mirror of
https://github.com/samsonjs/sectorlisp.git
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307 lines
7.9 KiB
ArmAsm
307 lines
7.9 KiB
ArmAsm
/*-*- mode:unix-assembly; indent-tabs-mode:t; tab-width:8; coding:utf-8 -*-│
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│vi: set et ft=asm ts=8 tw=8 fenc=utf-8 :vi│
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╞══════════════════════════════════════════════════════════════════════════════╡
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│ Copyright 2020 Justine Alexandra Roberts Tunney │
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│ Copyright 2021 Alain Greppin │
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│ Some size optimisations by Peter Ferrie │
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│ │
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│ Permission to use, copy, modify, and/or distribute this software for │
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│ any purpose with or without fee is hereby granted, provided that the │
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│ above copyright notice and this permission notice appear in all copies. │
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│ │
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│ THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL │
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│ WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED │
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│ WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE │
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│ AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL │
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│ DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR │
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│ PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER │
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│ TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR │
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│ PERFORMANCE OF THIS SOFTWARE. │
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╚─────────────────────────────────────────────────────────────────────────────*/
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// LISP meta-circular evaluator in a MBR
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// Compatible with the original hardware
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.set g_token, %bp
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.set g_mem, %bp
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.set ZERO, %bh
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.set TWO, %bx
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.section .text,"ax",@progbits
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.type kNil,@object
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.type kT,@object
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.type kQuote,@object
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.type kCond,@object
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.type kAtom,@object
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.type kCar,@object
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.type kCdr,@object
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.type kCons,@object
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.type kEq,@object
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.type start,@function
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.type begin,@function
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.globl _start
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.code16
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_start:
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kNil: .asciz "NIL" # dec %si ; dec %cx ; dec %sp
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kT: .asciz "T" # add %dl,(%si) boot A:\ DL=0
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start: ljmp $0x7c00>>4,$begin # cs = 0x7c00 is boot address
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.asciz ""
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kQuote: .asciz "QUOTE"
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kCond: .asciz "COND"
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kAtom: .asciz "ATOM" # ordering matters
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kCar: .asciz "CAR" # ordering matters
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kCdr: .asciz "CDR" # ordering matters
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kCons: .asciz "CONS" # ordering matters
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kEq: .asciz "EQ" # needs to be last
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begin: xor %ax,%ax
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push %cs # memory model ds=es=ss=cs
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pop %ds
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push %cs
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pop %es
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push %cs
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cli # disable interrupts
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pop %ss # disable nonmaskable interrupts
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mov %ax,%sp # use null pointer as our stack
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sti # enable interrupts
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cld # direction forward
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mov $2,TWO
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mov $Eval,%cx
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mov $0x8000,g_mem
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main: mov $'\n',%dl
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call GetToken
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call GetObject
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xor %dx,%dx
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call *%cx # call Eval
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xchg %ax,%di
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call PrintObject
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mov $'\r',%al
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call PutChar
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jmp main
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GetToken: # GetToken():al, dl is g_look
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mov g_token,%di
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mov %di,%si
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1: mov %dl,%al
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cmp $' ',%al
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jbe 2f
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stosb
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xchg %ax,%si
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2: call GetChar
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xchg %ax,%dx # dl = g_look
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cmp $' ',%al
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jbe 1b
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cmp $')',%al
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jbe 3f
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cmp $')',%dl
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ja 1b
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3: movb ZERO,(%di)
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xchg %si,%ax
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ret
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.PutObject: # .PutObject(c:al,x:di)
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call PutChar # preserves di
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PrintObject: # PrintObject(x:di)
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test %di,%di # set sf=1 if cons
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js .PrintList # jump if cons
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.PrintAtom:
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mov %di,%si # lea g_str(%di),%si
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.PrintString: # nul-terminated in si
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lodsb
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test %al,%al # test for nul terminator
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jz .ret # -> ret
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call PutChar
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jmp .PrintString
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.PrintList:
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mov $'(',%al
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2: push (TWO,%di) # save 1 Cdr(x)
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mov (%di),%di # di = Car(x)
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call .PutObject
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pop %ax # restore 1
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test %ax,%ax
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jz 4f # jump if nil
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xchg %ax,%di
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mov $' ',%al
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js 2b # jump if cons
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mov $249,%al # bullet (A∙B)
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call .PutObject
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4: mov $')',%al
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jmp PutChar
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GetObject: # called just after GetToken
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cmpb $'(',%al
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je GetList
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.Intern:
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xor %di,%di # di = g_str
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xor %al,%al
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0: push %di # save 1
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1: cmpsb
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jne 2f
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dec %di
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scasb
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jne 1b
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jmp 5f
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2: pop %si # drop 1
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mov g_token,%si
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3: scasb
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jne 3b
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cmp (%di),%al
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jne 0b
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push %di # StpCpy
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4: movsb
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dec %di
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scasb
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jnz 4b
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5: pop %ax # restore 1
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.ret: ret
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GetChar:
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xor %ax,%ax # get keystroke
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int $0x16 # keyboard service
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# ah is bios scancode
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# al is ascii character
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PutChar:
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push %bp # original ibm pc scroll up bug
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mov $0x0e,%ah # teletype output al cp437
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int $0x10 # vidya service
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pop %bp # preserves al
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cmp $'\r',%al # don't clobber stuff
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jne .ret
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mov $'\n',%al
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jmp PutChar # bx volatile
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////////////////////////////////////////////////////////////////////////////////
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Pairlis:test %di,%di # Pairlis(x:di,y:si,a:dx):ax
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jz 1f # jump if nil
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push (TWO,%di) # save 1 Cdr(x)
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lodsw
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push (%si) # save 2 Cdr(y)
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mov (%di),%di
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call Cons # preserves dx
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pop %si # restore 2
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pop %di # restore 1
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push %ax # save 3
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call Pairlis
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jmp xCons # can be inlined here
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1: xchg %dx,%ax
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ret
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Evlis: test %di,%di # Evlis(m:di,a:dx):ax
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jz 1f # jump if nil
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push (TWO,%di) # save 1 Cdr(m)
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mov (%di),%ax
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push %dx # save a
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call *%cx # call Eval
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pop %dx # restore a
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pop %di # restore 1
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push %ax # save 2
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call Evlis
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xCons: pop %di # restore 2
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Cons: xchg %ax,%si # Cons(m:di,a:ax):ax
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xchg %di,%ax
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mov g_mem,%di
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stosw
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xchg %si,%ax
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stosw
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xchg %di,g_mem
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1: xchg %di,%ax
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ret
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GetList:call GetToken
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cmpb $')',%al
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je .retF
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call GetObject
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push %ax # save 1
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call GetList
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jmp xCons
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1: mov (TWO,%di),%di # di = Cdr(c)
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Evcon: push %di # save c
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mov (%di),%si # di = Car(c)
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lodsw # ax = Caar(c)
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push %dx # save a
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call *%cx # call Eval
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pop %dx # restore a
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pop %di # restore c
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test %ax,%ax # nil test
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jz 1b
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mov (%di),%di # di = Car(c)
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.EvCadr:call Cadr # ax = Cadar(c)
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# jmp Eval
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Eval: test %ax,%ax # Eval(e:ax,a:dx):ax
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jns Assoc # lookup val if atom
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xchg %ax,%si # di = e
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lodsw # ax = Car(e)
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cmp $kQuote,%ax # maybe CONS
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mov (%si),%di # di = Cdr(e)
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je Car
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cmp $kCond,%ax
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je Evcon
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.Ldflt2:push %ax # save 2
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call Evlis # preserves dx
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xchg %ax,%si
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pop %ax # restore 2
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# jmp Apply
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Apply: test %ax,%ax # Apply(fn:ax,x:si:a:dx):ax
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jns .switch # jump if atom
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xchg %ax,%di # di = fn
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.lambda:mov (TWO,%di),%di # di = Cdr(fn)
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push %di # save 1
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mov (%di),%di # di = Cadr(fn)
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call Pairlis
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xchg %ax,%dx
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pop %di # restore 1
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jmp .EvCadr
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.ifCons:cmp $kCons,%al
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mov (TWO,%si),%si # si = Cdr(x)
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lodsw # si = Cadr(x)
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je Cons
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.isEq: cmp %di,%ax # we know for certain it's eq
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jne .retF
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.retT: mov $kT,%ax
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ret
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.switch:cmp $kEq,%ax # eq is last builtin atom
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ja .dflt1 # ah is zero if not above
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mov (%si),%di # di = Car(x)
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.ifCar: cmp $kCar,%al
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je Car
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.ifCdr: cmp $kCdr,%al
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je Cdr
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.ifAtom:cmp $kAtom,%al
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jne .ifCons
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test %di,%di # test if atom
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jns .retT
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.retF: xor %ax,%ax # ax = nil
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ret
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.dflt1: push %si # save x
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push %dx # save a
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call *%cx # call Eval
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pop %dx # restore a
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pop %si # restore x
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jmp Apply
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Cadr: mov (TWO,%di),%di # contents of decrement register
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.byte 0x3C # cmp §scasw,%al (nop next byte)
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Cdr: scasw # increments our data index by 2
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Car: mov (%di),%ax # contents of address register!!
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ret
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.Assoc: mov (TWO,%si),%dx # dx = Cdr(y)
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Assoc: mov %dx,%si # Assoc(x:ax,y:dx):ax
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test %dx,%dx # nil test
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jz .retF
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mov (%si),%di # bx = Car(y)
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cmp %ax,(%di) # (%di) = Caar(y)
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jne .Assoc
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mov (TWO,%di),%ax # ax = Cdar(y)
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ret
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.type .sig,@object;
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.sig:
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.fill 510 - (. - _start), 1, 0xce
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.word 0xAA55
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