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3438 svoboda 1
/*
2
 * Copyright (c) 2008 Jiri Svoboda
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
 
29
/** @addtogroup trace
30
 * @{
31
 */
32
/** @file
33
 */
34
 
35
#include <stdio.h>
36
#include <stdlib.h>
37
#include <unistd.h>
38
#include <syscall.h>
39
#include <ipc/ipc.h>
40
#include <fibril.h>
41
#include <errno.h>
42
#include <udebug.h>
43
#include <async.h>
44
 
45
// Temporary: service and method names
46
#include "proto.h"
47
#include <ipc/services.h>
48
#include "../../srv/vfs/vfs.h"
49
#include "../../srv/console/console.h"
50
 
51
#include "syscalls.h"
52
#include "ipcp.h"
53
#include "errors.h"
54
 
55
#define THBUF_SIZE 64
56
unsigned thread_hash_buf[THBUF_SIZE];
57
unsigned n_threads;
58
 
59
int next_thread_id;
60
 
61
int phoneid;
62
int abort_trace;
63
 
64
unsigned thash;
65
volatile int paused;
66
 
67
void thread_trace_start(unsigned thread_hash);
68
 
69
static proto_t *proto_console;
70
 
71
static int task_connect(task_id_t task_id)
72
{
73
    int rc;
74
 
75
    printf("ipc_connect_task(%lld)... ", task_id);
76
    rc = ipc_connect_kbox(task_id);
77
    printf("-> %d\n", rc);
3439 svoboda 78
 
79
    if (rc == ENOTSUP) {
80
        printf("You do not have userspace debugging support "
81
            "compiled in the kernel.\n");
82
        printf("Compile kernel with 'Support for userspace debuggers' "
83
            "(CONFIG_UDEBUG) enabled.\n");
84
    }
85
 
3438 svoboda 86
    phoneid = rc;
87
    if (rc < 0) return rc;
88
 
89
    printf("udebug_begin()... ");
90
    rc = udebug_begin(phoneid);
91
    printf("-> %d\n", rc);
92
    if (rc < 0) return rc;
93
 
94
    printf("udebug_set_evmask(0x%x)... ", UDEBUG_EM_ALL);
95
    rc = udebug_set_evmask(phoneid, UDEBUG_EM_ALL);
96
    printf("-> %d\n", rc);
97
    if (rc < 0) return rc;
98
 
99
    return 0;
100
}
101
 
102
static int get_thread_list(void)
103
{
104
    int rc;
105
    size_t tb_copied;
106
    size_t tb_needed;
107
    int i;
108
 
109
    printf("send IPC_M_DEBUG_THREAD_READ message\n");
110
    rc = udebug_thread_read(phoneid, thread_hash_buf,
111
        THBUF_SIZE*sizeof(unsigned), &tb_copied, &tb_needed);
112
    printf("-> %d\n", rc);
113
    if (rc < 0) return rc;
114
 
115
    n_threads = tb_copied / sizeof(unsigned);
116
 
117
    printf("thread IDs:");
118
    for (i=0; i<n_threads; i++) {
119
        printf(" %u", thread_hash_buf[i]);
120
    }
121
    printf("\ntotal of %u threads\n", tb_needed/sizeof(unsigned));
122
 
123
    return 0;
124
}
125
 
126
static void print_sc_retval(int retval, rv_type_t rv_type)
127
{
128
    printf (" -> ");
129
    if (rv_type == RV_INTEGER) {
130
        printf("%d", retval);
131
    } else if (rv_type == RV_HASH) {
132
        printf("0x%08x", retval);
133
    } else if (rv_type == RV_ERRNO) {
134
        if (retval >= -15 && retval <= 0) {
135
            printf("%d %s (%s)", retval,
136
                err_desc[retval].name,
137
                err_desc[retval].desc);
138
        } else {
139
            printf("%d", retval);
140
        }
141
    } else if (rv_type == RV_INT_ERRNO) {
142
        if (retval >= -15 && retval < 0) {
143
            printf("%d %s (%s)", retval,
144
                err_desc[retval].name,
145
                err_desc[retval].desc);
146
        } else {
147
            printf("%d", retval);
148
        }
149
    }
150
    putchar('\n');
151
}
152
 
153
static void print_sc_args(unsigned *sc_args, int n)
154
{
155
    int i;
156
 
157
    putchar('(');
158
    if (n > 0) printf("%d", sc_args[0]);
159
    for (i=1; i<n; i++) {
160
        printf(", %d", sc_args[i]);
161
    }
162
    putchar(')');
163
}
164
 
165
static void sc_ipc_call_async_fast(unsigned *sc_args, int sc_rc)
166
{
167
    ipc_call_t call;
168
    int phoneid;
169
 
170
    if (sc_rc == IPC_CALLRET_FATAL || sc_rc == IPC_CALLRET_TEMPORARY)
171
        return;
172
 
173
    phoneid = sc_args[0];
174
 
175
    IPC_SET_METHOD(call, sc_args[1]);
176
    IPC_SET_ARG1(call, sc_args[2]);
177
    IPC_SET_ARG2(call, sc_args[3]);
178
    IPC_SET_ARG3(call, sc_args[4]);
179
    IPC_SET_ARG4(call, sc_args[5]);
180
    IPC_SET_ARG5(call, 0);
181
 
182
    ipcp_call_out(phoneid, &call, sc_rc);
183
}
184
 
185
static void sc_ipc_call_async_slow(unsigned *sc_args, int sc_rc)
186
{
187
    ipc_call_t call;
188
    int rc;
189
 
190
    if (sc_rc == IPC_CALLRET_FATAL || sc_rc == IPC_CALLRET_TEMPORARY)
191
        return;
192
 
193
    memset(&call, 0, sizeof(call));
194
    rc = udebug_mem_read(phoneid, &call.args, sc_args[1], sizeof(call.args));
195
 
196
    if (rc >= 0) {
197
        ipcp_call_out(sc_args[0], &call, sc_rc);
198
    }
199
}
200
 
201
static void sc_ipc_call_sync_fast(unsigned *sc_args)
202
{
203
    ipc_call_t question, reply;
204
    int rc;
205
    int phoneidx;
206
 
207
//  printf("sc_ipc_call_sync_fast()\n");
208
    phoneidx = sc_args[0];
209
 
210
    IPC_SET_METHOD(question, sc_args[1]);
211
    IPC_SET_ARG1(question, sc_args[2]);
212
    IPC_SET_ARG2(question, sc_args[3]);
213
    IPC_SET_ARG3(question, sc_args[4]);
214
    IPC_SET_ARG4(question, 0);
215
    IPC_SET_ARG5(question, 0);
216
 
217
//  printf("memset\n");
218
    memset(&reply, 0, sizeof(reply));
219
//  printf("udebug_mem_read(phone=%d, buffer_ptr=%u, src_addr=%d, n=%d\n",
220
//      phoneid, &reply.args, sc_args[5], sizeof(reply.args));
221
    rc = udebug_mem_read(phoneid, &reply.args, sc_args[5], sizeof(reply.args));
222
//  printf("dmr->%d\n", rc);
223
    if (rc < 0) return;
224
 
225
//  printf("call ipc_call_sync\n");
226
    ipcp_call_sync(phoneidx, &question, &reply);
227
}
228
 
229
static void sc_ipc_call_sync_slow(unsigned *sc_args)
230
{
231
    ipc_call_t question, reply;
232
    int rc;
233
 
234
    memset(&question, 0, sizeof(question));
235
    rc = udebug_mem_read(phoneid, &question.args, sc_args[1], sizeof(question.args));
236
    printf("dmr->%d\n", rc);
237
    if (rc < 0) return;
238
 
239
    memset(&reply, 0, sizeof(reply));
240
    rc = udebug_mem_read(phoneid, &reply.args, sc_args[2], sizeof(reply.args));
241
    printf("dmr->%d\n", rc);
242
    if (rc < 0) return;
243
 
244
    ipcp_call_sync(sc_args[0], &question, &reply);
245
}
246
 
247
static void sc_ipc_wait(unsigned *sc_args, int sc_rc)
248
{
249
    ipc_call_t call;
250
    int rc;
251
 
252
    if (sc_rc == 0) return;
253
 
254
    memset(&call, 0, sizeof(call));
255
    rc = udebug_mem_read(phoneid, &call, sc_args[0], sizeof(call));
256
//  printf("udebug_mem_read(phone %d, dest %d, app-mem src %d, size %d -> %d\n",
257
//      phoneid, (int)&call, sc_args[0], sizeof(call), rc);
258
 
259
    if (rc >= 0) {
260
        ipcp_call_in(&call, sc_rc);
261
    }
262
}
263
 
264
static void event_syscall_b(unsigned thread_id, unsigned thread_hash,  unsigned sc_id, int sc_rc)
265
{
266
    unsigned sc_args[6];
267
    int rc;
268
 
269
    /* Read syscall arguments */
270
    rc = udebug_args_read(phoneid, thread_hash, sc_args);
271
 
272
    async_serialize_start();
273
 
274
//  printf("[%d] ", thread_id);
275
 
276
    if (rc < 0) {
277
        printf("error\n");
278
        async_serialize_end();
279
        return;
280
    }
281
 
282
    /* Print syscall name, id and arguments */
283
    printf("%s", syscall_desc[sc_id].name);
284
    print_sc_args(sc_args, syscall_desc[sc_id].n_args);
285
 
286
    async_serialize_end();
287
}
288
 
289
static void event_syscall_e(unsigned thread_id, unsigned thread_hash,  unsigned sc_id, int sc_rc)
290
{
291
    unsigned sc_args[6];
292
    int rv_type;
293
    int rc;
294
 
295
    /* Read syscall arguments */
296
    rc = udebug_args_read(phoneid, thread_hash, sc_args);
297
 
298
    async_serialize_start();
299
 
300
//  printf("[%d] ", thread_id);
301
 
302
    if (rc < 0) {
303
        printf("error\n");
304
        async_serialize_end();
305
        return;
306
    }
307
 
308
    rv_type = syscall_desc[sc_id].rv_type;
309
    print_sc_retval(sc_rc, rv_type);
310
 
311
    switch (sc_id) {
312
    case SYS_IPC_CALL_ASYNC_FAST:
313
        sc_ipc_call_async_fast(sc_args, sc_rc);
314
        break;
315
    case SYS_IPC_CALL_ASYNC_SLOW:
316
        sc_ipc_call_async_slow(sc_args, sc_rc);
317
        break;
318
    case SYS_IPC_CALL_SYNC_FAST:
319
        sc_ipc_call_sync_fast(sc_args);
320
        break;
321
    case SYS_IPC_CALL_SYNC_SLOW:
322
        sc_ipc_call_sync_slow(sc_args);
323
        break;
324
    case SYS_IPC_WAIT:
325
        sc_ipc_wait(sc_args, sc_rc);
326
        break;
327
    default:
328
        break;
329
    }
330
 
331
    async_serialize_end();
332
}
333
 
334
static void event_thread_b(unsigned hash)
335
{
336
    async_serialize_start();
337
    printf("new thread, hash 0x%x\n", hash);
338
    async_serialize_end();
339
 
340
    thread_trace_start(hash);
341
}
342
 
343
static int trace_loop(void *thread_hash_arg)
344
{
345
    int rc;
346
    unsigned ev_type;
347
    unsigned thread_hash;
348
    unsigned thread_id;
349
    unsigned val0, val1;
350
 
351
    thread_hash = (unsigned)thread_hash_arg;
352
    thread_id = next_thread_id++;
353
 
354
    printf("trace_loop(%d)\n", thread_id); 
355
 
356
    while (!abort_trace) {
357
 
358
        /* Run thread until an event occurs */
359
        rc = udebug_go(phoneid, thread_hash,
360
            &ev_type, &val0, &val1);
361
 
362
//      printf("rc = %d, ev_type=%d\n", rc, ev_type);
363
        if (ev_type == UDEBUG_EVENT_FINISHED) {
364
            printf("thread %u debugging finished\n", thread_id);
365
            break;
366
        }
367
 
368
        if (rc >= 0) {
369
            switch (ev_type) {
370
            case UDEBUG_EVENT_SYSCALL_B:
371
                event_syscall_b(thread_id, thread_hash, val0, (int)val1);
372
                break;
373
            case UDEBUG_EVENT_SYSCALL_E:
374
                event_syscall_e(thread_id, thread_hash, val0, (int)val1);
375
                break;
376
            case UDEBUG_EVENT_STOP:
377
                printf("stop event\n");
378
                printf("waiting for resume\n");
379
                while (paused) {
380
                    usleep(1000000);
381
                    fibril_yield();
382
                    printf(".");
383
                }
384
                printf("resumed\n");
385
                break;
386
            case UDEBUG_EVENT_THREAD_B:
387
                event_thread_b(val0);
388
                break;
389
            case UDEBUG_EVENT_THREAD_E:
390
                printf("thread 0x%x exited\n", val0);
391
                abort_trace = 1;
392
                break;
393
            default:
394
                printf("unknown event type %d\n", ev_type);
395
                break;
396
            }
397
        }
398
 
399
    }
400
 
401
    printf("trace_loop(%d) exiting\n", thread_id);
402
    return 0;
403
}
404
 
405
void thread_trace_start(unsigned thread_hash)
406
{
407
    fid_t fid;
408
 
409
    thash = thread_hash;
410
 
411
    fid = fibril_create(trace_loop, (void *)thread_hash);
412
    if (fid == 0) {
413
        printf("Warning: Failed creating fibril\n");
414
    }
415
    fibril_add_ready(fid);
416
}
417
 
418
static void trace_active_task(task_id_t task_id)
419
{
420
    int i;
421
    int rc;
422
    int c;
423
 
424
    printf("Syscall Tracer\n");
425
 
426
    rc = task_connect(task_id);
427
    if (rc < 0) {
428
        printf("Failed to connect to task %lld\n", task_id);
429
        return;
430
    }
431
 
432
    printf("Connected to task %lld\n", task_id);
433
 
434
    ipcp_init();
435
    ipcp_connection_set(1, 0, proto_console);
436
 
437
    rc = get_thread_list();
438
    if (rc < 0) {
439
        printf("Failed to get thread list (error %d)\n", rc);
440
        return;
441
    }
442
 
443
    abort_trace = 0;
444
 
445
    for (i = 0; i < n_threads; i++) {
446
        thread_trace_start(thread_hash_buf[i]);
447
    }
448
 
449
    while(1) {
450
        c = getchar();
451
        if (c == 'q') break;
452
        if (c == 'p') {
453
            paused = 1;
454
            rc = udebug_stop(phoneid, thash);
455
            printf("stop -> %d\n", rc);
456
        }
457
        if (c == 'r') {
458
            paused = 0;
459
        }
460
    }
461
 
462
    printf("terminate debugging session...\n");
463
    abort_trace = 1;
464
    udebug_end(phoneid);
465
    ipc_hangup(phoneid);
466
 
467
    ipcp_cleanup();
468
 
469
    printf("done\n");
470
    return;
471
}
472
 
473
static void main_init(void)
474
{
475
    proto_t *p;
476
    oper_t *o;
477
 
478
    next_thread_id = 1;
479
    paused = 0;
480
 
481
    proto_init();
482
 
483
    p = proto_new("vfs");
484
    o = oper_new("read");
485
    proto_add_oper(p, VFS_READ, o);
486
    o = oper_new("write");
487
    proto_add_oper(p, VFS_WRITE, o);
488
    o = oper_new("truncate");
489
    proto_add_oper(p, VFS_TRUNCATE, o);
490
    o = oper_new("mount");
491
    proto_add_oper(p, VFS_MOUNT, o);
492
    o = oper_new("unmount");
493
    proto_add_oper(p, VFS_UNMOUNT, o);
494
 
495
    proto_register(SERVICE_VFS, p);
496
 
497
    p = proto_new("console");
498
    o = oper_new("getchar");
499
    proto_add_oper(p, CONSOLE_GETCHAR, o);
500
    o = oper_new("putchar");
501
    proto_add_oper(p, CONSOLE_PUTCHAR, o);
502
    o = oper_new("clear");
503
    proto_add_oper(p, CONSOLE_CLEAR, o);
504
    o = oper_new("goto");
505
    proto_add_oper(p, CONSOLE_GOTO, o);
506
    o = oper_new("getsize");
507
    proto_add_oper(p, CONSOLE_GETSIZE, o);
508
    o = oper_new("flush");
509
    proto_add_oper(p, CONSOLE_FLUSH, o);
510
    o = oper_new("set_style");
511
    proto_add_oper(p, CONSOLE_SET_STYLE, o);
512
    o = oper_new("cursor_visibility");
513
    proto_add_oper(p, CONSOLE_CURSOR_VISIBILITY, o);
514
    o = oper_new("flush");
515
    proto_add_oper(p, CONSOLE_FLUSH, o);
516
 
517
    proto_console = p;
518
    proto_register(SERVICE_CONSOLE, p);
519
}
520
 
521
static void print_syntax()
522
{
523
    printf("syntax: trace <task_id>\n");
524
}
525
 
526
int main(int argc, char *argv[])
527
{
528
    task_id_t task_id;
529
    char *err_p;
530
 
531
    if (argc != 2) {
532
        printf("Mising argument\n");
533
        print_syntax();
534
        return 1;
535
    }
536
 
537
    task_id = strtol(argv[1], &err_p, 10);
538
 
539
    if (*err_p) {
540
        printf("Task ID syntax error\n");
541
        print_syntax();
542
        return 1;
543
    }
544
 
545
    main_init();
546
    trace_active_task(task_id);
547
}
548
 
549
/** @}
550
 */