Statistics
| Branch: | Revision:

root / cmd.c @ 0d84be5b

History | View | Annotate | Download (10.9 kB)

1
/*
2
 * Copyright (c) 2003-2005 Silicon Graphics, Inc.
3
 * All Rights Reserved.
4
 *
5
 * This program is free software; you can redistribute it and/or
6
 * modify it under the terms of the GNU General Public License as
7
 * published by the Free Software Foundation.
8
 *
9
 * This program is distributed in the hope that it would be useful,
10
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12
 * GNU General Public License for more details.
13
 *
14
 * You should have received a copy of the GNU General Public License
15
 * along with this program; if not, see <http://www.gnu.org/licenses/>.
16
 */
17

    
18
#include <stdio.h>
19
#include <stdlib.h>
20
#include <string.h>
21
#include <ctype.h>
22
#include <errno.h>
23
#include <sys/time.h>
24
#include <getopt.h>
25

    
26
#include "cmd.h"
27

    
28
#define _(x)        x        /* not gettext support yet */
29

    
30
/* from libxcmd/command.c */
31

    
32
cmdinfo_t        *cmdtab;
33
int                ncmds;
34

    
35
static argsfunc_t        args_func;
36
static checkfunc_t        check_func;
37
static int                ncmdline;
38
static char                **cmdline;
39

    
40
static int
41
compare(const void *a, const void *b)
42
{
43
        return strcmp(((const cmdinfo_t *)a)->name,
44
                      ((const cmdinfo_t *)b)->name);
45
}
46

    
47
void
48
add_command(
49
        const cmdinfo_t        *ci)
50
{
51
        cmdtab = realloc((void *)cmdtab, ++ncmds * sizeof(*cmdtab));
52
        cmdtab[ncmds - 1] = *ci;
53
        qsort(cmdtab, ncmds, sizeof(*cmdtab), compare);
54
}
55

    
56
static int
57
check_command(
58
        const cmdinfo_t        *ci)
59
{
60
        if (check_func)
61
                return check_func(ci);
62
        return 1;
63
}
64

    
65
void
66
add_check_command(
67
        checkfunc_t        cf)
68
{
69
        check_func = cf;
70
}
71

    
72
int
73
command_usage(
74
        const cmdinfo_t *ci)
75
{
76
        printf("%s %s -- %s\n", ci->name, ci->args, ci->oneline);
77
        return 0;
78
}
79

    
80
int
81
command(
82
        const cmdinfo_t        *ct,
83
        int                argc,
84
        char                **argv)
85
{
86
        char                *cmd = argv[0];
87

    
88
        if (!check_command(ct))
89
                return 0;
90

    
91
        if (argc-1 < ct->argmin || (ct->argmax != -1 && argc-1 > ct->argmax)) {
92
                if (ct->argmax == -1)
93
                        fprintf(stderr,
94
        _("bad argument count %d to %s, expected at least %d arguments\n"),
95
                                argc-1, cmd, ct->argmin);
96
                else if (ct->argmin == ct->argmax)
97
                        fprintf(stderr,
98
        _("bad argument count %d to %s, expected %d arguments\n"),
99
                                argc-1, cmd, ct->argmin);
100
                else
101
                        fprintf(stderr,
102
        _("bad argument count %d to %s, expected between %d and %d arguments\n"),
103
                        argc-1, cmd, ct->argmin, ct->argmax);
104
                return 0;
105
        }
106
        optind = 0;
107
        return ct->cfunc(argc, argv);
108
}
109

    
110
const cmdinfo_t *
111
find_command(
112
        const char        *cmd)
113
{
114
        cmdinfo_t        *ct;
115

    
116
        for (ct = cmdtab; ct < &cmdtab[ncmds]; ct++) {
117
                if (strcmp(ct->name, cmd) == 0 ||
118
                    (ct->altname && strcmp(ct->altname, cmd) == 0))
119
                        return (const cmdinfo_t *)ct;
120
        }
121
        return NULL;
122
}
123

    
124
void
125
add_user_command(char *optarg)
126
{
127
        ncmdline++;
128
        cmdline = realloc(cmdline, sizeof(char*) * (ncmdline));
129
        if (!cmdline) {
130
                perror("realloc");
131
                exit(1);
132
        }
133
        cmdline[ncmdline-1] = optarg;
134
}
135

    
136
static int
137
args_command(
138
        int        index)
139
{
140
        if (args_func)
141
                return args_func(index);
142
        return 0;
143
}
144

    
145
void
146
add_args_command(
147
        argsfunc_t        af)
148
{
149
        args_func = af;
150
}
151

    
152
void
153
command_loop(void)
154
{
155
        int                c, i, j = 0, done = 0;
156
        char                *input;
157
        char                **v;
158
        const cmdinfo_t        *ct;
159

    
160
        for (i = 0; !done && i < ncmdline; i++) {
161
                input = strdup(cmdline[i]);
162
                if (!input) {
163
                        fprintf(stderr,
164
                                _("cannot strdup command '%s': %s\n"),
165
                                cmdline[i], strerror(errno));
166
                        exit(1);
167
                }
168
                v = breakline(input, &c);
169
                if (c) {
170
                        ct = find_command(v[0]);
171
                        if (ct) {
172
                                if (ct->flags & CMD_FLAG_GLOBAL)
173
                                        done = command(ct, c, v);
174
                                else {
175
                                        j = 0;
176
                                        while (!done && (j = args_command(j)))
177
                                                done = command(ct, c, v);
178
                                }
179
                        } else
180
                                fprintf(stderr, _("command \"%s\" not found\n"),
181
                                        v[0]);
182
                }
183
                doneline(input, v);
184
        }
185
        if (cmdline) {
186
                free(cmdline);
187
                return;
188
        }
189
        while (!done) {
190
                if ((input = fetchline()) == NULL)
191
                        break;
192
                v = breakline(input, &c);
193
                if (c) {
194
                        ct = find_command(v[0]);
195
                        if (ct)
196
                                done = command(ct, c, v);
197
                        else
198
                                fprintf(stderr, _("command \"%s\" not found\n"),
199
                                        v[0]);
200
                }
201
                doneline(input, v);
202
        }
203
}
204

    
205
/* from libxcmd/input.c */
206

    
207
#if defined(ENABLE_READLINE)
208
# include <readline/history.h>
209
# include <readline/readline.h>
210
#elif defined(ENABLE_EDITLINE)
211
# include <histedit.h>
212
#endif
213

    
214
static char *
215
get_prompt(void)
216
{
217
        static char        prompt[FILENAME_MAX + 2 /*"> "*/ + 1 /*"\0"*/ ];
218

    
219
        if (!prompt[0])
220
                snprintf(prompt, sizeof(prompt), "%s> ", progname);
221
        return prompt;
222
}
223

    
224
#if defined(ENABLE_READLINE)
225
char *
226
fetchline(void)
227
{
228
        char        *line;
229

    
230
        line = readline(get_prompt());
231
        if (line && *line)
232
                add_history(line);
233
        return line;
234
}
235
#elif defined(ENABLE_EDITLINE)
236
static char *el_get_prompt(EditLine *e) { return get_prompt(); }
237
char *
238
fetchline(void)
239
{
240
        static EditLine        *el;
241
        static History        *hist;
242
        HistEvent        hevent;
243
        char                *line;
244
        int                count;
245

    
246
        if (!el) {
247
                hist = history_init();
248
                history(hist, &hevent, H_SETSIZE, 100);
249
                el = el_init(progname, stdin, stdout, stderr);
250
                el_source(el, NULL);
251
                el_set(el, EL_SIGNAL, 1);
252
                el_set(el, EL_PROMPT, el_get_prompt);
253
                el_set(el, EL_HIST, history, (const char *)hist);
254
        }
255
        line = strdup(el_gets(el, &count));
256
        if (line) {
257
                if (count > 0)
258
                        line[count-1] = '\0';
259
                if (*line)
260
                        history(hist, &hevent, H_ENTER, line);
261
        }
262
        return line;
263
}
264
#else
265
# define MAXREADLINESZ        1024
266
char *
267
fetchline(void)
268
{
269
        char        *p, *line = malloc(MAXREADLINESZ);
270

    
271
        if (!line)
272
                return NULL;
273
        printf("%s", get_prompt());
274
        fflush(stdout);
275
        if (!fgets(line, MAXREADLINESZ, stdin)) {
276
                free(line);
277
                return NULL;
278
        }
279
        p = line + strlen(line);
280
        if (p != line && p[-1] == '\n')
281
                p[-1] = '\0';
282
        return line;
283
}
284
#endif
285

    
286
static char *qemu_strsep(char **input, const char *delim)
287
{
288
    char *result = *input;
289
    if (result != NULL) {
290
        char *p;
291

    
292
        for (p = result; *p != '\0'; p++) {
293
            if (strchr(delim, *p)) {
294
                break;
295
            }
296
        }
297
        if (*p == '\0') {
298
            *input = NULL;
299
        } else {
300
            *p = '\0';
301
            *input = p + 1;
302
        }
303
    }
304
    return result;
305
}
306

    
307
char **
308
breakline(
309
        char        *input,
310
        int        *count)
311
{
312
        int        c = 0;
313
        char        *p;
314
        char        **rval = calloc(sizeof(char *), 1);
315

    
316
        while (rval && (p = qemu_strsep(&input, " ")) != NULL) {
317
                if (!*p)
318
                        continue;
319
                c++;
320
                rval = realloc(rval, sizeof(*rval) * (c + 1));
321
                if (!rval) {
322
                        c = 0;
323
                        break;
324
                }
325
                rval[c - 1] = p;
326
                rval[c] = NULL;
327
        }
328
        *count = c;
329
        return rval;
330
}
331

    
332
void
333
doneline(
334
        char        *input,
335
        char        **vec)
336
{
337
        free(input);
338
        free(vec);
339
}
340

    
341
#define EXABYTES(x)        ((long long)(x) << 60)
342
#define PETABYTES(x)        ((long long)(x) << 50)
343
#define TERABYTES(x)        ((long long)(x) << 40)
344
#define GIGABYTES(x)        ((long long)(x) << 30)
345
#define MEGABYTES(x)        ((long long)(x) << 20)
346
#define KILOBYTES(x)        ((long long)(x) << 10)
347

    
348
long long
349
cvtnum(
350
        char                *s)
351
{
352
        long long        i;
353
        char                *sp;
354
        int                c;
355

    
356
        i = strtoll(s, &sp, 0);
357
        if (i == 0 && sp == s)
358
                return -1LL;
359
        if (*sp == '\0')
360
                return i;
361

    
362
        if (sp[1] != '\0')
363
                return -1LL;
364

    
365
        c = tolower(*sp);
366
        switch (c) {
367
        default:
368
                return i;
369
        case 'k':
370
                return KILOBYTES(i);
371
        case 'm':
372
                return MEGABYTES(i);
373
        case 'g':
374
                return GIGABYTES(i);
375
        case 't':
376
                return TERABYTES(i);
377
        case 'p':
378
                return PETABYTES(i);
379
        case 'e':
380
                return  EXABYTES(i);
381
        }
382
        return -1LL;
383
}
384

    
385
#define TO_EXABYTES(x)        ((x) / EXABYTES(1))
386
#define TO_PETABYTES(x)        ((x) / PETABYTES(1))
387
#define TO_TERABYTES(x)        ((x) / TERABYTES(1))
388
#define TO_GIGABYTES(x)        ((x) / GIGABYTES(1))
389
#define TO_MEGABYTES(x)        ((x) / MEGABYTES(1))
390
#define TO_KILOBYTES(x)        ((x) / KILOBYTES(1))
391

    
392
void
393
cvtstr(
394
        double                value,
395
        char                *str,
396
        size_t                size)
397
{
398
        const char        *fmt;
399
        int                precise;
400

    
401
        precise = ((double)value * 1000 == (double)(int)value * 1000);
402

    
403
        if (value >= EXABYTES(1)) {
404
                fmt = precise ? "%.f EiB" : "%.3f EiB";
405
                snprintf(str, size, fmt, TO_EXABYTES(value));
406
        } else if (value >= PETABYTES(1)) {
407
                fmt = precise ? "%.f PiB" : "%.3f PiB";
408
                snprintf(str, size, fmt, TO_PETABYTES(value));
409
        } else if (value >= TERABYTES(1)) {
410
                fmt = precise ? "%.f TiB" : "%.3f TiB";
411
                snprintf(str, size, fmt, TO_TERABYTES(value));
412
        } else if (value >= GIGABYTES(1)) {
413
                fmt = precise ? "%.f GiB" : "%.3f GiB";
414
                snprintf(str, size, fmt, TO_GIGABYTES(value));
415
        } else if (value >= MEGABYTES(1)) {
416
                fmt = precise ? "%.f MiB" : "%.3f MiB";
417
                snprintf(str, size, fmt, TO_MEGABYTES(value));
418
        } else if (value >= KILOBYTES(1)) {
419
                fmt = precise ? "%.f KiB" : "%.3f KiB";
420
                snprintf(str, size, fmt, TO_KILOBYTES(value));
421
        } else {
422
                snprintf(str, size, "%f bytes", value);
423
        }
424
}
425

    
426
struct timeval
427
tsub(struct timeval t1, struct timeval t2)
428
{
429
        t1.tv_usec -= t2.tv_usec;
430
        if (t1.tv_usec < 0) {
431
                t1.tv_usec += 1000000;
432
                t1.tv_sec--;
433
        }
434
        t1.tv_sec -= t2.tv_sec;
435
        return t1;
436
}
437

    
438
double
439
tdiv(double value, struct timeval tv)
440
{
441
        return value / ((double)tv.tv_sec + ((double)tv.tv_usec / 1000000.0));
442
}
443

    
444
#define HOURS(sec)        ((sec) / (60 * 60))
445
#define MINUTES(sec)        (((sec) % (60 * 60)) / 60)
446
#define SECONDS(sec)        ((sec) % 60)
447

    
448
void
449
timestr(
450
        struct timeval        *tv,
451
        char                *ts,
452
        size_t                size,
453
        int                format)
454
{
455
        double                usec = (double)tv->tv_usec / 1000000.0;
456

    
457
        if (format & TERSE_FIXED_TIME) {
458
                if (!HOURS(tv->tv_sec)) {
459
                        snprintf(ts, size, "%u:%02u.%02u",
460
                                (unsigned int) MINUTES(tv->tv_sec),
461
                                (unsigned int) SECONDS(tv->tv_sec),
462
                                (unsigned int) usec * 100);
463
                        return;
464
                }
465
                format |= VERBOSE_FIXED_TIME;        /* fallback if hours needed */
466
        }
467

    
468
        if ((format & VERBOSE_FIXED_TIME) || tv->tv_sec) {
469
                snprintf(ts, size, "%u:%02u:%02u.%02u",
470
                        (unsigned int) HOURS(tv->tv_sec),
471
                        (unsigned int) MINUTES(tv->tv_sec),
472
                        (unsigned int) SECONDS(tv->tv_sec),
473
                        (unsigned int) usec * 100);
474
        } else {
475
                snprintf(ts, size, "0.%04u sec", (unsigned int) usec * 10000);
476
        }
477
}
478

    
479

    
480
/* from libxcmd/quit.c */
481

    
482
static cmdinfo_t quit_cmd;
483

    
484
/* ARGSUSED */
485
static int
486
quit_f(
487
        int        argc,
488
        char        **argv)
489
{
490
        return 1;
491
}
492

    
493
void
494
quit_init(void)
495
{
496
        quit_cmd.name = _("quit");
497
        quit_cmd.altname = _("q");
498
        quit_cmd.cfunc = quit_f;
499
        quit_cmd.argmin = -1;
500
        quit_cmd.argmax = -1;
501
        quit_cmd.flags = CMD_FLAG_GLOBAL;
502
        quit_cmd.oneline = _("exit the program");
503

    
504
        add_command(&quit_cmd);
505
}
506

    
507
/* from libxcmd/help.c */
508

    
509
static cmdinfo_t help_cmd;
510
static void help_onecmd(const char *cmd, const cmdinfo_t *ct);
511
static void help_oneline(const char *cmd, const cmdinfo_t *ct);
512

    
513
static void
514
help_all(void)
515
{
516
        const cmdinfo_t        *ct;
517

    
518
        for (ct = cmdtab; ct < &cmdtab[ncmds]; ct++)
519
                help_oneline(ct->name, ct);
520
        printf(_("\nUse 'help commandname' for extended help.\n"));
521
}
522

    
523
static int
524
help_f(
525
        int                argc,
526
        char                **argv)
527
{
528
        const cmdinfo_t        *ct;
529

    
530
        if (argc == 1) {
531
                help_all();
532
                return 0;
533
        }
534
        ct = find_command(argv[1]);
535
        if (ct == NULL) {
536
                printf(_("command %s not found\n"), argv[1]);
537
                return 0;
538
        }
539
        help_onecmd(argv[1], ct);
540
        return 0;
541
}
542

    
543
static void
544
help_onecmd(
545
        const char        *cmd,
546
        const cmdinfo_t        *ct)
547
{
548
        help_oneline(cmd, ct);
549
        if (ct->help)
550
                ct->help();
551
}
552

    
553
static void
554
help_oneline(
555
        const char        *cmd,
556
        const cmdinfo_t        *ct)
557
{
558
        if (cmd)
559
                printf("%s ", cmd);
560
        else {
561
                printf("%s ", ct->name);
562
                if (ct->altname)
563
                        printf("(or %s) ", ct->altname);
564
        }
565
        if (ct->args)
566
                printf("%s ", ct->args);
567
        printf("-- %s\n", ct->oneline);
568
}
569

    
570
void
571
help_init(void)
572
{
573
        help_cmd.name = _("help");
574
        help_cmd.altname = _("?");
575
        help_cmd.cfunc = help_f;
576
        help_cmd.argmin = 0;
577
        help_cmd.argmax = 1;
578
        help_cmd.flags = CMD_FLAG_GLOBAL;
579
        help_cmd.args = _("[command]");
580
        help_cmd.oneline = _("help for one or all commands");
581

    
582
        add_command(&help_cmd);
583
}