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nnstreamer_example_image_classification_nnfw.c
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nnstreamer_example_image_classification_nnfw.c
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/* SPDX-License-Identifier: LGPL-2.1-only */
/**
* NNStreamer example for image classification using nnfw.
* Copyright (C) 2020 Gichan Jang <gichan2.jang@samsung.com>
*/
/**
* @file nnstreamer_example_image_classification_nnfw.c
* @date 15 July 2020
* @brief Image classfication example using nnfw
* @author Gichan Jang <gichan2.jang@samsung.com>
* @bug No known bugs.
*
* Pipeline :
* v4l2src -- tee -- textoverlay -- videoconvert -- ximagesink
* |
* --- videoscale -- tensor_converter -- tensor_filter -- tensor_sink
*
* Get model by
* $ cd $NNST_ROOT/bin
* $ ./get-model.sh image-classification-tflite
*
* 'tensor_sink' updates classification result to display in textoverlay.
*/
#ifndef _GNU_SOURCE
#define _GNU_SOURCE
#endif
#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
#include <glib.h>
#include <gst/gst.h>
/**
* @brief Macro for debug mode.
*/
#ifndef DBG
#define DBG FALSE
#endif
/**
* @brief Macro for debug message.
*/
#define _print_log(...) if (DBG) g_message (__VA_ARGS__)
/**
* @brief Macro to check error case.
*/
#define _check_cond_err(cond) \
do { \
if (!(cond)) { \
_print_log ("app failed! [line : %d]", __LINE__); \
goto error; \
} \
} while (0)
/**
* @brief Data structure for tflite model info.
*/
typedef struct
{
gchar *model_path; /**< tflite model file path */
gchar *label_path; /**< label file path */
GList *labels; /**< list of loaded labels */
guint total_labels; /**< count of labels */
} tflite_info_s;
/**
* @brief Data structure for app.
*/
typedef struct
{
GMainLoop *loop; /**< main event loop */
GstElement *pipeline; /**< gst pipeline for data stream */
GstBus *bus; /**< gst bus for data pipeline */
gboolean running; /**< true when app is running */
guint received; /**< received buffer count */
gint current_label_index; /**< current label index */
gint new_label_index; /**< new label index */
tflite_info_s tflite_info; /**< tflite model info */
} AppData;
/**
* @brief Data for pipeline and result.
*/
static AppData g_app;
/**
* @brief Free data in tflite info structure.
*/
static void
_tflite_free_info (tflite_info_s * tflite_info)
{
g_return_if_fail (tflite_info != NULL);
if (tflite_info->model_path) {
g_free (tflite_info->model_path);
tflite_info->model_path = NULL;
}
if (tflite_info->label_path) {
g_free (tflite_info->label_path);
tflite_info->label_path = NULL;
}
if (tflite_info->labels) {
g_list_free_full (tflite_info->labels, g_free);
tflite_info->labels = NULL;
}
}
/**
* @brief Check tflite model and load labels.
*
* This example uses 'Mobilenet_1.0_224_quant' for image classification.
*/
static gboolean
_tflite_init_info (tflite_info_s * tflite_info)
{
const gchar path[] = "./tflite_model_img";
const gchar tflite_model[] = "mobilenet_v1_1.0_224_quant.tflite";
const gchar tflite_label[] = "labels.txt";
gchar *meta_file;
FILE *fp;
g_return_val_if_fail (tflite_info != NULL, FALSE);
tflite_info->model_path = NULL;
tflite_info->label_path = NULL;
tflite_info->labels = NULL;
meta_file = g_build_filename (path, "metadata", "./MANIFEST", NULL);
/* check model file exists */
tflite_info->model_path = g_build_filename (path, tflite_model, NULL);
if (!g_file_test (meta_file, G_FILE_TEST_EXISTS) ||
!g_file_test (tflite_info->model_path, G_FILE_TEST_EXISTS)) {
g_critical ("Failed to get meta and model files.");
g_print ("Please enter as below to download and locate the model.\n");
g_print ("$ cd $NNST_ROOT/bin/ \n");
g_print ("$ ./get-model.sh image-classification-tflite \n");
g_free (meta_file);
return FALSE;
}
/* load labels */
tflite_info->label_path = g_build_filename (path, tflite_label, NULL);
if ((fp = fopen (tflite_info->label_path, "r")) != NULL) {
gchar *line = NULL;
size_t len = 0;
ssize_t read;
gchar *label;
while ((read = getline (&line, &len, fp)) != -1) {
label = g_strdup ((gchar *) line);
tflite_info->labels = g_list_append (tflite_info->labels, label);
}
if (line) {
g_free (line);
}
fclose (fp);
} else {
g_critical ("cannot find tflite label [%s]", tflite_info->label_path);
return FALSE;
}
tflite_info->total_labels = g_list_length (tflite_info->labels);
g_print ("finished to load labels, total %d", tflite_info->total_labels);
g_free (meta_file);
return TRUE;
}
/**
* @brief Get label string with given index.
*/
static gchar *
_tflite_get_label (tflite_info_s * tflite_info, gint index)
{
guint length;
g_return_val_if_fail (tflite_info != NULL, NULL);
g_return_val_if_fail (tflite_info->labels != NULL, NULL);
length = g_list_length (tflite_info->labels);
g_return_val_if_fail (index >= 0 && index < length, NULL);
return (gchar *) g_list_nth_data (tflite_info->labels, index);
}
/**
* @brief Update tflite label index with max score.
* @param scores array of scores
* @param len array length
* @return None
*/
static void
_update_top_label_index (guint8 * scores, guint len)
{
gint i;
gint index = -1;
guint8 max_score = 0;
/* -1 if failed to get max score index */
g_app.new_label_index = -1;
g_return_if_fail (scores != NULL);
g_return_if_fail (len == g_app.tflite_info.total_labels);
for (i = 0; i < len; i++) {
if (scores[i] > 0 && scores[i] > max_score) {
index = i;
max_score = scores[i];
}
}
g_app.new_label_index = index;
}
/**
* @brief Free resources in app data.
*/
static void
_free_app_data (void)
{
if (g_app.loop) {
g_main_loop_unref (g_app.loop);
g_app.loop = NULL;
}
if (g_app.bus) {
gst_bus_remove_signal_watch (g_app.bus);
gst_object_unref (g_app.bus);
g_app.bus = NULL;
}
if (g_app.pipeline) {
gst_object_unref (g_app.pipeline);
g_app.pipeline = NULL;
}
_tflite_free_info (&g_app.tflite_info);
}
/**
* @brief Function to print error message.
*/
static void
_parse_err_message (GstMessage * message)
{
gchar *debug;
GError *error;
g_return_if_fail (message != NULL);
switch (GST_MESSAGE_TYPE (message)) {
case GST_MESSAGE_ERROR:
gst_message_parse_error (message, &error, &debug);
break;
case GST_MESSAGE_WARNING:
gst_message_parse_warning (message, &error, &debug);
break;
default:
return;
}
gst_object_default_error (GST_MESSAGE_SRC (message), error, debug);
g_error_free (error);
g_free (debug);
}
/**
* @brief Function to print qos message.
*/
static void
_parse_qos_message (GstMessage * message)
{
GstFormat format;
guint64 processed;
guint64 dropped;
gst_message_parse_qos_stats (message, &format, &processed, &dropped);
_print_log ("format[%d] processed[%" G_GUINT64_FORMAT "] dropped[%"
G_GUINT64_FORMAT "]", format, processed, dropped);
}
/**
* @brief Callback for message.
*/
static void
_message_cb (GstBus * bus, GstMessage * message, gpointer user_data)
{
switch (GST_MESSAGE_TYPE (message)) {
case GST_MESSAGE_EOS:
_print_log ("received eos message");
g_main_loop_quit (g_app.loop);
break;
case GST_MESSAGE_ERROR:
_print_log ("received error message");
_parse_err_message (message);
g_main_loop_quit (g_app.loop);
break;
case GST_MESSAGE_WARNING:
_print_log ("received warning message");
_parse_err_message (message);
break;
case GST_MESSAGE_STREAM_START:
_print_log ("received start message");
break;
case GST_MESSAGE_QOS:
_parse_qos_message (message);
break;
default:
break;
}
}
/**
* @brief Callback for tensor sink signal.
*/
static void
_new_data_cb (GstElement * element, GstBuffer * buffer, gpointer user_data)
{
/* print progress */
g_app.received++;
_print_log ("receiving new data [%d]", g_app.received);
if (g_app.running) {
GstMemory *mem;
GstMapInfo info;
guint i;
guint num_mems;
num_mems = gst_buffer_n_memory (buffer);
for (i = 0; i < num_mems; i++) {
mem = gst_buffer_peek_memory (buffer, i);
if (gst_memory_map (mem, &info, GST_MAP_READ)) {
/* update label index with max score */
_update_top_label_index (info.data, (guint) info.size);
gst_memory_unmap (mem, &info);
}
}
}
}
/**
* @brief Set window title.
* @param name GstXImageSink element name
* @param title window title
*/
static void
_set_window_title (const gchar * name, const gchar * title)
{
GstTagList *tags;
GstPad *sink_pad;
GstElement *element;
element = gst_bin_get_by_name (GST_BIN (g_app.pipeline), name);
g_return_if_fail (element != NULL);
sink_pad = gst_element_get_static_pad (element, "sink");
if (sink_pad) {
tags = gst_tag_list_new (GST_TAG_TITLE, title, NULL);
gst_pad_send_event (sink_pad, gst_event_new_tag (tags));
gst_object_unref (sink_pad);
}
gst_object_unref (element);
}
/**
* @brief Timer callback for textoverlay.
* @return True to ensure the timer continues
*/
static gboolean
_timer_update_result_cb (gpointer user_data)
{
if (g_app.running) {
GstElement *overlay;
gchar *label = NULL;
if (g_app.current_label_index != g_app.new_label_index) {
g_app.current_label_index = g_app.new_label_index;
overlay = gst_bin_get_by_name (GST_BIN (g_app.pipeline), "tensor_res");
label = _tflite_get_label (&g_app.tflite_info, g_app.current_label_index);
g_object_set (overlay, "text", (label != NULL) ? label : "", NULL);
gst_object_unref (overlay);
}
}
return TRUE;
}
/**
* @brief Main function.
*/
int
main (int argc, char **argv)
{
gchar *str_pipeline;
gulong handle_id;
guint timer_id = 0;
GstElement *element;
_print_log ("start app..");
/* init app variable */
g_app.running = FALSE;
g_app.received = 0;
g_app.current_label_index = -1;
g_app.new_label_index = -1;
_check_cond_err (_tflite_init_info (&g_app.tflite_info));
/* init gstreamer */
gst_init (&argc, &argv);
/* main loop */
g_app.loop = g_main_loop_new (NULL, FALSE);
_check_cond_err (g_app.loop != NULL);
/* init pipeline */
str_pipeline =
g_strdup_printf
("v4l2src name=cam_src ! videoconvert ! videoscale ! "
"video/x-raw,width=640,height=480,format=RGB ! tee name=t_raw "
"t_raw. ! queue ! textoverlay name=tensor_res font-desc=Sans,24 ! "
"videoconvert ! ximagesink name=img_tensor "
"t_raw. ! queue leaky=2 max-size-buffers=2 ! videoscale ! tensor_converter ! "
"tensor_filter framework=nnfw model=%s ! "
"tensor_sink name=tensor_sink", g_app.tflite_info.model_path);
_print_log ("%s\n", str_pipeline);
/**
* tensor info (mobilenet_v1_1.0_224_quant.tflite)
* input[0] >> type:5 (uint8), dim[3:224:224:1] video stream (RGB 224x224)
* output[0] >> type:5 (uint8), dim[1001:1] LABEL_SIZE:1
*/
g_app.pipeline = gst_parse_launch (str_pipeline, NULL);
g_free (str_pipeline);
_check_cond_err (g_app.pipeline != NULL);
/* bus and message callback */
g_app.bus = gst_element_get_bus (g_app.pipeline);
_check_cond_err (g_app.bus != NULL);
gst_bus_add_signal_watch (g_app.bus);
handle_id = g_signal_connect (g_app.bus, "message",
(GCallback) _message_cb, NULL);
_check_cond_err (handle_id > 0);
/* tensor sink signal : new data callback */
element = gst_bin_get_by_name (GST_BIN (g_app.pipeline), "tensor_sink");
handle_id = g_signal_connect (element, "new-data",
(GCallback) _new_data_cb, NULL);
gst_object_unref (element);
_check_cond_err (handle_id > 0);
/* timer to update result */
timer_id = g_timeout_add (500, _timer_update_result_cb, NULL);
_check_cond_err (timer_id > 0);
/* start pipeline */
gst_element_set_state (g_app.pipeline, GST_STATE_PLAYING);
g_app.running = TRUE;
/* set window title */
_set_window_title ("img_tensor", "NNStreamer Example");
/* run main loop */
g_main_loop_run (g_app.loop);
/* quit when received eos or error message */
g_app.running = FALSE;
/* cam source element */
element = gst_bin_get_by_name (GST_BIN (g_app.pipeline), "cam_src");
gst_element_set_state (element, GST_STATE_READY);
gst_element_set_state (g_app.pipeline, GST_STATE_READY);
g_usleep (200 * 1000);
gst_element_set_state (element, GST_STATE_NULL);
gst_element_set_state (g_app.pipeline, GST_STATE_NULL);
g_usleep (200 * 1000);
gst_object_unref (element);
error:
_print_log ("close app..");
if (timer_id > 0) {
g_source_remove (timer_id);
}
_free_app_data ();
return 0;
}