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1 /*
2  * This file is part of the libsigrok project.
3  *
4  * Copyright (C) 2013 Marcus Comstedt <marcus@mc.pp.se>
5  * Copyright (C) 2013 Bert Vermeulen <bert@biot.com>
6  * Copyright (C) 2012 Joel Holdsworth <joel@airwebreathe.org.uk>
7  *
8  * This program is free software: you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License as published by
10  * the Free Software Foundation, either version 3 of the License, or
11  * (at your option) any later version.
12  *
13  * This program is distributed in the hope that it will be useful,
14  * but WITHOUT ANY WARRANTY; without even the implied warranty of
15  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16  * GNU General Public License for more details.
17  *
18  * You should have received a copy of the GNU General Public License
19  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
20  */
21
22 #include <config.h>
23 #include <glib.h>
24 #include <libusb.h>
25 #include <stdlib.h>
26 #include <string.h>
27 #include <math.h>
28 #include <libsigrok/libsigrok.h>
29 #include "libsigrok-internal.h"
30 #include "protocol.h"
31
32 #define LOGIC16_VID             0x21a9
33 #define LOGIC16_PID             0x1001
34
35 #define USB_INTERFACE           0
36 #define USB_CONFIGURATION       1
37 #define FX2_FIRMWARE            "saleae-logic16-fx2.fw"
38
39 #define MAX_RENUM_DELAY_MS      3000
40 #define NUM_SIMUL_TRANSFERS     32
41
42 static const uint32_t scanopts[] = {
43         SR_CONF_CONN,
44 };
45
46 static const uint32_t devopts[] = {
47         SR_CONF_LOGIC_ANALYZER,
48         SR_CONF_CONTINUOUS,
49         SR_CONF_LIMIT_SAMPLES | SR_CONF_SET,
50         SR_CONF_CONN | SR_CONF_GET,
51         SR_CONF_SAMPLERATE | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
52         SR_CONF_VOLTAGE_THRESHOLD | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
53         SR_CONF_TRIGGER_MATCH | SR_CONF_LIST,
54         SR_CONF_CAPTURE_RATIO | SR_CONF_GET | SR_CONF_SET,
55 };
56
57 static const int32_t soft_trigger_matches[] = {
58         SR_TRIGGER_ZERO,
59         SR_TRIGGER_ONE,
60         SR_TRIGGER_RISING,
61         SR_TRIGGER_FALLING,
62         SR_TRIGGER_EDGE,
63 };
64
65 static const char *channel_names[] = {
66         "0", "1", "2", "3", "4", "5", "6", "7", "8",
67         "9", "10", "11", "12", "13", "14", "15",
68 };
69
70 static const struct {
71         enum voltage_range range;
72         gdouble low;
73         gdouble high;
74 } volt_thresholds[] = {
75         { VOLTAGE_RANGE_18_33_V, 0.7, 1.4 },
76         { VOLTAGE_RANGE_5_V,     1.4, 3.6 },
77 };
78
79 static const uint64_t samplerates[] = {
80         SR_KHZ(500),
81         SR_MHZ(1),
82         SR_MHZ(2),
83         SR_MHZ(4),
84         SR_MHZ(5),
85         SR_MHZ(8),
86         SR_MHZ(10),
87         SR_KHZ(12500),
88         SR_MHZ(16),
89         SR_MHZ(20),
90         SR_MHZ(25),
91         SR_MHZ(32),
92         SR_MHZ(40),
93         SR_MHZ(50),
94         SR_MHZ(80),
95         SR_MHZ(100),
96 };
97
98 static gboolean check_conf_profile(libusb_device *dev)
99 {
100         struct libusb_device_descriptor des;
101         struct libusb_device_handle *hdl;
102         gboolean ret;
103         unsigned char strdesc[64];
104
105         hdl = NULL;
106         ret = FALSE;
107         while (!ret) {
108                 /* Assume the FW has not been loaded, unless proven wrong. */
109                 libusb_get_device_descriptor(dev, &des);
110
111                 if (libusb_open(dev, &hdl) != 0)
112                         break;
113
114                 if (libusb_get_string_descriptor_ascii(hdl,
115                     des.iManufacturer, strdesc, sizeof(strdesc)) < 0)
116                         break;
117                 if (strcmp((const char *)strdesc, "Saleae LLC"))
118                         break;
119
120                 if (libusb_get_string_descriptor_ascii(hdl,
121                     des.iProduct, strdesc, sizeof(strdesc)) < 0)
122                         break;
123                 if (strcmp((const char *)strdesc, "Logic S/16"))
124                         break;
125
126                 /* If we made it here, it must be a configured Logic16. */
127                 ret = TRUE;
128         }
129         if (hdl)
130                 libusb_close(hdl);
131
132         return ret;
133 }
134
135 static GSList *scan(struct sr_dev_driver *di, GSList *options)
136 {
137         struct drv_context *drvc;
138         struct dev_context *devc;
139         struct sr_dev_inst *sdi;
140         struct sr_usb_dev_inst *usb;
141         struct sr_config *src;
142         GSList *l, *devices, *conn_devices;
143         struct libusb_device_descriptor des;
144         libusb_device **devlist;
145         unsigned int i, j;
146         const char *conn;
147         char connection_id[64];
148
149         drvc = di->context;
150
151         conn = NULL;
152         for (l = options; l; l = l->next) {
153                 src = l->data;
154                 switch (src->key) {
155                 case SR_CONF_CONN:
156                         conn = g_variant_get_string(src->data, NULL);
157                         break;
158                 }
159         }
160         if (conn)
161                 conn_devices = sr_usb_find(drvc->sr_ctx->libusb_ctx, conn);
162         else
163                 conn_devices = NULL;
164
165         /* Find all Logic16 devices and upload firmware to them. */
166         devices = NULL;
167         libusb_get_device_list(drvc->sr_ctx->libusb_ctx, &devlist);
168         for (i = 0; devlist[i]; i++) {
169                 if (conn) {
170                         usb = NULL;
171                         for (l = conn_devices; l; l = l->next) {
172                                 usb = l->data;
173                                 if (usb->bus == libusb_get_bus_number(devlist[i])
174                                     && usb->address == libusb_get_device_address(devlist[i]))
175                                         break;
176                         }
177                         if (!l)
178                                 /* This device matched none of the ones that
179                                  * matched the conn specification. */
180                                 continue;
181                 }
182
183                 libusb_get_device_descriptor(devlist[i], &des);
184
185                 usb_get_port_path(devlist[i], connection_id, sizeof(connection_id));
186
187                 if (des.idVendor != LOGIC16_VID || des.idProduct != LOGIC16_PID)
188                         continue;
189
190                 sdi = g_malloc0(sizeof(struct sr_dev_inst));
191                 sdi->status = SR_ST_INITIALIZING;
192                 sdi->vendor = g_strdup("Saleae");
193                 sdi->model = g_strdup("Logic16");
194                 sdi->connection_id = g_strdup(connection_id);
195
196                 for (j = 0; j < ARRAY_SIZE(channel_names); j++)
197                         sr_channel_new(sdi, j, SR_CHANNEL_LOGIC, TRUE,
198                                         channel_names[j]);
199
200                 devc = g_malloc0(sizeof(struct dev_context));
201                 devc->selected_voltage_range = VOLTAGE_RANGE_18_33_V;
202                 sdi->priv = devc;
203                 devices = g_slist_append(devices, sdi);
204
205                 if (check_conf_profile(devlist[i])) {
206                         /* Already has the firmware, so fix the new address. */
207                         sr_dbg("Found a Logic16 device.");
208                         sdi->status = SR_ST_INACTIVE;
209                         sdi->inst_type = SR_INST_USB;
210                         sdi->conn = sr_usb_dev_inst_new(
211                                 libusb_get_bus_number(devlist[i]),
212                                 libusb_get_device_address(devlist[i]), NULL);
213                 } else {
214                         if (ezusb_upload_firmware(drvc->sr_ctx, devlist[i],
215                                         USB_CONFIGURATION, FX2_FIRMWARE) == SR_OK)
216                                 /* Store when this device's FW was updated. */
217                                 devc->fw_updated = g_get_monotonic_time();
218                         else
219                                 sr_err("Firmware upload failed.");
220                         sdi->inst_type = SR_INST_USB;
221                         sdi->conn = sr_usb_dev_inst_new(
222                                 libusb_get_bus_number(devlist[i]), 0xff, NULL);
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
231 static int logic16_dev_open(struct sr_dev_inst *sdi)
232 {
233         struct sr_dev_driver *di;
234         libusb_device **devlist;
235         struct sr_usb_dev_inst *usb;
236         struct libusb_device_descriptor des;
237         struct drv_context *drvc;
238         int ret = SR_ERR, i, device_count;
239         char connection_id[64];
240
241         di = sdi->driver;
242         drvc = di->context;
243         usb = sdi->conn;
244
245         device_count = libusb_get_device_list(drvc->sr_ctx->libusb_ctx, &devlist);
246         if (device_count < 0) {
247                 sr_err("Failed to get device list: %s.",
248                        libusb_error_name(device_count));
249                 return SR_ERR;
250         }
251
252         for (i = 0; i < device_count; i++) {
253                 libusb_get_device_descriptor(devlist[i], &des);
254
255                 if (des.idVendor != LOGIC16_VID || des.idProduct != LOGIC16_PID)
256                         continue;
257
258                 if ((sdi->status == SR_ST_INITIALIZING) ||
259                                 (sdi->status == SR_ST_INACTIVE)) {
260                         /*
261                          * Check device by its physical USB bus/port address.
262                          */
263                         usb_get_port_path(devlist[i], connection_id, sizeof(connection_id));
264                         if (strcmp(sdi->connection_id, connection_id))
265                                 /* This is not the one. */
266                                 continue;
267                 }
268
269                 if (!(ret = libusb_open(devlist[i], &usb->devhdl))) {
270                         if (usb->address == 0xff)
271                                 /*
272                                  * First time we touch this device after FW
273                                  * upload, so we don't know the address yet.
274                                  */
275                                 usb->address = libusb_get_device_address(devlist[i]);
276                 } else {
277                         sr_err("Failed to open device: %s.",
278                                libusb_error_name(ret));
279                         ret = SR_ERR;
280                         break;
281                 }
282
283                 ret = libusb_claim_interface(usb->devhdl, USB_INTERFACE);
284                 if (ret == LIBUSB_ERROR_BUSY) {
285                         sr_err("Unable to claim USB interface. Another "
286                                "program or driver has already claimed it.");
287                         ret = SR_ERR;
288                         break;
289                 } else if (ret == LIBUSB_ERROR_NO_DEVICE) {
290                         sr_err("Device has been disconnected.");
291                         ret = SR_ERR;
292                         break;
293                 } else if (ret != 0) {
294                         sr_err("Unable to claim interface: %s.",
295                                libusb_error_name(ret));
296                         ret = SR_ERR;
297                         break;
298                 }
299
300                 if ((ret = logic16_init_device(sdi)) != SR_OK) {
301                         sr_err("Failed to init device.");
302                         break;
303                 }
304
305                 sr_info("Opened device on %d.%d (logical) / %s (physical), interface %d.",
306                         usb->bus, usb->address, sdi->connection_id, USB_INTERFACE);
307
308                 ret = SR_OK;
309
310                 break;
311         }
312
313         libusb_free_device_list(devlist, 1);
314
315         if (ret != SR_OK) {
316                 if (usb->devhdl) {
317                         libusb_release_interface(usb->devhdl, USB_INTERFACE);
318                         libusb_close(usb->devhdl);
319                         usb->devhdl = NULL;
320                 }
321                 return SR_ERR;
322         }
323
324         return SR_OK;
325 }
326
327 static int dev_open(struct sr_dev_inst *sdi)
328 {
329         struct dev_context *devc;
330         int ret;
331         int64_t timediff_us, timediff_ms;
332
333         devc = sdi->priv;
334
335         /*
336          * If the firmware was recently uploaded, wait up to MAX_RENUM_DELAY_MS
337          * milliseconds for the FX2 to renumerate.
338          */
339         ret = SR_ERR;
340         if (devc->fw_updated > 0) {
341                 sr_info("Waiting for device to reset.");
342                 /* Takes >= 300ms for the FX2 to be gone from the USB bus. */
343                 g_usleep(300 * 1000);
344                 timediff_ms = 0;
345                 while (timediff_ms < MAX_RENUM_DELAY_MS) {
346                         if ((ret = logic16_dev_open(sdi)) == SR_OK)
347                                 break;
348                         g_usleep(100 * 1000);
349
350                         timediff_us = g_get_monotonic_time() - devc->fw_updated;
351                         timediff_ms = timediff_us / 1000;
352                         sr_spew("Waited %" PRIi64 "ms.", timediff_ms);
353                 }
354                 if (ret != SR_OK) {
355                         sr_err("Device failed to renumerate.");
356                         return SR_ERR;
357                 }
358                 sr_info("Device came back after %" PRIi64 "ms.", timediff_ms);
359         } else {
360                 sr_info("Firmware upload was not needed.");
361                 ret = logic16_dev_open(sdi);
362         }
363
364         if (ret != SR_OK) {
365                 sr_err("Unable to open device.");
366                 return SR_ERR;
367         }
368
369         if (devc->cur_samplerate == 0) {
370                 /* Samplerate hasn't been set; default to the slowest one. */
371                 devc->cur_samplerate = samplerates[0];
372         }
373
374         return SR_OK;
375 }
376
377 static int dev_close(struct sr_dev_inst *sdi)
378 {
379         struct sr_usb_dev_inst *usb;
380
381         usb = sdi->conn;
382
383         if (!usb->devhdl)
384                 return SR_ERR_BUG;
385
386         sr_info("Closing device on %d.%d (logical) / %s (physical) interface %d.",
387                 usb->bus, usb->address, sdi->connection_id, USB_INTERFACE);
388         libusb_release_interface(usb->devhdl, USB_INTERFACE);
389         libusb_close(usb->devhdl);
390         usb->devhdl = NULL;
391
392         return SR_OK;
393 }
394
395 static int config_get(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
396                 const struct sr_channel_group *cg)
397 {
398         struct dev_context *devc;
399         struct sr_usb_dev_inst *usb;
400         GVariant *range[2];
401         char str[128];
402         int ret;
403         unsigned int i;
404
405         (void)cg;
406
407         ret = SR_OK;
408         switch (key) {
409         case SR_CONF_CONN:
410                 if (!sdi || !sdi->conn)
411                         return SR_ERR_ARG;
412                 usb = sdi->conn;
413                 if (usb->address == 255)
414                         /* Device still needs to re-enumerate after firmware
415                          * upload, so we don't know its (future) address. */
416                         return SR_ERR;
417                 snprintf(str, 128, "%d.%d", usb->bus, usb->address);
418                 *data = g_variant_new_string(str);
419                 break;
420         case SR_CONF_SAMPLERATE:
421                 if (!sdi)
422                         return SR_ERR;
423                 devc = sdi->priv;
424                 *data = g_variant_new_uint64(devc->cur_samplerate);
425                 break;
426         case SR_CONF_CAPTURE_RATIO:
427                 if (!sdi)
428                         return SR_ERR;
429                 devc = sdi->priv;
430                 *data = g_variant_new_uint64(devc->capture_ratio);
431                 break;
432         case SR_CONF_VOLTAGE_THRESHOLD:
433                 if (!sdi)
434                         return SR_ERR;
435                 devc = sdi->priv;
436                 ret = SR_ERR;
437                 for (i = 0; i < ARRAY_SIZE(volt_thresholds); i++) {
438                         if (devc->selected_voltage_range !=
439                             volt_thresholds[i].range)
440                                 continue;
441                         range[0] = g_variant_new_double(volt_thresholds[i].low);
442                         range[1] = g_variant_new_double(volt_thresholds[i].high);
443                         *data = g_variant_new_tuple(range, 2);
444                         ret = SR_OK;
445                         break;
446                 }
447                 break;
448         default:
449                 return SR_ERR_NA;
450         }
451
452         return ret;
453 }
454
455 static int config_set(uint32_t key, GVariant *data, const struct sr_dev_inst *sdi,
456                 const struct sr_channel_group *cg)
457 {
458         struct dev_context *devc;
459         gdouble low, high;
460         int ret;
461         unsigned int i;
462
463         (void)cg;
464
465         devc = sdi->priv;
466
467         ret = SR_OK;
468         switch (key) {
469         case SR_CONF_SAMPLERATE:
470                 devc->cur_samplerate = g_variant_get_uint64(data);
471                 break;
472         case SR_CONF_LIMIT_SAMPLES:
473                 devc->limit_samples = g_variant_get_uint64(data);
474                 break;
475         case SR_CONF_CAPTURE_RATIO:
476                 devc->capture_ratio = g_variant_get_uint64(data);
477                 ret = (devc->capture_ratio > 100) ? SR_ERR : SR_OK;
478                 break;
479         case SR_CONF_VOLTAGE_THRESHOLD:
480                 g_variant_get(data, "(dd)", &low, &high);
481                 ret = SR_ERR_ARG;
482                 for (i = 0; i < ARRAY_SIZE(volt_thresholds); i++) {
483                         if (fabs(volt_thresholds[i].low - low) < 0.1 &&
484                             fabs(volt_thresholds[i].high - high) < 0.1) {
485                                 devc->selected_voltage_range =
486                                         volt_thresholds[i].range;
487                                 ret = SR_OK;
488                                 break;
489                         }
490                 }
491                 break;
492         default:
493                 ret = SR_ERR_NA;
494         }
495
496         return ret;
497 }
498
499 static int config_list(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
500                 const struct sr_channel_group *cg)
501 {
502         GVariant *gvar, *range[2];
503         GVariantBuilder gvb;
504         unsigned int i;
505
506         switch (key) {
507         case SR_CONF_SCAN_OPTIONS:
508         case SR_CONF_DEVICE_OPTIONS:
509                 return STD_CONFIG_LIST(key, data, sdi, cg, scanopts, NULL, devopts);
510         case SR_CONF_SAMPLERATE:
511                 g_variant_builder_init(&gvb, G_VARIANT_TYPE("a{sv}"));
512                 gvar = g_variant_new_fixed_array(G_VARIANT_TYPE("t"),
513                         samplerates, ARRAY_SIZE(samplerates), sizeof(uint64_t));
514                 g_variant_builder_add(&gvb, "{sv}", "samplerates", gvar);
515                 *data = g_variant_builder_end(&gvb);
516                 break;
517         case SR_CONF_VOLTAGE_THRESHOLD:
518                 g_variant_builder_init(&gvb, G_VARIANT_TYPE_ARRAY);
519                 for (i = 0; i < ARRAY_SIZE(volt_thresholds); i++) {
520                         range[0] = g_variant_new_double(volt_thresholds[i].low);
521                         range[1] = g_variant_new_double(volt_thresholds[i].high);
522                         gvar = g_variant_new_tuple(range, 2);
523                         g_variant_builder_add_value(&gvb, gvar);
524                 }
525                 *data = g_variant_builder_end(&gvb);
526                 break;
527         case SR_CONF_TRIGGER_MATCH:
528                 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_INT32,
529                                 soft_trigger_matches, ARRAY_SIZE(soft_trigger_matches),
530                                 sizeof(int32_t));
531                 break;
532         default:
533                 return SR_ERR_NA;
534         }
535
536         return SR_OK;
537 }
538
539 static void abort_acquisition(struct dev_context *devc)
540 {
541         int i;
542
543         devc->sent_samples = -1;
544
545         for (i = devc->num_transfers - 1; i >= 0; i--) {
546                 if (devc->transfers[i])
547                         libusb_cancel_transfer(devc->transfers[i]);
548         }
549 }
550
551 static unsigned int bytes_per_ms(struct dev_context *devc)
552 {
553         return devc->cur_samplerate * devc->num_channels / 8000;
554 }
555
556 static size_t get_buffer_size(struct dev_context *devc)
557 {
558         size_t s;
559
560         /*
561          * The buffer should be large enough to hold 10ms of data and
562          * a multiple of 512.
563          */
564         s = 10 * bytes_per_ms(devc);
565         return (s + 511) & ~511;
566 }
567
568 static unsigned int get_number_of_transfers(struct dev_context *devc)
569 {
570         unsigned int n;
571
572         /* Total buffer size should be able to hold about 500ms of data. */
573         n = 500 * bytes_per_ms(devc) / get_buffer_size(devc);
574
575         if (n > NUM_SIMUL_TRANSFERS)
576                 return NUM_SIMUL_TRANSFERS;
577
578         return n;
579 }
580
581 static unsigned int get_timeout(struct dev_context *devc)
582 {
583         size_t total_size;
584         unsigned int timeout;
585
586         total_size = get_buffer_size(devc) * get_number_of_transfers(devc);
587         timeout = total_size / bytes_per_ms(devc);
588         return timeout + timeout / 4; /* Leave a headroom of 25% percent. */
589 }
590
591 static int configure_channels(const struct sr_dev_inst *sdi)
592 {
593         struct dev_context *devc;
594         struct sr_channel *ch;
595         GSList *l;
596         uint16_t channel_bit;
597
598         devc = sdi->priv;
599
600         devc->cur_channels = 0;
601         devc->num_channels = 0;
602         for (l = sdi->channels; l; l = l->next) {
603                 ch = (struct sr_channel *)l->data;
604                 if (ch->enabled == FALSE)
605                         continue;
606
607                 channel_bit = 1 << (ch->index);
608
609                 devc->cur_channels |= channel_bit;
610
611 #ifdef WORDS_BIGENDIAN
612                 /*
613                  * Output logic data should be stored in little endian format.
614                  * To speed things up during conversion, do the switcharoo
615                  * here instead.
616                  */
617                 channel_bit = 1 << (ch->index ^ 8);
618 #endif
619
620                 devc->channel_masks[devc->num_channels++] = channel_bit;
621         }
622
623         return SR_OK;
624 }
625
626 static int receive_data(int fd, int revents, void *cb_data)
627 {
628         struct timeval tv;
629         struct dev_context *devc;
630         struct drv_context *drvc;
631         const struct sr_dev_inst *sdi;
632         struct sr_dev_driver *di;
633
634         (void)fd;
635         (void)revents;
636
637         sdi = cb_data;
638         di = sdi->driver;
639         drvc = di->context;
640         devc = sdi->priv;
641
642         tv.tv_sec = tv.tv_usec = 0;
643         libusb_handle_events_timeout(drvc->sr_ctx->libusb_ctx, &tv);
644
645         if (devc->sent_samples == -2) {
646                 logic16_abort_acquisition(sdi);
647                 abort_acquisition(devc);
648         }
649
650         return TRUE;
651 }
652
653 static int dev_acquisition_start(const struct sr_dev_inst *sdi)
654 {
655         struct sr_dev_driver *di = sdi->driver;
656         struct dev_context *devc;
657         struct drv_context *drvc;
658         struct sr_usb_dev_inst *usb;
659         struct sr_trigger *trigger;
660         struct libusb_transfer *transfer;
661         unsigned int i, timeout, num_transfers;
662         int ret;
663         unsigned char *buf;
664         size_t size, convsize;
665
666         drvc = di->context;
667         devc = sdi->priv;
668         usb = sdi->conn;
669
670         /* Configures devc->cur_channels. */
671         if (configure_channels(sdi) != SR_OK) {
672                 sr_err("Failed to configure channels.");
673                 return SR_ERR;
674         }
675
676         devc->sent_samples = 0;
677         devc->empty_transfer_count = 0;
678         devc->cur_channel = 0;
679         memset(devc->channel_data, 0, sizeof(devc->channel_data));
680
681         if ((trigger = sr_session_trigger_get(sdi->session))) {
682                 int pre_trigger_samples = 0;
683                 if (devc->limit_samples > 0)
684                         pre_trigger_samples = devc->capture_ratio * devc->limit_samples/100;
685                 devc->stl = soft_trigger_logic_new(sdi, trigger, pre_trigger_samples);
686                 if (!devc->stl)
687                         return SR_ERR_MALLOC;
688                 devc->trigger_fired = FALSE;
689         } else
690                 devc->trigger_fired = TRUE;
691
692         timeout = get_timeout(devc);
693         num_transfers = get_number_of_transfers(devc);
694         size = get_buffer_size(devc);
695         convsize = (size / devc->num_channels + 2) * 16;
696         devc->submitted_transfers = 0;
697
698         devc->convbuffer_size = convsize;
699         if (!(devc->convbuffer = g_try_malloc(convsize))) {
700                 sr_err("Conversion buffer malloc failed.");
701                 return SR_ERR_MALLOC;
702         }
703
704         devc->transfers = g_try_malloc0(sizeof(*devc->transfers) * num_transfers);
705         if (!devc->transfers) {
706                 sr_err("USB transfers malloc failed.");
707                 g_free(devc->convbuffer);
708                 return SR_ERR_MALLOC;
709         }
710
711         if ((ret = logic16_setup_acquisition(sdi, devc->cur_samplerate,
712                                              devc->cur_channels)) != SR_OK) {
713                 g_free(devc->transfers);
714                 g_free(devc->convbuffer);
715                 return ret;
716         }
717
718         devc->num_transfers = num_transfers;
719         for (i = 0; i < num_transfers; i++) {
720                 if (!(buf = g_try_malloc(size))) {
721                         sr_err("USB transfer buffer malloc failed.");
722                         if (devc->submitted_transfers)
723                                 abort_acquisition(devc);
724                         else {
725                                 g_free(devc->transfers);
726                                 g_free(devc->convbuffer);
727                         }
728                         return SR_ERR_MALLOC;
729                 }
730                 transfer = libusb_alloc_transfer(0);
731                 libusb_fill_bulk_transfer(transfer, usb->devhdl,
732                                 2 | LIBUSB_ENDPOINT_IN, buf, size,
733                                 logic16_receive_transfer, (void *)sdi, timeout);
734                 if ((ret = libusb_submit_transfer(transfer)) != 0) {
735                         sr_err("Failed to submit transfer: %s.",
736                                libusb_error_name(ret));
737                         libusb_free_transfer(transfer);
738                         g_free(buf);
739                         abort_acquisition(devc);
740                         return SR_ERR;
741                 }
742                 devc->transfers[i] = transfer;
743                 devc->submitted_transfers++;
744         }
745
746         devc->ctx = drvc->sr_ctx;
747
748         usb_source_add(sdi->session, devc->ctx, timeout, receive_data, (void *)sdi);
749
750         std_session_send_df_header(sdi);
751
752         if ((ret = logic16_start_acquisition(sdi)) != SR_OK) {
753                 abort_acquisition(devc);
754                 return ret;
755         }
756
757         return SR_OK;
758 }
759
760 static int dev_acquisition_stop(struct sr_dev_inst *sdi)
761 {
762         int ret;
763
764         ret = logic16_abort_acquisition(sdi);
765
766         abort_acquisition(sdi->priv);
767
768         return ret;
769 }
770
771 static struct sr_dev_driver saleae_logic16_driver_info = {
772         .name = "saleae-logic16",
773         .longname = "Saleae Logic16",
774         .api_version = 1,
775         .init = std_init,
776         .cleanup = std_cleanup,
777         .scan = scan,
778         .dev_list = std_dev_list,
779         .dev_clear = std_dev_clear,
780         .config_get = config_get,
781         .config_set = config_set,
782         .config_list = config_list,
783         .dev_open = dev_open,
784         .dev_close = dev_close,
785         .dev_acquisition_start = dev_acquisition_start,
786         .dev_acquisition_stop = dev_acquisition_stop,
787         .context = NULL,
788 };
789 SR_REGISTER_DEV_DRIVER(saleae_logic16_driver_info);