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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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media: vidtv: Add a music instead of playing a single tone
Keep playing a single tone is not too nice, and prevents checking some weird things. So, instead, implement a simple tone generator, changing the code to play a public domain song (5th Symphony of Beethoven), using sinusoidal waves. Signed-off-by: Mauro Carvalho Chehab <mchehab+huawei@kernel.org>
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@ -28,6 +28,73 @@ struct vidtv_access_unit {
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struct vidtv_access_unit *next;
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};
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/* Some musical notes, used by a tone generator */
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enum musical_notes {
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NOTE_SILENT = 0,
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NOTE_C_2 = 65,
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NOTE_CS_2 = 69,
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NOTE_D_2 = 73,
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NOTE_DS_2 = 78,
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NOTE_E_2 = 82,
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NOTE_F_2 = 87,
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NOTE_FS_2 = 93,
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NOTE_G_2 = 98,
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NOTE_GS_2 = 104,
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NOTE_A_2 = 110,
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NOTE_AS_2 = 117,
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NOTE_B_2 = 123,
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NOTE_C_3 = 131,
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NOTE_CS_3 = 139,
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NOTE_D_3 = 147,
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NOTE_DS_3 = 156,
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NOTE_E_3 = 165,
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NOTE_F_3 = 175,
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NOTE_FS_3 = 185,
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NOTE_G_3 = 196,
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NOTE_GS_3 = 208,
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NOTE_A_3 = 220,
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NOTE_AS_3 = 233,
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NOTE_B_3 = 247,
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NOTE_C_4 = 262,
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NOTE_CS_4 = 277,
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NOTE_D_4 = 294,
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NOTE_DS_4 = 311,
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NOTE_E_4 = 330,
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NOTE_F_4 = 349,
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NOTE_FS_4 = 370,
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NOTE_G_4 = 392,
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NOTE_GS_4 = 415,
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NOTE_A_4 = 440,
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NOTE_AS_4 = 466,
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NOTE_B_4 = 494,
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NOTE_C_5 = 523,
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NOTE_CS_5 = 554,
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NOTE_D_5 = 587,
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NOTE_DS_5 = 622,
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NOTE_E_5 = 659,
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NOTE_F_5 = 698,
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NOTE_FS_5 = 740,
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NOTE_G_5 = 784,
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NOTE_GS_5 = 831,
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NOTE_A_5 = 880,
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NOTE_AS_5 = 932,
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NOTE_B_5 = 988,
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NOTE_C_6 = 1047,
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NOTE_CS_6 = 1109,
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NOTE_D_6 = 1175,
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NOTE_DS_6 = 1245,
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NOTE_E_6 = 1319,
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NOTE_F_6 = 1397,
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NOTE_FS_6 = 1480,
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NOTE_G_6 = 1568,
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NOTE_GS_6 = 1661,
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NOTE_A_6 = 1760,
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NOTE_AS_6 = 1865,
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NOTE_B_6 = 1976,
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NOTE_C_7 = 2093
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};
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/**
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* struct vidtv_encoder - A generic encoder type.
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* @id: So we can cast to a concrete implementation when needed.
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@ -64,6 +131,9 @@ struct vidtv_encoder {
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u32 encoder_buf_offset;
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u64 sample_count;
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int last_duration;
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int note_offset;
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enum musical_notes last_tone;
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struct vidtv_access_unit *access_units;
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@ -40,6 +40,9 @@
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#define S302M_BLOCK_SZ 192
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#define S302M_SIN_LUT_NUM_ELEM 1024
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/* Used by the tone generator: number of samples for PI */
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#define PI 180
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static const u8 reverse[256] = {
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/* from ffmpeg */
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0x00, 0x80, 0x40, 0xC0, 0x20, 0xA0, 0x60, 0xE0, 0x10, 0x90, 0x50, 0xD0,
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@ -66,10 +69,74 @@ static const u8 reverse[256] = {
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0x3F, 0xBF, 0x7F, 0xFF,
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};
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/* Used by the tone generator */
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#define SAMPLE_RATE 48000
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#define PI 180
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#define NOTE_A4 440
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struct tone_duration {
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enum musical_notes note;
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int duration;
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};
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#define COMPASS 120 /* beats per minute (Allegro) */
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static const struct tone_duration beethoven_5th_symphony[] = {
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{ NOTE_E_6, 128}, { NOTE_DS_6, 128}, { NOTE_E_6, 128},
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{ NOTE_DS_6, 128}, { NOTE_E_6, 128}, { NOTE_B_5, 128},
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{ NOTE_D_6, 128}, { NOTE_C_6, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_C_5, 128},
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{ NOTE_E_5, 128}, { NOTE_A_5, 128}, { NOTE_E_3, 128},
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{ NOTE_E_4, 128}, { NOTE_GS_4, 128}, { NOTE_E_5, 128},
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{ NOTE_GS_5, 128}, { NOTE_B_5, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_E_5, 128},
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{ NOTE_E_6, 128}, { NOTE_DS_6, 128}, { NOTE_E_6, 128},
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{ NOTE_DS_6, 128}, { NOTE_E_6, 128}, { NOTE_B_5, 128},
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{ NOTE_D_6, 128}, { NOTE_C_6, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_C_5, 128},
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{ NOTE_E_5, 128}, { NOTE_A_5, 128}, { NOTE_E_3, 128},
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{ NOTE_E_4, 128}, { NOTE_GS_4, 128}, { NOTE_E_5, 128},
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{ NOTE_C_6, 128}, { NOTE_B_5, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_SILENT, 128},
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{ NOTE_E_6, 128}, { NOTE_DS_6, 128}, { NOTE_E_6, 128},
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{ NOTE_DS_6, 128}, { NOTE_E_6, 128}, { NOTE_B_5, 128},
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{ NOTE_D_6, 128}, { NOTE_C_6, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_C_5, 128},
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{ NOTE_E_5, 128}, { NOTE_A_5, 128}, { NOTE_E_3, 128},
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{ NOTE_E_4, 128}, { NOTE_GS_4, 128}, { NOTE_E_5, 128},
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{ NOTE_GS_5, 128}, { NOTE_B_5, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_E_5, 128},
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{ NOTE_E_6, 128}, { NOTE_DS_6, 128}, { NOTE_E_6, 128},
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{ NOTE_DS_6, 128}, { NOTE_E_6, 128}, { NOTE_B_5, 128},
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{ NOTE_D_6, 128}, { NOTE_C_6, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_C_5, 128},
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{ NOTE_E_5, 128}, { NOTE_A_5, 128}, { NOTE_E_3, 128},
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{ NOTE_E_4, 128}, { NOTE_GS_4, 128}, { NOTE_E_5, 128},
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{ NOTE_C_6, 128}, { NOTE_B_5, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_B_4, 128},
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{ NOTE_C_5, 128}, { NOTE_D_5, 128}, { NOTE_C_4, 128},
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{ NOTE_G_4, 128}, { NOTE_C_5, 128}, { NOTE_G_4, 128},
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{ NOTE_F_5, 128}, { NOTE_E_5, 128}, { NOTE_G_3, 128},
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{ NOTE_G_4, 128}, { NOTE_B_3, 128}, { NOTE_F_4, 128},
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{ NOTE_E_5, 128}, { NOTE_D_5, 128}, { NOTE_A_3, 128},
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{ NOTE_E_4, 128}, { NOTE_A_4, 128}, { NOTE_E_4, 128},
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{ NOTE_D_5, 128}, { NOTE_C_5, 128}, { NOTE_E_3, 128},
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{ NOTE_E_4, 128}, { NOTE_E_5, 255}, { NOTE_E_6, 128},
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{ NOTE_E_5, 128}, { NOTE_E_6, 128}, { NOTE_E_5, 255},
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{ NOTE_DS_5, 128}, { NOTE_E_5, 128}, { NOTE_DS_6, 128},
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{ NOTE_E_6, 128}, { NOTE_DS_5, 128}, { NOTE_E_5, 128},
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{ NOTE_DS_6, 128}, { NOTE_E_6, 128}, { NOTE_DS_6, 128},
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{ NOTE_E_6, 128}, { NOTE_DS_6, 128}, { NOTE_E_6, 128},
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{ NOTE_B_5, 128}, { NOTE_D_6, 128}, { NOTE_C_6, 128},
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{ NOTE_A_3, 128}, { NOTE_E_4, 128}, { NOTE_A_4, 128},
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{ NOTE_C_5, 128}, { NOTE_E_5, 128}, { NOTE_A_5, 128},
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{ NOTE_E_3, 128}, { NOTE_E_4, 128}, { NOTE_GS_4, 128},
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{ NOTE_E_5, 128}, { NOTE_GS_5, 128}, { NOTE_B_5, 128},
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{ NOTE_A_3, 128}, { NOTE_E_4, 128}, { NOTE_A_4, 128},
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{ NOTE_E_5, 128}, { NOTE_E_6, 128}, { NOTE_DS_6, 128},
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{ NOTE_E_6, 128}, { NOTE_DS_6, 128}, { NOTE_E_6, 128},
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{ NOTE_B_5, 128}, { NOTE_D_6, 128}, { NOTE_C_6, 128},
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{ NOTE_A_3, 128}, { NOTE_E_4, 128}, { NOTE_A_4, 128},
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{ NOTE_C_5, 128}, { NOTE_E_5, 128}, { NOTE_A_5, 128},
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{ NOTE_E_3, 128}, { NOTE_E_4, 128}, { NOTE_GS_4, 128},
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{ NOTE_E_5, 128}, { NOTE_C_6, 128}, { NOTE_B_5, 128},
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{ NOTE_C_5, 255}, { NOTE_C_5, 255}, { NOTE_SILENT, 512},
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};
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static struct vidtv_access_unit *vidtv_s302m_access_unit_init(struct vidtv_access_unit *head)
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{
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@ -187,15 +254,33 @@ static u16 vidtv_s302m_get_sample(struct vidtv_encoder *e)
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if (!e->src_buf) {
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/*
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* Simple tone generator. For now, just generates a 440 Hz
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* sinusoidal wave.
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* Simple tone generator: play the tones at the
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* beethoven_5th_symphony array.
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*/
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pos = (2 * PI * e->src_buf_offset * NOTE_A4 / SAMPLE_RATE);
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if (e->last_duration <= 0) {
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if (e->src_buf_offset >= ARRAY_SIZE(beethoven_5th_symphony))
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e->src_buf_offset = 0;
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e->last_tone = beethoven_5th_symphony[e->src_buf_offset].note;
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e->last_duration = beethoven_5th_symphony[e->src_buf_offset].duration * S302M_SAMPLING_RATE_HZ / COMPASS / 5;
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e->src_buf_offset++;
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e->note_offset = 0;
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} else {
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e->last_duration--;
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}
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/* Handle silent */
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if (!e->last_tone) {
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e->src_buf_offset = 0;
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return 0x8000;
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}
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pos = (2 * PI * e->note_offset * e->last_tone / S302M_SAMPLING_RATE_HZ);
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if (pos == 360)
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e->src_buf_offset = 0;
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e->note_offset = 0;
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else
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e->src_buf_offset++;
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e->note_offset++;
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return (fixp_sin32(pos % (2 * PI)) >> 16) + 0x8000;
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}
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@ -388,6 +473,7 @@ struct vidtv_encoder
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e->encoder_buf_offset = 0;
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e->sample_count = 0;
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e->last_duration = 0;
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e->src_buf = (args.src_buf) ? args.src_buf : NULL;
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e->src_buf_sz = (args.src_buf) ? args.src_buf_sz : 0;
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