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1/*
2 * This file is part of the sigrok project.
3 *
4 * Copyright (C) 2010-2012 Bert Vermeulen <bert@biot.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 <stdio.h>
21#include <stdlib.h>
22#include <string.h>
23#include <sys/time.h>
24#include <inttypes.h>
25#include <glib.h>
26#include <libusb.h>
27#include "libsigrok.h"
28#include "libsigrok-internal.h"
29#include "analyzer.h"
30
31#define USB_VENDOR 0x0c12
32
33#define VENDOR_NAME "ZEROPLUS"
34#define MODEL_NAME "Logic Cube LAP-C"
35#define MODEL_VERSION NULL
36
37#define NUM_PROBES 16
38#define USB_INTERFACE 0
39#define USB_CONFIGURATION 1
40#define NUM_TRIGGER_STAGES 4
41#define TRIGGER_TYPE "01"
42
43#define PACKET_SIZE 2048 /* ?? */
44
45//#define ZP_EXPERIMENTAL
46
47typedef struct {
48 unsigned short vid;
49 unsigned short pid;
50 char *model_name;
51 unsigned int channels;
52 unsigned int sample_depth; /* In Ksamples/channel */
53 unsigned int max_sampling_freq;
54} model_t;
55
56/*
57 * Note -- 16032, 16064 and 16128 *usually* -- but not always -- have the
58 * same 128K sample depth.
59 */
60static model_t zeroplus_models[] = {
61 {0x0c12, 0x7009, "LAP-C(16064)", 16, 64, 100},
62 {0x0c12, 0x700A, "LAP-C(16128)", 16, 128, 200},
63 /* TODO: we don't know anything about these
64 {0x0c12, 0x700B, "LAP-C(32128)", 32, 128, 200},
65 {0x0c12, 0x700C, "LAP-C(321000)", 32, 1024, 200},
66 {0x0c12, 0x700D, "LAP-C(322000)", 32, 2048, 200},
67 */
68 {0x0c12, 0x700E, "LAP-C(16032)", 16, 32, 100},
69 {0x0c12, 0x7016, "LAP-C(162000)", 16, 2048, 200},
70 { 0, 0, 0, 0, 0, 0 }
71};
72
73static const int hwcaps[] = {
74 SR_CONF_LOGIC_ANALYZER,
75 SR_CONF_SAMPLERATE,
76 SR_CONF_CAPTURE_RATIO,
77
78 /* These are really implemented in the driver, not the hardware. */
79 SR_CONF_LIMIT_SAMPLES,
80 0,
81};
82
83/*
84 * ZEROPLUS LAP-C (16032) numbers the 16 probes A0-A7 and B0-B7.
85 * We currently ignore other untested/unsupported devices here.
86 */
87static const char *probe_names[NUM_PROBES + 1] = {
88 "A0", "A1", "A2", "A3", "A4", "A5", "A6", "A7",
89 "B0", "B1", "B2", "B3", "B4", "B5", "B6", "B7",
90 NULL,
91};
92
93/* List of struct sr_dev_inst, maintained by dev_open()/dev_close(). */
94SR_PRIV struct sr_dev_driver zeroplus_logic_cube_driver_info;
95static struct sr_dev_driver *di = &zeroplus_logic_cube_driver_info;
96
97/*
98 * The hardware supports more samplerates than these, but these are the
99 * options hardcoded into the vendor's Windows GUI.
100 */
101
102/*
103 * TODO: We shouldn't support 150MHz and 200MHz on devices that don't go up
104 * that high.
105 */
106static const uint64_t supported_samplerates[] = {
107 SR_HZ(100),
108 SR_HZ(500),
109 SR_KHZ(1),
110 SR_KHZ(5),
111 SR_KHZ(25),
112 SR_KHZ(50),
113 SR_KHZ(100),
114 SR_KHZ(200),
115 SR_KHZ(400),
116 SR_KHZ(800),
117 SR_MHZ(1),
118 SR_MHZ(10),
119 SR_MHZ(25),
120 SR_MHZ(50),
121 SR_MHZ(80),
122 SR_MHZ(100),
123 SR_MHZ(150),
124 SR_MHZ(200),
125 0,
126};
127
128static const struct sr_samplerates samplerates = {
129 .low = 0,
130 .high = 0,
131 .step = 0,
132 .list = supported_samplerates,
133};
134
135/* Private, per-device-instance driver context. */
136struct dev_context {
137 uint64_t cur_samplerate;
138 uint64_t max_samplerate;
139 uint64_t limit_samples;
140 int num_channels; /* TODO: This isn't initialized before it's needed :( */
141 int memory_size;
142 unsigned int max_memory_size;
143 //uint8_t probe_mask;
144 //uint8_t trigger_mask[NUM_TRIGGER_STAGES];
145 //uint8_t trigger_value[NUM_TRIGGER_STAGES];
146 // uint8_t trigger_buffer[NUM_TRIGGER_STAGES];
147 int trigger;
148 unsigned int capture_ratio;
149
150 /* TODO: this belongs in the device instance */
151 struct sr_usb_dev_inst *usb;
152};
153
154static int hw_dev_close(struct sr_dev_inst *sdi);
155
156static unsigned int get_memory_size(int type)
157{
158 if (type == MEMORY_SIZE_8K)
159 return 8 * 1024;
160 else if (type == MEMORY_SIZE_64K)
161 return 64 * 1024;
162 else if (type == MEMORY_SIZE_128K)
163 return 128 * 1024;
164 else if (type == MEMORY_SIZE_512K)
165 return 512 * 1024;
166 else
167 return 0;
168}
169
170#if 0
171static int configure_probes(const struct sr_dev_inst *sdi)
172{
173 struct dev_context *devc;
174 const struct sr_probe *probe;
175 const GSList *l;
176 int probe_bit, stage, i;
177 char *tc;
178
179 /* Note: sdi and sdi->priv are non-NULL, the caller checked this. */
180 devc = sdi->priv;
181
182 devc->probe_mask = 0;
183 for (i = 0; i < NUM_TRIGGER_STAGES; i++) {
184 devc->trigger_mask[i] = 0;
185 devc->trigger_value[i] = 0;
186 }
187
188 stage = -1;
189 for (l = sdi->probes; l; l = l->next) {
190 probe = (struct sr_probe *)l->data;
191 if (probe->enabled == FALSE)
192 continue;
193 probe_bit = 1 << (probe->index);
194 devc->probe_mask |= probe_bit;
195
196 if (probe->trigger) {
197 stage = 0;
198 for (tc = probe->trigger; *tc; tc++) {
199 devc->trigger_mask[stage] |= probe_bit;
200 if (*tc == '1')
201 devc->trigger_value[stage] |= probe_bit;
202 stage++;
203 if (stage > NUM_TRIGGER_STAGES)
204 return SR_ERR;
205 }
206 }
207 }
208
209 return SR_OK;
210}
211#endif
212
213static int configure_probes(const struct sr_dev_inst *sdi)
214{
215 struct dev_context *devc;
216 const GSList *l;
217 const struct sr_probe *probe;
218 char *tc;
219 int type;
220
221 /* Note: sdi and sdi->priv are non-NULL, the caller checked this. */
222 devc = sdi->priv;
223
224 for (l = sdi->probes; l; l = l->next) {
225 probe = (struct sr_probe *)l->data;
226 if (probe->enabled == FALSE)
227 continue;
228
229 if ((tc = probe->trigger)) {
230 switch (*tc) {
231 case '1':
232 type = TRIGGER_HIGH;
233 break;
234 case '0':
235 type = TRIGGER_LOW;
236 break;
237#if 0
238 case 'r':
239 type = TRIGGER_POSEDGE;
240 break;
241 case 'f':
242 type = TRIGGER_NEGEDGE;
243 break;
244 case 'c':
245 type = TRIGGER_ANYEDGE;
246 break;
247#endif
248 default:
249 return SR_ERR;
250 }
251 analyzer_add_trigger(probe->index, type);
252 devc->trigger = 1;
253 }
254 }
255
256 return SR_OK;
257}
258
259static int clear_instances(void)
260{
261 GSList *l;
262 struct sr_dev_inst *sdi;
263 struct drv_context *drvc;
264 struct dev_context *devc;
265
266 drvc = di->priv;
267 for (l = drvc->instances; l; l = l->next) {
268 sdi = l->data;
269 if (!(devc = sdi->priv)) {
270 /* Log error, but continue cleaning up the rest. */
271 sr_err("zeroplus: %s: sdi->priv was NULL, continuing", __func__);
272 continue;
273 }
274 sr_usb_dev_inst_free(devc->usb);
275 /* Properly close all devices... */
276 hw_dev_close(sdi);
277 /* ...and free all their memory. */
278 sr_dev_inst_free(sdi);
279 }
280 g_slist_free(drvc->instances);
281 drvc->instances = NULL;
282
283 return SR_OK;
284}
285
286/*
287 * API callbacks
288 */
289
290static int hw_init(struct sr_context *sr_ctx)
291{
292 return std_hw_init(sr_ctx, di, "zeroplus: ");
293}
294
295static GSList *hw_scan(GSList *options)
296{
297 struct sr_dev_inst *sdi;
298 struct sr_probe *probe;
299 struct drv_context *drvc;
300 struct dev_context *devc;
301 model_t *prof;
302 struct libusb_device_descriptor des;
303 libusb_device **devlist;
304 GSList *devices;
305 int ret, devcnt, i, j;
306
307 (void)options;
308
309 drvc = di->priv;
310
311 devices = NULL;
312
313 clear_instances();
314
315 /* Find all ZEROPLUS analyzers and add them to device list. */
316 devcnt = 0;
317 libusb_get_device_list(drvc->sr_ctx->libusb_ctx, &devlist); /* TODO: Errors. */
318
319 for (i = 0; devlist[i]; i++) {
320 ret = libusb_get_device_descriptor(devlist[i], &des);
321 if (ret != 0) {
322 sr_err("zp: failed to get device descriptor: %s",
323 libusb_error_name(ret));
324 continue;
325 }
326
327 prof = NULL;
328 for (j = 0; j < zeroplus_models[j].vid; j++) {
329 if (des.idVendor == zeroplus_models[j].vid &&
330 des.idProduct == zeroplus_models[j].pid) {
331 prof = &zeroplus_models[j];
332 }
333 }
334 /* Skip if the device was not found */
335 if (!prof)
336 continue;
337 sr_info("zp: Found ZEROPLUS model %s", prof->model_name);
338
339 /* Register the device with libsigrok. */
340 if (!(sdi = sr_dev_inst_new(devcnt, SR_ST_INACTIVE,
341 VENDOR_NAME, prof->model_name, NULL))) {
342 sr_err("zp: %s: sr_dev_inst_new failed", __func__);
343 return NULL;
344 }
345 sdi->driver = di;
346
347 /* Allocate memory for our private driver context. */
348 if (!(devc = g_try_malloc0(sizeof(struct dev_context)))) {
349 sr_err("zp: %s: devc malloc failed", __func__);
350 return NULL;
351 }
352 sdi->priv = devc;
353 devc->num_channels = prof->channels;
354#ifdef ZP_EXPERIMENTAL
355 devc->max_memory_size = 128 * 1024;
356 devc->max_samplerate = 200;
357#else
358 devc->max_memory_size = prof->sample_depth * 1024;
359 devc->max_samplerate = prof->max_sampling_freq;
360#endif
361 devc->max_samplerate *= SR_MHZ(1);
362 devc->memory_size = MEMORY_SIZE_8K;
363 // memset(devc->trigger_buffer, 0, NUM_TRIGGER_STAGES);
364
365 /* Fill in probelist according to this device's profile. */
366 for (j = 0; j < devc->num_channels; j++) {
367 if (!(probe = sr_probe_new(j, SR_PROBE_LOGIC, TRUE,
368 probe_names[j])))
369 return NULL;
370 sdi->probes = g_slist_append(sdi->probes, probe);
371 }
372
373 devices = g_slist_append(devices, sdi);
374 drvc->instances = g_slist_append(drvc->instances, sdi);
375 devc->usb = sr_usb_dev_inst_new(
376 libusb_get_bus_number(devlist[i]),
377 libusb_get_device_address(devlist[i]), NULL);
378 devcnt++;
379
380 }
381 libusb_free_device_list(devlist, 1);
382
383 return devices;
384}
385
386static GSList *hw_dev_list(void)
387{
388 struct drv_context *drvc;
389
390 drvc = di->priv;
391
392 return drvc->instances;
393}
394
395static int hw_dev_open(struct sr_dev_inst *sdi)
396{
397 struct dev_context *devc;
398 struct drv_context *drvc = di->priv;
399 libusb_device **devlist, *dev;
400 struct libusb_device_descriptor des;
401 int device_count, ret, i;
402
403 if (!(devc = sdi->priv)) {
404 sr_err("zp: %s: sdi->priv was NULL", __func__);
405 return SR_ERR_ARG;
406 }
407
408 device_count = libusb_get_device_list(drvc->sr_ctx->libusb_ctx,
409 &devlist);
410 if (device_count < 0) {
411 sr_err("zp: Failed to retrieve device list");
412 return SR_ERR;
413 }
414
415 dev = NULL;
416 for (i = 0; i < device_count; i++) {
417 if ((ret = libusb_get_device_descriptor(devlist[i], &des))) {
418 sr_err("zp: Failed to get device descriptor: %s.",
419 libusb_error_name(ret));
420 continue;
421 }
422 if (libusb_get_bus_number(devlist[i]) == devc->usb->bus
423 && libusb_get_device_address(devlist[i]) == devc->usb->address) {
424 dev = devlist[i];
425 break;
426 }
427 }
428 if (!dev) {
429 sr_err("device on bus %d address %d disappeared!",
430 devc->usb->bus, devc->usb->address);
431 return SR_ERR;
432 }
433
434 if (!(ret = libusb_open(dev, &(devc->usb->devhdl)))) {
435 sdi->status = SR_ST_ACTIVE;
436 sr_info("zp: opened device %d on %d.%d interface %d",
437 sdi->index, devc->usb->bus,
438 devc->usb->address, USB_INTERFACE);
439 } else {
440 sr_err("zp: failed to open device: %s", libusb_error_name(ret));
441 return SR_ERR;
442 }
443
444 ret = libusb_set_configuration(devc->usb->devhdl, USB_CONFIGURATION);
445 if (ret < 0) {
446 sr_err("zp: Unable to set USB configuration %d: %s",
447 USB_CONFIGURATION, libusb_error_name(ret));
448 return SR_ERR;
449 }
450
451 ret = libusb_claim_interface(devc->usb->devhdl, USB_INTERFACE);
452 if (ret != 0) {
453 sr_err("zp: Unable to claim interface: %s",
454 libusb_error_name(ret));
455 return SR_ERR;
456 }
457
458 /* Set default configuration after power on */
459 if (analyzer_read_status(devc->usb->devhdl) == 0)
460 analyzer_configure(devc->usb->devhdl);
461
462 analyzer_reset(devc->usb->devhdl);
463 analyzer_initialize(devc->usb->devhdl);
464
465 //analyzer_set_memory_size(MEMORY_SIZE_512K);
466 // analyzer_set_freq(g_freq, g_freq_scale);
467 analyzer_set_trigger_count(1);
468 // analyzer_set_ramsize_trigger_address((((100 - g_pre_trigger)
469 // * get_memory_size(g_memory_size)) / 100) >> 2);
470
471#if 0
472 if (g_double_mode == 1)
473 analyzer_set_compression(COMPRESSION_DOUBLE);
474 else if (g_compression == 1)
475 analyzer_set_compression(COMPRESSION_ENABLE);
476 else
477#endif
478 analyzer_set_compression(COMPRESSION_NONE);
479
480 if (devc->cur_samplerate == 0) {
481 /* Samplerate hasn't been set. Default to 1MHz. */
482 analyzer_set_freq(1, FREQ_SCALE_MHZ);
483 devc->cur_samplerate = SR_MHZ(1);
484 }
485
486 return SR_OK;
487}
488
489static int hw_dev_close(struct sr_dev_inst *sdi)
490{
491 struct dev_context *devc;
492
493 if (!(devc = sdi->priv)) {
494 sr_err("zp: %s: sdi->priv was NULL", __func__);
495 return SR_ERR;
496 }
497
498 if (!devc->usb->devhdl)
499 return SR_ERR;
500
501 sr_info("zp: closing device %d on %d.%d interface %d", sdi->index,
502 devc->usb->bus, devc->usb->address, USB_INTERFACE);
503 libusb_release_interface(devc->usb->devhdl, USB_INTERFACE);
504 libusb_reset_device(devc->usb->devhdl);
505 libusb_close(devc->usb->devhdl);
506 devc->usb->devhdl = NULL;
507 sdi->status = SR_ST_INACTIVE;
508
509 return SR_OK;
510}
511
512static int hw_cleanup(void)
513{
514 struct drv_context *drvc;
515
516 if (!(drvc = di->priv))
517 return SR_OK;
518
519 clear_instances();
520
521 return SR_OK;
522}
523
524static int config_get(int id, const void **data, const struct sr_dev_inst *sdi)
525{
526 struct dev_context *devc;
527
528 switch (id) {
529 case SR_CONF_SAMPLERATE:
530 if (sdi) {
531 devc = sdi->priv;
532 *data = &devc->cur_samplerate;
533 sr_spew("zp: %s: Returning samplerate: %" PRIu64 "Hz.",
534 __func__, devc->cur_samplerate);
535 } else
536 return SR_ERR;
537 break;
538 default:
539 return SR_ERR_ARG;
540 }
541
542 return SR_OK;
543}
544
545static int set_samplerate(struct dev_context *devc, uint64_t samplerate)
546{
547 int i;
548
549 for (i = 0; supported_samplerates[i]; i++)
550 if (samplerate == supported_samplerates[i])
551 break;
552 if (!supported_samplerates[i] || samplerate > devc->max_samplerate) {
553 sr_err("zp: %s: unsupported samplerate", __func__);
554 return SR_ERR_ARG;
555 }
556
557 sr_info("zp: Setting samplerate to %" PRIu64 "Hz.", samplerate);
558
559 if (samplerate >= SR_MHZ(1))
560 analyzer_set_freq(samplerate / SR_MHZ(1), FREQ_SCALE_MHZ);
561 else if (samplerate >= SR_KHZ(1))
562 analyzer_set_freq(samplerate / SR_KHZ(1), FREQ_SCALE_KHZ);
563 else
564 analyzer_set_freq(samplerate, FREQ_SCALE_HZ);
565
566 devc->cur_samplerate = samplerate;
567
568 return SR_OK;
569}
570
571static int set_limit_samples(struct dev_context *devc, uint64_t samples)
572{
573 devc->limit_samples = samples;
574
575 if (samples <= 2 * 1024)
576 devc->memory_size = MEMORY_SIZE_8K;
577 else if (samples <= 16 * 1024)
578 devc->memory_size = MEMORY_SIZE_64K;
579 else if (samples <= 32 * 1024 ||
580 devc->max_memory_size <= 32 * 1024)
581 devc->memory_size = MEMORY_SIZE_128K;
582 else
583 devc->memory_size = MEMORY_SIZE_512K;
584
585 sr_info("zp: Setting memory size to %dK.",
586 get_memory_size(devc->memory_size) / 1024);
587
588 analyzer_set_memory_size(devc->memory_size);
589
590 return SR_OK;
591}
592
593static int set_capture_ratio(struct dev_context *devc, uint64_t ratio)
594{
595 if (ratio > 100) {
596 sr_err("zp: %s: invalid capture ratio", __func__);
597 return SR_ERR_ARG;
598 }
599
600 devc->capture_ratio = ratio;
601
602 sr_info("zp: Setting capture ratio to %d%%.", devc->capture_ratio);
603
604 return SR_OK;
605}
606
607static int config_set(int id, const void *value, const struct sr_dev_inst *sdi)
608{
609 struct dev_context *devc;
610
611 if (!sdi) {
612 sr_err("zp: %s: sdi was NULL", __func__);
613 return SR_ERR_ARG;
614 }
615
616 if (!(devc = sdi->priv)) {
617 sr_err("zp: %s: sdi->priv was NULL", __func__);
618 return SR_ERR_ARG;
619 }
620
621 switch (id) {
622 case SR_CONF_SAMPLERATE:
623 return set_samplerate(devc, *(const uint64_t *)value);
624 case SR_CONF_LIMIT_SAMPLES:
625 return set_limit_samples(devc, *(const uint64_t *)value);
626 case SR_CONF_CAPTURE_RATIO:
627 return set_capture_ratio(devc, *(const uint64_t *)value);
628 default:
629 return SR_ERR;
630 }
631}
632
633static int config_list(int key, const void **data, const struct sr_dev_inst *sdi)
634{
635
636 (void)sdi;
637
638 switch (key) {
639 case SR_CONF_DEVICE_OPTIONS:
640 *data = hwcaps;
641 break;
642 case SR_CONF_SAMPLERATE:
643 *data = &samplerates;
644 break;
645 case SR_CONF_TRIGGER_TYPE:
646 *data = TRIGGER_TYPE;
647 break;
648 default:
649 return SR_ERR_ARG;
650 }
651
652 return SR_OK;
653}
654
655static void set_triggerbar(struct dev_context *devc)
656{
657 unsigned int ramsize;
658 unsigned int n;
659 unsigned int triggerbar;
660
661 ramsize = get_memory_size(devc->memory_size) / 4;
662 if (devc->trigger) {
663 n = ramsize;
664 if (devc->max_memory_size < n)
665 n = devc->max_memory_size;
666 if (devc->limit_samples < n)
667 n = devc->limit_samples;
668 n = n * devc->capture_ratio / 100;
669 if (n > ramsize - 8)
670 triggerbar = ramsize - 8;
671 else
672 triggerbar = n;
673 } else {
674 triggerbar = 0;
675 }
676 analyzer_set_triggerbar_address(triggerbar);
677 analyzer_set_ramsize_trigger_address(ramsize - triggerbar);
678
679 sr_dbg("zp: triggerbar_address = %d(0x%x)", triggerbar, triggerbar);
680 sr_dbg("zp: ramsize_triggerbar_address = %d(0x%x)",
681 ramsize - triggerbar, ramsize - triggerbar);
682}
683
684static int hw_dev_acquisition_start(const struct sr_dev_inst *sdi,
685 void *cb_data)
686{
687 struct sr_datafeed_packet packet;
688 struct sr_datafeed_logic logic;
689 struct sr_datafeed_header header;
690 //uint64_t samples_read;
691 int res;
692 unsigned int packet_num;
693 unsigned int n;
694 unsigned char *buf;
695 struct dev_context *devc;
696
697 if (!(devc = sdi->priv)) {
698 sr_err("zp: %s: sdi->priv was NULL", __func__);
699 return SR_ERR_ARG;
700 }
701
702 if (configure_probes(sdi) != SR_OK) {
703 sr_err("zp: failed to configured probes");
704 return SR_ERR;
705 }
706
707 set_triggerbar(devc);
708
709 /* push configured settings to device */
710 analyzer_configure(devc->usb->devhdl);
711
712 analyzer_start(devc->usb->devhdl);
713 sr_info("zp: Waiting for data");
714 analyzer_wait_data(devc->usb->devhdl);
715
716 sr_info("zp: Stop address = 0x%x",
717 analyzer_get_stop_address(devc->usb->devhdl));
718 sr_info("zp: Now address = 0x%x",
719 analyzer_get_now_address(devc->usb->devhdl));
720 sr_info("zp: Trigger address = 0x%x",
721 analyzer_get_trigger_address(devc->usb->devhdl));
722
723 packet.type = SR_DF_HEADER;
724 packet.payload = &header;
725 header.feed_version = 1;
726 gettimeofday(&header.starttime, NULL);
727 sr_session_send(cb_data, &packet);
728
729 if (!(buf = g_try_malloc(PACKET_SIZE))) {
730 sr_err("zp: %s: buf malloc failed", __func__);
731 return SR_ERR_MALLOC;
732 }
733
734 //samples_read = 0;
735 analyzer_read_start(devc->usb->devhdl);
736 /* Send the incoming transfer to the session bus. */
737 n = get_memory_size(devc->memory_size);
738 if (devc->max_memory_size * 4 < n)
739 n = devc->max_memory_size * 4;
740 for (packet_num = 0; packet_num < n / PACKET_SIZE; packet_num++) {
741 res = analyzer_read_data(devc->usb->devhdl, buf, PACKET_SIZE);
742 sr_info("zp: Tried to read %d bytes, actually read %d bytes",
743 PACKET_SIZE, res);
744
745 packet.type = SR_DF_LOGIC;
746 packet.payload = &logic;
747 logic.length = PACKET_SIZE;
748 logic.unitsize = 4;
749 logic.data = buf;
750 sr_session_send(cb_data, &packet);
751 //samples_read += res / 4;
752 }
753 analyzer_read_stop(devc->usb->devhdl);
754 g_free(buf);
755
756 packet.type = SR_DF_END;
757 sr_session_send(cb_data, &packet);
758
759 return SR_OK;
760}
761
762/* TODO: This stops acquisition on ALL devices, ignoring dev_index. */
763static int hw_dev_acquisition_stop(struct sr_dev_inst *sdi, void *cb_data)
764{
765 struct sr_datafeed_packet packet;
766 struct dev_context *devc;
767
768 packet.type = SR_DF_END;
769 sr_session_send(cb_data, &packet);
770
771 if (!(devc = sdi->priv)) {
772 sr_err("zp: %s: sdi->priv was NULL", __func__);
773 return SR_ERR_BUG;
774 }
775
776 analyzer_reset(devc->usb->devhdl);
777 /* TODO: Need to cancel and free any queued up transfers. */
778
779 return SR_OK;
780}
781
782SR_PRIV struct sr_dev_driver zeroplus_logic_cube_driver_info = {
783 .name = "zeroplus-logic-cube",
784 .longname = "ZEROPLUS Logic Cube LAP-C series",
785 .api_version = 1,
786 .init = hw_init,
787 .cleanup = hw_cleanup,
788 .scan = hw_scan,
789 .dev_list = hw_dev_list,
790 .dev_clear = hw_cleanup,
791 .config_get = config_get,
792 .config_set = config_set,
793 .config_list = config_list,
794 .dev_open = hw_dev_open,
795 .dev_close = hw_dev_close,
796 .dev_acquisition_start = hw_dev_acquisition_start,
797 .dev_acquisition_stop = hw_dev_acquisition_stop,
798 .priv = NULL,
799};