Bump version numbers for 3.13
[maemo-rb.git] / apps / plugins / test_sampr.c
blobfc2f695c70bb9273b0c1f1520761209e6e1c081f
1 /***************************************************************************
2 * __________ __ ___.
3 * Open \______ \ ____ ____ | | _\_ |__ _______ ___
4 * Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
5 * Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
6 * Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
7 * \/ \/ \/ \/ \/
8 * $Id$
10 * Copyright (C) 2006 Michael Sevakis
12 * This program is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU General Public License
14 * as published by the Free Software Foundation; either version 2
15 * of the License, or (at your option) any later version.
17 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
18 * KIND, either express or implied.
20 ****************************************************************************/
21 #include "plugin.h"
23 /* This plugin generates a 1kHz tone + noise in order to quickly verify
24 * hardware samplerate setup is operating correctly.
26 * While switching to different frequencies, the pitch of the tone should
27 * remain constant whereas the upper harmonics of the noise should vary
28 * with sample rate.
32 static int hw_freq IDATA_ATTR = HW_FREQ_DEFAULT;
33 static unsigned long hw_sampr IDATA_ATTR = HW_SAMPR_DEFAULT;
35 static int gen_thread_stack[DEFAULT_STACK_SIZE/sizeof(int)] IBSS_ATTR;
36 static bool gen_quit IBSS_ATTR;
37 static unsigned int gen_thread_id;
39 #define OUTPUT_CHUNK_COUNT (1 << 1)
40 #define OUTPUT_CHUNK_MASK (OUTPUT_CHUNK_COUNT-1)
41 #define OUTPUT_CHUNK_SAMPLES 1152
42 #define OUTPUT_CHUNK_SIZE (OUTPUT_CHUNK_SAMPLES*sizeof(int16_t)*2)
43 static uint16_t output_buf[OUTPUT_CHUNK_COUNT][OUTPUT_CHUNK_SAMPLES*2]
44 __attribute__((aligned(4)));
45 static int output_head IBSS_ATTR;
46 static int output_tail IBSS_ATTR;
47 static int output_step IBSS_ATTR;
49 static uint32_t gen_phase_step IBSS_ATTR;
50 static const uint32_t gen_frequency = 1000;
52 /* fsin shamelessly stolen from signal_gen.c by Thom Johansen (preglow) */
54 /* Good quality sine calculated by linearly interpolating
55 * a 128 sample sine table. First harmonic has amplitude of about -84 dB.
56 * phase has range from 0 to 0xffffffff, representing 0 and
57 * 2*pi respectively.
58 * Return value is a signed value from LONG_MIN to LONG_MAX, representing
59 * -1 and 1 respectively.
61 static int16_t ICODE_ATTR fsin(uint32_t phase)
63 /* 128 sixteen bit sine samples + guard point */
64 static const int16_t sinetab[129] ICONST_ATTR =
66 0, 1607, 3211, 4807, 6392, 7961, 9511, 11038,
67 12539, 14009, 15446, 16845, 18204, 19519, 20787, 22004,
68 23169, 24278, 25329, 26318, 27244, 28105, 28897, 29621,
69 30272, 30851, 31356, 31785, 32137, 32412, 32609, 32727,
70 32767, 32727, 32609, 32412, 32137, 31785, 31356, 30851,
71 30272, 29621, 28897, 28105, 27244, 26318, 25329, 24278,
72 23169, 22004, 20787, 19519, 18204, 16845, 15446, 14009,
73 12539, 11038, 9511, 7961, 6392, 4807, 3211, 1607,
74 0, -1607, -3211, -4807, -6392, -7961, -9511, -11038,
75 -12539, -14009, -15446, -16845, -18204, -19519, -20787, -22004,
76 -23169, -24278, -25329, -26318, -27244, -28105, -28897, -29621,
77 -30272, -30851, -31356, -31785, -32137, -32412, -32609, -32727,
78 -32767, -32727, -32609, -32412, -32137, -31785, -31356, -30851,
79 -30272, -29621, -28897, -28105, -27244, -26318, -25329, -24278,
80 -23169, -22004, -20787, -19519, -18204, -16845, -15446, -14009,
81 -12539, -11038, -9511, -7961, -6392, -4807, -3211, -1607,
85 unsigned int pos = phase >> 25;
86 unsigned short frac = (phase & 0x01ffffff) >> 9;
87 short diff = sinetab[pos + 1] - sinetab[pos];
89 return sinetab[pos] + (frac*diff >> 16);
92 /* ISR handler to get next block of data */
93 static void get_more(const void **start, size_t *size)
95 /* Free previous buffer */
96 output_head += output_step;
97 output_step = 0;
99 *start = output_buf[output_head & OUTPUT_CHUNK_MASK];
100 *size = OUTPUT_CHUNK_SIZE;
102 /* Keep repeating previous if source runs low */
103 if (output_head != output_tail)
104 output_step = 1;
107 static void ICODE_ATTR gen_thread_func(void)
109 uint32_t gen_random = *rb->current_tick;
110 uint32_t gen_phase = 0;
112 while (!gen_quit)
114 int16_t *p = output_buf[output_tail & OUTPUT_CHUNK_MASK];
115 int i = OUTPUT_CHUNK_SAMPLES;
117 while (output_tail - output_head >= OUTPUT_CHUNK_COUNT)
119 rb->sleep(0);
120 if (gen_quit)
121 return;
124 while (--i >= 0)
126 int32_t val = fsin(gen_phase);
127 int32_t rnd = (int16_t)gen_random;
129 gen_random = gen_random*0x0019660dL + 0x3c6ef35fL;
131 val = (rnd + 2*val) / 3;
133 *p++ = val;
134 *p++ = val;
136 gen_phase += gen_phase_step;
139 output_tail++;
141 rb->yield();
145 static void update_gen_step(void)
147 gen_phase_step = 0x100000000ull*gen_frequency / hw_sampr;
150 static void output_clear(void)
152 rb->pcm_play_lock();
154 rb->memset(output_buf, 0, sizeof (output_buf));
155 output_head = 0;
156 output_tail = 0;
158 rb->pcm_play_unlock();
161 /* Called to switch samplerate on the fly */
162 static void set_frequency(int index)
164 hw_freq = index;
165 hw_sampr = rb->hw_freq_sampr[index];
167 output_clear();
168 update_gen_step();
170 rb->pcm_set_frequency(hw_sampr);
171 rb->pcm_apply_settings();
174 #ifndef HAVE_VOLUME_IN_LIST
175 static void set_volume(int value)
177 rb->global_settings->volume = value;
178 rb->sound_set(SOUND_VOLUME, value);
181 static const char *format_volume(char *buf, size_t len, int value,
182 const char *unit)
184 (void)unit;
185 rb->snprintf(buf, len, "%d %s", rb->sound_val2phys(SOUND_VOLUME, value),
186 rb->sound_unit(SOUND_VOLUME));
187 return buf;
189 #endif /* HAVE_VOLUME_IN_LIST */
191 static void play_tone(bool volume_set)
193 static struct opt_items names[HW_NUM_FREQ] =
195 HW_HAVE_96_([HW_FREQ_96] = { "96kHz", -1 },)
196 HW_HAVE_88_([HW_FREQ_88] = { "88.2kHz", -1 },)
197 HW_HAVE_64_([HW_FREQ_64] = { "64kHz", -1 },)
198 HW_HAVE_48_([HW_FREQ_48] = { "48kHz", -1 },)
199 HW_HAVE_44_([HW_FREQ_44] = { "44.1kHz", -1 },)
200 HW_HAVE_32_([HW_FREQ_32] = { "32kHz", -1 },)
201 HW_HAVE_24_([HW_FREQ_24] = { "24kHz", -1 },)
202 HW_HAVE_22_([HW_FREQ_22] = { "22.05kHz", -1 },)
203 HW_HAVE_16_([HW_FREQ_16] = { "16kHz", -1 },)
204 HW_HAVE_12_([HW_FREQ_12] = { "12kHz", -1 },)
205 HW_HAVE_11_([HW_FREQ_11] = { "11.025kHz", -1 },)
206 HW_HAVE_8_( [HW_FREQ_8 ] = { "8kHz", -1 },)
209 int freq = hw_freq;
211 rb->audio_stop();
213 #if INPUT_SRC_CAPS != 0
214 /* Select playback */
215 rb->audio_set_input_source(AUDIO_SRC_PLAYBACK, SRCF_PLAYBACK);
216 #endif
218 #ifdef HAVE_ADJUSTABLE_CPU_FREQ
219 rb->cpu_boost(true);
220 #endif
222 rb->pcm_set_frequency(rb->hw_freq_sampr[freq]);
224 #if INPUT_SRC_CAPS != 0
225 /* Recordable targets can play back from other sources */
226 rb->audio_set_output_source(AUDIO_SRC_PLAYBACK);
227 #endif
229 gen_quit = false;
230 output_clear();
231 update_gen_step();
233 gen_thread_id = rb->create_thread(gen_thread_func, gen_thread_stack,
234 sizeof(gen_thread_stack), 0,
235 "test_sampr generator"
236 IF_PRIO(, PRIORITY_PLAYBACK)
237 IF_COP(, CPU));
239 rb->pcm_play_data(get_more, NULL, NULL, 0);
241 #ifndef HAVE_VOLUME_IN_LIST
242 if (volume_set)
244 int volume = rb->global_settings->volume;
246 rb->set_int("Volume", NULL, -1, &volume,
247 set_volume, 1, rb->sound_min(SOUND_VOLUME),
248 rb->sound_max(SOUND_VOLUME), format_volume);
250 else
251 #endif /* HAVE_VOLUME_IN_LIST */
253 rb->set_option("Sample Rate", &freq, INT, names,
254 HW_NUM_FREQ, set_frequency);
255 (void)volume_set;
258 gen_quit = true;
260 rb->thread_wait(gen_thread_id);
262 rb->pcm_play_stop();
264 #ifdef HAVE_ADJUSTABLE_CPU_FREQ
265 rb->cpu_boost(false);
266 #endif
268 /* restore default - user of apis is responsible for restoring
269 default state - normally playback at 44100Hz */
270 rb->pcm_set_frequency(HW_FREQ_DEFAULT);
273 /* Tests hardware sample rate switching */
274 /* TODO: needs a volume control */
275 enum plugin_status plugin_start(const void *parameter)
277 enum
279 __TEST_SAMPR_MENUITEM_FIRST = -1,
280 #ifndef HAVE_VOLUME_IN_LIST
281 MENU_VOL_SET,
282 #endif /* HAVE_VOLUME_IN_LIST */
283 MENU_SAMPR_SET,
284 MENU_QUIT,
287 MENUITEM_STRINGLIST(menu, "Test Sampr Menu", NULL,
288 #ifndef HAVE_VOLUME_IN_LIST
289 "Set Volume",
290 #endif /* HAVE_VOLUME_IN_LIST */
291 "Set Samplerate", "Quit");
293 bool exit = false;
294 int selected = 0;
296 /* Disable all talking before initializing IRAM */
297 rb->talk_disable(true);
299 while (!exit)
301 int result = rb->do_menu(&menu, &selected, NULL, false);
303 switch (result)
305 #ifndef HAVE_VOLUME_IN_LIST
306 case MENU_VOL_SET:
307 play_tone(true);
308 break;
309 #endif /* HAVE_VOLUME_IN_LIST */
310 case MENU_SAMPR_SET:
311 play_tone(false);
312 break;
314 case MENU_QUIT:
315 exit = true;
316 break;
320 rb->talk_disable(false);
322 return PLUGIN_OK;
323 (void)parameter;