output/gnuplot: Support getting samplerate from meta packets.
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parent
0f3d8c8967
commit
83023573d9
144
output/gnuplot.c
144
output/gnuplot.c
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@ -29,48 +29,32 @@
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struct context {
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unsigned int num_enabled_channels;
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uint64_t samplerate;
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uint64_t samplecount;
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GString *header;
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gboolean header_done;
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uint8_t *prevsample;
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int *channel_index;
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};
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static const char *gnuplot_header = "\
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# Sample data in space-separated columns format usable by gnuplot\n\
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#\n\
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# Generated by: %s on %s%s\
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# Period: %s\n\
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#\n\
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# Column\tChannel\n\
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# -------------------------------------\
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----------------------------------------\n\
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# 0\t\tSample counter (for internal gnuplot purposes)\n%s\n";
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# Sample data in space-separated columns format usable by gnuplot.\n";
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static const char *gnuplot_header2 = "\
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#\n# Column\tChannel\n\
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# -----------------------------------------------------------------------------\n\
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# 0\t\tSample counter (for internal gnuplot purposes)\n";
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static const char *gnuplot_header_comment = "\
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# Comment: Acquisition with %d/%d channels at %s\n";
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static int init(struct sr_output *o)
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{
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struct context *ctx;
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struct sr_channel *ch;
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GSList *l;
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GVariant *gvar;
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uint64_t samplerate;
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unsigned int i, j;
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int num_channels;
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char *c, *frequency_s;
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char wbuf[1000], comment[128];
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time_t t;
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unsigned int i;
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if (!o)
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if (!o || !o->sdi)
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return SR_ERR_ARG;
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if (!o->sdi)
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return SR_ERR_ARG;
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if (!(ctx = g_malloc0(sizeof(struct context))))
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return SR_ERR_MALLOC;
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ctx = g_malloc0(sizeof(struct context));
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o->internal = ctx;
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ctx->num_enabled_channels = 0;
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for (l = o->sdi->channels; l; l = l->next) {
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@ -87,56 +71,72 @@ static int init(struct sr_output *o)
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}
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ctx->channel_index = g_malloc(sizeof(int) * ctx->num_enabled_channels);
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num_channels = g_slist_length(o->sdi->channels);
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comment[0] = '\0';
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samplerate = 0;
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if (sr_config_get(o->sdi->driver, o->sdi, NULL, SR_CONF_SAMPLERATE,
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&gvar) == SR_OK) {
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samplerate = g_variant_get_uint64(gvar);
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g_variant_unref(gvar);
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if (!(frequency_s = sr_samplerate_string(samplerate))) {
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sr_err("%s: sr_samplerate_string failed", __func__);
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g_free(ctx);
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return SR_ERR;
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}
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snprintf(comment, 127, gnuplot_header_comment,
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ctx->num_enabled_channels, num_channels, frequency_s);
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g_free(frequency_s);
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}
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/* Columns / channels */
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wbuf[0] = '\0';
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for (i = 0, j = 0, l = o->sdi->channels; l; l = l->next, i++) {
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/* Once more to map the enabled channels. */
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for (i = 0, l = o->sdi->channels; l; l = l->next) {
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ch = l->data;
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if (ch->type != SR_CHANNEL_LOGIC)
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continue;
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if (!ch->enabled)
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continue;
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c = (char *)&wbuf + strlen((const char *)&wbuf);
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sprintf(c, "# %d\t\t%s\n", i + 1, ch->name);
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/* Remember the enabled channel's index while we're at it. */
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ctx->channel_index[j++] = i;
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ctx->channel_index[i++] = ch->index;
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}
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if (!(frequency_s = sr_period_string(samplerate))) {
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sr_err("%s: sr_period_string failed", __func__);
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g_free(ctx);
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return SR_ERR;
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return SR_OK;
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}
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static GString *gen_header(struct sr_output *o)
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{
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struct context *ctx;
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struct sr_channel *ch;
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GVariant *gvar;
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GString *header;
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time_t t;
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unsigned int num_channels, i;
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char *samplerate_s;
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ctx = o->internal;
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if (ctx->samplerate == 0) {
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if (sr_config_get(o->sdi->driver, o->sdi, NULL, SR_CONF_SAMPLERATE,
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&gvar) == SR_OK) {
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ctx->samplerate = g_variant_get_uint64(gvar);
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g_variant_unref(gvar);
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}
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}
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t = time(NULL);
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ctx->header = g_string_sized_new(512);
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g_string_printf(ctx->header, gnuplot_header, PACKAGE_STRING,
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ctime(&t), comment, frequency_s, (char *)&wbuf);
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g_free(frequency_s);
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header = g_string_sized_new(512);
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g_string_printf(header, "%s", gnuplot_header);
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g_string_append_printf(header, "# Generated by %s on %s",
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PACKAGE_STRING, ctime(&t));
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return 0;
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num_channels = g_slist_length(o->sdi->channels);
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g_string_append_printf(header, "# Acquisition with %d/%d channels",
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ctx->num_enabled_channels, num_channels);
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if (ctx->samplerate != 0) {
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samplerate_s = sr_samplerate_string(ctx->samplerate);
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g_string_append_printf(header, " at %s", samplerate_s);
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g_free(samplerate_s);
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}
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g_string_append_printf(header, "\n");
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g_string_append_printf(header, "%s", gnuplot_header2);
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/* Columns / channels */
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for (i = 0; i < ctx->num_enabled_channels; i++) {
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ch = g_slist_nth_data(o->sdi->channels, ctx->channel_index[i]);
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g_string_append_printf(header, "# %d\t\t%s\n", i + 1, ch->name);
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}
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return header;
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}
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static int receive(struct sr_output *o, const struct sr_datafeed_packet *packet,
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GString **out)
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{
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const struct sr_datafeed_meta *meta;
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const struct sr_datafeed_logic *logic;
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const struct sr_config *src;
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GSList *l;
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struct context *ctx;
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const uint8_t *sample;
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unsigned int curbit, p, idx, i;
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@ -146,24 +146,28 @@ static int receive(struct sr_output *o, const struct sr_datafeed_packet *packet,
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return SR_ERR_BUG;
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ctx = o->internal;
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if (packet->type == SR_DF_META) {
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meta = packet->payload;
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for (l = meta->config; l; l = l->next) {
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src = l->data;
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if (src->key != SR_CONF_SAMPLERATE)
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continue;
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ctx->samplerate = g_variant_get_uint64(src->data);
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}
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}
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if (packet->type != SR_DF_LOGIC)
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return SR_OK;
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logic = packet->payload;
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if (!ctx->prevsample) {
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/* Can't allocate this until we know the stream's unitsize. */
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if (!(ctx->prevsample = g_malloc0(logic->unitsize))) {
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g_free(ctx);
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sr_err("%s: ctx->prevsample malloc failed", __func__);
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return SR_ERR_MALLOC;
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}
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ctx->prevsample = g_malloc0(logic->unitsize);
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}
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if (ctx->header) {
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/* The header is still here, this must be the first packet. */
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*out = ctx->header;
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ctx->header = NULL;
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ctx->samplecount = 0;
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if (!ctx->header_done) {
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*out = gen_header(o);
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ctx->header_done = TRUE;
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} else {
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*out = g_string_sized_new(512);
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}
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@ -206,8 +210,6 @@ static int cleanup(struct sr_output *o)
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ctx = o->internal;
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g_free(ctx->channel_index);
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g_free(ctx->prevsample);
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if (ctx->header)
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g_string_free(ctx->header, TRUE);
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g_free(ctx);
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return SR_OK;
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