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https://github.com/FEX-Emu/linux.git
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1da177e4c3
Initial git repository build. I'm not bothering with the full history, even though we have it. We can create a separate "historical" git archive of that later if we want to, and in the meantime it's about 3.2GB when imported into git - space that would just make the early git days unnecessarily complicated, when we don't have a lot of good infrastructure for it. Let it rip!
100 lines
5.0 KiB
C
100 lines
5.0 KiB
C
/*
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* sound/awe_hw.h
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*
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* Access routines and definitions for the low level driver for the
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* Creative AWE32/SB32/AWE64 wave table synth.
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* version 0.4.4; Jan. 4, 2000
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*
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* Copyright (C) 1996-2000 Takashi Iwai
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#ifndef AWE_HW_H_DEF
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#define AWE_HW_H_DEF
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/*
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* Emu-8000 control registers
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* name(channel) reg, port
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*/
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#define awe_cmd_idx(reg,ch) (((reg)<< 5) | (ch))
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#define Data0 0 /* 0x620: doubleword r/w */
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#define Data1 1 /* 0xA20: doubleword r/w */
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#define Data2 2 /* 0xA22: word r/w */
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#define Data3 3 /* 0xE20: word r/w */
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#define Pointer 4 /* 0xE22 register pointer r/w */
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#define AWE_CPF(ch) awe_cmd_idx(0,ch), Data0 /* DW: current pitch and fractional address */
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#define AWE_PTRX(ch) awe_cmd_idx(1,ch), Data0 /* DW: pitch target and reverb send */
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#define AWE_CVCF(ch) awe_cmd_idx(2,ch), Data0 /* DW: current volume and filter cutoff */
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#define AWE_VTFT(ch) awe_cmd_idx(3,ch), Data0 /* DW: volume and filter cutoff targets */
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#define AWE_0080(ch) awe_cmd_idx(4,ch), Data0 /* DW: ?? */
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#define AWE_00A0(ch) awe_cmd_idx(5,ch), Data0 /* DW: ?? */
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#define AWE_PSST(ch) awe_cmd_idx(6,ch), Data0 /* DW: pan send and loop start address */
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#define AWE_CSL(ch) awe_cmd_idx(7,ch), Data0 /* DW: chorus send and loop end address */
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#define AWE_CCCA(ch) awe_cmd_idx(0,ch), Data1 /* DW: Q, control bits, and current address */
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#define AWE_HWCF4 awe_cmd_idx(1,9), Data1 /* DW: config dw 4 */
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#define AWE_HWCF5 awe_cmd_idx(1,10), Data1 /* DW: config dw 5 */
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#define AWE_HWCF6 awe_cmd_idx(1,13), Data1 /* DW: config dw 6 */
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#define AWE_HWCF7 awe_cmd_idx(1,14), Data1 /* DW: config dw 7? (not documented) */
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#define AWE_SMALR awe_cmd_idx(1,20), Data1 /* DW: sound memory address for left read */
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#define AWE_SMARR awe_cmd_idx(1,21), Data1 /* DW: for right read */
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#define AWE_SMALW awe_cmd_idx(1,22), Data1 /* DW: sound memory address for left write */
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#define AWE_SMARW awe_cmd_idx(1,23), Data1 /* DW: for right write */
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#define AWE_SMLD awe_cmd_idx(1,26), Data1 /* W: sound memory left data */
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#define AWE_SMRD awe_cmd_idx(1,26), Data2 /* W: right data */
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#define AWE_WC awe_cmd_idx(1,27), Data2 /* W: sample counter */
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#define AWE_WC_Cmd awe_cmd_idx(1,27)
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#define AWE_WC_Port Data2
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#define AWE_HWCF1 awe_cmd_idx(1,29), Data1 /* W: config w 1 */
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#define AWE_HWCF2 awe_cmd_idx(1,30), Data1 /* W: config w 2 */
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#define AWE_HWCF3 awe_cmd_idx(1,31), Data1 /* W: config w 3 */
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#define AWE_INIT1(ch) awe_cmd_idx(2,ch), Data1 /* W: init array 1 */
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#define AWE_INIT2(ch) awe_cmd_idx(2,ch), Data2 /* W: init array 2 */
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#define AWE_INIT3(ch) awe_cmd_idx(3,ch), Data1 /* W: init array 3 */
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#define AWE_INIT4(ch) awe_cmd_idx(3,ch), Data2 /* W: init array 4 */
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#define AWE_ENVVOL(ch) awe_cmd_idx(4,ch), Data1 /* W: volume envelope delay */
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#define AWE_DCYSUSV(ch) awe_cmd_idx(5,ch), Data1 /* W: volume envelope sustain and decay */
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#define AWE_ENVVAL(ch) awe_cmd_idx(6,ch), Data1 /* W: modulation envelope delay */
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#define AWE_DCYSUS(ch) awe_cmd_idx(7,ch), Data1 /* W: modulation envelope sustain and decay */
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#define AWE_ATKHLDV(ch) awe_cmd_idx(4,ch), Data2 /* W: volume envelope attack and hold */
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#define AWE_LFO1VAL(ch) awe_cmd_idx(5,ch), Data2 /* W: LFO#1 Delay */
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#define AWE_ATKHLD(ch) awe_cmd_idx(6,ch), Data2 /* W: modulation envelope attack and hold */
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#define AWE_LFO2VAL(ch) awe_cmd_idx(7,ch), Data2 /* W: LFO#2 Delay */
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#define AWE_IP(ch) awe_cmd_idx(0,ch), Data3 /* W: initial pitch */
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#define AWE_IFATN(ch) awe_cmd_idx(1,ch), Data3 /* W: initial filter cutoff and attenuation */
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#define AWE_PEFE(ch) awe_cmd_idx(2,ch), Data3 /* W: pitch and filter envelope heights */
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#define AWE_FMMOD(ch) awe_cmd_idx(3,ch), Data3 /* W: vibrato and filter modulation freq */
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#define AWE_TREMFRQ(ch) awe_cmd_idx(4,ch), Data3 /* W: LFO#1 tremolo amount and freq */
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#define AWE_FM2FRQ2(ch) awe_cmd_idx(5,ch), Data3 /* W: LFO#2 vibrato amount and freq */
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/* used during detection (returns ROM version?; not documented in ADIP) */
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#define AWE_U1 0xE0, Data3 /* (R)(W) used in initialization */
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#define AWE_U2(ch) 0xC0+(ch), Data3 /* (W)(W) used in init envelope */
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#define AWE_MAX_VOICES 32
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#define AWE_NORMAL_VOICES 30 /*30&31 are reserved for DRAM refresh*/
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#define AWE_MAX_CHANNELS 32 /* max midi channels (must >= voices) */
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#define AWE_MAX_LAYERS AWE_MAX_VOICES /* maximum number of multiple layers */
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#define AWE_DRAM_OFFSET 0x200000
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#define AWE_MAX_DRAM_SIZE (28 * 1024) /* 28 MB is max onboard memory */
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#endif
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