static uint64_t limit_samples = 0;
static uint64_t limit_frames = 0;
-extern gchar *opt_output_file;
-extern gchar *opt_output_format;
-extern gchar *opt_pds;
-extern gboolean opt_wait_trigger;
-extern gchar *opt_time;
-extern gchar *opt_samples;
-extern gchar *opt_frames;
-extern gchar *opt_continuous;
-extern gchar *opt_config;
-extern gchar *opt_triggers;
#ifdef HAVE_SRD
extern struct srd_session *srd_sess;
#endif
const struct sr_datafeed_meta *meta;
const struct sr_datafeed_logic *logic;
const struct sr_datafeed_analog *analog;
+ struct sr_session *session;
struct sr_config *src;
struct sr_channel *ch;
static struct sr_output *o = NULL;
int i;
char **channels;
- (void) cb_data;
-
/* If the first packet to come in isn't a header, don't even try. */
if (packet->type != SR_DF_HEADER && o == NULL)
return;
+ session = cb_data;
switch (packet->type) {
case SR_DF_HEADER:
- g_debug("cli: Received SR_DF_HEADER");
+ g_debug("cli: Received SR_DF_HEADER.");
o = setup_output_format(sdi);
/* Prepare non-stdout output. */
break;
case SR_DF_META:
- g_debug("cli: received SR_DF_META");
+ g_debug("cli: Received SR_DF_META.");
meta = packet->payload;
for (l = meta->config; l; l = l->next) {
src = l->data;
switch (src->key) {
case SR_CONF_SAMPLERATE:
samplerate = g_variant_get_uint64(src->data);
- g_debug("cli: got samplerate %"PRIu64" Hz", samplerate);
+ g_debug("cli: Got samplerate %"PRIu64" Hz.", samplerate);
#ifdef HAVE_SRD
if (opt_pds) {
if (srd_session_metadata_set(srd_sess, SRD_CONF_SAMPLERATE,
break;
case SR_CONF_SAMPLE_INTERVAL:
samplerate = g_variant_get_uint64(src->data);
- g_debug("cli: got sample interval %"PRIu64" ms", samplerate);
+ g_debug("cli: Got sample interval %"PRIu64" ms.", samplerate);
break;
default:
/* Unknown metadata is not an error. */
break;
case SR_DF_TRIGGER:
- g_debug("cli: received SR_DF_TRIGGER");
+ g_debug("cli: Received SR_DF_TRIGGER.");
triggered = 1;
break;
case SR_DF_LOGIC:
logic = packet->payload;
- g_message("cli: received SR_DF_LOGIC, %"PRIu64" bytes", logic->length);
+ g_message("cli: Received SR_DF_LOGIC (%"PRIu64" bytes, unitsize = %d).",
+ logic->length, logic->unitsize);
if (logic->length == 0)
break;
channels[i++] = ch->name;
}
channels[i] = NULL;
- sr_session_save_init(opt_output_file, samplerate,
- channels);
+ sr_session_save_init(session, opt_output_file,
+ samplerate, channels);
g_free(channels);
}
- save_chunk_logic(logic->data, input_len, logic->unitsize);
+ save_chunk_logic(session, logic->data, input_len, logic->unitsize);
} else {
if (opt_pds) {
#ifdef HAVE_SRD
if (srd_session_send(srd_sess, rcvd_samples_logic, end_sample,
logic->data, input_len) != SRD_OK)
- sr_session_stop();
+ sr_session_stop(session);
#endif
}
}
case SR_DF_ANALOG:
analog = packet->payload;
- g_message("cli: received SR_DF_ANALOG, %d samples", analog->num_samples);
+ g_message("cli: Received SR_DF_ANALOG (%d samples).", analog->num_samples);
if (analog->num_samples == 0)
break;
break;
case SR_DF_FRAME_BEGIN:
- g_debug("cli: received SR_DF_FRAME_BEGIN");
+ g_debug("cli: Received SR_DF_FRAME_BEGIN.");
break;
case SR_DF_FRAME_END:
- g_debug("cli: received SR_DF_FRAME_END");
+ g_debug("cli: Received SR_DF_FRAME_END.");
break;
default:
/* SR_DF_END needs to be handled after the output module's receive()
* is called, so it can properly clean up that module. */
if (packet->type == SR_DF_END) {
- g_debug("cli: Received SR_DF_END");
+ g_debug("cli: Received SR_DF_END.");
if (o)
sr_output_free(o);
if (opt_output_file && default_output_format)
/* Flush whatever is left out to the session file. */
- save_chunk_logic(NULL, 0, 0);
+ save_chunk_logic(session, NULL, 0, 0);
if (limit_samples) {
if (rcvd_samples_logic > 0 && rcvd_samples_logic < limit_samples)
break;
src->data = g_variant_new_int32(tmp_u64);
break;
- case SR_T_CHAR:
+ case SR_T_STRING:
src->data = g_variant_new_string(value);
break;
case SR_T_BOOL:
GSList *devices;
GHashTable *devargs;
GVariant *gvar;
+ struct sr_session *session;
+ struct sr_trigger *trigger;
struct sr_dev_inst *sdi;
uint64_t min_samples, max_samples;
- int max_channels, i;
- char **triggerlist;
devices = device_scan();
if (!devices) {
}
sdi = devices->data;
- sr_session_new();
- sr_session_datafeed_callback_add(datafeed_in, NULL);
+ sr_session_new(&session);
+ sr_session_datafeed_callback_add(session, datafeed_in, NULL);
if (sr_dev_open(sdi) != SR_OK) {
g_critical("Failed to open device.");
return;
}
- if (sr_session_dev_add(sdi) != SR_OK) {
+ if (sr_session_dev_add(session, sdi) != SR_OK) {
g_critical("Failed to add device to session.");
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
if (select_channels(sdi) != SR_OK) {
g_critical("Failed to set channels.");
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
if (opt_triggers) {
- if (!(triggerlist = sr_parse_triggerstring(sdi, opt_triggers))) {
- sr_session_destroy();
+ if (!parse_triggerstring(sdi, opt_triggers, &trigger)) {
+ sr_session_destroy(session);
return;
}
- max_channels = g_slist_length(sdi->channels);
- for (i = 0; i < max_channels; i++) {
- if (triggerlist[i]) {
- sr_dev_trigger_set(sdi, i, triggerlist[i]);
- g_free(triggerlist[i]);
- }
+ if (sr_session_trigger_set(session, trigger) != SR_OK) {
+ sr_session_destroy(session);
+ return;
}
- g_free(triggerlist);
}
if (opt_continuous) {
if (!sr_dev_has_option(sdi, SR_CONF_CONTINUOUS)) {
g_critical("This device does not support continuous sampling.");
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
}
if (opt_time) {
if (set_limit_time(sdi) != SR_OK) {
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
}
if (opt_samples) {
if ((sr_parse_sizestring(opt_samples, &limit_samples) != SR_OK)) {
g_critical("Invalid sample limit '%s'.", opt_samples);
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
if (sr_config_list(sdi->driver, sdi, NULL,
gvar = g_variant_new_uint64(limit_samples);
if (sr_config_set(sdi, NULL, SR_CONF_LIMIT_SAMPLES, gvar) != SR_OK) {
g_critical("Failed to configure sample limit.");
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
}
if (opt_frames) {
if ((sr_parse_sizestring(opt_frames, &limit_frames) != SR_OK)) {
g_critical("Invalid sample limit '%s'.", opt_samples);
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
gvar = g_variant_new_uint64(limit_frames);
if (sr_config_set(sdi, NULL, SR_CONF_LIMIT_FRAMES, gvar) != SR_OK) {
g_critical("Failed to configure frame limit.");
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
}
- if (sr_session_start() != SR_OK) {
+ if (sr_session_start(session) != SR_OK) {
g_critical("Failed to start session.");
- sr_session_destroy();
+ sr_session_destroy(session);
return;
}
if (opt_continuous)
- add_anykey();
+ add_anykey(session);
- sr_session_run();
+ sr_session_run(session);
if (opt_continuous)
clear_anykey();
- sr_session_datafeed_callback_remove_all();
- sr_session_destroy();
+ sr_session_datafeed_callback_remove_all(session);
+ sr_session_destroy(session);
g_slist_free(devices);
}
-void save_chunk_logic(uint8_t *data, uint64_t data_len, int unitsize)
+void save_chunk_logic(struct sr_session *session, uint8_t *data,
+ uint64_t data_len, int unitsize)
{
static uint8_t *buf = NULL;
static int buf_len = 0;
if (buf_len + data_len > SAVE_CHUNK_SIZE) {
max = (SAVE_CHUNK_SIZE - buf_len) / unitsize * unitsize;
memcpy(buf + buf_len, data, max);
- sr_session_append(opt_output_file, buf, unitsize,
+ sr_session_append(session, opt_output_file, buf, unitsize,
(buf_len + max) / unitsize);
memcpy(buf, data + max, data_len - max);
buf_len = data_len - max;
} else if (data_len == 0 && last_unitsize != 0) {
/* End of data, flush the buffer out. */
- sr_session_append(opt_output_file, buf, last_unitsize,
+ sr_session_append(session, opt_output_file, buf, last_unitsize,
buf_len / last_unitsize);
} else {
/* Buffer chunk. */