[277] | 1 | ; Project name : Assembly Library
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| 2 | ; Description : Serial Server Support
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| 3 |
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[376] | 4 | ;
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[491] | 5 | ; XTIDE Universal BIOS and Associated Tools
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[526] | 6 | ; Copyright (C) 2009-2010 by Tomi Tilli, 2011-2013 by XTIDE Universal BIOS Team.
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[376] | 7 | ;
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| 8 | ; This program is free software; you can redistribute it and/or modify
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| 9 | ; it under the terms of the GNU General Public License as published by
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| 10 | ; the Free Software Foundation; either version 2 of the License, or
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| 11 | ; (at your option) any later version.
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[491] | 12 | ;
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[376] | 13 | ; This program is distributed in the hope that it will be useful,
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| 14 | ; but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 15 | ; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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[491] | 16 | ; GNU General Public License for more details.
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[376] | 17 | ; Visit http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
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| 18 | ;
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| 19 |
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[491] | 20 |
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[277] | 21 | %include "SerialServer.inc"
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[293] | 22 |
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[277] | 23 | ; Section containing code
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| 24 | SECTION .text
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| 25 |
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| 26 | ;--------------------------------------------------------------------
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[293] | 27 | ; SerialServer_SendReceive:
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[277] | 28 | ; Parameters:
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[567] | 29 | ; DX: Packed I/O port and baud rate
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[277] | 30 | ; ES:SI: Ptr to buffer (for data transfer commands)
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| 31 | ; SS:BP: Ptr to SerialServer_Command structure
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| 32 | ; Returns:
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| 33 | ; AH: INT 13h Error Code
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[567] | 34 | ; CX: Number of 512-byte blocks transferred
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[277] | 35 | ; CF: Cleared if success, Set if error
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| 36 | ; Corrupts registers:
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| 37 | ; AL, BX, CX, DX
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| 38 | ;--------------------------------------------------------------------
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[293] | 39 | SerialServer_SendReceive:
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| 40 |
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[277] | 41 | push si
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| 42 | push di
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| 43 | push bp
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| 44 |
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| 45 | ;
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| 46 | ; Unpack I/O port and baud from DPT
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| 47 | ; Port to DX for the remainder of the routine (+/- different register offsets)
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| 48 | ; Baud in CH until UART initialization is complete
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| 49 | ;
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| 50 | mov ch,dh
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| 51 | xor dh,dh
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| 52 | eSHL_IM dx, 2 ; shift from one byte to two
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| 53 |
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| 54 | mov al,[bp+SerialServer_Command.bSectorCount]
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| 55 | mov ah,[bp+SerialServer_Command.bCommand]
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[293] | 56 |
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[277] | 57 | ;
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| 58 | ; Command byte and sector count live at the top of the stack, pop/push are used to access
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| 59 | ;
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| 60 | push ax ; save sector count for return value
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| 61 | push ax ; working copy on the top of the stack
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| 62 |
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[592] | 63 | %ifndef EXCLUDE_FROM_XUB ; DF already cleared in Int13h.asm
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| 64 | %ifdef CLD_NEEDED
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[277] | 65 | cld
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[293] | 66 | %endif
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[592] | 67 | %endif
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[277] | 68 |
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| 69 | ;----------------------------------------------------------------------
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| 70 | ;
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| 71 | ; Initialize UART
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| 72 | ;
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| 73 | ; We do this each time since DOS (at boot) or another program may have
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| 74 | ; decided to reprogram the UART
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| 75 | ;
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| 76 | mov bl,dl ; setup BL with proper values for read/write loops (BH comes later)
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| 77 |
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| 78 | mov al,83h
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[491] | 79 | add dl, Serial_UART_lineControl ; Clears CF
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[277] | 80 | out dx,al
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| 81 |
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| 82 | mov al,ch
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| 83 | mov dl,bl ; divisor low
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| 84 | out dx,al
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| 85 |
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[491] | 86 | %ifdef USE_UNDOC_INTEL
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[568] | 87 | salc ; Clear AL using CF
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[491] | 88 | %else
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[568] | 89 | xor al, al
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[491] | 90 | %endif
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[277] | 91 | inc dx ; divisor high
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| 92 | push dx
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| 93 | out dx,al
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| 94 |
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| 95 | mov al,047h
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[566] | 96 | inc dx ; fifo
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[277] | 97 | out dx,al
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| 98 |
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| 99 | mov al,03h
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[566] | 100 | inc dx ; linecontrol
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[277] | 101 | out dx,al
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| 102 |
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| 103 | mov al,0bh
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[566] | 104 | inc dx ; modemcontrol
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[277] | 105 | out dx,al
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| 106 |
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[566] | 107 | inc dx ; linestatus (no output now, just setting up BH for later use)
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[277] | 108 | mov bh,dl
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| 109 |
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| 110 | pop dx ; base, interrupts disabled
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[491] | 111 | %ifdef USE_UNDOC_INTEL
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[568] | 112 | salc ; Clear AL using CF
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[491] | 113 | %else
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[568] | 114 | xor al, al
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[491] | 115 | %endif
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[277] | 116 | out dx,al
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| 117 |
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| 118 | ;----------------------------------------------------------------------
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| 119 | ;
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| 120 | ; Send Command
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| 121 | ;
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| 122 | ; Sends first six bytes of IDEREGS_AND_INTPACK as the command
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| 123 | ;
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| 124 | push es ; save off real buffer location
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| 125 | push si
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| 126 |
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| 127 | mov si,bp ; point to IDEREGS for command dispatch;
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| 128 | push ss
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| 129 | pop es
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| 130 |
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| 131 | mov di,0ffffh ; initialize checksum for write
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| 132 | mov bp,di
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| 133 |
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| 134 | mov cx,4 ; writing 3 words (plus 1)
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| 135 |
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| 136 | cli ; interrupts off...
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| 137 |
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| 138 | call SerialServer_WriteProtocol.entry
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| 139 |
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| 140 | pop di ; restore real buffer location (note change from SI to DI)
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| 141 | ; Buffer is primarily referenced through ES:DI throughout, since
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| 142 | ; we need to store (read sector) faster than we read (write sector)
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| 143 | pop es
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| 144 |
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| 145 | pop ax ; load command byte (done before call to .nextSector on subsequent iterations)
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| 146 | push ax
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| 147 |
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[292] | 148 | %ifndef SERIALSERVER_NO_ZERO_SECTOR_COUNTS
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[277] | 149 | test al,al ; if no sectors to be transferred, wait for the ACK checksum on the command
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| 150 | jz .zeroSectors
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[292] | 151 | %endif
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[293] | 152 |
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[277] | 153 | ;
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| 154 | ; Top of the read/write loop, one iteration per sector
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| 155 | ;
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| 156 | .nextSector:
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| 157 | mov si,0ffffh ; initialize checksum for read or write
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| 158 | mov bp,si
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| 159 |
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| 160 | mov cx,0101h ; writing 256 words (plus 1)
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| 161 |
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[566] | 162 | sahf ; command byte, are we doing a write?
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[277] | 163 | jnc .readEntry
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| 164 |
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| 165 | xchg si,di ; swap pointer and checksum, will be re-swap'ed in WriteProtocol
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| 166 | call SerialServer_WriteProtocol.entry
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| 167 |
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| 168 | .zeroSectors:
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| 169 | inc cx ; CX = 1 now (0 out of WriteProtocol)
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| 170 | jmp .readEntry
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| 171 |
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| 172 | ;----------------------------------------------------------------------
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| 173 | ;
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| 174 | ; Timeout
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| 175 | ;
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| 176 | ; To save code space, we use the contents of DL to decide which byte in the word to return for reading.
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| 177 | ;
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| 178 | .readTimeout:
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| 179 | push ax ; not only does this push preserve AX (which we need), but it also
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| 180 | ; means the stack has the same number of bytes on it as when we are
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| 181 | ; sending a packet, important for error cleanup and exit
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| 182 | mov ah,1
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| 183 | call SerialServer_WaitAndPoll_Read
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| 184 | pop ax
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| 185 | test dl,1
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| 186 | jz .readByte1Ready
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| 187 | jmp .readByte2Ready
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| 188 |
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| 189 | ;----------------------------------------------------------------------------
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| 190 | ;
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| 191 | ; Read Block (without interrupts, used when there is a FIFO, high speed)
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| 192 | ;
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| 193 | ; NOTE: This loop is very time sensitive. Literally, another instruction
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| 194 | ; cannot be inserted into this loop without us falling behind at high
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| 195 | ; speed (460.8K baud) on a 4.77Mhz 8088, making it hard to receive
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| 196 | ; a full 512 byte block.
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| 197 | ;
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| 198 | .readLoop:
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| 199 | stosw ; store word in caller's data buffer
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| 200 |
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| 201 | add bp, ax ; update Fletcher's checksum
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| 202 | adc bp, 0
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| 203 | add si, bp
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| 204 | adc si, 0
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| 205 |
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| 206 | .readEntry:
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| 207 | mov dl,bh
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| 208 | in al,dx
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| 209 | shr al,1 ; data ready (byte 1)?
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| 210 | mov dl,bl ; get ready to read data
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| 211 | jnc .readTimeout ; nope not ready, update timeouts
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| 212 |
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| 213 | ;
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| 214 | ; Entry point after initial timeout. We enter here so that the checksum word
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| 215 | ; is not stored (and is left in AX after the loop is complete).
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| 216 | ;
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| 217 | .readByte1Ready:
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| 218 | in al, dx ; read data byte 1
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| 219 |
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| 220 | mov ah, al ; store byte in ah for now
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| 221 |
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| 222 | ;
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| 223 | ; note the placement of this reset of dl to bh, and that it is
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| 224 | ; before the return, which is assymetric with where this is done
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| 225 | ; above for byte 1. The value of dl is used by the timeout routine
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| 226 | ; to know which byte to return to (.read_byte1_ready or
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| 227 | ; .read_byte2_ready)
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| 228 | ;
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| 229 | mov dl,bh
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| 230 |
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| 231 | in al,dx
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| 232 | shr al,1 ; data ready (byte 2)?
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| 233 | jnc .readTimeout
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| 234 | .readByte2Ready:
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| 235 | mov dl,bl
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| 236 | in al, dx ; read data byte 2
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| 237 |
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| 238 | xchg al, ah ; ah was holding byte 1, reverse byte order
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| 239 |
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| 240 | loop .readLoop
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| 241 |
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| 242 | sti ; interrupts back on ASAP, between packets
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| 243 |
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| 244 | ;
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| 245 | ; Compare checksums
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| 246 | ;
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| 247 | xchg ax,bp
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| 248 | xor ah,al
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| 249 | mov cx,si
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| 250 | xor cl,ch
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| 251 | mov al,cl
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| 252 | cmp ax,bp
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| 253 | jnz SerialServer_OutputWithParameters_Error
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| 254 |
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| 255 | pop ax ; sector count and command byte
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| 256 | dec al ; decrement sector count
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| 257 | push ax ; save
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| 258 | jz SerialServer_OutputWithParameters_ReturnCodeInAL
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| 259 |
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| 260 | cli ; interrupts back off for ACK byte to host
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| 261 | ; (host could start sending data immediately)
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| 262 | out dx,al ; ACK with next sector number
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| 263 |
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| 264 | jmp short .nextSector
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| 265 |
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| 266 | ;---------------------------------------------------------------------------
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| 267 | ;
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| 268 | ; Cleanup, error reporting, and exit
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| 269 | ;
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| 270 |
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| 271 | ;
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| 272 | ; Used in situations where a call is underway, such as with SerialServer_WaitAndPoll
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| 273 | ;
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| 274 | ALIGN JUMP_ALIGN
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| 275 | SerialServer_OutputWithParameters_ErrorAndPop4Words:
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| 276 | add sp,8
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| 277 | ;;; fall-through
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| 278 |
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| 279 | ALIGN JUMP_ALIGN
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| 280 | SerialServer_OutputWithParameters_Error:
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| 281 | ;----------------------------------------------------------------------
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| 282 | ;
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| 283 | ; Clear read buffer
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| 284 | ;
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| 285 | ; In case there are extra characters or an error in the FIFO, clear it out.
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| 286 | ; In theory the initialization of the UART registers above should have
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| 287 | ; taken care of this, but I have seen cases where this is not true.
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| 288 | ;
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[566] | 289 | xor cx,cx ; timeout this clearing routine, in case the UART isn't there
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[277] | 290 | .clearBuffer:
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| 291 | mov dl,bh
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| 292 | in al,dx
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| 293 | mov dl,bl
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| 294 | test al,08fh
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| 295 | jz .clearBufferComplete
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| 296 | test al,1
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| 297 | in al,dx
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[566] | 298 | loopnz .clearBuffer ; note ZF from test above
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[277] | 299 |
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| 300 | .clearBufferComplete:
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[566] | 301 | mov al, 1 ; error return code
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[277] | 302 |
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| 303 | ALIGN JUMP_ALIGN
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| 304 | SerialServer_OutputWithParameters_ReturnCodeInAL:
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| 305 | %if 0
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[566] | 306 | sti ; all paths here will already have interrupts turned back on
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[277] | 307 | %endif
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[566] | 308 | mov ah, al ; for success, AL will already be zero
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[293] | 309 |
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[566] | 310 | pop bx ; recover "ax" (command and count) from stack
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| 311 | pop cx ; recover saved sector count
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[293] | 312 | xor ch, ch
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[277] | 313 | sub cl, bl ; subtract off the number of sectors that remained
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| 314 |
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| 315 | pop bp
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| 316 | pop di
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| 317 | pop si
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| 318 |
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[566] | 319 | sahf ; error return code to CF
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[277] | 320 |
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| 321 | ret
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| 322 |
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| 323 | ;--------------------------------------------------------------------
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| 324 | ; SerialServer_WriteProtocol
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| 325 | ;
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| 326 | ; NOTE: As with its read counterpart, this loop is very time sensitive.
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| 327 | ; Although it will still function, adding additional instructions will
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| 328 | ; impact the write throughput, especially on slower machines.
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| 329 | ;
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| 330 | ; Parameters:
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| 331 | ; ES:SI: Ptr to buffer
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| 332 | ; CX: Words to write, plus 1
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| 333 | ; BP/DI: Initialized for Checksum (-1 in each)
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| 334 | ; DH: I/O Port high byte
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| 335 | ; BX: LineStatus Register address (BH) and Receive/Transmit Register address (BL)
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| 336 | ; Returns:
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| 337 | ; BP/SI: Checksum for written bytes, compared against ACK from server in .readLoop
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[567] | 338 | ; CX: Zero
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[277] | 339 | ; DL: Receive/Transmit Register address
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[567] | 340 | ; ES:DI: Ptr to buffer
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[277] | 341 | ; Corrupts registers:
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| 342 | ; AX
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| 343 | ;--------------------------------------------------------------------
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| 344 | ALIGN JUMP_ALIGN
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| 345 | SerialServer_WriteProtocol:
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| 346 | .writeLoop:
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| 347 | es lodsw ; fetch next word
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| 348 |
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| 349 | out dx,al ; output first byte
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| 350 |
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| 351 | add bp,ax ; update checksum
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| 352 | adc bp,0
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| 353 | add di,bp
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| 354 | adc di,0
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| 355 |
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| 356 | mov dl,bh ; transmit buffer empty?
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| 357 | in al,dx
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| 358 | test al,20h
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| 359 | jz .writeTimeout2 ; nope, use our polling routine
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| 360 |
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| 361 | .writeByte2Ready:
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| 362 | mov dl,bl
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| 363 | mov al,ah ; output second byte
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| 364 | out dx,al
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| 365 |
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| 366 | .entry:
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| 367 | mov dl,bh ; transmit buffer empty?
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| 368 | in al,dx
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| 369 | test al,20h
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| 370 | mov dl,bl
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| 371 | jz .writeTimeout1 ; nope, use our polling routine
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| 372 |
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| 373 | .writeByte1Ready:
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| 374 | loop .writeLoop
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| 375 |
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| 376 | mov ax,di ; fold Fletcher's checksum and output
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| 377 | xor al,ah
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| 378 | out dx,al ; byte 1
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| 379 |
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| 380 | call SerialServer_WaitAndPoll_Write
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| 381 |
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| 382 | mov ax,bp
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| 383 | xor al,ah
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| 384 | out dx,al ; byte 2
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| 385 |
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| 386 | xchg si,di ; preserve checksum word in si, move pointer back to di
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| 387 |
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| 388 | ret
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| 389 |
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| 390 | .writeTimeout2:
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| 391 | mov dl,ah ; need to preserve AH, but don't need DL (will be reset upon return)
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| 392 | call SerialServer_WaitAndPoll_Write
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| 393 | mov ah,dl
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| 394 | jmp .writeByte2Ready
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| 395 |
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| 396 | .writeTimeout1:
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[293] | 397 | ePUSH_T ax, .writeByte1Ready ; return address for ret at end of SC_writeTimeout2
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[277] | 398 | ;;; fall-through
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| 399 |
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| 400 | ;--------------------------------------------------------------------
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| 401 | ; SerialServer_WaitAndPoll
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| 402 | ;
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| 403 | ; Parameters:
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| 404 | ; AH: UART_LineStatus bit to test (20h for write, or 1h for read)
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[567] | 405 | ; One entry point fills in AH with 20h for write
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[277] | 406 | ; DX: Port address (OK if already incremented to UART_lineStatus)
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[567] | 407 | ; BX:
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| 408 | ; Stack: 2 words on the stack below the command/count word
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[277] | 409 | ; Returns:
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[567] | 410 | ; Returns when desired UART_LineStatus bit is cleared
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| 411 | ; Jumps directly to error exit if timeout elapses (and cleans up stack)
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[277] | 412 | ; Corrupts registers:
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[567] | 413 | ; AX
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[277] | 414 | ;--------------------------------------------------------------------
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| 415 |
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| 416 | SerialServer_WaitAndPoll_SoftDelayTicks EQU 20
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| 417 |
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| 418 | ALIGN JUMP_ALIGN
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| 419 | SerialServer_WaitAndPoll_Write:
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| 420 | mov ah,20h
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| 421 | ;;; fall-through
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| 422 |
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| 423 | ALIGN JUMP_ALIGN
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| 424 | SerialServer_WaitAndPoll_Read:
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| 425 | push cx
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| 426 | push dx
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| 427 |
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| 428 | ;
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| 429 | ; We first poll in a tight loop, interrupts off, for the next character to come in/be sent
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| 430 | ;
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| 431 | xor cx,cx
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| 432 | .readTimeoutLoop:
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| 433 | mov dl,bh
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| 434 | in al,dx
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| 435 | test al,ah
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| 436 | jnz .readTimeoutComplete
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| 437 | loop .readTimeoutLoop
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| 438 |
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| 439 | ;
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| 440 | ; If that loop completes, then we assume there is a long delay involved, turn interrupts back on
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| 441 | ; and wait for a given number of timer ticks to pass.
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| 442 | ;
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| 443 | sti
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[566] | 444 | %ifndef SERIALSERVER_TIMER_LOCATION
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[277] | 445 | mov cl,SerialServer_WaitAndPoll_SoftDelayTicks
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| 446 | call Timer_InitializeTimeoutWithTicksInCL
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| 447 | %else
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| 448 | push ax
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| 449 | push bx
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| 450 | mov ax,SerialServer_WaitAndPoll_SoftDelayTicks
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| 451 | mov bx,SERIALSERVER_TIMER_LOCATION
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| 452 | call TimerTicks_InitializeTimeoutFromAX
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| 453 | pop bx
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| 454 | pop ax
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| 455 | %endif
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[293] | 456 |
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[277] | 457 | .WaitAndPoll:
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| 458 | %ifndef SERIALSERVER_TIMER_LOCATION
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| 459 | call Timer_SetCFifTimeout
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| 460 | %else
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| 461 | push ax
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| 462 | push bx
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| 463 | mov bx,SERIALSERVER_TIMER_LOCATION
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| 464 | call TimerTicks_GetTimeoutTicksLeftToAXfromDSBX
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| 465 | pop bx
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| 466 | pop ax
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[293] | 467 | %endif
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[277] | 468 | jc SerialServer_OutputWithParameters_ErrorAndPop4Words
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| 469 | in al,dx
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| 470 | test al,ah
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| 471 | jz .WaitAndPoll
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| 472 | cli
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| 473 |
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| 474 | .readTimeoutComplete:
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| 475 | pop dx
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| 476 | pop cx
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| 477 | ret
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| 478 |
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| 479 |
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