source: mainline/kernel/generic/src/console/cmd.c@ 2b96463

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 2b96463 was 5b7a107, checked in by Martin Decky <martin@…>, 15 years ago

as the 'btrace' command depends on udebug, make it optional on CONFIG_UDEBUG

  • Property mode set to 100644
File size: 27.9 KB
RevLine 
[442d0ae]1/*
[df4ed85]2 * Copyright (c) 2005 Jakub Jermar
[442d0ae]3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
[06e1e95]29/** @addtogroup genericconsole
[b45c443]30 * @{
31 */
32
[442d0ae]33/**
[cb01e1e]34 * @file cmd.c
35 * @brief Kernel console command wrappers.
[cf26ba9]36 *
[442d0ae]37 * This file is meant to contain all wrapper functions for
38 * all kconsole commands. The point is in separating
39 * kconsole specific wrappers from kconsole-unaware functions
40 * from other subsystems.
41 */
42
43#include <console/cmd.h>
[41d33ac]44#include <console/console.h>
[442d0ae]45#include <console/kconsole.h>
46#include <print.h>
47#include <panic.h>
[d99c1d2]48#include <typedefs.h>
[5c9a08b]49#include <adt/list.h>
[442d0ae]50#include <arch.h>
[f74bbaf]51#include <config.h>
[442d0ae]52#include <func.h>
[19f857a]53#include <str.h>
[442d0ae]54#include <macros.h>
55#include <debug.h>
[0132630]56#include <cpu.h>
[442d0ae]57#include <mm/tlb.h>
58#include <arch/mm/tlb.h>
[80bff342]59#include <mm/frame.h>
[0132630]60#include <main/version.h>
[4e147a6]61#include <mm/slab.h>
[10e16a7]62#include <proc/scheduler.h>
[55ab0f1]63#include <proc/thread.h>
[37c57f2]64#include <proc/task.h>
[c4e4507]65#include <ipc/ipc.h>
[62939f7]66#include <ipc/irq.h>
[13a638d]67#include <ipc/event.h>
[b3631bc]68#include <sysinfo/sysinfo.h>
[e2b762ec]69#include <symtab.h>
[e16e0d59]70#include <errno.h>
[e2b762ec]71
[319e60e]72#ifdef CONFIG_TEST
73#include <test.h>
74#endif
75
[b45c443]76/* Data and methods for 'help' command. */
[442d0ae]77static int cmd_help(cmd_arg_t *argv);
78static cmd_info_t help_info = {
79 .name = "help",
[df58e44]80 .description = "List supported commands.",
[442d0ae]81 .func = cmd_help,
82 .argc = 0
83};
84
[df58e44]85/* Data and methods for 'reboot' command. */
[f74bbaf]86static int cmd_reboot(cmd_arg_t *argv);
87static cmd_info_t reboot_info = {
88 .name = "reboot",
[df58e44]89 .description = "Reboot system.",
[f74bbaf]90 .func = cmd_reboot,
[e07fe0c]91 .argc = 0
92};
93
[df58e44]94/* Data and methods for 'uptime' command. */
[4b662f8c]95static int cmd_uptime(cmd_arg_t *argv);
96static cmd_info_t uptime_info = {
97 .name = "uptime",
[df58e44]98 .description = "Show system uptime.",
[4b662f8c]99 .func = cmd_uptime,
100 .argc = 0
101};
102
[df58e44]103/* Data and methods for 'continue' command. */
[41d33ac]104static int cmd_continue(cmd_arg_t *argv);
105static cmd_info_t continue_info = {
106 .name = "continue",
[319e60e]107 .description = "Return console back to userspace.",
[41d33ac]108 .func = cmd_continue,
109 .argc = 0
110};
111
[319e60e]112#ifdef CONFIG_TEST
[5b7a107]113
[df58e44]114/* Data and methods for 'test' command. */
[319e60e]115static char test_buf[MAX_CMDLINE + 1];
116static int cmd_test(cmd_arg_t *argv);
117static cmd_arg_t test_argv[] = {
118 {
[851f33a]119 .type = ARG_TYPE_STRING_OPTIONAL,
[319e60e]120 .buffer = test_buf,
121 .len = sizeof(test_buf)
122 }
123};
124static cmd_info_t test_info = {
125 .name = "test",
[df58e44]126 .description = "<test> List kernel tests or run a test.",
[319e60e]127 .func = cmd_test,
128 .argc = 1,
129 .argv = test_argv
130};
[95155b0c]131
[df58e44]132/* Data and methods for 'bench' command. */
[95155b0c]133static int cmd_bench(cmd_arg_t *argv);
134static cmd_arg_t bench_argv[] = {
135 {
136 .type = ARG_TYPE_STRING,
137 .buffer = test_buf,
138 .len = sizeof(test_buf)
139 },
140 {
141 .type = ARG_TYPE_INT,
142 }
143};
144static cmd_info_t bench_info = {
145 .name = "bench",
[df58e44]146 .description = "<test> <count> Run kernel test as benchmark.",
[95155b0c]147 .func = cmd_bench,
148 .argc = 2,
149 .argv = bench_argv
150};
[5b7a107]151
152#endif /* CONFIG_TEST */
[319e60e]153
[b45c443]154/* Data and methods for 'description' command. */
[442d0ae]155static int cmd_desc(cmd_arg_t *argv);
156static void desc_help(void);
[df58e44]157static char desc_buf[MAX_CMDLINE + 1];
[442d0ae]158static cmd_arg_t desc_argv = {
159 .type = ARG_TYPE_STRING,
160 .buffer = desc_buf,
161 .len = sizeof(desc_buf)
162};
163static cmd_info_t desc_info = {
164 .name = "describe",
[df58e44]165 .description = "<command> Describe specified command.",
[442d0ae]166 .help = desc_help,
167 .func = cmd_desc,
168 .argc = 1,
169 .argv = &desc_argv
170};
171
[b45c443]172/* Data and methods for 'symaddr' command. */
[442d0ae]173static int cmd_symaddr(cmd_arg_t *argv);
[df58e44]174static char symaddr_buf[MAX_CMDLINE + 1];
[442d0ae]175static cmd_arg_t symaddr_argv = {
176 .type = ARG_TYPE_STRING,
177 .buffer = symaddr_buf,
178 .len = sizeof(symaddr_buf)
179};
180static cmd_info_t symaddr_info = {
181 .name = "symaddr",
[df58e44]182 .description = "<symbol> Return symbol address.",
[442d0ae]183 .func = cmd_symaddr,
184 .argc = 1,
185 .argv = &symaddr_argv
186};
187
[df58e44]188/* Data and methods for 'set4' command. */
189static char set_buf[MAX_CMDLINE + 1];
[ba276f7]190static int cmd_set4(cmd_arg_t *argv);
191static cmd_arg_t set4_argv[] = {
192 {
193 .type = ARG_TYPE_STRING,
194 .buffer = set_buf,
195 .len = sizeof(set_buf)
196 },
197 {
198 .type = ARG_TYPE_INT
199 }
200};
201static cmd_info_t set4_info = {
202 .name = "set4",
[df58e44]203 .description = "<addr> <value> Set 4B memory location to a value.",
[ba276f7]204 .func = cmd_set4,
205 .argc = 2,
206 .argv = set4_argv
207};
208
[c0f13d2]209/* Data and methods for 'call0' and 'mcall0' command. */
[e5dbbe5]210static char call0_buf[MAX_CMDLINE + 1];
211static char carg1_buf[MAX_CMDLINE + 1];
212static char carg2_buf[MAX_CMDLINE + 1];
213static char carg3_buf[MAX_CMDLINE + 1];
[442d0ae]214
215static int cmd_call0(cmd_arg_t *argv);
216static cmd_arg_t call0_argv = {
217 .type = ARG_TYPE_STRING,
218 .buffer = call0_buf,
219 .len = sizeof(call0_buf)
220};
221static cmd_info_t call0_info = {
222 .name = "call0",
[df58e44]223 .description = "<function> Call function().",
[442d0ae]224 .func = cmd_call0,
225 .argc = 1,
226 .argv = &call0_argv
227};
228
[e5dbbe5]229/* Data and methods for 'mcall0' command. */
230static int cmd_mcall0(cmd_arg_t *argv);
231static cmd_arg_t mcall0_argv = {
232 .type = ARG_TYPE_STRING,
233 .buffer = call0_buf,
234 .len = sizeof(call0_buf)
235};
236static cmd_info_t mcall0_info = {
237 .name = "mcall0",
[df58e44]238 .description = "<function> Call function() on each CPU.",
[e5dbbe5]239 .func = cmd_mcall0,
240 .argc = 1,
241 .argv = &mcall0_argv
242};
243
[b45c443]244/* Data and methods for 'call1' command. */
[442d0ae]245static int cmd_call1(cmd_arg_t *argv);
246static cmd_arg_t call1_argv[] = {
247 {
248 .type = ARG_TYPE_STRING,
249 .buffer = call0_buf,
250 .len = sizeof(call0_buf)
251 },
252 {
253 .type = ARG_TYPE_VAR,
254 .buffer = carg1_buf,
255 .len = sizeof(carg1_buf)
256 }
257};
258static cmd_info_t call1_info = {
259 .name = "call1",
[df58e44]260 .description = "<function> <arg1> Call function(arg1).",
[442d0ae]261 .func = cmd_call1,
262 .argc = 2,
263 .argv = call1_argv
264};
265
[b45c443]266/* Data and methods for 'call2' command. */
[442d0ae]267static int cmd_call2(cmd_arg_t *argv);
268static cmd_arg_t call2_argv[] = {
269 {
270 .type = ARG_TYPE_STRING,
271 .buffer = call0_buf,
272 .len = sizeof(call0_buf)
273 },
274 {
275 .type = ARG_TYPE_VAR,
276 .buffer = carg1_buf,
277 .len = sizeof(carg1_buf)
278 },
279 {
280 .type = ARG_TYPE_VAR,
281 .buffer = carg2_buf,
282 .len = sizeof(carg2_buf)
283 }
284};
285static cmd_info_t call2_info = {
286 .name = "call2",
[df58e44]287 .description = "<function> <arg1> <arg2> Call function(arg1, arg2).",
[442d0ae]288 .func = cmd_call2,
289 .argc = 3,
290 .argv = call2_argv
291};
292
[b45c443]293/* Data and methods for 'call3' command. */
[442d0ae]294static int cmd_call3(cmd_arg_t *argv);
295static cmd_arg_t call3_argv[] = {
296 {
297 .type = ARG_TYPE_STRING,
298 .buffer = call0_buf,
299 .len = sizeof(call0_buf)
300 },
301 {
302 .type = ARG_TYPE_VAR,
303 .buffer = carg1_buf,
304 .len = sizeof(carg1_buf)
305 },
306 {
307 .type = ARG_TYPE_VAR,
308 .buffer = carg2_buf,
309 .len = sizeof(carg2_buf)
310 },
311 {
312 .type = ARG_TYPE_VAR,
313 .buffer = carg3_buf,
314 .len = sizeof(carg3_buf)
315 }
316
317};
318static cmd_info_t call3_info = {
319 .name = "call3",
[df58e44]320 .description = "<function> <arg1> <arg2> <arg3> Call function(arg1, arg2, arg3).",
[442d0ae]321 .func = cmd_call3,
322 .argc = 4,
323 .argv = call3_argv
324};
325
[b45c443]326/* Data and methods for 'halt' command. */
[442d0ae]327static int cmd_halt(cmd_arg_t *argv);
328static cmd_info_t halt_info = {
329 .name = "halt",
330 .description = "Halt the kernel.",
331 .func = cmd_halt,
332 .argc = 0
333};
334
[b07c332]335/* Data and methods for 'physmem' command. */
336static int cmd_physmem(cmd_arg_t *argv);
337cmd_info_t physmem_info = {
338 .name = "physmem",
339 .description = "Print physical memory configuration.",
340 .help = NULL,
341 .func = cmd_physmem,
342 .argc = 0,
343 .argv = NULL
344};
345
[b45c443]346/* Data and methods for 'tlb' command. */
[0132630]347static int cmd_tlb(cmd_arg_t *argv);
348cmd_info_t tlb_info = {
349 .name = "tlb",
[df58e44]350 .description = "Print TLB of the current CPU.",
[442d0ae]351 .help = NULL,
[0132630]352 .func = cmd_tlb,
[442d0ae]353 .argc = 0,
354 .argv = NULL
355};
356
[48dcc69]357static char flag_buf[MAX_CMDLINE + 1];
358
[55ab0f1]359static int cmd_threads(cmd_arg_t *argv);
[48dcc69]360static cmd_arg_t threads_argv = {
361 .type = ARG_TYPE_STRING_OPTIONAL,
362 .buffer = flag_buf,
363 .len = sizeof(flag_buf)
364};
[55ab0f1]365static cmd_info_t threads_info = {
366 .name = "threads",
[48dcc69]367 .description = "List all threads (use -a for additional information).",
[55ab0f1]368 .func = cmd_threads,
[48dcc69]369 .argc = 1,
370 .argv = &threads_argv
[55ab0f1]371};
372
[37c57f2]373static int cmd_tasks(cmd_arg_t *argv);
[c0f13d2]374static cmd_arg_t tasks_argv = {
375 .type = ARG_TYPE_STRING_OPTIONAL,
[48dcc69]376 .buffer = flag_buf,
377 .len = sizeof(flag_buf)
[c0f13d2]378};
[37c57f2]379static cmd_info_t tasks_info = {
380 .name = "tasks",
[c0f13d2]381 .description = "List all tasks (use -a for additional information).",
[37c57f2]382 .func = cmd_tasks,
[c0f13d2]383 .argc = 1,
384 .argv = &tasks_argv
[37c57f2]385};
386
[5b7a107]387#ifdef CONFIG_UDEBUG
388
[df58e44]389/* Data and methods for 'btrace' command */
390static int cmd_btrace(cmd_arg_t *argv);
391static cmd_arg_t btrace_argv = {
392 .type = ARG_TYPE_INT,
393};
394static cmd_info_t btrace_info = {
395 .name = "btrace",
396 .description = "<threadid> Show thread stack trace.",
397 .func = cmd_btrace,
398 .argc = 1,
399 .argv = &btrace_argv
400};
[80bff342]401
[5b7a107]402#endif /* CONFIG_UDEBUG */
[80bff342]403
[10e16a7]404static int cmd_sched(cmd_arg_t *argv);
405static cmd_info_t sched_info = {
406 .name = "scheduler",
[df58e44]407 .description = "Show scheduler information.",
[10e16a7]408 .func = cmd_sched,
409 .argc = 0
410};
411
[4e147a6]412static int cmd_slabs(cmd_arg_t *argv);
413static cmd_info_t slabs_info = {
414 .name = "slabs",
[dd054bc2]415 .description = "List slab caches.",
[4e147a6]416 .func = cmd_slabs,
417 .argc = 0
418};
419
[b3631bc]420static int cmd_sysinfo(cmd_arg_t *argv);
421static cmd_info_t sysinfo_info = {
422 .name = "sysinfo",
423 .description = "Dump sysinfo.",
424 .func = cmd_sysinfo,
425 .argc = 0
426};
427
[b45c443]428/* Data and methods for 'zones' command */
[80bff342]429static int cmd_zones(cmd_arg_t *argv);
430static cmd_info_t zones_info = {
431 .name = "zones",
[df58e44]432 .description = "List memory zones.",
[80bff342]433 .func = cmd_zones,
434 .argc = 0
435};
436
[df58e44]437/* Data and methods for 'zone' command */
438static int cmd_zone(cmd_arg_t *argv);
439static cmd_arg_t zone_argv = {
440 .type = ARG_TYPE_INT,
441};
442
443static cmd_info_t zone_info = {
444 .name = "zone",
445 .description = "<zone> Show memory zone structure.",
446 .func = cmd_zone,
447 .argc = 1,
448 .argv = &zone_argv
449};
450
[073c9e6]451/* Data and methods for 'ipc' command */
452static int cmd_ipc(cmd_arg_t *argv);
453static cmd_arg_t ipc_argv = {
[c4e4507]454 .type = ARG_TYPE_INT,
455};
[073c9e6]456static cmd_info_t ipc_info = {
457 .name = "ipc",
[df58e44]458 .description = "<taskid> Show IPC information of a task.",
[073c9e6]459 .func = cmd_ipc,
[c4e4507]460 .argc = 1,
[073c9e6]461 .argv = &ipc_argv
[c4e4507]462};
463
[2a75302]464/* Data and methods for 'kill' command */
465static int cmd_kill(cmd_arg_t *argv);
466static cmd_arg_t kill_argv = {
467 .type = ARG_TYPE_INT,
468};
469static cmd_info_t kill_info = {
470 .name = "kill",
[df58e44]471 .description = "<taskid> Kill a task.",
[2a75302]472 .func = cmd_kill,
473 .argc = 1,
474 .argv = &kill_argv
475};
476
[b45c443]477/* Data and methods for 'cpus' command. */
[0132630]478static int cmd_cpus(cmd_arg_t *argv);
479cmd_info_t cpus_info = {
480 .name = "cpus",
481 .description = "List all processors.",
482 .help = NULL,
483 .func = cmd_cpus,
484 .argc = 0,
485 .argv = NULL
486};
487
[b45c443]488/* Data and methods for 'version' command. */
[0132630]489static int cmd_version(cmd_arg_t *argv);
490cmd_info_t version_info = {
491 .name = "version",
492 .description = "Print version information.",
493 .help = NULL,
494 .func = cmd_version,
495 .argc = 0,
496 .argv = NULL
497};
498
[10e16a7]499static cmd_info_t *basic_commands[] = {
500 &call0_info,
[e5dbbe5]501 &mcall0_info,
[10e16a7]502 &call1_info,
503 &call2_info,
504 &call3_info,
[41d33ac]505 &continue_info,
[10e16a7]506 &cpus_info,
507 &desc_info,
508 &halt_info,
509 &help_info,
[073c9e6]510 &ipc_info,
[2a75302]511 &kill_info,
[df58e44]512 &physmem_info,
513 &reboot_info,
514 &sched_info,
[10e16a7]515 &set4_info,
516 &slabs_info,
517 &symaddr_info,
[df58e44]518 &sysinfo_info,
[37c57f2]519 &tasks_info,
[df58e44]520 &threads_info,
[10e16a7]521 &tlb_info,
[df58e44]522 &uptime_info,
[10e16a7]523 &version_info,
524 &zones_info,
525 &zone_info,
[319e60e]526#ifdef CONFIG_TEST
527 &test_info,
[95155b0c]528 &bench_info,
[5b7a107]529#endif
530#ifdef CONFIG_UDEBUG
531 &btrace_info,
[319e60e]532#endif
[10e16a7]533 NULL
534};
[80bff342]535
536
[442d0ae]537/** Initialize command info structure.
538 *
539 * @param cmd Command info structure.
540 *
541 */
542void cmd_initialize(cmd_info_t *cmd)
543{
[da1bafb]544 spinlock_initialize(&cmd->lock, "cmd.lock");
[442d0ae]545 link_initialize(&cmd->link);
546}
547
548/** Initialize and register commands. */
549void cmd_init(void)
550{
[b07c332]551 unsigned int i;
[80bff342]552
[b07c332]553 for (i = 0; basic_commands[i]; i++) {
[10e16a7]554 cmd_initialize(basic_commands[i]);
555 if (!cmd_register(basic_commands[i]))
[76fca31]556 printf("Cannot register command %s\n", basic_commands[i]->name);
[10e16a7]557 }
[442d0ae]558}
559
560/** List supported commands.
561 *
562 * @param argv Argument vector.
563 *
564 * @return 0 on failure, 1 on success.
565 */
566int cmd_help(cmd_arg_t *argv)
567{
568 spinlock_lock(&cmd_lock);
569
[c1f7f6ea]570 link_t *cur;
[98000fb]571 size_t len = 0;
[442d0ae]572 for (cur = cmd_head.next; cur != &cmd_head; cur = cur->next) {
573 cmd_info_t *hlp;
574 hlp = list_get_instance(cur, cmd_info_t, link);
[c1f7f6ea]575
[442d0ae]576 spinlock_lock(&hlp->lock);
[20cc877]577 if (str_length(hlp->name) > len)
578 len = str_length(hlp->name);
[c1f7f6ea]579 spinlock_unlock(&hlp->lock);
580 }
581
[0b0f4bb]582 unsigned int _len = (unsigned int) len;
583 if ((_len != len) || (((int) _len) < 0)) {
584 printf("Command length overflow\n");
585 return 1;
586 }
587
[c1f7f6ea]588 for (cur = cmd_head.next; cur != &cmd_head; cur = cur->next) {
589 cmd_info_t *hlp;
590 hlp = list_get_instance(cur, cmd_info_t, link);
[442d0ae]591
[c1f7f6ea]592 spinlock_lock(&hlp->lock);
[0b0f4bb]593 printf("%-*s %s\n", _len, hlp->name, hlp->description);
[442d0ae]594 spinlock_unlock(&hlp->lock);
595 }
596
[ae318d3]597 spinlock_unlock(&cmd_lock);
[c1f7f6ea]598
[442d0ae]599 return 1;
600}
601
[f74bbaf]602/** Reboot the system.
603 *
604 * @param argv Argument vector.
605 *
606 * @return 0 on failure, 1 on success.
607 */
608int cmd_reboot(cmd_arg_t *argv)
609{
610 reboot();
611
612 /* Not reached */
613 return 1;
614}
615
[4b662f8c]616/** Print system uptime information.
617 *
618 * @param argv Argument vector.
619 *
620 * @return 0 on failure, 1 on success.
621 */
622int cmd_uptime(cmd_arg_t *argv)
623{
624 ASSERT(uptime);
625
626 /* This doesn't have to be very accurate */
[96b02eb9]627 sysarg_t sec = uptime->seconds1;
[4b662f8c]628
[c859753]629 printf("Up %" PRIun " days, %" PRIun " hours, %" PRIun " minutes, %" PRIun " seconds\n",
[4b662f8c]630 sec / 86400, (sec % 86400) / 3600, (sec % 3600) / 60, sec % 60);
631
632 return 1;
633}
634
[442d0ae]635/** Describe specified command.
636 *
637 * @param argv Argument vector.
638 *
639 * @return 0 on failure, 1 on success.
640 */
641int cmd_desc(cmd_arg_t *argv)
642{
643 link_t *cur;
[20cc877]644
[442d0ae]645 spinlock_lock(&cmd_lock);
646
647 for (cur = cmd_head.next; cur != &cmd_head; cur = cur->next) {
648 cmd_info_t *hlp;
649
650 hlp = list_get_instance(cur, cmd_info_t, link);
651 spinlock_lock(&hlp->lock);
[20cc877]652
653 if (str_lcmp(hlp->name, (const char *) argv->buffer, str_length(hlp->name)) == 0) {
[442d0ae]654 printf("%s - %s\n", hlp->name, hlp->description);
655 if (hlp->help)
656 hlp->help();
657 spinlock_unlock(&hlp->lock);
658 break;
659 }
[20cc877]660
[442d0ae]661 spinlock_unlock(&hlp->lock);
662 }
663
664 spinlock_unlock(&cmd_lock);
[20cc877]665
[442d0ae]666 return 1;
667}
668
669/** Search symbol table */
670int cmd_symaddr(cmd_arg_t *argv)
671{
[828aa05]672 symtab_print_search((char *) argv->buffer);
[442d0ae]673
674 return 1;
675}
676
677/** Call function with zero parameters */
678int cmd_call0(cmd_arg_t *argv)
679{
[7f1c620]680 uintptr_t symaddr;
[e16e0d59]681 char *symbol;
[96b02eb9]682 sysarg_t (*fnc)(void);
[0f81ceb7]683 fncptr_t fptr;
[e16e0d59]684 int rc;
[e2b762ec]685
[e16e0d59]686 symbol = (char *) argv->buffer;
687 rc = symtab_addr_lookup(symbol, &symaddr);
688
689 if (rc == ENOENT)
690 printf("Symbol %s not found.\n", symbol);
691 else if (rc == EOVERFLOW) {
692 symtab_print_search(symbol);
[442d0ae]693 printf("Duplicate symbol, be more specific.\n");
[e16e0d59]694 } else if (rc == EOK) {
[c992538a]695 ipl_t ipl;
696
697 ipl = interrupts_disable();
[96b02eb9]698 fnc = (sysarg_t (*)(void)) arch_construct_function(&fptr,
[e16e0d59]699 (void *) symaddr, (void *) cmd_call0);
[0b0f4bb]700 printf("Calling %s() (%p)\n", symbol, (void *) symaddr);
[0f81ceb7]701 printf("Result: %#" PRIxn "\n", fnc());
[c992538a]702 interrupts_restore(ipl);
[e16e0d59]703 } else {
704 printf("No symbol information available.\n");
[442d0ae]705 }
706 return 1;
707}
708
[e5dbbe5]709/** Call function with zero parameters on each CPU */
710int cmd_mcall0(cmd_arg_t *argv)
711{
712 /*
713 * For each CPU, create a thread which will
714 * call the function.
715 */
716
[0b0f4bb]717 unsigned int i;
[e5dbbe5]718 for (i = 0; i < config.cpu_count; i++) {
[b8f11baa]719 if (!cpus[i].active)
720 continue;
721
[da1bafb]722 thread_t *thread;
723 if ((thread = thread_create((void (*)(void *)) cmd_call0,
724 (void *) argv, TASK, THREAD_FLAG_WIRED, "call0", false))) {
725 irq_spinlock_lock(&thread->lock, true);
726 thread->cpu = &cpus[i];
727 irq_spinlock_unlock(&thread->lock, true);
728
[0b0f4bb]729 printf("cpu%u: ", i);
[da1bafb]730
731 thread_ready(thread);
732 thread_join(thread);
733 thread_detach(thread);
[e5dbbe5]734 } else
[0b0f4bb]735 printf("Unable to create thread for cpu%u\n", i);
[e5dbbe5]736 }
737
738 return 1;
739}
740
[442d0ae]741/** Call function with one parameter */
742int cmd_call1(cmd_arg_t *argv)
743{
[7f1c620]744 uintptr_t symaddr;
[442d0ae]745 char *symbol;
[96b02eb9]746 sysarg_t (*fnc)(sysarg_t, ...);
747 sysarg_t arg1 = argv[1].intval;
[0f81ceb7]748 fncptr_t fptr;
[e16e0d59]749 int rc;
[e2b762ec]750
[e16e0d59]751 symbol = (char *) argv->buffer;
752 rc = symtab_addr_lookup(symbol, &symaddr);
753
754 if (rc == ENOENT) {
755 printf("Symbol %s not found.\n", symbol);
756 } else if (rc == EOVERFLOW) {
757 symtab_print_search(symbol);
[442d0ae]758 printf("Duplicate symbol, be more specific.\n");
[e16e0d59]759 } else if (rc == EOK) {
[c992538a]760 ipl_t ipl;
761
762 ipl = interrupts_disable();
[96b02eb9]763 fnc = (sysarg_t (*)(sysarg_t, ...))
[0b0f4bb]764 arch_construct_function(&fptr, (void *) symaddr,
765 (void *) cmd_call1);
766 printf("Calling f(%#" PRIxn "): %p: %s\n", arg1,
767 (void *) symaddr, symbol);
[0f81ceb7]768 printf("Result: %#" PRIxn "\n", fnc(arg1));
[c992538a]769 interrupts_restore(ipl);
[e16e0d59]770 } else {
771 printf("No symbol information available.\n");
[442d0ae]772 }
[e16e0d59]773
[442d0ae]774 return 1;
775}
776
777/** Call function with two parameters */
778int cmd_call2(cmd_arg_t *argv)
779{
[7f1c620]780 uintptr_t symaddr;
[442d0ae]781 char *symbol;
[96b02eb9]782 sysarg_t (*fnc)(sysarg_t, sysarg_t, ...);
783 sysarg_t arg1 = argv[1].intval;
784 sysarg_t arg2 = argv[2].intval;
[0f81ceb7]785 fncptr_t fptr;
[e16e0d59]786 int rc;
787
788 symbol = (char *) argv->buffer;
789 rc = symtab_addr_lookup(symbol, &symaddr);
790
791 if (rc == ENOENT) {
792 printf("Symbol %s not found.\n", symbol);
793 } else if (rc == EOVERFLOW) {
794 symtab_print_search(symbol);
[442d0ae]795 printf("Duplicate symbol, be more specific.\n");
[e16e0d59]796 } else if (rc == EOK) {
[c992538a]797 ipl_t ipl;
798
799 ipl = interrupts_disable();
[96b02eb9]800 fnc = (sysarg_t (*)(sysarg_t, sysarg_t, ...))
[0b0f4bb]801 arch_construct_function(&fptr, (void *) symaddr,
802 (void *) cmd_call2);
[c859753]803 printf("Calling f(%#" PRIxn ", %#" PRIxn "): %p: %s\n",
[0b0f4bb]804 arg1, arg2, (void *) symaddr, symbol);
[0f81ceb7]805 printf("Result: %#" PRIxn "\n", fnc(arg1, arg2));
[c992538a]806 interrupts_restore(ipl);
[e16e0d59]807 } else {
808 printf("No symbol information available.\n");
809 }
[442d0ae]810 return 1;
811}
812
813/** Call function with three parameters */
814int cmd_call3(cmd_arg_t *argv)
815{
[7f1c620]816 uintptr_t symaddr;
[442d0ae]817 char *symbol;
[96b02eb9]818 sysarg_t (*fnc)(sysarg_t, sysarg_t, sysarg_t, ...);
819 sysarg_t arg1 = argv[1].intval;
820 sysarg_t arg2 = argv[2].intval;
821 sysarg_t arg3 = argv[3].intval;
[0f81ceb7]822 fncptr_t fptr;
[e16e0d59]823 int rc;
[0f81ceb7]824
[e16e0d59]825 symbol = (char *) argv->buffer;
826 rc = symtab_addr_lookup(symbol, &symaddr);
827
828 if (rc == ENOENT) {
829 printf("Symbol %s not found.\n", symbol);
830 } else if (rc == EOVERFLOW) {
831 symtab_print_search(symbol);
[442d0ae]832 printf("Duplicate symbol, be more specific.\n");
[e16e0d59]833 } else if (rc == EOK) {
[c992538a]834 ipl_t ipl;
835
836 ipl = interrupts_disable();
[96b02eb9]837 fnc = (sysarg_t (*)(sysarg_t, sysarg_t, sysarg_t, ...))
[0b0f4bb]838 arch_construct_function(&fptr, (void *) symaddr,
839 (void *) cmd_call3);
840 printf("Calling f(%#" PRIxn ",%#" PRIxn ", %#" PRIxn "): %p: %s\n",
841 arg1, arg2, arg3, (void *) symaddr, symbol);
[0f81ceb7]842 printf("Result: %#" PRIxn "\n", fnc(arg1, arg2, arg3));
[c992538a]843 interrupts_restore(ipl);
[e16e0d59]844 } else {
845 printf("No symbol information available.\n");
[442d0ae]846 }
847 return 1;
848}
849
850/** Print detailed description of 'describe' command. */
851void desc_help(void)
852{
853 printf("Syntax: describe command_name\n");
854}
855
856/** Halt the kernel.
857 *
858 * @param argv Argument vector (ignored).
859 *
860 * @return 0 on failure, 1 on success (never returns).
861 */
862int cmd_halt(cmd_arg_t *argv)
863{
864 halt();
865 return 1;
866}
867
868/** Command for printing TLB contents.
869 *
870 * @param argv Not used.
871 *
872 * @return Always returns 1.
873 */
[0132630]874int cmd_tlb(cmd_arg_t *argv)
[442d0ae]875{
876 tlb_print();
877 return 1;
878}
[ba276f7]879
[b07c332]880/** Command for printing physical memory configuration.
881 *
882 * @param argv Not used.
883 *
884 * @return Always returns 1.
885 */
886int cmd_physmem(cmd_arg_t *argv)
887{
888 physmem_print();
889 return 1;
890}
891
[ba276f7]892/** Write 4 byte value to address */
893int cmd_set4(cmd_arg_t *argv)
894{
[e16e0d59]895 uintptr_t addr;
[7f1c620]896 uint32_t arg1 = argv[1].intval;
[ba276f7]897 bool pointer = false;
[e16e0d59]898 int rc;
[4ce914d4]899
900 if (((char *) argv->buffer)[0] == '*') {
[e16e0d59]901 rc = symtab_addr_lookup((char *) argv->buffer + 1, &addr);
[ba276f7]902 pointer = true;
[4ce914d4]903 } else if (((char *) argv->buffer)[0] >= '0' &&
904 ((char *) argv->buffer)[0] <= '9') {
905 uint64_t value;
906 rc = str_uint64((char *) argv->buffer, NULL, 0, true, &value);
907 if (rc == EOK)
908 addr = (uintptr_t) value;
909 } else
[e16e0d59]910 rc = symtab_addr_lookup((char *) argv->buffer, &addr);
[4ce914d4]911
[e16e0d59]912 if (rc == ENOENT)
[0b0f4bb]913 printf("Symbol %s not found.\n", (char *) argv->buffer);
[4ce914d4]914 else if (rc == EINVAL)
915 printf("Invalid address.\n");
[e16e0d59]916 else if (rc == EOVERFLOW) {
[828aa05]917 symtab_print_search((char *) argv->buffer);
[4ce914d4]918 printf("Duplicate symbol (be more specific) or address overflow.\n");
[e16e0d59]919 } else if (rc == EOK) {
[ba276f7]920 if (pointer)
[e16e0d59]921 addr = *(uintptr_t *) addr;
[0b0f4bb]922 printf("Writing %#" PRIx32" -> %p\n", arg1, (void *) addr);
[e16e0d59]923 *(uint32_t *) addr = arg1;
[4ce914d4]924 } else
[e16e0d59]925 printf("No symbol information available.\n");
[ba276f7]926
927 return 1;
928}
[80bff342]929
[4e147a6]930/** Command for listings SLAB caches
931 *
932 * @param argv Ignores
933 *
934 * @return Always 1
935 */
[df58e44]936int cmd_slabs(cmd_arg_t *argv)
[095b1534]937{
[4e147a6]938 slab_print_list();
939 return 1;
940}
941
[b3631bc]942/** Command for dumping sysinfo
943 *
944 * @param argv Ignores
945 *
946 * @return Always 1
947 */
[df58e44]948int cmd_sysinfo(cmd_arg_t *argv)
[b3631bc]949{
[9dae191e]950 sysinfo_dump(NULL);
[b3631bc]951 return 1;
952}
953
[df58e44]954/** Command for listing thread information
[55ab0f1]955 *
[48dcc69]956 * @param argv Ignored
[55ab0f1]957 *
958 * @return Always 1
959 */
[48dcc69]960int cmd_threads(cmd_arg_t *argv)
[095b1534]961{
[48dcc69]962 if (str_cmp(flag_buf, "-a") == 0)
963 thread_print_list(true);
964 else if (str_cmp(flag_buf, "") == 0)
965 thread_print_list(false);
966 else
967 printf("Unknown argument \"%s\".\n", flag_buf);
968
[55ab0f1]969 return 1;
970}
971
[df58e44]972/** Command for listing task information
[37c57f2]973 *
[48dcc69]974 * @param argv Ignored
[37c57f2]975 *
976 * @return Always 1
977 */
[c0f13d2]978int cmd_tasks(cmd_arg_t *argv)
[095b1534]979{
[48dcc69]980 if (str_cmp(flag_buf, "-a") == 0)
[c0f13d2]981 task_print_list(true);
[48dcc69]982 else if (str_cmp(flag_buf, "") == 0)
[c0f13d2]983 task_print_list(false);
984 else
[48dcc69]985 printf("Unknown argument \"%s\".\n", flag_buf);
[c0f13d2]986
[37c57f2]987 return 1;
988}
989
[5b7a107]990#ifdef CONFIG_UDEBUG
991
[df58e44]992/** Command for printing thread stack trace
993 *
994 * @param argv Integer argument from cmdline expected
995 *
996 * return Always 1
997 *
998 */
999int cmd_btrace(cmd_arg_t *argv)
1000{
1001 thread_stack_trace(argv[0].intval);
1002 return 1;
1003}
1004
[5b7a107]1005#endif /* CONFIG_UDEBUG */
1006
[df58e44]1007/** Command for printing scheduler information
[10e16a7]1008 *
1009 * @param argv Ignores
1010 *
1011 * @return Always 1
1012 */
[df58e44]1013int cmd_sched(cmd_arg_t *argv)
[095b1534]1014{
[10e16a7]1015 sched_print_list();
1016 return 1;
1017}
1018
[96cacc1]1019/** Command for listing memory zones
1020 *
1021 * @param argv Ignored
1022 *
1023 * return Always 1
1024 */
[df58e44]1025int cmd_zones(cmd_arg_t *argv)
[095b1534]1026{
[9dae191e]1027 zones_print_list();
[80bff342]1028 return 1;
1029}
[0132630]1030
[96cacc1]1031/** Command for memory zone details
1032 *
1033 * @param argv Integer argument from cmdline expected
1034 *
1035 * return Always 1
1036 */
[df58e44]1037int cmd_zone(cmd_arg_t *argv)
[095b1534]1038{
[dfd9186]1039 zone_print_one(argv[0].intval);
[80bff342]1040 return 1;
1041}
1042
[df58e44]1043/** Command for printing task IPC details
[c4e4507]1044 *
1045 * @param argv Integer argument from cmdline expected
1046 *
1047 * return Always 1
1048 */
[df58e44]1049int cmd_ipc(cmd_arg_t *argv)
[095b1534]1050{
[c4e4507]1051 ipc_print_task(argv[0].intval);
1052 return 1;
1053}
1054
[cb3d641a]1055/** Command for killing a task
[2a75302]1056 *
1057 * @param argv Integer argument from cmdline expected
1058 *
[cb3d641a]1059 * return 0 on failure, 1 on success.
[2a75302]1060 */
[df58e44]1061int cmd_kill(cmd_arg_t *argv)
[2a75302]1062{
1063 if (task_kill(argv[0].intval) != EOK)
1064 return 0;
1065
1066 return 1;
1067}
[c4e4507]1068
[0132630]1069/** Command for listing processors.
1070 *
1071 * @param argv Ignored.
1072 *
1073 * return Always 1.
1074 */
1075int cmd_cpus(cmd_arg_t *argv)
1076{
1077 cpu_list();
1078 return 1;
1079}
1080
1081/** Command for printing kernel version.
1082 *
1083 * @param argv Ignored.
1084 *
1085 * return Always 1.
1086 */
1087int cmd_version(cmd_arg_t *argv)
1088{
1089 version_print();
1090 return 1;
1091}
[41d33ac]1092
1093/** Command for returning console back to userspace.
1094 *
1095 * @param argv Ignored.
1096 *
1097 * return Always 1.
1098 */
1099int cmd_continue(cmd_arg_t *argv)
1100{
[dd054bc2]1101 printf("The kernel will now relinquish the console.\n");
[516ff92]1102 release_console();
[3ad953c]1103
[05641a9e]1104 event_notify_0(EVENT_KCONSOLE);
[821cc93]1105 indev_pop_character(stdin);
[3ad953c]1106
[41d33ac]1107 return 1;
1108}
[b45c443]1109
[50661ab]1110#ifdef CONFIG_TEST
[62b6d17]1111static bool run_test(const test_t *test)
[34db7fa]1112{
[c1f7f6ea]1113 printf("%s (%s)\n", test->name, test->desc);
[cce6acf]1114
1115 /* Update and read thread accounting
1116 for benchmarking */
[da1bafb]1117 irq_spinlock_lock(&TASK->lock, true);
[1ba37fa]1118 uint64_t ucycles0, kcycles0;
1119 task_get_accounting(TASK, &ucycles0, &kcycles0);
[da1bafb]1120 irq_spinlock_unlock(&TASK->lock, true);
[cce6acf]1121
1122 /* Execute the test */
[cb01e1e]1123 test_quiet = false;
[a000878c]1124 const char *ret = test->entry();
[cce6acf]1125
1126 /* Update and read thread accounting */
[da1bafb]1127 uint64_t ucycles1, kcycles1;
1128 irq_spinlock_lock(&TASK->lock, true);
[1ba37fa]1129 task_get_accounting(TASK, &ucycles1, &kcycles1);
[da1bafb]1130 irq_spinlock_unlock(&TASK->lock, true);
[cce6acf]1131
[1ba37fa]1132 uint64_t ucycles, kcycles;
1133 char usuffix, ksuffix;
[e535eeb]1134 order_suffix(ucycles1 - ucycles0, &ucycles, &usuffix);
1135 order_suffix(kcycles1 - kcycles0, &kcycles, &ksuffix);
[da1bafb]1136
[1ba37fa]1137 printf("Time: %" PRIu64 "%c user cycles, %" PRIu64 "%c kernel cycles\n",
[da1bafb]1138 ucycles, usuffix, kcycles, ksuffix);
[34db7fa]1139
1140 if (ret == NULL) {
1141 printf("Test passed\n");
[62b6d17]1142 return true;
[34db7fa]1143 }
[da1bafb]1144
[34db7fa]1145 printf("%s\n", ret);
[62b6d17]1146 return false;
[34db7fa]1147}
1148
[95155b0c]1149static bool run_bench(const test_t *test, const uint32_t cnt)
1150{
1151 uint32_t i;
1152 bool ret = true;
[1ba37fa]1153 uint64_t ucycles, kcycles;
1154 char usuffix, ksuffix;
[95155b0c]1155
1156 if (cnt < 1)
1157 return true;
1158
[828aa05]1159 uint64_t *data = (uint64_t *) malloc(sizeof(uint64_t) * cnt, 0);
[95155b0c]1160 if (data == NULL) {
1161 printf("Error allocating memory for statistics\n");
1162 return false;
1163 }
1164
1165 for (i = 0; i < cnt; i++) {
[c859753]1166 printf("%s (%u/%u) ... ", test->name, i + 1, cnt);
[95155b0c]1167
1168 /* Update and read thread accounting
1169 for benchmarking */
[da1bafb]1170 irq_spinlock_lock(&TASK->lock, true);
[1ba37fa]1171 uint64_t ucycles0, kcycles0;
1172 task_get_accounting(TASK, &ucycles0, &kcycles0);
[da1bafb]1173 irq_spinlock_unlock(&TASK->lock, true);
[95155b0c]1174
1175 /* Execute the test */
[cb01e1e]1176 test_quiet = true;
[a000878c]1177 const char *ret = test->entry();
[95155b0c]1178
1179 /* Update and read thread accounting */
[da1bafb]1180 irq_spinlock_lock(&TASK->lock, true);
[1ba37fa]1181 uint64_t ucycles1, kcycles1;
1182 task_get_accounting(TASK, &ucycles1, &kcycles1);
[da1bafb]1183 irq_spinlock_unlock(&TASK->lock, true);
1184
[95155b0c]1185 if (ret != NULL) {
1186 printf("%s\n", ret);
1187 ret = false;
1188 break;
1189 }
1190
[1ba37fa]1191 data[i] = ucycles1 - ucycles0 + kcycles1 - kcycles0;
[e535eeb]1192 order_suffix(ucycles1 - ucycles0, &ucycles, &usuffix);
1193 order_suffix(kcycles1 - kcycles0, &kcycles, &ksuffix);
[1ba37fa]1194 printf("OK (%" PRIu64 "%c user cycles, %" PRIu64 "%c kernel cycles)\n",
[da1bafb]1195 ucycles, usuffix, kcycles, ksuffix);
[95155b0c]1196 }
1197
1198 if (ret) {
1199 printf("\n");
1200
1201 uint64_t sum = 0;
1202
1203 for (i = 0; i < cnt; i++) {
1204 sum += data[i];
1205 }
1206
[e535eeb]1207 order_suffix(sum / (uint64_t) cnt, &ucycles, &usuffix);
[1ba37fa]1208 printf("Average\t\t%" PRIu64 "%c\n", ucycles, usuffix);
[95155b0c]1209 }
1210
1211 free(data);
1212
1213 return ret;
1214}
1215
[851f33a]1216static void list_tests(void)
1217{
1218 size_t len = 0;
1219 test_t *test;
1220
1221 for (test = tests; test->name != NULL; test++) {
1222 if (str_length(test->name) > len)
1223 len = str_length(test->name);
1224 }
1225
[0b0f4bb]1226 unsigned int _len = (unsigned int) len;
1227 if ((_len != len) || (((int) _len) < 0)) {
1228 printf("Command length overflow\n");
1229 return;
1230 }
1231
[851f33a]1232 for (test = tests; test->name != NULL; test++)
[0b0f4bb]1233 printf("%-*s %s%s\n", _len, test->name, test->desc,
1234 (test->safe ? "" : " (unsafe)"));
[851f33a]1235
[0b0f4bb]1236 printf("%-*s Run all safe tests\n", _len, "*");
[851f33a]1237}
1238
1239/** Command for listing and running kernel tests
[319e60e]1240 *
1241 * @param argv Argument vector.
1242 *
1243 * return Always 1.
[851f33a]1244 *
[319e60e]1245 */
1246int cmd_test(cmd_arg_t *argv)
1247{
1248 test_t *test;
1249
[20cc877]1250 if (str_cmp((char *) argv->buffer, "*") == 0) {
[50661ab]1251 for (test = tests; test->name != NULL; test++) {
1252 if (test->safe) {
[34db7fa]1253 printf("\n");
1254 if (!run_test(test))
1255 break;
[50661ab]1256 }
1257 }
[851f33a]1258 } else if (str_cmp((char *) argv->buffer, "") != 0) {
[50661ab]1259 bool fnd = false;
1260
1261 for (test = tests; test->name != NULL; test++) {
[20cc877]1262 if (str_cmp(test->name, (char *) argv->buffer) == 0) {
[50661ab]1263 fnd = true;
[34db7fa]1264 run_test(test);
[50661ab]1265 break;
1266 }
[319e60e]1267 }
[50661ab]1268
1269 if (!fnd)
[34db7fa]1270 printf("Unknown test\n");
[851f33a]1271 } else
1272 list_tests();
[319e60e]1273
1274 return 1;
1275}
[95155b0c]1276
1277/** Command for returning kernel tests as benchmarks
1278 *
1279 * @param argv Argument vector.
1280 *
1281 * return Always 1.
1282 */
1283int cmd_bench(cmd_arg_t *argv)
1284{
1285 test_t *test;
1286 uint32_t cnt = argv[1].intval;
1287
[3f2177e]1288 if (str_cmp((char *) argv->buffer, "*") == 0) {
1289 for (test = tests; test->name != NULL; test++) {
1290 if (test->safe) {
1291 if (!run_bench(test, cnt))
1292 break;
1293 }
[95155b0c]1294 }
[3f2177e]1295 } else {
1296 bool fnd = false;
[95155b0c]1297
[3f2177e]1298 for (test = tests; test->name != NULL; test++) {
1299 if (str_cmp(test->name, (char *) argv->buffer) == 0) {
1300 fnd = true;
1301
1302 if (test->safe)
1303 run_bench(test, cnt);
1304 else
1305 printf("Unsafe test\n");
1306
1307 break;
1308 }
1309 }
1310
1311 if (!fnd)
1312 printf("Unknown test\n");
1313 }
[cb01e1e]1314
[95155b0c]1315 return 1;
1316}
1317
[50661ab]1318#endif
[319e60e]1319
[06e1e95]1320/** @}
[b45c443]1321 */
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