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consistent debug msgs, rename sump to ols
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1 /*
2  * This file is part of the sigrok project.
3  *
4  * Copyright (C) 2010 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 <sys/time.h>
23 #include <inttypes.h>
24 #include <glib.h>
25 #include <libusb.h>
26 #include <sigrok.h>
27 #include "config.h"
28
29 #define USB_VENDOR                      0x0925
30 #define USB_PRODUCT                     0x3881
31 #define USB_VENDOR_NAME                 "Saleae"
32 #define USB_MODEL_NAME                  "Logic"
33 #define USB_MODEL_VERSION               ""
34
35 #define USB_INTERFACE                   0
36 #define USB_CONFIGURATION               1
37 #define NUM_PROBES                      8
38 #define NUM_TRIGGER_STAGES              4
39 #define TRIGGER_TYPES                   "01"
40 #define FIRMWARE                        FIRMWARE_DIR "/saleae-logic.fw"
41
42 /* delay in ms */
43 #define FIRMWARE_RENUM_DELAY            2000
44 #define NUM_SIMUL_TRANSFERS             10
45 #define MAX_EMPTY_TRANSFERS             (NUM_SIMUL_TRANSFERS * 2)
46
47 /* Software trigger implementation: positive values indicate trigger stage. */
48 #define TRIGGER_FIRED                   -1
49
50 /* There is only one model Saleae Logic, and this is what it supports: */
51 static int capabilities[] = {
52         HWCAP_LOGIC_ANALYZER,
53         HWCAP_SAMPLERATE,
54
55         /* These are really implemented in the driver, not the hardware. */
56         HWCAP_LIMIT_SAMPLES,
57         0,
58 };
59
60 /* List of struct sigrok_device_instance, maintained by opendev()/closedev(). */
61 static GSList *device_instances = NULL;
62
63 /*
64  * Since we can't keep track of a Saleae Logic device after upgrading the
65  * firmware -- it re-enumerates into a different device address after the
66  * upgrade -- this is like a global lock. No device will open until a proper
67  * delay after the last device was upgraded.
68  */
69 GTimeVal firmware_updated = { 0, 0 };
70
71 static libusb_context *usb_context = NULL;
72
73 static uint64_t supported_samplerates[] = {
74         KHZ(200),
75         KHZ(250),
76         KHZ(500),
77         MHZ(1),
78         MHZ(2),
79         MHZ(4),
80         MHZ(8),
81         MHZ(12),
82         MHZ(16),
83         MHZ(24),
84         0,
85 };
86
87 static struct samplerates samplerates = {
88         KHZ(200),
89         MHZ(24),
90         0,
91         supported_samplerates,
92 };
93
94 /* TODO: All of these should go in a device-specific struct. */
95 static uint64_t cur_samplerate = 0;
96 static uint64_t limit_samples = 0;
97 static uint8_t probe_mask = 0;
98 static uint8_t trigger_mask[NUM_TRIGGER_STAGES] = { 0 };
99 static uint8_t trigger_value[NUM_TRIGGER_STAGES] = { 0 };
100 static uint8_t trigger_buffer[NUM_TRIGGER_STAGES] = { 0 };
101
102 int trigger_stage = TRIGGER_FIRED;
103
104 static int hw_set_configuration(int device_index, int capability, void *value);
105 static void hw_stop_acquisition(int device_index, gpointer session_device_id);
106
107 /**
108  * Check the USB configuration to determine if this is a Saleae Logic.
109  *
110  * @return 1 if the device's configuration profile match the Logic firmware's
111  *         configuration, 0 otherwise.
112  */
113 int check_conf_profile(libusb_device *dev)
114 {
115         struct libusb_device_descriptor des;
116         struct libusb_config_descriptor *conf_dsc = NULL;
117         const struct libusb_interface_descriptor *intf_dsc;
118         int ret = -1;
119
120         while (ret == -1) {
121                 /* Assume it's not a Saleae Logic unless proven wrong. */
122                 ret = 0;
123
124                 if (libusb_get_device_descriptor(dev, &des) != 0)
125                         break;
126
127                 if (des.bNumConfigurations != 1)
128                         /* Need exactly 1 configuration. */
129                         break;
130
131                 if (libusb_get_config_descriptor(dev, 0, &conf_dsc) != 0)
132                         break;
133
134                 if (conf_dsc->bNumInterfaces != 1)
135                         /* Need exactly 1 interface. */
136                         break;
137
138                 if (conf_dsc->interface[0].num_altsetting != 1)
139                         /* Need just one alternate setting. */
140                         break;
141
142                 intf_dsc = &(conf_dsc->interface[0].altsetting[0]);
143                 if (intf_dsc->bNumEndpoints != 2)
144                         /* Need 2 endpoints. */
145                         break;
146
147                 if ((intf_dsc->endpoint[0].bEndpointAddress & 0x8f) !=
148                     (1 | LIBUSB_ENDPOINT_OUT))
149                         /* First endpoint should be 1 (outbound). */
150                         break;
151
152                 if ((intf_dsc->endpoint[1].bEndpointAddress & 0x8f) !=
153                     (2 | LIBUSB_ENDPOINT_IN))
154                         /* First endpoint should be 2 (inbound). */
155                         break;
156
157                 /* If we made it here, it must be a Saleae Logic. */
158                 ret = 1;
159         }
160
161         if (conf_dsc)
162                 libusb_free_config_descriptor(conf_dsc);
163
164         return ret;
165 }
166
167 struct sigrok_device_instance *sl_open_device(int device_index)
168 {
169         struct sigrok_device_instance *sdi;
170         libusb_device **devlist;
171         struct libusb_device_descriptor des;
172         int err, skip, i;
173
174         if (!(sdi = get_sigrok_device_instance(device_instances, device_index)))
175                 return NULL;
176
177         libusb_get_device_list(usb_context, &devlist);
178         if (sdi->status == ST_INITIALIZING) {
179                 /*
180                  * This device was renumerating last time we touched it.
181                  * opendev() guarantees we've waited long enough for it to
182                  * have booted properly, so now we need to find it on
183                  * the bus and record its new address.
184                  */
185                 skip = 0;
186                 for (i = 0; devlist[i]; i++) {
187                         /* TODO: Error handling. */
188                         err = opendev2(device_index, &sdi, devlist[i], &des,
189                                        &skip, USB_VENDOR, USB_PRODUCT,
190                                        USB_INTERFACE);
191                 }
192         } else if (sdi->status == ST_INACTIVE) {
193                 /*
194                  * This device is fully enumerated, so we need to find this
195                  * device by vendor, product, bus and address.
196                  */
197                 libusb_get_device_list(usb_context, &devlist);
198                 for (i = 0; devlist[i]; i++) {
199                         /* TODO: Error handling. */
200                         err = opendev3(&sdi, devlist[i], &des, USB_VENDOR,
201                                        USB_PRODUCT, USB_INTERFACE);
202                 }
203         } else {
204                 /* Status must be ST_ACTIVE, i.e. already in use... */
205                 sdi = NULL;
206         }
207         libusb_free_device_list(devlist, 1);
208
209         if (sdi && sdi->status != ST_ACTIVE)
210                 sdi = NULL;
211
212         return sdi;
213 }
214
215 int upload_firmware(libusb_device *dev)
216 {
217         int ret;
218
219         ret = ezusb_upload_firmware(dev, USB_CONFIGURATION, FIRMWARE);
220         if (ret != 0)
221                 return 1;
222
223         /* Remember when the last firmware update was done. */
224         g_get_current_time(&firmware_updated);
225
226         return 0;
227 }
228
229 static void close_device(struct sigrok_device_instance *sdi)
230 {
231         if (sdi->usb->devhdl == NULL)
232                 return;
233
234         g_message("saleae: closing device %d on %d.%d interface %d", sdi->index,
235                   sdi->usb->bus, sdi->usb->address, USB_INTERFACE);
236         libusb_release_interface(sdi->usb->devhdl, USB_INTERFACE);
237         libusb_close(sdi->usb->devhdl);
238         sdi->usb->devhdl = NULL;
239         sdi->status = ST_INACTIVE;
240 }
241
242 static int configure_probes(GSList *probes)
243 {
244         struct probe *probe;
245         GSList *l;
246         int probe_bit, stage, i;
247         char *tc;
248
249         probe_mask = 0;
250         for (i = 0; i < NUM_TRIGGER_STAGES; i++) {
251                 trigger_mask[i] = 0;
252                 trigger_value[i] = 0;
253         }
254
255         stage = -1;
256         for (l = probes; l; l = l->next) {
257                 probe = (struct probe *)l->data;
258                 if (probe->enabled == FALSE)
259                         continue;
260                 probe_bit = 1 << (probe->index - 1);
261                 probe_mask |= probe_bit;
262                 if (!(probe->trigger))
263                         continue;
264
265                 stage = 0;
266                 for (tc = probe->trigger; *tc; tc++) {
267                         trigger_mask[stage] |= probe_bit;
268                         if (*tc == '1')
269                                 trigger_value[stage] |= probe_bit;
270                         stage++;
271                         if (stage > NUM_TRIGGER_STAGES)
272                                 return SIGROK_ERR;
273                 }
274         }
275
276         if (stage == -1)
277                 /*
278                  * We didn't configure any triggers, make sure acquisition
279                  * doesn't wait for any.
280                  */
281                 trigger_stage = TRIGGER_FIRED;
282         else
283                 trigger_stage = 0;
284
285         return SIGROK_OK;
286 }
287
288 /*
289  * API callbacks
290  */
291
292 static int hw_init(char *deviceinfo)
293 {
294         struct sigrok_device_instance *sdi;
295         struct libusb_device_descriptor des;
296         libusb_device **devlist;
297         int err, devcnt, i;
298
299         /* QUICK HACK */
300         deviceinfo = deviceinfo;
301
302         if (libusb_init(&usb_context) != 0) {
303                 g_warning("Failed to initialize USB.");
304                 return 0;
305         }
306
307         /* Find all Saleae Logic devices and upload firmware to all of them. */
308         devcnt = 0;
309         libusb_get_device_list(usb_context, &devlist);
310         for (i = 0; devlist[i]; i++) {
311                 err = libusb_get_device_descriptor(devlist[i], &des);
312                 if (err != 0) {
313                         g_warning("failed to get device descriptor: %d", err);
314                         continue;
315                 }
316
317                 if (des.idVendor != USB_VENDOR || des.idProduct != USB_PRODUCT)
318                         continue; /* Not a Saleae Logic... */
319
320                 sdi = sigrok_device_instance_new(devcnt, ST_INITIALIZING,
321                         USB_VENDOR_NAME, USB_MODEL_NAME, USB_MODEL_VERSION);
322                 if (!sdi)
323                         return 0;
324                 device_instances = g_slist_append(device_instances, sdi);
325
326                 if (check_conf_profile(devlist[i]) == 0) {
327                         /*
328                          * Continue on the off chance that the device is in a
329                          * working state. TODO: Could maybe try a USB reset,
330                          * or uploading the firmware again.
331                          */
332                         if (upload_firmware(devlist[i]) > 0)
333                                 g_warning("firmware upload failed for "
334                                           "device %d", devcnt);
335
336                         sdi->usb = usb_device_instance_new
337                                 (libusb_get_bus_number(devlist[i]), 0, NULL);
338                 } else {
339                         /* Already has the firmware, so fix the new address. */
340                         sdi->usb = usb_device_instance_new
341                             (libusb_get_bus_number(devlist[i]),
342                              libusb_get_device_address(devlist[i]), NULL);
343                 }
344                 devcnt++;
345         }
346         libusb_free_device_list(devlist, 1);
347
348         return devcnt;
349 }
350
351 static int hw_opendev(int device_index)
352 {
353         GTimeVal cur_time;
354         struct sigrok_device_instance *sdi;
355         int timediff, err;
356         unsigned int cur, upd;
357
358         if (firmware_updated.tv_sec > 0) {
359                 /* Firmware was recently uploaded. */
360                 g_get_current_time(&cur_time);
361                 cur = cur_time.tv_sec * 1000 + cur_time.tv_usec / 1000;
362                 upd = firmware_updated.tv_sec * 1000 +
363                       firmware_updated.tv_usec / 1000;
364                 timediff = cur - upd;
365                 if (timediff < FIRMWARE_RENUM_DELAY) {
366                         timediff = FIRMWARE_RENUM_DELAY - timediff;
367                         g_message("saleae: waiting %d ms for device to reset",
368                                   timediff);
369                         g_usleep(timediff * 1000);
370                         firmware_updated.tv_sec = 0;
371                 }
372         }
373
374         if (!(sdi = sl_open_device(device_index))) {
375                 g_warning("unable to open device");
376                 return SIGROK_ERR;
377         }
378
379         err = libusb_claim_interface(sdi->usb->devhdl, USB_INTERFACE);
380         if (err != 0) {
381                 g_warning("Unable to claim interface: %d", err);
382                 return SIGROK_ERR;
383         }
384
385         if (cur_samplerate == 0) {
386                 /* Samplerate hasn't been set; default to the slowest one. */
387                 if (hw_set_configuration(device_index, HWCAP_SAMPLERATE,
388                     &supported_samplerates[0]) == SIGROK_ERR)
389                         return SIGROK_ERR;
390         }
391
392         return SIGROK_OK;
393 }
394
395 static void hw_closedev(int device_index)
396 {
397         struct sigrok_device_instance *sdi;
398
399         if ((sdi = get_sigrok_device_instance(device_instances, device_index)))
400                 close_device(sdi);
401 }
402
403 static void hw_cleanup(void)
404 {
405         GSList *l;
406
407         /* Properly close all devices... */
408         for (l = device_instances; l; l = l->next)
409                 close_device((struct sigrok_device_instance *)l->data);
410
411         /* ...and free all their memory. */
412         for (l = device_instances; l; l = l->next)
413                 g_free(l->data);
414         g_slist_free(device_instances);
415         device_instances = NULL;
416
417         if (usb_context)
418                 libusb_exit(usb_context);
419         usb_context = NULL;
420 }
421
422 static void *hw_get_device_info(int device_index, int device_info_id)
423 {
424         struct sigrok_device_instance *sdi;
425         void *info = NULL;
426
427         if (!(sdi = get_sigrok_device_instance(device_instances, device_index)))
428                 return NULL;
429
430         switch (device_info_id) {
431         case DI_INSTANCE:
432                 info = sdi;
433                 break;
434         case DI_NUM_PROBES:
435                 info = GINT_TO_POINTER(NUM_PROBES);
436                 break;
437         case DI_SAMPLERATES:
438                 info = &samplerates;
439                 break;
440         case DI_TRIGGER_TYPES:
441                 info = TRIGGER_TYPES;
442                 break;
443         case DI_CUR_SAMPLERATE:
444                 info = &cur_samplerate;
445                 break;
446         }
447
448         return info;
449 }
450
451 static int hw_get_status(int device_index)
452 {
453         struct sigrok_device_instance *sdi;
454
455         sdi = get_sigrok_device_instance(device_instances, device_index);
456         if (sdi)
457                 return sdi->status;
458         else
459                 return ST_NOT_FOUND;
460 }
461
462 static int *hw_get_capabilities(void)
463 {
464         return capabilities;
465 }
466
467 static int set_configuration_samplerate(struct sigrok_device_instance *sdi,
468                                         uint64_t samplerate)
469 {
470         uint8_t divider;
471         int ret, result, i;
472         unsigned char buf[2];
473
474         for (i = 0; supported_samplerates[i]; i++) {
475                 if (supported_samplerates[i] == samplerate)
476                         break;
477         }
478         if (supported_samplerates[i] == 0)
479                 return SIGROK_ERR_SAMPLERATE;
480
481         divider = (uint8_t) (48 / (samplerate / 1000000.0)) - 1;
482
483         g_message("saleae: setting samplerate to %" PRIu64 " Hz (divider %d)",
484                   samplerate, divider);
485         buf[0] = 0x01;
486         buf[1] = divider;
487         ret = libusb_bulk_transfer(sdi->usb->devhdl, 1 | LIBUSB_ENDPOINT_OUT,
488                                    buf, 2, &result, 500);
489         if (ret != 0) {
490                 g_warning("failed to set samplerate: %d", ret);
491                 return SIGROK_ERR;
492         }
493         cur_samplerate = samplerate;
494
495         return SIGROK_OK;
496 }
497
498 static int hw_set_configuration(int device_index, int capability, void *value)
499 {
500         struct sigrok_device_instance *sdi;
501         int ret;
502         uint64_t *tmp_u64;
503
504         if (!(sdi = get_sigrok_device_instance(device_instances, device_index)))
505                 return SIGROK_ERR;
506
507         if (capability == HWCAP_SAMPLERATE) {
508                 tmp_u64 = value;
509                 ret = set_configuration_samplerate(sdi, *tmp_u64);
510         } else if (capability == HWCAP_PROBECONFIG) {
511                 ret = configure_probes((GSList *) value);
512         } else if (capability == HWCAP_LIMIT_SAMPLES) {
513                 tmp_u64 = value;
514                 limit_samples = *tmp_u64;
515                 ret = SIGROK_OK;
516         } else {
517                 ret = SIGROK_ERR;
518         }
519
520         return ret;
521 }
522
523 static int receive_data(int fd, int revents, void *user_data)
524 {
525         struct timeval tv;
526
527         /* QUICK HACK */
528         fd = fd;
529         revents = revents;
530         user_data = user_data;
531
532         tv.tv_sec = tv.tv_usec = 0;
533         libusb_handle_events_timeout(usb_context, &tv);
534
535         return TRUE;
536 }
537
538 void receive_transfer(struct libusb_transfer *transfer)
539 {
540         static int num_samples = 0;
541         static int empty_transfer_count = 0;
542         struct datafeed_packet packet;
543         void *user_data;
544         int cur_buflen, trigger_offset, i;
545         unsigned char *cur_buf, *new_buf;
546
547         /* hw_stop_acquisition() is telling us to stop. */
548         if (transfer == NULL)
549                 num_samples = -1;
550
551         /*
552          * If acquisition has already ended, just free any queued up
553          * transfer that come in.
554          */
555         if (num_samples == -1) {
556                 if (transfer)
557                         libusb_free_transfer(transfer);
558                 return;
559         }
560
561         g_message("saleae: receive_transfer(): status %d received %d bytes",
562                   transfer->status, transfer->actual_length);
563
564         /* Save incoming transfer before reusing the transfer struct. */
565         cur_buf = transfer->buffer;
566         cur_buflen = transfer->actual_length;
567         user_data = transfer->user_data;
568
569         /* Fire off a new request. */
570         new_buf = g_malloc(4096);
571         transfer->buffer = new_buf;
572         transfer->length = 4096;
573         if (libusb_submit_transfer(transfer) != 0) {
574                 /* TODO: Stop session? */
575                 g_warning("eek");
576         }
577
578         if (cur_buflen == 0) {
579                 empty_transfer_count++;
580                 if (empty_transfer_count > MAX_EMPTY_TRANSFERS) {
581                         /*
582                          * The FX2 gave up. End the acquisition, the frontend
583                          * will work out that the samplecount is short.
584                          */
585                         hw_stop_acquisition(-1, user_data);
586                 }
587                 return;
588         } else {
589                 empty_transfer_count = 0;
590         }
591
592         trigger_offset = 0;
593         if (trigger_stage >= 0) {
594                 for (i = 0; i < cur_buflen; i++) {
595
596                         if ((cur_buf[i] & trigger_mask[trigger_stage]) == trigger_value[trigger_stage]) {
597                                 /* Match on this trigger stage. */
598                                 trigger_buffer[trigger_stage] = cur_buf[i];
599                                 trigger_stage++;
600                                 if (trigger_stage == NUM_TRIGGER_STAGES || trigger_mask[trigger_stage] == 0) {
601                                         /* Match on all trigger stages, we're done. */
602                                         trigger_offset = i + 1;
603
604                                         /*
605                                          * TODO: Send pre-trigger buffer to session bus.
606                                          * Tell the frontend we hit the trigger here.
607                                          */
608                                         packet.type = DF_TRIGGER;
609                                         packet.length = 0;
610                                         session_bus(user_data, &packet);
611
612                                         /*
613                                          * Send the samples that triggered it, since we're
614                                          * skipping past them.
615                                          */
616                                         packet.type = DF_LOGIC8;
617                                         packet.length = trigger_stage;
618                                         packet.payload = trigger_buffer;
619                                         session_bus(user_data, &packet);
620
621                                         trigger_stage = TRIGGER_FIRED;
622                                         break;
623                                 }
624                                 return;
625                         }
626
627                         /*
628                          * We had a match before, but not in the next sample. However, we may
629                          * have a match on this stage in the next bit -- trigger on 0001 will
630                          * fail on seeing 00001, so we need to go back to stage 0 -- but at
631                          * the next sample from the one that matched originally, which the
632                          * counter increment at the end of the loop takes care of.
633                          */
634                         if (trigger_stage > 0) {
635                                 i -= trigger_stage;
636                                 if (i < -1)
637                                         i = -1; /* Oops, went back past this buffer. */
638                                 /* Reset trigger stage. */
639                                 trigger_stage = 0;
640                         }
641
642
643                 }
644         }
645
646         if (trigger_stage == TRIGGER_FIRED) {
647                 /* Send the incoming transfer to the session bus. */
648                 packet.type = DF_LOGIC8;
649                 packet.length = cur_buflen - trigger_offset;
650                 packet.payload = cur_buf + trigger_offset;
651                 session_bus(user_data, &packet);
652                 g_free(cur_buf);
653
654                 num_samples += cur_buflen;
655                 if ((unsigned int)num_samples > limit_samples) {
656                         hw_stop_acquisition(-1, user_data);
657                 }
658         } else {
659                 /*
660                  * TODO: Buffer pre-trigger data in capture
661                  * ratio-sized buffer.
662                  */
663         }
664 }
665
666 static int hw_start_acquisition(int device_index, gpointer session_device_id)
667 {
668         struct sigrok_device_instance *sdi;
669         struct datafeed_packet *packet;
670         struct datafeed_header *header;
671         struct libusb_transfer *transfer;
672         const struct libusb_pollfd **lupfd;
673         int size, i;
674         unsigned char *buf;
675
676         if (!(sdi = get_sigrok_device_instance(device_instances, device_index)))
677                 return SIGROK_ERR;
678
679         packet = g_malloc(sizeof(struct datafeed_packet));
680         header = g_malloc(sizeof(struct datafeed_header));
681         if (!packet || !header)
682                 return SIGROK_ERR;
683
684         /* Start with 2K transfer, subsequently increased to 4K. */
685         size = 2048;
686         for (i = 0; i < NUM_SIMUL_TRANSFERS; i++) {
687                 buf = g_malloc(size);
688                 transfer = libusb_alloc_transfer(0);
689                 libusb_fill_bulk_transfer(transfer, sdi->usb->devhdl,
690                                 2 | LIBUSB_ENDPOINT_IN, buf, size,
691                                 receive_transfer, session_device_id, 40);
692                 if (libusb_submit_transfer(transfer) != 0) {
693                         /* TODO: Free them all. */
694                         libusb_free_transfer(transfer);
695                         g_free(buf);
696                         return SIGROK_ERR;
697                 }
698                 size = 4096;
699         }
700
701         lupfd = libusb_get_pollfds(usb_context);
702         for (i = 0; lupfd[i]; i++)
703                 source_add(lupfd[i]->fd, lupfd[i]->events, 40, receive_data,
704                            NULL);
705         free(lupfd);
706
707         packet->type = DF_HEADER;
708         packet->length = sizeof(struct datafeed_header);
709         packet->payload = (unsigned char *)header;
710         header->feed_version = 1;
711         gettimeofday(&header->starttime, NULL);
712         header->samplerate = cur_samplerate;
713         header->protocol_id = PROTO_RAW;
714         header->num_probes = NUM_PROBES;
715         session_bus(session_device_id, packet);
716         g_free(header);
717         g_free(packet);
718
719         return SIGROK_OK;
720 }
721
722 /* This stops acquisition on ALL devices, ignoring device_index. */
723 static void hw_stop_acquisition(int device_index, gpointer session_device_id)
724 {
725         struct datafeed_packet packet;
726
727         /* QUICK HACK */
728         device_index = device_index;
729
730         packet.type = DF_END;
731         session_bus(session_device_id, &packet);
732
733         receive_transfer(NULL);
734
735         /* TODO: Need to cancel and free any queued up transfers. */
736 }
737
738 struct device_plugin saleae_logic_plugin_info = {
739         "saleae-logic",
740         1,
741         hw_init,
742         hw_cleanup,
743
744         hw_opendev,
745         hw_closedev,
746         hw_get_device_info,
747         hw_get_status,
748         hw_get_capabilities,
749         hw_set_configuration,
750         hw_start_acquisition,
751         hw_stop_acquisition,
752 };