GHashTable *options) :
_decoder(dec),
_probes(probes),
- _options(options),
- _session(NULL),
- _decoder_inst(NULL)
+ _options(options)
{
- if (!init_decoder())
- throw runtime_error("Failed to initialise decoder.");
+ init_decoder();
begin_decode();
}
_decode_thread.join();
g_hash_table_destroy(_options);
-
- if (_session)
- srd_session_destroy(_session);
}
const srd_decoder* Decoder::get_decoder() const
const vector< shared_ptr<view::decode::Annotation> >
Decoder::annotations() const
{
- lock_guard<mutex> lock(_annotations_mutex);
+ lock_guard<mutex> lock(_mutex);
return _annotations;
}
+QString Decoder::error_message()
+{
+ lock_guard<mutex> lock(_mutex);
+ return _error_message;
+}
+
void Decoder::begin_decode()
{
_decode_thread.interrupt();
{
}
-bool Decoder::init_decoder()
+void Decoder::init_decoder()
{
if (!_probes.empty())
{
shared_ptr<pv::data::Logic> data(
logic_signal->data());
if (data) {
- _samplerate = data->get_samplerate();
_start_time = data->get_start_time();
+ _samplerate = data->get_samplerate();
+ if (_samplerate == 0.0)
+ _samplerate = 1.0;
}
}
}
-
- srd_session_new(&_session);
- assert(_session);
-
- _decoder_inst = srd_inst_new(_session, _decoder->id, _options);
- if(!_decoder_inst) {
- qDebug() << "Failed to initialise decoder";
- return false;
- }
-
- _decoder_inst->data_samplerate = _samplerate;
-
- GHashTable *probes = g_hash_table_new_full(g_str_hash,
- g_str_equal, g_free, (GDestroyNotify)g_variant_unref);
-
- for(map<const srd_probe*, shared_ptr<view::LogicSignal> >::
- const_iterator i = _probes.begin();
- i != _probes.end(); i++)
- {
- shared_ptr<view::Signal> signal((*i).second);
- GVariant *const gvar = g_variant_new_int32(
- signal->probe()->index);
- g_variant_ref_sink(gvar);
- g_hash_table_insert(probes, (*i).first->id, gvar);
- }
-
- srd_inst_probe_set_all(_decoder_inst, probes);
-
- return true;
}
void Decoder::decode_proc(shared_ptr<data::Logic> data)
{
+ srd_session *session;
uint8_t chunk[DecodeChunkLength];
assert(data);
const shared_ptr<pv::data::LogicSnapshot> &snapshot =
snapshots.front();
const int64_t sample_count = snapshot->get_sample_count() - 1;
- double samplerate = data->get_samplerate();
- // Show sample rate as 1Hz when it is unknown
- if (samplerate == 0.0)
- samplerate = 1.0;
+ // Create the session
+ srd_session_new(&session);
+ assert(session);
- srd_session_config_set(_session, SRD_CONF_NUM_PROBES,
+ srd_session_config_set(session, SRD_CONF_NUM_PROBES,
g_variant_new_uint64(_probes.size()));
- srd_session_config_set(_session, SRD_CONF_UNITSIZE,
+ srd_session_config_set(session, SRD_CONF_UNITSIZE,
g_variant_new_uint64(snapshot->unit_size()));
- srd_session_config_set(_session, SRD_CONF_SAMPLERATE,
- g_variant_new_uint64((uint64_t)samplerate));
-
- srd_session_start(_session);
+ srd_session_config_set(session, SRD_CONF_SAMPLERATE,
+ g_variant_new_uint64((uint64_t)_samplerate));
- srd_pd_output_callback_add(_session, SRD_OUTPUT_ANN,
+ srd_pd_output_callback_add(session, SRD_OUTPUT_ANN,
Decoder::annotation_callback, this);
+ // Create the decoder instance
+ srd_decoder_inst *const decoder_inst = srd_inst_new(
+ session, _decoder->id, _options);
+ if(!decoder_inst) {
+ _error_message = tr("Failed to initialise decoder");
+ return;
+ }
+
+ decoder_inst->data_samplerate = _samplerate;
+
+ // Setup the probes
+ GHashTable *const probes = g_hash_table_new_full(g_str_hash,
+ g_str_equal, g_free, (GDestroyNotify)g_variant_unref);
+
+ for(map<const srd_probe*, shared_ptr<view::LogicSignal> >::
+ const_iterator i = _probes.begin();
+ i != _probes.end(); i++)
+ {
+ shared_ptr<view::Signal> signal((*i).second);
+ GVariant *const gvar = g_variant_new_int32(
+ signal->probe()->index);
+ g_variant_ref_sink(gvar);
+ g_hash_table_insert(probes, (*i).first->id, gvar);
+ }
+
+ srd_inst_probe_set_all(decoder_inst, probes);
+
+ // Start the session
+ srd_session_start(session);
+
for (int64_t i = 0;
!this_thread::interruption_requested() && i < sample_count;
i += DecodeChunkLength)
i + DecodeChunkLength, sample_count);
snapshot->get_samples(chunk, i, chunk_end);
- if (srd_session_send(_session, i, chunk, chunk_end - i) !=
- SRD_OK)
+ if (srd_session_send(session, i, chunk, chunk_end - i) !=
+ SRD_OK) {
+ _error_message = tr("Failed to initialise decoder");
break;
+ }
}
+
+ // Destroy the session
+ srd_session_destroy(session);
}
void Decoder::annotation_callback(srd_proto_data *pdata, void *decoder)
Decoder *const d = (Decoder*)decoder;
shared_ptr<Annotation> a(new Annotation(pdata));
- lock_guard<mutex> lock(d->_annotations_mutex);
+ lock_guard<mutex> lock(d->_mutex);
d->_annotations.push_back(a);
d->new_decode_data();
#include <libsigrok/libsigrok.h>
+#include "../../pv/data/decoder.h"
#include "../../pv/devicemanager.h"
#include "../../pv/sigsession.h"
-#include "../../pv/view/signal.h"
+#include "../../pv/view/decodesignal.h"
using namespace boost;
using namespace std;
BOOST_AUTO_TEST_CASE(TwoDecoder)
{
+ using namespace pv;
+
sr_context *ctx = NULL;
BOOST_REQUIRE(sr_init(&ctx) == SR_OK);
srd_decoder *const dec = (struct srd_decoder*)l->data;
BOOST_REQUIRE(dec);
- map<const srd_probe*, shared_ptr<pv::view::LogicSignal> > probes;
- BOOST_CHECK (ss.add_decoder(dec, probes,
+ map<const srd_probe*, shared_ptr<view::LogicSignal> > probes;
+ ss.add_decoder(dec, probes,
g_hash_table_new_full(g_str_hash, g_str_equal, g_free,
- (GDestroyNotify)g_variant_unref)));
-
- BOOST_CHECK (ss.add_decoder(dec, probes,
+ (GDestroyNotify)g_variant_unref));
+
+ ss.add_decoder(dec, probes,
g_hash_table_new_full(g_str_hash, g_str_equal, g_free,
- (GDestroyNotify)g_variant_unref)));
+ (GDestroyNotify)g_variant_unref));
+
+ // Check the signals were created
+ const vector< shared_ptr<view::DecodeSignal> > sigs =
+ ss.get_decode_signals();
+
+ shared_ptr<data::Decoder> dec0 = sigs[0]->decoder();
+ BOOST_REQUIRE(dec0);
+
+ shared_ptr<data::Decoder> dec1 = sigs[0]->decoder();
+ BOOST_REQUIRE(dec1);
+
+ // Wait for the decode threads to complete
+ dec0->_decode_thread.join();
+ dec1->_decode_thread.join();
+
+ // Check there were no errors
+ BOOST_CHECK_EQUAL(dec0->error_message().isEmpty(), true);
+ BOOST_CHECK_EQUAL(dec1->error_message().isEmpty(), true);
}