mirror of
https://github.com/DreamSourceLab/DSView.git
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424 lines
13 KiB
C
424 lines
13 KiB
C
/*
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* This file is part of the libsigrokdecode project.
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*
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* Copyright (C) 2012 Bert Vermeulen <bert@biot.com>
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* Copyright (C) 2016 DreamSourceLab <support@dreamsourcelab.com>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "config.h"
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#include "libsigrokdecode-internal.h" /* First, so we avoid a _POSIX_C_SOURCE warning. */
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#include "libsigrokdecode.h"
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#include <inttypes.h>
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#include <object.h>
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typedef struct {
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PyObject_HEAD
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} srd_Decoder;
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/* This is only used for nicer srd_dbg() output.
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*/
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static const char *output_type_name(unsigned int idx)
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{
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static const char names[][16] = {
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"OUTPUT_ANN",
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"OUTPUT_PYTHON",
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"OUTPUT_BINARY",
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"OUTPUT_META",
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"(invalid)"
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};
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return names[MIN(idx, G_N_ELEMENTS(names) - 1)];
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}
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static int convert_annotation(struct srd_decoder_inst *di, PyObject *obj,
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struct srd_proto_data *pdata)
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{
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PyObject *py_tmp;
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struct srd_proto_data_annotation *pda;
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unsigned int ann_class;
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char **ann_text;
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gpointer ann_type_ptr;
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/* Should be a list of [annotation class, [string, ...]]. */
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if (!PyList_Check(obj)) {
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srd_err("Protocol decoder %s submitted an annotation that"
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" is not a list", di->decoder->name);
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return SRD_ERR_PYTHON;
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}
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/* Should have 2 elements. */
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if (PyList_Size(obj) != 2) {
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srd_err("Protocol decoder %s submitted annotation list with "
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"%zd elements instead of 2", di->decoder->name,
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PyList_Size(obj));
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return SRD_ERR_PYTHON;
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}
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/*
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* The first element should be an integer matching a previously
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* registered annotation class.
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*/
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py_tmp = PyList_GetItem(obj, 0);
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if (!PyLong_Check(py_tmp)) {
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srd_err("Protocol decoder %s submitted annotation list, but "
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"first element was not an integer.", di->decoder->name);
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return SRD_ERR_PYTHON;
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}
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ann_class = PyLong_AsLong(py_tmp);
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// if (!(pdo = g_slist_nth_data(di->decoder->annotations, ann_class))) {
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// srd_err("Protocol decoder %s submitted data to unregistered "
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// "annotation class %d.", di->decoder->name, ann_class);
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// return SRD_ERR_PYTHON;
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// }
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if (ann_class >= g_slist_length(di->decoder->ann_types)) {
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srd_err("Protocol decoder %s submitted data to unregistered "
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"annotation class %d.", di->decoder->name, ann_class);
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return SRD_ERR_PYTHON;
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}
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ann_type_ptr = g_slist_nth_data(di->decoder->ann_types, ann_class);
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/* Second element must be a list. */
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py_tmp = PyList_GetItem(obj, 1);
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if (!PyList_Check(py_tmp)) {
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srd_err("Protocol decoder %s submitted annotation list, but "
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"second element was not a list.", di->decoder->name);
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return SRD_ERR_PYTHON;
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}
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if (py_strseq_to_char(py_tmp, &ann_text) != SRD_OK) {
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srd_err("Protocol decoder %s submitted annotation list, but "
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"second element was malformed.", di->decoder->name);
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return SRD_ERR_PYTHON;
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}
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pda = g_malloc(sizeof(struct srd_proto_data_annotation));
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pda->ann_class = ann_class;
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pda->ann_type = GPOINTER_TO_INT(ann_type_ptr);
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pda->ann_text = ann_text;
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pdata->data = pda;
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return SRD_OK;
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}
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static int convert_binary(struct srd_decoder_inst *di, PyObject *obj,
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struct srd_proto_data *pdata)
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{
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struct srd_proto_data_binary *pdb;
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PyObject *py_tmp;
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Py_ssize_t size;
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int bin_class;
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char *class_name, *buf;
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/* Should be a list of [binary class, bytes]. */
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if (!PyList_Check(obj)) {
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srd_err("Protocol decoder %s submitted non-list for SRD_OUTPUT_BINARY.",
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di->decoder->name);
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return SRD_ERR_PYTHON;
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}
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/* Should have 2 elements. */
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if (PyList_Size(obj) != 2) {
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srd_err("Protocol decoder %s submitted SRD_OUTPUT_BINARY list "
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"with %zd elements instead of 2", di->decoder->name,
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PyList_Size(obj));
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return SRD_ERR_PYTHON;
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}
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/* The first element should be an integer. */
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py_tmp = PyList_GetItem(obj, 0);
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if (!PyLong_Check(py_tmp)) {
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srd_err("Protocol decoder %s submitted SRD_OUTPUT_BINARY list, "
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"but first element was not an integer.", di->decoder->name);
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return SRD_ERR_PYTHON;
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}
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bin_class = PyLong_AsLong(py_tmp);
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if (!(class_name = g_slist_nth_data(di->decoder->binary, bin_class))) {
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srd_err("Protocol decoder %s submitted SRD_OUTPUT_BINARY with "
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"unregistered binary class %d.", di->decoder->name, bin_class);
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return SRD_ERR_PYTHON;
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}
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/* Second element should be bytes. */
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py_tmp = PyList_GetItem(obj, 1);
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if (!PyBytes_Check(py_tmp)) {
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srd_err("Protocol decoder %s submitted SRD_OUTPUT_BINARY list, "
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"but second element was not bytes.", di->decoder->name);
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return SRD_ERR_PYTHON;
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}
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/* Consider an empty set of bytes a bug. */
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if (PyBytes_Size(py_tmp) == 0) {
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srd_err("Protocol decoder %s submitted SRD_OUTPUT_BINARY "
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"with empty data set.", di->decoder->name);
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return SRD_ERR_PYTHON;
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}
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pdb = g_malloc(sizeof(struct srd_proto_data_binary));
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if (PyBytes_AsStringAndSize(py_tmp, &buf, &size) == -1)
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return SRD_ERR_PYTHON;
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pdb->bin_class = bin_class;
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pdb->size = size;
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if (!(pdb->data = g_try_malloc(pdb->size)))
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return SRD_ERR_MALLOC;
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memcpy((void *)pdb->data, (const void *)buf, pdb->size);
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pdata->data = pdb;
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return SRD_OK;
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}
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static int convert_meta(struct srd_proto_data *pdata, PyObject *obj)
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{
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long long intvalue;
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double dvalue;
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if (pdata->pdo->meta_type == G_VARIANT_TYPE_INT64) {
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if (!PyLong_Check(obj)) {
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PyErr_Format(PyExc_TypeError, "This output was registered "
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"as 'int', but something else was passed.");
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return SRD_ERR_PYTHON;
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}
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intvalue = PyLong_AsLongLong(obj);
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if (PyErr_Occurred())
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return SRD_ERR_PYTHON;
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pdata->data = g_variant_new_int64(intvalue);
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} else if (pdata->pdo->meta_type == G_VARIANT_TYPE_DOUBLE) {
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if (!PyFloat_Check(obj)) {
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PyErr_Format(PyExc_TypeError, "This output was registered "
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"as 'float', but something else was passed.");
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return SRD_ERR_PYTHON;
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}
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dvalue = PyFloat_AsDouble(obj);
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if (PyErr_Occurred())
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return SRD_ERR_PYTHON;
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pdata->data = g_variant_new_double(dvalue);
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}
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return SRD_OK;
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}
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static PyObject *Decoder_put(PyObject *self, PyObject *args)
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{
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GSList *l;
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PyObject *py_data, *py_res;
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struct srd_decoder_inst *di, *next_di;
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struct srd_pd_output *pdo;
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struct srd_proto_data *pdata;
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uint64_t start_sample, end_sample;
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int output_id;
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struct srd_pd_callback *cb;
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struct srd_proto_data_binary *pdb;
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struct srd_proto_data_annotation *pda;
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char **annotations;
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if (!(di = srd_inst_find_by_obj(NULL, self))) {
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/* Shouldn't happen. */
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srd_dbg("put(): self instance not found.");
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return NULL;
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}
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if (!PyArg_ParseTuple(args, "KKiO", &start_sample, &end_sample,
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&output_id, &py_data)) {
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/*
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* This throws an exception, but by returning NULL here we let
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* Python raise it. This results in a much better trace in
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* controller.c on the decode() method call.
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*/
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return NULL;
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}
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if (!(l = g_slist_nth(di->pd_output, output_id))) {
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srd_err("Protocol decoder %s submitted invalid output ID %d.",
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di->decoder->name, output_id);
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return NULL;
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}
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pdo = l->data;
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srd_spew("Instance %s put %" PRIu64 "-%" PRIu64 " %s on oid %d.",
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di->inst_id, start_sample, end_sample,
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output_type_name(pdo->output_type), output_id);
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pdata = g_malloc0(sizeof(struct srd_proto_data));
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pdata->start_sample = start_sample;
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pdata->end_sample = end_sample;
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pdata->pdo = pdo;
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switch (pdo->output_type) {
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case SRD_OUTPUT_ANN:
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/* Annotations are only fed to callbacks. */
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if ((cb = srd_pd_output_callback_find(di->sess, pdo->output_type))) {
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/* Convert from PyDict to srd_proto_data_annotation. */
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if (convert_annotation(di, py_data, pdata) != SRD_OK) {
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/* An error was already logged. */
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break;
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}
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cb->cb(pdata, cb->cb_data);
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pda = pdata->data;
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annotations = (char**)pda->ann_text;
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while(*annotations) {
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g_free(*annotations);
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annotations++;
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}
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g_free(pda->ann_text);
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g_free(pda);
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}
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break;
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case SRD_OUTPUT_PYTHON:
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for (l = di->next_di; l; l = l->next) {
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next_di = l->data;
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srd_spew("Sending %" PRIu64 "-%" PRIu64 " to instance %s",
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start_sample, end_sample, next_di->inst_id);
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if (!(py_res = PyObject_CallMethod(
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next_di->py_inst, "decode", "KKO", start_sample,
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end_sample, py_data))) {
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srd_exception_catch(NULL, "Calling %s decode() failed",
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next_di->inst_id);
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}
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Py_XDECREF(py_res);
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}
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if ((cb = srd_pd_output_callback_find(di->sess, pdo->output_type))) {
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/* Frontends aren't really supposed to get Python
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* callbacks, but it's useful for testing. */
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pdata->data = py_data;
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cb->cb(pdata, cb->cb_data);
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}
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break;
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case SRD_OUTPUT_BINARY:
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if ((cb = srd_pd_output_callback_find(di->sess, pdo->output_type))) {
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/* Convert from PyDict to srd_proto_data_binary. */
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if (convert_binary(di, py_data, pdata) != SRD_OK) {
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/* An error was already logged. */
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break;
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}
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cb->cb(pdata, cb->cb_data);
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pdb = pdata->data;
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g_free(pdb->data);
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g_free(pdb);
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}
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break;
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case SRD_OUTPUT_META:
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if ((cb = srd_pd_output_callback_find(di->sess, pdo->output_type))) {
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/* Annotations need converting from PyObject. */
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if (convert_meta(pdata, py_data) != SRD_OK) {
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/* An exception was already set up. */
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break;
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}
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cb->cb(pdata, cb->cb_data);
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}
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break;
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default:
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srd_err("Protocol decoder %s submitted invalid output type %d.",
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di->decoder->name, pdo->output_type);
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break;
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}
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g_free(pdata);
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Py_RETURN_NONE;
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}
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static PyObject *Decoder_register(PyObject *self, PyObject *args,
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PyObject *kwargs)
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{
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struct srd_decoder_inst *di;
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struct srd_pd_output *pdo;
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PyObject *py_new_output_id;
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PyTypeObject *meta_type_py;
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const GVariantType *meta_type_gv;
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int output_type;
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char *proto_id, *meta_name, *meta_descr;
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char *keywords[] = {"output_type", "proto_id", "meta", NULL};
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meta_type_py = NULL;
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meta_type_gv = NULL;
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meta_name = meta_descr = NULL;
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if (!(di = srd_inst_find_by_obj(NULL, self))) {
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PyErr_SetString(PyExc_Exception, "decoder instance not found");
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return NULL;
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}
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/* Default to instance id, which defaults to class id. */
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proto_id = di->inst_id;
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if (!PyArg_ParseTupleAndKeywords(args, kwargs, "i|s(Oss)", keywords,
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&output_type, &proto_id,
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&meta_type_py, &meta_name, &meta_descr)) {
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/* Let Python raise this exception. */
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return NULL;
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}
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/* Check if the meta value's type is supported. */
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if (output_type == SRD_OUTPUT_META) {
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if (meta_type_py == &PyLong_Type)
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meta_type_gv = G_VARIANT_TYPE_INT64;
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else if (meta_type_py == &PyFloat_Type)
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meta_type_gv = G_VARIANT_TYPE_DOUBLE;
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else {
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PyErr_Format(PyExc_TypeError, "Unsupported type.");
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return NULL;
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}
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}
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srd_dbg("Instance %s creating new output type %d for %s.",
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di->inst_id, output_type, proto_id);
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pdo = g_malloc(sizeof(struct srd_pd_output));
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/* pdo_id is just a simple index, nothing is deleted from this list anyway. */
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pdo->pdo_id = g_slist_length(di->pd_output);
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pdo->output_type = output_type;
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pdo->di = di;
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pdo->proto_id = g_strdup(proto_id);
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if (output_type == SRD_OUTPUT_META) {
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pdo->meta_type = meta_type_gv;
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pdo->meta_name = g_strdup(meta_name);
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pdo->meta_descr = g_strdup(meta_descr);
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}
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di->pd_output = g_slist_append(di->pd_output, pdo);
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py_new_output_id = Py_BuildValue("i", pdo->pdo_id);
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return py_new_output_id;
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}
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static PyMethodDef Decoder_methods[] = {
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{"put", Decoder_put, METH_VARARGS,
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"Accepts a dictionary with the following keys: startsample, endsample, data"},
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{"register", (PyCFunction)Decoder_register, METH_VARARGS|METH_KEYWORDS,
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"Register a new output stream"},
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{NULL, NULL, 0, NULL}
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};
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/** Create the sigrokdecode.Decoder type.
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* @return The new type object.
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* @private
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*/
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SRD_PRIV PyObject *srd_Decoder_type_new(void)
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{
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PyType_Spec spec;
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PyType_Slot slots[] = {
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{ Py_tp_doc, "sigrok Decoder base class" },
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{ Py_tp_methods, Decoder_methods },
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{ Py_tp_new, (void *)&PyType_GenericNew },
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{ 0, NULL }
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};
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spec.name = "sigrokdecode.Decoder";
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spec.basicsize = sizeof(srd_Decoder);
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spec.itemsize = 0;
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spec.flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE;
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spec.slots = slots;
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return PyType_FromSpec(&spec);
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}
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