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input: vcd: refactor parsing a bit
[libsigrok.git] / src / input / vcd.c
CommitLineData
99eaa206 1/*
50985c20 2 * This file is part of the libsigrok project.
99eaa206 3 *
0157808d 4 * Copyright (C) 2012 Petteri Aimonen <jpa@sr.mail.kapsi.fi>
7db06394 5 * Copyright (C) 2014 Bert Vermeulen <bert@biot.com>
99eaa206
PA
6 *
7 * This program is free software: you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation, either version 3 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this program. If not, see <http://www.gnu.org/licenses/>.
19 */
20
0157808d
PA
21/* The VCD input module has the following options:
22 *
ba7dd8bb 23 * numchannels: Maximum number of channels to use. The channels are
0157808d
PA
24 * detected in the same order as they are listed
25 * in the $var sections of the VCD file.
26 *
27 * skip: Allows skipping until given timestamp in the file.
28 * This can speed up analyzing of long captures.
29 *
30 * Value < 0: Skip until first timestamp listed in
31 * the file. (default)
32 *
33 * Value = 0: Do not skip, instead generate samples
34 * beginning from timestamp 0.
35 *
36 * Value > 0: Start at the given timestamp.
37 *
38 * downsample: Divide the samplerate by the given factor.
39 * This can speed up analyzing of long captures.
40 *
6b7ace48
PA
41 * compress: Compress idle periods longer than this value.
42 * This can speed up analyzing of long captures.
43 * Default 0 = don't compress.
44 *
0157808d
PA
45 * Based on Verilog standard IEEE Std 1364-2001 Version C
46 *
47 * Supported features:
48 * - $var with 'wire' and 'reg' types of scalar variables
49 * - $timescale definition for samplerate
50 * - multiple character variable identifiers
51 *
52 * Most important unsupported features:
53 * - vector variables (bit vectors etc.)
54 * - analog, integer and real number variables
55 * - $dumpvars initial value declaration
8be87469 56 * - $scope namespaces
ba7dd8bb 57 * - more than 64 channels
0157808d
PA
58 */
59
6ec6c43b 60#include <config.h>
99eaa206
PA
61#include <stdlib.h>
62#include <glib.h>
63#include <stdio.h>
61a429c9 64#include <string.h>
c1aae900 65#include <libsigrok/libsigrok.h>
99eaa206
PA
66#include "libsigrok-internal.h"
67
3544f848 68#define LOG_PREFIX "input/vcd"
99eaa206 69
3f239f08 70#define DEFAULT_NUM_CHANNELS 8
db0e5c99 71#define CHUNKSIZE (1024 * 1024)
e4c8a4d7
BV
72
73struct context {
c10ef17c 74 gboolean started;
7db06394 75 gboolean got_header;
e4c8a4d7 76 uint64_t samplerate;
7db06394
BV
77 unsigned int maxchannels;
78 unsigned int channelcount;
e4c8a4d7
BV
79 int downsample;
80 unsigned compress;
81 int64_t skip;
7db06394 82 gboolean skip_until_end;
ba7dd8bb 83 GSList *channels;
db0e5c99
PA
84 size_t bytes_per_sample;
85 size_t samples_in_buffer;
86 uint8_t *buffer;
87 uint8_t *current_levels;
e4c8a4d7
BV
88};
89
ba7dd8bb 90struct vcd_channel {
e4c8a4d7
BV
91 gchar *name;
92 gchar *identifier;
93};
94
e4c8a4d7 95/*
7db06394 96 * Reads a single VCD section from input file and parses it to name/contents.
99eaa206
PA
97 * e.g. $timescale 1ps $end => "timescale" "1ps"
98 */
7db06394 99static gboolean parse_section(GString *buf, gchar **name, gchar **contents)
99eaa206 100{
7db06394 101 GString *sname, *scontent;
99eaa206 102 gboolean status;
7db06394
BV
103 unsigned int pos;
104
105 *name = *contents = NULL;
106 status = FALSE;
107 pos = 0;
cd1b0e8f 108
7db06394
BV
109 /* Skip any initial white-space. */
110 while (pos < buf->len && g_ascii_isspace(buf->str[pos]))
111 pos++;
cd1b0e8f 112
99eaa206 113 /* Section tag should start with $. */
7db06394 114 if (buf->str[pos++] != '$')
99eaa206 115 return FALSE;
cd1b0e8f 116
99eaa206 117 sname = g_string_sized_new(32);
7db06394
BV
118 scontent = g_string_sized_new(128);
119
120 /* Read the section tag. */
121 while (pos < buf->len && !g_ascii_isspace(buf->str[pos]))
122 g_string_append_c(sname, buf->str[pos++]);
123
124 /* Skip whitespace before content. */
125 while (pos < buf->len && g_ascii_isspace(buf->str[pos]))
126 pos++;
127
128 /* Read the content. */
129 while (pos < buf->len - 4 && strncmp(buf->str + pos, "$end", 4))
130 g_string_append_c(scontent, buf->str[pos++]);
131
132 if (sname->len && pos < buf->len - 4 && !strncmp(buf->str + pos, "$end", 4)) {
133 status = TRUE;
134 pos += 4;
135 while (pos < buf->len && g_ascii_isspace(buf->str[pos]))
136 pos++;
137 g_string_erase(buf, 0, pos);
138 }
99eaa206 139
99eaa206 140 *name = g_string_free(sname, !status);
7db06394
BV
141 *contents = g_string_free(scontent, !status);
142 if (*contents)
143 g_strchomp(*contents);
144
99eaa206
PA
145 return status;
146}
147
ba7dd8bb 148static void free_channel(void *data)
db9679af 149{
ba7dd8bb
UH
150 struct vcd_channel *vcd_ch = data;
151 g_free(vcd_ch->name);
152 g_free(vcd_ch->identifier);
153 g_free(vcd_ch);
db9679af
ML
154}
155
99eaa206
PA
156/* Remove empty parts from an array returned by g_strsplit. */
157static void remove_empty_parts(gchar **parts)
158{
159 gchar **src = parts;
160 gchar **dest = parts;
e4c8a4d7 161 while (*src != NULL) {
99eaa206 162 if (**src != '\0')
99eaa206 163 *dest++ = *src;
99eaa206
PA
164 src++;
165 }
cd1b0e8f 166
99eaa206
PA
167 *dest = NULL;
168}
169
e4c8a4d7
BV
170/*
171 * Parse VCD header to get values for context structure.
99eaa206
PA
172 * The context structure should be zeroed before calling this.
173 */
7db06394 174static gboolean parse_header(const struct sr_input *in, GString *buf)
99eaa206 175{
ba7dd8bb 176 struct vcd_channel *vcd_ch;
7db06394
BV
177 uint64_t p, q;
178 struct context *inc;
179 gboolean status;
180 gchar *name, *contents, **parts;
99eaa206 181
7db06394
BV
182 inc = in->priv;
183 name = contents = NULL;
184 status = FALSE;
185 while (parse_section(buf, &name, &contents)) {
99eaa206 186 sr_dbg("Section '%s', contents '%s'.", name, contents);
cd1b0e8f 187
e4c8a4d7 188 if (g_strcmp0(name, "enddefinitions") == 0) {
99eaa206
PA
189 status = TRUE;
190 break;
e4c8a4d7
BV
191 } else if (g_strcmp0(name, "timescale") == 0) {
192 /*
193 * The standard allows for values 1, 10 or 100
194 * and units s, ms, us, ns, ps and fs.
7db06394 195 */
e4c8a4d7 196 if (sr_parse_period(contents, &p, &q) == SR_OK) {
7db06394 197 inc->samplerate = q / p;
e4c8a4d7 198 if (q % p != 0) {
99eaa206 199 /* Does not happen unless time value is non-standard */
0157808d 200 sr_warn("Inexact rounding of samplerate, %" PRIu64 " / %" PRIu64 " to %" PRIu64 " Hz.",
7db06394 201 q, p, inc->samplerate);
99eaa206 202 }
cd1b0e8f 203
7db06394 204 sr_dbg("Samplerate: %" PRIu64, inc->samplerate);
e4c8a4d7 205 } else {
99eaa206
PA
206 sr_err("Parsing timescale failed.");
207 }
e4c8a4d7 208 } else if (g_strcmp0(name, "var") == 0) {
e85e550d
WS
209 /* Format: $var type size identifier reference [opt. index] $end */
210 unsigned int length;
211
7db06394 212 parts = g_strsplit_set(contents, " \r\n\t", 0);
99eaa206 213 remove_empty_parts(parts);
e85e550d 214 length = g_strv_length(parts);
cd1b0e8f 215
e85e550d
WS
216 if (length != 4 && length != 5)
217 sr_warn("$var section should have 4 or 5 items");
99eaa206 218 else if (g_strcmp0(parts[0], "reg") != 0 && g_strcmp0(parts[0], "wire") != 0)
8be87469 219 sr_info("Unsupported signal type: '%s'", parts[0]);
99eaa206 220 else if (strtol(parts[1], NULL, 10) != 1)
8be87469 221 sr_info("Unsupported signal size: '%s'", parts[1]);
7db06394 222 else if (inc->channelcount >= inc->maxchannels)
e85e550d
WS
223 sr_warn("Skipping '%s%s' because only %d channels requested.",
224 parts[3], parts[4] ? : "", inc->maxchannels);
e4c8a4d7 225 else {
ba7dd8bb
UH
226 vcd_ch = g_malloc(sizeof(struct vcd_channel));
227 vcd_ch->identifier = g_strdup(parts[2]);
e85e550d
WS
228 if (length == 4)
229 vcd_ch->name = g_strdup(parts[3]);
230 else
231 vcd_ch->name = g_strconcat(parts[3], parts[4], NULL);
232
233 sr_info("Channel %d is '%s' identified by '%s'.",
234 inc->channelcount, vcd_ch->name, vcd_ch->identifier);
235
7db06394
BV
236 inc->channels = g_slist_append(inc->channels, vcd_ch);
237 inc->channelcount++;
99eaa206 238 }
cd1b0e8f 239
99eaa206
PA
240 g_strfreev(parts);
241 }
cd1b0e8f 242
db0e5c99
PA
243 g_free(name);
244 name = NULL;
245 g_free(contents);
246 contents = NULL;
99eaa206 247 }
99eaa206
PA
248 g_free(name);
249 g_free(contents);
cd1b0e8f 250
db0e5c99
PA
251 /*
252 * Compute how many bytes each sample will have and initialize the
253 * current levels. The current levels will be updated whenever VCD
254 * has changes.
255 */
256 inc->bytes_per_sample = (inc->channelcount + 7) / 8;
257 inc->current_levels = g_malloc0(inc->bytes_per_sample);
258
7db06394
BV
259 inc->got_header = status;
260
99eaa206
PA
261 return status;
262}
263
7db06394 264static int format_match(GHashTable *metadata)
99eaa206 265{
7db06394 266 GString *buf, *tmpbuf;
99eaa206 267 gboolean status;
7db06394 268 gchar *name, *contents;
cd1b0e8f 269
7db06394
BV
270 buf = g_hash_table_lookup(metadata, GINT_TO_POINTER(SR_INPUT_META_HEADER));
271 tmpbuf = g_string_new_len(buf->str, buf->len);
99eaa206 272
e4c8a4d7
BV
273 /*
274 * If we can parse the first section correctly,
99eaa206
PA
275 * then it is assumed to be a VCD file.
276 */
7db06394
BV
277 status = parse_section(tmpbuf, &name, &contents);
278 g_string_free(tmpbuf, TRUE);
99eaa206
PA
279 g_free(name);
280 g_free(contents);
cd1b0e8f 281
4f979115 282 return status ? SR_OK : SR_ERR;
99eaa206
PA
283}
284
db0e5c99
PA
285/* Send all accumulated bytes from inc->buffer. */
286static void send_buffer(const struct sr_input *in)
61a429c9 287{
db0e5c99 288 struct context *inc;
61a429c9
PA
289 struct sr_datafeed_packet packet;
290 struct sr_datafeed_logic logic;
cd1b0e8f 291
db0e5c99 292 inc = in->priv;
61a429c9 293
db0e5c99
PA
294 if (inc->samples_in_buffer == 0)
295 return;
cd1b0e8f 296
61a429c9 297 packet.type = SR_DF_LOGIC;
cd1b0e8f 298 packet.payload = &logic;
db0e5c99
PA
299 logic.unitsize = inc->bytes_per_sample;
300 logic.data = inc->buffer;
301 logic.length = inc->bytes_per_sample * inc->samples_in_buffer;
302 sr_session_send(in->sdi, &packet);
303 inc->samples_in_buffer = 0;
304}
305
306/*
307 * Add N copies of the current sample to buffer.
308 * When the buffer fills up, automatically send it.
309 */
310static void add_samples(const struct sr_input *in, size_t count)
311{
312 struct context *inc;
313 size_t samples_per_chunk;
314 size_t space_left, i;
315 uint8_t *p;
316
317 inc = in->priv;
318 samples_per_chunk = CHUNKSIZE / inc->bytes_per_sample;
cd1b0e8f 319
e4c8a4d7 320 while (count) {
db0e5c99
PA
321 space_left = samples_per_chunk - inc->samples_in_buffer;
322
323 if (space_left > count)
324 space_left = count;
cd1b0e8f 325
db0e5c99
PA
326 p = inc->buffer + inc->samples_in_buffer * inc->bytes_per_sample;
327 for (i = 0; i < space_left; i++) {
328 memcpy(p, inc->current_levels, inc->bytes_per_sample);
329 p += inc->bytes_per_sample;
330 inc->samples_in_buffer++;
331 count--;
332 }
cd1b0e8f 333
db0e5c99
PA
334 if (inc->samples_in_buffer == samples_per_chunk)
335 send_buffer(in);
61a429c9
PA
336 }
337}
338
36dacf17
WS
339/* Set the channel level depending on the identifier and parsed value. */
340static void process_bit(struct context *inc, char *identifier, unsigned int bit)
341{
342 GSList *l;
343 struct vcd_channel *vcd_ch;
344 unsigned int j;
345
346 for (j = 0, l = inc->channels; j < inc->channelcount && l; j++, l = l->next) {
347 vcd_ch = l->data;
348 if (g_strcmp0(identifier, vcd_ch->identifier) == 0) {
349 /* Found our channel. */
350 size_t byte_idx = (j / 8);
351 size_t bit_idx = j - 8 * byte_idx;
352 if (bit)
353 inc->current_levels[byte_idx] |= (uint8_t)1 << bit_idx;
354 else
355 inc->current_levels[byte_idx] &= ~((uint8_t)1 << bit_idx);
356 break;
357 }
358 }
359 if (j == inc->channelcount)
360 sr_dbg("Did not find channel for identifier '%s'.", identifier);
361}
362
7db06394
BV
363/* Parse a set of lines from the data section. */
364static void parse_contents(const struct sr_input *in, char *data)
61a429c9 365{
7db06394 366 struct context *inc;
db0e5c99 367 uint64_t timestamp, prev_timestamp;
36dacf17 368 unsigned int bit, i;
7db06394 369 char **tokens;
cd1b0e8f 370
7db06394 371 inc = in->priv;
db0e5c99 372 prev_timestamp = 0;
cd1b0e8f 373
61a429c9 374 /* Read one space-delimited token at a time. */
7db06394
BV
375 tokens = g_strsplit_set(data, " \t\r\n", 0);
376 remove_empty_parts(tokens);
377 for (i = 0; tokens[i]; i++) {
378 if (inc->skip_until_end) {
379 if (!strcmp(tokens[i], "$end")) {
380 /* Done with unhandled/unknown section. */
381 inc->skip_until_end = FALSE;
382 break;
383 }
384 }
385 if (tokens[i][0] == '#' && g_ascii_isdigit(tokens[i][1])) {
61a429c9 386 /* Numeric value beginning with # is a new timestamp value */
7db06394 387 timestamp = strtoull(tokens[i] + 1, NULL, 10);
cd1b0e8f 388
7db06394
BV
389 if (inc->downsample > 1)
390 timestamp /= inc->downsample;
cd1b0e8f 391
e4c8a4d7
BV
392 /*
393 * Skip < 0 => skip until first timestamp.
0157808d
PA
394 * Skip = 0 => don't skip
395 * Skip > 0 => skip until timestamp >= skip.
396 */
7db06394
BV
397 if (inc->skip < 0) {
398 inc->skip = timestamp;
8be87469 399 prev_timestamp = timestamp;
7db06394
BV
400 } else if (inc->skip > 0 && timestamp < (uint64_t)inc->skip) {
401 prev_timestamp = inc->skip;
402 } else if (timestamp == prev_timestamp) {
8be87469 403 /* Ignore repeated timestamps (e.g. sigrok outputs these) */
7db06394
BV
404 } else {
405 if (inc->compress != 0 && timestamp - prev_timestamp > inc->compress) {
6b7ace48 406 /* Compress long idle periods */
7db06394 407 prev_timestamp = timestamp - inc->compress;
6b7ace48 408 }
cd1b0e8f 409
61a429c9 410 sr_dbg("New timestamp: %" PRIu64, timestamp);
cd1b0e8f 411
61a429c9 412 /* Generate samples from prev_timestamp up to timestamp - 1. */
db0e5c99 413 add_samples(in, timestamp - prev_timestamp);
0157808d 414 prev_timestamp = timestamp;
61a429c9 415 }
7db06394
BV
416 } else if (tokens[i][0] == '$' && tokens[i][1] != '\0') {
417 /*
418 * This is probably a $dumpvars, $comment or similar.
419 * $dump* contain useful data.
420 */
421 if (g_strcmp0(tokens[i], "$dumpvars") == 0
422 || g_strcmp0(tokens[i], "$dumpon") == 0
423 || g_strcmp0(tokens[i], "$dumpoff") == 0
424 || g_strcmp0(tokens[i], "$end") == 0) {
8be87469 425 /* Ignore, parse contents as normally. */
e4c8a4d7 426 } else {
7db06394
BV
427 /* Ignore this and future lines until $end. */
428 inc->skip_until_end = TRUE;
429 break;
8be87469 430 }
7db06394 431 } else if (strchr("bBrR", tokens[i][0]) != NULL) {
76bc28c3
WS
432 sr_dbg("Vector values not supported yet");
433 if (!tokens[++i])
434 /* No tokens left, bail out */
435 break;
436 else
437 /* Process next token */
438 continue;
7db06394 439 } else if (strchr("01xXzZ", tokens[i][0]) != NULL) {
a66175c2
WS
440 char *identifier;
441
61a429c9 442 /* A new 1-bit sample value */
7db06394
BV
443 bit = (tokens[i][0] == '1');
444
445 /*
446 * The identifier is either the next character, or, if
447 * there was whitespace after the bit, the next token.
448 */
449 if (tokens[i][1] == '\0') {
73f052d3
WS
450 if (!tokens[++i]) {
451 sr_dbg("Identifier missing!");
452 break;
453 }
a66175c2 454 identifier = tokens[i];
7db06394 455 } else {
a66175c2 456 identifier = tokens[i] + 1;
61a429c9 457 }
36dacf17 458 process_bit(inc, identifier, bit);
e4c8a4d7 459 } else {
7db06394 460 sr_warn("Skipping unknown token '%s'.", tokens[i]);
8be87469 461 }
7db06394
BV
462 }
463 g_strfreev(tokens);
464}
465
466static int init(struct sr_input *in, GHashTable *options)
467{
7db06394
BV
468 int num_channels, i;
469 char name[16];
470 struct context *inc;
471
7db06394
BV
472 num_channels = g_variant_get_int32(g_hash_table_lookup(options, "numchannels"));
473 if (num_channels < 1) {
474 sr_err("Invalid value for numchannels: must be at least 1.");
475 return SR_ERR_ARG;
476 }
d0181813 477 inc = in->priv = g_malloc0(sizeof(struct context));
7db06394 478 inc->maxchannels = num_channels;
cd1b0e8f 479
7db06394
BV
480 inc->downsample = g_variant_get_int32(g_hash_table_lookup(options, "downsample"));
481 if (inc->downsample < 1)
482 inc->downsample = 1;
483
484 inc->compress = g_variant_get_int32(g_hash_table_lookup(options, "compress"));
485 inc->skip = g_variant_get_int32(g_hash_table_lookup(options, "skip"));
486 inc->skip /= inc->downsample;
487
aac29cc1 488 in->sdi = g_malloc0(sizeof(struct sr_dev_inst));
7db06394
BV
489 in->priv = inc;
490
db0e5c99
PA
491 inc->buffer = g_malloc(CHUNKSIZE);
492
7db06394
BV
493 for (i = 0; i < num_channels; i++) {
494 snprintf(name, 16, "%d", i);
5e23fcab 495 sr_channel_new(in->sdi, i, SR_CHANNEL_LOGIC, TRUE, name);
61a429c9 496 }
cd1b0e8f 497
7db06394 498 return SR_OK;
61a429c9
PA
499}
500
7db06394
BV
501static gboolean have_header(GString *buf)
502{
503 unsigned int pos;
504 char *p;
505
506 if (!(p = g_strstr_len(buf->str, buf->len, "$enddefinitions")))
507 return FALSE;
508 pos = p - buf->str + 15;
509 while (pos < buf->len - 4 && g_ascii_isspace(buf->str[pos]))
510 pos++;
511 if (!strncmp(buf->str + pos, "$end", 4))
512 return TRUE;
513
514 return FALSE;
515}
516
7066fd46 517static int process_buffer(struct sr_input *in)
99eaa206 518{
99eaa206 519 struct sr_datafeed_packet packet;
2df1e819
BV
520 struct sr_datafeed_meta meta;
521 struct sr_config *src;
7db06394 522 struct context *inc;
2df1e819 523 uint64_t samplerate;
7db06394
BV
524 char *p;
525
7db06394 526 inc = in->priv;
d0181813 527 if (!inc->started) {
7db06394 528 std_session_send_df_header(in->sdi, LOG_PREFIX);
99eaa206 529
7db06394
BV
530 packet.type = SR_DF_META;
531 packet.payload = &meta;
532 samplerate = inc->samplerate / inc->downsample;
533 src = sr_config_new(SR_CONF_SAMPLERATE, g_variant_new_uint64(samplerate));
534 meta.config = g_slist_append(NULL, src);
535 sr_session_send(in->sdi, &packet);
c01378c9 536 g_slist_free(meta.config);
7db06394 537 sr_config_free(src);
d0181813
BV
538
539 inc->started = TRUE;
99eaa206
PA
540 }
541
7db06394
BV
542 while ((p = g_strrstr_len(in->buf->str, in->buf->len, "\n"))) {
543 *p = '\0';
544 g_strstrip(in->buf->str);
545 if (in->buf->str[0] != '\0')
546 parse_contents(in, in->buf->str);
547 g_string_erase(in->buf, 0, p - in->buf->str + 1);
548 }
99eaa206 549
7db06394
BV
550 return SR_OK;
551}
cd1b0e8f 552
7066fd46
BV
553static int receive(struct sr_input *in, GString *buf)
554{
555 struct context *inc;
556 int ret;
557
558 g_string_append_len(in->buf, buf->str, buf->len);
559
560 inc = in->priv;
561 if (!inc->got_header) {
562 if (!have_header(in->buf))
563 return SR_OK;
73931b7c 564 if (!parse_header(in, in->buf))
7066fd46
BV
565 /* There was a header in there, but it was malformed. */
566 return SR_ERR;
567
568 in->sdi_ready = TRUE;
569 /* sdi is ready, notify frontend. */
570 return SR_OK;
571 }
572
573 ret = process_buffer(in);
574
575 return ret;
576}
577
578static int end(struct sr_input *in)
7db06394 579{
c10ef17c 580 struct sr_datafeed_packet packet;
7db06394 581 struct context *inc;
7066fd46
BV
582 int ret;
583
db0e5c99
PA
584 inc = in->priv;
585
7066fd46
BV
586 if (in->sdi_ready)
587 ret = process_buffer(in);
588 else
589 ret = SR_OK;
99eaa206 590
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591 /* Send any samples that haven't been sent yet. */
592 send_buffer(in);
593
c10ef17c 594 if (inc->started) {
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595 packet.type = SR_DF_END;
596 sr_session_send(in->sdi, &packet);
597 }
598
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599 return ret;
600}
601
d5cc282f 602static void cleanup(struct sr_input *in)
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603{
604 struct context *inc;
605
606 inc = in->priv;
7db06394 607 g_slist_free_full(inc->channels, free_channel);
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608 g_free(inc->buffer);
609 inc->buffer = NULL;
610 g_free(inc->current_levels);
611 inc->current_levels = NULL;
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612}
613
7db06394 614static struct sr_option options[] = {
5e83cd74 615 { "numchannels", "Number of channels", "Number of channels", NULL, NULL },
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616 { "skip", "Skip", "Skip until timestamp", NULL, NULL },
617 { "downsample", "Downsample", "Divide samplerate by factor", NULL, NULL },
618 { "compress", "Compress", "Compress idle periods longer than this value", NULL, NULL },
06ad20be 619 ALL_ZERO
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620};
621
2c240774 622static const struct sr_option *get_options(void)
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623{
624 if (!options[0].def) {
625 options[0].def = g_variant_ref_sink(g_variant_new_int32(DEFAULT_NUM_CHANNELS));
626 options[1].def = g_variant_ref_sink(g_variant_new_int32(-1));
627 options[2].def = g_variant_ref_sink(g_variant_new_int32(1));
628 options[3].def = g_variant_ref_sink(g_variant_new_int32(0));
629 }
630
631 return options;
632}
633
d4c93774 634SR_PRIV struct sr_input_module input_vcd = {
99eaa206 635 .id = "vcd",
7db06394 636 .name = "VCD",
17bfaca6 637 .desc = "Value Change Dump",
c7bc82ff 638 .exts = (const char*[]){"vcd", NULL},
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639 .metadata = { SR_INPUT_META_HEADER | SR_INPUT_META_REQUIRED },
640 .options = get_options,
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641 .format_match = format_match,
642 .init = init,
7db06394 643 .receive = receive,
7066fd46 644 .end = end,
7db06394 645 .cleanup = cleanup,
99eaa206 646};