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sr_dev_close(): Factor out SR_ERR_DEV_CLOSED check.
[libsigrok.git] / src / hardware / chronovu-la / api.c
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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2011-2015 Uwe Hermann <uwe@hermann-uwe.de>
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 2 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
20#include <config.h>
21#include "protocol.h"
22
23static const uint32_t drvopts[] = {
24 SR_CONF_LOGIC_ANALYZER,
25};
26
27static const uint32_t scanopts[] = {
28 SR_CONF_CONN,
29};
30
31static const uint32_t devopts[] = {
32 SR_CONF_LIMIT_MSEC | SR_CONF_SET,
33 SR_CONF_LIMIT_SAMPLES | SR_CONF_SET | SR_CONF_LIST,
34 SR_CONF_CONN | SR_CONF_GET,
35 SR_CONF_SAMPLERATE | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
36 SR_CONF_TRIGGER_MATCH | SR_CONF_LIST,
37};
38
39static const int32_t trigger_matches[] = {
40 SR_TRIGGER_ZERO,
41 SR_TRIGGER_ONE,
42 SR_TRIGGER_RISING,
43 SR_TRIGGER_FALLING,
44};
45
46static void clear_helper(void *priv)
47{
48 struct dev_context *devc;
49
50 devc = priv;
51
52 ftdi_free(devc->ftdic);
53 g_free(devc->final_buf);
54}
55
56static int dev_clear(const struct sr_dev_driver *di)
57{
58 return std_dev_clear(di, clear_helper);
59}
60
61static int add_device(int model, struct libusb_device_descriptor *des,
62 const char *serial_num, const char *connection_id, libusb_device *usbdev,
63 GSList **devices)
64{
65 int ret;
66 unsigned int i;
67 struct sr_dev_inst *sdi;
68 struct dev_context *devc;
69
70 ret = SR_OK;
71
72 /* Allocate memory for our private device context. */
73 devc = g_malloc0(sizeof(struct dev_context));
74
75 /* Set some sane defaults. */
76 devc->prof = &cv_profiles[model];
77 devc->ftdic = NULL; /* Will be set in the open() API call. */
78 devc->cur_samplerate = 0; /* Set later (different for LA8/LA16). */
79 devc->limit_msec = 0;
80 devc->limit_samples = 0;
81 memset(devc->mangled_buf, 0, BS);
82 devc->final_buf = NULL;
83 devc->trigger_pattern = 0x0000; /* Irrelevant, see trigger_mask. */
84 devc->trigger_mask = 0x0000; /* All channels: "don't care". */
85 devc->trigger_edgemask = 0x0000; /* All channels: "state triggered". */
86 devc->trigger_found = 0;
87 devc->done = 0;
88 devc->block_counter = 0;
89 devc->divcount = 0;
90 devc->usb_vid = des->idVendor;
91 devc->usb_pid = des->idProduct;
92 memset(devc->samplerates, 0, sizeof(uint64_t) * 255);
93
94 /* Allocate memory where we'll store the de-mangled data. */
95 if (!(devc->final_buf = g_try_malloc(SDRAM_SIZE))) {
96 sr_err("Failed to allocate memory for sample buffer.");
97 ret = SR_ERR_MALLOC;
98 goto err_free_devc;
99 }
100
101 /* We now know the device, set its max. samplerate as default. */
102 devc->cur_samplerate = devc->prof->max_samplerate;
103
104 /* Register the device with libsigrok. */
105 sdi = g_malloc0(sizeof(struct sr_dev_inst));
106 sdi->status = SR_ST_INACTIVE;
107 sdi->vendor = g_strdup("ChronoVu");
108 sdi->model = g_strdup(devc->prof->modelname);
109 sdi->serial_num = g_strdup(serial_num);
110 sdi->connection_id = g_strdup(connection_id);
111 sdi->conn = sr_usb_dev_inst_new(libusb_get_bus_number(usbdev),
112 libusb_get_device_address(usbdev), NULL);
113 sdi->priv = devc;
114
115 for (i = 0; i < devc->prof->num_channels; i++)
116 sr_channel_new(sdi, i, SR_CHANNEL_LOGIC, TRUE,
117 cv_channel_names[i]);
118
119 *devices = g_slist_append(*devices, sdi);
120
121 if (ret == SR_OK)
122 return SR_OK;
123
124err_free_devc:
125 g_free(devc);
126
127 return ret;
128}
129
130static GSList *scan(struct sr_dev_driver *di, GSList *options)
131{
132 int i, ret, model;
133 struct drv_context *drvc;
134 GSList *devices, *conn_devices, *l;
135 struct sr_usb_dev_inst *usb;
136 struct sr_config *src;
137 struct libusb_device_descriptor des;
138 libusb_device **devlist;
139 struct libusb_device_handle *hdl;
140 const char *conn;
141 char product[64], serial_num[64], connection_id[64];
142
143 drvc = di->context;
144
145 conn = NULL;
146 for (l = options; l; l = l->next) {
147 src = l->data;
148 switch (src->key) {
149 case SR_CONF_CONN:
150 conn = g_variant_get_string(src->data, NULL);
151 break;
152 }
153 }
154 if (conn)
155 conn_devices = sr_usb_find(drvc->sr_ctx->libusb_ctx, conn);
156 else
157 conn_devices = NULL;
158
159 devices = NULL;
160 libusb_get_device_list(drvc->sr_ctx->libusb_ctx, &devlist);
161
162 for (i = 0; devlist[i]; i++) {
163 if (conn) {
164 for (l = conn_devices; l; l = l->next) {
165 usb = l->data;
166 if (usb->bus == libusb_get_bus_number(devlist[i])
167 && usb->address == libusb_get_device_address(devlist[i]))
168 break;
169 }
170 if (!l)
171 /* This device matched none of the ones that
172 * matched the conn specification. */
173 continue;
174 }
175
176 libusb_get_device_descriptor(devlist[i], &des);
177
178 if ((ret = libusb_open(devlist[i], &hdl)) < 0)
179 continue;
180
181 if (des.iProduct == 0) {
182 product[0] = '\0';
183 } else if ((ret = libusb_get_string_descriptor_ascii(hdl,
184 des.iProduct, (unsigned char *)product,
185 sizeof(product))) < 0) {
186 sr_warn("Failed to get product string descriptor: %s.",
187 libusb_error_name(ret));
188 continue;
189 }
190
191 if (des.iSerialNumber == 0) {
192 serial_num[0] = '\0';
193 } else if ((ret = libusb_get_string_descriptor_ascii(hdl,
194 des.iSerialNumber, (unsigned char *)serial_num,
195 sizeof(serial_num))) < 0) {
196 sr_warn("Failed to get serial number string descriptor: %s.",
197 libusb_error_name(ret));
198 continue;
199 }
200
201 usb_get_port_path(devlist[i], connection_id, sizeof(connection_id));
202
203 libusb_close(hdl);
204
205 if (!strcmp(product, "ChronoVu LA8")) {
206 model = 0;
207 } else if (!strcmp(product, "ChronoVu LA16")) {
208 model = 1;
209 } else {
210 sr_spew("Unknown iProduct string '%s'.", product);
211 continue;
212 }
213
214 sr_dbg("Found %s (%04x:%04x, %d.%d, %s).",
215 product, des.idVendor, des.idProduct,
216 libusb_get_bus_number(devlist[i]),
217 libusb_get_device_address(devlist[i]), connection_id);
218
219 if ((ret = add_device(model, &des, serial_num, connection_id,
220 devlist[i], &devices)) < 0) {
221 sr_dbg("Failed to add device: %d.", ret);
222 }
223 }
224
225 libusb_free_device_list(devlist, 1);
226 g_slist_free_full(conn_devices, (GDestroyNotify)sr_usb_dev_inst_free);
227
228 return std_scan_complete(di, devices);
229}
230
231static int dev_open(struct sr_dev_inst *sdi)
232{
233 struct dev_context *devc;
234 int ret;
235
236 devc = sdi->priv;
237
238 /* Allocate memory for the FTDI context and initialize it. */
239 if (!(devc->ftdic = ftdi_new())) {
240 sr_err("Failed to initialize libftdi.");
241 return SR_ERR;
242 }
243
244 sr_dbg("Opening %s device (%04x:%04x).", devc->prof->modelname,
245 devc->usb_vid, devc->usb_pid);
246
247 /* Open the device. */
248 if ((ret = ftdi_usb_open_desc(devc->ftdic, devc->usb_vid,
249 devc->usb_pid, devc->prof->iproduct, NULL)) < 0) {
250 sr_err("Failed to open FTDI device (%d): %s.",
251 ret, ftdi_get_error_string(devc->ftdic));
252 goto err_ftdi_free;
253 }
254 sr_dbg("Device opened successfully.");
255
256 /* Purge RX/TX buffers in the FTDI chip. */
257 if ((ret = ftdi_usb_purge_buffers(devc->ftdic)) < 0) {
258 sr_err("Failed to purge FTDI buffers (%d): %s.",
259 ret, ftdi_get_error_string(devc->ftdic));
260 goto err_ftdi_free;
261 }
262 sr_dbg("FTDI buffers purged successfully.");
263
264 /* Enable flow control in the FTDI chip. */
265 if ((ret = ftdi_setflowctrl(devc->ftdic, SIO_RTS_CTS_HS)) < 0) {
266 sr_err("Failed to enable FTDI flow control (%d): %s.",
267 ret, ftdi_get_error_string(devc->ftdic));
268 goto err_ftdi_free;
269 }
270 sr_dbg("FTDI flow control enabled successfully.");
271
272 /* Wait 100ms. */
273 g_usleep(100 * 1000);
274
275 sdi->status = SR_ST_ACTIVE;
276
277 if (ret == SR_OK)
278 return SR_OK;
279
280err_ftdi_free:
281 ftdi_free(devc->ftdic); /* Close device (if open), free FTDI context. */
282 devc->ftdic = NULL;
283 return ret;
284}
285
286static int dev_close(struct sr_dev_inst *sdi)
287{
288 int ret;
289 struct dev_context *devc;
290
291 devc = sdi->priv;
292
293 if (devc->ftdic && (ret = ftdi_usb_close(devc->ftdic)) < 0)
294 sr_err("Failed to close FTDI device (%d): %s.",
295 ret, ftdi_get_error_string(devc->ftdic));
296
297 sdi->status = SR_ST_INACTIVE;
298
299 return SR_OK;
300}
301
302static int config_get(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
303 const struct sr_channel_group *cg)
304{
305 struct dev_context *devc;
306 struct sr_usb_dev_inst *usb;
307 char str[128];
308
309 (void)cg;
310
311 switch (key) {
312 case SR_CONF_CONN:
313 if (!sdi || !(usb = sdi->conn))
314 return SR_ERR_ARG;
315 snprintf(str, 128, "%d.%d", usb->bus, usb->address);
316 *data = g_variant_new_string(str);
317 break;
318 case SR_CONF_SAMPLERATE:
319 if (!sdi)
320 return SR_ERR_BUG;
321 devc = sdi->priv;
322 *data = g_variant_new_uint64(devc->cur_samplerate);
323 break;
324 default:
325 return SR_ERR_NA;
326 }
327
328 return SR_OK;
329}
330
331static int config_set(uint32_t key, GVariant *data, const struct sr_dev_inst *sdi,
332 const struct sr_channel_group *cg)
333{
334 struct dev_context *devc;
335
336 (void)cg;
337
338 devc = sdi->priv;
339
340 switch (key) {
341 case SR_CONF_SAMPLERATE:
342 if (cv_set_samplerate(sdi, g_variant_get_uint64(data)) < 0)
343 return SR_ERR;
344 break;
345 case SR_CONF_LIMIT_MSEC:
346 if (g_variant_get_uint64(data) == 0)
347 return SR_ERR_ARG;
348 devc->limit_msec = g_variant_get_uint64(data);
349 break;
350 case SR_CONF_LIMIT_SAMPLES:
351 if (g_variant_get_uint64(data) == 0)
352 return SR_ERR_ARG;
353 devc->limit_samples = g_variant_get_uint64(data);
354 break;
355 default:
356 return SR_ERR_NA;
357 }
358
359 return SR_OK;
360}
361
362static int config_list(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
363 const struct sr_channel_group *cg)
364{
365 GVariant *gvar, *grange[2];
366 GVariantBuilder gvb;
367 struct dev_context *devc;
368
369 (void)cg;
370
371 switch (key) {
372 case SR_CONF_SCAN_OPTIONS:
373 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
374 scanopts, ARRAY_SIZE(scanopts), sizeof(uint32_t));
375 break;
376 case SR_CONF_DEVICE_OPTIONS:
377 if (!sdi)
378 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
379 drvopts, ARRAY_SIZE(drvopts), sizeof(uint32_t));
380 else
381 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
382 devopts, ARRAY_SIZE(devopts), sizeof(uint32_t));
383 break;
384 case SR_CONF_SAMPLERATE:
385 if (!sdi)
386 return SR_ERR_BUG;
387 devc = sdi->priv;
388 cv_fill_samplerates_if_needed(sdi);
389 g_variant_builder_init(&gvb, G_VARIANT_TYPE("a{sv}"));
390 gvar = g_variant_new_fixed_array(G_VARIANT_TYPE("t"),
391 devc->samplerates,
392 ARRAY_SIZE(devc->samplerates),
393 sizeof(uint64_t));
394 g_variant_builder_add(&gvb, "{sv}", "samplerates", gvar);
395 *data = g_variant_builder_end(&gvb);
396 break;
397 case SR_CONF_LIMIT_SAMPLES:
398 if (!sdi || !sdi->priv || !(devc = sdi->priv) || !devc->prof)
399 return SR_ERR_BUG;
400 grange[0] = g_variant_new_uint64(0);
401 if (devc->prof->model == CHRONOVU_LA8)
402 grange[1] = g_variant_new_uint64(MAX_NUM_SAMPLES);
403 else
404 grange[1] = g_variant_new_uint64(MAX_NUM_SAMPLES / 2);
405 *data = g_variant_new_tuple(grange, 2);
406 break;
407 case SR_CONF_TRIGGER_MATCH:
408 if (!sdi || !sdi->priv || !(devc = sdi->priv) || !devc->prof)
409 return SR_ERR_BUG;
410 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_INT32,
411 trigger_matches, devc->prof->num_trigger_matches,
412 sizeof(int32_t));
413 break;
414 default:
415 return SR_ERR_NA;
416 }
417
418 return SR_OK;
419}
420
421static int receive_data(int fd, int revents, void *cb_data)
422{
423 int i, ret;
424 struct sr_dev_inst *sdi;
425 struct dev_context *devc;
426
427 (void)fd;
428 (void)revents;
429
430 if (!(sdi = cb_data)) {
431 sr_err("cb_data was NULL.");
432 return FALSE;
433 }
434
435 if (!(devc = sdi->priv)) {
436 sr_err("sdi->priv was NULL.");
437 return FALSE;
438 }
439
440 if (!devc->ftdic) {
441 sr_err("devc->ftdic was NULL.");
442 return FALSE;
443 }
444
445 /* Get one block of data. */
446 if ((ret = cv_read_block(devc)) < 0) {
447 sr_err("Failed to read data block: %d.", ret);
448 sr_dev_acquisition_stop(sdi);
449 return FALSE;
450 }
451
452 /* We need to get exactly NUM_BLOCKS blocks (i.e. 8MB) of data. */
453 if (devc->block_counter != (NUM_BLOCKS - 1)) {
454 devc->block_counter++;
455 return TRUE;
456 }
457
458 sr_dbg("Sampling finished, sending data to session bus now.");
459
460 /*
461 * All data was received and demangled, send it to the session bus.
462 *
463 * Note: Due to the method how data is spread across the 8MByte of
464 * SDRAM, we can _not_ send it to the session bus in a streaming
465 * manner while we receive it. We have to receive and de-mangle the
466 * full 8MByte first, only then the whole buffer contains valid data.
467 */
468 for (i = 0; i < NUM_BLOCKS; i++)
469 cv_send_block_to_session_bus(sdi, i);
470
471 sr_dev_acquisition_stop(sdi);
472
473 return TRUE;
474}
475
476static int dev_acquisition_start(const struct sr_dev_inst *sdi)
477{
478 struct dev_context *devc;
479 uint8_t buf[8];
480 int bytes_to_write, bytes_written;
481
482 devc = sdi->priv;
483
484 if (!devc->ftdic) {
485 sr_err("devc->ftdic was NULL.");
486 return SR_ERR_BUG;
487 }
488
489 devc->divcount = cv_samplerate_to_divcount(sdi, devc->cur_samplerate);
490 if (devc->divcount == 0xff) {
491 sr_err("Invalid divcount/samplerate.");
492 return SR_ERR;
493 }
494
495 if (cv_convert_trigger(sdi) != SR_OK) {
496 sr_err("Failed to configure trigger.");
497 return SR_ERR;
498 }
499
500 /* Fill acquisition parameters into buf[]. */
501 if (devc->prof->model == CHRONOVU_LA8) {
502 buf[0] = devc->divcount;
503 buf[1] = 0xff; /* This byte must always be 0xff. */
504 buf[2] = devc->trigger_pattern & 0xff;
505 buf[3] = devc->trigger_mask & 0xff;
506 bytes_to_write = 4;
507 } else {
508 buf[0] = devc->divcount;
509 buf[1] = 0xff; /* This byte must always be 0xff. */
510 buf[2] = (devc->trigger_pattern & 0xff00) >> 8; /* LSB */
511 buf[3] = (devc->trigger_pattern & 0x00ff) >> 0; /* MSB */
512 buf[4] = (devc->trigger_mask & 0xff00) >> 8; /* LSB */
513 buf[5] = (devc->trigger_mask & 0x00ff) >> 0; /* MSB */
514 buf[6] = (devc->trigger_edgemask & 0xff00) >> 8; /* LSB */
515 buf[7] = (devc->trigger_edgemask & 0x00ff) >> 0; /* MSB */
516 bytes_to_write = 8;
517 }
518
519 /* Start acquisition. */
520 bytes_written = cv_write(devc, buf, bytes_to_write);
521
522 if (bytes_written < 0 || bytes_written != bytes_to_write) {
523 sr_err("Acquisition failed to start.");
524 return SR_ERR;
525 }
526
527 sr_dbg("Hardware acquisition started successfully.");
528
529 std_session_send_df_header(sdi);
530
531 /* Time when we should be done (for detecting trigger timeouts). */
532 devc->done = (devc->divcount + 1) * devc->prof->trigger_constant +
533 g_get_monotonic_time() + (10 * G_TIME_SPAN_SECOND);
534 devc->block_counter = 0;
535 devc->trigger_found = 0;
536
537 /* Hook up a dummy handler to receive data from the device. */
538 sr_session_source_add(sdi->session, -1, 0, 0, receive_data, (void *)sdi);
539
540 return SR_OK;
541}
542
543static int dev_acquisition_stop(struct sr_dev_inst *sdi)
544{
545 sr_session_source_remove(sdi->session, -1);
546 std_session_send_df_end(sdi);
547
548 return SR_OK;
549}
550
551static struct sr_dev_driver chronovu_la_driver_info = {
552 .name = "chronovu-la",
553 .longname = "ChronoVu LA8/LA16",
554 .api_version = 1,
555 .init = std_init,
556 .cleanup = std_cleanup,
557 .scan = scan,
558 .dev_list = std_dev_list,
559 .dev_clear = dev_clear,
560 .config_get = config_get,
561 .config_set = config_set,
562 .config_list = config_list,
563 .dev_open = dev_open,
564 .dev_close = dev_close,
565 .dev_acquisition_start = dev_acquisition_start,
566 .dev_acquisition_stop = dev_acquisition_stop,
567 .context = NULL,
568};
569SR_REGISTER_DEV_DRIVER(chronovu_la_driver_info);