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drivers: Replace struct voltage_threshold with an array.
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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2015 Christer Ekholm <christerekholm@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 <math.h>
22#include "protocol.h"
23
24/* Max time in ms before we want to check on USB events */
25#define TICK 200
26
27#define RANGE(ch) (((float)vdivs[devc->voltage[ch]][0] / vdivs[devc->voltage[ch]][1]) * VDIV_MULTIPLIER)
28
29static const uint32_t scanopts[] = {
30 SR_CONF_CONN,
31};
32
33static const uint32_t drvopts[] = {
34 SR_CONF_OSCILLOSCOPE,
35};
36
37static const uint32_t devopts[] = {
38 SR_CONF_CONN | SR_CONF_GET,
39 SR_CONF_LIMIT_SAMPLES | SR_CONF_GET | SR_CONF_SET,
40 SR_CONF_LIMIT_MSEC | SR_CONF_GET | SR_CONF_SET,
41 SR_CONF_SAMPLERATE | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
42 SR_CONF_NUM_VDIV | SR_CONF_GET,
43};
44
45static const uint32_t devopts_cg[] = {
46 SR_CONF_VDIV | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
47 SR_CONF_COUPLING | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
48};
49
50static const char *channel_names[] = {
51 "CH1", "CH2",
52};
53
54static const char *dc_coupling[] = {
55 "DC",
56};
57
58static const char *acdc_coupling[] = {
59 "AC", "DC",
60};
61
62static const struct hantek_6xxx_profile dev_profiles[] = {
63 {
64 0x04b4, 0x6022, 0x1d50, 0x608e, 0x0001,
65 "Hantek", "6022BE", "fx2lafw-hantek-6022be.fw",
66 ARRAY_AND_SIZE(dc_coupling), FALSE,
67 },
68 {
69 0x8102, 0x8102, 0x1d50, 0x608e, 0x0002,
70 "Sainsmart", "DDS120", "fx2lafw-sainsmart-dds120.fw",
71 ARRAY_AND_SIZE(acdc_coupling), TRUE,
72 },
73 {
74 0x04b4, 0x602a, 0x1d50, 0x608e, 0x0003,
75 "Hantek", "6022BL", "fx2lafw-hantek-6022bl.fw",
76 ARRAY_AND_SIZE(dc_coupling), FALSE,
77 },
78 ALL_ZERO
79};
80
81static const uint64_t samplerates[] = {
82 SAMPLERATE_VALUES
83};
84
85static const uint64_t vdivs[][2] = {
86 VDIV_VALUES
87};
88
89static int read_channel(const struct sr_dev_inst *sdi, uint32_t amount);
90
91static struct sr_dev_inst *hantek_6xxx_dev_new(const struct hantek_6xxx_profile *prof)
92{
93 struct sr_dev_inst *sdi;
94 struct sr_channel *ch;
95 struct sr_channel_group *cg;
96 struct dev_context *devc;
97 unsigned int i;
98
99 sdi = g_malloc0(sizeof(struct sr_dev_inst));
100 sdi->status = SR_ST_INITIALIZING;
101 sdi->vendor = g_strdup(prof->vendor);
102 sdi->model = g_strdup(prof->model);
103
104 for (i = 0; i < ARRAY_SIZE(channel_names); i++) {
105 ch = sr_channel_new(sdi, i, SR_CHANNEL_ANALOG, TRUE, channel_names[i]);
106 cg = g_malloc0(sizeof(struct sr_channel_group));
107 cg->name = g_strdup(channel_names[i]);
108 cg->channels = g_slist_append(cg->channels, ch);
109 sdi->channel_groups = g_slist_append(sdi->channel_groups, cg);
110 }
111
112 devc = g_malloc0(sizeof(struct dev_context));
113
114 for (i = 0; i < NUM_CHANNELS; i++) {
115 devc->ch_enabled[i] = TRUE;
116 devc->voltage[i] = DEFAULT_VOLTAGE;
117 devc->coupling[i] = DEFAULT_COUPLING;
118 }
119 devc->coupling_vals = prof->coupling_vals;
120 devc->coupling_tab_size = prof->coupling_tab_size;
121 devc->has_coupling = prof->has_coupling;
122
123 devc->sample_buf = NULL;
124 devc->sample_buf_write = 0;
125 devc->sample_buf_size = 0;
126
127 devc->profile = prof;
128 devc->dev_state = IDLE;
129 devc->samplerate = DEFAULT_SAMPLERATE;
130
131 sdi->priv = devc;
132
133 return sdi;
134}
135
136static int configure_channels(const struct sr_dev_inst *sdi)
137{
138 struct dev_context *devc;
139 const GSList *l;
140 int p;
141 struct sr_channel *ch;
142 devc = sdi->priv;
143
144 g_slist_free(devc->enabled_channels);
145 devc->enabled_channels = NULL;
146 memset(devc->ch_enabled, 0, sizeof(devc->ch_enabled));
147
148 for (l = sdi->channels, p = 0; l; l = l->next, p++) {
149 ch = l->data;
150 if (p < NUM_CHANNELS) {
151 devc->ch_enabled[p] = ch->enabled;
152 devc->enabled_channels = g_slist_append(devc->enabled_channels, ch);
153 }
154 }
155
156 return SR_OK;
157}
158
159static void clear_helper(struct dev_context *devc)
160{
161 g_slist_free(devc->enabled_channels);
162}
163
164static int dev_clear(const struct sr_dev_driver *di)
165{
166 return std_dev_clear_with_callback(di, (std_dev_clear_callback)clear_helper);
167}
168
169static GSList *scan(struct sr_dev_driver *di, GSList *options)
170{
171 struct drv_context *drvc;
172 struct dev_context *devc;
173 struct sr_dev_inst *sdi;
174 struct sr_usb_dev_inst *usb;
175 struct sr_config *src;
176 const struct hantek_6xxx_profile *prof;
177 GSList *l, *devices, *conn_devices;
178 struct libusb_device_descriptor des;
179 libusb_device **devlist;
180 int i, j;
181 const char *conn;
182 char connection_id[64];
183
184 drvc = di->context;
185
186 devices = 0;
187
188 conn = NULL;
189 for (l = options; l; l = l->next) {
190 src = l->data;
191 if (src->key == SR_CONF_CONN) {
192 conn = g_variant_get_string(src->data, NULL);
193 break;
194 }
195 }
196 if (conn)
197 conn_devices = sr_usb_find(drvc->sr_ctx->libusb_ctx, conn);
198 else
199 conn_devices = NULL;
200
201 /* Find all Hantek 60xx devices and upload firmware to all of them. */
202 libusb_get_device_list(drvc->sr_ctx->libusb_ctx, &devlist);
203 for (i = 0; devlist[i]; i++) {
204 if (conn) {
205 usb = NULL;
206 for (l = conn_devices; l; l = l->next) {
207 usb = l->data;
208 if (usb->bus == libusb_get_bus_number(devlist[i])
209 && usb->address == libusb_get_device_address(devlist[i]))
210 break;
211 }
212 if (!l)
213 /* This device matched none of the ones that
214 * matched the conn specification. */
215 continue;
216 }
217
218 libusb_get_device_descriptor(devlist[i], &des);
219
220 usb_get_port_path(devlist[i], connection_id, sizeof(connection_id));
221
222 prof = NULL;
223 for (j = 0; dev_profiles[j].orig_vid; j++) {
224 if (des.idVendor == dev_profiles[j].orig_vid
225 && des.idProduct == dev_profiles[j].orig_pid) {
226 /* Device matches the pre-firmware profile. */
227 prof = &dev_profiles[j];
228 sr_dbg("Found a %s %s.", prof->vendor, prof->model);
229 sdi = hantek_6xxx_dev_new(prof);
230 sdi->connection_id = g_strdup(connection_id);
231 devices = g_slist_append(devices, sdi);
232 devc = sdi->priv;
233 if (ezusb_upload_firmware(drvc->sr_ctx, devlist[i],
234 USB_CONFIGURATION, prof->firmware) == SR_OK)
235 /* Remember when the firmware on this device was updated. */
236 devc->fw_updated = g_get_monotonic_time();
237 else
238 sr_err("Firmware upload failed.");
239 /* Dummy USB address of 0xff will get overwritten later. */
240 sdi->conn = sr_usb_dev_inst_new(
241 libusb_get_bus_number(devlist[i]), 0xff, NULL);
242 break;
243 } else if (des.idVendor == dev_profiles[j].fw_vid
244 && des.idProduct == dev_profiles[j].fw_pid
245 && des.bcdDevice == dev_profiles[j].fw_prod_ver) {
246 /* Device matches the post-firmware profile. */
247 prof = &dev_profiles[j];
248 sr_dbg("Found a %s %s.", prof->vendor, prof->model);
249 sdi = hantek_6xxx_dev_new(prof);
250 sdi->connection_id = g_strdup(connection_id);
251 sdi->status = SR_ST_INACTIVE;
252 devices = g_slist_append(devices, sdi);
253 sdi->inst_type = SR_INST_USB;
254 sdi->conn = sr_usb_dev_inst_new(
255 libusb_get_bus_number(devlist[i]),
256 libusb_get_device_address(devlist[i]), NULL);
257 break;
258 }
259 }
260 if (!prof)
261 /* Not a supported VID/PID. */
262 continue;
263 }
264 libusb_free_device_list(devlist, 1);
265
266 return std_scan_complete(di, devices);
267}
268
269static int dev_open(struct sr_dev_inst *sdi)
270{
271 struct dev_context *devc;
272 struct sr_usb_dev_inst *usb;
273 int64_t timediff_us, timediff_ms;
274 int err;
275
276 devc = sdi->priv;
277 usb = sdi->conn;
278
279 /*
280 * If the firmware was recently uploaded, wait up to MAX_RENUM_DELAY_MS
281 * for the FX2 to renumerate.
282 */
283 err = SR_ERR;
284 if (devc->fw_updated > 0) {
285 sr_info("Waiting for device to reset.");
286 /* Takes >= 300ms for the FX2 to be gone from the USB bus. */
287 g_usleep(300 * 1000);
288 timediff_ms = 0;
289 while (timediff_ms < MAX_RENUM_DELAY_MS) {
290 if ((err = hantek_6xxx_open(sdi)) == SR_OK)
291 break;
292 g_usleep(100 * 1000);
293 timediff_us = g_get_monotonic_time() - devc->fw_updated;
294 timediff_ms = timediff_us / 1000;
295 sr_spew("Waited %" PRIi64 " ms.", timediff_ms);
296 }
297 if (timediff_ms < MAX_RENUM_DELAY_MS)
298 sr_info("Device came back after %"PRIu64" ms.", timediff_ms);
299 } else {
300 err = hantek_6xxx_open(sdi);
301 }
302
303 if (err != SR_OK) {
304 sr_err("Unable to open device.");
305 return SR_ERR;
306 }
307
308 err = libusb_claim_interface(usb->devhdl, USB_INTERFACE);
309 if (err != 0) {
310 sr_err("Unable to claim interface: %s.",
311 libusb_error_name(err));
312 return SR_ERR;
313 }
314
315 return SR_OK;
316}
317
318static int dev_close(struct sr_dev_inst *sdi)
319{
320 hantek_6xxx_close(sdi);
321
322 return SR_OK;
323}
324
325static int config_get(uint32_t key, GVariant **data,
326 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
327{
328 struct dev_context *devc;
329 struct sr_usb_dev_inst *usb;
330 const uint64_t *vdiv;
331 int ch_idx;
332
333 switch (key) {
334 case SR_CONF_NUM_VDIV:
335 *data = g_variant_new_int32(ARRAY_SIZE(vdivs));
336 break;
337 }
338
339 if (!sdi)
340 return SR_ERR_ARG;
341
342 devc = sdi->priv;
343 if (!cg) {
344 switch (key) {
345 case SR_CONF_SAMPLERATE:
346 *data = g_variant_new_uint64(devc->samplerate);
347 break;
348 case SR_CONF_LIMIT_MSEC:
349 *data = g_variant_new_uint64(devc->limit_msec);
350 break;
351 case SR_CONF_LIMIT_SAMPLES:
352 *data = g_variant_new_uint64(devc->limit_samples);
353 break;
354 case SR_CONF_CONN:
355 if (!sdi->conn)
356 return SR_ERR_ARG;
357 usb = sdi->conn;
358 if (usb->address == 255)
359 /* Device still needs to re-enumerate after firmware
360 * upload, so we don't know its (future) address. */
361 return SR_ERR;
362 *data = g_variant_new_printf("%d.%d", usb->bus, usb->address);
363 break;
364 default:
365 return SR_ERR_NA;
366 }
367 } else {
368 if (sdi->channel_groups->data == cg)
369 ch_idx = 0;
370 else if (sdi->channel_groups->next->data == cg)
371 ch_idx = 1;
372 else
373 return SR_ERR_ARG;
374 switch (key) {
375 case SR_CONF_VDIV:
376 vdiv = vdivs[devc->voltage[ch_idx]];
377 *data = g_variant_new("(tt)", vdiv[0], vdiv[1]);
378 break;
379 case SR_CONF_COUPLING:
380 *data = g_variant_new_string((devc->coupling[ch_idx] \
381 == COUPLING_DC) ? "DC" : "AC");
382 break;
383 }
384 }
385
386 return SR_OK;
387}
388
389static int config_set(uint32_t key, GVariant *data,
390 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
391{
392 struct dev_context *devc;
393 uint64_t p, q;
394 int tmp_int, ch_idx;
395 unsigned int i;
396 const char *tmp_str;
397
398 devc = sdi->priv;
399 if (!cg) {
400 switch (key) {
401 case SR_CONF_SAMPLERATE:
402 devc->samplerate = g_variant_get_uint64(data);
403 hantek_6xxx_update_samplerate(sdi);
404 break;
405 case SR_CONF_LIMIT_MSEC:
406 devc->limit_msec = g_variant_get_uint64(data);
407 break;
408 case SR_CONF_LIMIT_SAMPLES:
409 devc->limit_samples = g_variant_get_uint64(data);
410 break;
411 default:
412 return SR_ERR_NA;
413 }
414 } else {
415 if (sdi->channel_groups->data == cg)
416 ch_idx = 0;
417 else if (sdi->channel_groups->next->data == cg)
418 ch_idx = 1;
419 else
420 return SR_ERR_ARG;
421 switch (key) {
422 case SR_CONF_VDIV:
423 g_variant_get(data, "(tt)", &p, &q);
424 tmp_int = -1;
425 for (i = 0; i < ARRAY_SIZE(vdivs); i++) {
426 if (vdivs[i][0] == p && vdivs[i][1] == q) {
427 tmp_int = i;
428 break;
429 }
430 }
431 if (tmp_int >= 0) {
432 devc->voltage[ch_idx] = tmp_int;
433 hantek_6xxx_update_vdiv(sdi);
434 } else
435 return SR_ERR_ARG;
436 break;
437 case SR_CONF_COUPLING:
438 tmp_str = g_variant_get_string(data, NULL);
439 for (i = 0; i < devc->coupling_tab_size; i++) {
440 if (!strcmp(tmp_str, devc->coupling_vals[i])) {
441 devc->coupling[ch_idx] = i;
442 break;
443 }
444 }
445 if (i == devc->coupling_tab_size)
446 return SR_ERR_ARG;
447 break;
448 default:
449 return SR_ERR_NA;
450 }
451 }
452
453 return SR_OK;
454}
455
456static int config_list(uint32_t key, GVariant **data,
457 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
458{
459 struct dev_context *devc;
460
461 devc = (sdi) ? sdi->priv : NULL;
462
463 if (!cg) {
464 switch (key) {
465 case SR_CONF_SCAN_OPTIONS:
466 case SR_CONF_DEVICE_OPTIONS:
467 return STD_CONFIG_LIST(key, data, sdi, cg, scanopts, drvopts, devopts);
468 case SR_CONF_SAMPLERATE:
469 *data = std_gvar_samplerates(ARRAY_AND_SIZE(samplerates));
470 break;
471 default:
472 return SR_ERR_NA;
473 }
474 } else {
475 switch (key) {
476 case SR_CONF_DEVICE_OPTIONS:
477 *data = std_gvar_array_u32(ARRAY_AND_SIZE(devopts_cg));
478 break;
479 case SR_CONF_COUPLING:
480 *data = g_variant_new_strv(devc->coupling_vals, devc->coupling_tab_size);
481 break;
482 case SR_CONF_VDIV:
483 *data = std_gvar_tuple_array(ARRAY_AND_SIZE(vdivs));
484 break;
485 default:
486 return SR_ERR_NA;
487 }
488 }
489
490 return SR_OK;
491}
492
493/* Minimise data amount for limit_samples and limit_msec limits. */
494static uint32_t data_amount(const struct sr_dev_inst *sdi)
495{
496 struct dev_context *devc = sdi->priv;
497 uint32_t data_left, data_left_2, i;
498 int32_t time_left;
499
500 if (devc->limit_msec) {
501 time_left = devc->limit_msec - (g_get_monotonic_time() - devc->aq_started) / 1000;
502 data_left = devc->samplerate * MAX(time_left, 0) * NUM_CHANNELS / 1000;
503 } else if (devc->limit_samples) {
504 data_left = (devc->limit_samples - devc->samp_received) * NUM_CHANNELS;
505 } else {
506 data_left = devc->samplerate * NUM_CHANNELS;
507 }
508
509 /* Round up to nearest power of two. */
510 for (i = MIN_PACKET_SIZE; i < data_left; i *= 2)
511 ;
512 data_left_2 = i;
513
514 sr_spew("data_amount: %u (rounded to power of 2: %u)", data_left, data_left_2);
515
516 return data_left_2;
517}
518
519static void send_chunk(struct sr_dev_inst *sdi, unsigned char *buf,
520 int num_samples)
521{
522 struct sr_datafeed_packet packet;
523 struct sr_datafeed_analog analog;
524 struct sr_analog_encoding encoding;
525 struct sr_analog_meaning meaning;
526 struct sr_analog_spec spec;
527 struct dev_context *devc = sdi->priv;
528 GSList *channels = devc->enabled_channels;
529
530 const float ch_bit[] = { RANGE(0) / 255, RANGE(1) / 255 };
531 const float ch_center[] = { RANGE(0) / 2, RANGE(1) / 2 };
532
533 sr_analog_init(&analog, &encoding, &meaning, &spec, 0);
534
535 packet.type = SR_DF_ANALOG;
536 packet.payload = &analog;
537
538 analog.num_samples = num_samples;
539 analog.meaning->mq = SR_MQ_VOLTAGE;
540 analog.meaning->unit = SR_UNIT_VOLT;
541 analog.meaning->mqflags = 0;
542
543 analog.data = g_try_malloc(num_samples * sizeof(float));
544 if (!analog.data) {
545 sr_err("Analog data buffer malloc failed.");
546 devc->dev_state = STOPPING;
547 return;
548 }
549
550 for (int ch = 0; ch < 2; ch++) {
551 if (!devc->ch_enabled[ch])
552 continue;
553
554 float vdivlog = log10f(ch_bit[ch]);
555 int digits = -(int)vdivlog + (vdivlog < 0.0);
556 analog.encoding->digits = digits;
557 analog.spec->spec_digits = digits;
558 analog.meaning->channels = g_slist_append(NULL, channels->data);
559
560 for (int i = 0; i < num_samples; i++) {
561 /*
562 * The device always sends data for both channels. If a channel
563 * is disabled, it contains a copy of the enabled channel's
564 * data. However, we only send the requested channels to
565 * the bus.
566 *
567 * Voltage values are encoded as a value 0-255, where the
568 * value is a point in the range represented by the vdiv
569 * setting. There are 10 vertical divs, so e.g. 500mV/div
570 * represents 5V peak-to-peak where 0 = -2.5V and 255 = +2.5V.
571 */
572 ((float *)analog.data)[i] = ch_bit[ch] * *(buf + i * 2 + ch) - ch_center[ch];
573 }
574
575 sr_session_send(sdi, &packet);
576 g_slist_free(analog.meaning->channels);
577
578 channels = channels->next;
579 }
580 g_free(analog.data);
581}
582
583static void send_data(struct sr_dev_inst *sdi, struct libusb_transfer *buf[], uint64_t samples)
584{
585 int i = 0;
586 uint64_t send = 0;
587 uint32_t chunk;
588
589 while (send < samples) {
590 chunk = MIN(samples - send, (uint64_t)(buf[i]->actual_length / NUM_CHANNELS));
591 send += chunk;
592 send_chunk(sdi, buf[i]->buffer, chunk);
593
594 /*
595 * Everything in this transfer was either copied to the buffer
596 * or sent to the session bus.
597 */
598 g_free(buf[i]->buffer);
599 libusb_free_transfer(buf[i]);
600 i++;
601 }
602}
603
604/*
605 * Called by libusb (as triggered by handle_event()) when a transfer comes in.
606 * Only channel data comes in asynchronously, and all transfers for this are
607 * queued up beforehand, so this just needs to chuck the incoming data onto
608 * the libsigrok session bus.
609 */
610static void LIBUSB_CALL receive_transfer(struct libusb_transfer *transfer)
611{
612 struct sr_dev_inst *sdi;
613 struct dev_context *devc;
614
615 sdi = transfer->user_data;
616 devc = sdi->priv;
617
618 if (devc->dev_state == FLUSH) {
619 g_free(transfer->buffer);
620 libusb_free_transfer(transfer);
621 devc->dev_state = CAPTURE;
622 devc->aq_started = g_get_monotonic_time();
623 read_channel(sdi, data_amount(sdi));
624 return;
625 }
626
627 if (devc->dev_state != CAPTURE)
628 return;
629
630 if (!devc->sample_buf) {
631 devc->sample_buf_size = 10;
632 devc->sample_buf = g_try_malloc(devc->sample_buf_size * sizeof(transfer));
633 devc->sample_buf_write = 0;
634 }
635
636 if (devc->sample_buf_write >= devc->sample_buf_size) {
637 devc->sample_buf_size += 10;
638 devc->sample_buf = g_try_realloc(devc->sample_buf,
639 devc->sample_buf_size * sizeof(transfer));
640 if (!devc->sample_buf) {
641 sr_err("Sample buffer malloc failed.");
642 devc->dev_state = STOPPING;
643 return;
644 }
645 }
646
647 devc->sample_buf[devc->sample_buf_write++] = transfer;
648 devc->samp_received += transfer->actual_length / NUM_CHANNELS;
649
650 sr_spew("receive_transfer(): calculated samplerate == %" PRIu64 "ks/s",
651 (uint64_t)(transfer->actual_length * 1000 /
652 (g_get_monotonic_time() - devc->read_start_ts + 1) /
653 NUM_CHANNELS));
654
655 sr_spew("receive_transfer(): status %s received %d bytes.",
656 libusb_error_name(transfer->status), transfer->actual_length);
657
658 if (transfer->actual_length == 0)
659 /* Nothing to send to the bus. */
660 return;
661
662 if (devc->limit_samples && devc->samp_received >= devc->limit_samples) {
663 sr_info("Requested number of samples reached, stopping. %"
664 PRIu64 " <= %" PRIu64, devc->limit_samples,
665 devc->samp_received);
666 send_data(sdi, devc->sample_buf, devc->limit_samples);
667 sr_dev_acquisition_stop(sdi);
668 } else if (devc->limit_msec && (g_get_monotonic_time() -
669 devc->aq_started) / 1000 >= devc->limit_msec) {
670 sr_info("Requested time limit reached, stopping. %d <= %d",
671 (uint32_t)devc->limit_msec,
672 (uint32_t)(g_get_monotonic_time() - devc->aq_started) / 1000);
673 send_data(sdi, devc->sample_buf, devc->samp_received);
674 g_free(devc->sample_buf);
675 devc->sample_buf = NULL;
676 sr_dev_acquisition_stop(sdi);
677 } else {
678 read_channel(sdi, data_amount(sdi));
679 }
680}
681
682static int read_channel(const struct sr_dev_inst *sdi, uint32_t amount)
683{
684 int ret;
685 struct dev_context *devc;
686
687 devc = sdi->priv;
688
689 amount = MIN(amount, MAX_PACKET_SIZE);
690 ret = hantek_6xxx_get_channeldata(sdi, receive_transfer, amount);
691 devc->read_start_ts = g_get_monotonic_time();
692 devc->read_data_amount = amount;
693
694 return ret;
695}
696
697static int handle_event(int fd, int revents, void *cb_data)
698{
699 const struct sr_dev_inst *sdi;
700 struct timeval tv;
701 struct sr_dev_driver *di;
702 struct dev_context *devc;
703 struct drv_context *drvc;
704
705 (void)fd;
706 (void)revents;
707
708 sdi = cb_data;
709 di = sdi->driver;
710 drvc = di->context;
711 devc = sdi->priv;
712
713 /* Always handle pending libusb events. */
714 tv.tv_sec = tv.tv_usec = 0;
715 libusb_handle_events_timeout(drvc->sr_ctx->libusb_ctx, &tv);
716
717 if (devc->dev_state == STOPPING) {
718 /* We've been told to wind up the acquisition. */
719 sr_dbg("Stopping acquisition.");
720
721 hantek_6xxx_stop_data_collecting(sdi);
722 /*
723 * TODO: Doesn't really cancel pending transfers so they might
724 * come in after SR_DF_END is sent.
725 */
726 usb_source_remove(sdi->session, drvc->sr_ctx);
727
728 std_session_send_df_end(sdi);
729
730 devc->dev_state = IDLE;
731
732 return TRUE;
733 }
734
735 return TRUE;
736}
737
738static int dev_acquisition_start(const struct sr_dev_inst *sdi)
739{
740 struct dev_context *devc;
741 struct sr_dev_driver *di = sdi->driver;
742 struct drv_context *drvc = di->context;
743
744 devc = sdi->priv;
745
746 if (configure_channels(sdi) != SR_OK) {
747 sr_err("Failed to configure channels.");
748 return SR_ERR;
749 }
750
751 if (hantek_6xxx_init(sdi) != SR_OK)
752 return SR_ERR;
753
754 std_session_send_df_header(sdi);
755
756 devc->samp_received = 0;
757 devc->dev_state = FLUSH;
758
759 usb_source_add(sdi->session, drvc->sr_ctx, TICK,
760 handle_event, (void *)sdi);
761
762 hantek_6xxx_start_data_collecting(sdi);
763
764 read_channel(sdi, FLUSH_PACKET_SIZE);
765
766 return SR_OK;
767}
768
769static int dev_acquisition_stop(struct sr_dev_inst *sdi)
770{
771 struct dev_context *devc;
772
773 devc = sdi->priv;
774 devc->dev_state = STOPPING;
775
776 g_free(devc->sample_buf);
777 devc->sample_buf = NULL;
778
779 return SR_OK;
780}
781
782static struct sr_dev_driver hantek_6xxx_driver_info = {
783 .name = "hantek-6xxx",
784 .longname = "Hantek 6xxx",
785 .api_version = 1,
786 .init = std_init,
787 .cleanup = std_cleanup,
788 .scan = scan,
789 .dev_list = std_dev_list,
790 .dev_clear = dev_clear,
791 .config_get = config_get,
792 .config_set = config_set,
793 .config_list = config_list,
794 .dev_open = dev_open,
795 .dev_close = dev_close,
796 .dev_acquisition_start = dev_acquisition_start,
797 .dev_acquisition_stop = dev_acquisition_stop,
798 .context = NULL,
799};
800SR_REGISTER_DEV_DRIVER(hantek_6xxx_driver_info);