371 lines
		
	
	
		
			9.6 KiB
		
	
	
	
		
			Factor
		
	
	
		
			Executable File
		
	
			
		
		
	
	
			371 lines
		
	
	
		
			9.6 KiB
		
	
	
	
		
			Factor
		
	
	
		
			Executable File
		
	
! Copyright (C) 2007 Slava Pestov.
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! See http://factorcode.org/license.txt for BSD license.
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USING: alien alien.c-types arrays cpu.arm.assembler compiler
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kernel kernel.private math namespaces words words.private
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generator.registers generator.fixup generator cpu.architecture
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system layouts ;
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IN: cpu.arm.architecture
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TUPLE: arm-backend ;
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! ARM register assignments:
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! R0-R4, R7-R10 integer vregs
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! R11, R12 temporary
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! R5 data stack
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! R6 retain stack
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! R7 primitives
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: ds-reg R5 ; inline
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: rs-reg R6 ; inline
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M: temp-reg v>operand drop R12 ;
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M: int-regs return-reg drop R0 ;
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M: int-regs param-regs drop { R0 R1 R2 R3 } ;
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M: int-regs vregs drop { R0 R1 R2 R3 R4 R7 R8 R9 R10 } ;
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! No FPU support yet
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M: float-regs param-regs drop { } ;
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M: float-regs vregs drop { } ;
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: <+/-> dup 0 < [ neg <-> ] [ <+> ] if ;
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GENERIC: loc>operand ( loc -- reg addressing )
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M: ds-loc loc>operand ds-loc-n cells neg ds-reg swap <+/-> ;
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M: rs-loc loc>operand rs-loc-n cells neg rs-reg swap <+/-> ;
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: load-cell ( reg -- )
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    [
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        "end" define-label
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        ! Load target address
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        PC 0 <+> LDR
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        ! Skip an instruction
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        "end" get B
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        ! The target address
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        0 ,
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        ! Continue here
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        "end" resolve-label
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    ] with-scope ;
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: call-cell ( -- )
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    ! Compute return address; we skip 3 instructions
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    LR PC 8 ADD
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    ! Load target address
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    R12 PC 0 <+> LDR
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    ! Jump to target address
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    R12 BX
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    ! The target address
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    0 , ;
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M: arm-backend load-indirect ( obj reg -- )
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    tuck load-cell rc-absolute-cell rel-literal
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    dup 0 <+> LDR ;
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M: immediate load-literal
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    over v>operand small-enough? [
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        [ v>operand ] bi@ swap MOV
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    ] [
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        v>operand load-indirect
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    ] if ;
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: lr-save ( n -- i ) cell - ;
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: next-save ( n -- i ) 2 cells - ;
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: xt-save ( n -- i ) 3 cells - ;
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: factor-area-size 5 cells ;
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M: arm-backend stack-frame ( n -- i )
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    factor-area-size + 8 align ;
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M: arm-backend %save-word-xt ( -- )
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    R12 PC 9 cells SUB ;
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M: arm-backend %save-dispatch-xt ( -- )
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    R12 PC 2 cells SUB ;
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M: arm-backend %prologue ( n -- )
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    SP SP pick SUB
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    R11 over MOV
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    R11 SP pick next-save <+> STR
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    R12 SP pick xt-save <+> STR
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    LR SP rot lr-save <+> STR ;
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M: arm-backend %epilogue ( n -- )
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    LR SP pick lr-save <+> LDR
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    SP SP rot ADD ;
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: compile-dlsym ( symbol dll reg -- )
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    load-cell rc-absolute rel-dlsym ;
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: %alien-global ( symbol dll reg -- )
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    [ compile-dlsym ] keep dup 0 <+> LDR ;
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M: arm-backend %profiler-prologue ( -- )
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    #! We can clobber R0 here since it is undefined at the start
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    #! of a word.
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    R12 load-indirect
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    R0 R12 profile-count-offset <+> LDR
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    R0 R0 1 v>operand ADD
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    R0 R12 profile-count-offset <+> STR ;
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M: arm-backend %call-label ( label -- ) BL ;
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M: arm-backend %jump-label ( label -- ) B ;
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: %prepare-primitive ( -- )
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    #! Save stack pointer to stack_chain->callstack_top, load XT
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    R1 SP 4 SUB ;
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M: arm-backend %call-primitive ( word -- )
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    %prepare-primitive
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    call-cell rc-absolute-cell rel-word ;
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M: arm-backend %jump-primitive ( word -- )
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    %prepare-primitive
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    ! Load target address
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    R12 PC 0 <+> LDR
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    ! Jump to target address
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    R12 BX
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    ! The target address
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    0 , rc-absolute-cell rel-word ;
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M: arm-backend %jump-t ( label -- )
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    "flag" operand f v>operand CMP NE B ;
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: (%dispatch) ( word-table# -- )
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    #! Load jump table target address into reg.
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    "scratch" operand PC "n" operand 1 <LSR> ADD
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    "scratch" operand dup 0 <+> LDR
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    rc-indirect-arm rel-dispatch
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    "scratch" operand dup compiled-header-size ADD ;
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M: arm-backend %call-dispatch ( word-table# -- )
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    [
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        (%dispatch)
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        "scratch" operand BLX
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    ] H{
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        { +input+ { { f "n" } } }
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        { +scratch+ { { f "scratch" } } }
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    } with-template ;
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M: arm-backend %jump-dispatch ( word-table# -- )
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    [
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        %epilogue-later
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        (%dispatch)
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        "scratch" operand BX
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    ] H{
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        { +input+ { { f "n" } } }
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        { +scratch+ { { f "scratch" } } }
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    } with-template ;
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M: arm-backend %return ( -- ) %epilogue-later PC LR MOV ;
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M: arm-backend %unwind drop %return ;
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M: arm-backend %peek >r v>operand r> loc>operand LDR ;
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M: arm-backend %replace >r v>operand r> loc>operand STR ;
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: (%inc) ( n reg -- )
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    dup rot cells dup 0 < [ neg SUB ] [ ADD ] if ;
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M: arm-backend %inc-d ( n -- ) ds-reg (%inc) ;
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M: arm-backend %inc-r ( n -- ) rs-reg (%inc) ;
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: stack@ SP swap <+> ;
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M: int-regs %save-param-reg drop swap stack@ STR ;
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M: int-regs %load-param-reg drop swap stack@ LDR ;
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M: stack-params %save-param-reg
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    drop
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    R12 swap stack-frame* + stack@ LDR
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    R12 swap stack@ STR ;
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M: stack-params %load-param-reg
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    drop
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    R12 rot stack@ LDR
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    R12 swap stack@ STR ;
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M: arm-backend %prepare-unbox ( -- )
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    ! First parameter is top of stack
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    R0 R5 4 <-!> LDR ;
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M: arm-backend %unbox ( n reg-class func -- )
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    ! Value must be in R0.
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    ! Call the unboxer
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    f %alien-invoke
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    ! Store the return value on the C stack
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    over [ [ return-reg ] keep %save-param-reg ] [ 2drop ] if ;
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M: arm-backend %unbox-long-long ( n func -- )
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    ! Value must be in R0:R1.
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    ! Call the unboxer
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    f %alien-invoke
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    ! Store the return value on the C stack
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    [
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        R0 over stack@ STR
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        R1 swap cell + stack@ STR
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    ] when* ;
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M: arm-backend %unbox-small-struct ( size -- )
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    #! Alien must be in R0.
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    drop
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    "alien_offset" f %alien-invoke
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    ! Load first cell
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    R0 R0 0 <+> LDR ;
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M: arm-backend %unbox-large-struct ( n size -- )
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    #! Alien must be in R0.
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    ! Compute destination address
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    R1 SP roll ADD
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    R2 swap MOV
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    ! Copy the struct to the stack
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    "to_value_struct" f %alien-invoke ;
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M: arm-backend %box ( n reg-class func -- )
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    ! If the source is a stack location, load it into freg #0.
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    ! If the source is f, then we assume the value is already in
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    ! freg #0.
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    >r
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    over [ 0 over param-reg swap %load-param-reg ] [ 2drop ] if
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    r> f %alien-invoke ;
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M: arm-backend %box-long-long ( n func -- )
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    >r [
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        R0 over stack@ LDR
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        R1 swap cell + stack@ LDR
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    ] when* r> f %alien-invoke ;
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M: arm-backend %box-small-struct ( size -- )
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    #! Box a 4-byte struct returned in R0.
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    R2 swap MOV
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    "box_small_struct" f %alien-invoke ;
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: temp@ stack-frame* factor-area-size - swap - ;
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: struct-return@ ( size n -- n )
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    [
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        stack-frame* +
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    ] [
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        stack-frame* factor-area-size - swap -
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    ] ?if ;
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M: arm-backend %prepare-box-struct ( size -- )
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    ! Compute target address for value struct return
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    R0 SP rot f struct-return@ ADD
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    ! Store it as the first parameter
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    R0 0 stack@ STR ;
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M: arm-backend %box-large-struct ( n size -- )
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    ! Compute destination address
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    [ swap struct-return@ ] keep
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    R0 SP roll ADD
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    R1 swap MOV
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    ! Copy the struct from the C stack
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    "box_value_struct" f %alien-invoke ;
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M: arm-backend struct-small-enough? ( size -- ? )
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    wince? [ drop f ] [ 4 <= ] if ;
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M: arm-backend %prepare-alien-invoke
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    #! Save Factor stack pointers in case the C code calls a
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    #! callback which does a GC, which must reliably trace
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    #! all roots.
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    "stack_chain" f R12 %alien-global
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    SP R12 0 <+> STR
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    ds-reg R12 8 <+> STR
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    rs-reg R12 12 <+> STR ;
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M: arm-backend %alien-invoke ( symbol dll -- )
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    call-cell rc-absolute-cell rel-dlsym ;
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M: arm-backend %prepare-alien-indirect ( -- )
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    "unbox_alien" f %alien-invoke
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    R0 SP cell temp@ <+> STR ;
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M: arm-backend %alien-indirect ( -- )
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    R12 SP cell temp@ <+> LDR
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    R12 BLX ;
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M: arm-backend %alien-callback ( quot -- )
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    R0 load-indirect
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    "c_to_factor" f %alien-invoke ;
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M: arm-backend %callback-value ( ctype -- )
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    ! Save top of data stack
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    %prepare-unbox
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    R0 SP cell temp@ <+> STR
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    ! Restore data/call/retain stacks
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    "unnest_stacks" f %alien-invoke
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    ! Place former top of data stack in R0
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    R0 SP cell temp@ <+> LDR
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    ! Unbox R0
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    unbox-return ;
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M: arm-backend %cleanup ( alien-node -- ) drop ;
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: %untag ( dest src -- ) BIN: 111 BIC ;
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: %untag-fixnum ( dest src -- ) tag-bits get <ASR> MOV ;
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: %tag-fixnum ( dest src -- ) tag-bits get <LSL> MOV ;
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M: arm-backend value-structs? t ;
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M: arm-backend small-enough? ( n -- ? ) 0 255 between? ;
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M: long-long-type c-type-stack-align? drop wince? not ;
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M: arm-backend fp-shadows-int? ( -- ? ) f ;
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! Alien intrinsics
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M: arm-backend %unbox-byte-array ( dst src -- )
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    [ v>operand ] bi@ byte-array-offset ADD ;
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M: arm-backend %unbox-alien ( dst src -- )
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    [ v>operand ] bi@ alien-offset <+> LDR ;
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M: arm-backend %unbox-f ( dst src -- )
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    drop v>operand 0 MOV ;
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M: arm-backend %unbox-any-c-ptr ( dst src -- )
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    #! We need three registers here. R11 and R12 are reserved
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    #! temporary registers. The third one is R14, which we have
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    #! to save/restore.
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    "end" define-label
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    "start" define-label
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    ! Save R14.
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    R14 SP 4 <-> STR
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    ! Address is computed in R11
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    R11 0 MOV
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    ! Load object into R12
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    R12 swap v>operand MOV
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    ! We come back here with displaced aliens
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    "start" resolve-label
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    ! Is the object f?
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    R12 f v>operand CMP
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    ! If so, done
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    "end" get EQ B
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    ! Is the object an alien?
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    R14 R12 header-offset <+/-> LDR
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    R14 alien type-number tag-fixnum CMP
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    ! Add byte array address to address being computed
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    R11 R11 R12 NE ADD
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    ! Add an offset to start of byte array's data area
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    R11 R11 byte-array-offset NE ADD
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    "end" get NE B
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    ! If alien, load the offset
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    R14 R12 alien-offset <+/-> LDR
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    ! Add it to address being computed
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    R11 R11 R14 ADD
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    ! Now recurse on the underlying alien
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    R12 R12 underlying-alien-offset <+/-> LDR
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    "start" get B
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    "end" resolve-label
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    ! Done, store address in destination register
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    v>operand R11 MOV
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    ! Restore R14.
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    R14 SP 4 <-> LDR ;
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