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sr_dev_close(): Set status to SR_ST_INACTIVE.
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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2014 Daniel Elstner <daniel.kitta@gmail.com>
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
20#include <config.h>
21#include <glib.h>
22#include <libusb.h>
23#include <stdlib.h>
24#include <string.h>
25#include <libsigrok/libsigrok.h>
26#include <libsigrok-internal.h>
27#include "protocol.h"
28
29/* Supported device scan options.
30 */
31static const uint32_t scanopts[] = {
32 SR_CONF_CONN,
33};
34
35/* Driver capabilities.
36 */
37static const uint32_t drvopts[] = {
38 SR_CONF_LOGIC_ANALYZER,
39};
40
41/* Supported trigger match conditions.
42 */
43static const int32_t trigger_matches[] = {
44 SR_TRIGGER_ZERO,
45 SR_TRIGGER_ONE,
46 SR_TRIGGER_RISING,
47 SR_TRIGGER_FALLING,
48};
49
50/* Names assigned to available trigger sources.
51 */
52static const char *const trigger_source_names[] = {
53 [TRIGGER_CHANNELS] = "CH",
54 [TRIGGER_EXT_TRG] = "TRG",
55};
56
57/* Names assigned to available edge slope choices.
58 */
59static const char *const signal_edge_names[] = {
60 [EDGE_POSITIVE] = "r",
61 [EDGE_NEGATIVE] = "f",
62};
63
64/* Create a new sigrok device instance for the indicated LWLA model.
65 */
66static struct sr_dev_inst *dev_inst_new(const struct model_info *model)
67{
68 struct sr_dev_inst *sdi;
69 struct dev_context *devc;
70 int i;
71 char name[8];
72
73 /* Initialize private device context. */
74 devc = g_malloc0(sizeof(struct dev_context));
75 devc->model = model;
76 devc->active_fpga_config = FPGA_NOCONF;
77 devc->cfg_rle = TRUE;
78 devc->samplerate = model->samplerates[0];
79 devc->channel_mask = (UINT64_C(1) << model->num_channels) - 1;
80
81 /* Create sigrok device instance. */
82 sdi = g_malloc0(sizeof(struct sr_dev_inst));
83 sdi->status = SR_ST_INACTIVE;
84 sdi->vendor = g_strdup(VENDOR_NAME);
85 sdi->model = g_strdup(model->name);
86 sdi->priv = devc;
87
88 /* Generate list of logic channels. */
89 for (i = 0; i < model->num_channels; i++) {
90 /* The LWLA series simply number channels from CH1 to CHxx. */
91 g_snprintf(name, sizeof(name), "CH%d", i + 1);
92 sr_channel_new(sdi, i, SR_CHANNEL_LOGIC, TRUE, name);
93 }
94
95 return sdi;
96}
97
98/* Create a new device instance for a libusb device if it is a SysClk LWLA
99 * device and also matches the connection specification.
100 */
101static struct sr_dev_inst *dev_inst_new_matching(GSList *conn_matches,
102 libusb_device *dev)
103{
104 GSList *node;
105 struct sr_usb_dev_inst *usb;
106 const struct model_info *model;
107 struct sr_dev_inst *sdi;
108 struct libusb_device_descriptor des;
109 int bus, address, ret;
110 unsigned int vid, pid;
111
112 bus = libusb_get_bus_number(dev);
113 address = libusb_get_device_address(dev);
114
115 for (node = conn_matches; node != NULL; node = node->next) {
116 usb = node->data;
117 if (usb && usb->bus == bus && usb->address == address)
118 break; /* found */
119 }
120 if (conn_matches && !node)
121 return NULL; /* no match */
122
123 ret = libusb_get_device_descriptor(dev, &des);
124 if (ret != 0) {
125 sr_err("Failed to get USB device descriptor: %s.",
126 libusb_error_name(ret));
127 return NULL;
128 }
129 vid = des.idVendor;
130 pid = des.idProduct;
131
132 /* Create sigrok device instance. */
133 if (vid == USB_VID_SYSCLK && pid == USB_PID_LWLA1016) {
134 model = &lwla1016_info;
135 } else if (vid == USB_VID_SYSCLK && pid == USB_PID_LWLA1034) {
136 model = &lwla1034_info;
137 } else {
138 if (conn_matches)
139 sr_warn("USB device %d.%d (%04x:%04x) is not a"
140 " SysClk LWLA.", bus, address, vid, pid);
141 return NULL;
142 }
143 sdi = dev_inst_new(model);
144
145 sdi->inst_type = SR_INST_USB;
146 sdi->conn = sr_usb_dev_inst_new(bus, address, NULL);
147
148 return sdi;
149}
150
151/* Scan for SysClk LWLA devices and create a device instance for each one.
152 */
153static GSList *scan(struct sr_dev_driver *di, GSList *options)
154{
155 GSList *conn_devices, *devices, *node;
156 struct drv_context *drvc;
157 struct sr_dev_inst *sdi;
158 struct sr_config *src;
159 const char *conn;
160 libusb_device **devlist;
161 ssize_t num_devs, i;
162
163 drvc = di->context;
164 conn = NULL;
165 conn_devices = NULL;
166 devices = NULL;
167
168 for (node = options; node != NULL; node = node->next) {
169 src = node->data;
170 if (src->key == SR_CONF_CONN) {
171 conn = g_variant_get_string(src->data, NULL);
172 break;
173 }
174 }
175 if (conn) {
176 /* Find devices matching the connection specification. */
177 conn_devices = sr_usb_find(drvc->sr_ctx->libusb_ctx, conn);
178 }
179
180 /* List all libusb devices. */
181 num_devs = libusb_get_device_list(drvc->sr_ctx->libusb_ctx, &devlist);
182 if (num_devs < 0) {
183 sr_err("Failed to list USB devices: %s.",
184 libusb_error_name(num_devs));
185 g_slist_free_full(conn_devices,
186 (GDestroyNotify)&sr_usb_dev_inst_free);
187 return NULL;
188 }
189
190 /* Scan the USB device list for matching LWLA devices. */
191 for (i = 0; i < num_devs; i++) {
192 sdi = dev_inst_new_matching(conn_devices, devlist[i]);
193 if (!sdi)
194 continue; /* no match */
195
196 /* Register device instance with driver. */
197 devices = g_slist_append(devices, sdi);
198 }
199
200 libusb_free_device_list(devlist, 1);
201 g_slist_free_full(conn_devices, (GDestroyNotify)&sr_usb_dev_inst_free);
202
203 return std_scan_complete(di, devices);
204}
205
206/* Destroy the private device context.
207 */
208static void clear_dev_context(void *priv)
209{
210 struct dev_context *devc;
211
212 devc = priv;
213
214 if (devc->acquisition) {
215 sr_err("Cannot clear device context during acquisition!");
216 return; /* Leak and pray. */
217 }
218 sr_dbg("Device context cleared.");
219
220 g_free(devc);
221}
222
223/* Destroy all device instances.
224 */
225static int dev_clear(const struct sr_dev_driver *di)
226{
227 return std_dev_clear(di, &clear_dev_context);
228}
229
230/* Drain any pending data from the USB transfer buffers on the device.
231 * This may be necessary e.g. after a crash or generally to clean up after
232 * an abnormal condition.
233 */
234static int drain_usb(struct sr_usb_dev_inst *usb, unsigned int endpoint)
235{
236 int drained, xfer_len, ret;
237 unsigned char buf[512];
238 const unsigned int drain_timeout_ms = 10;
239
240 drained = 0;
241 do {
242 xfer_len = 0;
243 ret = libusb_bulk_transfer(usb->devhdl, endpoint,
244 buf, sizeof(buf), &xfer_len,
245 drain_timeout_ms);
246 drained += xfer_len;
247 } while (ret == LIBUSB_SUCCESS && xfer_len != 0);
248
249 if (ret != LIBUSB_SUCCESS && ret != LIBUSB_ERROR_TIMEOUT) {
250 sr_err("Failed to drain USB endpoint %u: %s.",
251 endpoint & (LIBUSB_ENDPOINT_IN - 1),
252 libusb_error_name(ret));
253 return SR_ERR;
254 }
255 if (drained > 0) {
256 sr_warn("Drained %d bytes from USB endpoint %u.",
257 drained, endpoint & (LIBUSB_ENDPOINT_IN - 1));
258 }
259
260 return SR_OK;
261}
262
263/* Open and initialize device.
264 */
265static int dev_open(struct sr_dev_inst *sdi)
266{
267 struct drv_context *drvc;
268 struct dev_context *devc;
269 struct sr_usb_dev_inst *usb;
270 int i, ret;
271
272 drvc = sdi->driver->context;
273 devc = sdi->priv;
274 usb = sdi->conn;
275
276 /* Try the whole shebang three times, fingers crossed. */
277 for (i = 0; i < 3; i++) {
278 ret = sr_usb_open(drvc->sr_ctx->libusb_ctx, usb);
279 if (ret != SR_OK)
280 return ret;
281
282 ret = libusb_set_configuration(usb->devhdl, USB_CONFIG);
283 if (ret != LIBUSB_SUCCESS) {
284 sr_err("Failed to set USB configuration: %s.",
285 libusb_error_name(ret));
286 sr_usb_close(usb);
287 return SR_ERR;
288 }
289
290 ret = libusb_claim_interface(usb->devhdl, USB_INTERFACE);
291 if (ret != LIBUSB_SUCCESS) {
292 sr_err("Failed to claim interface: %s.",
293 libusb_error_name(ret));
294 sr_usb_close(usb);
295 return SR_ERR;
296 }
297
298 ret = drain_usb(usb, EP_REPLY);
299 if (ret != SR_OK) {
300 sr_usb_close(usb);
301 return ret;
302 }
303 /* This delay appears to be necessary for reliable operation. */
304 g_usleep(30 * 1000);
305
306 devc->active_fpga_config = FPGA_NOCONF;
307 devc->short_transfer_quirk = FALSE;
308 devc->state = STATE_IDLE;
309
310 ret = (*devc->model->apply_fpga_config)(sdi);
311
312 if (ret == SR_OK)
313 ret = (*devc->model->device_init_check)(sdi);
314 if (ret == SR_OK)
315 break;
316
317 /* Rinse and repeat. */
318 sr_usb_close(usb);
319 }
320
321 if (ret == SR_OK && devc->short_transfer_quirk)
322 sr_warn("Short transfer quirk detected! "
323 "Memory reads will be slow.");
324 return ret;
325}
326
327/* Shutdown and close device. */
328static int dev_close(struct sr_dev_inst *sdi)
329{
330 struct dev_context *devc;
331 struct sr_usb_dev_inst *usb;
332 int ret;
333
334 devc = sdi->priv;
335 usb = sdi->conn;
336
337 if (devc->acquisition) {
338 sr_err("Cannot close device during acquisition!");
339 /* Request stop, leak handle, and prepare for the worst. */
340 devc->cancel_requested = TRUE;
341 return SR_ERR_BUG;
342 }
343
344 /* Download of the shutdown bitstream, if any. */
345 ret = (*devc->model->apply_fpga_config)(sdi);
346 if (ret != SR_OK)
347 sr_warn("Unable to shut down device.");
348
349 libusb_release_interface(usb->devhdl, USB_INTERFACE);
350
351 sr_usb_close(usb);
352
353 return SR_OK;
354}
355
356/* Check whether the device options contain a specific key.
357 * Also match against get/set/list bits if specified.
358 */
359static int has_devopt(const struct model_info *model, uint32_t key)
360{
361 unsigned int i;
362
363 for (i = 0; i < model->num_devopts; i++) {
364 if ((model->devopts[i] & (SR_CONF_MASK | key)) == key)
365 return TRUE;
366 }
367
368 return FALSE;
369}
370
371/* Read device configuration setting.
372 */
373static int config_get(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
374 const struct sr_channel_group *cg)
375{
376 struct dev_context *devc;
377 unsigned int idx;
378
379 (void)cg;
380
381 if (!sdi)
382 return SR_ERR_ARG;
383
384 devc = sdi->priv;
385
386 if (!has_devopt(devc->model, key | SR_CONF_GET))
387 return SR_ERR_NA;
388
389 switch (key) {
390 case SR_CONF_SAMPLERATE:
391 *data = g_variant_new_uint64(devc->samplerate);
392 break;
393 case SR_CONF_LIMIT_MSEC:
394 *data = g_variant_new_uint64(devc->limit_msec);
395 break;
396 case SR_CONF_LIMIT_SAMPLES:
397 *data = g_variant_new_uint64(devc->limit_samples);
398 break;
399 case SR_CONF_RLE:
400 *data = g_variant_new_boolean(devc->cfg_rle);
401 break;
402 case SR_CONF_EXTERNAL_CLOCK:
403 *data = g_variant_new_boolean(devc->cfg_clock_source
404 == CLOCK_EXT_CLK);
405 break;
406 case SR_CONF_CLOCK_EDGE:
407 idx = devc->cfg_clock_edge;
408 if (idx >= ARRAY_SIZE(signal_edge_names))
409 return SR_ERR_BUG;
410 *data = g_variant_new_string(signal_edge_names[idx]);
411 break;
412 case SR_CONF_TRIGGER_SOURCE:
413 idx = devc->cfg_trigger_source;
414 if (idx >= ARRAY_SIZE(trigger_source_names))
415 return SR_ERR_BUG;
416 *data = g_variant_new_string(trigger_source_names[idx]);
417 break;
418 case SR_CONF_TRIGGER_SLOPE:
419 idx = devc->cfg_trigger_slope;
420 if (idx >= ARRAY_SIZE(signal_edge_names))
421 return SR_ERR_BUG;
422 *data = g_variant_new_string(signal_edge_names[idx]);
423 break;
424 default:
425 /* Must not happen for a key listed in devopts. */
426 return SR_ERR_BUG;
427 }
428
429 return SR_OK;
430}
431
432/* Helper for mapping a string-typed configuration value to an index
433 * within a table of possible values.
434 */
435static int lookup_index(GVariant *value, const char *const *table, int len)
436{
437 const char *entry;
438 int i;
439
440 entry = g_variant_get_string(value, NULL);
441 if (!entry)
442 return -1;
443
444 /* Linear search is fine for very small tables. */
445 for (i = 0; i < len; i++) {
446 if (strcmp(entry, table[i]) == 0)
447 return i;
448 }
449
450 return -1;
451}
452
453/* Write device configuration setting.
454 */
455static int config_set(uint32_t key, GVariant *data, const struct sr_dev_inst *sdi,
456 const struct sr_channel_group *cg)
457{
458 uint64_t value;
459 struct dev_context *devc;
460 int idx;
461
462 (void)cg;
463
464 if (!sdi)
465 return SR_ERR_ARG;
466
467 devc = sdi->priv;
468
469 if (!has_devopt(devc->model, key | SR_CONF_SET))
470 return SR_ERR_NA;
471
472 switch (key) {
473 case SR_CONF_SAMPLERATE:
474 value = g_variant_get_uint64(data);
475 if (value < devc->model->samplerates[devc->model->num_samplerates - 1]
476 || value > devc->model->samplerates[0])
477 return SR_ERR_SAMPLERATE;
478 devc->samplerate = value;
479 break;
480 case SR_CONF_LIMIT_MSEC:
481 value = g_variant_get_uint64(data);
482 if (value > MAX_LIMIT_MSEC)
483 return SR_ERR_ARG;
484 devc->limit_msec = value;
485 break;
486 case SR_CONF_LIMIT_SAMPLES:
487 value = g_variant_get_uint64(data);
488 if (value > MAX_LIMIT_SAMPLES)
489 return SR_ERR_ARG;
490 devc->limit_samples = value;
491 break;
492 case SR_CONF_RLE:
493 devc->cfg_rle = g_variant_get_boolean(data);
494 break;
495 case SR_CONF_EXTERNAL_CLOCK:
496 devc->cfg_clock_source = (g_variant_get_boolean(data))
497 ? CLOCK_EXT_CLK : CLOCK_INTERNAL;
498 break;
499 case SR_CONF_CLOCK_EDGE:
500 idx = lookup_index(data, signal_edge_names,
501 ARRAY_SIZE(signal_edge_names));
502 if (idx < 0)
503 return SR_ERR_ARG;
504 devc->cfg_clock_edge = idx;
505 break;
506 case SR_CONF_TRIGGER_SOURCE:
507 idx = lookup_index(data, trigger_source_names,
508 ARRAY_SIZE(trigger_source_names));
509 if (idx < 0)
510 return SR_ERR_ARG;
511 devc->cfg_trigger_source = idx;
512 break;
513 case SR_CONF_TRIGGER_SLOPE:
514 idx = lookup_index(data, signal_edge_names,
515 ARRAY_SIZE(signal_edge_names));
516 if (idx < 0)
517 return SR_ERR_ARG;
518 devc->cfg_trigger_slope = idx;
519 break;
520 default:
521 /* Must not happen for a key listed in devopts. */
522 return SR_ERR_BUG;
523 }
524
525 return SR_OK;
526}
527
528/* Apply channel configuration change.
529 */
530static int config_channel_set(const struct sr_dev_inst *sdi,
531 struct sr_channel *ch, unsigned int changes)
532{
533 uint64_t channel_bit;
534 struct dev_context *devc;
535
536 if (!sdi)
537 return SR_ERR_ARG;
538
539 devc = sdi->priv;
540
541 if (ch->index < 0 || ch->index >= devc->model->num_channels) {
542 sr_err("Channel index %d out of range.", ch->index);
543 return SR_ERR_BUG;
544 }
545
546 if ((changes & SR_CHANNEL_SET_ENABLED) != 0) {
547 channel_bit = UINT64_C(1) << ch->index;
548
549 /* Enable or disable logic input for this channel. */
550 if (ch->enabled)
551 devc->channel_mask |= channel_bit;
552 else
553 devc->channel_mask &= ~channel_bit;
554 }
555
556 return SR_OK;
557}
558
559/* Derive trigger masks from the session's trigger configuration.
560 */
561static int prepare_trigger_masks(const struct sr_dev_inst *sdi)
562{
563 uint64_t trigger_mask, trigger_values, trigger_edge_mask;
564 uint64_t level_bit, type_bit;
565 struct dev_context *devc;
566 struct sr_trigger *trigger;
567 struct sr_trigger_stage *stage;
568 struct sr_trigger_match *match;
569 const GSList *node;
570 int idx;
571 enum sr_trigger_matches trg;
572
573 devc = sdi->priv;
574
575 trigger = sr_session_trigger_get(sdi->session);
576 if (!trigger || !trigger->stages)
577 return SR_OK;
578
579 if (trigger->stages->next) {
580 sr_err("This device only supports 1 trigger stage.");
581 return SR_ERR_ARG;
582 }
583 stage = trigger->stages->data;
584
585 trigger_mask = 0;
586 trigger_values = 0;
587 trigger_edge_mask = 0;
588
589 for (node = stage->matches; node; node = node->next) {
590 match = node->data;
591
592 if (!match->channel->enabled)
593 continue; /* Ignore disabled channel. */
594
595 idx = match->channel->index;
596 trg = match->match;
597
598 if (idx < 0 || idx >= devc->model->num_channels) {
599 sr_err("Channel index %d out of range.", idx);
600 return SR_ERR_BUG; /* Should not happen. */
601 }
602 if (trg != SR_TRIGGER_ZERO
603 && trg != SR_TRIGGER_ONE
604 && trg != SR_TRIGGER_RISING
605 && trg != SR_TRIGGER_FALLING) {
606 sr_err("Unsupported trigger match for CH%d.", idx + 1);
607 return SR_ERR_ARG;
608 }
609 level_bit = (trg == SR_TRIGGER_ONE
610 || trg == SR_TRIGGER_RISING) ? 1 : 0;
611 type_bit = (trg == SR_TRIGGER_RISING
612 || trg == SR_TRIGGER_FALLING) ? 1 : 0;
613
614 trigger_mask |= UINT64_C(1) << idx;
615 trigger_values |= level_bit << idx;
616 trigger_edge_mask |= type_bit << idx;
617 }
618 devc->trigger_mask = trigger_mask;
619 devc->trigger_values = trigger_values;
620 devc->trigger_edge_mask = trigger_edge_mask;
621
622 return SR_OK;
623}
624
625/* Apply current device configuration to the hardware.
626 */
627static int config_commit(const struct sr_dev_inst *sdi)
628{
629 struct dev_context *devc;
630 int ret;
631
632 devc = sdi->priv;
633
634 if (devc->acquisition) {
635 sr_err("Acquisition still in progress?");
636 return SR_ERR;
637 }
638
639 ret = prepare_trigger_masks(sdi);
640 if (ret != SR_OK)
641 return ret;
642
643 ret = (*devc->model->apply_fpga_config)(sdi);
644 if (ret != SR_OK) {
645 sr_err("Failed to apply FPGA configuration.");
646 return ret;
647 }
648
649 return SR_OK;
650}
651
652/* List available choices for a configuration setting.
653 */
654static int config_list(uint32_t key, GVariant **data,
655 const struct sr_dev_inst *sdi,
656 const struct sr_channel_group *cg)
657{
658 struct dev_context *devc;
659 GVariant *gvar;
660 GVariantBuilder gvb;
661
662 (void)cg;
663
664 if (key == SR_CONF_SCAN_OPTIONS) {
665 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
666 scanopts, ARRAY_SIZE(scanopts), sizeof(scanopts[0]));
667 return SR_OK;
668 }
669 if (!sdi) {
670 if (key != SR_CONF_DEVICE_OPTIONS)
671 return SR_ERR_ARG;
672
673 /* List driver capabilities. */
674 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
675 drvopts, ARRAY_SIZE(drvopts), sizeof(drvopts[0]));
676 return SR_OK;
677 }
678
679 devc = sdi->priv;
680
681 /* List the model's device options. */
682 if (key == SR_CONF_DEVICE_OPTIONS) {
683 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
684 devc->model->devopts, devc->model->num_devopts,
685 sizeof(devc->model->devopts[0]));
686 return SR_OK;
687 }
688
689 if (!has_devopt(devc->model, key | SR_CONF_LIST))
690 return SR_ERR_NA;
691
692 switch (key) {
693 case SR_CONF_SAMPLERATE:
694 g_variant_builder_init(&gvb, G_VARIANT_TYPE_VARDICT);
695 gvar = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT64,
696 devc->model->samplerates, devc->model->num_samplerates,
697 sizeof(devc->model->samplerates[0]));
698 g_variant_builder_add(&gvb, "{sv}", "samplerates", gvar);
699 *data = g_variant_builder_end(&gvb);
700 break;
701 case SR_CONF_TRIGGER_MATCH:
702 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_INT32,
703 trigger_matches, ARRAY_SIZE(trigger_matches),
704 sizeof(trigger_matches[0]));
705 break;
706 case SR_CONF_TRIGGER_SOURCE:
707 *data = g_variant_new_strv(trigger_source_names,
708 ARRAY_SIZE(trigger_source_names));
709 break;
710 case SR_CONF_TRIGGER_SLOPE:
711 case SR_CONF_CLOCK_EDGE:
712 *data = g_variant_new_strv(signal_edge_names,
713 ARRAY_SIZE(signal_edge_names));
714 break;
715 default:
716 /* Must not happen for a key listed in devopts. */
717 return SR_ERR_BUG;
718 }
719
720 return SR_OK;
721}
722
723/* Set up the device hardware to begin capturing samples as soon as the
724 * configured trigger conditions are met, or immediately if no triggers
725 * are configured.
726 */
727static int dev_acquisition_start(const struct sr_dev_inst *sdi)
728{
729 return lwla_start_acquisition(sdi);
730}
731
732/* Request that a running capture operation be stopped.
733 */
734static int dev_acquisition_stop(struct sr_dev_inst *sdi)
735{
736 struct dev_context *devc;
737
738 devc = sdi->priv;
739
740 if (devc->state != STATE_IDLE && !devc->cancel_requested) {
741 devc->cancel_requested = TRUE;
742 sr_dbg("Requesting cancel.");
743 }
744
745 return SR_OK;
746}
747
748/* SysClk LWLA driver descriptor.
749 */
750static struct sr_dev_driver sysclk_lwla_driver_info = {
751 .name = "sysclk-lwla",
752 .longname = "SysClk LWLA series",
753 .api_version = 1,
754 .init = std_init,
755 .cleanup = std_cleanup,
756 .scan = scan,
757 .dev_list = std_dev_list,
758 .dev_clear = dev_clear,
759 .config_get = config_get,
760 .config_set = config_set,
761 .config_channel_set = config_channel_set,
762 .config_commit = config_commit,
763 .config_list = config_list,
764 .dev_open = dev_open,
765 .dev_close = dev_close,
766 .dev_acquisition_start = dev_acquisition_start,
767 .dev_acquisition_stop = dev_acquisition_stop,
768 .context = NULL,
769};
770SR_REGISTER_DEV_DRIVER(sysclk_lwla_driver_info);