[480] | 1 | ; Project name : XTIDE Universal BIOS
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[558] | 2 | ; Description : IDE Read/Write functions for transferring block using DMA.
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| 3 | ; These functions should only be called from IdeTransfer.asm.
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| 4 |
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[480] | 5 | ;
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| 6 | ; XTIDE Universal BIOS and Associated Tools
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[526] | 7 | ; Copyright (C) 2009-2010 by Tomi Tilli, 2011-2013 by XTIDE Universal BIOS Team.
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[480] | 8 | ;
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| 9 | ; This program is free software; you can redistribute it and/or modify
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| 10 | ; it under the terms of the GNU General Public License as published by
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| 11 | ; the Free Software Foundation; either version 2 of the License, or
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| 12 | ; (at your option) any later version.
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| 13 | ;
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| 14 | ; This program is distributed in the hope that it will be useful,
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| 15 | ; but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 16 | ; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 17 | ; GNU General Public License for more details.
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| 18 | ; Visit http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
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| 19 | ;
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| 20 |
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| 21 | ; Section containing code
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| 22 | SECTION .text
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| 23 |
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| 24 | ;--------------------------------------------------------------------
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| 25 | ; IdeDmaBlock_WriteToXTCF
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| 26 | ; Parameters:
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| 27 | ; CX: Block size in 512 byte sectors
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| 28 | ; DX: XTCF Base Port Address
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| 29 | ; ES:SI: Physical address to buffer to receive data
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| 30 | ; Returns:
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| 31 | ; Nothing
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| 32 | ; Corrupts registers:
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| 33 | ; AX, BX, CX, DX
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| 34 | ;--------------------------------------------------------------------
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| 35 | ALIGN JUMP_ALIGN
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| 36 | IdeDmaBlock_WriteToXTCF:
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| 37 | xchg si, di
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| 38 | mov bl, CHANNEL_3 | READ | AUTOINIT_DISABLE | ADDRESS_INCREMENT | DEMAND_MODE
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| 39 | call TransferBlockToOrFromXTCF
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| 40 | xchg di, si
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| 41 | ret
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| 42 |
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| 43 |
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| 44 | ;--------------------------------------------------------------------
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| 45 | ; IdeDmaBlock_ReadFromXTCF
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| 46 | ; Parameters:
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| 47 | ; CX: Block size in 512 byte sectors
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| 48 | ; DX: XTCF Base Port Address
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| 49 | ; ES:DI: Physical address to buffer to receive data
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| 50 | ; Returns:
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| 51 | ; Nothing
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| 52 | ; Corrupts registers:
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| 53 | ; AX, BX, CX, DX
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| 54 | ;--------------------------------------------------------------------
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| 55 | ALIGN JUMP_ALIGN
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| 56 | IdeDmaBlock_ReadFromXTCF:
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| 57 | mov bl, CHANNEL_3 | WRITE | AUTOINIT_DISABLE | ADDRESS_INCREMENT | DEMAND_MODE
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| 58 | ; Fall to TransferBlockToOrFromXTCF
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| 59 |
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| 60 |
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| 61 | ;--------------------------------------------------------------------
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| 62 | ; TransferBlockToOrFromXTCF
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| 63 | ; Parameters:
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| 64 | ; BL: Mode byte for DMA Mode Register
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| 65 | ; CX: Block size in 512 byte sectors
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| 66 | ; DX: XTCF Base Port Address
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| 67 | ; ES:DI: Physical address to buffer to receive data
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| 68 | ; Returns:
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| 69 | ; Nothing
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| 70 | ; Corrupts registers:
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| 71 | ; AX, BX, CX, DX
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| 72 | ;--------------------------------------------------------------------
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| 73 | TransferBlockToOrFromXTCF:
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[491] | 74 | ; 8-bit DMA transfers must be done within 64k physical page.
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[486] | 75 | ; XT-CF support maximum of 64 sector (32768 bytes) blocks in DMA mode
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| 76 | ; so we never need to separate transfer to more than 2 separate DMA operations.
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[480] | 77 |
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[545] | 78 | ; Load XT-CFv3 Control Register port to DX
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[480] | 79 | add dl, XTCF_CONTROL_REGISTER
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| 80 |
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[551] | 81 | ; convert sectors in CX to BYTES
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[480] | 82 | %ifdef USE_186
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| 83 | shl cx, 9 ; CX = Block size in BYTEs
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| 84 | %else
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[558] | 85 | xchg cl, ch
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[480] | 86 | shl cx, 1
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| 87 | %endif
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[551] | 88 |
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| 89 | ; Calculate bytes for first page
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| 90 | mov ax, di
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[567] | 91 | neg ax ; 2s complement
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[551] | 92 |
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[558] | 93 | ; If DI was zero carry flag will be cleared (and set otherwise)
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[551] | 94 | ; When DI is zero only one transfer is required since we've limited the
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| 95 | ; XT-CFv3 block size to 32k
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[589] | 96 | jnc SHORT StartDMAtransferForXTCFwithDmaModeInBL
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[551] | 97 |
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| 98 | ; CF was set, so DI != 0 and we might need one or two transfers
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[589] | 99 | cmp cx, ax ; if we won't cross a physical page boundary...
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| 100 | jbe SHORT StartDMAtransferForXTCFwithDmaModeInBL ; ...perform the transfer in one operation
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[480] | 101 |
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[545] | 102 | ; Calculate how much we can transfer on first and second rounds
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[558] | 103 | xchg cx, ax ; CX = BYTEs for first page
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| 104 | sub ax, cx ; AX = BYTEs for second page
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| 105 | push ax ; Save bytes for second transfer on stack
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[480] | 106 |
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| 107 | ; Transfer first DMA page
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| 108 | call StartDMAtransferForXTCFwithDmaModeInBL
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| 109 | pop cx ; Pop size for second DMA page
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| 110 | ; Fall to StartDMAtransferForXTCFwithDmaModeInBL
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| 111 |
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| 112 |
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| 113 | ;--------------------------------------------------------------------
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| 114 | ; StartDMAtransferForXTCFwithDmaModeInBL
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| 115 | ; Parameters:
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[482] | 116 | ; BL: Byte for DMA Mode Register
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[551] | 117 | ; CX: Number of BYTEs to transfer (1...32768 since max block size is limited to 64)
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[545] | 118 | ; DX: XT-CFv3 Control Register
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| 119 | ; ES: Bits 3..0 have physical address bits 19..16
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| 120 | ; DI: Physical address bits 15..0
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[480] | 121 | ; Returns:
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[545] | 122 | ; ES:DI updated (CX is added)
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[480] | 123 | ; Corrupts registers:
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[558] | 124 | ; AX, CX
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[480] | 125 | ;--------------------------------------------------------------------
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| 126 | ALIGN JUMP_ALIGN
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| 127 | StartDMAtransferForXTCFwithDmaModeInBL:
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| 128 | ; Program 8-bit DMA Controller
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| 129 | ; Disable Interrupts and DMA Channel 3 during DMA setup
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| 130 | mov al, SET_CH3_MASK_BIT
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[545] | 131 | cli ; Disable interrupts - programming must be atomic
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| 132 | out MASK_REGISTER_DMA8_out, al ; Disable DMA Channel 3
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[480] | 133 |
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| 134 | ; Set DMA Mode (read or write using channel 3)
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| 135 | mov al, bl
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| 136 | out MODE_REGISTER_DMA8_out, al
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| 137 |
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[545] | 138 | ; Send start address to DMA controller
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[480] | 139 | mov ax, es
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| 140 | out PAGE_DMA8_CH_3, al
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| 141 | mov ax, di
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[545] | 142 | out CLEAR_FLIPFLOP_DMA8_out, al ; Reset flip-flop to low byte
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[480] | 143 | out BASE_AND_CURRENT_ADDRESS_REGISTER_DMA8_CH3_out, al ; Low byte
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| 144 | mov al, ah
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| 145 | out BASE_AND_CURRENT_ADDRESS_REGISTER_DMA8_CH3_out, al ; High byte
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| 146 |
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| 147 | ; Set number of bytes to transfer (DMA controller must be programmed number of bytes - 1)
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| 148 | mov ax, cx
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[545] | 149 | dec ax ; DMA controller is programmed for one byte less
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[480] | 150 | out BASE_AND_CURRENT_COUNT_REGISTER_DMA8_CH3_out, al ; Low byte
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| 151 | mov al, ah
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| 152 | out BASE_AND_CURRENT_COUNT_REGISTER_DMA8_CH3_out, al ; High byte
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| 153 |
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| 154 | ; Enable DMA Channel 3
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| 155 | mov al, CLEAR_CH3_MASK_BIT
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[545] | 156 | out MASK_REGISTER_DMA8_out, al ; Enable DMA Channel 3
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| 157 | sti ; Enable interrupts
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[480] | 158 |
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[558] | 159 | ; Update physical address in ES:DI - since IO might need several calls through this function either from here
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| 160 | ; if crossing a physical page boundary, or from IdeTransfer.asm if requested sectors was > PIOVARS.wSectorsInBlock
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| 161 | ; We update the pointer here (before the actual transfer) to avoid having to save the byte count on the stack
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| 162 | mov ax, es ; copy physical page address to ax
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| 163 | add di, cx ; add requested bytes to di
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| 164 | adc al, 0 ; and increment physical page address, if required
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| 165 | mov es, ax ; and save it back in es
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| 166 |
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[545] | 167 | ; XT-CF transfers 16 bytes at a time. We need to manually start transfer for every block by writing (anything)
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| 168 | ; to the XT-CFv3 Control Register, which raises DRQ thereby passing system control to the 8237 DMA controller.
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| 169 | ; The XT-CFv3 logic releases DRQ after 16 transfers, thereby handing control back to the CPU and allowing any other IRQs or
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| 170 | ; DRQs to be serviced (which, on the PC and PC/XT will include DRAM refresh via DMA channel 0). The 16-byte transfers can
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| 171 | ; also be interrupted by the DMA controller raising TC (i.e. when done). Each transfer cannot be otherwise interrupted
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| 172 | ; and is therefore atomic (and hence fast).
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[480] | 173 |
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[545] | 174 | %if 0 ; Slow DMA code - works by checking 8237 status register after each 16-byte transfer, until it reports TC has been raised.
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[558] | 175 | ALIGN JUMP_ALIGN
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| 176 | .TransferNextBlock:
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| 177 | cli ; We want no ISR to read DMA Status Register before we do
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| 178 | out dx, al ; Transfer up to 16 bytes to/from XT-CF card
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| 179 | in al, STATUS_REGISTER_DMA8_in
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| 180 | sti
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| 181 | test al, FLG_CH3_HAS_REACHED_TERMINAL_COUNT
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| 182 | jz SHORT .TransferNextBlock ; All bytes transferred?
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| 183 | %else ; Fast DMA code - perform computed number of transfers, then check DMA status register to be sure
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[567] | 184 | ; We'll divide transfers in 16-byte atomic transfers, so include any partial block, which will be terminated by the DMA controller raising T/C
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| 185 | add cx, BYTE 15
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| 186 |
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| 187 | %ifdef USE_186
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| 188 | shr cx, 4
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| 189 | %else
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| 190 | xchg cx, ax
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| 191 | mov cl, 4
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| 192 | shr ax, cl
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| 193 | xchg cx, ax
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| 194 | %endif
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| 195 |
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| 196 | ALIGN JUMP_ALIGN
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[486] | 197 | .TransferNextDmaBlock:
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[545] | 198 | out dx, al ; Transfer up to 16 bytes to/from XT-CF card
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| 199 | loop .TransferNextDmaBlock ; dec CX and loop if CX > 0, also adds required wait-state
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[486] | 200 | inc cx ; set up CX, in case we need to do an extra iteration
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[545] | 201 | in al, STATUS_REGISTER_DMA8_in ; check 8237 DMA controller status flags...
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| 202 | test al, FLG_CH3_HAS_REACHED_TERMINAL_COUNT ; ... for channel 3 terminal count
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| 203 | jz SHORT .TransferNextDmaBlock ; If not set, get more bytes
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[558] | 204 | %endif
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[486] | 205 |
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[480] | 206 | ret
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