} srd_Decoder;
/* This is only used for nicer srd_dbg() output. */
-static const char *output_type_name(unsigned int idx)
+SRD_PRIV const char *output_type_name(unsigned int idx)
{
static const char names[][16] = {
"OUTPUT_ANN",
if (!pdb)
return;
g_free((void *)pdb->data);
- g_free(pdb);
}
static int convert_binary(struct srd_decoder_inst *di, PyObject *obj,
PyGILState_Release(gstate);
- pdb = g_malloc(sizeof(struct srd_proto_data_binary));
+ pdb = pdata->data;
pdb->bin_class = bin_class;
pdb->size = size;
- if (!(pdb->data = g_try_malloc(pdb->size))) {
- g_free(pdb);
+ if (!(pdb->data = g_try_malloc(pdb->size)))
return SRD_ERR_MALLOC;
- }
memcpy((void *)pdb->data, (const void *)buf, pdb->size);
- pdata->data = pdb;
return SRD_OK;
sess = sessions->data;
di = sess->di_list->data;
if (di->py_inst == obj)
- return di;
+ return di;
di = NULL;
for (l = sessions; di == NULL && l != NULL; l = l->next) {
struct srd_pd_output *pdo;
struct srd_proto_data pdata;
struct srd_proto_data_annotation pda;
+ struct srd_proto_data_binary pdb;
uint64_t start_sample, end_sample;
int output_id;
struct srd_pd_callback *cb;
}
pdo = l->data;
- srd_spew("Instance %s put %" PRIu64 "-%" PRIu64 " %s on oid %d.",
- di->inst_id, start_sample, end_sample,
- output_type_name(pdo->output_type), output_id);
+ /* Upon SRD_OUTPUT_PYTHON for stacked PDs, we have a nicer log message later. */
+ if (pdo->output_type != SRD_OUTPUT_PYTHON && di->next_di != NULL) {
+ srd_spew("Instance %s put %" PRIu64 "-%" PRIu64 " %s on "
+ "oid %d (%s).", di->inst_id, start_sample, end_sample,
+ output_type_name(pdo->output_type), output_id,
+ pdo->proto_id);
+ }
pdata.start_sample = start_sample;
pdata.end_sample = end_sample;
case SRD_OUTPUT_PYTHON:
for (l = di->next_di; l; l = l->next) {
next_di = l->data;
- srd_spew("Sending %" PRIu64 "-%" PRIu64 " to instance %s",
- start_sample, end_sample, next_di->inst_id);
+ srd_spew("Instance %s put %" PRIu64 "-%" PRIu64 " %s "
+ "on oid %d (%s) to instance %s.", di->inst_id,
+ start_sample,
+ end_sample, output_type_name(pdo->output_type),
+ output_id, pdo->proto_id, next_di->inst_id);
if (!(py_res = PyObject_CallMethod(
next_di->py_inst, "decode", "KKO", start_sample,
end_sample, py_data))) {
break;
case SRD_OUTPUT_BINARY:
if ((cb = srd_pd_output_callback_find(di->sess, pdo->output_type))) {
+ pdata.data = &pdb;
/* Convert from PyDict to srd_proto_data_binary. */
if (convert_binary(di, py_data, &pdata) != SRD_OK) {
/* An error was already logged. */
return py_new_output_id;
}
- srd_dbg("Instance %s creating new output type %d for %s.",
- di->inst_id, output_type, proto_id);
-
pdo = g_malloc(sizeof(struct srd_pd_output));
/* pdo_id is just a simple index, nothing is deleted from this list anyway. */
PyGILState_Release(gstate);
+ srd_dbg("Instance %s creating new output type %s as oid %d (%s).",
+ di->inst_id, output_type_name(output_type), pdo->pdo_id,
+ proto_id);
+
return py_new_output_id;
err:
*
* If there are no terms in the condition, 'term_list' will be NULL.
*
+ * @param di The decoder instance to use. Must not be NULL.
* @param py_dict A Python dict containing terms. Must not be NULL.
* @param term_list Pointer to a GSList which will be set to the newly
* created list of terms. Must not be NULL.
*
* @return SRD_OK upon success, a negative error code otherwise.
*/
-static int create_term_list(PyObject *py_dict, GSList **term_list)
+static int create_term_list(struct srd_decoder_inst *di,
+ PyObject *py_dict, GSList **term_list)
{
Py_ssize_t pos = 0;
PyObject *py_key, *py_value;
struct srd_term *term;
- uint64_t num_samples_to_skip;
+ int64_t num_samples_to_skip;
char *term_str;
PyGILState_STATE gstate;
/* Check whether the current key is a string or a number. */
if (PyLong_Check(py_key)) {
/* The key is a number. */
- /* TODO: Check if the number is a valid channel. */
/* Get the value string. */
if ((py_pydictitem_as_str(py_dict, py_key, &term_str)) != SRD_OK) {
srd_err("Failed to get the value.");
term = g_malloc(sizeof(struct srd_term));
term->type = get_term_type(term_str);
term->channel = PyLong_AsLong(py_key);
+ if (term->channel < 0 || term->channel >= di->dec_num_channels)
+ term->type = SRD_TERM_ALWAYS_FALSE;
g_free(term_str);
} else if (PyUnicode_Check(py_key)) {
/* The key is a string. */
- /* TODO: Check if it's "skip". */
+ /* TODO: Check if the key is "skip". */
if ((py_pydictitem_as_long(py_dict, py_key, &num_samples_to_skip)) != SRD_OK) {
srd_err("Failed to get number of samples to skip.");
goto err;
term->type = SRD_TERM_SKIP;
term->num_samples_to_skip = num_samples_to_skip;
term->num_samples_already_skipped = 0;
+ if (num_samples_to_skip < 0)
+ term->type = SRD_TERM_ALWAYS_FALSE;
} else {
srd_err("Term key is neither a string nor a number.");
goto err;
num_conditions = PyList_Size(py_conditionlist);
if (num_conditions == 0)
goto ret_9999; /* The PD invoked self.wait([]). */
- Py_IncRef(py_conditionlist);
+ Py_INCREF(py_conditionlist);
} else if (PyDict_Check(py_conds)) {
/* 'py_conds' is a dict. */
if (PyDict_Size(py_conds) == 0)
goto ret_9999; /* The PD invoked self.wait({}). */
/* Make a list and put the dict in there for convenience. */
py_conditionlist = PyList_New(1);
- Py_IncRef(py_conds);
+ Py_INCREF(py_conds);
PyList_SetItem(py_conditionlist, 0, py_conds);
num_conditions = 1;
} else {
}
/* Create the list of terms in this condition. */
- if ((ret = create_term_list(py_dict, &term_list)) < 0)
+ if ((ret = create_term_list(di, py_dict, &term_list)) < 0)
break;
/* Add the new condition to the PD instance's condition list. */
unsigned int i;
gboolean found_match;
struct srd_decoder_inst *di;
- PyObject *py_pinvalues, *py_matched;
+ PyObject *py_pinvalues, *py_matched, *py_samplenum;
PyGILState_STATE gstate;
if (!self || !args)
/* If there's a match, set self.samplenum etc. and return. */
if (found_match) {
/* Set self.samplenum to the (absolute) sample number that matched. */
- PyObject_SetAttrString(di->py_inst, "samplenum",
- PyLong_FromLong(di->abs_cur_samplenum));
+ py_samplenum = PyLong_FromLong(di->abs_cur_samplenum);
+ PyObject_SetAttrString(di->py_inst, "samplenum", py_samplenum);
+ Py_DECREF(py_samplenum);
if (di->match_array && di->match_array->len > 0) {
py_matched = PyTuple_New(di->match_array->len);
for (i = 0; i < di->match_array->len; i++)
PyTuple_SetItem(py_matched, i, PyBool_FromLong(di->match_array->data[i]));
PyObject_SetAttrString(di->py_inst, "matched", py_matched);
+ Py_DECREF(py_matched);
match_array_free(di);
} else {
PyObject_SetAttrString(di->py_inst, "matched", Py_None);