2 * kgdbts is a test suite for kgdb for the sole purpose of validating
3 * that key pieces of the kgdb internals are working properly such as
4 * HW/SW breakpoints, single stepping, and NMI.
6 * Created by: Jason Wessel <jason.wessel@windriver.com>
8 * Copyright (c) 2008 Wind River Systems, Inc.
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License version 2 as
12 * published by the Free Software Foundation.
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
17 * See the GNU General Public License for more details.
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
23 /* Information about the kgdb test suite.
24 * -------------------------------------
26 * The kgdb test suite is designed as a KGDB I/O module which
27 * simulates the communications that a debugger would have with kgdb.
28 * The tests are broken up in to a line by line and referenced here as
29 * a "get" which is kgdb requesting input and "put" which is kgdb
32 * The kgdb suite can be invoked from the kernel command line
33 * arguments system or executed dynamically at run time. The test
34 * suite uses the variable "kgdbts" to obtain the information about
35 * which tests to run and to configure the verbosity level. The
36 * following are the various characters you can use with the kgdbts=
39 * When using the "kgdbts=" you only choose one of the following core
41 * A = Run all the core tests silently
42 * V1 = Run all the core tests with minimal output
43 * V2 = Run all the core tests in debug mode
45 * You can also specify optional tests:
46 * N## = Go to sleep with interrupts of for ## seconds
47 * to test the HW NMI watchdog
48 * F## = Break at do_fork for ## iterations
49 * S## = Break at sys_open for ## iterations
50 * I## = Run the single step test ## iterations
52 * NOTE: that the do_fork and sys_open tests are mutually exclusive.
54 * To invoke the kgdb test suite from boot you use a kernel start
55 * argument as follows:
57 * Or if you wanted to perform the NMI test for 6 seconds and do_fork
58 * test for 100 forks, you could use:
59 * kgdbts=V1N6F100 kgdbwait
61 * The test suite can also be invoked at run time with:
62 * echo kgdbts=V1N6F100 > /sys/module/kgdbts/parameters/kgdbts
63 * Or as another example:
64 * echo kgdbts=V2 > /sys/module/kgdbts/parameters/kgdbts
66 * When developing a new kgdb arch specific implementation or
67 * using these tests for the purpose of regression testing,
68 * several invocations are required.
70 * 1) Boot with the test suite enabled by using the kernel arguments
71 * "kgdbts=V1F100 kgdbwait"
72 * ## If kgdb arch specific implementation has NMI use
75 * 2) After the system boot run the basic test.
76 * echo kgdbts=V1 > /sys/module/kgdbts/parameters/kgdbts
78 * 3) Run the concurrency tests. It is best to use n+1
79 * while loops where n is the number of cpus you have
80 * in your system. The example below uses only two
83 * ## This tests break points on sys_open
84 * while [ 1 ] ; do find / > /dev/null 2>&1 ; done &
85 * while [ 1 ] ; do find / > /dev/null 2>&1 ; done &
86 * echo kgdbts=V1S10000 > /sys/module/kgdbts/parameters/kgdbts
87 * fg # and hit control-c
88 * fg # and hit control-c
89 * ## This tests break points on do_fork
90 * while [ 1 ] ; do date > /dev/null ; done &
91 * while [ 1 ] ; do date > /dev/null ; done &
92 * echo kgdbts=V1F1000 > /sys/module/kgdbts/parameters/kgdbts
93 * fg # and hit control-c
97 #include <linux/kernel.h>
98 #include <linux/kgdb.h>
99 #include <linux/ctype.h>
100 #include <linux/uaccess.h>
101 #include <linux/syscalls.h>
102 #include <linux/nmi.h>
103 #include <linux/delay.h>
104 #include <linux/kthread.h>
106 #define v1printk(a...) do { \
108 printk(KERN_INFO a); \
110 #define v2printk(a...) do { \
112 printk(KERN_INFO a); \
113 touch_nmi_watchdog(); \
115 #define eprintk(a...) do { \
116 printk(KERN_ERR a); \
119 #define MAX_CONFIG_LEN 40
121 static struct kgdb_io kgdbts_io_ops
;
122 static char get_buf
[BUFMAX
];
123 static int get_buf_cnt
;
124 static char put_buf
[BUFMAX
];
125 static int put_buf_cnt
;
126 static char scratch_buf
[BUFMAX
];
128 static int repeat_test
;
129 static int test_complete
;
131 static int final_ack
;
132 static int force_hwbrks
;
133 static int hwbreaks_ok
;
134 static int hw_break_val
;
135 static int hw_break_val2
;
136 static int cont_instead_of_sstep
;
137 static unsigned long cont_thread_id
;
138 static unsigned long sstep_thread_id
;
139 #if defined(CONFIG_ARM) || defined(CONFIG_MIPS) || defined(CONFIG_SPARC)
140 static int arch_needs_sstep_emulation
= 1;
142 static int arch_needs_sstep_emulation
;
144 static unsigned long cont_addr
;
145 static unsigned long sstep_addr
;
146 static int restart_from_top_after_write
;
147 static int sstep_state
;
149 /* Storage for the registers, in GDB format. */
150 static unsigned long kgdbts_gdb_regs
[(NUMREGBYTES
+
151 sizeof(unsigned long) - 1) /
152 sizeof(unsigned long)];
153 static struct pt_regs kgdbts_regs
;
155 /* -1 = init not run yet, 0 = unconfigured, 1 = configured. */
156 static int configured
= -1;
158 #ifdef CONFIG_KGDB_TESTS_BOOT_STRING
159 static char config
[MAX_CONFIG_LEN
] = CONFIG_KGDB_TESTS_BOOT_STRING
;
161 static char config
[MAX_CONFIG_LEN
];
163 static struct kparam_string kps
= {
165 .maxlen
= MAX_CONFIG_LEN
,
168 static void fill_get_buf(char *buf
);
173 void (*get_handler
)(char *);
174 int (*put_handler
)(char *, char *);
179 struct test_struct
*tst
;
181 int (*run_test
) (int, int);
182 int (*validate_put
) (char *);
185 static struct test_state ts
;
187 static int kgdbts_unreg_thread(void *ptr
)
189 /* Wait until the tests are complete and then ungresiter the I/O
193 msleep_interruptible(1500);
194 /* Pause for any other threads to exit after final ack. */
195 msleep_interruptible(1000);
197 kgdb_unregister_io_module(&kgdbts_io_ops
);
203 /* This is noinline such that it can be used for a single location to
206 static noinline
void kgdbts_break_test(void)
208 v2printk("kgdbts: breakpoint complete\n");
211 /* Lookup symbol info in the kernel */
212 static unsigned long lookup_addr(char *arg
)
214 unsigned long addr
= 0;
216 if (!strcmp(arg
, "kgdbts_break_test"))
217 addr
= (unsigned long)kgdbts_break_test
;
218 else if (!strcmp(arg
, "sys_open"))
219 addr
= (unsigned long)do_sys_open
;
220 else if (!strcmp(arg
, "do_fork"))
221 addr
= (unsigned long)do_fork
;
222 else if (!strcmp(arg
, "hw_break_val"))
223 addr
= (unsigned long)&hw_break_val
;
227 static void break_helper(char *bp_type
, char *arg
, unsigned long vaddr
)
232 addr
= lookup_addr(arg
);
236 sprintf(scratch_buf
, "%s,%lx,%i", bp_type
, addr
,
238 fill_get_buf(scratch_buf
);
241 static void sw_break(char *arg
)
243 break_helper(force_hwbrks
? "Z1" : "Z0", arg
, 0);
246 static void sw_rem_break(char *arg
)
248 break_helper(force_hwbrks
? "z1" : "z0", arg
, 0);
251 static void hw_break(char *arg
)
253 break_helper("Z1", arg
, 0);
256 static void hw_rem_break(char *arg
)
258 break_helper("z1", arg
, 0);
261 static void hw_write_break(char *arg
)
263 break_helper("Z2", arg
, 0);
266 static void hw_rem_write_break(char *arg
)
268 break_helper("z2", arg
, 0);
271 static void hw_access_break(char *arg
)
273 break_helper("Z4", arg
, 0);
276 static void hw_rem_access_break(char *arg
)
278 break_helper("z4", arg
, 0);
281 static void hw_break_val_access(void)
283 hw_break_val2
= hw_break_val
;
286 static void hw_break_val_write(void)
291 static int get_thread_id_continue(char *put_str
, char *arg
)
293 char *ptr
= &put_str
[11];
295 if (put_str
[1] != 'T' || put_str
[2] != '0')
297 kgdb_hex2long(&ptr
, &cont_thread_id
);
301 static int check_and_rewind_pc(char *put_str
, char *arg
)
303 unsigned long addr
= lookup_addr(arg
);
307 kgdb_hex2mem(&put_str
[1], (char *)kgdbts_gdb_regs
,
309 gdb_regs_to_pt_regs(kgdbts_gdb_regs
, &kgdbts_regs
);
310 ip
= instruction_pointer(&kgdbts_regs
);
311 v2printk("Stopped at IP: %lx\n", ip
);
312 #ifdef GDB_ADJUSTS_BREAK_OFFSET
313 /* On some arches, a breakpoint stop requires it to be decremented */
314 if (addr
+ BREAK_INSTR_SIZE
== ip
)
315 offset
= -BREAK_INSTR_SIZE
;
318 if (arch_needs_sstep_emulation
&& sstep_addr
&&
319 ip
+ offset
== sstep_addr
&&
320 ((!strcmp(arg
, "sys_open") || !strcmp(arg
, "do_fork")))) {
321 /* This is special case for emulated single step */
322 v2printk("Emul: rewind hit single step bp\n");
323 restart_from_top_after_write
= 1;
324 } else if (strcmp(arg
, "silent") && ip
+ offset
!= addr
) {
325 eprintk("kgdbts: BP mismatch %lx expected %lx\n",
329 /* Readjust the instruction pointer if needed */
332 #ifdef GDB_ADJUSTS_BREAK_OFFSET
333 instruction_pointer_set(&kgdbts_regs
, ip
);
338 static int check_single_step(char *put_str
, char *arg
)
340 unsigned long addr
= lookup_addr(arg
);
341 static int matched_id
;
344 * From an arch indepent point of view the instruction pointer
345 * should be on a different instruction
347 kgdb_hex2mem(&put_str
[1], (char *)kgdbts_gdb_regs
,
349 gdb_regs_to_pt_regs(kgdbts_gdb_regs
, &kgdbts_regs
);
350 v2printk("Singlestep stopped at IP: %lx\n",
351 instruction_pointer(&kgdbts_regs
));
353 if (sstep_thread_id
!= cont_thread_id
) {
355 * Ensure we stopped in the same thread id as before, else the
356 * debugger should continue until the original thread that was
357 * single stepped is scheduled again, emulating gdb's behavior.
359 v2printk("ThrID does not match: %lx\n", cont_thread_id
);
360 if (arch_needs_sstep_emulation
) {
362 instruction_pointer(&kgdbts_regs
) != addr
)
369 cont_instead_of_sstep
= 1;
375 if (instruction_pointer(&kgdbts_regs
) == addr
) {
376 eprintk("kgdbts: SingleStep failed at %lx\n",
377 instruction_pointer(&kgdbts_regs
));
384 static void write_regs(char *arg
)
386 memset(scratch_buf
, 0, sizeof(scratch_buf
));
387 scratch_buf
[0] = 'G';
388 pt_regs_to_gdb_regs(kgdbts_gdb_regs
, &kgdbts_regs
);
389 kgdb_mem2hex((char *)kgdbts_gdb_regs
, &scratch_buf
[1], NUMREGBYTES
);
390 fill_get_buf(scratch_buf
);
393 static void skip_back_repeat_test(char *arg
)
395 int go_back
= simple_strtol(arg
, NULL
, 10);
398 if (repeat_test
<= 0)
402 fill_get_buf(ts
.tst
[ts
.idx
].get
);
405 static int got_break(char *put_str
, char *arg
)
408 if (!strncmp(put_str
+1, arg
, 2)) {
409 if (!strncmp(arg
, "T0", 2))
416 static void get_cont_catch(char *arg
)
418 /* Always send detach because the test is completed at this point */
422 static int put_cont_catch(char *put_str
, char *arg
)
424 /* This is at the end of the test and we catch any and all input */
425 v2printk("kgdbts: cleanup task: %lx\n", sstep_thread_id
);
430 static int emul_reset(char *put_str
, char *arg
)
432 if (strncmp(put_str
, "$OK", 3))
434 if (restart_from_top_after_write
) {
435 restart_from_top_after_write
= 0;
441 static void emul_sstep_get(char *arg
)
443 if (!arch_needs_sstep_emulation
) {
444 if (cont_instead_of_sstep
) {
445 cont_instead_of_sstep
= 0;
452 switch (sstep_state
) {
454 v2printk("Emulate single step\n");
455 /* Start by looking at the current PC */
460 break_helper("Z0", NULL
, sstep_addr
);
467 /* Clear breakpoint */
468 break_helper("z0", NULL
, sstep_addr
);
471 eprintk("kgdbts: ERROR failed sstep get emulation\n");
476 static int emul_sstep_put(char *put_str
, char *arg
)
478 if (!arch_needs_sstep_emulation
) {
479 char *ptr
= &put_str
[11];
480 if (put_str
[1] != 'T' || put_str
[2] != '0')
482 kgdb_hex2long(&ptr
, &sstep_thread_id
);
485 switch (sstep_state
) {
487 /* validate the "g" packet to get the IP */
488 kgdb_hex2mem(&put_str
[1], (char *)kgdbts_gdb_regs
,
490 gdb_regs_to_pt_regs(kgdbts_gdb_regs
, &kgdbts_regs
);
491 v2printk("Stopped at IP: %lx\n",
492 instruction_pointer(&kgdbts_regs
));
493 /* Want to stop at IP + break instruction size by default */
494 sstep_addr
= cont_addr
+ BREAK_INSTR_SIZE
;
497 if (strncmp(put_str
, "$OK", 3)) {
498 eprintk("kgdbts: failed sstep break set\n");
503 if (strncmp(put_str
, "$T0", 3)) {
504 eprintk("kgdbts: failed continue sstep\n");
507 char *ptr
= &put_str
[11];
508 kgdb_hex2long(&ptr
, &sstep_thread_id
);
512 if (strncmp(put_str
, "$OK", 3)) {
513 eprintk("kgdbts: failed sstep break unset\n");
516 /* Single step is complete so continue on! */
520 eprintk("kgdbts: ERROR failed sstep put emulation\n");
523 /* Continue on the same test line until emulation is complete */
528 static int final_ack_set(char *put_str
, char *arg
)
530 if (strncmp(put_str
+1, arg
, 2))
536 * Test to plant a breakpoint and detach, which should clear out the
537 * breakpoint and restore the original instruction.
539 static struct test_struct plant_and_detach_test
[] = {
540 { "?", "S0*" }, /* Clear break points */
541 { "kgdbts_break_test", "OK", sw_break
, }, /* set sw breakpoint */
542 { "D", "OK" }, /* Detach */
547 * Simple test to write in a software breakpoint, check for the
548 * correct stop location and detach.
550 static struct test_struct sw_breakpoint_test
[] = {
551 { "?", "S0*" }, /* Clear break points */
552 { "kgdbts_break_test", "OK", sw_break
, }, /* set sw breakpoint */
553 { "c", "T0*", }, /* Continue */
554 { "g", "kgdbts_break_test", NULL
, check_and_rewind_pc
},
555 { "write", "OK", write_regs
},
556 { "kgdbts_break_test", "OK", sw_rem_break
}, /*remove breakpoint */
557 { "D", "OK" }, /* Detach */
558 { "D", "OK", NULL
, got_break
}, /* On success we made it here */
563 * Test a known bad memory read location to test the fault handler and
564 * read bytes 1-8 at the bad address
566 static struct test_struct bad_read_test
[] = {
567 { "?", "S0*" }, /* Clear break points */
568 { "m0,1", "E*" }, /* read 1 byte at address 1 */
569 { "m0,2", "E*" }, /* read 1 byte at address 2 */
570 { "m0,3", "E*" }, /* read 1 byte at address 3 */
571 { "m0,4", "E*" }, /* read 1 byte at address 4 */
572 { "m0,5", "E*" }, /* read 1 byte at address 5 */
573 { "m0,6", "E*" }, /* read 1 byte at address 6 */
574 { "m0,7", "E*" }, /* read 1 byte at address 7 */
575 { "m0,8", "E*" }, /* read 1 byte at address 8 */
576 { "D", "OK" }, /* Detach which removes all breakpoints and continues */
581 * Test for hitting a breakpoint, remove it, single step, plant it
584 static struct test_struct singlestep_break_test
[] = {
585 { "?", "S0*" }, /* Clear break points */
586 { "kgdbts_break_test", "OK", sw_break
, }, /* set sw breakpoint */
587 { "c", "T0*", NULL
, get_thread_id_continue
}, /* Continue */
588 { "kgdbts_break_test", "OK", sw_rem_break
}, /*remove breakpoint */
589 { "g", "kgdbts_break_test", NULL
, check_and_rewind_pc
},
590 { "write", "OK", write_regs
}, /* Write registers */
591 { "s", "T0*", emul_sstep_get
, emul_sstep_put
}, /* Single step */
592 { "g", "kgdbts_break_test", NULL
, check_single_step
},
593 { "kgdbts_break_test", "OK", sw_break
, }, /* set sw breakpoint */
594 { "c", "T0*", }, /* Continue */
595 { "g", "kgdbts_break_test", NULL
, check_and_rewind_pc
},
596 { "write", "OK", write_regs
}, /* Write registers */
597 { "D", "OK" }, /* Remove all breakpoints and continues */
602 * Test for hitting a breakpoint at do_fork for what ever the number
603 * of iterations required by the variable repeat_test.
605 static struct test_struct do_fork_test
[] = {
606 { "?", "S0*" }, /* Clear break points */
607 { "do_fork", "OK", sw_break
, }, /* set sw breakpoint */
608 { "c", "T0*", NULL
, get_thread_id_continue
}, /* Continue */
609 { "do_fork", "OK", sw_rem_break
}, /*remove breakpoint */
610 { "g", "do_fork", NULL
, check_and_rewind_pc
}, /* check location */
611 { "write", "OK", write_regs
, emul_reset
}, /* Write registers */
612 { "s", "T0*", emul_sstep_get
, emul_sstep_put
}, /* Single step */
613 { "g", "do_fork", NULL
, check_single_step
},
614 { "do_fork", "OK", sw_break
, }, /* set sw breakpoint */
615 { "7", "T0*", skip_back_repeat_test
}, /* Loop based on repeat_test */
616 { "D", "OK", NULL
, final_ack_set
}, /* detach and unregister I/O */
617 { "", "", get_cont_catch
, put_cont_catch
},
620 /* Test for hitting a breakpoint at sys_open for what ever the number
621 * of iterations required by the variable repeat_test.
623 static struct test_struct sys_open_test
[] = {
624 { "?", "S0*" }, /* Clear break points */
625 { "sys_open", "OK", sw_break
, }, /* set sw breakpoint */
626 { "c", "T0*", NULL
, get_thread_id_continue
}, /* Continue */
627 { "sys_open", "OK", sw_rem_break
}, /*remove breakpoint */
628 { "g", "sys_open", NULL
, check_and_rewind_pc
}, /* check location */
629 { "write", "OK", write_regs
, emul_reset
}, /* Write registers */
630 { "s", "T0*", emul_sstep_get
, emul_sstep_put
}, /* Single step */
631 { "g", "sys_open", NULL
, check_single_step
},
632 { "sys_open", "OK", sw_break
, }, /* set sw breakpoint */
633 { "7", "T0*", skip_back_repeat_test
}, /* Loop based on repeat_test */
634 { "D", "OK", NULL
, final_ack_set
}, /* detach and unregister I/O */
635 { "", "", get_cont_catch
, put_cont_catch
},
639 * Test for hitting a simple hw breakpoint
641 static struct test_struct hw_breakpoint_test
[] = {
642 { "?", "S0*" }, /* Clear break points */
643 { "kgdbts_break_test", "OK", hw_break
, }, /* set hw breakpoint */
644 { "c", "T0*", }, /* Continue */
645 { "g", "kgdbts_break_test", NULL
, check_and_rewind_pc
},
646 { "write", "OK", write_regs
},
647 { "kgdbts_break_test", "OK", hw_rem_break
}, /*remove breakpoint */
648 { "D", "OK" }, /* Detach */
649 { "D", "OK", NULL
, got_break
}, /* On success we made it here */
654 * Test for hitting a hw write breakpoint
656 static struct test_struct hw_write_break_test
[] = {
657 { "?", "S0*" }, /* Clear break points */
658 { "hw_break_val", "OK", hw_write_break
, }, /* set hw breakpoint */
659 { "c", "T0*", NULL
, got_break
}, /* Continue */
660 { "g", "silent", NULL
, check_and_rewind_pc
},
661 { "write", "OK", write_regs
},
662 { "hw_break_val", "OK", hw_rem_write_break
}, /*remove breakpoint */
663 { "D", "OK" }, /* Detach */
664 { "D", "OK", NULL
, got_break
}, /* On success we made it here */
669 * Test for hitting a hw access breakpoint
671 static struct test_struct hw_access_break_test
[] = {
672 { "?", "S0*" }, /* Clear break points */
673 { "hw_break_val", "OK", hw_access_break
, }, /* set hw breakpoint */
674 { "c", "T0*", NULL
, got_break
}, /* Continue */
675 { "g", "silent", NULL
, check_and_rewind_pc
},
676 { "write", "OK", write_regs
},
677 { "hw_break_val", "OK", hw_rem_access_break
}, /*remove breakpoint */
678 { "D", "OK" }, /* Detach */
679 { "D", "OK", NULL
, got_break
}, /* On success we made it here */
684 * Test for hitting a hw access breakpoint
686 static struct test_struct nmi_sleep_test
[] = {
687 { "?", "S0*" }, /* Clear break points */
688 { "c", "T0*", NULL
, got_break
}, /* Continue */
689 { "D", "OK" }, /* Detach */
690 { "D", "OK", NULL
, got_break
}, /* On success we made it here */
694 static void fill_get_buf(char *buf
)
696 unsigned char checksum
= 0;
700 strcpy(get_buf
, "$");
701 strcat(get_buf
, buf
);
702 while ((ch
= buf
[count
])) {
706 strcat(get_buf
, "#");
707 get_buf
[count
+ 2] = hex_asc_hi(checksum
);
708 get_buf
[count
+ 3] = hex_asc_lo(checksum
);
709 get_buf
[count
+ 4] = '\0';
710 v2printk("get%i: %s\n", ts
.idx
, get_buf
);
713 static int validate_simple_test(char *put_str
)
717 if (ts
.tst
[ts
.idx
].put_handler
)
718 return ts
.tst
[ts
.idx
].put_handler(put_str
,
721 chk_str
= ts
.tst
[ts
.idx
].put
;
725 while (*chk_str
!= '\0' && *put_str
!= '\0') {
726 /* If someone does a * to match the rest of the string, allow
727 * it, or stop if the received string is complete.
729 if (*put_str
== '#' || *chk_str
== '*')
731 if (*put_str
!= *chk_str
)
737 if (*chk_str
== '\0' && (*put_str
== '\0' || *put_str
== '#'))
743 static int run_simple_test(int is_get_char
, int chr
)
747 /* Send an ACK on the get if a prior put completed and set the
754 /* On the first get char, fill the transmit buffer and then
755 * take from the get_string.
757 if (get_buf_cnt
== 0) {
758 if (ts
.tst
[ts
.idx
].get_handler
)
759 ts
.tst
[ts
.idx
].get_handler(ts
.tst
[ts
.idx
].get
);
761 fill_get_buf(ts
.tst
[ts
.idx
].get
);
764 if (get_buf
[get_buf_cnt
] == '\0') {
765 eprintk("kgdbts: ERROR GET: EOB on '%s' at %i\n",
770 ret
= get_buf
[get_buf_cnt
];
775 /* This callback is a put char which is when kgdb sends data to
778 if (ts
.tst
[ts
.idx
].get
[0] == '\0' && ts
.tst
[ts
.idx
].put
[0] == '\0' &&
779 !ts
.tst
[ts
.idx
].get_handler
) {
780 eprintk("kgdbts: ERROR: beyond end of test on"
781 " '%s' line %i\n", ts
.name
, ts
.idx
);
785 if (put_buf_cnt
>= BUFMAX
) {
786 eprintk("kgdbts: ERROR: put buffer overflow on"
787 " '%s' line %i\n", ts
.name
, ts
.idx
);
791 /* Ignore everything until the first valid packet start '$' */
792 if (put_buf_cnt
== 0 && chr
!= '$')
795 put_buf
[put_buf_cnt
] = chr
;
798 /* End of packet == #XX so look for the '#' */
799 if (put_buf_cnt
> 3 && put_buf
[put_buf_cnt
- 3] == '#') {
800 if (put_buf_cnt
>= BUFMAX
) {
801 eprintk("kgdbts: ERROR: put buffer overflow on"
802 " '%s' line %i\n", ts
.name
, ts
.idx
);
806 put_buf
[put_buf_cnt
] = '\0';
807 v2printk("put%i: %s\n", ts
.idx
, put_buf
);
808 /* Trigger check here */
809 if (ts
.validate_put
&& ts
.validate_put(put_buf
)) {
810 eprintk("kgdbts: ERROR PUT: end of test "
811 "buffer on '%s' line %i expected %s got %s\n",
812 ts
.name
, ts
.idx
, ts
.tst
[ts
.idx
].put
, put_buf
);
822 static void init_simple_test(void)
824 memset(&ts
, 0, sizeof(ts
));
825 ts
.run_test
= run_simple_test
;
826 ts
.validate_put
= validate_simple_test
;
829 static void run_plant_and_detach_test(int is_early
)
831 char before
[BREAK_INSTR_SIZE
];
832 char after
[BREAK_INSTR_SIZE
];
834 probe_kernel_read(before
, (char *)kgdbts_break_test
,
837 ts
.tst
= plant_and_detach_test
;
838 ts
.name
= "plant_and_detach_test";
839 /* Activate test with initial breakpoint */
842 probe_kernel_read(after
, (char *)kgdbts_break_test
,
844 if (memcmp(before
, after
, BREAK_INSTR_SIZE
)) {
845 printk(KERN_CRIT
"kgdbts: ERROR kgdb corrupted memory\n");
846 panic("kgdb memory corruption");
849 /* complete the detach test */
854 static void run_breakpoint_test(int is_hw_breakpoint
)
858 if (is_hw_breakpoint
) {
859 ts
.tst
= hw_breakpoint_test
;
860 ts
.name
= "hw_breakpoint_test";
862 ts
.tst
= sw_breakpoint_test
;
863 ts
.name
= "sw_breakpoint_test";
865 /* Activate test with initial breakpoint */
867 /* run code with the break point in it */
874 eprintk("kgdbts: ERROR %s test failed\n", ts
.name
);
875 if (is_hw_breakpoint
)
879 static void run_hw_break_test(int is_write_test
)
884 ts
.tst
= hw_write_break_test
;
885 ts
.name
= "hw_write_break_test";
887 ts
.tst
= hw_access_break_test
;
888 ts
.name
= "hw_access_break_test";
890 /* Activate test with initial breakpoint */
892 hw_break_val_access();
894 if (test_complete
== 2) {
895 eprintk("kgdbts: ERROR %s broke on access\n",
899 hw_break_val_write();
903 if (test_complete
== 1)
906 eprintk("kgdbts: ERROR %s test failed\n", ts
.name
);
910 static void run_nmi_sleep_test(int nmi_sleep
)
915 ts
.tst
= nmi_sleep_test
;
916 ts
.name
= "nmi_sleep_test";
917 /* Activate test with initial breakpoint */
919 local_irq_save(flags
);
920 mdelay(nmi_sleep
*1000);
921 touch_nmi_watchdog();
922 local_irq_restore(flags
);
923 if (test_complete
!= 2)
924 eprintk("kgdbts: ERROR nmi_test did not hit nmi\n");
926 if (test_complete
== 1)
929 eprintk("kgdbts: ERROR %s test failed\n", ts
.name
);
932 static void run_bad_read_test(void)
935 ts
.tst
= bad_read_test
;
936 ts
.name
= "bad_read_test";
937 /* Activate test with initial breakpoint */
941 static void run_do_fork_test(void)
944 ts
.tst
= do_fork_test
;
945 ts
.name
= "do_fork_test";
946 /* Activate test with initial breakpoint */
950 static void run_sys_open_test(void)
953 ts
.tst
= sys_open_test
;
954 ts
.name
= "sys_open_test";
955 /* Activate test with initial breakpoint */
959 static void run_singlestep_break_test(void)
962 ts
.tst
= singlestep_break_test
;
963 ts
.name
= "singlestep_breakpoint_test";
964 /* Activate test with initial breakpoint */
970 static void kgdbts_run_tests(void)
974 int do_sys_open_test
= 0;
975 int sstep_test
= 1000;
979 ptr
= strchr(config
, 'F');
981 fork_test
= simple_strtol(ptr
+ 1, NULL
, 10);
982 ptr
= strchr(config
, 'S');
984 do_sys_open_test
= simple_strtol(ptr
+ 1, NULL
, 10);
985 ptr
= strchr(config
, 'N');
987 nmi_sleep
= simple_strtol(ptr
+1, NULL
, 10);
988 ptr
= strchr(config
, 'I');
990 sstep_test
= simple_strtol(ptr
+1, NULL
, 10);
992 /* All HW break point tests */
993 if (arch_kgdb_ops
.flags
& KGDB_HW_BREAKPOINT
) {
995 v1printk("kgdbts:RUN hw breakpoint test\n");
996 run_breakpoint_test(1);
997 v1printk("kgdbts:RUN hw write breakpoint test\n");
998 run_hw_break_test(1);
999 v1printk("kgdbts:RUN access write breakpoint test\n");
1000 run_hw_break_test(0);
1003 /* required internal KGDB tests */
1004 v1printk("kgdbts:RUN plant and detach test\n");
1005 run_plant_and_detach_test(0);
1006 v1printk("kgdbts:RUN sw breakpoint test\n");
1007 run_breakpoint_test(0);
1008 v1printk("kgdbts:RUN bad memory access test\n");
1009 run_bad_read_test();
1010 v1printk("kgdbts:RUN singlestep test %i iterations\n", sstep_test
);
1011 for (i
= 0; i
< sstep_test
; i
++) {
1012 run_singlestep_break_test();
1014 v1printk("kgdbts:RUN singlestep [%i/%i]\n",
1018 /* ===Optional tests=== */
1021 v1printk("kgdbts:RUN NMI sleep %i seconds test\n", nmi_sleep
);
1022 run_nmi_sleep_test(nmi_sleep
);
1025 /* If the do_fork test is run it will be the last test that is
1026 * executed because a kernel thread will be spawned at the very
1027 * end to unregister the debug hooks.
1030 repeat_test
= fork_test
;
1031 printk(KERN_INFO
"kgdbts:RUN do_fork for %i breakpoints\n",
1033 kthread_run(kgdbts_unreg_thread
, NULL
, "kgdbts_unreg");
1038 /* If the sys_open test is run it will be the last test that is
1039 * executed because a kernel thread will be spawned at the very
1040 * end to unregister the debug hooks.
1042 if (do_sys_open_test
) {
1043 repeat_test
= do_sys_open_test
;
1044 printk(KERN_INFO
"kgdbts:RUN sys_open for %i breakpoints\n",
1046 kthread_run(kgdbts_unreg_thread
, NULL
, "kgdbts_unreg");
1047 run_sys_open_test();
1050 /* Shutdown and unregister */
1051 kgdb_unregister_io_module(&kgdbts_io_ops
);
1055 static int kgdbts_option_setup(char *opt
)
1057 if (strlen(opt
) >= MAX_CONFIG_LEN
) {
1058 printk(KERN_ERR
"kgdbts: config string too long\n");
1061 strcpy(config
, opt
);
1064 if (strstr(config
, "V1"))
1066 if (strstr(config
, "V2"))
1072 __setup("kgdbts=", kgdbts_option_setup
);
1074 static int configure_kgdbts(void)
1078 if (!strlen(config
) || isspace(config
[0]))
1080 err
= kgdbts_option_setup(config
);
1085 run_plant_and_detach_test(1);
1087 err
= kgdb_register_io_module(&kgdbts_io_ops
);
1104 static int __init
init_kgdbts(void)
1106 /* Already configured? */
1107 if (configured
== 1)
1110 return configure_kgdbts();
1113 static int kgdbts_get_char(void)
1118 val
= ts
.run_test(1, 0);
1123 static void kgdbts_put_char(u8 chr
)
1126 ts
.run_test(0, chr
);
1129 static int param_set_kgdbts_var(const char *kmessage
, struct kernel_param
*kp
)
1131 int len
= strlen(kmessage
);
1133 if (len
>= MAX_CONFIG_LEN
) {
1134 printk(KERN_ERR
"kgdbts: config string too long\n");
1138 /* Only copy in the string if the init function has not run yet */
1139 if (configured
< 0) {
1140 strcpy(config
, kmessage
);
1144 if (configured
== 1) {
1145 printk(KERN_ERR
"kgdbts: ERROR: Already configured and running.\n");
1149 strcpy(config
, kmessage
);
1150 /* Chop out \n char as a result of echo */
1151 if (config
[len
- 1] == '\n')
1152 config
[len
- 1] = '\0';
1154 /* Go and configure with the new params. */
1155 return configure_kgdbts();
1158 static void kgdbts_pre_exp_handler(void)
1160 /* Increment the module count when the debugger is active */
1161 if (!kgdb_connected
)
1162 try_module_get(THIS_MODULE
);
1165 static void kgdbts_post_exp_handler(void)
1167 /* decrement the module count when the debugger detaches */
1168 if (!kgdb_connected
)
1169 module_put(THIS_MODULE
);
1172 static struct kgdb_io kgdbts_io_ops
= {
1174 .read_char
= kgdbts_get_char
,
1175 .write_char
= kgdbts_put_char
,
1176 .pre_exception
= kgdbts_pre_exp_handler
,
1177 .post_exception
= kgdbts_post_exp_handler
,
1180 module_init(init_kgdbts
);
1181 module_param_call(kgdbts
, param_set_kgdbts_var
, param_get_string
, &kps
, 0644);
1182 MODULE_PARM_DESC(kgdbts
, "<A|V1|V2>[F#|S#][N#]");
1183 MODULE_DESCRIPTION("KGDB Test Suite");
1184 MODULE_LICENSE("GPL");
1185 MODULE_AUTHOR("Wind River Systems, Inc.");