
dcc78711
JW
614 } else {
615 error = gdb_serial_stub(ks);
616 }
617
618 if (error == DBG_PASS_EVENT) {
619 dbg_kdb_mode = !dbg_kdb_mode;
dcc78711 620 } else if (error == DBG_SWITCH_CPU_EVENT) {
495363d3
JW
621 kgdb_info[dbg_switch_cpu].exception_state |=
622 DCPU_NEXT_MASTER;
dcc78711
JW
623 goto cpu_loop;
624 } else {
625 kgdb_info[cpu].ret_state = error;
626 break;
627 }
628 }
dc7d5527
JW
629
630 /* Call the I/O driver's post_exception routine */
53197fc4
JW
631 if (dbg_io_ops->post_exception)
632 dbg_io_ops->post_exception();
dc7d5527 633
d7161a65 634 if (!kgdb_single_step) {
dfee3a7b
JW
635 raw_spin_unlock(&dbg_slave_lock);
636 /* Wait till all the CPUs have quit from the debugger. */
637 while (kgdb_do_roundup && atomic_read(&slaves_in_kgdb))
638 cpu_relax();
dc7d5527
JW
639 }
640
641kgdb_restore:
028e7b17
JW
642 if (atomic_read(&kgdb_cpu_doing_single_step) != -1) {
643 int sstep_cpu = atomic_read(&kgdb_cpu_doing_single_step);
644 if (kgdb_info[sstep_cpu].task)
645 kgdb_sstep_pid = kgdb_info[sstep_cpu].task->pid;
646 else
647 kgdb_sstep_pid = 0;
648 }
c1bb9a9c
DD
649 if (arch_kgdb_ops.correct_hw_break)
650 arch_kgdb_ops.correct_hw_break();
4da75b9c
JW
651 if (trace_on)
652 tracing_on();
dfee3a7b
JW
653
654 kgdb_info[cpu].exception_state &=
655 ~(DCPU_WANT_MASTER | DCPU_IS_SLAVE);
656 kgdb_info[cpu].enter_kgdb--;
657 smp_mb__before_atomic_dec();
658 atomic_dec(&masters_in_kgdb);
dc7d5527
JW
659 /* Free kgdb_active */
660 atomic_set(&kgdb_active, -1);
dfee3a7b 661 raw_spin_unlock(&dbg_master_lock);
16cdc628 662 dbg_touch_watchdogs();
dc7d5527
JW
663 local_irq_restore(flags);
664
dcc78711 665 return kgdb_info[cpu].ret_state;
dc7d5527
JW
666}
667
62fae312
JW
668/*
669 * kgdb_handle_exception() - main entry point from a kernel exception
670 *
671 * Locking hierarchy:
672 * interface locks, if any (begin_session)
673 * kgdb lock (kgdb_active)
674 */
675int
676kgdb_handle_exception(int evector, int signo, int ecode, struct pt_regs *regs)
677{
678 struct kgdb_state kgdb_var;
679 struct kgdb_state *ks = &kgdb_var;
5a14fead
AV
680 int ret = 0;
681
682 if (arch_kgdb_ops.enable_nmi)
683 arch_kgdb_ops.enable_nmi(0);
62fae312 684
8daaa5f8 685 memset(ks, 0, sizeof(struct kgdb_state));
62fae312
JW
686 ks->cpu = raw_smp_processor_id();
687 ks->ex_vector = evector;
688 ks->signo = signo;
62fae312 689 ks->err_code = ecode;
62fae312
JW
690 ks->linux_regs = regs;
691
692 if (kgdb_reenter_check(ks))
5a14fead 693 goto out; /* Ouch, double exception ! */
dfee3a7b 694 if (kgdb_info[ks->cpu].enter_kgdb != 0)
5a14fead 695 goto out;
dfee3a7b 696
5a14fead
AV
697 ret = kgdb_cpu_enter(ks, regs, DCPU_WANT_MASTER);
698out:
699 if (arch_kgdb_ops.enable_nmi)
700 arch_kgdb_ops.enable_nmi(1);
701 return ret;
62fae312
JW
702}
703
f30fed10
JW
704/*
705 * GDB places a breakpoint at this function to know dynamically
706 * loaded objects. It's not defined static so that only one instance with this
707 * name exists in the kernel.
708 */
709
710static int module_event(struct notifier_block *self, unsigned long val,
711 void *data)
712{
713 return 0;
714}
715
716static struct notifier_block dbg_module_load_nb = {
717 .notifier_call = module_event,
718};
719
dc7d5527
JW
720int kgdb_nmicallback(int cpu, void *regs)
721{
722#ifdef CONFIG_SMP
62fae312
JW
723 struct kgdb_state kgdb_var;
724 struct kgdb_state *ks = &kgdb_var;
725
726 memset(ks, 0, sizeof(struct kgdb_state));
727 ks->cpu = cpu;
728 ks->linux_regs = regs;
729
dfee3a7b
JW
730 if (kgdb_info[ks->cpu].enter_kgdb == 0 &&
731 raw_spin_is_locked(&dbg_master_lock)) {
732 kgdb_cpu_enter(ks, regs, DCPU_IS_SLAVE);
dc7d5527
JW
733 return 0;
734 }
735#endif
736 return 1;
737}
738
8daaa5f8
MT
739int kgdb_nmicallin(int cpu, int trapnr, void *regs, atomic_t *send_ready)
740{
741#ifdef CONFIG_SMP
742 if (!kgdb_io_ready(0) || !send_ready)
743 return 1;
744
745 if (kgdb_info[cpu].enter_kgdb == 0) {
746 struct kgdb_state kgdb_var;
747 struct kgdb_state *ks = &kgdb_var;
748
749 memset(ks, 0, sizeof(struct kgdb_state));
750 ks->cpu = cpu;
751 ks->ex_vector = trapnr;
752 ks->signo = SIGTRAP;
753 ks->err_code = KGDB_KDB_REASON_SYSTEM_NMI;
754 ks->linux_regs = regs;
755 ks->send_ready = send_ready;
756 kgdb_cpu_enter(ks, regs, DCPU_WANT_MASTER);
757 return 0;
758 }
759#endif
760 return 1;
761}
762
aabdc3b8
JW
763static void kgdb_console_write(struct console *co, const char *s,
764 unsigned count)
dc7d5527
JW
765{
766 unsigned long flags;
767
768 /* If we're debugging, or KGDB has not connected, don't try
769 * and print. */
dcc78711 770 if (!kgdb_connected || atomic_read(&kgdb_active) != -1 || dbg_kdb_mode)
dc7d5527
JW
771 return;
772
773 local_irq_save(flags);
53197fc4 774 gdbstub_msg_write(s, count);
dc7d5527
JW
775 local_irq_restore(flags);
776}
777
778static struct console kgdbcons = {
779 .name = "kgdb",
780 .write = kgdb_console_write,
781 .flags = CON_PRINTBUFFER | CON_ENABLED,
782 .index = -1,
783};
784
785#ifdef CONFIG_MAGIC_SYSRQ
1495cc9d 786static void sysrq_handle_dbg(int key)
dc7d5527 787{
53197fc4 788 if (!dbg_io_ops) {
dc7d5527
JW
789 printk(KERN_CRIT "ERROR: No KGDB I/O module available\n");
790 return;
791 }
dcc78711
JW
792 if (!kgdb_connected) {
793#ifdef CONFIG_KGDB_KDB
794 if (!dbg_kdb_mode)
795 printk(KERN_CRIT "KGDB or $3#33 for KDB\n");
796#else
dc7d5527 797 printk(KERN_CRIT "Entering KGDB\n");
dcc78711
JW
798#endif
799 }
dc7d5527
JW
800
801 kgdb_breakpoint();
802}
803
53197fc4
JW
804static struct sysrq_key_op sysrq_dbg_op = {
805 .handler = sysrq_handle_dbg,
f3456509 806 .help_msg = "debug(g)",
364b5b7b 807 .action_msg = "DEBUG",
dc7d5527
JW
808};
809#endif
810
4402c153
JW
811static int kgdb_panic_event(struct notifier_block *self,
812 unsigned long val,
813 void *data)
814{
815 if (dbg_kdb_mode)
816 kdb_printf("PANIC: %s\n", (char *)data);
817 kgdb_breakpoint();
818 return NOTIFY_DONE;
819}
820
821static struct notifier_block kgdb_panic_event_nb = {
822 .notifier_call = kgdb_panic_event,
823 .priority = INT_MAX,
824};
825
0b4b3827
JW
826void __weak kgdb_arch_late(void)
827{
828}
829
830void __init dbg_late_init(void)
831{
832 dbg_is_early = false;
833 if (kgdb_io_module_registered)
834 kgdb_arch_late();
835 kdb_init(KDB_INIT_FULL);
836}
837
2366e047
JW
838static int
839dbg_notify_reboot(struct notifier_block *this, unsigned long code, void *x)
840{
bec4d62e
JW
841 /*
842 * Take the following action on reboot notify depending on value:
843 * 1 == Enter debugger
844 * 0 == [the default] detatch debug client
845 * -1 == Do nothing... and use this until the board resets
846 */
847 switch (kgdbreboot) {
848 case 1:
849 kgdb_breakpoint();
850 case -1:
851 goto done;
852 }
2366e047
JW
853 if (!dbg_kdb_mode)
854 gdbstub_exit(code);
bec4d62e 855done:
2366e047
JW
856 return NOTIFY_DONE;
857}
858
859static struct notifier_block dbg_reboot_notifier = {
860 .notifier_call = dbg_notify_reboot,
861 .next = NULL,
862 .priority = INT_MAX,
863};
864
dc7d5527
JW
865static void kgdb_register_callbacks(void)
866{
867 if (!kgdb_io_module_registered) {
868 kgdb_io_module_registered = 1;
869 kgdb_arch_init();
0b4b3827
JW
870 if (!dbg_is_early)
871 kgdb_arch_late();
f30fed10 872 register_module_notifier(&dbg_module_load_nb);
2366e047 873 register_reboot_notifier(&dbg_reboot_notifier);
4402c153
JW
874 atomic_notifier_chain_register(&panic_notifier_list,
875 &kgdb_panic_event_nb);
dc7d5527 876#ifdef CONFIG_MAGIC_SYSRQ
53197fc4 877 register_sysrq_key('g', &sysrq_dbg_op);
dc7d5527
JW
878#endif
879 if (kgdb_use_con && !kgdb_con_registered) {
880 register_console(&kgdbcons);
881 kgdb_con_registered = 1;
882 }
883 }
884}
885
886static void kgdb_unregister_callbacks(void)
887{
888 /*
889 * When this routine is called KGDB should unregister from the
890 * panic handler and clean up, making sure it is not handling any
891 * break exceptions at the time.
892 */
893 if (kgdb_io_module_registered) {
894 kgdb_io_module_registered = 0;
2366e047 895 unregister_reboot_notifier(&dbg_reboot_notifier);
f30fed10 896 unregister_module_notifier(&dbg_module_load_nb);
4402c153
JW
897 atomic_notifier_chain_unregister(&panic_notifier_list,
898 &kgdb_panic_event_nb);
dc7d5527
JW
899 kgdb_arch_exit();
900#ifdef CONFIG_MAGIC_SYSRQ
53197fc4 901 unregister_sysrq_key('g', &sysrq_dbg_op);
dc7d5527
JW
902#endif
903 if (kgdb_con_registered) {
904 unregister_console(&kgdbcons);
905 kgdb_con_registered = 0;
906 }
907 }
908}
909
1cee5e35
JW
910/*
911 * There are times a tasklet needs to be used vs a compiled in
912 * break point so as to cause an exception outside a kgdb I/O module,
913 * such as is the case with kgdboe, where calling a breakpoint in the
914 * I/O driver itself would be fatal.
915 */
916static void kgdb_tasklet_bpt(unsigned long ing)
917{
918 kgdb_breakpoint();
919 atomic_set(&kgdb_break_tasklet_var, 0);
920}
921
922static DECLARE_TASKLET(kgdb_tasklet_breakpoint, kgdb_tasklet_bpt, 0);
923
924void kgdb_schedule_breakpoint(void)
925{
926 if (atomic_read(&kgdb_break_tasklet_var) ||
927 atomic_read(&kgdb_active) != -1 ||
928 atomic_read(&kgdb_setting_breakpoint))
929 return;
930 atomic_inc(&kgdb_break_tasklet_var);
931 tasklet_schedule(&kgdb_tasklet_breakpoint);
932}
933EXPORT_SYMBOL_GPL(kgdb_schedule_breakpoint);
934
dc7d5527
JW
935static void kgdb_initial_breakpoint(void)
936{
937 kgdb_break_asap = 0;
938
939 printk(KERN_CRIT "kgdb: Waiting for connection from remote gdb...\n");
940 kgdb_breakpoint();
941}
942
943/**
737a460f 944 * kgdb_register_io_module - register KGDB IO module
53197fc4 945 * @new_dbg_io_ops: the io ops vector
dc7d5527
JW
946 *
947 * Register it with the KGDB core.
948 */
53197fc4 949int kgdb_register_io_module(struct kgdb_io *new_dbg_io_ops)
dc7d5527
JW
950{
951 int err;
952
953 spin_lock(&kgdb_registration_lock);
954
53197fc4 955 if (dbg_io_ops) {
dc7d5527
JW
956 spin_unlock(&kgdb_registration_lock);
957
958 printk(KERN_ERR "kgdb: Another I/O driver is already "
959 "registered with KGDB.\n");
960 return -EBUSY;
961 }
962
53197fc4
JW
963 if (new_dbg_io_ops->init) {
964 err = new_dbg_io_ops->init();
dc7d5527
JW
965 if (err) {
966 spin_unlock(&kgdb_registration_lock);
967 return err;
968 }
969 }
970
53197fc4 971 dbg_io_ops = new_dbg_io_ops;
dc7d5527
JW
972
973 spin_unlock(&kgdb_registration_lock);
974
975 printk(KERN_INFO "kgdb: Registered I/O driver %s.\n",
53197fc4 976 new_dbg_io_ops->name);
dc7d5527
JW
977
978 /* Arm KGDB now. */
979 kgdb_register_callbacks();
980
981 if (kgdb_break_asap)
982 kgdb_initial_breakpoint();
983
984 return 0;
985}
986EXPORT_SYMBOL_GPL(kgdb_register_io_module);
987
988/**
989 * kkgdb_unregister_io_module - unregister KGDB IO module
53197fc4 990 * @old_dbg_io_ops: the io ops vector
dc7d5527
JW
991 *
992 * Unregister it with the KGDB core.
993 */
53197fc4 994void kgdb_unregister_io_module(struct kgdb_io *old_dbg_io_ops)
dc7d5527
JW
995{
996 BUG_ON(kgdb_connected);
997
998 /*
999 * KGDB is no longer able to communicate out, so
1000 * unregister our callbacks and reset state.
1001 */
1002 kgdb_unregister_callbacks();
1003
1004 spin_lock(&kgdb_registration_lock);
1005
53197fc4
JW
1006 WARN_ON_ONCE(dbg_io_ops != old_dbg_io_ops);
1007 dbg_io_ops = NULL;
dc7d5527
JW
1008
1009 spin_unlock(&kgdb_registration_lock);
1010
1011 printk(KERN_INFO
1012 "kgdb: Unregistered I/O driver %s, debugger disabled.\n",
53197fc4 1013 old_dbg_io_ops->name);
dc7d5527
JW
1014}
1015EXPORT_SYMBOL_GPL(kgdb_unregister_io_module);
1016
dcc78711
JW
1017int dbg_io_get_char(void)
1018{
1019 int ret = dbg_io_ops->read_char();
f5316b4a
JW
1020 if (ret == NO_POLL_CHAR)
1021 return -1;
dcc78711
JW
1022 if (!dbg_kdb_mode)
1023 return ret;
1024 if (ret == 127)
1025 return 8;
1026 return ret;
1027}
1028
dc7d5527
JW
1029/**
1030 * kgdb_breakpoint - generate breakpoint exception
1031 *
1032 * This function will generate a breakpoint exception. It is used at the
1033 * beginning of a program to sync up with a debugger and can be used
1034 * otherwise as a quick means to stop program execution and "break" into
1035 * the debugger.
1036 */
1037void kgdb_breakpoint(void)
1038{
ae6bf53e 1039 atomic_inc(&kgdb_setting_breakpoint);
dc7d5527
JW
1040 wmb(); /* Sync point before breakpoint */
1041 arch_kgdb_breakpoint();
1042 wmb(); /* Sync point after breakpoint */
ae6bf53e 1043 atomic_dec(&kgdb_setting_breakpoint);
dc7d5527
JW
1044}
1045EXPORT_SYMBOL_GPL(kgdb_breakpoint);
1046
1047static int __init opt_kgdb_wait(char *str)
1048{
1049 kgdb_break_asap = 1;
1050
dcc78711 1051 kdb_init(KDB_INIT_EARLY);
dc7d5527
JW
1052 if (kgdb_io_module_registered)
1053 kgdb_initial_breakpoint();
1054
1055 return 0;
1056}
1057
1058early_param("kgdbwait", opt_kgdb_wait);
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