cannam@126: /* cannam@126: ** Copyright (c) 2002-2016, Erik de Castro Lopo cannam@126: ** All rights reserved. cannam@126: ** cannam@126: ** This code is released under 2-clause BSD license. Please see the cannam@126: ** file at : https://github.com/erikd/libsamplerate/blob/master/COPYING cannam@126: */ cannam@126: cannam@126: #include cannam@126: #include cannam@126: cannam@126: #include cannam@126: cannam@126: #include "util.h" cannam@126: cannam@126: #define BUFFER_LEN 2048 cannam@126: #define CB_READ_LEN 256 cannam@126: cannam@126: static void process_reset_test (int converter) ; cannam@126: static void callback_reset_test (int converter) ; cannam@126: cannam@126: static float data_one [BUFFER_LEN] ; cannam@126: static float data_zero [BUFFER_LEN] ; cannam@126: cannam@126: int cannam@126: main (void) cannam@126: { cannam@126: puts ("") ; cannam@126: cannam@126: process_reset_test (SRC_ZERO_ORDER_HOLD) ; cannam@126: process_reset_test (SRC_LINEAR) ; cannam@126: process_reset_test (SRC_SINC_FASTEST) ; cannam@126: cannam@126: callback_reset_test (SRC_ZERO_ORDER_HOLD) ; cannam@126: callback_reset_test (SRC_LINEAR) ; cannam@126: callback_reset_test (SRC_SINC_FASTEST) ; cannam@126: cannam@126: puts ("") ; cannam@126: cannam@126: return 0 ; cannam@126: } /* main */ cannam@126: cannam@126: static void cannam@126: process_reset_test (int converter) cannam@126: { static float output [BUFFER_LEN] ; cannam@126: cannam@126: SRC_STATE *src_state ; cannam@126: SRC_DATA src_data ; cannam@126: int k, error ; cannam@126: cannam@126: printf ("\tprocess_reset_test (%-28s) ....... ", src_get_name (converter)) ; cannam@126: fflush (stdout) ; cannam@126: cannam@126: for (k = 0 ; k < BUFFER_LEN ; k++) cannam@126: { data_one [k] = 1.0 ; cannam@126: data_zero [k] = 0.0 ; cannam@126: } ; cannam@126: cannam@126: /* Get a converter. */ cannam@126: if ((src_state = src_new (converter, 1, &error)) == NULL) cannam@126: { printf ("\n\nLine %d : src_new() failed : %s.\n\n", __LINE__, src_strerror (error)) ; cannam@126: exit (1) ; cannam@126: } ; cannam@126: cannam@126: /* Process a bunch of 1.0 valued samples. */ cannam@126: src_data.data_in = data_one ; cannam@126: src_data.data_out = output ; cannam@126: src_data.input_frames = BUFFER_LEN ; cannam@126: src_data.output_frames = BUFFER_LEN ; cannam@126: src_data.src_ratio = 0.9 ; cannam@126: src_data.end_of_input = 1 ; cannam@126: cannam@126: if ((error = src_process (src_state, &src_data)) != 0) cannam@126: { printf ("\n\nLine %d : src_simple () returned error : %s\n\n", __LINE__, src_strerror (error)) ; cannam@126: exit (1) ; cannam@126: } ; cannam@126: cannam@126: /* Reset the state of the converter.*/ cannam@126: src_reset (src_state) ; cannam@126: cannam@126: /* Now process some zero data. */ cannam@126: src_data.data_in = data_zero ; cannam@126: src_data.data_out = output ; cannam@126: src_data.input_frames = BUFFER_LEN ; cannam@126: src_data.output_frames = BUFFER_LEN ; cannam@126: src_data.src_ratio = 0.9 ; cannam@126: src_data.end_of_input = 1 ; cannam@126: cannam@126: if ((error = src_process (src_state, &src_data)) != 0) cannam@126: { printf ("\n\nLine %d : src_simple () returned error : %s\n\n", __LINE__, src_strerror (error)) ; cannam@126: exit (1) ; cannam@126: } ; cannam@126: cannam@126: /* Finally make sure that the output data is zero ie reset was sucessful. */ cannam@126: for (k = 0 ; k < BUFFER_LEN / 2 ; k++) cannam@126: if (output [k] != 0.0) cannam@126: { printf ("\n\nLine %d : output [%d] should be 0.0, is %f.\n", __LINE__, k, output [k]) ; cannam@126: exit (1) ; cannam@126: } ; cannam@126: cannam@126: /* Make sure that this function has been exported. */ cannam@126: src_set_ratio (src_state, 1.0) ; cannam@126: cannam@126: /* Delete converter. */ cannam@126: src_state = src_delete (src_state) ; cannam@126: cannam@126: puts ("ok") ; cannam@126: } /* process_reset_test */ cannam@126: cannam@126: /*============================================================================== cannam@126: */ cannam@126: cannam@126: typedef struct cannam@126: { int channels ; cannam@126: long count, total ; cannam@126: float *data ; cannam@126: } TEST_CB_DATA ; cannam@126: cannam@126: static long cannam@126: test_callback_func (void *cb_data, float **data) cannam@126: { TEST_CB_DATA *pcb_data ; cannam@126: cannam@126: long frames ; cannam@126: cannam@126: if ((pcb_data = cb_data) == NULL) cannam@126: return 0 ; cannam@126: cannam@126: if (data == NULL) cannam@126: return 0 ; cannam@126: cannam@126: if (pcb_data->total - pcb_data->count > 0) cannam@126: frames = pcb_data->total - pcb_data->count ; cannam@126: else cannam@126: frames = 0 ; cannam@126: cannam@126: *data = pcb_data->data + pcb_data->count ; cannam@126: pcb_data->count += frames ; cannam@126: cannam@126: return frames ; cannam@126: } /* test_callback_func */ cannam@126: cannam@126: static void cannam@126: callback_reset_test (int converter) cannam@126: { static TEST_CB_DATA test_callback_data ; cannam@126: cannam@126: static float output [BUFFER_LEN] ; cannam@126: cannam@126: SRC_STATE *src_state ; cannam@126: cannam@126: double src_ratio = 1.1 ; cannam@126: long read_count, read_total ; cannam@126: int k, error ; cannam@126: cannam@126: printf ("\tcallback_reset_test (%-28s) ....... ", src_get_name (converter)) ; cannam@126: fflush (stdout) ; cannam@126: cannam@126: for (k = 0 ; k < ARRAY_LEN (data_one) ; k++) cannam@126: { data_one [k] = 1.0 ; cannam@126: data_zero [k] = 0.0 ; cannam@126: } ; cannam@126: cannam@126: if ((src_state = src_callback_new (test_callback_func, converter, 1, &error, &test_callback_data)) == NULL) cannam@126: { printf ("\n\nLine %d : %s\n\n", __LINE__, src_strerror (error)) ; cannam@126: exit (1) ; cannam@126: } ; cannam@126: cannam@126: /* Process a bunch of 1.0 valued samples. */ cannam@126: test_callback_data.channels = 1 ; cannam@126: test_callback_data.count = 0 ; cannam@126: test_callback_data.total = ARRAY_LEN (data_one) ; cannam@126: test_callback_data.data = data_one ; cannam@126: cannam@126: read_total = 0 ; cannam@126: do cannam@126: { read_count = (ARRAY_LEN (output) - read_total > CB_READ_LEN) ? CB_READ_LEN : ARRAY_LEN (output) - read_total ; cannam@126: read_count = src_callback_read (src_state, src_ratio, read_count, output + read_total) ; cannam@126: read_total += read_count ; cannam@126: } cannam@126: while (read_count > 0) ; cannam@126: cannam@126: /* Check for errors. */ cannam@126: if ((error = src_error (src_state)) != 0) cannam@126: { printf ("\n\nLine %d : %s\n\n", __LINE__, src_strerror (error)) ; cannam@126: exit (1) ; cannam@126: } ; cannam@126: cannam@126: /* Reset the state of the converter.*/ cannam@126: src_reset (src_state) ; cannam@126: cannam@126: /* Process a bunch of 0.0 valued samples. */ cannam@126: test_callback_data.channels = 1 ; cannam@126: test_callback_data.count = 0 ; cannam@126: test_callback_data.total = ARRAY_LEN (data_zero) ; cannam@126: test_callback_data.data = data_zero ; cannam@126: cannam@126: /* Now process some zero data. */ cannam@126: read_total = 0 ; cannam@126: do cannam@126: { read_count = (ARRAY_LEN (output) - read_total > CB_READ_LEN) ? CB_READ_LEN : ARRAY_LEN (output) - read_total ; cannam@126: read_count = src_callback_read (src_state, src_ratio, read_count, output + read_total) ; cannam@126: read_total += read_count ; cannam@126: } cannam@126: while (read_count > 0) ; cannam@126: cannam@126: /* Check for errors. */ cannam@126: if ((error = src_error (src_state)) != 0) cannam@126: { printf ("\n\nLine %d : %s\n\n", __LINE__, src_strerror (error)) ; cannam@126: exit (1) ; cannam@126: } ; cannam@126: cannam@126: /* Finally make sure that the output data is zero ie reset was sucessful. */ cannam@126: for (k = 0 ; k < BUFFER_LEN / 2 ; k++) cannam@126: if (output [k] != 0.0) cannam@126: { printf ("\n\nLine %d : output [%d] should be 0.0, is %f.\n\n", __LINE__, k, output [k]) ; cannam@126: save_oct_float ("output.dat", data_one, ARRAY_LEN (data_one), output, ARRAY_LEN (output)) ; cannam@126: exit (1) ; cannam@126: } ; cannam@126: cannam@126: /* Make sure that this function has been exported. */ cannam@126: src_set_ratio (src_state, 1.0) ; cannam@126: cannam@126: /* Delete converter. */ cannam@126: src_state = src_delete (src_state) ; cannam@126: cannam@126: puts ("ok") ; cannam@126: } /* callback_reset_test */ cannam@126: cannam@126: