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[libsigrok.git] / hardware / link-mso19 / api.c
1 /*
2  * This file is part of the sigrok project.
3  *
4  * Copyright (C) 2011 Daniel Ribeiro <drwyrm@gmail.com>
5  * Copyright (C) 2012 Renato Caldas <rmsc@fe.up.pt>
6  * Copyright (C) 2013 Lior Elazary <lelazary@yahoo.com>
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 "protocol.h"
23
24 static const int hwcaps[] = {
25         SR_CONF_LOGIC_ANALYZER,
26         SR_CONF_SAMPLERATE,
27         SR_CONF_TRIGGER_SLOPE,
28         SR_CONF_HORIZ_TRIGGERPOS,
29 //      SR_CONF_CAPTURE_RATIO,
30         SR_CONF_LIMIT_SAMPLES,
31 //      SR_CONF_RLE,
32         0,
33 };
34
35 /*
36  * Probes are numbered 0 to 7.
37  *
38  * See also: http://www.linkinstruments.com/images/mso19_1113.gif
39  */
40 SR_PRIV const char *mso19_probe_names[NUM_PROBES + 1] = {
41         "0", "1", "2", "3", "4", "5", "6", "7", NULL
42 };
43
44 /*supported samplerates */
45 static const struct sr_samplerates samplerates = {
46         SR_HZ(100),
47         SR_MHZ(200),
48         SR_HZ(100),
49         NULL,
50 };
51
52 SR_PRIV struct sr_dev_driver link_mso19_driver_info;
53 static struct sr_dev_driver *di = &link_mso19_driver_info;
54
55 static int hw_init(struct sr_context *sr_ctx)
56 {
57         struct drv_context *drvc;
58
59         if (!(drvc = g_try_malloc0(sizeof(struct drv_context)))) {
60                 sr_err("Driver context malloc failed.");
61                 return SR_ERR_MALLOC;
62         }
63
64         drvc->sr_ctx = sr_ctx;
65         di->priv = drvc;
66
67         return SR_OK;
68 }
69
70 static GSList *hw_scan(GSList *options)
71 {
72         int i;
73         GSList *devices = NULL;
74         const char *conn = NULL;
75         const char *serialcomm = NULL;
76         GSList *l;
77         struct sr_config *src;
78         struct udev *udev;
79
80         (void)options;
81
82         for (l = options; l; l = l->next) {
83                 src = l->data;
84                 switch (src->key) {
85                 case SR_CONF_CONN:
86                         conn = src->value;
87                         break;
88                 case SR_CONF_SERIALCOMM:
89                         serialcomm = src->value;
90                         break;
91                 }
92         }
93         if (!conn)
94                 conn = SERIALCONN;
95         if (serialcomm == NULL)
96                 serialcomm = SERIALCOMM;
97
98         udev = udev_new();
99         if (!udev) {
100                 sr_err("Failed to initialize udev.");
101         }
102
103         struct udev_enumerate *enumerate = udev_enumerate_new(udev);
104         udev_enumerate_add_match_subsystem(enumerate, "usb-serial");
105         udev_enumerate_scan_devices(enumerate);
106         struct udev_list_entry *devs = udev_enumerate_get_list_entry(enumerate);
107         struct udev_list_entry *dev_list_entry;
108         for (dev_list_entry = devs;
109              dev_list_entry != NULL;
110              dev_list_entry = udev_list_entry_get_next(dev_list_entry)) {
111                 const char *syspath = udev_list_entry_get_name(dev_list_entry);
112                 struct udev_device *dev =
113                     udev_device_new_from_syspath(udev, syspath);
114                 const char *sysname = udev_device_get_sysname(dev);
115                 struct udev_device *parent =
116                     udev_device_get_parent_with_subsystem_devtype(dev, "usb",
117                                                                   "usb_device");
118
119                 if (!parent) {
120                         sr_err("Unable to find parent usb device for %s",
121                                sysname);
122                         continue;
123                 }
124
125                 const char *idVendor =
126                     udev_device_get_sysattr_value(parent, "idVendor");
127                 const char *idProduct =
128                     udev_device_get_sysattr_value(parent, "idProduct");
129                 if (strcmp(USB_VENDOR, idVendor)
130                     || strcmp(USB_PRODUCT, idProduct))
131                         continue;
132
133                 const char *iSerial =
134                     udev_device_get_sysattr_value(parent, "serial");
135                 const char *iProduct =
136                     udev_device_get_sysattr_value(parent, "product");
137
138                 char path[32];
139                 snprintf(path, sizeof(path), "/dev/%s", sysname);
140                 conn = path;
141
142                 size_t s = strcspn(iProduct, " ");
143                 char product[32];
144                 char manufacturer[32];
145                 if (s > sizeof(product) ||
146                     strlen(iProduct) - s > sizeof(manufacturer)) {
147                         sr_err("Could not parse iProduct: %s.", iProduct);
148                         continue;
149                 }
150                 strncpy(product, iProduct, s);
151                 product[s] = 0;
152                 strcpy(manufacturer, iProduct + s + 1);
153
154                 //Create the device context and set its params
155                 struct dev_context *devc;
156                 if (!(devc = g_try_malloc0(sizeof(struct dev_context)))) {
157                         sr_err("Device context malloc failed.");
158                         return devices;
159                 }
160
161                 if (mso_parse_serial(iSerial, iProduct, devc) != SR_OK) {
162                         sr_err("Invalid iSerial: %s.", iSerial);
163                         g_free(devc);
164                         return devices;
165                 }
166
167                 char hwrev[32];
168                 sprintf(hwrev, "r%d", devc->hwrev);
169                 devc->ctlbase1 = 0;
170                 devc->protocol_trigger.spimode = 0;
171                 for (i = 0; i < 4; i++) {
172                         devc->protocol_trigger.word[i] = 0;
173                         devc->protocol_trigger.mask[i] = 0xff;
174                 }
175
176                 if (!(devc->serial = sr_serial_dev_inst_new(conn, serialcomm))) {
177                         g_free(devc);
178                         return devices;
179                 }
180
181                 struct sr_dev_inst *sdi = sr_dev_inst_new(0, SR_ST_INACTIVE,
182                                                 manufacturer, product, hwrev);
183
184                 if (!sdi) {
185                         sr_err("Unable to create device instance for %s",
186                                sysname);
187                         sr_dev_inst_free(sdi);
188                         g_free(devc);
189                         return devices;
190                 }
191
192                 sdi->driver = di;
193                 sdi->priv = devc;
194
195                 for (i = 0; i < NUM_PROBES; i++) {
196                         struct sr_probe *probe;
197                         if (!(probe = sr_probe_new(i, SR_PROBE_LOGIC, TRUE,
198                                                    mso19_probe_names[i])))
199                                 return 0;
200                         sdi->probes = g_slist_append(sdi->probes, probe);
201                 }
202
203                 //Add the driver
204                 struct drv_context *drvc = di->priv;
205                 drvc->instances = g_slist_append(drvc->instances, sdi);
206                 devices = g_slist_append(devices, sdi);
207         }
208
209         return devices;
210 }
211
212 static GSList *hw_dev_list(void)
213 {
214         struct drv_context *drvc;
215
216         drvc = di->priv;
217
218         return drvc->instances;
219 }
220
221 static int hw_dev_open(struct sr_dev_inst *sdi)
222 {
223         int ret;
224         struct dev_context *devc;
225
226         devc = sdi->priv;
227
228         if (serial_open(devc->serial, SERIAL_RDWR) != SR_OK)
229                 return SR_ERR;
230
231         sdi->status = SR_ST_ACTIVE;
232
233         /* FIXME: discard serial buffer */
234         mso_check_trigger(devc->serial, &devc->trigger_state);
235         sr_dbg("Trigger state: 0x%x.", devc->trigger_state);
236
237         ret = mso_reset_adc(sdi);
238         if (ret != SR_OK)
239                 return ret;
240
241         mso_check_trigger(devc->serial, &devc->trigger_state);
242         sr_dbg("Trigger state: 0x%x.", devc->trigger_state);
243
244         //    ret = mso_reset_fsm(sdi);
245         //    if (ret != SR_OK)
246         //            return ret;
247         //    return SR_ERR;
248
249         return SR_OK;
250 }
251
252 static int hw_dev_close(struct sr_dev_inst *sdi)
253 {
254         struct dev_context *devc;
255
256         devc = sdi->priv;
257
258         if (devc->serial && devc->serial->fd != -1) {
259                 serial_close(devc->serial);
260                 sdi->status = SR_ST_INACTIVE;
261         }
262
263         return SR_OK;
264 }
265
266 static int hw_cleanup(void)
267 {
268         GSList *l;
269         struct sr_dev_inst *sdi;
270         struct drv_context *drvc;
271         struct dev_context *devc;
272         int ret = SR_OK;
273
274         if (!(drvc = di->priv))
275                 return SR_OK;
276
277         /* Properly close and free all devices. */
278         for (l = drvc->instances; l; l = l->next) {
279                 if (!(sdi = l->data)) {
280                         /* Log error, but continue cleaning up the rest. */
281                         sr_err("%s: sdi was NULL, continuing", __func__);
282                         ret = SR_ERR_BUG;
283                         continue;
284                 }
285                 if (!(devc = sdi->priv)) {
286                         /* Log error, but continue cleaning up the rest. */
287                         sr_err("%s: sdi->priv was NULL, continuing", __func__);
288                         ret = SR_ERR_BUG;
289                         continue;
290                 }
291                 hw_dev_close(sdi);
292                 sr_serial_dev_inst_free(devc->serial);
293                 sr_dev_inst_free(sdi);
294         }
295         g_slist_free(drvc->instances);
296         drvc->instances = NULL;
297
298         return ret;
299 }
300
301 static int config_get(int id, const void **data, const struct sr_dev_inst *sdi)
302 {
303         struct dev_context *devc;
304
305         switch (id) {
306         case SR_DI_HWCAPS:
307                 *data = hwcaps;
308                 break;
309         case SR_DI_SAMPLERATES:
310                 *data = &samplerates;
311                 break;
312         case SR_DI_TRIGGER_TYPES:
313                 *data = (char *)TRIGGER_TYPES;
314                 break;
315         case SR_DI_CUR_SAMPLERATE:
316                 if (sdi) {
317                         devc = sdi->priv;
318                         *data = &devc->cur_rate;
319                 } else
320                         return SR_ERR;
321                 break;
322         default:
323                 return SR_ERR_ARG;
324         }
325
326         return SR_OK;
327 }
328
329 static int config_set(int id, const void *value, const struct sr_dev_inst *sdi)
330 {
331         int ret;
332         struct dev_context *devc;
333         uint64_t num_samples, slope;
334         int trigger_pos;
335         float pos;
336
337         devc = sdi->priv;
338
339         if (sdi->status != SR_ST_ACTIVE)
340                 return SR_ERR;
341
342         switch (id) {
343         case SR_CONF_SAMPLERATE:
344                 // FIXME
345                 return mso_configure_rate(sdi, *(const uint64_t *)value);
346                 ret = SR_OK;
347                 break;
348         case SR_CONF_LIMIT_SAMPLES:
349                 num_samples = *(uint64_t *)value;
350                 if (num_samples < 1024) {
351                         sr_err("minimum of 1024 samples required");
352                         ret = SR_ERR_ARG;
353                 } else {
354                         devc->limit_samples = num_samples;
355                         sr_dbg("setting limit_samples to %i\n",
356                                num_samples);
357                         ret = SR_OK;
358                 }
359                 break;
360         case SR_CONF_CAPTURE_RATIO:
361                 ret = SR_OK;
362                 break;
363         case SR_CONF_TRIGGER_SLOPE:
364                 slope = *(uint64_t *)value;
365                 if (slope != SLOPE_NEGATIVE && slope != SLOPE_POSITIVE) {
366                         sr_err("Invalid trigger slope");
367                         ret = SR_ERR_ARG;
368                 } else {
369                         devc->trigger_slope = slope;
370                         ret = SR_OK;
371                 }
372                 break;
373         case SR_CONF_HORIZ_TRIGGERPOS:
374                 pos = *(float *)value;
375                 if (pos < 0 || pos > 255) {
376                         sr_err("Trigger position (%f) should be between 0 and 255.", pos);
377                         ret = SR_ERR_ARG;
378                 } else {
379                         trigger_pos = (int)pos;
380                         devc->trigger_holdoff[0] = trigger_pos & 0xff;
381                         ret = SR_OK;
382                 }
383                 break;
384         case SR_CONF_RLE:
385                 ret = SR_OK;
386                 break;
387         default:
388                 ret = SR_ERR;
389                 break;
390         }
391
392         return ret;
393 }
394
395 static int hw_dev_acquisition_start(const struct sr_dev_inst *sdi,
396                                     void *cb_data)
397 {
398         struct sr_datafeed_packet *packet;
399         struct sr_datafeed_header *header;
400         struct dev_context *devc;
401         int ret = SR_ERR;
402
403         devc = sdi->priv;
404
405         if (sdi->status != SR_ST_ACTIVE)
406                 return SR_ERR;
407
408         if (mso_configure_probes(sdi) != SR_OK) {
409                 sr_err("Failed to configure probes.");
410                 return SR_ERR;
411         }
412
413         /* FIXME: No need to do full reconfigure every time */
414 //      ret = mso_reset_fsm(sdi);
415 //      if (ret != SR_OK)
416 //              return ret;
417
418         /* FIXME: ACDC Mode */
419         devc->ctlbase1 &= 0x7f;
420 //      devc->ctlbase1 |= devc->acdcmode;
421
422         ret = mso_configure_rate(sdi, devc->cur_rate);
423         if (ret != SR_OK)
424                 return ret;
425
426         /* set dac offset */
427         ret = mso_dac_out(sdi, devc->dac_offset);
428         if (ret != SR_OK)
429                 return ret;
430
431         ret = mso_configure_threshold_level(sdi);
432         if (ret != SR_OK)
433                 return ret;
434
435         ret = mso_configure_trigger(sdi);
436         if (ret != SR_OK)
437                 return ret;
438
439         /* END of config hardware part */
440         ret = mso_arm(sdi);
441         if (ret != SR_OK)
442                 return ret;
443
444         /* Start acquisition on the device. */
445         mso_check_trigger(devc->serial, &devc->trigger_state);
446         ret = mso_check_trigger(devc->serial, NULL);
447         if (ret != SR_OK)
448                 return ret;
449
450         sr_source_add(devc->serial->fd, G_IO_IN, -1, mso_receive_data, cb_data);
451
452         if (!(packet = g_try_malloc(sizeof(struct sr_datafeed_packet)))) {
453                 sr_err("Datafeed packet malloc failed.");
454                 return SR_ERR_MALLOC;
455         }
456
457         if (!(header = g_try_malloc(sizeof(struct sr_datafeed_header)))) {
458                 sr_err("Datafeed header malloc failed.");
459                 g_free(packet);
460                 return SR_ERR_MALLOC;
461         }
462
463         packet->type = SR_DF_HEADER;
464         packet->payload = (unsigned char *)header;
465         header->feed_version = 1;
466         gettimeofday(&header->starttime, NULL);
467         sr_session_send(cb_data, packet);
468
469         g_free(header);
470         g_free(packet);
471
472         return SR_OK;
473 }
474
475 /* This stops acquisition on ALL devices, ignoring dev_index. */
476 static int hw_dev_acquisition_stop(struct sr_dev_inst *sdi, void *cb_data)
477 {
478         (void)cb_data;
479
480         stop_acquisition(sdi);
481
482         return SR_OK;
483 }
484
485 SR_PRIV struct sr_dev_driver link_mso19_driver_info = {
486         .name = "link-mso19",
487         .longname = "Link Instruments MSO-19",
488         .api_version = 1,
489         .init = hw_init,
490         .cleanup = hw_cleanup,
491         .scan = hw_scan,
492         .dev_list = hw_dev_list,
493         .dev_clear = hw_cleanup,
494         .config_get = config_get,
495         .config_set = config_set,
496         .dev_open = hw_dev_open,
497         .dev_close = hw_dev_close,
498         .dev_acquisition_start = hw_dev_acquisition_start,
499         .dev_acquisition_stop = hw_dev_acquisition_stop,
500         .priv = NULL,
501 };