cannam@85: /* cannam@85: ** Copyright (C) 1999-2011 Erik de Castro Lopo cannam@85: ** cannam@85: ** This program is free software; you can redistribute it and/or modify cannam@85: ** it under the terms of the GNU General Public License as published by cannam@85: ** the Free Software Foundation; either version 2 of the License, or cannam@85: ** (at your option) any later version. cannam@85: ** cannam@85: ** This program is distributed in the hope that it will be useful, cannam@85: ** but WITHOUT ANY WARRANTY; without even the implied warranty of cannam@85: ** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the cannam@85: ** GNU General Public License for more details. cannam@85: ** cannam@85: ** You should have received a copy of the GNU General Public License cannam@85: ** along with this program; if not, write to the Free Software cannam@85: ** Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. cannam@85: */ cannam@85: cannam@85: #include "sfconfig.h" cannam@85: cannam@85: #include cannam@85: #include cannam@85: #include cannam@85: cannam@85: #if HAVE_UNISTD_H cannam@85: #include cannam@85: #endif cannam@85: cannam@85: #include cannam@85: cannam@85: #include cannam@85: cannam@85: #include "utils.h" cannam@85: cannam@85: #ifndef M_PI cannam@85: #define M_PI 3.14159265358979323846264338 cannam@85: #endif cannam@85: cannam@85: #define HALF_BUFFER_SIZE (1 << 12) cannam@85: #define BUFFER_SIZE (2 * HALF_BUFFER_SIZE) cannam@85: cannam@85: #define SINE_AMP 1.1 cannam@85: #define MAX_ERROR 0.0202 cannam@85: cannam@85: cannam@85: static void flt_scale_clip_test_16 (const char *filename, int filetype, float maxval) ; cannam@85: static void flt_scale_clip_test_24 (const char *filename, int filetype, float maxval) ; cannam@85: static void flt_scale_clip_test_32 (const char *filename, int filetype, float maxval) ; cannam@85: static void flt_scale_clip_test_08 (const char *filename, int filetype, float maxval) ; cannam@85: cannam@85: static void dbl_scale_clip_test_16 (const char *filename, int filetype, float maxval) ; cannam@85: static void dbl_scale_clip_test_24 (const char *filename, int filetype, float maxval) ; cannam@85: static void dbl_scale_clip_test_32 (const char *filename, int filetype, float maxval) ; cannam@85: static void dbl_scale_clip_test_08 (const char *filename, int filetype, float maxval) ; cannam@85: cannam@85: cannam@85: cannam@85: static void flt_short_clip_read_test (const char *filename, int filetype) ; cannam@85: static void flt_int_clip_read_test (const char *filename, int filetype) ; cannam@85: cannam@85: static void dbl_short_clip_read_test (const char *filename, int filetype) ; cannam@85: static void dbl_int_clip_read_test (const char *filename, int filetype) ; cannam@85: cannam@85: cannam@85: cannam@85: static void short_flt_scale_write_test (const char *filename, int filetype) ; cannam@85: static void short_dbl_scale_write_test (const char *filename, int filetype) ; cannam@85: cannam@85: static void int_flt_scale_write_test (const char *filename, int filetype) ; cannam@85: static void int_dbl_scale_write_test (const char *filename, int filetype) ; cannam@85: cannam@85: cannam@85: typedef union cannam@85: { double dbl [BUFFER_SIZE] ; cannam@85: float flt [BUFFER_SIZE] ; cannam@85: int i [BUFFER_SIZE] ; cannam@85: short s [BUFFER_SIZE] ; cannam@85: } BUFFER ; cannam@85: cannam@85: /* Data buffer. */ cannam@85: static BUFFER buffer_out ; cannam@85: static BUFFER buffer_in ; cannam@85: cannam@85: int cannam@85: main (void) cannam@85: { cannam@85: flt_scale_clip_test_08 ("scale_clip_s8.au", SF_FORMAT_AU | SF_FORMAT_PCM_S8, 1.0 * 0x80) ; cannam@85: flt_scale_clip_test_08 ("scale_clip_u8.wav", SF_FORMAT_WAV | SF_FORMAT_PCM_U8, 1.0 * 0x80) ; cannam@85: cannam@85: dbl_scale_clip_test_08 ("scale_clip_s8.au", SF_FORMAT_AU | SF_FORMAT_PCM_S8, 1.0 * 0x80) ; cannam@85: dbl_scale_clip_test_08 ("scale_clip_u8.wav", SF_FORMAT_WAV | SF_FORMAT_PCM_U8, 1.0 * 0x80) ; cannam@85: cannam@85: /* cannam@85: ** Now use SF_FORMAT_AU where possible because it allows both cannam@85: ** big and little endian files. cannam@85: */ cannam@85: cannam@85: flt_scale_clip_test_16 ("scale_clip_be16.au", SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_PCM_16, 1.0 * 0x8000) ; cannam@85: flt_scale_clip_test_16 ("scale_clip_le16.au", SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_PCM_16, 1.0 * 0x8000) ; cannam@85: flt_scale_clip_test_24 ("scale_clip_be24.au", SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_PCM_24, 1.0 * 0x800000) ; cannam@85: flt_scale_clip_test_24 ("scale_clip_le24.au", SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_PCM_24, 1.0 * 0x800000) ; cannam@85: flt_scale_clip_test_32 ("scale_clip_be32.au", SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_PCM_32, 1.0 * 0x80000000) ; cannam@85: flt_scale_clip_test_32 ("scale_clip_le32.au", SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_PCM_32, 1.0 * 0x80000000) ; cannam@85: cannam@85: dbl_scale_clip_test_16 ("scale_clip_be16.au", SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_PCM_16, 1.0 * 0x8000) ; cannam@85: dbl_scale_clip_test_16 ("scale_clip_le16.au", SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_PCM_16, 1.0 * 0x8000) ; cannam@85: dbl_scale_clip_test_24 ("scale_clip_be24.au", SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_PCM_24, 1.0 * 0x800000) ; cannam@85: dbl_scale_clip_test_24 ("scale_clip_le24.au", SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_PCM_24, 1.0 * 0x800000) ; cannam@85: dbl_scale_clip_test_32 ("scale_clip_be32.au", SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_PCM_32, 1.0 * 0x80000000) ; cannam@85: dbl_scale_clip_test_32 ("scale_clip_le32.au", SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_PCM_32, 1.0 * 0x80000000) ; cannam@85: cannam@85: flt_short_clip_read_test ("flt_short.au" , SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_FLOAT) ; cannam@85: flt_int_clip_read_test ("flt_int.au" , SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_FLOAT) ; cannam@85: dbl_short_clip_read_test ("dbl_short.au" , SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_DOUBLE) ; cannam@85: dbl_int_clip_read_test ("dbl_int.au" , SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_DOUBLE) ; cannam@85: cannam@85: short_flt_scale_write_test ("short_flt.au" , SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_FLOAT) ; cannam@85: int_flt_scale_write_test ("int_flt.au" , SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_FLOAT) ; cannam@85: short_dbl_scale_write_test ("short_dbl.au" , SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_DOUBLE) ; cannam@85: int_dbl_scale_write_test ("int_dbl.au" , SF_ENDIAN_LITTLE | SF_FORMAT_AU | SF_FORMAT_DOUBLE) ; cannam@85: cannam@85: return 0 ; cannam@85: } /* main */ cannam@85: cannam@85: /*============================================================================================ cannam@85: ** Here are the test functions. cannam@85: */ cannam@85: cannam@85: cannam@85: static void cannam@85: flt_scale_clip_test_16 (const char *filename, int filetype, float maxval) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int k ; cannam@85: float *data_out, *data_in ; cannam@85: double diff, clip_max_diff ; cannam@85: cannam@85: print_test_name ("flt_scale_clip_test_16", filename) ; cannam@85: cannam@85: data_out = buffer_out.flt ; cannam@85: data_in = buffer_in.flt ; cannam@85: cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { data_out [k] = 1.2 * sin (2 * M_PI * k / HALF_BUFFER_SIZE) ; cannam@85: data_out [k + HALF_BUFFER_SIZE] = data_out [k] * maxval ; cannam@85: } ; cannam@85: cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* cannam@85: ** Write two versions of the data: cannam@85: ** normalized and clipped cannam@85: ** un-normalized and clipped. cannam@85: */ cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_write_float_or_die (file, 0, data_out, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ; cannam@85: test_write_float_or_die (file, 0, data_out + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&buffer_in, 0, sizeof (buffer_in)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: test_read_float_or_die (file, 0, data_in, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ; cannam@85: test_read_float_or_die (file, 0, data_in + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check normalized version. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > 1.0) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > 1.0) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0 / 0x8000) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the un-normalized data. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = HALF_BUFFER_SIZE ; k < BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > maxval) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > maxval) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (un-normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (un-normalised).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: printf ("ok\n") ; cannam@85: unlink (filename) ; cannam@85: } /* flt_scale_clip_test_16 */ cannam@85: cannam@85: static void cannam@85: flt_scale_clip_test_24 (const char *filename, int filetype, float maxval) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int k ; cannam@85: float *data_out, *data_in ; cannam@85: double diff, clip_max_diff ; cannam@85: cannam@85: print_test_name ("flt_scale_clip_test_24", filename) ; cannam@85: cannam@85: data_out = buffer_out.flt ; cannam@85: data_in = buffer_in.flt ; cannam@85: cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { data_out [k] = 1.2 * sin (2 * M_PI * k / HALF_BUFFER_SIZE) ; cannam@85: data_out [k + HALF_BUFFER_SIZE] = data_out [k] * maxval ; cannam@85: } ; cannam@85: cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* cannam@85: ** Write two versions of the data: cannam@85: ** normalized and clipped cannam@85: ** un-normalized and clipped. cannam@85: */ cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_write_float_or_die (file, 0, data_out, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ; cannam@85: test_write_float_or_die (file, 0, data_out + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&buffer_in, 0, sizeof (buffer_in)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: test_read_float_or_die (file, 0, data_in, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ; cannam@85: test_read_float_or_die (file, 0, data_in + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check normalized version. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > 1.0) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > 1.0) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0 / 0x800000) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the un-normalized data. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = HALF_BUFFER_SIZE ; k < BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > maxval) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > maxval) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (un-normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (un-normalised).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: printf ("ok\n") ; cannam@85: unlink (filename) ; cannam@85: } /* flt_scale_clip_test_24 */ cannam@85: cannam@85: static void cannam@85: flt_scale_clip_test_32 (const char *filename, int filetype, float maxval) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int k ; cannam@85: float *data_out, *data_in ; cannam@85: double diff, clip_max_diff ; cannam@85: cannam@85: print_test_name ("flt_scale_clip_test_32", filename) ; cannam@85: cannam@85: data_out = buffer_out.flt ; cannam@85: data_in = buffer_in.flt ; cannam@85: cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { data_out [k] = 1.2 * sin (2 * M_PI * k / HALF_BUFFER_SIZE) ; cannam@85: data_out [k + HALF_BUFFER_SIZE] = data_out [k] * maxval ; cannam@85: } ; cannam@85: cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* cannam@85: ** Write two versions of the data: cannam@85: ** normalized and clipped cannam@85: ** un-normalized and clipped. cannam@85: */ cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_write_float_or_die (file, 0, data_out, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ; cannam@85: test_write_float_or_die (file, 0, data_out + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&buffer_in, 0, sizeof (buffer_in)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: test_read_float_or_die (file, 0, data_in, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ; cannam@85: test_read_float_or_die (file, 0, data_in + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check normalized version. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > 1.0) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > 1.0) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0 / 0x80000000) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the un-normalized data. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = HALF_BUFFER_SIZE ; k < BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > maxval) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > maxval) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (un-normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (un-normalised).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: printf ("ok\n") ; cannam@85: unlink (filename) ; cannam@85: } /* flt_scale_clip_test_32 */ cannam@85: cannam@85: static void cannam@85: flt_scale_clip_test_08 (const char *filename, int filetype, float maxval) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int k ; cannam@85: float *data_out, *data_in ; cannam@85: double diff, clip_max_diff ; cannam@85: cannam@85: print_test_name ("flt_scale_clip_test_08", filename) ; cannam@85: cannam@85: data_out = buffer_out.flt ; cannam@85: data_in = buffer_in.flt ; cannam@85: cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { data_out [k] = 1.2 * sin (2 * M_PI * k / HALF_BUFFER_SIZE) ; cannam@85: data_out [k + HALF_BUFFER_SIZE] = data_out [k] * maxval ; cannam@85: } ; cannam@85: cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* cannam@85: ** Write two versions of the data: cannam@85: ** normalized and clipped cannam@85: ** un-normalized and clipped. cannam@85: */ cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_write_float_or_die (file, 0, data_out, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ; cannam@85: test_write_float_or_die (file, 0, data_out + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&buffer_in, 0, sizeof (buffer_in)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: test_read_float_or_die (file, 0, data_in, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ; cannam@85: test_read_float_or_die (file, 0, data_in + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check normalized version. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > 1.0) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > 1.0) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0 / 0x80) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the un-normalized data. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = HALF_BUFFER_SIZE ; k < BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > maxval) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > maxval) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (un-normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (un-normalised).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: printf ("ok\n") ; cannam@85: unlink (filename) ; cannam@85: } /* flt_scale_clip_test_08 */ cannam@85: cannam@85: cannam@85: cannam@85: static void cannam@85: dbl_scale_clip_test_16 (const char *filename, int filetype, float maxval) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int k ; cannam@85: double *data_out, *data_in ; cannam@85: double diff, clip_max_diff ; cannam@85: cannam@85: print_test_name ("dbl_scale_clip_test_16", filename) ; cannam@85: cannam@85: data_out = buffer_out.dbl ; cannam@85: data_in = buffer_in.dbl ; cannam@85: cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { data_out [k] = 1.2 * sin (2 * M_PI * k / HALF_BUFFER_SIZE) ; cannam@85: data_out [k + HALF_BUFFER_SIZE] = data_out [k] * maxval ; cannam@85: } ; cannam@85: cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* cannam@85: ** Write two versions of the data: cannam@85: ** normalized and clipped cannam@85: ** un-normalized and clipped. cannam@85: */ cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_write_double_or_die (file, 0, data_out, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ; cannam@85: test_write_double_or_die (file, 0, data_out + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&buffer_in, 0, sizeof (buffer_in)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: test_read_double_or_die (file, 0, data_in, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ; cannam@85: test_read_double_or_die (file, 0, data_in + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check normalized version. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > 1.0) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > 1.0) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0 / 0x8000) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the un-normalized data. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = HALF_BUFFER_SIZE ; k < BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > maxval) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > maxval) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (un-normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (un-normalised).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: printf ("ok\n") ; cannam@85: unlink (filename) ; cannam@85: } /* dbl_scale_clip_test_16 */ cannam@85: cannam@85: static void cannam@85: dbl_scale_clip_test_24 (const char *filename, int filetype, float maxval) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int k ; cannam@85: double *data_out, *data_in ; cannam@85: double diff, clip_max_diff ; cannam@85: cannam@85: print_test_name ("dbl_scale_clip_test_24", filename) ; cannam@85: cannam@85: data_out = buffer_out.dbl ; cannam@85: data_in = buffer_in.dbl ; cannam@85: cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { data_out [k] = 1.2 * sin (2 * M_PI * k / HALF_BUFFER_SIZE) ; cannam@85: data_out [k + HALF_BUFFER_SIZE] = data_out [k] * maxval ; cannam@85: } ; cannam@85: cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* cannam@85: ** Write two versions of the data: cannam@85: ** normalized and clipped cannam@85: ** un-normalized and clipped. cannam@85: */ cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_write_double_or_die (file, 0, data_out, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ; cannam@85: test_write_double_or_die (file, 0, data_out + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&buffer_in, 0, sizeof (buffer_in)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: test_read_double_or_die (file, 0, data_in, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ; cannam@85: test_read_double_or_die (file, 0, data_in + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check normalized version. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > 1.0) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > 1.0) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0 / 0x800000) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the un-normalized data. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = HALF_BUFFER_SIZE ; k < BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > maxval) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > maxval) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (un-normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (un-normalised).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: printf ("ok\n") ; cannam@85: unlink (filename) ; cannam@85: } /* dbl_scale_clip_test_24 */ cannam@85: cannam@85: static void cannam@85: dbl_scale_clip_test_32 (const char *filename, int filetype, float maxval) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int k ; cannam@85: double *data_out, *data_in ; cannam@85: double diff, clip_max_diff ; cannam@85: cannam@85: print_test_name ("dbl_scale_clip_test_32", filename) ; cannam@85: cannam@85: data_out = buffer_out.dbl ; cannam@85: data_in = buffer_in.dbl ; cannam@85: cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { data_out [k] = 1.2 * sin (2 * M_PI * k / HALF_BUFFER_SIZE) ; cannam@85: data_out [k + HALF_BUFFER_SIZE] = data_out [k] * maxval ; cannam@85: } ; cannam@85: cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* cannam@85: ** Write two versions of the data: cannam@85: ** normalized and clipped cannam@85: ** un-normalized and clipped. cannam@85: */ cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_write_double_or_die (file, 0, data_out, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ; cannam@85: test_write_double_or_die (file, 0, data_out + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&buffer_in, 0, sizeof (buffer_in)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: test_read_double_or_die (file, 0, data_in, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ; cannam@85: test_read_double_or_die (file, 0, data_in + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check normalized version. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > 1.0) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > 1.0) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0 / 0x80000000) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the un-normalized data. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = HALF_BUFFER_SIZE ; k < BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > maxval) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > maxval) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (un-normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (un-normalised).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: printf ("ok\n") ; cannam@85: unlink (filename) ; cannam@85: } /* dbl_scale_clip_test_32 */ cannam@85: cannam@85: static void cannam@85: dbl_scale_clip_test_08 (const char *filename, int filetype, float maxval) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int k ; cannam@85: double *data_out, *data_in ; cannam@85: double diff, clip_max_diff ; cannam@85: cannam@85: print_test_name ("dbl_scale_clip_test_08", filename) ; cannam@85: cannam@85: data_out = buffer_out.dbl ; cannam@85: data_in = buffer_in.dbl ; cannam@85: cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { data_out [k] = 1.2 * sin (2 * M_PI * k / HALF_BUFFER_SIZE) ; cannam@85: data_out [k + HALF_BUFFER_SIZE] = data_out [k] * maxval ; cannam@85: } ; cannam@85: cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* cannam@85: ** Write two versions of the data: cannam@85: ** normalized and clipped cannam@85: ** un-normalized and clipped. cannam@85: */ cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_write_double_or_die (file, 0, data_out, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ; cannam@85: test_write_double_or_die (file, 0, data_out + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&buffer_in, 0, sizeof (buffer_in)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: test_read_double_or_die (file, 0, data_in, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ; cannam@85: test_read_double_or_die (file, 0, data_in + HALF_BUFFER_SIZE, HALF_BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check normalized version. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = 0 ; k < HALF_BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > 1.0) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > 1.0) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0 / 0x80) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the un-normalized data. */ cannam@85: clip_max_diff = 0.0 ; cannam@85: for (k = HALF_BUFFER_SIZE ; k < BUFFER_SIZE ; k++) cannam@85: { if (fabs (data_in [k]) > maxval) cannam@85: { printf ("\n\nLine %d: Input sample %d/%d (%f) has not been clipped.\n\n", __LINE__, k, BUFFER_SIZE, data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (data_out [k] * data_in [k] < 0.0) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d.\n\n", __LINE__, k, BUFFER_SIZE) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (fabs (data_out [k]) > maxval) cannam@85: continue ; cannam@85: cannam@85: diff = fabs (data_out [k] - data_in [k]) ; cannam@85: if (diff > clip_max_diff) cannam@85: clip_max_diff = diff ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff < 1e-20) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too small (un-normalized).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (clip_max_diff > 1.0) cannam@85: { printf ("\n\nLine %d: Clipping difference (%e) too large (un-normalised).\n\n", __LINE__, clip_max_diff) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: printf ("ok\n") ; cannam@85: unlink (filename) ; cannam@85: } /* dbl_scale_clip_test_08 */ cannam@85: cannam@85: cannam@85: cannam@85: cannam@85: /*============================================================================== cannam@85: */ cannam@85: cannam@85: cannam@85: static void flt_short_clip_read_test (const char *filename, int filetype) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: float *data_out ; cannam@85: short *data_in, max_value ; cannam@85: int k ; cannam@85: cannam@85: print_test_name ("flt_short_clip_read_test", filename) ; cannam@85: cannam@85: data_out = buffer_out.flt ; cannam@85: data_in = buffer_in.s ; cannam@85: cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: data_out [k] = 0.995 * sin (4 * M_PI * k / BUFFER_SIZE) ; cannam@85: data_out [BUFFER_SIZE / 8] = 1.0 ; cannam@85: data_out [3 * BUFFER_SIZE / 8] = -1.000000001 ; cannam@85: data_out [5 * BUFFER_SIZE / 8] = 1.0 ; cannam@85: data_out [7 * BUFFER_SIZE / 8] = -1.000000001 ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* Save unclipped data to the file. */ cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: test_write_float_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_FLOAT_INT_READ, NULL, SF_TRUE) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_read_short_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: /*-sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ;-*/ cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check the first half. */ cannam@85: max_value = 0 ; cannam@85: for (k = 0 ; k < sfinfo.frames ; k++) cannam@85: { /* Check if data_out has different sign from data_in. */ cannam@85: if ((data_out [k] < 0.0 && data_in [k] > 0) || (data_out [k] > 0.0 && data_in [k] < 0)) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d (%f -> %d).\n\n", __LINE__, k, BUFFER_SIZE, data_out [k], data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: max_value = (max_value > abs (data_in [k])) ? max_value : abs (data_in [k]) ; cannam@85: } ; cannam@85: cannam@85: unlink (filename) ; cannam@85: puts ("ok") ; cannam@85: } /* flt_short_clip_read_test */ cannam@85: static void flt_int_clip_read_test (const char *filename, int filetype) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: float *data_out ; cannam@85: int *data_in, max_value ; cannam@85: int k ; cannam@85: cannam@85: print_test_name ("flt_int_clip_read_test", filename) ; cannam@85: cannam@85: data_out = buffer_out.flt ; cannam@85: data_in = buffer_in.i ; cannam@85: cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: data_out [k] = 0.995 * sin (4 * M_PI * k / BUFFER_SIZE) ; cannam@85: data_out [BUFFER_SIZE / 8] = 1.0 ; cannam@85: data_out [3 * BUFFER_SIZE / 8] = -1.000000001 ; cannam@85: data_out [5 * BUFFER_SIZE / 8] = 1.0 ; cannam@85: data_out [7 * BUFFER_SIZE / 8] = -1.000000001 ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* Save unclipped data to the file. */ cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: test_write_float_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_FLOAT_INT_READ, NULL, SF_TRUE) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_read_int_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: /*-sf_command (file, SFC_SET_NORM_FLOAT, NULL, SF_FALSE) ;-*/ cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check the first half. */ cannam@85: max_value = 0 ; cannam@85: for (k = 0 ; k < sfinfo.frames ; k++) cannam@85: { /* Check if data_out has different sign from data_in. */ cannam@85: if ((data_out [k] < 0.0 && data_in [k] > 0) || (data_out [k] > 0.0 && data_in [k] < 0)) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d (%f -> %d).\n\n", __LINE__, k, BUFFER_SIZE, data_out [k], data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: max_value = (max_value > abs (data_in [k])) ? max_value : abs (data_in [k]) ; cannam@85: } ; cannam@85: cannam@85: unlink (filename) ; cannam@85: puts ("ok") ; cannam@85: } /* flt_int_clip_read_test */ cannam@85: cannam@85: static void dbl_short_clip_read_test (const char *filename, int filetype) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: double *data_out ; cannam@85: short *data_in, max_value ; cannam@85: int k ; cannam@85: cannam@85: print_test_name ("dbl_short_clip_read_test", filename) ; cannam@85: cannam@85: data_out = buffer_out.dbl ; cannam@85: data_in = buffer_in.s ; cannam@85: cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: data_out [k] = 0.995 * sin (4 * M_PI * k / BUFFER_SIZE) ; cannam@85: data_out [BUFFER_SIZE / 8] = 1.0 ; cannam@85: data_out [3 * BUFFER_SIZE / 8] = -1.000000001 ; cannam@85: data_out [5 * BUFFER_SIZE / 8] = 1.0 ; cannam@85: data_out [7 * BUFFER_SIZE / 8] = -1.000000001 ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* Save unclipped data to the file. */ cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: test_write_double_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_FLOAT_INT_READ, NULL, SF_TRUE) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_read_short_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: /*-sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ;-*/ cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check the first half. */ cannam@85: max_value = 0 ; cannam@85: for (k = 0 ; k < sfinfo.frames ; k++) cannam@85: { /* Check if data_out has different sign from data_in. */ cannam@85: if ((data_out [k] < 0.0 && data_in [k] > 0) || (data_out [k] > 0.0 && data_in [k] < 0)) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d (%f -> %d).\n\n", __LINE__, k, BUFFER_SIZE, data_out [k], data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: max_value = (max_value > abs (data_in [k])) ? max_value : abs (data_in [k]) ; cannam@85: } ; cannam@85: cannam@85: unlink (filename) ; cannam@85: puts ("ok") ; cannam@85: } /* dbl_short_clip_read_test */ cannam@85: static void dbl_int_clip_read_test (const char *filename, int filetype) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: double *data_out ; cannam@85: int *data_in, max_value ; cannam@85: int k ; cannam@85: cannam@85: print_test_name ("dbl_int_clip_read_test", filename) ; cannam@85: cannam@85: data_out = buffer_out.dbl ; cannam@85: data_in = buffer_in.i ; cannam@85: cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: data_out [k] = 0.995 * sin (4 * M_PI * k / BUFFER_SIZE) ; cannam@85: data_out [BUFFER_SIZE / 8] = 1.0 ; cannam@85: data_out [3 * BUFFER_SIZE / 8] = -1.000000001 ; cannam@85: data_out [5 * BUFFER_SIZE / 8] = 1.0 ; cannam@85: data_out [7 * BUFFER_SIZE / 8] = -1.000000001 ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: /* Save unclipped data to the file. */ cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: test_write_double_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_FLOAT_INT_READ, NULL, SF_TRUE) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: sf_command (file, SFC_SET_CLIPPING, NULL, SF_TRUE) ; cannam@85: test_read_int_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: /*-sf_command (file, SFC_SET_NORM_DOUBLE, NULL, SF_FALSE) ;-*/ cannam@85: sf_close (file) ; cannam@85: cannam@85: /* Check the first half. */ cannam@85: max_value = 0 ; cannam@85: for (k = 0 ; k < sfinfo.frames ; k++) cannam@85: { /* Check if data_out has different sign from data_in. */ cannam@85: if ((data_out [k] < 0.0 && data_in [k] > 0) || (data_out [k] > 0.0 && data_in [k] < 0)) cannam@85: { printf ("\n\nLine %d: Data wrap around at index %d/%d (%f -> %d).\n\n", __LINE__, k, BUFFER_SIZE, data_out [k], data_in [k]) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: max_value = (max_value > abs (data_in [k])) ? max_value : abs (data_in [k]) ; cannam@85: } ; cannam@85: cannam@85: unlink (filename) ; cannam@85: puts ("ok") ; cannam@85: } /* dbl_int_clip_read_test */ cannam@85: cannam@85: cannam@85: /*============================================================================== cannam@85: */ cannam@85: cannam@85: cannam@85: static void short_flt_scale_write_test (const char *filename, int filetype) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: short *data_out ; cannam@85: float *data_in, max_value ; cannam@85: int k ; cannam@85: cannam@85: print_test_name ("short_flt_clip_write_test", filename) ; cannam@85: cannam@85: data_out = buffer_out.s ; cannam@85: data_in = buffer_in.flt ; cannam@85: cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: data_out [k] = lrintf (0x7FFFF * 0.995 * sin (4 * M_PI * k / BUFFER_SIZE)) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: test_write_short_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_INT_FLOAT_WRITE, NULL, SF_TRUE) ; cannam@85: test_write_short_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_INT_FLOAT_WRITE, NULL, SF_FALSE) ; cannam@85: test_write_short_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != 3 * BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, 3 * BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: /* Check the first section. */ cannam@85: test_read_float_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value < 1000.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) < 1000.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the second section. */ cannam@85: test_read_float_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value > 1.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) > 1.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the third section. */ cannam@85: test_read_float_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value < 1000.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) < 1000.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: sf_close (file) ; cannam@85: cannam@85: unlink (filename) ; cannam@85: puts ("ok") ; cannam@85: } /* short_flt_scale_write_test */ cannam@85: static void short_dbl_scale_write_test (const char *filename, int filetype) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: short *data_out ; cannam@85: double *data_in, max_value ; cannam@85: int k ; cannam@85: cannam@85: print_test_name ("short_dbl_clip_write_test", filename) ; cannam@85: cannam@85: data_out = buffer_out.s ; cannam@85: data_in = buffer_in.dbl ; cannam@85: cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: data_out [k] = lrint (0x7FFFF * 0.995 * sin (4 * M_PI * k / BUFFER_SIZE)) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: test_write_short_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_INT_FLOAT_WRITE, NULL, SF_TRUE) ; cannam@85: test_write_short_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_INT_FLOAT_WRITE, NULL, SF_FALSE) ; cannam@85: test_write_short_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != 3 * BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, 3 * BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: /* Check the first section. */ cannam@85: test_read_double_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value < 1000.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) < 1000.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the second section. */ cannam@85: test_read_double_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value > 1.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) > 1.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the third section. */ cannam@85: test_read_double_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value < 1000.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) < 1000.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: sf_close (file) ; cannam@85: cannam@85: unlink (filename) ; cannam@85: puts ("ok") ; cannam@85: } /* short_dbl_scale_write_test */ cannam@85: cannam@85: static void int_flt_scale_write_test (const char *filename, int filetype) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int *data_out ; cannam@85: float *data_in, max_value ; cannam@85: int k ; cannam@85: cannam@85: print_test_name ("int_flt_clip_write_test", filename) ; cannam@85: cannam@85: data_out = buffer_out.i ; cannam@85: data_in = buffer_in.flt ; cannam@85: cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: data_out [k] = lrintf (0x7FFFFFFF * 0.995 * sin (4 * M_PI * k / BUFFER_SIZE)) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: test_write_int_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_INT_FLOAT_WRITE, NULL, SF_TRUE) ; cannam@85: test_write_int_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_INT_FLOAT_WRITE, NULL, SF_FALSE) ; cannam@85: test_write_int_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != 3 * BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, 3 * BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: /* Check the first section. */ cannam@85: test_read_float_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value < 1000.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) < 1000.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the second section. */ cannam@85: test_read_float_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value > 1.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) > 1.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the third section. */ cannam@85: test_read_float_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value < 1000.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) < 1000.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: sf_close (file) ; cannam@85: cannam@85: unlink (filename) ; cannam@85: puts ("ok") ; cannam@85: } /* int_flt_scale_write_test */ cannam@85: static void int_dbl_scale_write_test (const char *filename, int filetype) cannam@85: { SNDFILE *file ; cannam@85: SF_INFO sfinfo ; cannam@85: int *data_out ; cannam@85: double *data_in, max_value ; cannam@85: int k ; cannam@85: cannam@85: print_test_name ("int_dbl_clip_write_test", filename) ; cannam@85: cannam@85: data_out = buffer_out.i ; cannam@85: data_in = buffer_in.dbl ; cannam@85: cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: data_out [k] = lrint (0x7FFFFFFF * 0.995 * sin (4 * M_PI * k / BUFFER_SIZE)) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: sfinfo.samplerate = 44100 ; cannam@85: sfinfo.frames = 123456789 ; /* Wrong length. Library should correct this on sf_close. */ cannam@85: sfinfo.channels = 1 ; cannam@85: sfinfo.format = filetype ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_WRITE, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: test_write_int_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_INT_FLOAT_WRITE, NULL, SF_TRUE) ; cannam@85: test_write_int_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_command (file, SFC_SET_SCALE_INT_FLOAT_WRITE, NULL, SF_FALSE) ; cannam@85: test_write_int_or_die (file, 0, data_out, BUFFER_SIZE, __LINE__) ; cannam@85: sf_close (file) ; cannam@85: cannam@85: memset (&sfinfo, 0, sizeof (sfinfo)) ; cannam@85: cannam@85: file = test_open_file_or_die (filename, SFM_READ, &sfinfo, SF_TRUE, __LINE__) ; cannam@85: cannam@85: sfinfo.format &= (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK) ; cannam@85: cannam@85: if (sfinfo.format != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK))) cannam@85: { printf ("\n\nLine %d: Returned format incorrect (0x%08X => 0x%08X).\n\n", __LINE__, filetype, sfinfo.format) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.frames != 3 * BUFFER_SIZE) cannam@85: { printf ("\n\nLine %d: Incorrect number of frames in file (%d => %ld).\n\n", __LINE__, 3 * BUFFER_SIZE, SF_COUNT_TO_LONG (sfinfo.frames)) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: if (sfinfo.channels != 1) cannam@85: { printf ("\n\nLine %d: Incorrect number of channels in file.\n\n", __LINE__) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: check_log_buffer_or_die (file, __LINE__) ; cannam@85: cannam@85: /* Check the first section. */ cannam@85: test_read_double_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value < 1000.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) < 1000.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the second section. */ cannam@85: test_read_double_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value > 1.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) > 1.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: /* Check the third section. */ cannam@85: test_read_double_or_die (file, 0, data_in, BUFFER_SIZE, __LINE__) ; cannam@85: cannam@85: max_value = 0.0 ; cannam@85: for (k = 0 ; k < BUFFER_SIZE ; k++) cannam@85: max_value = (max_value > fabs (data_in [k])) ? max_value : fabs (data_in [k]) ; cannam@85: cannam@85: if (max_value < 1000.0) cannam@85: { printf ("\n\nLine %d: Max value (%f) < 1000.0.\n\n", __LINE__, max_value) ; cannam@85: exit (1) ; cannam@85: } ; cannam@85: cannam@85: sf_close (file) ; cannam@85: cannam@85: unlink (filename) ; cannam@85: puts ("ok") ; cannam@85: } /* int_dbl_scale_write_test */ cannam@85: cannam@85: cannam@85: