1*53ee8cc1Swenshuai.xi #ifndef SOUNDCARD_H 2*53ee8cc1Swenshuai.xi #define SOUNDCARD_H 3*53ee8cc1Swenshuai.xi /* 4*53ee8cc1Swenshuai.xi * Copyright by Hannu Savolainen 1993-1997 5*53ee8cc1Swenshuai.xi * 6*53ee8cc1Swenshuai.xi * Redistribution and use in source and binary forms, with or without 7*53ee8cc1Swenshuai.xi * modification, are permitted provided that the following conditions are 8*53ee8cc1Swenshuai.xi * met: 1. Redistributions of source code must retain the above copyright 9*53ee8cc1Swenshuai.xi * notice, this list of conditions and the following disclaimer. 2. 10*53ee8cc1Swenshuai.xi * Redistributions in binary form must reproduce the above copyright notice, 11*53ee8cc1Swenshuai.xi * this list of conditions and the following disclaimer in the documentation 12*53ee8cc1Swenshuai.xi * and/or other materials provided with the distribution. 13*53ee8cc1Swenshuai.xi * 14*53ee8cc1Swenshuai.xi * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND ANY 15*53ee8cc1Swenshuai.xi * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED 16*53ee8cc1Swenshuai.xi * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE 17*53ee8cc1Swenshuai.xi * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR 18*53ee8cc1Swenshuai.xi * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 19*53ee8cc1Swenshuai.xi * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR 20*53ee8cc1Swenshuai.xi * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER 21*53ee8cc1Swenshuai.xi * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 22*53ee8cc1Swenshuai.xi * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 23*53ee8cc1Swenshuai.xi * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 24*53ee8cc1Swenshuai.xi * SUCH DAMAGE. 25*53ee8cc1Swenshuai.xi */ 26*53ee8cc1Swenshuai.xi 27*53ee8cc1Swenshuai.xi 28*53ee8cc1Swenshuai.xi /* 29*53ee8cc1Swenshuai.xi * OSS interface version. With versions earlier than 3.6 this value is 30*53ee8cc1Swenshuai.xi * an integer with value less than 361. In versions 3.6 and later 31*53ee8cc1Swenshuai.xi * it's a six digit hexadecimal value. For example value 32*53ee8cc1Swenshuai.xi * of 0x030600 represents OSS version 3.6.0. 33*53ee8cc1Swenshuai.xi * Use ioctl(fd, OSS_GETVERSION, &int) to get the version number of 34*53ee8cc1Swenshuai.xi * the currently active driver. 35*53ee8cc1Swenshuai.xi */ 36*53ee8cc1Swenshuai.xi #define SOUND_VERSION 0x030802 37*53ee8cc1Swenshuai.xi #define OPEN_SOUND_SYSTEM 38*53ee8cc1Swenshuai.xi 39*53ee8cc1Swenshuai.xi /* In Linux we need to be prepared for cross compiling */ 40*53ee8cc1Swenshuai.xi #include <linux/ioctl.h> 41*53ee8cc1Swenshuai.xi 42*53ee8cc1Swenshuai.xi /* Endian macros. */ 43*53ee8cc1Swenshuai.xi # include <endian.h> 44*53ee8cc1Swenshuai.xi 45*53ee8cc1Swenshuai.xi /* 46*53ee8cc1Swenshuai.xi * Supported card ID numbers (Should be somewhere else?) 47*53ee8cc1Swenshuai.xi */ 48*53ee8cc1Swenshuai.xi 49*53ee8cc1Swenshuai.xi #define SNDCARD_ADLIB 1 50*53ee8cc1Swenshuai.xi #define SNDCARD_SB 2 51*53ee8cc1Swenshuai.xi #define SNDCARD_PAS 3 52*53ee8cc1Swenshuai.xi #define SNDCARD_GUS 4 53*53ee8cc1Swenshuai.xi #define SNDCARD_MPU401 5 54*53ee8cc1Swenshuai.xi #define SNDCARD_SB16 6 55*53ee8cc1Swenshuai.xi #define SNDCARD_SB16MIDI 7 56*53ee8cc1Swenshuai.xi #define SNDCARD_UART6850 8 57*53ee8cc1Swenshuai.xi #define SNDCARD_GUS16 9 58*53ee8cc1Swenshuai.xi #define SNDCARD_MSS 10 59*53ee8cc1Swenshuai.xi #define SNDCARD_PSS 11 60*53ee8cc1Swenshuai.xi #define SNDCARD_SSCAPE 12 61*53ee8cc1Swenshuai.xi #define SNDCARD_PSS_MPU 13 62*53ee8cc1Swenshuai.xi #define SNDCARD_PSS_MSS 14 63*53ee8cc1Swenshuai.xi #define SNDCARD_SSCAPE_MSS 15 64*53ee8cc1Swenshuai.xi #define SNDCARD_TRXPRO 16 65*53ee8cc1Swenshuai.xi #define SNDCARD_TRXPRO_SB 17 66*53ee8cc1Swenshuai.xi #define SNDCARD_TRXPRO_MPU 18 67*53ee8cc1Swenshuai.xi #define SNDCARD_MAD16 19 68*53ee8cc1Swenshuai.xi #define SNDCARD_MAD16_MPU 20 69*53ee8cc1Swenshuai.xi #define SNDCARD_CS4232 21 70*53ee8cc1Swenshuai.xi #define SNDCARD_CS4232_MPU 22 71*53ee8cc1Swenshuai.xi #define SNDCARD_MAUI 23 72*53ee8cc1Swenshuai.xi #define SNDCARD_PSEUDO_MSS 24 73*53ee8cc1Swenshuai.xi #define SNDCARD_GUSPNP 25 74*53ee8cc1Swenshuai.xi #define SNDCARD_UART401 26 75*53ee8cc1Swenshuai.xi /* Sound card numbers 27 to N are reserved. Don't add more numbers here. */ 76*53ee8cc1Swenshuai.xi 77*53ee8cc1Swenshuai.xi /*********************************** 78*53ee8cc1Swenshuai.xi * IOCTL Commands for /dev/sequencer 79*53ee8cc1Swenshuai.xi */ 80*53ee8cc1Swenshuai.xi 81*53ee8cc1Swenshuai.xi #ifndef _SIOWR 82*53ee8cc1Swenshuai.xi #if defined(_IOWR) && (defined(_AIX) || (!defined(sun) && !defined(sparc) && !defined(__sparc__) && !defined(__INCioctlh) && !defined(__Lynx__))) 83*53ee8cc1Swenshuai.xi /* Use already defined ioctl defines if they exist (except with Sun or Sparc) */ 84*53ee8cc1Swenshuai.xi #define SIOCPARM_MASK IOCPARM_MASK 85*53ee8cc1Swenshuai.xi #define SIOC_VOID IOC_VOID 86*53ee8cc1Swenshuai.xi #define SIOC_OUT IOC_OUT 87*53ee8cc1Swenshuai.xi #define SIOC_IN IOC_IN 88*53ee8cc1Swenshuai.xi #define SIOC_INOUT IOC_INOUT 89*53ee8cc1Swenshuai.xi #define _SIOC_SIZE _IOC_SIZE 90*53ee8cc1Swenshuai.xi #define _SIOC_DIR _IOC_DIR 91*53ee8cc1Swenshuai.xi #define _SIOC_NONE _IOC_NONE 92*53ee8cc1Swenshuai.xi #define _SIOC_READ _IOC_READ 93*53ee8cc1Swenshuai.xi #define _SIOC_WRITE _IOC_WRITE 94*53ee8cc1Swenshuai.xi #define _SIO _IO 95*53ee8cc1Swenshuai.xi #define _SIOR _IOR 96*53ee8cc1Swenshuai.xi #define _SIOW _IOW 97*53ee8cc1Swenshuai.xi #define _SIOWR _IOWR 98*53ee8cc1Swenshuai.xi #else 99*53ee8cc1Swenshuai.xi 100*53ee8cc1Swenshuai.xi /* Ioctl's have the command encoded in the lower word, 101*53ee8cc1Swenshuai.xi * and the size of any in or out parameters in the upper 102*53ee8cc1Swenshuai.xi * word. The high 2 bits of the upper word are used 103*53ee8cc1Swenshuai.xi * to encode the in/out status of the parameter; for now 104*53ee8cc1Swenshuai.xi * we restrict parameters to at most 8191 bytes. 105*53ee8cc1Swenshuai.xi */ 106*53ee8cc1Swenshuai.xi /* #define SIOCTYPE (0xff<<8) */ 107*53ee8cc1Swenshuai.xi #define SIOCPARM_MASK 0x1fff /* parameters must be < 8192 bytes */ 108*53ee8cc1Swenshuai.xi #define SIOC_VOID 0x00000000 /* no parameters */ 109*53ee8cc1Swenshuai.xi #define SIOC_OUT 0x20000000 /* copy out parameters */ 110*53ee8cc1Swenshuai.xi #define SIOC_IN 0x40000000 /* copy in parameters */ 111*53ee8cc1Swenshuai.xi #define SIOC_INOUT (SIOC_IN|SIOC_OUT) 112*53ee8cc1Swenshuai.xi /* the 0x20000000 is so we can distinguish new ioctl's from old */ 113*53ee8cc1Swenshuai.xi #define _SIO(x,y) ((int)(SIOC_VOID|(x<<8)|y)) 114*53ee8cc1Swenshuai.xi #define _SIOR(x,y,t) ((int)(SIOC_OUT|((sizeof(t)&SIOCPARM_MASK)<<16)|(x<<8)|y)) 115*53ee8cc1Swenshuai.xi #define _SIOW(x,y,t) ((int)(SIOC_IN|((sizeof(t)&SIOCPARM_MASK)<<16)|(x<<8)|y)) 116*53ee8cc1Swenshuai.xi /* this should be _SIORW, but stdio got there first */ 117*53ee8cc1Swenshuai.xi #define _SIOWR(x,y,t) ((int)(SIOC_INOUT|((sizeof(t)&SIOCPARM_MASK)<<16)|(x<<8)|y)) 118*53ee8cc1Swenshuai.xi #define _SIOC_SIZE(x) ((x>>16)&SIOCPARM_MASK) 119*53ee8cc1Swenshuai.xi #define _SIOC_DIR(x) (x & 0xf0000000) 120*53ee8cc1Swenshuai.xi #define _SIOC_NONE SIOC_VOID 121*53ee8cc1Swenshuai.xi #define _SIOC_READ SIOC_OUT 122*53ee8cc1Swenshuai.xi #define _SIOC_WRITE SIOC_IN 123*53ee8cc1Swenshuai.xi # endif /* _IOWR */ 124*53ee8cc1Swenshuai.xi #endif /* !_SIOWR */ 125*53ee8cc1Swenshuai.xi 126*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_RESET _SIO ('Q', 0) 127*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_SYNC _SIO ('Q', 1) 128*53ee8cc1Swenshuai.xi #define SNDCTL_SYNTH_INFO _SIOWR('Q', 2, struct synth_info) 129*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_CTRLRATE _SIOWR('Q', 3, int) /* Set/get timer resolution (HZ) */ 130*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_GETOUTCOUNT _SIOR ('Q', 4, int) 131*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_GETINCOUNT _SIOR ('Q', 5, int) 132*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_PERCMODE _SIOW ('Q', 6, int) 133*53ee8cc1Swenshuai.xi #define SNDCTL_FM_LOAD_INSTR _SIOW ('Q', 7, struct sbi_instrument) /* Obsolete. Don't use!!!!!! */ 134*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_TESTMIDI _SIOW ('Q', 8, int) 135*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_RESETSAMPLES _SIOW ('Q', 9, int) 136*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_NRSYNTHS _SIOR ('Q',10, int) 137*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_NRMIDIS _SIOR ('Q',11, int) 138*53ee8cc1Swenshuai.xi #define SNDCTL_MIDI_INFO _SIOWR('Q',12, struct midi_info) 139*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_THRESHOLD _SIOW ('Q',13, int) 140*53ee8cc1Swenshuai.xi #define SNDCTL_SYNTH_MEMAVL _SIOWR('Q',14, int) /* in=dev#, out=memsize */ 141*53ee8cc1Swenshuai.xi #define SNDCTL_FM_4OP_ENABLE _SIOW ('Q',15, int) /* in=dev# */ 142*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_PANIC _SIO ('Q',17) 143*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_OUTOFBAND _SIOW ('Q',18, struct seq_event_rec) 144*53ee8cc1Swenshuai.xi #define SNDCTL_SEQ_GETTIME _SIOR ('Q',19, int) 145*53ee8cc1Swenshuai.xi #define SNDCTL_SYNTH_ID _SIOWR('Q',20, struct synth_info) 146*53ee8cc1Swenshuai.xi #define SNDCTL_SYNTH_CONTROL _SIOWR('Q',21, struct synth_control) 147*53ee8cc1Swenshuai.xi #define SNDCTL_SYNTH_REMOVESAMPLE _SIOWR('Q',22, struct remove_sample) 148*53ee8cc1Swenshuai.xi 149*53ee8cc1Swenshuai.xi typedef struct synth_control 150*53ee8cc1Swenshuai.xi { 151*53ee8cc1Swenshuai.xi int devno; /* Synthesizer # */ 152*53ee8cc1Swenshuai.xi char data[4000]; /* Device spesific command/data record */ 153*53ee8cc1Swenshuai.xi }synth_control; 154*53ee8cc1Swenshuai.xi 155*53ee8cc1Swenshuai.xi typedef struct remove_sample 156*53ee8cc1Swenshuai.xi { 157*53ee8cc1Swenshuai.xi int devno; /* Synthesizer # */ 158*53ee8cc1Swenshuai.xi int bankno; /* MIDI bank # (0=General MIDI) */ 159*53ee8cc1Swenshuai.xi int instrno; /* MIDI instrument number */ 160*53ee8cc1Swenshuai.xi } remove_sample; 161*53ee8cc1Swenshuai.xi 162*53ee8cc1Swenshuai.xi typedef struct seq_event_rec { 163*53ee8cc1Swenshuai.xi unsigned char arr[8]; 164*53ee8cc1Swenshuai.xi } seq_event_rec; 165*53ee8cc1Swenshuai.xi 166*53ee8cc1Swenshuai.xi #define SNDCTL_TMR_TIMEBASE _SIOWR('T', 1, int) 167*53ee8cc1Swenshuai.xi #define SNDCTL_TMR_START _SIO ('T', 2) 168*53ee8cc1Swenshuai.xi #define SNDCTL_TMR_STOP _SIO ('T', 3) 169*53ee8cc1Swenshuai.xi #define SNDCTL_TMR_CONTINUE _SIO ('T', 4) 170*53ee8cc1Swenshuai.xi #define SNDCTL_TMR_TEMPO _SIOWR('T', 5, int) 171*53ee8cc1Swenshuai.xi #define SNDCTL_TMR_SOURCE _SIOWR('T', 6, int) 172*53ee8cc1Swenshuai.xi # define TMR_INTERNAL 0x00000001 173*53ee8cc1Swenshuai.xi # define TMR_EXTERNAL 0x00000002 174*53ee8cc1Swenshuai.xi # define TMR_MODE_MIDI 0x00000010 175*53ee8cc1Swenshuai.xi # define TMR_MODE_FSK 0x00000020 176*53ee8cc1Swenshuai.xi # define TMR_MODE_CLS 0x00000040 177*53ee8cc1Swenshuai.xi # define TMR_MODE_SMPTE 0x00000080 178*53ee8cc1Swenshuai.xi #define SNDCTL_TMR_METRONOME _SIOW ('T', 7, int) 179*53ee8cc1Swenshuai.xi #define SNDCTL_TMR_SELECT _SIOW ('T', 8, int) 180*53ee8cc1Swenshuai.xi 181*53ee8cc1Swenshuai.xi /* 182*53ee8cc1Swenshuai.xi * Some big endian/little endian handling macros 183*53ee8cc1Swenshuai.xi */ 184*53ee8cc1Swenshuai.xi 185*53ee8cc1Swenshuai.xi #define _LINUX_PATCHKEY_H_INDIRECT 186*53ee8cc1Swenshuai.xi #include <linux/patchkey.h> 187*53ee8cc1Swenshuai.xi #undef _LINUX_PATCHKEY_H_INDIRECT 188*53ee8cc1Swenshuai.xi 189*53ee8cc1Swenshuai.xi #if defined(__BYTE_ORDER) 190*53ee8cc1Swenshuai.xi # if __BYTE_ORDER == __BIG_ENDIAN 191*53ee8cc1Swenshuai.xi # define AFMT_S16_NE AFMT_S16_BE 192*53ee8cc1Swenshuai.xi # elif __BYTE_ORDER == __LITTLE_ENDIAN 193*53ee8cc1Swenshuai.xi # define AFMT_S16_NE AFMT_S16_LE 194*53ee8cc1Swenshuai.xi # else 195*53ee8cc1Swenshuai.xi # error "could not determine byte order" 196*53ee8cc1Swenshuai.xi # endif 197*53ee8cc1Swenshuai.xi #endif 198*53ee8cc1Swenshuai.xi 199*53ee8cc1Swenshuai.xi /* 200*53ee8cc1Swenshuai.xi * Sample loading mechanism for internal synthesizers (/dev/sequencer) 201*53ee8cc1Swenshuai.xi * The following patch_info structure has been designed to support 202*53ee8cc1Swenshuai.xi * Gravis UltraSound. It tries to be universal format for uploading 203*53ee8cc1Swenshuai.xi * sample based patches but is probably too limited. 204*53ee8cc1Swenshuai.xi * 205*53ee8cc1Swenshuai.xi * (PBD) As Hannu guessed, the GUS structure is too limited for 206*53ee8cc1Swenshuai.xi * the WaveFront, but this is the right place for a constant definition. 207*53ee8cc1Swenshuai.xi */ 208*53ee8cc1Swenshuai.xi 209*53ee8cc1Swenshuai.xi struct patch_info { 210*53ee8cc1Swenshuai.xi unsigned short key; /* Use WAVE_PATCH here */ 211*53ee8cc1Swenshuai.xi #define WAVE_PATCH _PATCHKEY(0x04) 212*53ee8cc1Swenshuai.xi #define GUS_PATCH WAVE_PATCH 213*53ee8cc1Swenshuai.xi #define WAVEFRONT_PATCH _PATCHKEY(0x06) 214*53ee8cc1Swenshuai.xi 215*53ee8cc1Swenshuai.xi short device_no; /* Synthesizer number */ 216*53ee8cc1Swenshuai.xi short instr_no; /* Midi pgm# */ 217*53ee8cc1Swenshuai.xi 218*53ee8cc1Swenshuai.xi unsigned int mode; 219*53ee8cc1Swenshuai.xi /* 220*53ee8cc1Swenshuai.xi * The least significant byte has the same format than the GUS .PAT 221*53ee8cc1Swenshuai.xi * files 222*53ee8cc1Swenshuai.xi */ 223*53ee8cc1Swenshuai.xi #define WAVE_16_BITS 0x01 /* bit 0 = 8 or 16 bit wave data. */ 224*53ee8cc1Swenshuai.xi #define WAVE_UNSIGNED 0x02 /* bit 1 = Signed - Unsigned data. */ 225*53ee8cc1Swenshuai.xi #define WAVE_LOOPING 0x04 /* bit 2 = looping enabled-1. */ 226*53ee8cc1Swenshuai.xi #define WAVE_BIDIR_LOOP 0x08 /* bit 3 = Set is bidirectional looping. */ 227*53ee8cc1Swenshuai.xi #define WAVE_LOOP_BACK 0x10 /* bit 4 = Set is looping backward. */ 228*53ee8cc1Swenshuai.xi #define WAVE_SUSTAIN_ON 0x20 /* bit 5 = Turn sustaining on. (Env. pts. 3)*/ 229*53ee8cc1Swenshuai.xi #define WAVE_ENVELOPES 0x40 /* bit 6 = Enable envelopes - 1 */ 230*53ee8cc1Swenshuai.xi #define WAVE_FAST_RELEASE 0x80 /* bit 7 = Shut off immediately after note off */ 231*53ee8cc1Swenshuai.xi /* (use the env_rate/env_offs fields). */ 232*53ee8cc1Swenshuai.xi /* Linux specific bits */ 233*53ee8cc1Swenshuai.xi #define WAVE_VIBRATO 0x00010000 /* The vibrato info is valid */ 234*53ee8cc1Swenshuai.xi #define WAVE_TREMOLO 0x00020000 /* The tremolo info is valid */ 235*53ee8cc1Swenshuai.xi #define WAVE_SCALE 0x00040000 /* The scaling info is valid */ 236*53ee8cc1Swenshuai.xi #define WAVE_FRACTIONS 0x00080000 /* Fraction information is valid */ 237*53ee8cc1Swenshuai.xi /* Reserved bits */ 238*53ee8cc1Swenshuai.xi #define WAVE_ROM 0x40000000 /* For future use */ 239*53ee8cc1Swenshuai.xi #define WAVE_MULAW 0x20000000 /* For future use */ 240*53ee8cc1Swenshuai.xi /* Other bits must be zeroed */ 241*53ee8cc1Swenshuai.xi 242*53ee8cc1Swenshuai.xi int len; /* Size of the wave data in bytes */ 243*53ee8cc1Swenshuai.xi int loop_start, loop_end; /* Byte offsets from the beginning */ 244*53ee8cc1Swenshuai.xi 245*53ee8cc1Swenshuai.xi /* 246*53ee8cc1Swenshuai.xi * The base_freq and base_note fields are used when computing the 247*53ee8cc1Swenshuai.xi * playback speed for a note. The base_note defines the tone frequency 248*53ee8cc1Swenshuai.xi * which is heard if the sample is played using the base_freq as the 249*53ee8cc1Swenshuai.xi * playback speed. 250*53ee8cc1Swenshuai.xi * 251*53ee8cc1Swenshuai.xi * The low_note and high_note fields define the minimum and maximum note 252*53ee8cc1Swenshuai.xi * frequencies for which this sample is valid. It is possible to define 253*53ee8cc1Swenshuai.xi * more than one samples for an instrument number at the same time. The 254*53ee8cc1Swenshuai.xi * low_note and high_note fields are used to select the most suitable one. 255*53ee8cc1Swenshuai.xi * 256*53ee8cc1Swenshuai.xi * The fields base_note, high_note and low_note should contain 257*53ee8cc1Swenshuai.xi * the note frequency multiplied by 1000. For example value for the 258*53ee8cc1Swenshuai.xi * middle A is 440*1000. 259*53ee8cc1Swenshuai.xi */ 260*53ee8cc1Swenshuai.xi 261*53ee8cc1Swenshuai.xi unsigned int base_freq; 262*53ee8cc1Swenshuai.xi unsigned int base_note; 263*53ee8cc1Swenshuai.xi unsigned int high_note; 264*53ee8cc1Swenshuai.xi unsigned int low_note; 265*53ee8cc1Swenshuai.xi int panning; /* -128=left, 127=right */ 266*53ee8cc1Swenshuai.xi int detuning; 267*53ee8cc1Swenshuai.xi 268*53ee8cc1Swenshuai.xi /* New fields introduced in version 1.99.5 */ 269*53ee8cc1Swenshuai.xi 270*53ee8cc1Swenshuai.xi /* Envelope. Enabled by mode bit WAVE_ENVELOPES */ 271*53ee8cc1Swenshuai.xi unsigned char env_rate[ 6 ]; /* GUS HW ramping rate */ 272*53ee8cc1Swenshuai.xi unsigned char env_offset[ 6 ]; /* 255 == 100% */ 273*53ee8cc1Swenshuai.xi 274*53ee8cc1Swenshuai.xi /* 275*53ee8cc1Swenshuai.xi * The tremolo, vibrato and scale info are not supported yet. 276*53ee8cc1Swenshuai.xi * Enable by setting the mode bits WAVE_TREMOLO, WAVE_VIBRATO or 277*53ee8cc1Swenshuai.xi * WAVE_SCALE 278*53ee8cc1Swenshuai.xi */ 279*53ee8cc1Swenshuai.xi 280*53ee8cc1Swenshuai.xi unsigned char tremolo_sweep; 281*53ee8cc1Swenshuai.xi unsigned char tremolo_rate; 282*53ee8cc1Swenshuai.xi unsigned char tremolo_depth; 283*53ee8cc1Swenshuai.xi 284*53ee8cc1Swenshuai.xi unsigned char vibrato_sweep; 285*53ee8cc1Swenshuai.xi unsigned char vibrato_rate; 286*53ee8cc1Swenshuai.xi unsigned char vibrato_depth; 287*53ee8cc1Swenshuai.xi 288*53ee8cc1Swenshuai.xi int scale_frequency; 289*53ee8cc1Swenshuai.xi unsigned int scale_factor; /* from 0 to 2048 or 0 to 2 */ 290*53ee8cc1Swenshuai.xi 291*53ee8cc1Swenshuai.xi int volume; 292*53ee8cc1Swenshuai.xi int fractions; 293*53ee8cc1Swenshuai.xi int reserved1; 294*53ee8cc1Swenshuai.xi int spare[2]; 295*53ee8cc1Swenshuai.xi char data[1]; /* The waveform data starts here */ 296*53ee8cc1Swenshuai.xi }; 297*53ee8cc1Swenshuai.xi 298*53ee8cc1Swenshuai.xi struct sysex_info { 299*53ee8cc1Swenshuai.xi short key; /* Use SYSEX_PATCH or MAUI_PATCH here */ 300*53ee8cc1Swenshuai.xi #define SYSEX_PATCH _PATCHKEY(0x05) 301*53ee8cc1Swenshuai.xi #define MAUI_PATCH _PATCHKEY(0x06) 302*53ee8cc1Swenshuai.xi short device_no; /* Synthesizer number */ 303*53ee8cc1Swenshuai.xi int len; /* Size of the sysex data in bytes */ 304*53ee8cc1Swenshuai.xi unsigned char data[1]; /* Sysex data starts here */ 305*53ee8cc1Swenshuai.xi }; 306*53ee8cc1Swenshuai.xi 307*53ee8cc1Swenshuai.xi /* 308*53ee8cc1Swenshuai.xi * /dev/sequencer input events. 309*53ee8cc1Swenshuai.xi * 310*53ee8cc1Swenshuai.xi * The data written to the /dev/sequencer is a stream of events. Events 311*53ee8cc1Swenshuai.xi * are records of 4 or 8 bytes. The first byte defines the size. 312*53ee8cc1Swenshuai.xi * Any number of events can be written with a write call. There 313*53ee8cc1Swenshuai.xi * is a set of macros for sending these events. Use these macros if you 314*53ee8cc1Swenshuai.xi * want to maximize portability of your program. 315*53ee8cc1Swenshuai.xi * 316*53ee8cc1Swenshuai.xi * Events SEQ_WAIT, SEQ_MIDIPUTC and SEQ_ECHO. Are also input events. 317*53ee8cc1Swenshuai.xi * (All input events are currently 4 bytes long. Be prepared to support 318*53ee8cc1Swenshuai.xi * 8 byte events also. If you receive any event having first byte >= 128, 319*53ee8cc1Swenshuai.xi * it's a 8 byte event. 320*53ee8cc1Swenshuai.xi * 321*53ee8cc1Swenshuai.xi * The events are documented at the end of this file. 322*53ee8cc1Swenshuai.xi * 323*53ee8cc1Swenshuai.xi * Normal events (4 bytes) 324*53ee8cc1Swenshuai.xi * There is also a 8 byte version of most of the 4 byte events. The 325*53ee8cc1Swenshuai.xi * 8 byte one is recommended. 326*53ee8cc1Swenshuai.xi */ 327*53ee8cc1Swenshuai.xi #define SEQ_NOTEOFF 0 328*53ee8cc1Swenshuai.xi #define SEQ_FMNOTEOFF SEQ_NOTEOFF /* Just old name */ 329*53ee8cc1Swenshuai.xi #define SEQ_NOTEON 1 330*53ee8cc1Swenshuai.xi #define SEQ_FMNOTEON SEQ_NOTEON 331*53ee8cc1Swenshuai.xi #define SEQ_WAIT TMR_WAIT_ABS 332*53ee8cc1Swenshuai.xi #define SEQ_PGMCHANGE 3 333*53ee8cc1Swenshuai.xi #define SEQ_FMPGMCHANGE SEQ_PGMCHANGE 334*53ee8cc1Swenshuai.xi #define SEQ_SYNCTIMER TMR_START 335*53ee8cc1Swenshuai.xi #define SEQ_MIDIPUTC 5 336*53ee8cc1Swenshuai.xi #define SEQ_DRUMON 6 /*** OBSOLETE ***/ 337*53ee8cc1Swenshuai.xi #define SEQ_DRUMOFF 7 /*** OBSOLETE ***/ 338*53ee8cc1Swenshuai.xi #define SEQ_ECHO TMR_ECHO /* For synching programs with output */ 339*53ee8cc1Swenshuai.xi #define SEQ_AFTERTOUCH 9 340*53ee8cc1Swenshuai.xi #define SEQ_CONTROLLER 10 341*53ee8cc1Swenshuai.xi 342*53ee8cc1Swenshuai.xi /******************************************* 343*53ee8cc1Swenshuai.xi * Midi controller numbers 344*53ee8cc1Swenshuai.xi ******************************************* 345*53ee8cc1Swenshuai.xi * Controllers 0 to 31 (0x00 to 0x1f) and 346*53ee8cc1Swenshuai.xi * 32 to 63 (0x20 to 0x3f) are continuous 347*53ee8cc1Swenshuai.xi * controllers. 348*53ee8cc1Swenshuai.xi * In the MIDI 1.0 these controllers are sent using 349*53ee8cc1Swenshuai.xi * two messages. Controller numbers 0 to 31 are used 350*53ee8cc1Swenshuai.xi * to send the MSB and the controller numbers 32 to 63 351*53ee8cc1Swenshuai.xi * are for the LSB. Note that just 7 bits are used in MIDI bytes. 352*53ee8cc1Swenshuai.xi */ 353*53ee8cc1Swenshuai.xi 354*53ee8cc1Swenshuai.xi #define CTL_BANK_SELECT 0x00 355*53ee8cc1Swenshuai.xi #define CTL_MODWHEEL 0x01 356*53ee8cc1Swenshuai.xi #define CTL_BREATH 0x02 357*53ee8cc1Swenshuai.xi /* undefined 0x03 */ 358*53ee8cc1Swenshuai.xi #define CTL_FOOT 0x04 359*53ee8cc1Swenshuai.xi #define CTL_PORTAMENTO_TIME 0x05 360*53ee8cc1Swenshuai.xi #define CTL_DATA_ENTRY 0x06 361*53ee8cc1Swenshuai.xi #define CTL_MAIN_VOLUME 0x07 362*53ee8cc1Swenshuai.xi #define CTL_BALANCE 0x08 363*53ee8cc1Swenshuai.xi /* undefined 0x09 */ 364*53ee8cc1Swenshuai.xi #define CTL_PAN 0x0a 365*53ee8cc1Swenshuai.xi #define CTL_EXPRESSION 0x0b 366*53ee8cc1Swenshuai.xi /* undefined 0x0c */ 367*53ee8cc1Swenshuai.xi /* undefined 0x0d */ 368*53ee8cc1Swenshuai.xi /* undefined 0x0e */ 369*53ee8cc1Swenshuai.xi /* undefined 0x0f */ 370*53ee8cc1Swenshuai.xi #define CTL_GENERAL_PURPOSE1 0x10 371*53ee8cc1Swenshuai.xi #define CTL_GENERAL_PURPOSE2 0x11 372*53ee8cc1Swenshuai.xi #define CTL_GENERAL_PURPOSE3 0x12 373*53ee8cc1Swenshuai.xi #define CTL_GENERAL_PURPOSE4 0x13 374*53ee8cc1Swenshuai.xi /* undefined 0x14 - 0x1f */ 375*53ee8cc1Swenshuai.xi 376*53ee8cc1Swenshuai.xi /* undefined 0x20 */ 377*53ee8cc1Swenshuai.xi /* The controller numbers 0x21 to 0x3f are reserved for the */ 378*53ee8cc1Swenshuai.xi /* least significant bytes of the controllers 0x00 to 0x1f. */ 379*53ee8cc1Swenshuai.xi /* These controllers are not recognised by the driver. */ 380*53ee8cc1Swenshuai.xi 381*53ee8cc1Swenshuai.xi /* Controllers 64 to 69 (0x40 to 0x45) are on/off switches. */ 382*53ee8cc1Swenshuai.xi /* 0=OFF and 127=ON (intermediate values are possible) */ 383*53ee8cc1Swenshuai.xi #define CTL_DAMPER_PEDAL 0x40 384*53ee8cc1Swenshuai.xi #define CTL_SUSTAIN 0x40 /* Alias */ 385*53ee8cc1Swenshuai.xi #define CTL_HOLD 0x40 /* Alias */ 386*53ee8cc1Swenshuai.xi #define CTL_PORTAMENTO 0x41 387*53ee8cc1Swenshuai.xi #define CTL_SOSTENUTO 0x42 388*53ee8cc1Swenshuai.xi #define CTL_SOFT_PEDAL 0x43 389*53ee8cc1Swenshuai.xi /* undefined 0x44 */ 390*53ee8cc1Swenshuai.xi #define CTL_HOLD2 0x45 391*53ee8cc1Swenshuai.xi /* undefined 0x46 - 0x4f */ 392*53ee8cc1Swenshuai.xi 393*53ee8cc1Swenshuai.xi #define CTL_GENERAL_PURPOSE5 0x50 394*53ee8cc1Swenshuai.xi #define CTL_GENERAL_PURPOSE6 0x51 395*53ee8cc1Swenshuai.xi #define CTL_GENERAL_PURPOSE7 0x52 396*53ee8cc1Swenshuai.xi #define CTL_GENERAL_PURPOSE8 0x53 397*53ee8cc1Swenshuai.xi /* undefined 0x54 - 0x5a */ 398*53ee8cc1Swenshuai.xi #define CTL_EXT_EFF_DEPTH 0x5b 399*53ee8cc1Swenshuai.xi #define CTL_TREMOLO_DEPTH 0x5c 400*53ee8cc1Swenshuai.xi #define CTL_CHORUS_DEPTH 0x5d 401*53ee8cc1Swenshuai.xi #define CTL_DETUNE_DEPTH 0x5e 402*53ee8cc1Swenshuai.xi #define CTL_CELESTE_DEPTH 0x5e /* Alias for the above one */ 403*53ee8cc1Swenshuai.xi #define CTL_PHASER_DEPTH 0x5f 404*53ee8cc1Swenshuai.xi #define CTL_DATA_INCREMENT 0x60 405*53ee8cc1Swenshuai.xi #define CTL_DATA_DECREMENT 0x61 406*53ee8cc1Swenshuai.xi #define CTL_NONREG_PARM_NUM_LSB 0x62 407*53ee8cc1Swenshuai.xi #define CTL_NONREG_PARM_NUM_MSB 0x63 408*53ee8cc1Swenshuai.xi #define CTL_REGIST_PARM_NUM_LSB 0x64 409*53ee8cc1Swenshuai.xi #define CTL_REGIST_PARM_NUM_MSB 0x65 410*53ee8cc1Swenshuai.xi /* undefined 0x66 - 0x78 */ 411*53ee8cc1Swenshuai.xi /* reserved 0x79 - 0x7f */ 412*53ee8cc1Swenshuai.xi 413*53ee8cc1Swenshuai.xi /* Pseudo controllers (not midi compatible) */ 414*53ee8cc1Swenshuai.xi #define CTRL_PITCH_BENDER 255 415*53ee8cc1Swenshuai.xi #define CTRL_PITCH_BENDER_RANGE 254 416*53ee8cc1Swenshuai.xi #define CTRL_EXPRESSION 253 /* Obsolete */ 417*53ee8cc1Swenshuai.xi #define CTRL_MAIN_VOLUME 252 /* Obsolete */ 418*53ee8cc1Swenshuai.xi #define SEQ_BALANCE 11 419*53ee8cc1Swenshuai.xi #define SEQ_VOLMODE 12 420*53ee8cc1Swenshuai.xi 421*53ee8cc1Swenshuai.xi /* 422*53ee8cc1Swenshuai.xi * Volume mode decides how volumes are used 423*53ee8cc1Swenshuai.xi */ 424*53ee8cc1Swenshuai.xi 425*53ee8cc1Swenshuai.xi #define VOL_METHOD_ADAGIO 1 426*53ee8cc1Swenshuai.xi #define VOL_METHOD_LINEAR 2 427*53ee8cc1Swenshuai.xi 428*53ee8cc1Swenshuai.xi /* 429*53ee8cc1Swenshuai.xi * Note! SEQ_WAIT, SEQ_MIDIPUTC and SEQ_ECHO are used also as 430*53ee8cc1Swenshuai.xi * input events. 431*53ee8cc1Swenshuai.xi */ 432*53ee8cc1Swenshuai.xi 433*53ee8cc1Swenshuai.xi /* 434*53ee8cc1Swenshuai.xi * Event codes 0xf0 to 0xfc are reserved for future extensions. 435*53ee8cc1Swenshuai.xi */ 436*53ee8cc1Swenshuai.xi 437*53ee8cc1Swenshuai.xi #define SEQ_FULLSIZE 0xfd /* Long events */ 438*53ee8cc1Swenshuai.xi /* 439*53ee8cc1Swenshuai.xi * SEQ_FULLSIZE events are used for loading patches/samples to the 440*53ee8cc1Swenshuai.xi * synthesizer devices. These events are passed directly to the driver 441*53ee8cc1Swenshuai.xi * of the associated synthesizer device. There is no limit to the size 442*53ee8cc1Swenshuai.xi * of the extended events. These events are not queued but executed 443*53ee8cc1Swenshuai.xi * immediately when the write() is called (execution can take several 444*53ee8cc1Swenshuai.xi * seconds of time). 445*53ee8cc1Swenshuai.xi * 446*53ee8cc1Swenshuai.xi * When a SEQ_FULLSIZE message is written to the device, it must 447*53ee8cc1Swenshuai.xi * be written using exactly one write() call. Other events cannot 448*53ee8cc1Swenshuai.xi * be mixed to the same write. 449*53ee8cc1Swenshuai.xi * 450*53ee8cc1Swenshuai.xi * For FM synths (YM3812/OPL3) use struct sbi_instrument and write it to the 451*53ee8cc1Swenshuai.xi * /dev/sequencer. Don't write other data together with the instrument structure 452*53ee8cc1Swenshuai.xi * Set the key field of the structure to FM_PATCH. The device field is used to 453*53ee8cc1Swenshuai.xi * route the patch to the corresponding device. 454*53ee8cc1Swenshuai.xi * 455*53ee8cc1Swenshuai.xi * For wave table use struct patch_info. Initialize the key field 456*53ee8cc1Swenshuai.xi * to WAVE_PATCH. 457*53ee8cc1Swenshuai.xi */ 458*53ee8cc1Swenshuai.xi #define SEQ_PRIVATE 0xfe /* Low level HW dependent events (8 bytes) */ 459*53ee8cc1Swenshuai.xi #define SEQ_EXTENDED 0xff /* Extended events (8 bytes) OBSOLETE */ 460*53ee8cc1Swenshuai.xi 461*53ee8cc1Swenshuai.xi /* 462*53ee8cc1Swenshuai.xi * Record for FM patches 463*53ee8cc1Swenshuai.xi */ 464*53ee8cc1Swenshuai.xi 465*53ee8cc1Swenshuai.xi typedef unsigned char sbi_instr_data[32]; 466*53ee8cc1Swenshuai.xi 467*53ee8cc1Swenshuai.xi struct sbi_instrument { 468*53ee8cc1Swenshuai.xi unsigned short key; /* FM_PATCH or OPL3_PATCH */ 469*53ee8cc1Swenshuai.xi #define FM_PATCH _PATCHKEY(0x01) 470*53ee8cc1Swenshuai.xi #define OPL3_PATCH _PATCHKEY(0x03) 471*53ee8cc1Swenshuai.xi short device; /* Synth# (0-4) */ 472*53ee8cc1Swenshuai.xi int channel; /* Program# to be initialized */ 473*53ee8cc1Swenshuai.xi sbi_instr_data operators; /* Register settings for operator cells (.SBI format) */ 474*53ee8cc1Swenshuai.xi }; 475*53ee8cc1Swenshuai.xi 476*53ee8cc1Swenshuai.xi struct synth_info { /* Read only */ 477*53ee8cc1Swenshuai.xi char name[30]; 478*53ee8cc1Swenshuai.xi int device; /* 0-N. INITIALIZE BEFORE CALLING */ 479*53ee8cc1Swenshuai.xi int synth_type; 480*53ee8cc1Swenshuai.xi #define SYNTH_TYPE_FM 0 481*53ee8cc1Swenshuai.xi #define SYNTH_TYPE_SAMPLE 1 482*53ee8cc1Swenshuai.xi #define SYNTH_TYPE_MIDI 2 /* Midi interface */ 483*53ee8cc1Swenshuai.xi 484*53ee8cc1Swenshuai.xi int synth_subtype; 485*53ee8cc1Swenshuai.xi #define FM_TYPE_ADLIB 0x00 486*53ee8cc1Swenshuai.xi #define FM_TYPE_OPL3 0x01 487*53ee8cc1Swenshuai.xi #define MIDI_TYPE_MPU401 0x401 488*53ee8cc1Swenshuai.xi 489*53ee8cc1Swenshuai.xi #define SAMPLE_TYPE_BASIC 0x10 490*53ee8cc1Swenshuai.xi #define SAMPLE_TYPE_GUS SAMPLE_TYPE_BASIC 491*53ee8cc1Swenshuai.xi #define SAMPLE_TYPE_WAVEFRONT 0x11 492*53ee8cc1Swenshuai.xi 493*53ee8cc1Swenshuai.xi int perc_mode; /* No longer supported */ 494*53ee8cc1Swenshuai.xi int nr_voices; 495*53ee8cc1Swenshuai.xi int nr_drums; /* Obsolete field */ 496*53ee8cc1Swenshuai.xi int instr_bank_size; 497*53ee8cc1Swenshuai.xi unsigned int capabilities; 498*53ee8cc1Swenshuai.xi #define SYNTH_CAP_PERCMODE 0x00000001 /* No longer used */ 499*53ee8cc1Swenshuai.xi #define SYNTH_CAP_OPL3 0x00000002 /* Set if OPL3 supported */ 500*53ee8cc1Swenshuai.xi #define SYNTH_CAP_INPUT 0x00000004 /* Input (MIDI) device */ 501*53ee8cc1Swenshuai.xi int dummies[19]; /* Reserve space */ 502*53ee8cc1Swenshuai.xi }; 503*53ee8cc1Swenshuai.xi 504*53ee8cc1Swenshuai.xi struct sound_timer_info { 505*53ee8cc1Swenshuai.xi char name[32]; 506*53ee8cc1Swenshuai.xi int caps; 507*53ee8cc1Swenshuai.xi }; 508*53ee8cc1Swenshuai.xi 509*53ee8cc1Swenshuai.xi #define MIDI_CAP_MPU401 1 /* MPU-401 intelligent mode */ 510*53ee8cc1Swenshuai.xi 511*53ee8cc1Swenshuai.xi struct midi_info { 512*53ee8cc1Swenshuai.xi char name[30]; 513*53ee8cc1Swenshuai.xi int device; /* 0-N. INITIALIZE BEFORE CALLING */ 514*53ee8cc1Swenshuai.xi unsigned int capabilities; /* To be defined later */ 515*53ee8cc1Swenshuai.xi int dev_type; 516*53ee8cc1Swenshuai.xi int dummies[18]; /* Reserve space */ 517*53ee8cc1Swenshuai.xi }; 518*53ee8cc1Swenshuai.xi 519*53ee8cc1Swenshuai.xi /******************************************** 520*53ee8cc1Swenshuai.xi * ioctl commands for the /dev/midi## 521*53ee8cc1Swenshuai.xi */ 522*53ee8cc1Swenshuai.xi typedef struct { 523*53ee8cc1Swenshuai.xi unsigned char cmd; 524*53ee8cc1Swenshuai.xi char nr_args, nr_returns; 525*53ee8cc1Swenshuai.xi unsigned char data[30]; 526*53ee8cc1Swenshuai.xi } mpu_command_rec; 527*53ee8cc1Swenshuai.xi 528*53ee8cc1Swenshuai.xi #define SNDCTL_MIDI_PRETIME _SIOWR('m', 0, int) 529*53ee8cc1Swenshuai.xi #define SNDCTL_MIDI_MPUMODE _SIOWR('m', 1, int) 530*53ee8cc1Swenshuai.xi #define SNDCTL_MIDI_MPUCMD _SIOWR('m', 2, mpu_command_rec) 531*53ee8cc1Swenshuai.xi 532*53ee8cc1Swenshuai.xi /******************************************** 533*53ee8cc1Swenshuai.xi * IOCTL commands for /dev/dsp and /dev/audio 534*53ee8cc1Swenshuai.xi */ 535*53ee8cc1Swenshuai.xi 536*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_RESET _SIO ('P', 0) 537*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SYNC _SIO ('P', 1) 538*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SPEED _SIOWR('P', 2, int) 539*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_STEREO _SIOWR('P', 3, int) 540*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETBLKSIZE _SIOWR('P', 4, int) 541*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SAMPLESIZE SNDCTL_DSP_SETFMT 542*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_CHANNELS _SIOWR('P', 6, int) 543*53ee8cc1Swenshuai.xi #define SOUND_PCM_WRITE_CHANNELS SNDCTL_DSP_CHANNELS 544*53ee8cc1Swenshuai.xi #define SOUND_PCM_WRITE_FILTER _SIOWR('P', 7, int) 545*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_POST _SIO ('P', 8) 546*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SUBDIVIDE _SIOWR('P', 9, int) 547*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SETFRAGMENT _SIOWR('P',10, int) 548*53ee8cc1Swenshuai.xi 549*53ee8cc1Swenshuai.xi /* Audio data formats (Note! U8=8 and S16_LE=16 for compatibility) */ 550*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETFMTS _SIOR ('P',11, int) /* Returns a mask */ 551*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SETFMT _SIOWR('P',5, int) /* Selects ONE fmt*/ 552*53ee8cc1Swenshuai.xi # define AFMT_QUERY 0x00000000 /* Return current fmt */ 553*53ee8cc1Swenshuai.xi # define AFMT_MU_LAW 0x00000001 554*53ee8cc1Swenshuai.xi # define AFMT_A_LAW 0x00000002 555*53ee8cc1Swenshuai.xi # define AFMT_IMA_ADPCM 0x00000004 556*53ee8cc1Swenshuai.xi # define AFMT_U8 0x00000008 557*53ee8cc1Swenshuai.xi # define AFMT_S16_LE 0x00000010 /* Little endian signed 16*/ 558*53ee8cc1Swenshuai.xi # define AFMT_S16_BE 0x00000020 /* Big endian signed 16 */ 559*53ee8cc1Swenshuai.xi # define AFMT_S8 0x00000040 560*53ee8cc1Swenshuai.xi # define AFMT_U16_LE 0x00000080 /* Little endian U16 */ 561*53ee8cc1Swenshuai.xi # define AFMT_U16_BE 0x00000100 /* Big endian U16 */ 562*53ee8cc1Swenshuai.xi # define AFMT_MPEG 0x00000200 /* MPEG (2) audio */ 563*53ee8cc1Swenshuai.xi # define AFMT_AC3 0x00000400 /* Dolby Digital AC3 */ 564*53ee8cc1Swenshuai.xi 565*53ee8cc1Swenshuai.xi /* 566*53ee8cc1Swenshuai.xi * Buffer status queries. 567*53ee8cc1Swenshuai.xi */ 568*53ee8cc1Swenshuai.xi typedef struct audio_buf_info { 569*53ee8cc1Swenshuai.xi int fragments; /* # of available fragments (partially usend ones not counted) */ 570*53ee8cc1Swenshuai.xi int fragstotal; /* Total # of fragments allocated */ 571*53ee8cc1Swenshuai.xi int fragsize; /* Size of a fragment in bytes */ 572*53ee8cc1Swenshuai.xi 573*53ee8cc1Swenshuai.xi int bytes; /* Available space in bytes (includes partially used fragments) */ 574*53ee8cc1Swenshuai.xi /* Note! 'bytes' could be more than fragments*fragsize */ 575*53ee8cc1Swenshuai.xi } audio_buf_info; 576*53ee8cc1Swenshuai.xi 577*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETOSPACE _SIOR ('P',12, audio_buf_info) 578*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETISPACE _SIOR ('P',13, audio_buf_info) 579*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_NONBLOCK _SIO ('P',14) 580*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETCAPS _SIOR ('P',15, int) 581*53ee8cc1Swenshuai.xi # define DSP_CAP_REVISION 0x000000ff /* Bits for revision level (0 to 255) */ 582*53ee8cc1Swenshuai.xi # define DSP_CAP_DUPLEX 0x00000100 /* Full duplex record/playback */ 583*53ee8cc1Swenshuai.xi # define DSP_CAP_REALTIME 0x00000200 /* Real time capability */ 584*53ee8cc1Swenshuai.xi # define DSP_CAP_BATCH 0x00000400 /* Device has some kind of */ 585*53ee8cc1Swenshuai.xi /* internal buffers which may */ 586*53ee8cc1Swenshuai.xi /* cause some delays and */ 587*53ee8cc1Swenshuai.xi /* decrease precision of timing */ 588*53ee8cc1Swenshuai.xi # define DSP_CAP_COPROC 0x00000800 /* Has a coprocessor */ 589*53ee8cc1Swenshuai.xi /* Sometimes it's a DSP */ 590*53ee8cc1Swenshuai.xi /* but usually not */ 591*53ee8cc1Swenshuai.xi # define DSP_CAP_TRIGGER 0x00001000 /* Supports SETTRIGGER */ 592*53ee8cc1Swenshuai.xi # define DSP_CAP_MMAP 0x00002000 /* Supports mmap() */ 593*53ee8cc1Swenshuai.xi # define DSP_CAP_MULTI 0x00004000 /* support multiple open */ 594*53ee8cc1Swenshuai.xi # define DSP_CAP_BIND 0x00008000 /* channel binding to front/rear/cneter/lfe */ 595*53ee8cc1Swenshuai.xi 596*53ee8cc1Swenshuai.xi 597*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETTRIGGER _SIOR ('P',16, int) 598*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SETTRIGGER _SIOW ('P',16, int) 599*53ee8cc1Swenshuai.xi # define PCM_ENABLE_INPUT 0x00000001 600*53ee8cc1Swenshuai.xi # define PCM_ENABLE_OUTPUT 0x00000002 601*53ee8cc1Swenshuai.xi 602*53ee8cc1Swenshuai.xi typedef struct count_info { 603*53ee8cc1Swenshuai.xi int bytes; /* Total # of bytes processed */ 604*53ee8cc1Swenshuai.xi int blocks; /* # of fragment transitions since last time */ 605*53ee8cc1Swenshuai.xi int ptr; /* Current DMA pointer value */ 606*53ee8cc1Swenshuai.xi } count_info; 607*53ee8cc1Swenshuai.xi 608*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETIPTR _SIOR ('P',17, count_info) 609*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETOPTR _SIOR ('P',18, count_info) 610*53ee8cc1Swenshuai.xi 611*53ee8cc1Swenshuai.xi typedef struct buffmem_desc { 612*53ee8cc1Swenshuai.xi unsigned *buffer; 613*53ee8cc1Swenshuai.xi int size; 614*53ee8cc1Swenshuai.xi } buffmem_desc; 615*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_MAPINBUF _SIOR ('P', 19, buffmem_desc) 616*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_MAPOUTBUF _SIOR ('P', 20, buffmem_desc) 617*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SETSYNCRO _SIO ('P', 21) 618*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SETDUPLEX _SIO ('P', 22) 619*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETODELAY _SIOR ('P', 23, int) 620*53ee8cc1Swenshuai.xi 621*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETCHANNELMASK _SIOWR('P', 64, int) 622*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_BIND_CHANNEL _SIOWR('P', 65, int) 623*53ee8cc1Swenshuai.xi # define DSP_BIND_QUERY 0x00000000 624*53ee8cc1Swenshuai.xi # define DSP_BIND_FRONT 0x00000001 625*53ee8cc1Swenshuai.xi # define DSP_BIND_SURR 0x00000002 626*53ee8cc1Swenshuai.xi # define DSP_BIND_CENTER_LFE 0x00000004 627*53ee8cc1Swenshuai.xi # define DSP_BIND_HANDSET 0x00000008 628*53ee8cc1Swenshuai.xi # define DSP_BIND_MIC 0x00000010 629*53ee8cc1Swenshuai.xi # define DSP_BIND_MODEM1 0x00000020 630*53ee8cc1Swenshuai.xi # define DSP_BIND_MODEM2 0x00000040 631*53ee8cc1Swenshuai.xi # define DSP_BIND_I2S 0x00000080 632*53ee8cc1Swenshuai.xi # define DSP_BIND_SPDIF 0x00000100 633*53ee8cc1Swenshuai.xi 634*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_SETSPDIF _SIOW ('P', 66, int) 635*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_GETSPDIF _SIOR ('P', 67, int) 636*53ee8cc1Swenshuai.xi # define SPDIF_PRO 0x0001 637*53ee8cc1Swenshuai.xi # define SPDIF_N_AUD 0x0002 638*53ee8cc1Swenshuai.xi # define SPDIF_COPY 0x0004 639*53ee8cc1Swenshuai.xi # define SPDIF_PRE 0x0008 640*53ee8cc1Swenshuai.xi # define SPDIF_CC 0x07f0 641*53ee8cc1Swenshuai.xi # define SPDIF_L 0x0800 642*53ee8cc1Swenshuai.xi # define SPDIF_DRS 0x4000 643*53ee8cc1Swenshuai.xi # define SPDIF_V 0x8000 644*53ee8cc1Swenshuai.xi 645*53ee8cc1Swenshuai.xi /* 646*53ee8cc1Swenshuai.xi * Application's profile defines the way how playback underrun situations should be handled. 647*53ee8cc1Swenshuai.xi * 648*53ee8cc1Swenshuai.xi * APF_NORMAL (the default) and APF_NETWORK make the driver to cleanup the 649*53ee8cc1Swenshuai.xi * playback buffer whenever an underrun occurs. This consumes some time 650*53ee8cc1Swenshuai.xi * prevents looping the existing buffer. 651*53ee8cc1Swenshuai.xi * APF_CPUINTENS is intended to be set by CPU intensive applications which 652*53ee8cc1Swenshuai.xi * are likely to run out of time occasionally. In this mode the buffer cleanup is 653*53ee8cc1Swenshuai.xi * disabled which saves CPU time but also let's the previous buffer content to 654*53ee8cc1Swenshuai.xi * be played during the "pause" after the underrun. 655*53ee8cc1Swenshuai.xi */ 656*53ee8cc1Swenshuai.xi #define SNDCTL_DSP_PROFILE _SIOW ('P', 23, int) 657*53ee8cc1Swenshuai.xi #define APF_NORMAL 0 /* Normal applications */ 658*53ee8cc1Swenshuai.xi #define APF_NETWORK 1 /* Underruns probably caused by an "external" delay */ 659*53ee8cc1Swenshuai.xi #define APF_CPUINTENS 2 /* Underruns probably caused by "overheating" the CPU */ 660*53ee8cc1Swenshuai.xi 661*53ee8cc1Swenshuai.xi #define SOUND_PCM_READ_RATE _SIOR ('P', 2, int) 662*53ee8cc1Swenshuai.xi #define SOUND_PCM_READ_CHANNELS _SIOR ('P', 6, int) 663*53ee8cc1Swenshuai.xi #define SOUND_PCM_READ_BITS _SIOR ('P', 5, int) 664*53ee8cc1Swenshuai.xi #define SOUND_PCM_READ_FILTER _SIOR ('P', 7, int) 665*53ee8cc1Swenshuai.xi 666*53ee8cc1Swenshuai.xi /* Some alias names */ 667*53ee8cc1Swenshuai.xi #define SOUND_PCM_WRITE_BITS SNDCTL_DSP_SETFMT 668*53ee8cc1Swenshuai.xi #define SOUND_PCM_WRITE_RATE SNDCTL_DSP_SPEED 669*53ee8cc1Swenshuai.xi #define SOUND_PCM_POST SNDCTL_DSP_POST 670*53ee8cc1Swenshuai.xi #define SOUND_PCM_RESET SNDCTL_DSP_RESET 671*53ee8cc1Swenshuai.xi #define SOUND_PCM_SYNC SNDCTL_DSP_SYNC 672*53ee8cc1Swenshuai.xi #define SOUND_PCM_SUBDIVIDE SNDCTL_DSP_SUBDIVIDE 673*53ee8cc1Swenshuai.xi #define SOUND_PCM_SETFRAGMENT SNDCTL_DSP_SETFRAGMENT 674*53ee8cc1Swenshuai.xi #define SOUND_PCM_GETFMTS SNDCTL_DSP_GETFMTS 675*53ee8cc1Swenshuai.xi #define SOUND_PCM_SETFMT SNDCTL_DSP_SETFMT 676*53ee8cc1Swenshuai.xi #define SOUND_PCM_GETOSPACE SNDCTL_DSP_GETOSPACE 677*53ee8cc1Swenshuai.xi #define SOUND_PCM_GETISPACE SNDCTL_DSP_GETISPACE 678*53ee8cc1Swenshuai.xi #define SOUND_PCM_NONBLOCK SNDCTL_DSP_NONBLOCK 679*53ee8cc1Swenshuai.xi #define SOUND_PCM_GETCAPS SNDCTL_DSP_GETCAPS 680*53ee8cc1Swenshuai.xi #define SOUND_PCM_GETTRIGGER SNDCTL_DSP_GETTRIGGER 681*53ee8cc1Swenshuai.xi #define SOUND_PCM_SETTRIGGER SNDCTL_DSP_SETTRIGGER 682*53ee8cc1Swenshuai.xi #define SOUND_PCM_SETSYNCRO SNDCTL_DSP_SETSYNCRO 683*53ee8cc1Swenshuai.xi #define SOUND_PCM_GETIPTR SNDCTL_DSP_GETIPTR 684*53ee8cc1Swenshuai.xi #define SOUND_PCM_GETOPTR SNDCTL_DSP_GETOPTR 685*53ee8cc1Swenshuai.xi #define SOUND_PCM_MAPINBUF SNDCTL_DSP_MAPINBUF 686*53ee8cc1Swenshuai.xi #define SOUND_PCM_MAPOUTBUF SNDCTL_DSP_MAPOUTBUF 687*53ee8cc1Swenshuai.xi 688*53ee8cc1Swenshuai.xi /* 689*53ee8cc1Swenshuai.xi * ioctl calls to be used in communication with coprocessors and 690*53ee8cc1Swenshuai.xi * DSP chips. 691*53ee8cc1Swenshuai.xi */ 692*53ee8cc1Swenshuai.xi 693*53ee8cc1Swenshuai.xi typedef struct copr_buffer { 694*53ee8cc1Swenshuai.xi int command; /* Set to 0 if not used */ 695*53ee8cc1Swenshuai.xi int flags; 696*53ee8cc1Swenshuai.xi #define CPF_NONE 0x0000 697*53ee8cc1Swenshuai.xi #define CPF_FIRST 0x0001 /* First block */ 698*53ee8cc1Swenshuai.xi #define CPF_LAST 0x0002 /* Last block */ 699*53ee8cc1Swenshuai.xi int len; 700*53ee8cc1Swenshuai.xi int offs; /* If required by the device (0 if not used) */ 701*53ee8cc1Swenshuai.xi 702*53ee8cc1Swenshuai.xi unsigned char data[4000]; /* NOTE! 4000 is not 4k */ 703*53ee8cc1Swenshuai.xi } copr_buffer; 704*53ee8cc1Swenshuai.xi 705*53ee8cc1Swenshuai.xi typedef struct copr_debug_buf { 706*53ee8cc1Swenshuai.xi int command; /* Used internally. Set to 0 */ 707*53ee8cc1Swenshuai.xi int parm1; 708*53ee8cc1Swenshuai.xi int parm2; 709*53ee8cc1Swenshuai.xi int flags; 710*53ee8cc1Swenshuai.xi int len; /* Length of data in bytes */ 711*53ee8cc1Swenshuai.xi } copr_debug_buf; 712*53ee8cc1Swenshuai.xi 713*53ee8cc1Swenshuai.xi typedef struct copr_msg { 714*53ee8cc1Swenshuai.xi int len; 715*53ee8cc1Swenshuai.xi unsigned char data[4000]; 716*53ee8cc1Swenshuai.xi } copr_msg; 717*53ee8cc1Swenshuai.xi 718*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_RESET _SIO ('C', 0) 719*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_LOAD _SIOWR('C', 1, copr_buffer) 720*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_RDATA _SIOWR('C', 2, copr_debug_buf) 721*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_RCODE _SIOWR('C', 3, copr_debug_buf) 722*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_WDATA _SIOW ('C', 4, copr_debug_buf) 723*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_WCODE _SIOW ('C', 5, copr_debug_buf) 724*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_RUN _SIOWR('C', 6, copr_debug_buf) 725*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_HALT _SIOWR('C', 7, copr_debug_buf) 726*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_SENDMSG _SIOWR('C', 8, copr_msg) 727*53ee8cc1Swenshuai.xi #define SNDCTL_COPR_RCVMSG _SIOR ('C', 9, copr_msg) 728*53ee8cc1Swenshuai.xi 729*53ee8cc1Swenshuai.xi /********************************************* 730*53ee8cc1Swenshuai.xi * IOCTL commands for /dev/mixer 731*53ee8cc1Swenshuai.xi */ 732*53ee8cc1Swenshuai.xi 733*53ee8cc1Swenshuai.xi /* 734*53ee8cc1Swenshuai.xi * Mixer devices 735*53ee8cc1Swenshuai.xi * 736*53ee8cc1Swenshuai.xi * There can be up to 20 different analog mixer channels. The 737*53ee8cc1Swenshuai.xi * SOUND_MIXER_NRDEVICES gives the currently supported maximum. 738*53ee8cc1Swenshuai.xi * The SOUND_MIXER_READ_DEVMASK returns a bitmask which tells 739*53ee8cc1Swenshuai.xi * the devices supported by the particular mixer. 740*53ee8cc1Swenshuai.xi */ 741*53ee8cc1Swenshuai.xi 742*53ee8cc1Swenshuai.xi #define SOUND_MIXER_NRDEVICES 25 743*53ee8cc1Swenshuai.xi #define SOUND_MIXER_VOLUME 0 744*53ee8cc1Swenshuai.xi #define SOUND_MIXER_BASS 1 745*53ee8cc1Swenshuai.xi #define SOUND_MIXER_TREBLE 2 746*53ee8cc1Swenshuai.xi #define SOUND_MIXER_SYNTH 3 747*53ee8cc1Swenshuai.xi #define SOUND_MIXER_PCM 4 748*53ee8cc1Swenshuai.xi #define SOUND_MIXER_SPEAKER 5 749*53ee8cc1Swenshuai.xi #define SOUND_MIXER_LINE 6 750*53ee8cc1Swenshuai.xi #define SOUND_MIXER_MIC 7 751*53ee8cc1Swenshuai.xi #define SOUND_MIXER_CD 8 752*53ee8cc1Swenshuai.xi #define SOUND_MIXER_IMIX 9 /* Recording monitor */ 753*53ee8cc1Swenshuai.xi #define SOUND_MIXER_ALTPCM 10 754*53ee8cc1Swenshuai.xi #define SOUND_MIXER_RECLEV 11 /* Recording level */ 755*53ee8cc1Swenshuai.xi #define SOUND_MIXER_IGAIN 12 /* Input gain */ 756*53ee8cc1Swenshuai.xi #define SOUND_MIXER_OGAIN 13 /* Output gain */ 757*53ee8cc1Swenshuai.xi /* 758*53ee8cc1Swenshuai.xi * The AD1848 codec and compatibles have three line level inputs 759*53ee8cc1Swenshuai.xi * (line, aux1 and aux2). Since each card manufacturer have assigned 760*53ee8cc1Swenshuai.xi * different meanings to these inputs, it's inpractical to assign 761*53ee8cc1Swenshuai.xi * specific meanings (line, cd, synth etc.) to them. 762*53ee8cc1Swenshuai.xi */ 763*53ee8cc1Swenshuai.xi #define SOUND_MIXER_LINE1 14 /* Input source 1 (aux1) */ 764*53ee8cc1Swenshuai.xi #define SOUND_MIXER_LINE2 15 /* Input source 2 (aux2) */ 765*53ee8cc1Swenshuai.xi #define SOUND_MIXER_LINE3 16 /* Input source 3 (line) */ 766*53ee8cc1Swenshuai.xi #define SOUND_MIXER_DIGITAL1 17 /* Digital (input) 1 */ 767*53ee8cc1Swenshuai.xi #define SOUND_MIXER_DIGITAL2 18 /* Digital (input) 2 */ 768*53ee8cc1Swenshuai.xi #define SOUND_MIXER_DIGITAL3 19 /* Digital (input) 3 */ 769*53ee8cc1Swenshuai.xi #define SOUND_MIXER_PHONEIN 20 /* Phone input */ 770*53ee8cc1Swenshuai.xi #define SOUND_MIXER_PHONEOUT 21 /* Phone output */ 771*53ee8cc1Swenshuai.xi #define SOUND_MIXER_VIDEO 22 /* Video/TV (audio) in */ 772*53ee8cc1Swenshuai.xi #define SOUND_MIXER_RADIO 23 /* Radio in */ 773*53ee8cc1Swenshuai.xi #define SOUND_MIXER_MONITOR 24 /* Monitor (usually mic) volume */ 774*53ee8cc1Swenshuai.xi 775*53ee8cc1Swenshuai.xi /* Some on/off settings (SOUND_SPECIAL_MIN - SOUND_SPECIAL_MAX) */ 776*53ee8cc1Swenshuai.xi /* Not counted to SOUND_MIXER_NRDEVICES, but use the same number space */ 777*53ee8cc1Swenshuai.xi #define SOUND_ONOFF_MIN 28 778*53ee8cc1Swenshuai.xi #define SOUND_ONOFF_MAX 30 779*53ee8cc1Swenshuai.xi 780*53ee8cc1Swenshuai.xi /* Note! Number 31 cannot be used since the sign bit is reserved */ 781*53ee8cc1Swenshuai.xi #define SOUND_MIXER_NONE 31 782*53ee8cc1Swenshuai.xi 783*53ee8cc1Swenshuai.xi /* 784*53ee8cc1Swenshuai.xi * The following unsupported macros are no longer functional. 785*53ee8cc1Swenshuai.xi * Use SOUND_MIXER_PRIVATE# macros in future. 786*53ee8cc1Swenshuai.xi */ 787*53ee8cc1Swenshuai.xi #define SOUND_MIXER_ENHANCE SOUND_MIXER_NONE 788*53ee8cc1Swenshuai.xi #define SOUND_MIXER_MUTE SOUND_MIXER_NONE 789*53ee8cc1Swenshuai.xi #define SOUND_MIXER_LOUD SOUND_MIXER_NONE 790*53ee8cc1Swenshuai.xi 791*53ee8cc1Swenshuai.xi 792*53ee8cc1Swenshuai.xi #define SOUND_DEVICE_LABELS {"Vol ", "Bass ", "Trebl", "Synth", "Pcm ", "Spkr ", "Line ", \ 793*53ee8cc1Swenshuai.xi "Mic ", "CD ", "Mix ", "Pcm2 ", "Rec ", "IGain", "OGain", \ 794*53ee8cc1Swenshuai.xi "Line1", "Line2", "Line3", "Digital1", "Digital2", "Digital3", \ 795*53ee8cc1Swenshuai.xi "PhoneIn", "PhoneOut", "Video", "Radio", "Monitor"} 796*53ee8cc1Swenshuai.xi 797*53ee8cc1Swenshuai.xi #define SOUND_DEVICE_NAMES {"vol", "bass", "treble", "synth", "pcm", "speaker", "line", \ 798*53ee8cc1Swenshuai.xi "mic", "cd", "mix", "pcm2", "rec", "igain", "ogain", \ 799*53ee8cc1Swenshuai.xi "line1", "line2", "line3", "dig1", "dig2", "dig3", \ 800*53ee8cc1Swenshuai.xi "phin", "phout", "video", "radio", "monitor"} 801*53ee8cc1Swenshuai.xi 802*53ee8cc1Swenshuai.xi /* Device bitmask identifiers */ 803*53ee8cc1Swenshuai.xi 804*53ee8cc1Swenshuai.xi #define SOUND_MIXER_RECSRC 0xff /* Arg contains a bit for each recording source */ 805*53ee8cc1Swenshuai.xi #define SOUND_MIXER_DEVMASK 0xfe /* Arg contains a bit for each supported device */ 806*53ee8cc1Swenshuai.xi #define SOUND_MIXER_RECMASK 0xfd /* Arg contains a bit for each supported recording source */ 807*53ee8cc1Swenshuai.xi #define SOUND_MIXER_CAPS 0xfc 808*53ee8cc1Swenshuai.xi # define SOUND_CAP_EXCL_INPUT 0x00000001 /* Only one recording source at a time */ 809*53ee8cc1Swenshuai.xi #define SOUND_MIXER_STEREODEVS 0xfb /* Mixer channels supporting stereo */ 810*53ee8cc1Swenshuai.xi #define SOUND_MIXER_OUTSRC 0xfa /* Arg contains a bit for each input source to output */ 811*53ee8cc1Swenshuai.xi #define SOUND_MIXER_OUTMASK 0xf9 /* Arg contains a bit for each supported input source to output */ 812*53ee8cc1Swenshuai.xi 813*53ee8cc1Swenshuai.xi /* Device mask bits */ 814*53ee8cc1Swenshuai.xi 815*53ee8cc1Swenshuai.xi #define SOUND_MASK_VOLUME (1 << SOUND_MIXER_VOLUME) 816*53ee8cc1Swenshuai.xi #define SOUND_MASK_BASS (1 << SOUND_MIXER_BASS) 817*53ee8cc1Swenshuai.xi #define SOUND_MASK_TREBLE (1 << SOUND_MIXER_TREBLE) 818*53ee8cc1Swenshuai.xi #define SOUND_MASK_SYNTH (1 << SOUND_MIXER_SYNTH) 819*53ee8cc1Swenshuai.xi #define SOUND_MASK_PCM (1 << SOUND_MIXER_PCM) 820*53ee8cc1Swenshuai.xi #define SOUND_MASK_SPEAKER (1 << SOUND_MIXER_SPEAKER) 821*53ee8cc1Swenshuai.xi #define SOUND_MASK_LINE (1 << SOUND_MIXER_LINE) 822*53ee8cc1Swenshuai.xi #define SOUND_MASK_MIC (1 << SOUND_MIXER_MIC) 823*53ee8cc1Swenshuai.xi #define SOUND_MASK_CD (1 << SOUND_MIXER_CD) 824*53ee8cc1Swenshuai.xi #define SOUND_MASK_IMIX (1 << SOUND_MIXER_IMIX) 825*53ee8cc1Swenshuai.xi #define SOUND_MASK_ALTPCM (1 << SOUND_MIXER_ALTPCM) 826*53ee8cc1Swenshuai.xi #define SOUND_MASK_RECLEV (1 << SOUND_MIXER_RECLEV) 827*53ee8cc1Swenshuai.xi #define SOUND_MASK_IGAIN (1 << SOUND_MIXER_IGAIN) 828*53ee8cc1Swenshuai.xi #define SOUND_MASK_OGAIN (1 << SOUND_MIXER_OGAIN) 829*53ee8cc1Swenshuai.xi #define SOUND_MASK_LINE1 (1 << SOUND_MIXER_LINE1) 830*53ee8cc1Swenshuai.xi #define SOUND_MASK_LINE2 (1 << SOUND_MIXER_LINE2) 831*53ee8cc1Swenshuai.xi #define SOUND_MASK_LINE3 (1 << SOUND_MIXER_LINE3) 832*53ee8cc1Swenshuai.xi #define SOUND_MASK_DIGITAL1 (1 << SOUND_MIXER_DIGITAL1) 833*53ee8cc1Swenshuai.xi #define SOUND_MASK_DIGITAL2 (1 << SOUND_MIXER_DIGITAL2) 834*53ee8cc1Swenshuai.xi #define SOUND_MASK_DIGITAL3 (1 << SOUND_MIXER_DIGITAL3) 835*53ee8cc1Swenshuai.xi #define SOUND_MASK_PHONEIN (1 << SOUND_MIXER_PHONEIN) 836*53ee8cc1Swenshuai.xi #define SOUND_MASK_PHONEOUT (1 << SOUND_MIXER_PHONEOUT) 837*53ee8cc1Swenshuai.xi #define SOUND_MASK_RADIO (1 << SOUND_MIXER_RADIO) 838*53ee8cc1Swenshuai.xi #define SOUND_MASK_VIDEO (1 << SOUND_MIXER_VIDEO) 839*53ee8cc1Swenshuai.xi #define SOUND_MASK_MONITOR (1 << SOUND_MIXER_MONITOR) 840*53ee8cc1Swenshuai.xi 841*53ee8cc1Swenshuai.xi /* Obsolete macros */ 842*53ee8cc1Swenshuai.xi #define SOUND_MASK_MUTE (1 << SOUND_MIXER_MUTE) 843*53ee8cc1Swenshuai.xi #define SOUND_MASK_ENHANCE (1 << SOUND_MIXER_ENHANCE) 844*53ee8cc1Swenshuai.xi #define SOUND_MASK_LOUD (1 << SOUND_MIXER_LOUD) 845*53ee8cc1Swenshuai.xi 846*53ee8cc1Swenshuai.xi #define MIXER_READ(dev) _SIOR('M', dev, int) 847*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_VOLUME MIXER_READ(SOUND_MIXER_VOLUME) 848*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_BASS MIXER_READ(SOUND_MIXER_BASS) 849*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_TREBLE MIXER_READ(SOUND_MIXER_TREBLE) 850*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_SYNTH MIXER_READ(SOUND_MIXER_SYNTH) 851*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_PCM MIXER_READ(SOUND_MIXER_PCM) 852*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_SPEAKER MIXER_READ(SOUND_MIXER_SPEAKER) 853*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_LINE MIXER_READ(SOUND_MIXER_LINE) 854*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_MIC MIXER_READ(SOUND_MIXER_MIC) 855*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_CD MIXER_READ(SOUND_MIXER_CD) 856*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_IMIX MIXER_READ(SOUND_MIXER_IMIX) 857*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_ALTPCM MIXER_READ(SOUND_MIXER_ALTPCM) 858*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_RECLEV MIXER_READ(SOUND_MIXER_RECLEV) 859*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_IGAIN MIXER_READ(SOUND_MIXER_IGAIN) 860*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_OGAIN MIXER_READ(SOUND_MIXER_OGAIN) 861*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_LINE1 MIXER_READ(SOUND_MIXER_LINE1) 862*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_LINE2 MIXER_READ(SOUND_MIXER_LINE2) 863*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_LINE3 MIXER_READ(SOUND_MIXER_LINE3) 864*53ee8cc1Swenshuai.xi 865*53ee8cc1Swenshuai.xi /* Obsolete macros */ 866*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_MUTE MIXER_READ(SOUND_MIXER_MUTE) 867*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_ENHANCE MIXER_READ(SOUND_MIXER_ENHANCE) 868*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_LOUD MIXER_READ(SOUND_MIXER_LOUD) 869*53ee8cc1Swenshuai.xi 870*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_RECSRC MIXER_READ(SOUND_MIXER_RECSRC) 871*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_DEVMASK MIXER_READ(SOUND_MIXER_DEVMASK) 872*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_RECMASK MIXER_READ(SOUND_MIXER_RECMASK) 873*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_STEREODEVS MIXER_READ(SOUND_MIXER_STEREODEVS) 874*53ee8cc1Swenshuai.xi #define SOUND_MIXER_READ_CAPS MIXER_READ(SOUND_MIXER_CAPS) 875*53ee8cc1Swenshuai.xi 876*53ee8cc1Swenshuai.xi #define MIXER_WRITE(dev) _SIOWR('M', dev, int) 877*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_VOLUME MIXER_WRITE(SOUND_MIXER_VOLUME) 878*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_BASS MIXER_WRITE(SOUND_MIXER_BASS) 879*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_TREBLE MIXER_WRITE(SOUND_MIXER_TREBLE) 880*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_SYNTH MIXER_WRITE(SOUND_MIXER_SYNTH) 881*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_PCM MIXER_WRITE(SOUND_MIXER_PCM) 882*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_SPEAKER MIXER_WRITE(SOUND_MIXER_SPEAKER) 883*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_LINE MIXER_WRITE(SOUND_MIXER_LINE) 884*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_MIC MIXER_WRITE(SOUND_MIXER_MIC) 885*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_CD MIXER_WRITE(SOUND_MIXER_CD) 886*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_IMIX MIXER_WRITE(SOUND_MIXER_IMIX) 887*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_ALTPCM MIXER_WRITE(SOUND_MIXER_ALTPCM) 888*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_RECLEV MIXER_WRITE(SOUND_MIXER_RECLEV) 889*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_IGAIN MIXER_WRITE(SOUND_MIXER_IGAIN) 890*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_OGAIN MIXER_WRITE(SOUND_MIXER_OGAIN) 891*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_LINE1 MIXER_WRITE(SOUND_MIXER_LINE1) 892*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_LINE2 MIXER_WRITE(SOUND_MIXER_LINE2) 893*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_LINE3 MIXER_WRITE(SOUND_MIXER_LINE3) 894*53ee8cc1Swenshuai.xi 895*53ee8cc1Swenshuai.xi /* Obsolete macros */ 896*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_MUTE MIXER_WRITE(SOUND_MIXER_MUTE) 897*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_ENHANCE MIXER_WRITE(SOUND_MIXER_ENHANCE) 898*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_LOUD MIXER_WRITE(SOUND_MIXER_LOUD) 899*53ee8cc1Swenshuai.xi 900*53ee8cc1Swenshuai.xi #define SOUND_MIXER_WRITE_RECSRC MIXER_WRITE(SOUND_MIXER_RECSRC) 901*53ee8cc1Swenshuai.xi 902*53ee8cc1Swenshuai.xi typedef struct mixer_info 903*53ee8cc1Swenshuai.xi { 904*53ee8cc1Swenshuai.xi char id[16]; 905*53ee8cc1Swenshuai.xi char name[32]; 906*53ee8cc1Swenshuai.xi int modify_counter; 907*53ee8cc1Swenshuai.xi int fillers[10]; 908*53ee8cc1Swenshuai.xi } mixer_info; 909*53ee8cc1Swenshuai.xi 910*53ee8cc1Swenshuai.xi typedef struct _old_mixer_info /* Obsolete */ 911*53ee8cc1Swenshuai.xi { 912*53ee8cc1Swenshuai.xi char id[16]; 913*53ee8cc1Swenshuai.xi char name[32]; 914*53ee8cc1Swenshuai.xi } _old_mixer_info; 915*53ee8cc1Swenshuai.xi 916*53ee8cc1Swenshuai.xi #define SOUND_MIXER_INFO _SIOR ('M', 101, mixer_info) 917*53ee8cc1Swenshuai.xi #define SOUND_OLD_MIXER_INFO _SIOR ('M', 101, _old_mixer_info) 918*53ee8cc1Swenshuai.xi 919*53ee8cc1Swenshuai.xi /* 920*53ee8cc1Swenshuai.xi * A mechanism for accessing "proprietary" mixer features. This method 921*53ee8cc1Swenshuai.xi * permits passing 128 bytes of arbitrary data between a mixer application 922*53ee8cc1Swenshuai.xi * and the mixer driver. Interpretation of the record is defined by 923*53ee8cc1Swenshuai.xi * the particular mixer driver. 924*53ee8cc1Swenshuai.xi */ 925*53ee8cc1Swenshuai.xi typedef unsigned char mixer_record[128]; 926*53ee8cc1Swenshuai.xi 927*53ee8cc1Swenshuai.xi #define SOUND_MIXER_ACCESS _SIOWR('M', 102, mixer_record) 928*53ee8cc1Swenshuai.xi 929*53ee8cc1Swenshuai.xi /* 930*53ee8cc1Swenshuai.xi * Two ioctls for special souncard function 931*53ee8cc1Swenshuai.xi */ 932*53ee8cc1Swenshuai.xi #define SOUND_MIXER_AGC _SIOWR('M', 103, int) 933*53ee8cc1Swenshuai.xi #define SOUND_MIXER_3DSE _SIOWR('M', 104, int) 934*53ee8cc1Swenshuai.xi 935*53ee8cc1Swenshuai.xi /* 936*53ee8cc1Swenshuai.xi * The SOUND_MIXER_PRIVATE# commands can be redefined by low level drivers. 937*53ee8cc1Swenshuai.xi * These features can be used when accessing device specific features. 938*53ee8cc1Swenshuai.xi */ 939*53ee8cc1Swenshuai.xi #define SOUND_MIXER_PRIVATE1 _SIOWR('M', 111, int) 940*53ee8cc1Swenshuai.xi #define SOUND_MIXER_PRIVATE2 _SIOWR('M', 112, int) 941*53ee8cc1Swenshuai.xi #define SOUND_MIXER_PRIVATE3 _SIOWR('M', 113, int) 942*53ee8cc1Swenshuai.xi #define SOUND_MIXER_PRIVATE4 _SIOWR('M', 114, int) 943*53ee8cc1Swenshuai.xi #define SOUND_MIXER_PRIVATE5 _SIOWR('M', 115, int) 944*53ee8cc1Swenshuai.xi 945*53ee8cc1Swenshuai.xi /* 946*53ee8cc1Swenshuai.xi * SOUND_MIXER_GETLEVELS and SOUND_MIXER_SETLEVELS calls can be used 947*53ee8cc1Swenshuai.xi * for querying current mixer settings from the driver and for loading 948*53ee8cc1Swenshuai.xi * default volume settings _prior_ activating the mixer (loading 949*53ee8cc1Swenshuai.xi * doesn't affect current state of the mixer hardware). These calls 950*53ee8cc1Swenshuai.xi * are for internal use only. 951*53ee8cc1Swenshuai.xi */ 952*53ee8cc1Swenshuai.xi 953*53ee8cc1Swenshuai.xi typedef struct mixer_vol_table { 954*53ee8cc1Swenshuai.xi int num; /* Index to volume table */ 955*53ee8cc1Swenshuai.xi char name[32]; 956*53ee8cc1Swenshuai.xi int levels[32]; 957*53ee8cc1Swenshuai.xi } mixer_vol_table; 958*53ee8cc1Swenshuai.xi 959*53ee8cc1Swenshuai.xi #define SOUND_MIXER_GETLEVELS _SIOWR('M', 116, mixer_vol_table) 960*53ee8cc1Swenshuai.xi #define SOUND_MIXER_SETLEVELS _SIOWR('M', 117, mixer_vol_table) 961*53ee8cc1Swenshuai.xi 962*53ee8cc1Swenshuai.xi /* 963*53ee8cc1Swenshuai.xi * An ioctl for identifying the driver version. It will return value 964*53ee8cc1Swenshuai.xi * of the SOUND_VERSION macro used when compiling the driver. 965*53ee8cc1Swenshuai.xi * This call was introduced in OSS version 3.6 and it will not work 966*53ee8cc1Swenshuai.xi * with earlier versions (returns EINVAL). 967*53ee8cc1Swenshuai.xi */ 968*53ee8cc1Swenshuai.xi #define OSS_GETVERSION _SIOR ('M', 118, int) 969*53ee8cc1Swenshuai.xi 970*53ee8cc1Swenshuai.xi /* 971*53ee8cc1Swenshuai.xi * Level 2 event types for /dev/sequencer 972*53ee8cc1Swenshuai.xi */ 973*53ee8cc1Swenshuai.xi 974*53ee8cc1Swenshuai.xi /* 975*53ee8cc1Swenshuai.xi * The 4 most significant bits of byte 0 specify the class of 976*53ee8cc1Swenshuai.xi * the event: 977*53ee8cc1Swenshuai.xi * 978*53ee8cc1Swenshuai.xi * 0x8X = system level events, 979*53ee8cc1Swenshuai.xi * 0x9X = device/port specific events, event[1] = device/port, 980*53ee8cc1Swenshuai.xi * The last 4 bits give the subtype: 981*53ee8cc1Swenshuai.xi * 0x02 = Channel event (event[3] = chn). 982*53ee8cc1Swenshuai.xi * 0x01 = note event (event[4] = note). 983*53ee8cc1Swenshuai.xi * (0x01 is not used alone but always with bit 0x02). 984*53ee8cc1Swenshuai.xi * event[2] = MIDI message code (0x80=note off etc.) 985*53ee8cc1Swenshuai.xi * 986*53ee8cc1Swenshuai.xi */ 987*53ee8cc1Swenshuai.xi 988*53ee8cc1Swenshuai.xi #define EV_SEQ_LOCAL 0x80 989*53ee8cc1Swenshuai.xi #define EV_TIMING 0x81 990*53ee8cc1Swenshuai.xi #define EV_CHN_COMMON 0x92 991*53ee8cc1Swenshuai.xi #define EV_CHN_VOICE 0x93 992*53ee8cc1Swenshuai.xi #define EV_SYSEX 0x94 993*53ee8cc1Swenshuai.xi /* 994*53ee8cc1Swenshuai.xi * Event types 200 to 220 are reserved for application use. 995*53ee8cc1Swenshuai.xi * These numbers will not be used by the driver. 996*53ee8cc1Swenshuai.xi */ 997*53ee8cc1Swenshuai.xi 998*53ee8cc1Swenshuai.xi /* 999*53ee8cc1Swenshuai.xi * Events for event type EV_CHN_VOICE 1000*53ee8cc1Swenshuai.xi */ 1001*53ee8cc1Swenshuai.xi 1002*53ee8cc1Swenshuai.xi #define MIDI_NOTEOFF 0x80 1003*53ee8cc1Swenshuai.xi #define MIDI_NOTEON 0x90 1004*53ee8cc1Swenshuai.xi #define MIDI_KEY_PRESSURE 0xA0 1005*53ee8cc1Swenshuai.xi 1006*53ee8cc1Swenshuai.xi /* 1007*53ee8cc1Swenshuai.xi * Events for event type EV_CHN_COMMON 1008*53ee8cc1Swenshuai.xi */ 1009*53ee8cc1Swenshuai.xi 1010*53ee8cc1Swenshuai.xi #define MIDI_CTL_CHANGE 0xB0 1011*53ee8cc1Swenshuai.xi #define MIDI_PGM_CHANGE 0xC0 1012*53ee8cc1Swenshuai.xi #define MIDI_CHN_PRESSURE 0xD0 1013*53ee8cc1Swenshuai.xi #define MIDI_PITCH_BEND 0xE0 1014*53ee8cc1Swenshuai.xi 1015*53ee8cc1Swenshuai.xi #define MIDI_SYSTEM_PREFIX 0xF0 1016*53ee8cc1Swenshuai.xi 1017*53ee8cc1Swenshuai.xi /* 1018*53ee8cc1Swenshuai.xi * Timer event types 1019*53ee8cc1Swenshuai.xi */ 1020*53ee8cc1Swenshuai.xi #define TMR_WAIT_REL 1 /* Time relative to the prev time */ 1021*53ee8cc1Swenshuai.xi #define TMR_WAIT_ABS 2 /* Absolute time since TMR_START */ 1022*53ee8cc1Swenshuai.xi #define TMR_STOP 3 1023*53ee8cc1Swenshuai.xi #define TMR_START 4 1024*53ee8cc1Swenshuai.xi #define TMR_CONTINUE 5 1025*53ee8cc1Swenshuai.xi #define TMR_TEMPO 6 1026*53ee8cc1Swenshuai.xi #define TMR_ECHO 8 1027*53ee8cc1Swenshuai.xi #define TMR_CLOCK 9 /* MIDI clock */ 1028*53ee8cc1Swenshuai.xi #define TMR_SPP 10 /* Song position pointer */ 1029*53ee8cc1Swenshuai.xi #define TMR_TIMESIG 11 /* Time signature */ 1030*53ee8cc1Swenshuai.xi 1031*53ee8cc1Swenshuai.xi /* 1032*53ee8cc1Swenshuai.xi * Local event types 1033*53ee8cc1Swenshuai.xi */ 1034*53ee8cc1Swenshuai.xi #define LOCL_STARTAUDIO 1 1035*53ee8cc1Swenshuai.xi 1036*53ee8cc1Swenshuai.xi #if (!defined(__KERNEL__) && !defined(KERNEL) && !defined(INKERNEL) && !defined(_KERNEL)) || defined(USE_SEQ_MACROS) 1037*53ee8cc1Swenshuai.xi /* 1038*53ee8cc1Swenshuai.xi * Some convenience macros to simplify programming of the 1039*53ee8cc1Swenshuai.xi * /dev/sequencer interface 1040*53ee8cc1Swenshuai.xi * 1041*53ee8cc1Swenshuai.xi * These macros define the API which should be used when possible. 1042*53ee8cc1Swenshuai.xi */ 1043*53ee8cc1Swenshuai.xi #define SEQ_DECLAREBUF() SEQ_USE_EXTBUF() 1044*53ee8cc1Swenshuai.xi 1045*53ee8cc1Swenshuai.xi void seqbuf_dump(void); /* This function must be provided by programs */ 1046*53ee8cc1Swenshuai.xi 1047*53ee8cc1Swenshuai.xi extern int OSS_init(int seqfd, int buflen); 1048*53ee8cc1Swenshuai.xi extern void OSS_seqbuf_dump(int fd, unsigned char *buf, int buflen); 1049*53ee8cc1Swenshuai.xi extern void OSS_seq_advbuf(int len, int fd, unsigned char *buf, int buflen); 1050*53ee8cc1Swenshuai.xi extern void OSS_seq_needbuf(int len, int fd, unsigned char *buf, int buflen); 1051*53ee8cc1Swenshuai.xi extern void OSS_patch_caching(int dev, int chn, int patch, 1052*53ee8cc1Swenshuai.xi int fd, unsigned char *buf, int buflen); 1053*53ee8cc1Swenshuai.xi extern void OSS_drum_caching(int dev, int chn, int patch, 1054*53ee8cc1Swenshuai.xi int fd, unsigned char *buf, int buflen); 1055*53ee8cc1Swenshuai.xi extern void OSS_write_patch(int fd, unsigned char *buf, int len); 1056*53ee8cc1Swenshuai.xi extern int OSS_write_patch2(int fd, unsigned char *buf, int len); 1057*53ee8cc1Swenshuai.xi 1058*53ee8cc1Swenshuai.xi #define SEQ_PM_DEFINES int __foo_bar___ 1059*53ee8cc1Swenshuai.xi #ifdef OSSLIB 1060*53ee8cc1Swenshuai.xi # define SEQ_USE_EXTBUF() \ 1061*53ee8cc1Swenshuai.xi extern unsigned char *_seqbuf; \ 1062*53ee8cc1Swenshuai.xi extern int _seqbuflen;extern int _seqbufptr 1063*53ee8cc1Swenshuai.xi # define SEQ_DEFINEBUF(len) SEQ_USE_EXTBUF();static int _requested_seqbuflen=len 1064*53ee8cc1Swenshuai.xi # define _SEQ_ADVBUF(len) OSS_seq_advbuf(len, seqfd, _seqbuf, _seqbuflen) 1065*53ee8cc1Swenshuai.xi # define _SEQ_NEEDBUF(len) OSS_seq_needbuf(len, seqfd, _seqbuf, _seqbuflen) 1066*53ee8cc1Swenshuai.xi # define SEQ_DUMPBUF() OSS_seqbuf_dump(seqfd, _seqbuf, _seqbuflen) 1067*53ee8cc1Swenshuai.xi 1068*53ee8cc1Swenshuai.xi # define SEQ_LOAD_GMINSTR(dev, instr) \ 1069*53ee8cc1Swenshuai.xi OSS_patch_caching(dev, -1, instr, seqfd, _seqbuf, _seqbuflen) 1070*53ee8cc1Swenshuai.xi # define SEQ_LOAD_GMDRUM(dev, drum) \ 1071*53ee8cc1Swenshuai.xi OSS_drum_caching(dev, -1, drum, seqfd, _seqbuf, _seqbuflen) 1072*53ee8cc1Swenshuai.xi #else /* !OSSLIB */ 1073*53ee8cc1Swenshuai.xi 1074*53ee8cc1Swenshuai.xi # define SEQ_LOAD_GMINSTR(dev, instr) 1075*53ee8cc1Swenshuai.xi # define SEQ_LOAD_GMDRUM(dev, drum) 1076*53ee8cc1Swenshuai.xi 1077*53ee8cc1Swenshuai.xi # define SEQ_USE_EXTBUF() \ 1078*53ee8cc1Swenshuai.xi extern unsigned char _seqbuf[]; \ 1079*53ee8cc1Swenshuai.xi extern int _seqbuflen;extern int _seqbufptr 1080*53ee8cc1Swenshuai.xi 1081*53ee8cc1Swenshuai.xi #ifndef USE_SIMPLE_MACROS 1082*53ee8cc1Swenshuai.xi /* Sample seqbuf_dump() implementation: 1083*53ee8cc1Swenshuai.xi * 1084*53ee8cc1Swenshuai.xi * SEQ_DEFINEBUF (2048); -- Defines a buffer for 2048 bytes 1085*53ee8cc1Swenshuai.xi * 1086*53ee8cc1Swenshuai.xi * int seqfd; -- The file descriptor for /dev/sequencer. 1087*53ee8cc1Swenshuai.xi * 1088*53ee8cc1Swenshuai.xi * void 1089*53ee8cc1Swenshuai.xi * seqbuf_dump () 1090*53ee8cc1Swenshuai.xi * { 1091*53ee8cc1Swenshuai.xi * if (_seqbufptr) 1092*53ee8cc1Swenshuai.xi * if (write (seqfd, _seqbuf, _seqbufptr) == -1) 1093*53ee8cc1Swenshuai.xi * { 1094*53ee8cc1Swenshuai.xi * perror ("write /dev/sequencer"); 1095*53ee8cc1Swenshuai.xi * exit (-1); 1096*53ee8cc1Swenshuai.xi * } 1097*53ee8cc1Swenshuai.xi * _seqbufptr = 0; 1098*53ee8cc1Swenshuai.xi * } 1099*53ee8cc1Swenshuai.xi */ 1100*53ee8cc1Swenshuai.xi 1101*53ee8cc1Swenshuai.xi #define SEQ_DEFINEBUF(len) unsigned char _seqbuf[len]; int _seqbuflen = len;int _seqbufptr = 0 1102*53ee8cc1Swenshuai.xi #define _SEQ_NEEDBUF(len) if ((_seqbufptr+(len)) > _seqbuflen) seqbuf_dump() 1103*53ee8cc1Swenshuai.xi #define _SEQ_ADVBUF(len) _seqbufptr += len 1104*53ee8cc1Swenshuai.xi #define SEQ_DUMPBUF seqbuf_dump 1105*53ee8cc1Swenshuai.xi #else 1106*53ee8cc1Swenshuai.xi /* 1107*53ee8cc1Swenshuai.xi * This variation of the sequencer macros is used just to format one event 1108*53ee8cc1Swenshuai.xi * using fixed buffer. 1109*53ee8cc1Swenshuai.xi * 1110*53ee8cc1Swenshuai.xi * The program using the macro library must define the following macros before 1111*53ee8cc1Swenshuai.xi * using this library. 1112*53ee8cc1Swenshuai.xi * 1113*53ee8cc1Swenshuai.xi * #define _seqbuf name of the buffer (unsigned char[]) 1114*53ee8cc1Swenshuai.xi * #define _SEQ_ADVBUF(len) If the applic needs to know the exact 1115*53ee8cc1Swenshuai.xi * size of the event, this macro can be used. 1116*53ee8cc1Swenshuai.xi * Otherwise this must be defined as empty. 1117*53ee8cc1Swenshuai.xi * #define _seqbufptr Define the name of index variable or 0 if 1118*53ee8cc1Swenshuai.xi * not required. 1119*53ee8cc1Swenshuai.xi */ 1120*53ee8cc1Swenshuai.xi #define _SEQ_NEEDBUF(len) /* empty */ 1121*53ee8cc1Swenshuai.xi #endif 1122*53ee8cc1Swenshuai.xi #endif /* !OSSLIB */ 1123*53ee8cc1Swenshuai.xi 1124*53ee8cc1Swenshuai.xi #define SEQ_VOLUME_MODE(dev, mode) {_SEQ_NEEDBUF(8);\ 1125*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr] = SEQ_EXTENDED;\ 1126*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+1] = SEQ_VOLMODE;\ 1127*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+2] = (dev);\ 1128*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+3] = (mode);\ 1129*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+4] = 0;\ 1130*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+5] = 0;\ 1131*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+6] = 0;\ 1132*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+7] = 0;\ 1133*53ee8cc1Swenshuai.xi _SEQ_ADVBUF(8);} 1134*53ee8cc1Swenshuai.xi 1135*53ee8cc1Swenshuai.xi /* 1136*53ee8cc1Swenshuai.xi * Midi voice messages 1137*53ee8cc1Swenshuai.xi */ 1138*53ee8cc1Swenshuai.xi 1139*53ee8cc1Swenshuai.xi #define _CHN_VOICE(dev, event, chn, note, parm) \ 1140*53ee8cc1Swenshuai.xi {_SEQ_NEEDBUF(8);\ 1141*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr] = EV_CHN_VOICE;\ 1142*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+1] = (dev);\ 1143*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+2] = (event);\ 1144*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+3] = (chn);\ 1145*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+4] = (note);\ 1146*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+5] = (parm);\ 1147*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+6] = (0);\ 1148*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+7] = 0;\ 1149*53ee8cc1Swenshuai.xi _SEQ_ADVBUF(8);} 1150*53ee8cc1Swenshuai.xi 1151*53ee8cc1Swenshuai.xi #define SEQ_START_NOTE(dev, chn, note, vol) \ 1152*53ee8cc1Swenshuai.xi _CHN_VOICE(dev, MIDI_NOTEON, chn, note, vol) 1153*53ee8cc1Swenshuai.xi 1154*53ee8cc1Swenshuai.xi #define SEQ_STOP_NOTE(dev, chn, note, vol) \ 1155*53ee8cc1Swenshuai.xi _CHN_VOICE(dev, MIDI_NOTEOFF, chn, note, vol) 1156*53ee8cc1Swenshuai.xi 1157*53ee8cc1Swenshuai.xi #define SEQ_KEY_PRESSURE(dev, chn, note, pressure) \ 1158*53ee8cc1Swenshuai.xi _CHN_VOICE(dev, MIDI_KEY_PRESSURE, chn, note, pressure) 1159*53ee8cc1Swenshuai.xi 1160*53ee8cc1Swenshuai.xi /* 1161*53ee8cc1Swenshuai.xi * Midi channel messages 1162*53ee8cc1Swenshuai.xi */ 1163*53ee8cc1Swenshuai.xi 1164*53ee8cc1Swenshuai.xi #define _CHN_COMMON(dev, event, chn, p1, p2, w14) \ 1165*53ee8cc1Swenshuai.xi {_SEQ_NEEDBUF(8);\ 1166*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr] = EV_CHN_COMMON;\ 1167*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+1] = (dev);\ 1168*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+2] = (event);\ 1169*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+3] = (chn);\ 1170*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+4] = (p1);\ 1171*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+5] = (p2);\ 1172*53ee8cc1Swenshuai.xi *(short *)&_seqbuf[_seqbufptr+6] = (w14);\ 1173*53ee8cc1Swenshuai.xi _SEQ_ADVBUF(8);} 1174*53ee8cc1Swenshuai.xi /* 1175*53ee8cc1Swenshuai.xi * SEQ_SYSEX permits sending of sysex messages. (It may look that it permits 1176*53ee8cc1Swenshuai.xi * sending any MIDI bytes but it's absolutely not possible. Trying to do 1177*53ee8cc1Swenshuai.xi * so _will_ cause problems with MPU401 intelligent mode). 1178*53ee8cc1Swenshuai.xi * 1179*53ee8cc1Swenshuai.xi * Sysex messages are sent in blocks of 1 to 6 bytes. Longer messages must be 1180*53ee8cc1Swenshuai.xi * sent by calling SEQ_SYSEX() several times (there must be no other events 1181*53ee8cc1Swenshuai.xi * between them). First sysex fragment must have 0xf0 in the first byte 1182*53ee8cc1Swenshuai.xi * and the last byte (buf[len-1] of the last fragment must be 0xf7. No byte 1183*53ee8cc1Swenshuai.xi * between these sysex start and end markers cannot be larger than 0x7f. Also 1184*53ee8cc1Swenshuai.xi * lengths of each fragments (except the last one) must be 6. 1185*53ee8cc1Swenshuai.xi * 1186*53ee8cc1Swenshuai.xi * Breaking the above rules may work with some MIDI ports but is likely to 1187*53ee8cc1Swenshuai.xi * cause fatal problems with some other devices (such as MPU401). 1188*53ee8cc1Swenshuai.xi */ 1189*53ee8cc1Swenshuai.xi #define SEQ_SYSEX(dev, buf, len) \ 1190*53ee8cc1Swenshuai.xi {int ii, ll=(len); \ 1191*53ee8cc1Swenshuai.xi unsigned char *bufp=buf;\ 1192*53ee8cc1Swenshuai.xi if (ll>6)ll=6;\ 1193*53ee8cc1Swenshuai.xi _SEQ_NEEDBUF(8);\ 1194*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr] = EV_SYSEX;\ 1195*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+1] = (dev);\ 1196*53ee8cc1Swenshuai.xi for(ii=0;ii<ll;ii++)\ 1197*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+ii+2] = bufp[ii];\ 1198*53ee8cc1Swenshuai.xi for(ii=ll;ii<6;ii++)\ 1199*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+ii+2] = 0xff;\ 1200*53ee8cc1Swenshuai.xi _SEQ_ADVBUF(8);} 1201*53ee8cc1Swenshuai.xi 1202*53ee8cc1Swenshuai.xi #define SEQ_CHN_PRESSURE(dev, chn, pressure) \ 1203*53ee8cc1Swenshuai.xi _CHN_COMMON(dev, MIDI_CHN_PRESSURE, chn, pressure, 0, 0) 1204*53ee8cc1Swenshuai.xi 1205*53ee8cc1Swenshuai.xi #define SEQ_SET_PATCH SEQ_PGM_CHANGE 1206*53ee8cc1Swenshuai.xi #ifdef OSSLIB 1207*53ee8cc1Swenshuai.xi # define SEQ_PGM_CHANGE(dev, chn, patch) \ 1208*53ee8cc1Swenshuai.xi {OSS_patch_caching(dev, chn, patch, seqfd, _seqbuf, _seqbuflen); \ 1209*53ee8cc1Swenshuai.xi _CHN_COMMON(dev, MIDI_PGM_CHANGE, chn, patch, 0, 0);} 1210*53ee8cc1Swenshuai.xi #else 1211*53ee8cc1Swenshuai.xi # define SEQ_PGM_CHANGE(dev, chn, patch) \ 1212*53ee8cc1Swenshuai.xi _CHN_COMMON(dev, MIDI_PGM_CHANGE, chn, patch, 0, 0) 1213*53ee8cc1Swenshuai.xi #endif 1214*53ee8cc1Swenshuai.xi 1215*53ee8cc1Swenshuai.xi #define SEQ_CONTROL(dev, chn, controller, value) \ 1216*53ee8cc1Swenshuai.xi _CHN_COMMON(dev, MIDI_CTL_CHANGE, chn, controller, 0, value) 1217*53ee8cc1Swenshuai.xi 1218*53ee8cc1Swenshuai.xi #define SEQ_BENDER(dev, chn, value) \ 1219*53ee8cc1Swenshuai.xi _CHN_COMMON(dev, MIDI_PITCH_BEND, chn, 0, 0, value) 1220*53ee8cc1Swenshuai.xi 1221*53ee8cc1Swenshuai.xi 1222*53ee8cc1Swenshuai.xi #define SEQ_V2_X_CONTROL(dev, voice, controller, value) {_SEQ_NEEDBUF(8);\ 1223*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr] = SEQ_EXTENDED;\ 1224*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+1] = SEQ_CONTROLLER;\ 1225*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+2] = (dev);\ 1226*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+3] = (voice);\ 1227*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+4] = (controller);\ 1228*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+5] = ((value)&0xff);\ 1229*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+6] = ((value>>8)&0xff);\ 1230*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+7] = 0;\ 1231*53ee8cc1Swenshuai.xi _SEQ_ADVBUF(8);} 1232*53ee8cc1Swenshuai.xi /* 1233*53ee8cc1Swenshuai.xi * The following 5 macros are incorrectly implemented and obsolete. 1234*53ee8cc1Swenshuai.xi * Use SEQ_BENDER and SEQ_CONTROL (with proper controller) instead. 1235*53ee8cc1Swenshuai.xi */ 1236*53ee8cc1Swenshuai.xi #define SEQ_PITCHBEND(dev, voice, value) SEQ_V2_X_CONTROL(dev, voice, CTRL_PITCH_BENDER, value) 1237*53ee8cc1Swenshuai.xi #define SEQ_BENDER_RANGE(dev, voice, value) SEQ_V2_X_CONTROL(dev, voice, CTRL_PITCH_BENDER_RANGE, value) 1238*53ee8cc1Swenshuai.xi #define SEQ_EXPRESSION(dev, voice, value) SEQ_CONTROL(dev, voice, CTL_EXPRESSION, value*128) 1239*53ee8cc1Swenshuai.xi #define SEQ_MAIN_VOLUME(dev, voice, value) SEQ_CONTROL(dev, voice, CTL_MAIN_VOLUME, (value*16383)/100) 1240*53ee8cc1Swenshuai.xi #define SEQ_PANNING(dev, voice, pos) SEQ_CONTROL(dev, voice, CTL_PAN, (pos+128) / 2) 1241*53ee8cc1Swenshuai.xi 1242*53ee8cc1Swenshuai.xi /* 1243*53ee8cc1Swenshuai.xi * Timing and syncronization macros 1244*53ee8cc1Swenshuai.xi */ 1245*53ee8cc1Swenshuai.xi 1246*53ee8cc1Swenshuai.xi #define _TIMER_EVENT(ev, parm) {_SEQ_NEEDBUF(8);\ 1247*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+0] = EV_TIMING; \ 1248*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+1] = (ev); \ 1249*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+2] = 0;\ 1250*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+3] = 0;\ 1251*53ee8cc1Swenshuai.xi *(unsigned int *)&_seqbuf[_seqbufptr+4] = (parm); \ 1252*53ee8cc1Swenshuai.xi _SEQ_ADVBUF(8);} 1253*53ee8cc1Swenshuai.xi 1254*53ee8cc1Swenshuai.xi #define SEQ_START_TIMER() _TIMER_EVENT(TMR_START, 0) 1255*53ee8cc1Swenshuai.xi #define SEQ_STOP_TIMER() _TIMER_EVENT(TMR_STOP, 0) 1256*53ee8cc1Swenshuai.xi #define SEQ_CONTINUE_TIMER() _TIMER_EVENT(TMR_CONTINUE, 0) 1257*53ee8cc1Swenshuai.xi #define SEQ_WAIT_TIME(ticks) _TIMER_EVENT(TMR_WAIT_ABS, ticks) 1258*53ee8cc1Swenshuai.xi #define SEQ_DELTA_TIME(ticks) _TIMER_EVENT(TMR_WAIT_REL, ticks) 1259*53ee8cc1Swenshuai.xi #define SEQ_ECHO_BACK(key) _TIMER_EVENT(TMR_ECHO, key) 1260*53ee8cc1Swenshuai.xi #define SEQ_SET_TEMPO(value) _TIMER_EVENT(TMR_TEMPO, value) 1261*53ee8cc1Swenshuai.xi #define SEQ_SONGPOS(pos) _TIMER_EVENT(TMR_SPP, pos) 1262*53ee8cc1Swenshuai.xi #define SEQ_TIME_SIGNATURE(sig) _TIMER_EVENT(TMR_TIMESIG, sig) 1263*53ee8cc1Swenshuai.xi 1264*53ee8cc1Swenshuai.xi /* 1265*53ee8cc1Swenshuai.xi * Local control events 1266*53ee8cc1Swenshuai.xi */ 1267*53ee8cc1Swenshuai.xi 1268*53ee8cc1Swenshuai.xi #define _LOCAL_EVENT(ev, parm) {_SEQ_NEEDBUF(8);\ 1269*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+0] = EV_SEQ_LOCAL; \ 1270*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+1] = (ev); \ 1271*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+2] = 0;\ 1272*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+3] = 0;\ 1273*53ee8cc1Swenshuai.xi *(unsigned int *)&_seqbuf[_seqbufptr+4] = (parm); \ 1274*53ee8cc1Swenshuai.xi _SEQ_ADVBUF(8);} 1275*53ee8cc1Swenshuai.xi 1276*53ee8cc1Swenshuai.xi #define SEQ_PLAYAUDIO(devmask) _LOCAL_EVENT(LOCL_STARTAUDIO, devmask) 1277*53ee8cc1Swenshuai.xi /* 1278*53ee8cc1Swenshuai.xi * Events for the level 1 interface only 1279*53ee8cc1Swenshuai.xi */ 1280*53ee8cc1Swenshuai.xi 1281*53ee8cc1Swenshuai.xi #define SEQ_MIDIOUT(device, byte) {_SEQ_NEEDBUF(4);\ 1282*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr] = SEQ_MIDIPUTC;\ 1283*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+1] = (byte);\ 1284*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+2] = (device);\ 1285*53ee8cc1Swenshuai.xi _seqbuf[_seqbufptr+3] = 0;\ 1286*53ee8cc1Swenshuai.xi _SEQ_ADVBUF(4);} 1287*53ee8cc1Swenshuai.xi 1288*53ee8cc1Swenshuai.xi /* 1289*53ee8cc1Swenshuai.xi * Patch loading. 1290*53ee8cc1Swenshuai.xi */ 1291*53ee8cc1Swenshuai.xi #ifdef OSSLIB 1292*53ee8cc1Swenshuai.xi # define SEQ_WRPATCH(patchx, len) \ 1293*53ee8cc1Swenshuai.xi OSS_write_patch(seqfd, (char*)(patchx), len) 1294*53ee8cc1Swenshuai.xi # define SEQ_WRPATCH2(patchx, len) \ 1295*53ee8cc1Swenshuai.xi OSS_write_patch2(seqfd, (char*)(patchx), len) 1296*53ee8cc1Swenshuai.xi #else 1297*53ee8cc1Swenshuai.xi # define SEQ_WRPATCH(patchx, len) \ 1298*53ee8cc1Swenshuai.xi {if (_seqbufptr) SEQ_DUMPBUF();\ 1299*53ee8cc1Swenshuai.xi if (write(seqfd, (char*)(patchx), len)==-1) \ 1300*53ee8cc1Swenshuai.xi perror("Write patch: /dev/sequencer");} 1301*53ee8cc1Swenshuai.xi # define SEQ_WRPATCH2(patchx, len) \ 1302*53ee8cc1Swenshuai.xi (SEQ_DUMPBUF(), write(seqfd, (char*)(patchx), len)) 1303*53ee8cc1Swenshuai.xi #endif 1304*53ee8cc1Swenshuai.xi 1305*53ee8cc1Swenshuai.xi #endif 1306*53ee8cc1Swenshuai.xi #endif 1307