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binary_helpers: Rename bv_get_value to reflect it's length checking
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1483577e 1/*
50985c20 2 * This file is part of the libsigrok project.
1483577e 3 *
13d8e03c 4 * Copyright (C) 2013 Bert Vermeulen <bert@biot.com>
1483577e
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5 *
6 * This program is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, either version 3 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 */
19
a5827886
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20#ifndef LIBSIGROK_LIBSIGROK_INTERNAL_H
21#define LIBSIGROK_LIBSIGROK_INTERNAL_H
1483577e 22
1df81f4b
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23#include "config.h"
24
cc8a7d25 25#include <glib.h>
4417074c
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26#ifdef HAVE_LIBHIDAPI
27#include <hidapi.h>
28#endif
c4f2dfd0 29#ifdef HAVE_LIBSERIALPORT
dc991353 30#include <libserialport.h>
c4f2dfd0 31#endif
fdcdfe53
GS
32#ifdef HAVE_LIBUSB_1_0
33#include <libusb.h>
34#endif
e1a712ca
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35#ifdef HAVE_LIBFTDI
36#include <ftdi.h>
37#endif
fdcdfe53 38#include <stdarg.h>
ad5aa993 39#include <stdint.h>
fdcdfe53 40#include <stdio.h>
ae4c1fb6 41#include <stdlib.h>
b08024a8 42
98654c99
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43struct zip;
44struct zip_stat;
45
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46/**
47 * @file
48 *
49 * libsigrok private header file, only to be used internally.
50 */
51
4cea9eb2
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52/*--- Macros ----------------------------------------------------------------*/
53
54#ifndef ARRAY_SIZE
55#define ARRAY_SIZE(a) (sizeof(a) / sizeof((a)[0]))
56#endif
57
58#ifndef ARRAY_AND_SIZE
59#define ARRAY_AND_SIZE(a) (a), ARRAY_SIZE(a)
60#endif
61
6cfc6c5c
UH
62#ifndef G_SOURCE_FUNC
63#define G_SOURCE_FUNC(f) ((GSourceFunc) (void (*)(void)) (f)) /* Since 2.58. */
64#endif
65
66#define SR_RECEIVE_DATA_CALLBACK(f) \
67 ((sr_receive_data_callback) (void (*)(void)) (f))
68
a4f9c35b 69/**
5bf0dd6a 70 * Read a 8 bits unsigned integer out of memory.
a4f9c35b 71 * @param x a pointer to the input memory
5bf0dd6a 72 * @return the corresponding unsigned integer
a4f9c35b 73 */
f1833600
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74static inline uint8_t read_u8(const uint8_t *p)
75{
76 return p[0];
77}
78#define R8(x) read_u8((const uint8_t *)(x))
a4f9c35b 79
e4bcc63d
GS
80/**
81 * Read an 8 bits signed integer out of memory.
82 * @param x a pointer to the input memory
83 * @return the corresponding signed integer
84 */
85static inline int8_t read_i8(const uint8_t *p)
86{
87 return (int8_t)p[0];
88}
89
e28ef28a 90/**
5bf0dd6a 91 * Read a 16 bits big endian unsigned integer out of memory.
e28ef28a 92 * @param x a pointer to the input memory
5bf0dd6a 93 * @return the corresponding unsigned integer
e28ef28a 94 */
f1833600
GS
95static inline uint16_t read_u16be(const uint8_t *p)
96{
97 uint16_t u;
98
99 u = 0;
100 u <<= 8; u |= p[0];
101 u <<= 8; u |= p[1];
102
103 return u;
104}
105#define RB16(x) read_u16be((const uint8_t *)(x))
e28ef28a
AJ
106
107/**
5bf0dd6a 108 * Read a 16 bits little endian unsigned integer out of memory.
e28ef28a 109 * @param x a pointer to the input memory
5bf0dd6a 110 * @return the corresponding unsigned integer
e28ef28a 111 */
f1833600
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112static inline uint16_t read_u16le(const uint8_t *p)
113{
114 uint16_t u;
115
116 u = 0;
117 u <<= 8; u |= p[1];
118 u <<= 8; u |= p[0];
119
120 return u;
121}
122#define RL16(x) read_u16le((const uint8_t *)(x))
e28ef28a 123
4d376e08
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124/**
125 * Read a 16 bits big endian signed integer out of memory.
126 * @param x a pointer to the input memory
127 * @return the corresponding signed integer
128 */
f1833600
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129static inline int16_t read_i16be(const uint8_t *p)
130{
131 uint16_t u;
132 int16_t i;
133
134 u = read_u16be(p);
135 i = (int16_t)u;
136
137 return i;
138}
139#define RB16S(x) read_i16be((const uint8_t *)(x))
4d376e08 140
e28ef28a 141/**
5bf0dd6a 142 * Read a 16 bits little endian signed integer out of memory.
e28ef28a 143 * @param x a pointer to the input memory
5bf0dd6a
BV
144 * @return the corresponding signed integer
145 */
f1833600
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146static inline int16_t read_i16le(const uint8_t *p)
147{
148 uint16_t u;
149 int16_t i;
150
151 u = read_u16le(p);
152 i = (int16_t)u;
153
154 return i;
155}
156#define RL16S(x) read_i16le((const uint8_t *)(x))
5bf0dd6a 157
080b6bcf
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158/**
159 * Read a 24 bits little endian unsigned integer out of memory.
160 * @param x a pointer to the input memory
161 * @return the corresponding unsigned integer
162 */
163static inline uint32_t read_u24le(const uint8_t *p)
164{
165 uint32_t u;
166
167 u = 0;
168 u <<= 8; u |= p[2];
169 u <<= 8; u |= p[1];
170 u <<= 8; u |= p[0];
171
172 return u;
173}
174
7d893e3b
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175/**
176 * Read a 24 bits big endian unsigned integer out of memory.
177 * @param x a pointer to the input memory
178 * @return the corresponding unsigned integer
179 */
180static inline uint32_t read_u24be(const uint8_t *p)
181{
182 uint32_t u;
183
184 u = 0;
185 u <<= 8; u |= p[0];
186 u <<= 8; u |= p[1];
187 u <<= 8; u |= p[2];
188
189 return u;
190}
191
5bf0dd6a
BV
192/**
193 * Read a 32 bits big endian unsigned integer out of memory.
194 * @param x a pointer to the input memory
195 * @return the corresponding unsigned integer
e28ef28a 196 */
f1833600
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197static inline uint32_t read_u32be(const uint8_t *p)
198{
199 uint32_t u;
200
201 u = 0;
202 u <<= 8; u |= p[0];
203 u <<= 8; u |= p[1];
204 u <<= 8; u |= p[2];
205 u <<= 8; u |= p[3];
206
207 return u;
208}
209#define RB32(x) read_u32be((const uint8_t *)(x))
e28ef28a
AJ
210
211/**
5bf0dd6a 212 * Read a 32 bits little endian unsigned integer out of memory.
e28ef28a 213 * @param x a pointer to the input memory
5bf0dd6a 214 * @return the corresponding unsigned integer
e28ef28a 215 */
f1833600
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216static inline uint32_t read_u32le(const uint8_t *p)
217{
218 uint32_t u;
219
220 u = 0;
221 u <<= 8; u |= p[3];
222 u <<= 8; u |= p[2];
223 u <<= 8; u |= p[1];
224 u <<= 8; u |= p[0];
225
226 return u;
227}
228#define RL32(x) read_u32le((const uint8_t *)(x))
e28ef28a 229
4d376e08
SB
230/**
231 * Read a 32 bits big endian signed integer out of memory.
232 * @param x a pointer to the input memory
233 * @return the corresponding signed integer
234 */
f1833600
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235static inline int32_t read_i32be(const uint8_t *p)
236{
237 uint32_t u;
238 int32_t i;
239
240 u = read_u32be(p);
241 i = (int32_t)u;
242
243 return i;
244}
245#define RB32S(x) read_i32be((const uint8_t *)(x))
4d376e08 246
ea2d6d99 247/**
5bf0dd6a
BV
248 * Read a 32 bits little endian signed integer out of memory.
249 * @param x a pointer to the input memory
250 * @return the corresponding signed integer
251 */
f1833600
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252static inline int32_t read_i32le(const uint8_t *p)
253{
254 uint32_t u;
255 int32_t i;
256
257 u = read_u32le(p);
258 i = (int32_t)u;
259
260 return i;
261}
262#define RL32S(x) read_i32le((const uint8_t *)(x))
5bf0dd6a 263
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264/**
265 * Read a 64 bits big endian unsigned integer out of memory.
266 * @param x a pointer to the input memory
267 * @return the corresponding unsigned integer
268 */
f1833600
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269static inline uint64_t read_u64be(const uint8_t *p)
270{
271 uint64_t u;
272
273 u = 0;
274 u <<= 8; u |= p[0];
275 u <<= 8; u |= p[1];
276 u <<= 8; u |= p[2];
277 u <<= 8; u |= p[3];
278 u <<= 8; u |= p[4];
279 u <<= 8; u |= p[5];
280 u <<= 8; u |= p[6];
281 u <<= 8; u |= p[7];
282
283 return u;
284}
285#define RB64(x) read_u64be((const uint8_t *)(x))
17b93fd7 286
8a66b077
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287/**
288 * Read a 64 bits little endian unsigned integer out of memory.
289 * @param x a pointer to the input memory
290 * @return the corresponding unsigned integer
291 */
f1833600
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292static inline uint64_t read_u64le(const uint8_t *p)
293{
294 uint64_t u;
295
296 u = 0;
297 u <<= 8; u |= p[7];
298 u <<= 8; u |= p[6];
299 u <<= 8; u |= p[5];
300 u <<= 8; u |= p[4];
301 u <<= 8; u |= p[3];
302 u <<= 8; u |= p[2];
303 u <<= 8; u |= p[1];
304 u <<= 8; u |= p[0];
305
306 return u;
307}
308#define RL64(x) read_u64le((const uint8_t *)(x))
309
310/**
311 * Read a 64 bits big endian signed integer out of memory.
312 * @param x a pointer to the input memory
313 * @return the corresponding unsigned integer
314 */
315static inline int64_t read_i64be(const uint8_t *p)
316{
317 uint64_t u;
318 int64_t i;
319
320 u = read_u64be(p);
321 i = (int64_t)u;
322
323 return i;
324}
325#define RB64S(x) read_i64be((const uint8_t *)(x))
8a66b077
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326
327/**
328 * Read a 64 bits little endian signed integer out of memory.
329 * @param x a pointer to the input memory
330 * @return the corresponding unsigned integer
331 */
f1833600
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332static inline int64_t read_i64le(const uint8_t *p)
333{
334 uint64_t u;
335 int64_t i;
336
337 u = read_u64le(p);
338 i = (int64_t)u;
339
340 return i;
341}
342#define RL64S(x) read_i64le((const uint8_t *)(x))
8a66b077 343
a2632bca 344/**
daa895cb 345 * Read a 32 bits big endian float out of memory (single precision).
a2632bca
AJ
346 * @param x a pointer to the input memory
347 * @return the corresponding float
348 */
f1833600
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349static inline float read_fltbe(const uint8_t *p)
350{
351 /*
352 * Implementor's note: Strictly speaking the "union" trick
353 * is not portable. But this phrase was found to work on the
354 * project's supported platforms, and serve well until a more
355 * appropriate phrase is found.
356 */
357 union { uint32_t u32; float flt; } u;
358 float f;
359
360 u.u32 = read_u32be(p);
361 f = u.flt;
362
363 return f;
364}
365#define RBFL(x) read_fltbe((const uint8_t *)(x))
a2632bca
AJ
366
367/**
daa895cb 368 * Read a 32 bits little endian float out of memory (single precision).
a2632bca
AJ
369 * @param x a pointer to the input memory
370 * @return the corresponding float
371 */
f1833600
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372static inline float read_fltle(const uint8_t *p)
373{
374 /*
375 * Implementor's note: Strictly speaking the "union" trick
376 * is not portable. But this phrase was found to work on the
377 * project's supported platforms, and serve well until a more
378 * appropriate phrase is found.
379 */
380 union { uint32_t u32; float flt; } u;
381 float f;
382
383 u.u32 = read_u32le(p);
384 f = u.flt;
385
386 return f;
387}
388#define RLFL(x) read_fltle((const uint8_t *)(x))
a2632bca 389
e4bcc63d
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390/**
391 * Read a 64 bits big endian float out of memory (double precision).
392 * @param x a pointer to the input memory
393 * @return the corresponding floating point value
394 */
395static inline double read_dblbe(const uint8_t *p)
396{
397 /*
398 * Implementor's note: Strictly speaking the "union" trick
399 * is not portable. But this phrase was found to work on the
400 * project's supported platforms, and serve well until a more
401 * appropriate phrase is found.
402 */
403 union { uint64_t u64; double flt; } u;
404 double f;
405
406 u.u64 = read_u64be(p);
407 f = u.flt;
408
409 return f;
410}
411
daa895cb
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412/**
413 * Read a 64 bits little endian float out of memory (double precision).
414 * @param x a pointer to the input memory
415 * @return the corresponding floating point value
416 */
417static inline double read_dblle(const uint8_t *p)
418{
419 /*
420 * Implementor's note: Strictly speaking the "union" trick
421 * is not portable. But this phrase was found to work on the
422 * project's supported platforms, and serve well until a more
423 * appropriate phrase is found.
424 */
425 union { uint64_t u64; double flt; } u;
426 double f;
427
428 u.u64 = read_u64le(p);
429 f = u.flt;
430
431 return f;
432}
433#define RLDB(x) read_dblle((const uint8_t *)(x))
434
5bf0dd6a
BV
435/**
436 * Write a 8 bits unsigned integer to memory.
ea2d6d99 437 * @param p a pointer to the output memory
5bf0dd6a 438 * @param x the input unsigned integer
ea2d6d99 439 */
f1833600
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440static inline void write_u8(uint8_t *p, uint8_t x)
441{
442 p[0] = x;
443}
444#define W8(p, x) write_u8((uint8_t *)(p), (uint8_t)(x))
ea2d6d99
AJ
445
446/**
5bf0dd6a 447 * Write a 16 bits unsigned integer to memory stored as big endian.
ea2d6d99 448 * @param p a pointer to the output memory
5bf0dd6a 449 * @param x the input unsigned integer
ea2d6d99 450 */
f1833600
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451static inline void write_u16be(uint8_t *p, uint16_t x)
452{
453 p[1] = x & 0xff; x >>= 8;
454 p[0] = x & 0xff; x >>= 8;
455}
456#define WB16(p, x) write_u16be((uint8_t *)(p), (uint16_t)(x))
ea2d6d99
AJ
457
458/**
5bf0dd6a 459 * Write a 16 bits unsigned integer to memory stored as little endian.
ea2d6d99 460 * @param p a pointer to the output memory
5bf0dd6a 461 * @param x the input unsigned integer
ea2d6d99 462 */
f1833600
GS
463static inline void write_u16le(uint8_t *p, uint16_t x)
464{
465 p[0] = x & 0xff; x >>= 8;
466 p[1] = x & 0xff; x >>= 8;
467}
468#define WL16(p, x) write_u16le((uint8_t *)(p), (uint16_t)(x))
ea2d6d99 469
15526343
GS
470/**
471 * Write a 24 bits unsigned integer to memory stored as little endian.
472 * @param p a pointer to the output memory
473 * @param x the input unsigned integer
474 */
475static inline void write_u24le(uint8_t *p, uint32_t x)
476{
477 p[0] = x & 0xff; x >>= 8;
478 p[1] = x & 0xff; x >>= 8;
479 p[2] = x & 0xff; x >>= 8;
480}
481#define WL24(p, x) write_u24le((uint8_t *)(p), (uint32_t)(x))
482
ea2d6d99 483/**
5bf0dd6a 484 * Write a 32 bits unsigned integer to memory stored as big endian.
ea2d6d99 485 * @param p a pointer to the output memory
5bf0dd6a 486 * @param x the input unsigned integer
ea2d6d99 487 */
f1833600
GS
488static inline void write_u32be(uint8_t *p, uint32_t x)
489{
490 p[3] = x & 0xff; x >>= 8;
491 p[2] = x & 0xff; x >>= 8;
492 p[1] = x & 0xff; x >>= 8;
493 p[0] = x & 0xff; x >>= 8;
494}
495#define WB32(p, x) write_u32be((uint8_t *)(p), (uint32_t)(x))
ea2d6d99
AJ
496
497/**
5bf0dd6a 498 * Write a 32 bits unsigned integer to memory stored as little endian.
ea2d6d99 499 * @param p a pointer to the output memory
5bf0dd6a 500 * @param x the input unsigned integer
ea2d6d99 501 */
f1833600
GS
502static inline void write_u32le(uint8_t *p, uint32_t x)
503{
504 p[0] = x & 0xff; x >>= 8;
505 p[1] = x & 0xff; x >>= 8;
506 p[2] = x & 0xff; x >>= 8;
507 p[3] = x & 0xff; x >>= 8;
508}
509#define WL32(p, x) write_u32le((uint8_t *)(p), (uint32_t)(x))
ea2d6d99 510
15526343
GS
511/**
512 * Write a 40 bits unsigned integer to memory stored as little endian.
513 * @param p a pointer to the output memory
514 * @param x the input unsigned integer
515 */
516static inline void write_u40le(uint8_t *p, uint64_t x)
517{
518 p[0] = x & 0xff; x >>= 8;
519 p[1] = x & 0xff; x >>= 8;
520 p[2] = x & 0xff; x >>= 8;
521 p[3] = x & 0xff; x >>= 8;
522 p[4] = x & 0xff; x >>= 8;
523}
524#define WL40(p, x) write_u40le((uint8_t *)(p), (uint64_t)(x))
525
797c8d90
GS
526/**
527 * Write a 48 bits unsigned integer to memory stored as little endian.
528 * @param p a pointer to the output memory
529 * @param x the input unsigned integer
530 */
531static inline void write_u48le(uint8_t *p, uint64_t x)
532{
533 p[0] = x & 0xff; x >>= 8;
534 p[1] = x & 0xff; x >>= 8;
535 p[2] = x & 0xff; x >>= 8;
536 p[3] = x & 0xff; x >>= 8;
537 p[4] = x & 0xff; x >>= 8;
538 p[5] = x & 0xff; x >>= 8;
539}
540#define WL48(p, x) write_u48le((uint8_t *)(p), (uint64_t)(x))
541
efce57da
GS
542/**
543 * Write a 64 bits unsigned integer to memory stored as big endian.
544 * @param p a pointer to the output memory
545 * @param x the input unsigned integer
546 */
547static inline void write_u64be(uint8_t *p, uint64_t x)
548{
549 p[7] = x & 0xff; x >>= 8;
550 p[6] = x & 0xff; x >>= 8;
551 p[5] = x & 0xff; x >>= 8;
552 p[4] = x & 0xff; x >>= 8;
553 p[3] = x & 0xff; x >>= 8;
554 p[2] = x & 0xff; x >>= 8;
555 p[1] = x & 0xff; x >>= 8;
556 p[0] = x & 0xff; x >>= 8;
557}
558
daa895cb
GS
559/**
560 * Write a 64 bits unsigned integer to memory stored as little endian.
561 * @param p a pointer to the output memory
562 * @param x the input unsigned integer
563 */
564static inline void write_u64le(uint8_t *p, uint64_t x)
565{
566 p[0] = x & 0xff; x >>= 8;
567 p[1] = x & 0xff; x >>= 8;
568 p[2] = x & 0xff; x >>= 8;
569 p[3] = x & 0xff; x >>= 8;
570 p[4] = x & 0xff; x >>= 8;
571 p[5] = x & 0xff; x >>= 8;
572 p[6] = x & 0xff; x >>= 8;
573 p[7] = x & 0xff; x >>= 8;
574}
575#define WL64(p, x) write_u64le((uint8_t *)(p), (uint64_t)(x))
576
a2632bca
AJ
577/**
578 * Write a 32 bits float to memory stored as big endian.
579 * @param p a pointer to the output memory
580 * @param x the input float
581 */
f1833600
GS
582static inline void write_fltbe(uint8_t *p, float x)
583{
584 union { uint32_t u; float f; } u;
585 u.f = x;
586 write_u32be(p, u.u);
587}
588#define WBFL(p, x) write_fltbe((uint8_t *)(p), (x))
a2632bca
AJ
589
590/**
591 * Write a 32 bits float to memory stored as little endian.
592 * @param p a pointer to the output memory
593 * @param x the input float
594 */
f1833600
GS
595static inline void write_fltle(uint8_t *p, float x)
596{
597 union { uint32_t u; float f; } u;
598 u.f = x;
599 write_u32le(p, u.u);
600}
601#define WLFL(p, x) write_fltle((uint8_t *)(p), float (x))
602
daa895cb
GS
603/**
604 * Write a 64 bits float to memory stored as little endian.
605 * @param p a pointer to the output memory
606 * @param x the input floating point value
607 */
608static inline void write_dblle(uint8_t *p, double x)
609{
610 union { uint64_t u; double f; } u;
611 u.f = x;
612 write_u64le(p, u.u);
613}
614#define WLDB(p, x) write_dblle((uint8_t *)(p), float (x))
615
f1833600
GS
616/* Endianess conversion helpers with read/write position increment. */
617
618/**
619 * Read unsigned 8bit integer from raw memory, increment read position.
620 * @param[in, out] p Pointer into byte stream.
621 * @return Retrieved integer value, unsigned.
622 */
623static inline uint8_t read_u8_inc(const uint8_t **p)
624{
625 uint8_t v;
626
627 if (!p || !*p)
628 return 0;
629 v = read_u8(*p);
630 *p += sizeof(v);
631
632 return v;
633}
634
e721b1bf
GS
635/**
636 * Read unsigned 8bit integer, check length, increment read position.
637 * @param[in, out] p Pointer into byte stream.
638 * @param[in, out] l Remaining input payload length.
639 * @return Retrieved integer value, unsigned.
640 */
641static inline uint8_t read_u8_inc_len(const uint8_t **p, size_t *l)
642{
643 uint8_t v;
644
645 if (!p || !*p)
646 return 0;
647 if (l && *l < sizeof(v)) {
648 *l = 0;
649 return 0;
650 }
651 v = read_u8(*p);
652 *p += sizeof(v);
653 if (l)
654 *l -= sizeof(v);
655
656 return v;
657}
658
e4bcc63d
GS
659/**
660 * Read signed 8bit integer from raw memory, increment read position.
661 * @param[in, out] p Pointer into byte stream.
662 * @return Retrieved integer value, signed.
663 */
664static inline int8_t read_i8_inc(const uint8_t **p)
665{
666 int8_t v;
667
668 if (!p || !*p)
669 return 0;
670 v = read_i8(*p);
671 *p += sizeof(v);
672
673 return v;
674}
675
f1833600
GS
676/**
677 * Read unsigned 16bit integer from raw memory (big endian format), increment read position.
678 * @param[in, out] p Pointer into byte stream.
679 * @return Retrieved integer value, unsigned.
680 */
681static inline uint16_t read_u16be_inc(const uint8_t **p)
682{
683 uint16_t v;
684
685 if (!p || !*p)
686 return 0;
687 v = read_u16be(*p);
688 *p += sizeof(v);
689
690 return v;
691}
692
693/**
694 * Read unsigned 16bit integer from raw memory (little endian format), increment read position.
695 * @param[in, out] p Pointer into byte stream.
696 * @return Retrieved integer value, unsigned.
697 */
698static inline uint16_t read_u16le_inc(const uint8_t **p)
699{
700 uint16_t v;
701
702 if (!p || !*p)
703 return 0;
704 v = read_u16le(*p);
705 *p += sizeof(v);
706
707 return v;
708}
709
e721b1bf
GS
710/**
711 * Read unsigned 16bit integer (LE format), check length, increment position.
712 * @param[in, out] p Pointer into byte stream.
713 * @param[in, out] l Remaining input payload length.
714 * @return Retrieved integer value, unsigned.
715 */
716static inline uint16_t read_u16le_inc_len(const uint8_t **p, size_t *l)
717{
718 uint16_t v;
719
720 if (!p || !*p)
721 return 0;
722 if (l && *l < sizeof(v)) {
723 *l = 0;
724 return 0;
725 }
726 v = read_u16le(*p);
727 *p += sizeof(v);
728 if (l)
729 *l -= sizeof(v);
730
731 return v;
732}
733
f1833600 734/**
e4bcc63d 735 * Read signed 16bit integer from raw memory (big endian format), increment read position.
f1833600 736 * @param[in, out] p Pointer into byte stream.
e4bcc63d 737 * @return Retrieved integer value, signed.
f1833600 738 */
e4bcc63d 739static inline int16_t read_i16be_inc(const uint8_t **p)
f1833600 740{
e4bcc63d 741 int16_t v;
f1833600
GS
742
743 if (!p || !*p)
744 return 0;
e4bcc63d
GS
745 v = read_i16be(*p);
746 *p += sizeof(v);
747
748 return v;
749}
750
751/**
752 * Read signed 16bit integer from raw memory (little endian format), increment read position.
753 * @param[in, out] p Pointer into byte stream.
754 * @return Retrieved integer value, signed.
755 */
756static inline int16_t read_i16le_inc(const uint8_t **p)
757{
758 int16_t v;
759
760 if (!p || !*p)
761 return 0;
762 v = read_i16le(*p);
f1833600
GS
763 *p += sizeof(v);
764
765 return v;
766}
767
080b6bcf
GS
768/**
769 * Read unsigned 24bit integer from raw memory (little endian format), increment read position.
770 * @param[in, out] p Pointer into byte stream.
771 * @return Retrieved integer value, unsigned.
772 */
773static inline uint32_t read_u24le_inc(const uint8_t **p)
774{
775 uint32_t v;
776
777 if (!p || !*p)
778 return 0;
779 v = read_u24le(*p);
780 *p += 3 * sizeof(uint8_t);
781
782 return v;
783}
784
e4bcc63d
GS
785/**
786 * Read unsigned 32bit integer from raw memory (big endian format), increment read position.
787 * @param[in, out] p Pointer into byte stream.
788 * @return Retrieved integer value, unsigned.
789 */
790static inline uint32_t read_u32be_inc(const uint8_t **p)
791{
792 uint32_t v;
793
794 if (!p || !*p)
795 return 0;
796 v = read_u32be(*p);
797 *p += sizeof(v);
798
799 return v;
800}
801
f1833600
GS
802/**
803 * Read unsigned 32bit integer from raw memory (little endian format), increment read position.
804 * @param[in, out] p Pointer into byte stream.
805 * @return Retrieved integer value, unsigned.
806 */
807static inline uint32_t read_u32le_inc(const uint8_t **p)
808{
809 uint32_t v;
810
811 if (!p || !*p)
812 return 0;
813 v = read_u32le(*p);
814 *p += sizeof(v);
815
816 return v;
817}
818
e4bcc63d
GS
819/**
820 * Read signed 32bit integer from raw memory (big endian format), increment read position.
821 * @param[in, out] p Pointer into byte stream.
822 * @return Retrieved integer value, signed.
823 */
824static inline int32_t read_i32be_inc(const uint8_t **p)
825{
826 int32_t v;
827
828 if (!p || !*p)
829 return 0;
830 v = read_i32be(*p);
831 *p += sizeof(v);
832
833 return v;
834}
835
836/**
837 * Read signed 32bit integer from raw memory (little endian format), increment read position.
838 * @param[in, out] p Pointer into byte stream.
839 * @return Retrieved integer value, signed.
840 */
841static inline int32_t read_i32le_inc(const uint8_t **p)
842{
843 int32_t v;
844
845 if (!p || !*p)
846 return 0;
847 v = read_i32le(*p);
848 *p += sizeof(v);
849
850 return v;
851}
852
f1833600
GS
853/**
854 * Read unsigned 64bit integer from raw memory (big endian format), increment read position.
855 * @param[in, out] p Pointer into byte stream.
856 * @return Retrieved integer value, unsigned.
857 */
858static inline uint64_t read_u64be_inc(const uint8_t **p)
859{
860 uint64_t v;
861
862 if (!p || !*p)
863 return 0;
864 v = read_u64be(*p);
865 *p += sizeof(v);
866
867 return v;
868}
869
870/**
871 * Read unsigned 64bit integer from raw memory (little endian format), increment read position.
872 * @param[in, out] p Pointer into byte stream.
873 * @return Retrieved integer value, unsigned.
874 */
875static inline uint64_t read_u64le_inc(const uint8_t **p)
876{
877 uint64_t v;
878
879 if (!p || !*p)
880 return 0;
881 v = read_u64le(*p);
882 *p += sizeof(v);
883
884 return v;
885}
886
e4bcc63d
GS
887/**
888 * Read 32bit float from raw memory (big endian format), increment read position.
889 * @param[in, out] p Pointer into byte stream.
890 * @return Retrieved float value.
891 */
892static inline float read_fltbe_inc(const uint8_t **p)
893{
894 float v;
895
896 if (!p || !*p)
897 return 0;
898 v = read_fltbe(*p);
899 *p += sizeof(v);
900
901 return v;
902}
903
daa895cb
GS
904/**
905 * Read 32bit float from raw memory (little endian format), increment read position.
906 * @param[in, out] p Pointer into byte stream.
907 * @return Retrieved float value.
908 */
909static inline float read_fltle_inc(const uint8_t **p)
910{
911 float v;
912
913 if (!p || !*p)
914 return 0;
915 v = read_fltle(*p);
916 *p += sizeof(v);
917
918 return v;
919}
920
e4bcc63d
GS
921/**
922 * Read 64bit float from raw memory (big endian format), increment read position.
923 * @param[in, out] p Pointer into byte stream.
924 * @return Retrieved float value.
925 */
926static inline double read_dblbe_inc(const uint8_t **p)
927{
928 double v;
929
930 if (!p || !*p)
931 return 0;
932 v = read_dblbe(*p);
933 *p += sizeof(v);
934
935 return v;
936}
937
daa895cb
GS
938/**
939 * Read 64bit float from raw memory (little endian format), increment read position.
940 * @param[in, out] p Pointer into byte stream.
941 * @return Retrieved float value.
942 */
943static inline double read_dblle_inc(const uint8_t **p)
944{
945 double v;
946
947 if (!p || !*p)
948 return 0;
949 v = read_dblle(*p);
950 *p += sizeof(v);
951
952 return v;
953}
954
f1833600
GS
955/**
956 * Write unsigned 8bit integer to raw memory, increment write position.
957 * @param[in, out] p Pointer into byte stream.
958 * @param[in] x Value to write.
959 */
960static inline void write_u8_inc(uint8_t **p, uint8_t x)
961{
962 if (!p || !*p)
963 return;
964 write_u8(*p, x);
965 *p += sizeof(x);
966}
967
968/**
969 * Write unsigned 16bit big endian integer to raw memory, increment write position.
970 * @param[in, out] p Pointer into byte stream.
971 * @param[in] x Value to write.
972 */
973static inline void write_u16be_inc(uint8_t **p, uint16_t x)
974{
975 if (!p || !*p)
976 return;
977 write_u16be(*p, x);
978 *p += sizeof(x);
979}
980
981/**
982 * Write unsigned 16bit little endian integer to raw memory, increment write position.
983 * @param[in, out] p Pointer into byte stream.
984 * @param[in] x Value to write.
985 */
986static inline void write_u16le_inc(uint8_t **p, uint16_t x)
987{
988 if (!p || !*p)
989 return;
990 write_u16le(*p, x);
991 *p += sizeof(x);
992}
993
15526343
GS
994/**
995 * Write unsigned 24bit liggle endian integer to raw memory, increment write position.
996 * @param[in, out] p Pointer into byte stream.
997 * @param[in] x Value to write.
998 */
999static inline void write_u24le_inc(uint8_t **p, uint32_t x)
1000{
1001 if (!p || !*p)
1002 return;
1003 write_u24le(*p, x);
1004 *p += 3 * sizeof(uint8_t);
1005}
1006
f1833600
GS
1007/**
1008 * Write unsigned 32bit big endian integer to raw memory, increment write position.
1009 * @param[in, out] p Pointer into byte stream.
1010 * @param[in] x Value to write.
1011 */
1012static inline void write_u32be_inc(uint8_t **p, uint32_t x)
1013{
1014 if (!p || !*p)
1015 return;
1016 write_u32be(*p, x);
1017 *p += sizeof(x);
1018}
1019
1020/**
1021 * Write unsigned 32bit little endian integer to raw memory, increment write position.
1022 * @param[in, out] p Pointer into byte stream.
1023 * @param[in] x Value to write.
1024 */
1025static inline void write_u32le_inc(uint8_t **p, uint32_t x)
1026{
1027 if (!p || !*p)
1028 return;
1029 write_u32le(*p, x);
1030 *p += sizeof(x);
1031}
a2632bca 1032
15526343
GS
1033/**
1034 * Write unsigned 40bit little endian integer to raw memory, increment write position.
1035 * @param[in, out] p Pointer into byte stream.
1036 * @param[in] x Value to write.
1037 */
1038static inline void write_u40le_inc(uint8_t **p, uint64_t x)
1039{
1040 if (!p || !*p)
1041 return;
1042 write_u40le(*p, x);
1043 *p += 5 * sizeof(uint8_t);
1044}
1045
797c8d90
GS
1046/**
1047 * Write unsigned 48bit little endian integer to raw memory, increment write position.
1048 * @param[in, out] p Pointer into byte stream.
1049 * @param[in] x Value to write.
1050 */
1051static inline void write_u48le_inc(uint8_t **p, uint64_t x)
1052{
1053 if (!p || !*p)
1054 return;
1055 write_u48le(*p, x);
1056 *p += 48 / 8 * sizeof(uint8_t);
1057}
1058
daa895cb
GS
1059/**
1060 * Write unsigned 64bit little endian integer to raw memory, increment write position.
1061 * @param[in, out] p Pointer into byte stream.
1062 * @param[in] x Value to write.
1063 */
1064static inline void write_u64le_inc(uint8_t **p, uint64_t x)
1065{
1066 if (!p || !*p)
1067 return;
1068 write_u64le(*p, x);
1069 *p += sizeof(x);
1070}
1071
1072/**
1073 * Write single precision little endian float to raw memory, increment write position.
1074 * @param[in, out] p Pointer into byte stream.
1075 * @param[in] x Value to write.
1076 */
1077static inline void write_fltle_inc(uint8_t **p, float x)
1078{
1079 if (!p || !*p)
1080 return;
1081 write_fltle(*p, x);
1082 *p += sizeof(x);
1083}
1084
1085/**
1086 * Write double precision little endian float to raw memory, increment write position.
1087 * @param[in, out] p Pointer into byte stream.
1088 * @param[in] x Value to write.
1089 */
1090static inline void write_dblle_inc(uint8_t **p, double x)
1091{
1092 if (!p || !*p)
1093 return;
1094 write_dblle(*p, x);
1095 *p += sizeof(x);
1096}
1097
6bf4273e
UH
1098/* Portability fixes for FreeBSD. */
1099#ifdef __FreeBSD__
1100#define LIBUSB_CLASS_APPLICATION 0xfe
15eea61a 1101#define libusb_has_capability(x) 0
6bf4273e
UH
1102#define libusb_handle_events_timeout_completed(ctx, tv, c) \
1103 libusb_handle_events_timeout(ctx, tv)
1104#endif
1105
e1a712ca
GS
1106/*
1107 * Convenience for FTDI library version dependency.
1108 * - Version 1.5 introduced ftdi_tciflush(), ftdi_tcoflush(), and
1109 * ftdi_tcioflush() all within the same commit, and deprecated
1110 * ftdi_usb_purge_buffers() which suffered from inverse semantics.
1111 * The API is drop-in compatible (arguments count and data types are
1112 * identical). The libsigrok source code always flushes RX and TX at
1113 * the same time, never individually.
1114 */
1115#if defined HAVE_FTDI_TCIOFLUSH && HAVE_FTDI_TCIOFLUSH
1116# define PURGE_FTDI_BOTH ftdi_tcioflush
1117#else
1118# define PURGE_FTDI_BOTH ftdi_usb_purge_buffers
1119#endif
1120
1685c276
BV
1121/* Static definitions of structs ending with an all-zero entry are a
1122 * problem when compiling with -Wmissing-field-initializers: GCC
1123 * suppresses the warning only with { 0 }, clang wants { } */
1124#ifdef __clang__
1125#define ALL_ZERO { }
1126#else
1127#define ALL_ZERO { 0 }
1128#endif
1129
dd5c48a6
LPC
1130#ifdef __APPLE__
1131#define SR_DRIVER_LIST_SECTION "__DATA,__sr_driver_list"
1132#else
02a8c07d 1133#define SR_DRIVER_LIST_SECTION "__sr_driver_list"
dd5c48a6
LPC
1134#endif
1135
3decd3b1
GS
1136#if !defined SR_DRIVER_LIST_NOREORDER && defined __has_attribute
1137#if __has_attribute(no_reorder)
1138#define SR_DRIVER_LIST_NOREORDER __attribute__((no_reorder))
1139#endif
1140#endif
1141#if !defined SR_DRIVER_LIST_NOREORDER
1142#define SR_DRIVER_LIST_NOREORDER /* EMPTY */
1143#endif
1144
dd5c48a6
LPC
1145/**
1146 * Register a list of hardware drivers.
1147 *
1148 * This macro can be used to register multiple hardware drivers to the library.
1149 * This is useful when a driver supports multiple similar but slightly
1150 * different devices that require different sr_dev_driver struct definitions.
1151 *
1152 * For registering only a single driver see SR_REGISTER_DEV_DRIVER().
1153 *
1154 * Example:
1155 * @code{c}
1156 * #define MY_DRIVER(_name) \
1157 * &(struct sr_dev_driver){ \
1158 * .name = _name, \
1159 * ...
1160 * };
1161 *
1162 * SR_REGISTER_DEV_DRIVER_LIST(my_driver_infos,
1163 * MY_DRIVER("driver 1"),
1164 * MY_DRIVER("driver 2"),
1165 * ...
1166 * );
1167 * @endcode
1168 *
1169 * @param name Name to use for the driver list identifier.
1170 * @param ... Comma separated list of pointers to sr_dev_driver structs.
1171 */
1172#define SR_REGISTER_DEV_DRIVER_LIST(name, ...) \
1173 static const struct sr_dev_driver *name[] \
3decd3b1 1174 SR_DRIVER_LIST_NOREORDER \
dd5c48a6
LPC
1175 __attribute__((section (SR_DRIVER_LIST_SECTION), used, \
1176 aligned(sizeof(struct sr_dev_driver *)))) \
1177 = { \
1178 __VA_ARGS__ \
1179 };
1180
1181/**
1182 * Register a hardware driver.
1183 *
1184 * This macro is used to register a hardware driver with the library. It has
1185 * to be used in order to make the driver accessible to applications using the
1186 * library.
1187 *
1188 * The macro invocation should be placed directly under the struct
1189 * sr_dev_driver definition.
1190 *
1191 * Example:
1192 * @code{c}
1193 * static struct sr_dev_driver driver_info = {
1194 * .name = "driver",
1195 * ....
1196 * };
1197 * SR_REGISTER_DEV_DRIVER(driver_info);
1198 * @endcode
1199 *
1200 * @param name Identifier name of sr_dev_driver struct to register.
1201 */
1202#define SR_REGISTER_DEV_DRIVER(name) \
1203 SR_REGISTER_DEV_DRIVER_LIST(name##_list, &name);
1204
ced48274 1205SR_API void sr_drivers_init(struct sr_context *context);
5d8b3913 1206
b8072700 1207struct sr_context {
032da34b 1208 struct sr_dev_driver **driver_list;
785b9ff2
PS
1209#ifdef HAVE_LIBUSB_1_0
1210 libusb_context *libusb_ctx;
1211#endif
bee24666
DE
1212 sr_resource_open_callback resource_open_cb;
1213 sr_resource_close_callback resource_close_cb;
1214 sr_resource_read_callback resource_read_cb;
1215 void *resource_cb_data;
b8072700
PS
1216};
1217
20e88821
BV
1218/** Input module metadata keys. */
1219enum sr_input_meta_keys {
1220 /** The input filename, if there is one. */
1221 SR_INPUT_META_FILENAME = 0x01,
1222 /** The input file's size in bytes. */
1223 SR_INPUT_META_FILESIZE = 0x02,
1224 /** The first 128 bytes of the file, provided as a GString. */
1225 SR_INPUT_META_HEADER = 0x04,
20e88821
BV
1226
1227 /** The module cannot identify a file without this metadata. */
1228 SR_INPUT_META_REQUIRED = 0x80,
1229};
1230
d514d35d
BV
1231/** Input (file) module struct. */
1232struct sr_input {
1233 /**
1234 * A pointer to this input module's 'struct sr_input_module'.
d514d35d 1235 */
17bfaca6
BV
1236 const struct sr_input_module *module;
1237 GString *buf;
d514d35d 1238 struct sr_dev_inst *sdi;
d0181813 1239 gboolean sdi_ready;
17bfaca6 1240 void *priv;
d514d35d
BV
1241};
1242
1243/** Input (file) module driver. */
1244struct sr_input_module {
17bfaca6 1245 /**
d65fcbcd 1246 * A unique ID for this input module, suitable for use in command-line
17bfaca6
BV
1247 * clients, [a-z0-9-]. Must not be NULL.
1248 */
1249 const char *id;
d514d35d
BV
1250
1251 /**
d65fcbcd 1252 * A unique name for this input module, suitable for use in GUI
17bfaca6 1253 * clients, can contain UTF-8. Must not be NULL.
d514d35d 1254 */
17bfaca6 1255 const char *name;
d514d35d
BV
1256
1257 /**
d65fcbcd 1258 * A short description of the input module. Must not be NULL.
d514d35d 1259 *
d65fcbcd 1260 * This can be displayed by frontends, e.g. when selecting the input
17bfaca6
BV
1261 * module for saving a file.
1262 */
1263 const char *desc;
1264
c7bc82ff
JH
1265 /**
1266 * A NULL terminated array of strings containing a list of file name
1267 * extensions typical for the input file format, or NULL if there is
1268 * no typical extension for this file format.
1269 */
1270 const char *const *exts;
1271
17bfaca6
BV
1272 /**
1273 * Zero-terminated list of metadata items the module needs to be able
1274 * to identify an input stream. Can be all-zero, if the module cannot
1275 * identify streams at all, i.e. has to be forced into use.
1276 *
1277 * Each item is one of:
1278 * SR_INPUT_META_FILENAME
1279 * SR_INPUT_META_FILESIZE
1280 * SR_INPUT_META_HEADER
17bfaca6
BV
1281 *
1282 * If the high bit (SR_INPUT META_REQUIRED) is set, the module cannot
1283 * identify a stream without the given metadata.
1284 */
1285 const uint8_t metadata[8];
1286
1287 /**
1288 * Returns a NULL-terminated list of options this module can take.
1289 * Can be NULL, if the module has no options.
1290 */
2c240774 1291 const struct sr_option *(*options) (void);
17bfaca6
BV
1292
1293 /**
1294 * Check if this input module can load and parse the specified stream.
1295 *
1296 * @param[in] metadata Metadata the module can use to identify the stream.
54ee427d
GS
1297 * @param[out] confidence "Strength" of the detection.
1298 * Specialized handlers can take precedence over generic/basic support.
d514d35d 1299 *
4f979115 1300 * @retval SR_OK This module knows the format.
753793ef 1301 * @retval SR_ERR_NA There wasn't enough data for this module to
4f979115 1302 * positively identify the format.
d9251a2c
UH
1303 * @retval SR_ERR_DATA This module knows the format, but cannot handle
1304 * it. This means the stream is either corrupt, or indicates a
1305 * feature that the module does not support.
4f979115 1306 * @retval SR_ERR This module does not know the format.
54ee427d
GS
1307 *
1308 * Lower numeric values of 'confidence' mean that the input module
1309 * stronger believes in its capability to handle this specific format.
1310 * This way, multiple input modules can claim support for a format,
1311 * and the application can pick the best match, or try fallbacks
1312 * in case of errors. This approach also copes with formats that
1313 * are unreliable to detect in the absence of magic signatures.
d514d35d 1314 */
54ee427d 1315 int (*format_match) (GHashTable *metadata, unsigned int *confidence);
d514d35d
BV
1316
1317 /**
1318 * Initialize the input module.
1319 *
d514d35d
BV
1320 * @retval SR_OK Success
1321 * @retval other Negative error code.
1322 */
17bfaca6 1323 int (*init) (struct sr_input *in, GHashTable *options);
d514d35d
BV
1324
1325 /**
753793ef 1326 * Send data to the specified input instance.
d514d35d 1327 *
753793ef
BV
1328 * When an input module instance is created with sr_input_new(), this
1329 * function is used to feed data to the instance.
d514d35d 1330 *
753793ef
BV
1331 * As enough data gets fed into this function to completely populate
1332 * the device instance associated with this input instance, this is
1333 * guaranteed to return the moment it's ready. This gives the caller
1334 * the chance to examine the device instance, attach session callbacks
1335 * and so on.
17bfaca6
BV
1336 *
1337 * @retval SR_OK Success
1338 * @retval other Negative error code.
1339 */
d0181813 1340 int (*receive) (struct sr_input *in, GString *buf);
17bfaca6 1341
753793ef
BV
1342 /**
1343 * Signal the input module no more data will come.
1344 *
1345 * This will cause the module to process any data it may have buffered.
1346 * The SR_DF_END packet will also typically be sent at this time.
1347 */
7066fd46
BV
1348 int (*end) (struct sr_input *in);
1349
d9251a2c
UH
1350 /**
1351 * Reset the input module's input handling structures.
1352 *
1353 * Causes the input module to reset its internal state so that we can
1354 * re-send the input data from the beginning without having to
1355 * re-create the entire input module.
1356 *
1357 * @retval SR_OK Success.
1358 * @retval other Negative error code.
1359 */
b6b4f03e
SA
1360 int (*reset) (struct sr_input *in);
1361
17bfaca6
BV
1362 /**
1363 * This function is called after the caller is finished using
1364 * the input module, and can be used to free any internal
1365 * resources the module may keep.
d514d35d 1366 *
753793ef
BV
1367 * This function is optional.
1368 *
d514d35d
BV
1369 * @retval SR_OK Success
1370 * @retval other Negative error code.
1371 */
d5cc282f 1372 void (*cleanup) (struct sr_input *in);
d514d35d
BV
1373};
1374
a755b0e1
BV
1375/** Output module instance. */
1376struct sr_output {
d9251a2c 1377 /** A pointer to this output's module. */
a755b0e1
BV
1378 const struct sr_output_module *module;
1379
1380 /**
1381 * The device for which this output module is creating output. This
1382 * can be used by the module to find out channel names and numbers.
1383 */
1384 const struct sr_dev_inst *sdi;
1385
81b3ce37
SA
1386 /**
1387 * The name of the file that the data should be written to.
1388 */
1389 const char *filename;
1390
a755b0e1
BV
1391 /**
1392 * A generic pointer which can be used by the module to keep internal
1393 * state between calls into its callback functions.
1394 *
1395 * For example, the module might store a pointer to a chunk of output
1396 * there, and only flush it when it reaches a certain size.
1397 */
d686c5ec 1398 void *priv;
a755b0e1
BV
1399};
1400
1401/** Output module driver. */
1402struct sr_output_module {
1403 /**
1404 * A unique ID for this output module, suitable for use in command-line
1405 * clients, [a-z0-9-]. Must not be NULL.
1406 */
2c240774 1407 const char *id;
a755b0e1
BV
1408
1409 /**
1410 * A unique name for this output module, suitable for use in GUI
1411 * clients, can contain UTF-8. Must not be NULL.
1412 */
1413 const char *name;
1414
1415 /**
1416 * A short description of the output module. Must not be NULL.
1417 *
1418 * This can be displayed by frontends, e.g. when selecting the output
1419 * module for saving a file.
1420 */
2c240774 1421 const char *desc;
a755b0e1 1422
8a174d23
JH
1423 /**
1424 * A NULL terminated array of strings containing a list of file name
1425 * extensions typical for the input file format, or NULL if there is
1426 * no typical extension for this file format.
1427 */
1428 const char *const *exts;
1429
3cd4b381
SA
1430 /**
1431 * Bitfield containing flags that describe certain properties
1432 * this output module may or may not have.
1433 * @see sr_output_flags
1434 */
1435 const uint64_t flags;
1436
a755b0e1
BV
1437 /**
1438 * Returns a NULL-terminated list of options this module can take.
1439 * Can be NULL, if the module has no options.
a755b0e1 1440 */
af7d656d 1441 const struct sr_option *(*options) (void);
a755b0e1
BV
1442
1443 /**
1444 * This function is called once, at the beginning of an output stream.
1445 *
1446 * The device struct will be available in the output struct passed in,
1447 * as well as the param field -- which may be NULL or an empty string,
1448 * if no parameter was passed.
1449 *
1450 * The module can use this to initialize itself, create a struct for
1451 * keeping state and storing it in the <code>internal</code> field.
1452 *
1453 * @param o Pointer to the respective 'struct sr_output'.
1454 *
1455 * @retval SR_OK Success
1456 * @retval other Negative error code.
1457 */
1458 int (*init) (struct sr_output *o, GHashTable *options);
1459
1460 /**
f3f19d11 1461 * This function is passed a copy of every packet in the data feed.
a755b0e1
BV
1462 * Any output generated by the output module in response to the
1463 * packet should be returned in a newly allocated GString
1464 * <code>out</code>, which will be freed by the caller.
1465 *
1466 * Packets not of interest to the output module can just be ignored,
1467 * and the <code>out</code> parameter set to NULL.
1468 *
1469 * @param o Pointer to the respective 'struct sr_output'.
1470 * @param sdi The device instance that generated the packet.
1471 * @param packet The complete packet.
1472 * @param out A pointer where a GString * should be stored if
1473 * the module generates output, or NULL if not.
1474 *
1475 * @retval SR_OK Success
1476 * @retval other Negative error code.
1477 */
1478 int (*receive) (const struct sr_output *o,
1479 const struct sr_datafeed_packet *packet, GString **out);
1480
1481 /**
1482 * This function is called after the caller is finished using
1483 * the output module, and can be used to free any internal
1484 * resources the module may keep.
1485 *
1486 * @retval SR_OK Success
1487 * @retval other Negative error code.
1488 */
1489 int (*cleanup) (struct sr_output *o);
1490};
1491
790320f6
UH
1492/** Transform module instance. */
1493struct sr_transform {
d9251a2c 1494 /** A pointer to this transform's module. */
790320f6
UH
1495 const struct sr_transform_module *module;
1496
1497 /**
1498 * The device for which this transform module is used. This
1499 * can be used by the module to find out channel names and numbers.
1500 */
1501 const struct sr_dev_inst *sdi;
1502
1503 /**
1504 * A generic pointer which can be used by the module to keep internal
1505 * state between calls into its callback functions.
1506 */
1507 void *priv;
1508};
1509
1510struct sr_transform_module {
1511 /**
1512 * A unique ID for this transform module, suitable for use in
1513 * command-line clients, [a-z0-9-]. Must not be NULL.
1514 */
2c240774 1515 const char *id;
790320f6
UH
1516
1517 /**
1518 * A unique name for this transform module, suitable for use in GUI
1519 * clients, can contain UTF-8. Must not be NULL.
1520 */
1521 const char *name;
1522
1523 /**
1524 * A short description of the transform module. Must not be NULL.
1525 *
1526 * This can be displayed by frontends, e.g. when selecting
1527 * which transform module(s) to add.
1528 */
2c240774 1529 const char *desc;
790320f6
UH
1530
1531 /**
1532 * Returns a NULL-terminated list of options this transform module
1533 * can take. Can be NULL, if the transform module has no options.
1534 */
1535 const struct sr_option *(*options) (void);
1536
1537 /**
1538 * This function is called once, at the beginning of a stream.
1539 *
1540 * @param t Pointer to the respective 'struct sr_transform'.
1541 * @param options Hash table of options for this transform module.
1542 * Can be NULL if no options are to be used.
1543 *
1544 * @retval SR_OK Success
1545 * @retval other Negative error code.
1546 */
1547 int (*init) (struct sr_transform *t, GHashTable *options);
1548
1549 /**
1550 * This function is passed a pointer to every packet in the data feed.
1551 *
1552 * It can either return (in packet_out) a pointer to another packet
1553 * (possibly the exact same packet it got as input), or NULL.
1554 *
1555 * @param t Pointer to the respective 'struct sr_transform'.
1556 * @param packet_in Pointer to a datafeed packet.
1557 * @param packet_out Pointer to the resulting datafeed packet after
1558 * this function was run. If NULL, the transform
1559 * module intentionally didn't output a new packet.
1560 *
1561 * @retval SR_OK Success
1562 * @retval other Negative error code.
1563 */
1564 int (*receive) (const struct sr_transform *t,
1565 struct sr_datafeed_packet *packet_in,
1566 struct sr_datafeed_packet **packet_out);
1567
1568 /**
1569 * This function is called after the caller is finished using
1570 * the transform module, and can be used to free any internal
1571 * resources the module may keep.
1572 *
1573 * @retval SR_OK Success
1574 * @retval other Negative error code.
1575 */
1576 int (*cleanup) (struct sr_transform *t);
1577};
1578
69890f73 1579#ifdef HAVE_LIBUSB_1_0
04cb9157 1580/** USB device instance */
d68e2d1a 1581struct sr_usb_dev_inst {
98582bf5
BV
1582 /** USB bus */
1583 uint8_t bus;
1584 /** Device address on USB bus */
1585 uint8_t address;
1586 /** libusb device handle */
1587 struct libusb_device_handle *devhdl;
69890f73
UH
1588};
1589#endif
1590
1ac8c218 1591struct sr_serial_dev_inst;
1df81f4b 1592#ifdef HAVE_SERIAL_COMM
a7b8692e 1593struct ser_lib_functions;
edec0436 1594struct ser_hid_chip_functions;
b79c3422 1595struct sr_bt_desc;
d4787248
GS
1596typedef void (*serial_rx_chunk_callback)(struct sr_serial_dev_inst *serial,
1597 void *cb_data, const void *buf, size_t count);
d68e2d1a 1598struct sr_serial_dev_inst {
98582bf5
BV
1599 /** Port name, e.g. '/dev/tty42'. */
1600 char *port;
1601 /** Comm params for serial_set_paramstr(). */
1602 char *serialcomm;
a7b8692e 1603 struct ser_lib_functions *lib_funcs;
639c6f61
GS
1604 struct {
1605 int bit_rate;
1606 int data_bits;
1607 int parity_bits;
1608 int stop_bits;
1609 } comm_params;
ad5aa993 1610 GString *rcv_buffer;
d4787248
GS
1611 serial_rx_chunk_callback rx_chunk_cb_func;
1612 void *rx_chunk_cb_data;
a7b8692e 1613#ifdef HAVE_LIBSERIALPORT
98582bf5 1614 /** libserialport port handle */
271392d9 1615 struct sp_port *sp_data;
a7b8692e 1616#endif
4417074c 1617#ifdef HAVE_LIBHIDAPI
edec0436
GS
1618 enum ser_hid_chip_t {
1619 SER_HID_CHIP_UNKNOWN, /**!< place holder */
a10284cd 1620 SER_HID_CHIP_BTC_BU86X, /**!< Brymen BU86x */
616bc3a1 1621 SER_HID_CHIP_SIL_CP2110, /**!< SiLabs CP2110 */
0cdb72c8 1622 SER_HID_CHIP_VICTOR_DMM, /**!< Victor 70/86 DMM cable */
828eeea2 1623 SER_HID_CHIP_WCH_CH9325, /**!< WCH CH9325 */
edec0436
GS
1624 SER_HID_CHIP_LAST, /**!< sentinel */
1625 } hid_chip;
1626 struct ser_hid_chip_functions *hid_chip_funcs;
1627 char *usb_path;
1628 char *usb_serno;
1629 const char *hid_path;
4417074c 1630 hid_device *hid_dev;
edec0436 1631 GSList *hid_source_args;
4417074c 1632#endif
b79c3422
GS
1633#ifdef HAVE_BLUETOOTH
1634 enum ser_bt_conn_t {
1635 SER_BT_CONN_UNKNOWN, /**!< place holder */
1636 SER_BT_CONN_RFCOMM, /**!< BT classic, RFCOMM channel */
1637 SER_BT_CONN_BLE122, /**!< BLE, BLE122 module, indications */
1638 SER_BT_CONN_NRF51, /**!< BLE, Nordic nRF51, notifications */
1639 SER_BT_CONN_CC254x, /**!< BLE, TI CC254x, notifications */
d0a73799 1640 SER_BT_CONN_AC6328, /**!< BLE, JL AC6328B, notifications */
329ef9d8 1641 SER_BT_CONN_DIALOG, /**!< BLE, dialog DA14580, notifications */
dae34e30 1642 SER_BT_CONN_NOTIFY, /**!< BLE, generic notifications */
b79c3422
GS
1643 SER_BT_CONN_MAX, /**!< sentinel */
1644 } bt_conn_type;
1645 char *bt_addr_local;
1646 char *bt_addr_remote;
1647 size_t bt_rfcomm_channel;
1648 uint16_t bt_notify_handle_read;
1649 uint16_t bt_notify_handle_write;
1650 uint16_t bt_notify_handle_cccd;
1651 uint16_t bt_notify_value_cccd;
25d7c995 1652 uint16_t bt_ble_mtu;
b79c3422
GS
1653 struct sr_bt_desc *bt_desc;
1654 GSList *bt_source_args;
1655#endif
69890f73 1656};
c4f2dfd0 1657#endif
69890f73 1658
ae67644f
ML
1659struct sr_usbtmc_dev_inst {
1660 char *device;
1661 int fd;
1662};
1663
026c822d
UH
1664/* Private driver context. */
1665struct drv_context {
98582bf5
BV
1666 /** sigrok context */
1667 struct sr_context *sr_ctx;
026c822d
UH
1668 GSList *instances;
1669};
1670
48a486cd
BV
1671/*--- log.c -----------------------------------------------------------------*/
1672
00f0016c 1673#if defined(_WIN32) && (__GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 4))
7419638d
DE
1674/*
1675 * On MinGW, we need to specify the gnu_printf format flavor or GCC
1676 * will assume non-standard Microsoft printf syntax.
1677 */
1678SR_PRIV int sr_log(int loglevel, const char *format, ...)
1679 __attribute__((__format__ (__gnu_printf__, 2, 3)));
1680#else
be92d5b4 1681SR_PRIV int sr_log(int loglevel, const char *format, ...) G_GNUC_PRINTF(2, 3);
7419638d 1682#endif
48a486cd 1683
3544f848 1684/* Message logging helpers with subsystem-specific prefix string. */
be92d5b4
DE
1685#define sr_spew(...) sr_log(SR_LOG_SPEW, LOG_PREFIX ": " __VA_ARGS__)
1686#define sr_dbg(...) sr_log(SR_LOG_DBG, LOG_PREFIX ": " __VA_ARGS__)
1687#define sr_info(...) sr_log(SR_LOG_INFO, LOG_PREFIX ": " __VA_ARGS__)
1688#define sr_warn(...) sr_log(SR_LOG_WARN, LOG_PREFIX ": " __VA_ARGS__)
1689#define sr_err(...) sr_log(SR_LOG_ERR, LOG_PREFIX ": " __VA_ARGS__)
3544f848 1690
48a486cd
BV
1691/*--- device.c --------------------------------------------------------------*/
1692
cffdc3e6
ML
1693/** Scan options supported by a driver. */
1694#define SR_CONF_SCAN_OPTIONS 0x7FFF0000
1695
1696/** Device options for a particular device. */
1697#define SR_CONF_DEVICE_OPTIONS 0x7FFF0001
1698
e318f01b
ML
1699/** Mask for separating config keys from capabilities. */
1700#define SR_CONF_MASK 0x1fffffff
1701
f3ca73ed 1702/** Values for the changes argument of sr_dev_driver.config_channel_set. */
2a854d71 1703enum {
fca75cbb 1704 /** The enabled state of the channel has been changed. */
3f239f08 1705 SR_CHANNEL_SET_ENABLED = 1 << 0,
2a854d71
DE
1706};
1707
5e23fcab
ML
1708SR_PRIV struct sr_channel *sr_channel_new(struct sr_dev_inst *sdi,
1709 int index, int type, gboolean enabled, const char *name);
fe71c7e4
GS
1710SR_PRIV void sr_channel_free(struct sr_channel *ch);
1711SR_PRIV void sr_channel_free_cb(void *p);
9c24d16a
BV
1712SR_PRIV struct sr_channel *sr_next_enabled_channel(const struct sr_dev_inst *sdi,
1713 struct sr_channel *cur_channel);
712f981d
GS
1714SR_PRIV gboolean sr_channels_differ(struct sr_channel *ch1, struct sr_channel *ch2);
1715SR_PRIV gboolean sr_channel_lists_differ(GSList *l1, GSList *l2);
48a486cd 1716
1e7468a8
GS
1717SR_PRIV struct sr_channel_group *sr_channel_group_new(struct sr_dev_inst *sdi,
1718 const char *name, void *priv);
1719SR_PRIV void sr_channel_group_free(struct sr_channel_group *cg);
1720SR_PRIV void sr_channel_group_free_cb(void *cg);
1721
96727ef0
UH
1722/** Device instance data */
1723struct sr_dev_inst {
1724 /** Device driver. */
1725 struct sr_dev_driver *driver;
1726 /** Device instance status. SR_ST_NOT_FOUND, etc. */
1727 int status;
1728 /** Device instance type. SR_INST_USB, etc. */
1729 int inst_type;
1730 /** Device vendor. */
1731 char *vendor;
1732 /** Device model. */
1733 char *model;
1734 /** Device version. */
1735 char *version;
1736 /** Serial number. */
1737 char *serial_num;
1738 /** Connection string to uniquely identify devices. */
1739 char *connection_id;
1740 /** List of channels. */
1741 GSList *channels;
1742 /** List of sr_channel_group structs */
1743 GSList *channel_groups;
1744 /** Device instance connection data (used?) */
1745 void *conn;
1746 /** Device instance private data (used?) */
1747 void *priv;
1748 /** Session to which this device is currently assigned. */
1749 struct sr_session *session;
1750};
1751
48a486cd 1752/* Generic device instances */
48a486cd 1753SR_PRIV void sr_dev_inst_free(struct sr_dev_inst *sdi);
48a486cd 1754
545f9786 1755#ifdef HAVE_LIBUSB_1_0
69890f73 1756/* USB-specific instances */
d68e2d1a 1757SR_PRIV struct sr_usb_dev_inst *sr_usb_dev_inst_new(uint8_t bus,
69890f73 1758 uint8_t address, struct libusb_device_handle *hdl);
d68e2d1a 1759SR_PRIV void sr_usb_dev_inst_free(struct sr_usb_dev_inst *usb);
460c1334 1760SR_PRIV void sr_usb_dev_inst_free_cb(gpointer p); /* Glib wrapper. */
69890f73
UH
1761#endif
1762
1df81f4b 1763#ifdef HAVE_SERIAL_COMM
1ac8c218
GS
1764#ifndef HAVE_LIBSERIALPORT
1765/*
1766 * Some identifiers which initially got provided by libserialport are
1767 * used internally within the libsigrok serial layer's implementation,
1768 * while libserialport no longer is the exclusive provider of serial
1769 * communication support. Declare the identifiers here so they remain
1770 * available across all build configurations.
1771 */
1772enum libsp_parity {
1773 SP_PARITY_NONE = 0,
1774 SP_PARITY_ODD = 1,
1775 SP_PARITY_EVEN = 2,
1776 SP_PARITY_MARK = 3,
1777 SP_PARITY_SPACE = 4,
1778};
1779
1780enum libsp_flowcontrol {
1781 SP_FLOWCONTROL_NONE = 0,
1782 SP_FLOWCONTROL_XONXOFF = 1,
1783 SP_FLOWCONTROL_RTSCTS = 2,
1784 SP_FLOWCONTROL_DTRDSR = 3,
1785};
1786#endif
1787
69890f73 1788/* Serial-specific instances */
299bdb24
BV
1789SR_PRIV struct sr_serial_dev_inst *sr_serial_dev_inst_new(const char *port,
1790 const char *serialcomm);
d68e2d1a 1791SR_PRIV void sr_serial_dev_inst_free(struct sr_serial_dev_inst *serial);
c4f2dfd0 1792#endif
69890f73 1793
ae67644f
ML
1794/* USBTMC-specific instances */
1795SR_PRIV struct sr_usbtmc_dev_inst *sr_usbtmc_dev_inst_new(const char *device);
1796SR_PRIV void sr_usbtmc_dev_inst_free(struct sr_usbtmc_dev_inst *usbtmc);
b08024a8 1797
c09f0b57 1798/*--- hwdriver.c ------------------------------------------------------------*/
996b0c72 1799
13fef1ed 1800SR_PRIV const GVariantType *sr_variant_type_get(int datatype);
584560f1 1801SR_PRIV int sr_variant_type_check(uint32_t key, GVariant *data);
032da34b 1802SR_PRIV void sr_hw_cleanup_all(const struct sr_context *ctx);
584560f1 1803SR_PRIV struct sr_config *sr_config_new(uint32_t key, GVariant *data);
722db131 1804SR_PRIV void sr_config_free(struct sr_config *src);
f670835f 1805SR_PRIV int sr_dev_acquisition_start(struct sr_dev_inst *sdi);
d2f7c417 1806SR_PRIV int sr_dev_acquisition_stop(struct sr_dev_inst *sdi);
996b0c72 1807
a1645fcd
BV
1808/*--- session.c -------------------------------------------------------------*/
1809
e2b23821 1810struct sr_session {
4ed5d21d
ML
1811 /** Context this session exists in. */
1812 struct sr_context *ctx;
c0e3ba4b 1813 /** List of struct sr_dev_inst pointers. */
e2b23821 1814 GSList *devs;
1de3cced
ML
1815 /** List of struct sr_dev_inst pointers owned by this session. */
1816 GSList *owned_devs;
e2b23821
UH
1817 /** List of struct datafeed_callback pointers. */
1818 GSList *datafeed_callbacks;
c0a1e532 1819 GSList *transforms;
7b5e6d29 1820 struct sr_trigger *trigger;
62d7945f 1821
5de0fc55
DE
1822 /** Callback to invoke on session stop. */
1823 sr_session_stopped_callback stopped_callback;
1824 /** User data to be passed to the session stop callback. */
1825 void *stopped_cb_data;
1826
2e5e3df4 1827 /** Mutex protecting the main context pointer. */
c2bf5506
DE
1828 GMutex main_mutex;
1829 /** Context of the session main loop. */
1830 GMainContext *main_context;
e2b23821 1831
c2bf5506
DE
1832 /** Registered event sources for this session. */
1833 GHashTable *event_sources;
1834 /** Session main loop. */
1835 GMainLoop *main_loop;
5de0fc55
DE
1836 /** ID of idle source for dispatching the session stop notification. */
1837 unsigned int stop_check_id;
2e5e3df4
DE
1838 /** Whether the session has been started. */
1839 gboolean running;
e2b23821
UH
1840};
1841
62d7945f 1842SR_PRIV int sr_session_source_add_internal(struct sr_session *session,
c2bf5506 1843 void *key, GSource *source);
92248e78 1844SR_PRIV int sr_session_source_remove_internal(struct sr_session *session,
c2bf5506
DE
1845 void *key);
1846SR_PRIV int sr_session_source_destroyed(struct sr_session *session,
1847 void *key, GSource *source);
cbc1413f
DE
1848SR_PRIV int sr_session_fd_source_add(struct sr_session *session,
1849 void *key, gintptr fd, int events, int timeout,
1850 sr_receive_data_callback cb, void *cb_data);
ee9953ef
DE
1851
1852SR_PRIV int sr_session_source_add(struct sr_session *session, int fd,
1853 int events, int timeout, sr_receive_data_callback cb, void *cb_data);
1854SR_PRIV int sr_session_source_add_pollfd(struct sr_session *session,
1855 GPollFD *pollfd, int timeout, sr_receive_data_callback cb,
1856 void *cb_data);
1857SR_PRIV int sr_session_source_add_channel(struct sr_session *session,
1858 GIOChannel *channel, int events, int timeout,
1859 sr_receive_data_callback cb, void *cb_data);
1860SR_PRIV int sr_session_source_remove(struct sr_session *session, int fd);
1861SR_PRIV int sr_session_source_remove_pollfd(struct sr_session *session,
1862 GPollFD *pollfd);
1863SR_PRIV int sr_session_source_remove_channel(struct sr_session *session,
1864 GIOChannel *channel);
1865
7d1a4a52
FS
1866SR_PRIV int sr_session_send_meta(const struct sr_dev_inst *sdi,
1867 uint32_t key, GVariant *var);
de4d3f99 1868SR_PRIV int sr_session_send(const struct sr_dev_inst *sdi,
ae5859ff 1869 const struct sr_datafeed_packet *packet);
f438e0c9 1870SR_PRIV int sr_sessionfile_check(const char *filename);
7c69b528
SA
1871SR_PRIV struct sr_dev_inst *sr_session_prepare_sdi(const char *filename,
1872 struct sr_session **session);
a1645fcd 1873
98654c99
DE
1874/*--- session_file.c --------------------------------------------------------*/
1875
a6dc3dac
DE
1876#if !HAVE_ZIP_DISCARD
1877/* Replace zip_discard() if not available. */
1878#define zip_discard(zip) sr_zip_discard(zip)
1879SR_PRIV void sr_zip_discard(struct zip *archive);
1880#endif
1881
98654c99
DE
1882SR_PRIV GKeyFile *sr_sessionfile_read_metadata(struct zip *archive,
1883 const struct zip_stat *entry);
1884
41caa319
AJ
1885/*--- analog.c --------------------------------------------------------------*/
1886
edb691fc 1887SR_PRIV int sr_analog_init(struct sr_datafeed_analog *analog,
41caa319
AJ
1888 struct sr_analog_encoding *encoding,
1889 struct sr_analog_meaning *meaning,
1890 struct sr_analog_spec *spec,
1891 int digits);
1892
063e7aef
UH
1893/*--- std.c -----------------------------------------------------------------*/
1894
144f6660
UH
1895typedef int (*dev_close_callback)(struct sr_dev_inst *sdi);
1896typedef void (*std_dev_clear_callback)(void *priv);
cd2f0fe2 1897
c45c32ce 1898SR_PRIV int std_init(struct sr_dev_driver *di, struct sr_context *sr_ctx);
700d6b64 1899SR_PRIV int std_cleanup(const struct sr_dev_driver *di);
4d67b9d9
UH
1900SR_PRIV int std_dummy_dev_open(struct sr_dev_inst *sdi);
1901SR_PRIV int std_dummy_dev_close(struct sr_dev_inst *sdi);
1902SR_PRIV int std_dummy_dev_acquisition_start(const struct sr_dev_inst *sdi);
1903SR_PRIV int std_dummy_dev_acquisition_stop(struct sr_dev_inst *sdi);
1df81f4b 1904#ifdef HAVE_SERIAL_COMM
23dc6661 1905SR_PRIV int std_serial_dev_open(struct sr_dev_inst *sdi);
1b38775b 1906SR_PRIV int std_serial_dev_acquisition_stop(struct sr_dev_inst *sdi);
c4f2dfd0 1907#endif
bee2b016
LPC
1908SR_PRIV int std_session_send_df_header(const struct sr_dev_inst *sdi);
1909SR_PRIV int std_session_send_df_end(const struct sr_dev_inst *sdi);
10cf8113 1910SR_PRIV int std_session_send_df_trigger(const struct sr_dev_inst *sdi);
7f7702b8
UH
1911SR_PRIV int std_session_send_df_frame_begin(const struct sr_dev_inst *sdi);
1912SR_PRIV int std_session_send_df_frame_end(const struct sr_dev_inst *sdi);
6e43c3d5 1913SR_PRIV int std_dev_clear_with_callback(const struct sr_dev_driver *driver,
144f6660 1914 std_dev_clear_callback clear_private);
f778bf02 1915SR_PRIV int std_dev_clear(const struct sr_dev_driver *driver);
c01bf34c 1916SR_PRIV GSList *std_dev_list(const struct sr_dev_driver *di);
043e899a 1917SR_PRIV int std_serial_dev_close(struct sr_dev_inst *sdi);
15a5bfe4 1918SR_PRIV GSList *std_scan_complete(struct sr_dev_driver *di, GSList *devices);
4afdfd46 1919
e66d1892
UH
1920SR_PRIV int std_opts_config_list(uint32_t key, GVariant **data,
1921 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg,
1922 const uint32_t scanopts[], size_t scansize, const uint32_t drvopts[],
1923 size_t drvsize, const uint32_t devopts[], size_t devsize);
1924
23772462
UH
1925extern SR_PRIV const uint32_t NO_OPTS[1];
1926
e66d1892
UH
1927#define STD_CONFIG_LIST(key, data, sdi, cg, scanopts, drvopts, devopts) \
1928 std_opts_config_list(key, data, sdi, cg, ARRAY_AND_SIZE(scanopts), \
1929 ARRAY_AND_SIZE(drvopts), ARRAY_AND_SIZE(devopts))
1930
58ffcf97 1931SR_PRIV GVariant *std_gvar_tuple_array(const uint64_t a[][2], unsigned int n);
db944f16 1932SR_PRIV GVariant *std_gvar_tuple_rational(const struct sr_rational *r, unsigned int n);
463160cb
UH
1933SR_PRIV GVariant *std_gvar_samplerates(const uint64_t samplerates[], unsigned int n);
1934SR_PRIV GVariant *std_gvar_samplerates_steps(const uint64_t samplerates[], unsigned int n);
54d471f4
UH
1935SR_PRIV GVariant *std_gvar_min_max_step(double min, double max, double step);
1936SR_PRIV GVariant *std_gvar_min_max_step_array(const double a[3]);
7bc3cfe6 1937SR_PRIV GVariant *std_gvar_min_max_step_thresholds(const double dmin, const double dmax, const double dstep);
db944f16 1938
a162eeb2 1939SR_PRIV GVariant *std_gvar_tuple_u64(uint64_t low, uint64_t high);
43995cda 1940SR_PRIV GVariant *std_gvar_tuple_double(double low, double high);
a162eeb2 1941
769561cb
UH
1942SR_PRIV GVariant *std_gvar_array_i32(const int32_t a[], unsigned int n);
1943SR_PRIV GVariant *std_gvar_array_u32(const uint32_t a[], unsigned int n);
1944SR_PRIV GVariant *std_gvar_array_u64(const uint64_t a[], unsigned int n);
70635036 1945SR_PRIV GVariant *std_gvar_array_str(const char *a[], unsigned int n);
db944f16 1946
94e64a0b 1947SR_PRIV GVariant *std_gvar_thresholds(const double a[][2], unsigned int n);
9fb9afb5 1948
697fb6dd
UH
1949SR_PRIV int std_str_idx(GVariant *data, const char *a[], unsigned int n);
1950SR_PRIV int std_u64_idx(GVariant *data, const uint64_t a[], unsigned int n);
1951SR_PRIV int std_u8_idx(GVariant *data, const uint8_t a[], unsigned int n);
1952
1953SR_PRIV int std_str_idx_s(const char *s, const char *a[], unsigned int n);
1954SR_PRIV int std_u8_idx_s(uint8_t b, const uint8_t a[], unsigned int n);
1955
1956SR_PRIV int std_u64_tuple_idx(GVariant *data, const uint64_t a[][2], unsigned int n);
1957SR_PRIV int std_double_tuple_idx(GVariant *data, const double a[][2], unsigned int n);
1958SR_PRIV int std_double_tuple_idx_d0(const double d, const double a[][2], unsigned int n);
1959
fcd6a8bd
UH
1960SR_PRIV int std_cg_idx(const struct sr_channel_group *cg, struct sr_channel_group *a[], unsigned int n);
1961
c0aa074e
UH
1962SR_PRIV int std_dummy_set_params(struct sr_serial_dev_inst *serial,
1963 int baudrate, int bits, int parity, int stopbits,
1964 int flowcontrol, int rts, int dtr);
3ad30b4e
GS
1965SR_PRIV int std_dummy_set_handshake(struct sr_serial_dev_inst *serial,
1966 int rts, int dtr);
c0aa074e 1967
bee24666
DE
1968/*--- resource.c ------------------------------------------------------------*/
1969
7d89fd60
DE
1970SR_PRIV int64_t sr_file_get_size(FILE *file);
1971
bee24666
DE
1972SR_PRIV int sr_resource_open(struct sr_context *ctx,
1973 struct sr_resource *res, int type, const char *name)
1974 G_GNUC_WARN_UNUSED_RESULT;
1975SR_PRIV int sr_resource_close(struct sr_context *ctx,
1976 struct sr_resource *res);
32ba0d80 1977SR_PRIV gssize sr_resource_read(struct sr_context *ctx,
bee24666
DE
1978 const struct sr_resource *res, void *buf, size_t count)
1979 G_GNUC_WARN_UNUSED_RESULT;
1980SR_PRIV void *sr_resource_load(struct sr_context *ctx, int type,
1981 const char *name, size_t *size, size_t max_size)
1982 G_GNUC_MALLOC G_GNUC_WARN_UNUSED_RESULT;
1983
8d558c7a
UH
1984/*--- strutil.c -------------------------------------------------------------*/
1985
1986SR_PRIV int sr_atol(const char *str, long *ret);
97aa41e9 1987SR_PRIV int sr_atol_base(const char *str, long *ret, char **end, int base);
30903c40 1988SR_PRIV int sr_atoul_base(const char *str, unsigned long *ret, char **end, int base);
8d558c7a
UH
1989SR_PRIV int sr_atoi(const char *str, int *ret);
1990SR_PRIV int sr_atod(const char *str, double *ret);
1991SR_PRIV int sr_atof(const char *str, float *ret);
4f0463a0 1992SR_PRIV int sr_atod_ascii(const char *str, double *ret);
91ab2f64 1993SR_PRIV int sr_atod_ascii_digits(const char *str, double *ret, int *digits);
9806c2d5 1994SR_PRIV int sr_atof_ascii(const char *str, float *ret);
8d558c7a 1995
d8bc7ca3
GS
1996SR_PRIV GString *sr_hexdump_new(const uint8_t *data, const size_t len);
1997SR_PRIV void sr_hexdump_free(GString *s);
1998
ac136b57
BV
1999/*--- soft-trigger.c --------------------------------------------------------*/
2000
2001struct soft_trigger_logic {
2002 const struct sr_dev_inst *sdi;
2003 const struct sr_trigger *trigger;
2004 int count;
2005 int unitsize;
2006 int cur_stage;
2007 uint8_t *prev_sample;
fe5a7355
AJ
2008 uint8_t *pre_trigger_buffer;
2009 uint8_t *pre_trigger_head;
2010 int pre_trigger_size;
2011 int pre_trigger_fill;
ac136b57
BV
2012};
2013
d1078180 2014SR_PRIV int logic_channel_unitsize(GSList *channels);
ac136b57 2015SR_PRIV struct soft_trigger_logic *soft_trigger_logic_new(
fe5a7355
AJ
2016 const struct sr_dev_inst *sdi, struct sr_trigger *trigger,
2017 int pre_trigger_samples);
ac136b57
BV
2018SR_PRIV void soft_trigger_logic_free(struct soft_trigger_logic *st);
2019SR_PRIV int soft_trigger_logic_check(struct soft_trigger_logic *st, uint8_t *buf,
fe5a7355 2020 int len, int *pre_trigger_samples);
ac136b57 2021
fcfa36fd 2022/*--- serial.c --------------------------------------------------------------*/
058b7035 2023
1df81f4b 2024#ifdef HAVE_SERIAL_COMM
a54dd31e
UH
2025enum {
2026 SERIAL_RDWR = 1,
2027 SERIAL_RDONLY = 2,
a54dd31e
UH
2028};
2029
144f6660 2030typedef gboolean (*packet_valid_callback)(const uint8_t *buf);
1a7adeac
GS
2031typedef int (*packet_valid_len_callback)(void *st,
2032 const uint8_t *p, size_t l, size_t *pl);
766456be 2033
ae4c1fb6
GS
2034typedef GSList *(*sr_ser_list_append_t)(GSList *devs, const char *name,
2035 const char *desc);
2036typedef GSList *(*sr_ser_find_append_t)(GSList *devs, const char *name);
2037
299bdb24
BV
2038SR_PRIV int serial_open(struct sr_serial_dev_inst *serial, int flags);
2039SR_PRIV int serial_close(struct sr_serial_dev_inst *serial);
2040SR_PRIV int serial_flush(struct sr_serial_dev_inst *serial);
bce75f94 2041SR_PRIV int serial_drain(struct sr_serial_dev_inst *serial);
8c3df6e5 2042SR_PRIV size_t serial_has_receive_data(struct sr_serial_dev_inst *serial);
9a474211 2043SR_PRIV int serial_write_blocking(struct sr_serial_dev_inst *serial,
eead2782 2044 const void *buf, size_t count, unsigned int timeout_ms);
9a474211
ML
2045SR_PRIV int serial_write_nonblocking(struct sr_serial_dev_inst *serial,
2046 const void *buf, size_t count);
9a474211 2047SR_PRIV int serial_read_blocking(struct sr_serial_dev_inst *serial, void *buf,
eead2782 2048 size_t count, unsigned int timeout_ms);
9a474211
ML
2049SR_PRIV int serial_read_nonblocking(struct sr_serial_dev_inst *serial, void *buf,
2050 size_t count);
d4787248
GS
2051SR_PRIV int serial_set_read_chunk_cb(struct sr_serial_dev_inst *serial,
2052 serial_rx_chunk_callback cb, void *cb_data);
299bdb24 2053SR_PRIV int serial_set_params(struct sr_serial_dev_inst *serial, int baudrate,
71caaad4 2054 int bits, int parity, int stopbits, int flowcontrol, int rts, int dtr);
3ad30b4e
GS
2055SR_PRIV int serial_set_handshake(struct sr_serial_dev_inst *serial,
2056 int rts, int dtr);
299bdb24
BV
2057SR_PRIV int serial_set_paramstr(struct sr_serial_dev_inst *serial,
2058 const char *paramstr);
2059SR_PRIV int serial_readline(struct sr_serial_dev_inst *serial, char **buf,
2060 int *buflen, gint64 timeout_ms);
766456be 2061SR_PRIV int serial_stream_detect(struct sr_serial_dev_inst *serial,
1a7adeac
GS
2062 uint8_t *buf, size_t *buflen,
2063 size_t packet_size, packet_valid_callback is_valid,
2064 packet_valid_len_callback is_valid_len, size_t *return_size,
2065 uint64_t timeout_ms);
102f1239
BV
2066SR_PRIV int serial_source_add(struct sr_session *session,
2067 struct sr_serial_dev_inst *serial, int events, int timeout,
2068 sr_receive_data_callback cb, void *cb_data);
2069SR_PRIV int serial_source_remove(struct sr_session *session,
2070 struct sr_serial_dev_inst *serial);
b541f837 2071SR_PRIV GSList *sr_serial_find_usb(uint16_t vendor_id, uint16_t product_id);
c5cfc735 2072SR_PRIV int serial_timeout(struct sr_serial_dev_inst *port, int num_bytes);
ae4c1fb6 2073
ad5aa993
GS
2074SR_PRIV void sr_ser_discard_queued_data(struct sr_serial_dev_inst *serial);
2075SR_PRIV size_t sr_ser_has_queued_data(struct sr_serial_dev_inst *serial);
2076SR_PRIV void sr_ser_queue_rx_data(struct sr_serial_dev_inst *serial,
2077 const uint8_t *data, size_t len);
2078SR_PRIV size_t sr_ser_unqueue_rx_data(struct sr_serial_dev_inst *serial,
2079 uint8_t *data, size_t len);
2080
a7b8692e
GS
2081struct ser_lib_functions {
2082 int (*open)(struct sr_serial_dev_inst *serial, int flags);
2083 int (*close)(struct sr_serial_dev_inst *serial);
2084 int (*flush)(struct sr_serial_dev_inst *serial);
2085 int (*drain)(struct sr_serial_dev_inst *serial);
2086 int (*write)(struct sr_serial_dev_inst *serial,
2087 const void *buf, size_t count,
2088 int nonblocking, unsigned int timeout_ms);
2089 int (*read)(struct sr_serial_dev_inst *serial,
2090 void *buf, size_t count,
2091 int nonblocking, unsigned int timeout_ms);
2092 int (*set_params)(struct sr_serial_dev_inst *serial,
2093 int baudrate, int bits, int parity, int stopbits,
2094 int flowcontrol, int rts, int dtr);
3ad30b4e
GS
2095 int (*set_handshake)(struct sr_serial_dev_inst *serial,
2096 int rts, int dtr);
a7b8692e
GS
2097 int (*setup_source_add)(struct sr_session *session,
2098 struct sr_serial_dev_inst *serial,
2099 int events, int timeout,
2100 sr_receive_data_callback cb, void *cb_data);
2101 int (*setup_source_remove)(struct sr_session *session,
2102 struct sr_serial_dev_inst *serial);
2103 GSList *(*list)(GSList *list, sr_ser_list_append_t append);
2104 GSList *(*find_usb)(GSList *list, sr_ser_find_append_t append,
2105 uint16_t vendor_id, uint16_t product_id);
2106 int (*get_frame_format)(struct sr_serial_dev_inst *serial,
2107 int *baud, int *bits);
2108 size_t (*get_rx_avail)(struct sr_serial_dev_inst *serial);
2109};
2110extern SR_PRIV struct ser_lib_functions *ser_lib_funcs_libsp;
4417074c
GS
2111SR_PRIV int ser_name_is_hid(struct sr_serial_dev_inst *serial);
2112extern SR_PRIV struct ser_lib_functions *ser_lib_funcs_hid;
b79c3422
GS
2113SR_PRIV int ser_name_is_bt(struct sr_serial_dev_inst *serial);
2114extern SR_PRIV struct ser_lib_functions *ser_lib_funcs_bt;
edec0436
GS
2115
2116#ifdef HAVE_LIBHIDAPI
2117struct vid_pid_item {
2118 uint16_t vid, pid;
2119};
edec0436
GS
2120
2121struct ser_hid_chip_functions {
2122 const char *chipname;
2123 const char *chipdesc;
2124 const struct vid_pid_item *vid_pid_items;
2125 const int max_bytes_per_request;
2126 int (*set_params)(struct sr_serial_dev_inst *serial,
2127 int baudrate, int bits, int parity, int stopbits,
2128 int flowcontrol, int rts, int dtr);
2129 int (*read_bytes)(struct sr_serial_dev_inst *serial,
2130 uint8_t *data, int space, unsigned int timeout);
2131 int (*write_bytes)(struct sr_serial_dev_inst *serial,
2132 const uint8_t *data, int space);
2133 int (*flush)(struct sr_serial_dev_inst *serial);
2134 int (*drain)(struct sr_serial_dev_inst *serial);
2135};
a10284cd 2136extern SR_PRIV struct ser_hid_chip_functions *ser_hid_chip_funcs_bu86x;
828eeea2 2137extern SR_PRIV struct ser_hid_chip_functions *ser_hid_chip_funcs_ch9325;
616bc3a1 2138extern SR_PRIV struct ser_hid_chip_functions *ser_hid_chip_funcs_cp2110;
0cdb72c8 2139extern SR_PRIV struct ser_hid_chip_functions *ser_hid_chip_funcs_victor;
edec0436
GS
2140SR_PRIV const char *ser_hid_chip_find_name_vid_pid(uint16_t vid, uint16_t pid);
2141#endif
c4f2dfd0 2142#endif
1483577e 2143
7fd8a8f7
GS
2144SR_PRIV int sr_serial_extract_options(GSList *options,
2145 const char **serial_device, const char **serial_options);
2146
7c8ae47d
GS
2147/*--- bt/ API ---------------------------------------------------------------*/
2148
2149#ifdef HAVE_BLUETOOTH
2150SR_PRIV const char *sr_bt_adapter_get_address(size_t idx);
2151
2152struct sr_bt_desc;
2153typedef void (*sr_bt_scan_cb)(void *cb_data, const char *addr, const char *name);
2154typedef int (*sr_bt_data_cb)(void *cb_data, uint8_t *data, size_t dlen);
2155
2156SR_PRIV struct sr_bt_desc *sr_bt_desc_new(void);
2157SR_PRIV void sr_bt_desc_free(struct sr_bt_desc *desc);
2158
2159SR_PRIV int sr_bt_config_cb_scan(struct sr_bt_desc *desc,
2160 sr_bt_scan_cb cb, void *cb_data);
2161SR_PRIV int sr_bt_config_cb_data(struct sr_bt_desc *desc,
2162 sr_bt_data_cb cb, void *cb_data);
2163SR_PRIV int sr_bt_config_addr_local(struct sr_bt_desc *desc, const char *addr);
2164SR_PRIV int sr_bt_config_addr_remote(struct sr_bt_desc *desc, const char *addr);
2165SR_PRIV int sr_bt_config_rfcomm(struct sr_bt_desc *desc, size_t channel);
2166SR_PRIV int sr_bt_config_notify(struct sr_bt_desc *desc,
2167 uint16_t read_handle, uint16_t write_handle,
25d7c995
GS
2168 uint16_t cccd_handle, uint16_t cccd_value,
2169 uint16_t ble_mtu);
7c8ae47d
GS
2170
2171SR_PRIV int sr_bt_scan_le(struct sr_bt_desc *desc, int duration);
2172SR_PRIV int sr_bt_scan_bt(struct sr_bt_desc *desc, int duration);
2173
2174SR_PRIV int sr_bt_connect_ble(struct sr_bt_desc *desc);
2175SR_PRIV int sr_bt_connect_rfcomm(struct sr_bt_desc *desc);
2176SR_PRIV void sr_bt_disconnect(struct sr_bt_desc *desc);
2177
2178SR_PRIV ssize_t sr_bt_read(struct sr_bt_desc *desc,
2179 void *data, size_t len);
2180SR_PRIV ssize_t sr_bt_write(struct sr_bt_desc *desc,
2181 const void *data, size_t len);
2182
2183SR_PRIV int sr_bt_start_notify(struct sr_bt_desc *desc);
2184SR_PRIV int sr_bt_check_notify(struct sr_bt_desc *desc);
2185#endif
2186
fcfa36fd 2187/*--- ezusb.c ---------------------------------------------------------------*/
058b7035 2188
22b02383 2189#ifdef HAVE_LIBUSB_1_0
1a081ca6 2190SR_PRIV int ezusb_reset(struct libusb_device_handle *hdl, int set_clear);
8e2d6c9d
DE
2191SR_PRIV int ezusb_install_firmware(struct sr_context *ctx, libusb_device_handle *hdl,
2192 const char *name);
2193SR_PRIV int ezusb_upload_firmware(struct sr_context *ctx, libusb_device *dev,
2194 int configuration, const char *name);
22b02383 2195#endif
058b7035 2196
fcfa36fd 2197/*--- usb.c -----------------------------------------------------------------*/
0c632d36 2198
da5286bf
GS
2199SR_PRIV int sr_usb_split_conn(const char *conn,
2200 uint16_t *vid, uint16_t *pid, uint8_t *bus, uint8_t *addr);
0c632d36 2201#ifdef HAVE_LIBUSB_1_0
7ae6a758 2202SR_PRIV GSList *sr_usb_find(libusb_context *usb_ctx, const char *conn);
0c632d36 2203SR_PRIV int sr_usb_open(libusb_context *usb_ctx, struct sr_usb_dev_inst *usb);
67e95ed3 2204SR_PRIV void sr_usb_close(struct sr_usb_dev_inst *usb);
102f1239
BV
2205SR_PRIV int usb_source_add(struct sr_session *session, struct sr_context *ctx,
2206 int timeout, sr_receive_data_callback cb, void *cb_data);
2207SR_PRIV int usb_source_remove(struct sr_session *session, struct sr_context *ctx);
76bc5f63 2208SR_PRIV int usb_get_port_path(libusb_device *dev, char *path, int path_len);
69f7d9b4
JH
2209SR_PRIV gboolean usb_match_manuf_prod(libusb_device *dev,
2210 const char *manufacturer, const char *product);
0c632d36
UH
2211#endif
2212
18698b40
AS
2213/*--- binary_helpers.c ------------------------------------------------------*/
2214
2215/** Binary value type */
2216enum binary_value_type {
d65f51bf
GS
2217 BVT_INVALID,
2218
2219 BVT_UINT8,
18698b40
AS
2220 BVT_BE_UINT8 = BVT_UINT8,
2221 BVT_LE_UINT8 = BVT_UINT8,
2222
2223 BVT_BE_UINT16,
d6b236ef 2224 BVT_BE_UINT24,
18698b40
AS
2225 BVT_BE_UINT32,
2226 BVT_BE_UINT64,
2227 BVT_BE_FLOAT,
2228
2229 BVT_LE_UINT16,
d6b236ef 2230 BVT_LE_UINT24,
18698b40
AS
2231 BVT_LE_UINT32,
2232 BVT_LE_UINT64,
2233 BVT_LE_FLOAT,
2234};
2235
2236/** Binary value specification */
2237struct binary_value_spec {
e7fe5bb4 2238 size_t offset; /**!< Offset into binary image */
b7721913 2239 enum binary_value_type type; /**!< Data type to decode */
18698b40
AS
2240};
2241
18698b40 2242/**
48b7c901
MP
2243 * Read extract a value from a binary data image, ensuring no out-of-bounds
2244 * read happens.
18698b40 2245 *
b7721913
GS
2246 * @param[out] out Pointer to output buffer (conversion result)
2247 * @param[in] spec Binary value specification
2248 * @param[in] data Pointer to binary input data
2249 * @param[in] length Size of binary input data
2250 *
18698b40
AS
2251 * @return SR_OK on success, SR_ERR_* error code on failure.
2252 */
48b7c901 2253SR_PRIV int bv_get_value_len(float *out, const struct binary_value_spec *spec,
1fa04876 2254 const uint8_t *data, size_t length);
18698b40 2255
4ea012bd
AS
2256/*--- crc.c -----------------------------------------------------------------*/
2257
2258#define SR_CRC16_DEFAULT_INIT 0xffffU
2259
2260/**
2261 * Calculate a CRC16 checksum using the 0x8005 polynomial.
2262 *
2263 * This CRC16 flavor is also known as CRC16-ANSI or CRC16-MODBUS.
2264 *
2265 * @param crc Initial value (typically 0xffff)
2266 * @param buffer Input buffer
2267 * @param len Buffer length
2268 * @return Checksum
2269 */
2270SR_PRIV uint16_t sr_crc16(uint16_t crc, const uint8_t *buffer, int len);
2271
daa39012
AJ
2272/*--- modbus/modbus.c -------------------------------------------------------*/
2273
2274struct sr_modbus_dev_inst {
2275 const char *name;
2276 const char *prefix;
2277 int priv_size;
2278 GSList *(*scan)(int modbusaddr);
2279 int (*dev_inst_new)(void *priv, const char *resource,
2280 char **params, const char *serialcomm, int modbusaddr);
2281 int (*open)(void *priv);
2282 int (*source_add)(struct sr_session *session, void *priv, int events,
2283 int timeout, sr_receive_data_callback cb, void *cb_data);
2284 int (*source_remove)(struct sr_session *session, void *priv);
2285 int (*send)(void *priv, const uint8_t *buffer, int buffer_size);
2286 int (*read_begin)(void *priv, uint8_t *function_code);
2287 int (*read_data)(void *priv, uint8_t *buf, int maxlen);
2288 int (*read_end)(void *priv);
2289 int (*close)(void *priv);
2290 void (*free)(void *priv);
2291 unsigned int read_timeout_ms;
2292 void *priv;
2293};
2294
2295SR_PRIV GSList *sr_modbus_scan(struct drv_context *drvc, GSList *options,
2296 struct sr_dev_inst *(*probe_device)(struct sr_modbus_dev_inst *modbus));
2297SR_PRIV struct sr_modbus_dev_inst *modbus_dev_inst_new(const char *resource,
2298 const char *serialcomm, int modbusaddr);
2299SR_PRIV int sr_modbus_open(struct sr_modbus_dev_inst *modbus);
2300SR_PRIV int sr_modbus_source_add(struct sr_session *session,
2301 struct sr_modbus_dev_inst *modbus, int events, int timeout,
2302 sr_receive_data_callback cb, void *cb_data);
2303SR_PRIV int sr_modbus_source_remove(struct sr_session *session,
2304 struct sr_modbus_dev_inst *modbus);
2305SR_PRIV int sr_modbus_request(struct sr_modbus_dev_inst *modbus,
2306 uint8_t *request, int request_size);
2307SR_PRIV int sr_modbus_reply(struct sr_modbus_dev_inst *modbus,
2308 uint8_t *reply, int reply_size);
2309SR_PRIV int sr_modbus_request_reply(struct sr_modbus_dev_inst *modbus,
2310 uint8_t *request, int request_size,
2311 uint8_t *reply, int reply_size);
2312SR_PRIV int sr_modbus_read_coils(struct sr_modbus_dev_inst *modbus,
2313 int address, int nb_coils, uint8_t *coils);
2314SR_PRIV int sr_modbus_read_holding_registers(struct sr_modbus_dev_inst *modbus,
2315 int address, int nb_registers,
2316 uint16_t *registers);
2317SR_PRIV int sr_modbus_write_coil(struct sr_modbus_dev_inst *modbus,
2318 int address, int value);
2319SR_PRIV int sr_modbus_write_multiple_registers(struct sr_modbus_dev_inst*modbus,
2320 int address, int nb_registers,
2321 uint16_t *registers);
2322SR_PRIV int sr_modbus_close(struct sr_modbus_dev_inst *modbus);
2323SR_PRIV void sr_modbus_free(struct sr_modbus_dev_inst *modbus);
2324
fcfa36fd 2325/*--- dmm/es519xx.c ---------------------------------------------------------*/
c01bdebc 2326
bfb926c1
AJ
2327/**
2328 * All 11-byte es519xx chips repeat each block twice for each conversion cycle
2329 * so always read 2 blocks at a time.
2330 */
2331#define ES519XX_11B_PACKET_SIZE (11 * 2)
72e1672f 2332#define ES519XX_14B_PACKET_SIZE 14
c01bdebc
AJ
2333
2334struct es519xx_info {
2335 gboolean is_judge, is_voltage, is_auto, is_micro, is_current;
2336 gboolean is_milli, is_resistance, is_continuity, is_diode;
2337 gboolean is_frequency, is_rpm, is_capacitance, is_duty_cycle;
2338 gboolean is_temperature, is_celsius, is_fahrenheit;
2339 gboolean is_adp0, is_adp1, is_adp2, is_adp3;
2340 gboolean is_sign, is_batt, is_ol, is_pmax, is_pmin, is_apo;
2341 gboolean is_dc, is_ac, is_vahz, is_min, is_max, is_rel, is_hold;
2342 gboolean is_digit4, is_ul, is_vasel, is_vbar, is_lpf1, is_lpf0, is_rmr;
2343 uint32_t baudrate;
2344 int packet_size;
2345 gboolean alt_functions, fivedigits, clampmeter, selectable_lpf;
8cbf5627 2346 int digits;
c01bdebc
AJ
2347};
2348
72e1672f
UH
2349SR_PRIV gboolean sr_es519xx_2400_11b_packet_valid(const uint8_t *buf);
2350SR_PRIV int sr_es519xx_2400_11b_parse(const uint8_t *buf, float *floatval,
8c677240 2351 struct sr_datafeed_analog *analog, void *info);
2588e50c
AJ
2352SR_PRIV gboolean sr_es519xx_2400_11b_altfn_packet_valid(const uint8_t *buf);
2353SR_PRIV int sr_es519xx_2400_11b_altfn_parse(const uint8_t *buf,
8c677240 2354 float *floatval, struct sr_datafeed_analog *analog, void *info);
72e1672f 2355SR_PRIV gboolean sr_es519xx_19200_11b_5digits_packet_valid(const uint8_t *buf);
93d719cd 2356SR_PRIV int sr_es519xx_19200_11b_5digits_parse(const uint8_t *buf,
8c677240 2357 float *floatval, struct sr_datafeed_analog *analog, void *info);
72e1672f
UH
2358SR_PRIV gboolean sr_es519xx_19200_11b_clamp_packet_valid(const uint8_t *buf);
2359SR_PRIV int sr_es519xx_19200_11b_clamp_parse(const uint8_t *buf,
8c677240 2360 float *floatval, struct sr_datafeed_analog *analog, void *info);
72e1672f
UH
2361SR_PRIV gboolean sr_es519xx_19200_11b_packet_valid(const uint8_t *buf);
2362SR_PRIV int sr_es519xx_19200_11b_parse(const uint8_t *buf, float *floatval,
8c677240 2363 struct sr_datafeed_analog *analog, void *info);
72e1672f
UH
2364SR_PRIV gboolean sr_es519xx_19200_14b_packet_valid(const uint8_t *buf);
2365SR_PRIV int sr_es519xx_19200_14b_parse(const uint8_t *buf, float *floatval,
8c677240 2366 struct sr_datafeed_analog *analog, void *info);
72e1672f
UH
2367SR_PRIV gboolean sr_es519xx_19200_14b_sel_lpf_packet_valid(const uint8_t *buf);
2368SR_PRIV int sr_es519xx_19200_14b_sel_lpf_parse(const uint8_t *buf,
8c677240 2369 float *floatval, struct sr_datafeed_analog *analog, void *info);
c01bdebc 2370
fcfa36fd 2371/*--- dmm/fs9922.c ----------------------------------------------------------*/
79081ec8 2372
913abe83
UH
2373#define FS9922_PACKET_SIZE 14
2374
2375struct fs9922_info {
2376 gboolean is_auto, is_dc, is_ac, is_rel, is_hold, is_bpn, is_z1, is_z2;
2377 gboolean is_max, is_min, is_apo, is_bat, is_nano, is_z3, is_micro;
2378 gboolean is_milli, is_kilo, is_mega, is_beep, is_diode, is_percent;
2379 gboolean is_z4, is_volt, is_ampere, is_ohm, is_hfe, is_hertz, is_farad;
2380 gboolean is_celsius, is_fahrenheit;
2381 int bargraph_sign, bargraph_value;
2382};
2383
913abe83
UH
2384SR_PRIV gboolean sr_fs9922_packet_valid(const uint8_t *buf);
2385SR_PRIV int sr_fs9922_parse(const uint8_t *buf, float *floatval,
8c677240
UH
2386 struct sr_datafeed_analog *analog, void *info);
2387SR_PRIV void sr_fs9922_z1_diode(struct sr_datafeed_analog *analog, void *info);
79081ec8 2388
fcfa36fd 2389/*--- dmm/fs9721.c ----------------------------------------------------------*/
6c701476 2390
8c1adf37
UH
2391#define FS9721_PACKET_SIZE 14
2392
2393struct fs9721_info {
2394 gboolean is_ac, is_dc, is_auto, is_rs232, is_micro, is_nano, is_kilo;
2395 gboolean is_diode, is_milli, is_percent, is_mega, is_beep, is_farad;
2396 gboolean is_ohm, is_rel, is_hold, is_ampere, is_volt, is_hz, is_bat;
2397 gboolean is_c2c1_11, is_c2c1_10, is_c2c1_01, is_c2c1_00, is_sign;
2398};
2399
8c1adf37
UH
2400SR_PRIV gboolean sr_fs9721_packet_valid(const uint8_t *buf);
2401SR_PRIV int sr_fs9721_parse(const uint8_t *buf, float *floatval,
8c677240
UH
2402 struct sr_datafeed_analog *analog, void *info);
2403SR_PRIV void sr_fs9721_00_temp_c(struct sr_datafeed_analog *analog, void *info);
2404SR_PRIV void sr_fs9721_01_temp_c(struct sr_datafeed_analog *analog, void *info);
2405SR_PRIV void sr_fs9721_10_temp_c(struct sr_datafeed_analog *analog, void *info);
2406SR_PRIV void sr_fs9721_01_10_temp_f_c(struct sr_datafeed_analog *analog, void *info);
2407SR_PRIV void sr_fs9721_max_c_min(struct sr_datafeed_analog *analog, void *info);
dcd212f7 2408
4c29bba1
PS
2409/*--- dmm/mm38xr.c ---------------------------------------------------------*/
2410
2411#define METERMAN_38XR_PACKET_SIZE 15
2412
2413struct meterman_38xr_info { int dummy; };
2414
2415SR_PRIV gboolean meterman_38xr_packet_valid(const uint8_t *buf);
2416SR_PRIV int meterman_38xr_parse(const uint8_t *buf, float *floatval,
2417 struct sr_datafeed_analog *analog, void *info);
2418
dcd212f7
VV
2419/*--- dmm/ms2115b.c ---------------------------------------------------------*/
2420
2421#define MS2115B_PACKET_SIZE 9
2422
2423enum ms2115b_display {
2424 MS2115B_DISPLAY_MAIN,
2425 MS2115B_DISPLAY_SUB,
2426 MS2115B_DISPLAY_COUNT,
2427};
2428
2429struct ms2115b_info {
2430 /* Selected channel. */
2431 size_t ch_idx;
2432 gboolean is_ac, is_dc, is_auto;
2433 gboolean is_diode, is_beep, is_farad;
2434 gboolean is_ohm, is_ampere, is_volt, is_hz;
2435 gboolean is_duty_cycle, is_percent;
2436};
2437
2438extern SR_PRIV const char *ms2115b_channel_formats[];
2439SR_PRIV gboolean sr_ms2115b_packet_valid(const uint8_t *buf);
2440SR_PRIV int sr_ms2115b_parse(const uint8_t *buf, float *floatval,
2441 struct sr_datafeed_analog *analog, void *info);
6c701476 2442
fcfa36fd 2443/*--- dmm/ms8250d.c ---------------------------------------------------------*/
67070942
M
2444
2445#define MS8250D_PACKET_SIZE 18
2446
2447struct ms8250d_info {
2448 gboolean is_ac, is_dc, is_auto, is_rs232, is_micro, is_nano, is_kilo;
2449 gboolean is_diode, is_milli, is_percent, is_mega, is_beep, is_farad;
2450 gboolean is_ohm, is_rel, is_hold, is_ampere, is_volt, is_hz, is_bat;
2451 gboolean is_ncv, is_min, is_max, is_sign, is_autotimer;
2452};
2453
2454SR_PRIV gboolean sr_ms8250d_packet_valid(const uint8_t *buf);
2455SR_PRIV int sr_ms8250d_parse(const uint8_t *buf, float *floatval,
2456 struct sr_datafeed_analog *analog, void *info);
2457
fcfa36fd 2458/*--- dmm/dtm0660.c ---------------------------------------------------------*/
eed3dec8
MG
2459
2460#define DTM0660_PACKET_SIZE 15
2461
2462struct dtm0660_info {
2463 gboolean is_ac, is_dc, is_auto, is_rs232, is_micro, is_nano, is_kilo;
2464 gboolean is_diode, is_milli, is_percent, is_mega, is_beep, is_farad;
2465 gboolean is_ohm, is_rel, is_hold, is_ampere, is_volt, is_hz, is_bat;
2466 gboolean is_degf, is_degc, is_c2c1_01, is_c2c1_00, is_apo, is_min;
2467 gboolean is_minmax, is_max, is_sign;
2468};
2469
2470SR_PRIV gboolean sr_dtm0660_packet_valid(const uint8_t *buf);
2471SR_PRIV int sr_dtm0660_parse(const uint8_t *buf, float *floatval,
8c677240 2472 struct sr_datafeed_analog *analog, void *info);
eed3dec8 2473
fcfa36fd 2474/*--- dmm/m2110.c -----------------------------------------------------------*/
825da8b2
MH
2475
2476#define BBCGM_M2110_PACKET_SIZE 9
2477
9d12555f
UH
2478/* Dummy info struct. The parser does not use it. */
2479struct m2110_info { int dummy; };
2480
825da8b2
MH
2481SR_PRIV gboolean sr_m2110_packet_valid(const uint8_t *buf);
2482SR_PRIV int sr_m2110_parse(const uint8_t *buf, float *floatval,
8c677240 2483 struct sr_datafeed_analog *analog, void *info);
825da8b2 2484
fcfa36fd 2485/*--- dmm/metex14.c ---------------------------------------------------------*/
ac913e5c
UH
2486
2487#define METEX14_PACKET_SIZE 14
2488
2489struct metex14_info {
556a926d 2490 size_t ch_idx;
ac913e5c
UH
2491 gboolean is_ac, is_dc, is_resistance, is_capacity, is_temperature;
2492 gboolean is_diode, is_frequency, is_ampere, is_volt, is_farad;
7fb4ff02
FS
2493 gboolean is_hertz, is_ohm, is_celsius, is_fahrenheit, is_watt;
2494 gboolean is_pico, is_nano, is_micro, is_milli, is_kilo, is_mega;
fd8dc1db 2495 gboolean is_gain, is_decibel, is_power, is_decibel_mw, is_power_factor;
7fb4ff02 2496 gboolean is_hfe, is_unitless, is_logic, is_min, is_max, is_avg;
ac913e5c
UH
2497};
2498
1df81f4b 2499#ifdef HAVE_SERIAL_COMM
ce3777ad 2500SR_PRIV int sr_metex14_packet_request(struct sr_serial_dev_inst *serial);
c4f2dfd0 2501#endif
ac913e5c
UH
2502SR_PRIV gboolean sr_metex14_packet_valid(const uint8_t *buf);
2503SR_PRIV int sr_metex14_parse(const uint8_t *buf, float *floatval,
8c677240 2504 struct sr_datafeed_analog *analog, void *info);
556a926d
GS
2505SR_PRIV gboolean sr_metex14_4packets_valid(const uint8_t *buf);
2506SR_PRIV int sr_metex14_4packets_parse(const uint8_t *buf, float *floatval,
2507 struct sr_datafeed_analog *analog, void *info);
ac913e5c 2508
fcfa36fd 2509/*--- dmm/rs9lcd.c ----------------------------------------------------------*/
05f134ab 2510
21829e67 2511#define RS9LCD_PACKET_SIZE 9
05f134ab 2512
e7ed87a4 2513/* Dummy info struct. The parser does not use it. */
bf6f8399 2514struct rs9lcd_info { int dummy; };
e7ed87a4 2515
05f134ab
AG
2516SR_PRIV gboolean sr_rs9lcd_packet_valid(const uint8_t *buf);
2517SR_PRIV int sr_rs9lcd_parse(const uint8_t *buf, float *floatval,
8c677240 2518 struct sr_datafeed_analog *analog, void *info);
05f134ab 2519
fcfa36fd 2520/*--- dmm/bm25x.c -----------------------------------------------------------*/
a24c3f4a
JH
2521
2522#define BRYMEN_BM25X_PACKET_SIZE 15
2523
2524/* Dummy info struct. The parser does not use it. */
2525struct bm25x_info { int dummy; };
2526
2527SR_PRIV gboolean sr_brymen_bm25x_packet_valid(const uint8_t *buf);
2528SR_PRIV int sr_brymen_bm25x_parse(const uint8_t *buf, float *floatval,
8c677240 2529 struct sr_datafeed_analog *analog, void *info);
a24c3f4a 2530
400bc4ff
GS
2531/*--- dmm/bm52x.c -----------------------------------------------------------*/
2532
2533#define BRYMEN_BM52X_PACKET_SIZE 24
2534#define BRYMEN_BM52X_DISPLAY_COUNT 2
2535
2536struct brymen_bm52x_info { size_t ch_idx; };
2537
2538#ifdef HAVE_SERIAL_COMM
2539SR_PRIV int sr_brymen_bm52x_packet_request(struct sr_serial_dev_inst *serial);
6bee394d 2540SR_PRIV int sr_brymen_bm82x_packet_request(struct sr_serial_dev_inst *serial);
400bc4ff
GS
2541#endif
2542SR_PRIV gboolean sr_brymen_bm52x_packet_valid(const uint8_t *buf);
6bee394d
GS
2543SR_PRIV gboolean sr_brymen_bm82x_packet_valid(const uint8_t *buf);
2544/* BM520s and BM820s protocols are similar, the parse routine is shared. */
400bc4ff
GS
2545SR_PRIV int sr_brymen_bm52x_parse(const uint8_t *buf, float *floatval,
2546 struct sr_datafeed_analog *analog, void *info);
2547
0931639a
GS
2548struct brymen_bm52x_state;
2549
2550SR_PRIV void *brymen_bm52x_state_init(void);
2551SR_PRIV void brymen_bm52x_state_free(void *state);
2552SR_PRIV int brymen_bm52x_config_get(void *state, uint32_t key, GVariant **data,
2553 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg);
2554SR_PRIV int brymen_bm52x_config_set(void *state, uint32_t key, GVariant *data,
2555 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg);
2556SR_PRIV int brymen_bm52x_config_list(void *state, uint32_t key, GVariant **data,
2557 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg);
2558SR_PRIV int brymen_bm52x_acquire_start(void *state,
2559 const struct sr_dev_inst *sdi,
2560 sr_receive_data_callback *cb, void **cb_data);
2561
27186eda
GS
2562/*--- dmm/bm85x.c -----------------------------------------------------------*/
2563
2564#define BRYMEN_BM85x_PACKET_SIZE_MIN 4
2565
2566struct brymen_bm85x_info { int dummy; };
2567
2568#ifdef HAVE_SERIAL_COMM
2569SR_PRIV int brymen_bm85x_after_open(struct sr_serial_dev_inst *serial);
2570SR_PRIV int brymen_bm85x_packet_request(struct sr_serial_dev_inst *serial);
2571#endif
2572SR_PRIV gboolean brymen_bm85x_packet_valid(void *state,
2573 const uint8_t *buf, size_t len, size_t *pkt_len);
2574SR_PRIV int brymen_bm85x_parse(void *state, const uint8_t *buf, size_t len,
2575 double *floatval, struct sr_datafeed_analog *analog, void *info);
2576
0759e2f5
GS
2577/*--- dmm/bm86x.c -----------------------------------------------------------*/
2578
2579#define BRYMEN_BM86X_PACKET_SIZE 24
2580#define BRYMEN_BM86X_DISPLAY_COUNT 2
2581
2582struct brymen_bm86x_info { size_t ch_idx; };
2583
2584#ifdef HAVE_SERIAL_COMM
2585SR_PRIV int sr_brymen_bm86x_packet_request(struct sr_serial_dev_inst *serial);
2586#endif
2587SR_PRIV gboolean sr_brymen_bm86x_packet_valid(const uint8_t *buf);
2588SR_PRIV int sr_brymen_bm86x_parse(const uint8_t *buf, float *floatval,
2589 struct sr_datafeed_analog *analog, void *info);
2590
fcfa36fd 2591/*--- dmm/ut71x.c -----------------------------------------------------------*/
626027df
UH
2592
2593#define UT71X_PACKET_SIZE 11
2594
2595struct ut71x_info {
2596 gboolean is_voltage, is_resistance, is_capacitance, is_temperature;
2597 gboolean is_celsius, is_fahrenheit, is_current, is_continuity;
2598 gboolean is_diode, is_frequency, is_duty_cycle, is_dc, is_ac;
2599 gboolean is_auto, is_manual, is_sign, is_power, is_loop_current;
2600};
2601
2602SR_PRIV gboolean sr_ut71x_packet_valid(const uint8_t *buf);
2603SR_PRIV int sr_ut71x_parse(const uint8_t *buf, float *floatval,
8c677240 2604 struct sr_datafeed_analog *analog, void *info);
626027df 2605
fcfa36fd 2606/*--- dmm/vc870.c -----------------------------------------------------------*/
c36f78f7
UH
2607
2608#define VC870_PACKET_SIZE 23
2609
2610struct vc870_info {
2611 gboolean is_voltage, is_dc, is_ac, is_temperature, is_resistance;
2612 gboolean is_continuity, is_capacitance, is_diode, is_loop_current;
2613 gboolean is_current, is_micro, is_milli, is_power;
ee2e9be2 2614 gboolean is_power_factor_freq, is_power_apparent_power, is_v_a_rms_value;
c36f78f7
UH
2615 gboolean is_sign2, is_sign1, is_batt, is_ol1, is_max, is_min;
2616 gboolean is_maxmin, is_rel, is_ol2, is_open, is_manu, is_hold;
2617 gboolean is_light, is_usb, is_warning, is_auto_power, is_misplug_warn;
2618 gboolean is_lo, is_hi, is_open2;
2619
3591481e 2620 gboolean is_frequency, is_dual_display, is_auto;
c36f78f7
UH
2621};
2622
2623SR_PRIV gboolean sr_vc870_packet_valid(const uint8_t *buf);
2624SR_PRIV int sr_vc870_parse(const uint8_t *buf, float *floatval,
8c677240 2625 struct sr_datafeed_analog *analog, void *info);
c36f78f7 2626
fcfa36fd 2627/*--- dmm/vc96.c ------------------------------------------------------------*/
9456d636
MS
2628
2629#define VC96_PACKET_SIZE 13
2630
2631struct vc96_info {
2632 size_t ch_idx;
2633 gboolean is_ac, is_dc, is_resistance, is_diode, is_ampere, is_volt;
2634 gboolean is_ohm, is_micro, is_milli, is_kilo, is_mega, is_hfe;
2635 gboolean is_unitless;
2636};
2637
2638SR_PRIV gboolean sr_vc96_packet_valid(const uint8_t *buf);
2639SR_PRIV int sr_vc96_parse(const uint8_t *buf, float *floatval,
2640 struct sr_datafeed_analog *analog, void *info);
2641
fcfa36fd 2642/*--- lcr/es51919.c ---------------------------------------------------------*/
6bcb3ee8 2643
bf5c4d46
GS
2644/* Acquisition details which apply to all supported serial-lcr devices. */
2645struct lcr_parse_info {
2646 size_t ch_idx;
2647 uint64_t output_freq;
2648 const char *circuit_model;
2649};
2650
2651#define ES51919_PACKET_SIZE 17
2652#define ES51919_CHANNEL_COUNT 2
2653#define ES51919_COMM_PARAM "9600/8n1/rts=1/dtr=1"
2654
2655SR_PRIV int es51919_config_get(uint32_t key, GVariant **data,
2656 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg);
2657SR_PRIV int es51919_config_set(uint32_t key, GVariant *data,
2658 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg);
2659SR_PRIV int es51919_config_list(uint32_t key, GVariant **data,
2660 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg);
2661SR_PRIV gboolean es51919_packet_valid(const uint8_t *pkt);
2662SR_PRIV int es51919_packet_parse(const uint8_t *pkt, float *floatval,
b50970a5
GS
2663 struct sr_datafeed_analog *analog, void *info);
2664
2665/*--- lcr/vc4080.c ----------------------------------------------------------*/
2666
2667/* Note: Also uses 'struct lcr_parse_info' from es51919 above. */
2668
2669#define VC4080_PACKET_SIZE 39
2670#define VC4080_COMM_PARAM "1200/8n1"
2671#define VC4080_WITH_DQ_CHANS 0 /* Enable separate D/Q channels? */
2672
2673enum vc4080_display {
2674 VC4080_DISPLAY_PRIMARY,
2675 VC4080_DISPLAY_SECONDARY,
2676#if VC4080_WITH_DQ_CHANS
2677 VC4080_DISPLAY_D_VALUE,
2678 VC4080_DISPLAY_Q_VALUE,
2679#endif
2680 VC4080_CHANNEL_COUNT,
2681};
2682
2683extern SR_PRIV const char *vc4080_channel_formats[VC4080_CHANNEL_COUNT];
2684
2685SR_PRIV int vc4080_config_list(uint32_t key, GVariant **data,
2686 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg);
2687SR_PRIV int vc4080_packet_request(struct sr_serial_dev_inst *serial);
2688SR_PRIV gboolean vc4080_packet_valid(const uint8_t *pkt);
2689SR_PRIV int vc4080_packet_parse(const uint8_t *pkt, float *floatval,
bf5c4d46 2690 struct sr_datafeed_analog *analog, void *info);
6bcb3ee8 2691
fcfa36fd 2692/*--- dmm/ut372.c -----------------------------------------------------------*/
f3cde309
ML
2693
2694#define UT372_PACKET_SIZE 27
2695
2696struct ut372_info {
2697 int dummy;
2698};
2699
2700SR_PRIV gboolean sr_ut372_packet_valid(const uint8_t *buf);
2701SR_PRIV int sr_ut372_parse(const uint8_t *buf, float *floatval,
8c677240 2702 struct sr_datafeed_analog *analog, void *info);
f3cde309 2703
fcfa36fd 2704/*--- dmm/asycii.c ----------------------------------------------------------*/
4ba4d52a
GS
2705
2706#define ASYCII_PACKET_SIZE 16
2707
2708struct asycii_info {
2709 gboolean is_ac, is_dc, is_ac_and_dc;
2710 gboolean is_resistance, is_capacitance, is_diode, is_gain;
2711 gboolean is_frequency, is_duty_cycle, is_duty_pos, is_duty_neg;
2712 gboolean is_pulse_width, is_period_pos, is_period_neg;
2713 gboolean is_pulse_count, is_count_pos, is_count_neg;
2714 gboolean is_ampere, is_volt, is_volt_ampere, is_farad, is_ohm;
2715 gboolean is_hertz, is_percent, is_seconds, is_decibel;
2716 gboolean is_pico, is_nano, is_micro, is_milli, is_kilo, is_mega;
2717 gboolean is_unitless;
2718 gboolean is_peak_min, is_peak_max;
2719 gboolean is_invalid;
2720};
2721
1df81f4b 2722#ifdef HAVE_SERIAL_COMM
4ba4d52a
GS
2723SR_PRIV int sr_asycii_packet_request(struct sr_serial_dev_inst *serial);
2724#endif
2725SR_PRIV gboolean sr_asycii_packet_valid(const uint8_t *buf);
2726SR_PRIV int sr_asycii_parse(const uint8_t *buf, float *floatval,
2727 struct sr_datafeed_analog *analog, void *info);
2728
fcfa36fd 2729/*--- dmm/eev121gw.c --------------------------------------------------------*/
1c3098aa
GS
2730
2731#define EEV121GW_PACKET_SIZE 19
2732
2733enum eev121gw_display {
2734 EEV121GW_DISPLAY_MAIN,
2735 EEV121GW_DISPLAY_SUB,
2736 EEV121GW_DISPLAY_BAR,
2737 EEV121GW_DISPLAY_COUNT,
2738};
2739
2740struct eev121gw_info {
2741 /* Selected channel. */
2742 size_t ch_idx;
2743 /*
2744 * Measured value, number and sign/overflow flags, scale factor
2745 * and significant digits.
2746 */
2747 uint32_t uint_value;
2748 gboolean is_ofl, is_neg;
2749 int factor, digits;
2750 /* Currently active mode (meter's function). */
2751 gboolean is_ac, is_dc, is_voltage, is_current, is_power, is_gain;
2752 gboolean is_resistance, is_capacitance, is_diode, is_temperature;
2753 gboolean is_continuity, is_frequency, is_period, is_duty_cycle;
2754 /* Quantities associated with mode/function. */
2755 gboolean is_ampere, is_volt, is_volt_ampere, is_dbm;
2756 gboolean is_ohm, is_farad, is_celsius, is_fahrenheit;
2757 gboolean is_hertz, is_seconds, is_percent, is_loop_current;
2758 gboolean is_unitless, is_logic;
2759 /* Other indicators. */
2760 gboolean is_min, is_max, is_avg, is_1ms_peak, is_rel, is_hold;
2761 gboolean is_low_pass, is_mem, is_bt, is_auto_range, is_test;
2762 gboolean is_auto_poweroff, is_low_batt;
2763};
2764
015df4ae 2765extern SR_PRIV const char *eev121gw_channel_formats[];
1c3098aa 2766SR_PRIV gboolean sr_eev121gw_packet_valid(const uint8_t *buf);
1c3098aa 2767SR_PRIV int sr_eev121gw_3displays_parse(const uint8_t *buf, float *floatval,
8556703a 2768 struct sr_datafeed_analog *analog, void *info);
1c3098aa 2769
fcfa36fd 2770/*--- scale/kern.c ----------------------------------------------------------*/
e5d953b5
UH
2771
2772struct kern_info {
2773 gboolean is_gram, is_carat, is_ounce, is_pound, is_troy_ounce;
2774 gboolean is_pennyweight, is_grain, is_tael, is_momme, is_tola;
2775 gboolean is_percentage, is_piece, is_unstable, is_stable, is_error;
2776 int buflen;
2777};
2778
2779SR_PRIV gboolean sr_kern_packet_valid(const uint8_t *buf);
2780SR_PRIV int sr_kern_parse(const uint8_t *buf, float *floatval,
563ba4a5 2781 struct sr_datafeed_analog *analog, void *info);
e5d953b5 2782
aea4e458
LPC
2783/*--- sw_limits.c -----------------------------------------------------------*/
2784
2785struct sr_sw_limits {
2786 uint64_t limit_samples;
67785f25 2787 uint64_t limit_frames;
aea4e458
LPC
2788 uint64_t limit_msec;
2789 uint64_t samples_read;
67785f25 2790 uint64_t frames_read;
aea4e458
LPC
2791 uint64_t start_time;
2792};
2793
d579755a 2794SR_PRIV int sr_sw_limits_config_get(const struct sr_sw_limits *limits, uint32_t key,
aea4e458
LPC
2795 GVariant **data);
2796SR_PRIV int sr_sw_limits_config_set(struct sr_sw_limits *limits, uint32_t key,
2797 GVariant *data);
2798SR_PRIV void sr_sw_limits_acquisition_start(struct sr_sw_limits *limits);
2799SR_PRIV gboolean sr_sw_limits_check(struct sr_sw_limits *limits);
5aba93c3
GS
2800SR_PRIV int sr_sw_limits_get_remain(const struct sr_sw_limits *limits,
2801 uint64_t *samples, uint64_t *frames, uint64_t *msecs,
2802 gboolean *exceeded);
aea4e458
LPC
2803SR_PRIV void sr_sw_limits_update_samples_read(struct sr_sw_limits *limits,
2804 uint64_t samples_read);
67785f25
GS
2805SR_PRIV void sr_sw_limits_update_frames_read(struct sr_sw_limits *limits,
2806 uint64_t frames_read);
aea4e458
LPC
2807SR_PRIV void sr_sw_limits_init(struct sr_sw_limits *limits);
2808
47a102f9
GS
2809/*--- feed_queue.h ----------------------------------------------------------*/
2810
2811struct feed_queue_logic;
2812struct feed_queue_analog;
2813
2814SR_API struct feed_queue_logic *feed_queue_logic_alloc(
57140e5a 2815 const struct sr_dev_inst *sdi,
47a102f9
GS
2816 size_t sample_count, size_t unit_size);
2817SR_API int feed_queue_logic_submit(struct feed_queue_logic *q,
2818 const uint8_t *data, size_t count);
2819SR_API int feed_queue_logic_flush(struct feed_queue_logic *q);
f478c3e6 2820SR_API int feed_queue_logic_send_trigger(struct feed_queue_logic *q);
47a102f9
GS
2821SR_API void feed_queue_logic_free(struct feed_queue_logic *q);
2822
2823SR_API struct feed_queue_analog *feed_queue_analog_alloc(
57140e5a 2824 const struct sr_dev_inst *sdi,
47a102f9 2825 size_t sample_count, int digits, struct sr_channel *ch);
cc8b162f 2826SR_API int feed_queue_analog_mq_unit(struct feed_queue_analog *q,
43e6f7a7 2827 enum sr_mq mq, enum sr_mqflag mq_flag, enum sr_unit unit);
cc8b162f
GS
2828SR_API int feed_queue_analog_scale_offset(struct feed_queue_analog *q,
2829 const struct sr_rational *scale, const struct sr_rational *offset);
47a102f9
GS
2830SR_API int feed_queue_analog_submit(struct feed_queue_analog *q,
2831 float data, size_t count);
2832SR_API int feed_queue_analog_flush(struct feed_queue_analog *q);
2833SR_API void feed_queue_analog_free(struct feed_queue_analog *q);
2834
1483577e 2835#endif