#include "libsigrok.h"
#include "libsigrok-internal.h"
-/* Message logging helpers with driver-specific prefix string. */
-#define DRIVER_LOG_DOMAIN "output/analog: "
-#define sr_log(l, s, args...) sr_log(l, DRIVER_LOG_DOMAIN s, ## args)
-#define sr_spew(s, args...) sr_spew(DRIVER_LOG_DOMAIN s, ## args)
-#define sr_dbg(s, args...) sr_dbg(DRIVER_LOG_DOMAIN s, ## args)
-#define sr_info(s, args...) sr_info(DRIVER_LOG_DOMAIN s, ## args)
-#define sr_warn(s, args...) sr_warn(DRIVER_LOG_DOMAIN s, ## args)
-#define sr_err(s, args...) sr_err(DRIVER_LOG_DOMAIN s, ## args)
+#define LOG_PREFIX "output/analog"
struct context {
- int num_enabled_probes;
- GPtrArray *probelist;
+ int num_enabled_channels;
+ GPtrArray *channellist;
};
static int init(struct sr_output *o)
{
struct context *ctx;
- struct sr_probe *probe;
+ struct sr_channel *ch;
GSList *l;
sr_spew("Initializing output module.");
}
o->internal = ctx;
- /* Get the number of probes and their names. */
- ctx->probelist = g_ptr_array_new();
- for (l = o->sdi->probes; l; l = l->next) {
- probe = l->data;
- if (!probe || !probe->enabled)
+ /* Get the number of channels and their names. */
+ ctx->channellist = g_ptr_array_new();
+ for (l = o->sdi->channels; l; l = l->next) {
+ ch = l->data;
+ if (!ch || !ch->enabled)
continue;
- g_ptr_array_add(ctx->probelist, probe->name);
- ctx->num_enabled_probes++;
+ g_ptr_array_add(ctx->channellist, ch->name);
+ ctx->num_enabled_channels++;
}
return SR_OK;
si_printf(value, out, "Hz");
break;
case SR_UNIT_PERCENTAGE:
- g_string_append_printf(out, "%f%%", value);
+ g_string_append_printf(out, "%f %%", value);
break;
case SR_UNIT_BOOLEAN:
if (value > 0)
case SR_UNIT_CONCENTRATION:
g_string_append_printf(out, "%f ppm", value * 1000000);
break;
+ case SR_UNIT_REVOLUTIONS_PER_MINUTE:
+ si_printf(value, out, "RPM");
+ break;
+ case SR_UNIT_VOLT_AMPERE:
+ si_printf(value, out, "VA");
+ break;
+ case SR_UNIT_WATT:
+ si_printf(value, out, "W");
+ break;
+ case SR_UNIT_WATT_HOUR:
+ si_printf(value, out, "Wh");
+ break;
default:
si_printf(value, out, "");
break;
}
- if ((mqflags & (SR_MQFLAG_AC | SR_MQFLAG_DC)) == (SR_MQFLAG_AC | SR_MQFLAG_DC))
- g_string_append_printf(out, " AC+DC");
- else if (mqflags & SR_MQFLAG_AC)
+
+ if (mqflags & SR_MQFLAG_AC)
g_string_append_printf(out, " AC");
- else if (mqflags & SR_MQFLAG_DC)
+ if (mqflags & SR_MQFLAG_DC)
g_string_append_printf(out, " DC");
+ if (mqflags & SR_MQFLAG_RMS)
+ g_string_append_printf(out, " RMS");
+ if (mqflags & SR_MQFLAG_DIODE)
+ g_string_append_printf(out, " DIODE");
+ if (mqflags & SR_MQFLAG_HOLD)
+ g_string_append_printf(out, " HOLD");
+ if (mqflags & SR_MQFLAG_MAX)
+ g_string_append_printf(out, " MAX");
+ if (mqflags & SR_MQFLAG_MIN)
+ g_string_append_printf(out, " MIN");
+ if (mqflags & SR_MQFLAG_AUTORANGE)
+ g_string_append_printf(out, " AUTO");
+ if (mqflags & SR_MQFLAG_RELATIVE)
+ g_string_append_printf(out, " REL");
+ if (mqflags & SR_MQFLAG_AVG)
+ g_string_append_printf(out, " AVG");
g_string_append_c(out, '\n');
}
const struct sr_datafeed_packet *packet, GString **out)
{
const struct sr_datafeed_analog *analog;
- struct sr_probe *probe;
+ struct sr_channel *ch;
GSList *l;
const float *fdata;
int i, p;
fdata = (const float *)analog->data;
*out = g_string_sized_new(512);
for (i = 0; i < analog->num_samples; i++) {
- for (l = analog->probes, p = 0; l; l = l->next, p++) {
- probe = l->data;
- g_string_append_printf(*out, "%s: ", probe->name);
+ for (l = analog->channels, p = 0; l; l = l->next, p++) {
+ ch = l->data;
+ g_string_append_printf(*out, "%s: ", ch->name);
fancyprint(analog->unit, analog->mqflags,
fdata[i + p], *out);
}
return SR_ERR_ARG;
ctx = o->internal;
- g_ptr_array_free(ctx->probelist, 1);
+ g_ptr_array_free(ctx->channellist, 1);
g_free(ctx);
o->internal = NULL;
SR_PRIV struct sr_output_format output_analog = {
.id = "analog",
.description = "Analog data",
- .df_type = SR_DF_ANALOG,
.init = init,
.receive = receive,
.cleanup = cleanup