factor/basis/cpu/x86/32/32.factor

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8.6 KiB
Factor
Executable File

! Copyright (C) 2005, 2010 Slava Pestov.
! See http://factorcode.org/license.txt for BSD license.
USING: locals alien alien.c-types alien.libraries alien.syntax
arrays kernel fry math namespaces sequences system layouts io
vocabs.loader accessors init classes.struct combinators
make words compiler.constants compiler.codegen.fixup
compiler.cfg.instructions compiler.cfg.builder compiler.cfg.intrinsics
compiler.cfg.stack-frame cpu.x86.assembler cpu.x86.assembler.operands
cpu.x86 cpu.architecture vm ;
FROM: layouts => cell ;
IN: cpu.x86.32
M: x86.32 machine-registers
{
{ int-regs { EAX ECX EDX EBP EBX } }
{ float-regs { XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 } }
} ;
M: x86.32 ds-reg ESI ;
M: x86.32 rs-reg EDI ;
M: x86.32 stack-reg ESP ;
M: x86.32 frame-reg EBP ;
M: x86.32 temp-reg ECX ;
M: x86.32 immediate-comparand? ( obj -- ? ) drop t ;
M:: x86.32 %load-vector ( dst val rep -- )
dst 0 [] rep copy-memory* val rc-absolute rel-binary-literal ;
M: x86.32 %load-float ( dst val -- )
<float> float-rep %load-vector ;
M: x86.32 %load-double ( dst val -- )
<double> double-rep %load-vector ;
M: x86.32 %mov-vm-ptr ( reg -- )
0 MOV 0 rc-absolute-cell rel-vm ;
M: x86.32 %vm-field ( dst field -- )
[ 0 [] MOV ] dip rc-absolute-cell rel-vm ;
M: x86.32 %set-vm-field ( dst field -- )
[ 0 [] swap MOV ] dip rc-absolute-cell rel-vm ;
M: x86.32 %vm-field-ptr ( dst field -- )
[ 0 MOV ] dip rc-absolute-cell rel-vm ;
: local@ ( n -- op )
stack-frame get extra-stack-space dup 16 assert= + stack@ ;
M: x86.32 extra-stack-space calls-vm?>> 16 0 ? ;
M: x86.32 %mark-card
drop HEX: ffffffff [+] card-mark <byte> MOV
building get pop
rc-absolute-cell rel-cards-offset
building get push ;
M: x86.32 %mark-deck
drop HEX: ffffffff [+] card-mark <byte> MOV
building get pop
rc-absolute-cell rel-decks-offset
building get push ;
M:: x86.32 %dispatch ( src temp -- )
! Load jump table base.
temp src HEX: ffffffff [+] LEA
building get length :> start
0 rc-absolute-cell rel-here
! Go
temp HEX: 7f [+] JMP
building get length :> end
! Fix up the displacement above
cell alignment
[ end start - + building get dup pop* push ]
[ (align-code) ]
bi ;
M: x86.32 pic-tail-reg EDX ;
M: x86.32 reserved-stack-space 0 ;
M: x86.32 %alien-invoke 0 CALL rc-relative rel-dlsym ;
: save-vm-ptr ( n -- )
stack@ 0 MOV 0 rc-absolute-cell rel-vm ;
M: x86.32 return-struct-in-registers? ( c-type -- ? )
c-type
[ return-in-registers?>> ]
[ heap-size { 1 2 4 8 } member? ] bi
os { linux netbsd solaris } member? not
and or ;
! On x86, parameters are usually never passed in registers,
! except with Microsoft's "thiscall" and "fastcall" abis
M: int-regs return-reg drop EAX ;
M: float-regs param-regs 2drop { } ;
M: int-regs param-regs
nip {
{ thiscall [ { ECX } ] }
{ fastcall [ { ECX EDX } ] }
[ drop { } ]
} case ;
GENERIC: load-return-reg ( src rep -- )
GENERIC: store-return-reg ( dst rep -- )
M: stack-params load-return-reg drop EAX swap MOV ;
M: stack-params store-return-reg drop EAX MOV ;
M: int-rep load-return-reg drop EAX swap MOV ;
M: int-rep store-return-reg drop EAX MOV ;
:: load-float-return ( src x87-insn sse-insn -- )
src register? [
ESP 4 SUB
ESP [] src sse-insn execute
ESP [] x87-insn execute
ESP 4 ADD
] [
src x87-insn execute
] if ; inline
:: store-float-return ( dst x87-insn sse-insn -- )
dst register? [
ESP 4 SUB
ESP [] x87-insn execute
dst ESP [] sse-insn execute
ESP 4 ADD
] [
dst x87-insn execute
] if ; inline
M: float-rep load-return-reg
drop \ FLDS \ MOVSS load-float-return ;
M: float-rep store-return-reg
drop \ FSTPS \ MOVSS store-float-return ;
M: double-rep load-return-reg
drop \ FLDL \ MOVSD load-float-return ;
M: double-rep store-return-reg
drop \ FSTPL \ MOVSD store-float-return ;
M: x86.32 %prologue ( n -- )
dup PUSH
0 PUSH rc-absolute-cell rel-this
3 cells - decr-stack-reg ;
M: x86.32 %prepare-jump
pic-tail-reg 0 MOV xt-tail-pic-offset rc-absolute-cell rel-here ;
:: call-unbox-func ( src func -- )
EAX src tagged-rep %copy
4 save-vm-ptr
0 stack@ EAX MOV
func f %alien-invoke ;
M:: x86.32 %unbox ( dst src func rep -- )
src func call-unbox-func
dst ?spill-slot rep store-return-reg ;
M:: x86.32 %store-return ( src rep -- )
src ?spill-slot rep load-return-reg ;
M:: x86.32 %store-long-long-return ( src1 src2 -- )
src2 EAX = [ src1 src2 XCHG src2 src1 ] [ src1 src2 ] if :> ( src1 src2 )
EAX src1 int-rep %copy
EDX src2 int-rep %copy ;
M:: x86.32 %store-struct-return ( src c-type -- )
EAX src int-rep %copy
EDX EAX 4 [+] MOV
EAX EAX [] MOV ;
M: stack-params copy-register*
drop
{
{ [ dup integer? ] [ EAX swap next-stack@ MOV EAX MOV ] }
{ [ over integer? ] [ EAX swap MOV param@ EAX MOV ] }
} cond ;
M: x86.32 %save-param-reg [ local@ ] 2dip %copy ;
: (%box) ( n rep -- )
#! If n is f, push the return register onto the stack; we
#! are boxing a return value of a C function. If n is an
#! integer, push [ESP+n] on the stack; we are boxing a
#! parameter being passed to a callback from C.
over [ [ local@ ] dip load-return-reg ] [ 2drop ] if ;
M:: x86.32 %box ( dst n rep func -- )
n rep (%box)
rep rep-size save-vm-ptr
0 stack@ rep store-return-reg
func f %alien-invoke
dst EAX tagged-rep %copy ;
: (%box-long-long) ( n -- )
[
[ EDX swap next-stack@ MOV ]
[ EAX swap cell - next-stack@ MOV ] bi
] when* ;
M:: x86.32 %box-long-long ( dst n func -- )
n (%box-long-long)
8 save-vm-ptr
4 stack@ EDX MOV
0 stack@ EAX MOV
func f %alien-invoke
dst EAX tagged-rep %copy ;
M: x86.32 struct-return@ ( n -- operand )
[ next-stack@ ] [ stack-frame get params>> local@ ] if* ;
M:: x86.32 %box-large-struct ( dst n c-type -- )
EDX n struct-return@ LEA
8 save-vm-ptr
4 stack@ c-type heap-size MOV
0 stack@ EDX MOV
"from_value_struct" f %alien-invoke
dst EAX tagged-rep %copy ;
M:: x86.32 %box-small-struct ( dst c-type -- )
#! Box a <= 8-byte struct returned in EAX:EDX. OS X only.
12 save-vm-ptr
8 stack@ c-type heap-size MOV
4 stack@ EDX MOV
0 stack@ EAX MOV
"from_small_struct" f %alien-invoke
dst EAX tagged-rep %copy ;
M: x86.32 %begin-callback ( -- )
0 save-vm-ptr
4 stack@ 0 MOV
"begin_callback" f %alien-invoke ;
M: x86.32 %alien-callback ( quot -- )
[ EAX ] dip %load-reference
EAX quot-entry-point-offset [+] CALL ;
M: x86.32 %end-callback ( -- )
0 save-vm-ptr
"end_callback" f %alien-invoke ;
GENERIC: float-function-param ( stack-slot dst src -- )
M:: spill-slot float-function-param ( stack-slot dst src -- )
! We can clobber dst here since its going to contain the
! final result
dst src double-rep %copy
stack-slot dst double-rep %copy ;
M: register float-function-param
nip double-rep %copy ;
: float-function-return ( reg -- )
ESP [] FSTPL
ESP [] MOVSD
ESP 16 ADD ;
M:: x86.32 %unary-float-function ( dst src func -- )
ESP -16 [+] dst src float-function-param
ESP 16 SUB
func "libm" load-library %alien-invoke
dst float-function-return ;
M:: x86.32 %binary-float-function ( dst src1 src2 func -- )
ESP -16 [+] dst src1 float-function-param
ESP -8 [+] dst src2 float-function-param
ESP 16 SUB
func "libm" load-library %alien-invoke
dst float-function-return ;
: funny-large-struct-return? ( return abi -- ? )
#! MINGW ABI incompatibility disaster
[ large-struct? ] [ mingw eq? os windows? not or ] bi* and ;
M:: x86.32 stack-cleanup ( stack-size return abi -- n )
#! a) Functions which are stdcall/fastcall/thiscall have to
#! clean up the caller's stack frame.
#! b) Functions returning large structs on MINGW have to
#! fix ESP.
{
{ [ abi callee-cleanup? ] [ stack-size ] }
{ [ return abi funny-large-struct-return? ] [ 4 ] }
[ 0 ]
} cond ;
M: x86.32 %cleanup ( n -- )
[ ESP swap SUB ] unless-zero ;
M:: x86.32 %call-gc ( gc-roots -- )
4 save-vm-ptr
0 stack@ gc-roots gc-root-offsets %load-reference
"inline_gc" f %alien-invoke ;
M: x86.32 dummy-stack-params? f ;
M: x86.32 dummy-int-params? f ;
M: x86.32 dummy-fp-params? f ;
M: x86.32 long-long-on-stack? t ;
M: x86.32 float-on-stack? t ;
M: x86.32 flatten-struct-type
stack-size cell /i { int-rep t } <repetition> ;
M: x86.32 struct-return-on-stack? os linux? not ;
check-sse