mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-12-23 13:30:23 +00:00
91774fc936
Uses github.com/libopenstorage/secrets to communicate with Vault. This removes the need for maintaining our own limited Vault APIs. By adding the new dependency, several other packages got updated in the process. Unused indirect dependencies have been removed from go.mod. Signed-off-by: Niels de Vos <ndevos@redhat.com>
376 lines
6.0 KiB
ArmAsm
376 lines
6.0 KiB
ArmAsm
// +build !appengine
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// +build gc
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// +build !noasm
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#include "textflag.h"
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// AX scratch
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// BX scratch
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// CX scratch
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// DX token
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//
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// DI &dst
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// SI &src
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// R8 &dst + len(dst)
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// R9 &src + len(src)
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// R11 &dst
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// R12 short output end
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// R13 short input end
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// func decodeBlock(dst, src []byte) int
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// using 50 bytes of stack currently
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TEXT ·decodeBlock(SB), NOSPLIT, $64-56
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MOVQ dst_base+0(FP), DI
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MOVQ DI, R11
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MOVQ dst_len+8(FP), R8
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ADDQ DI, R8
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MOVQ src_base+24(FP), SI
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MOVQ src_len+32(FP), R9
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ADDQ SI, R9
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// shortcut ends
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// short output end
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MOVQ R8, R12
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SUBQ $32, R12
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// short input end
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MOVQ R9, R13
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SUBQ $16, R13
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loop:
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// for si < len(src)
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CMPQ SI, R9
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JGE end
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// token := uint32(src[si])
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MOVBQZX (SI), DX
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INCQ SI
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// lit_len = token >> 4
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// if lit_len > 0
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// CX = lit_len
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MOVQ DX, CX
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SHRQ $4, CX
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// if lit_len != 0xF
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CMPQ CX, $0xF
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JEQ lit_len_loop_pre
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CMPQ DI, R12
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JGE lit_len_loop_pre
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CMPQ SI, R13
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JGE lit_len_loop_pre
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// copy shortcut
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// A two-stage shortcut for the most common case:
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// 1) If the literal length is 0..14, and there is enough space,
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// enter the shortcut and copy 16 bytes on behalf of the literals
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// (in the fast mode, only 8 bytes can be safely copied this way).
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// 2) Further if the match length is 4..18, copy 18 bytes in a similar
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// manner; but we ensure that there's enough space in the output for
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// those 18 bytes earlier, upon entering the shortcut (in other words,
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// there is a combined check for both stages).
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// copy literal
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MOVOU (SI), X0
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MOVOU X0, (DI)
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ADDQ CX, DI
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ADDQ CX, SI
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MOVQ DX, CX
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ANDQ $0xF, CX
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// The second stage: prepare for match copying, decode full info.
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// If it doesn't work out, the info won't be wasted.
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// offset := uint16(data[:2])
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MOVWQZX (SI), DX
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ADDQ $2, SI
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MOVQ DI, AX
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SUBQ DX, AX
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CMPQ AX, DI
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JGT err_short_buf
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// if we can't do the second stage then jump straight to read the
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// match length, we already have the offset.
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CMPQ CX, $0xF
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JEQ match_len_loop_pre
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CMPQ DX, $8
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JLT match_len_loop_pre
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CMPQ AX, R11
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JLT err_short_buf
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// memcpy(op + 0, match + 0, 8);
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MOVQ (AX), BX
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MOVQ BX, (DI)
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// memcpy(op + 8, match + 8, 8);
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MOVQ 8(AX), BX
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MOVQ BX, 8(DI)
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// memcpy(op +16, match +16, 2);
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MOVW 16(AX), BX
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MOVW BX, 16(DI)
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ADDQ $4, DI // minmatch
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ADDQ CX, DI
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// shortcut complete, load next token
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JMP loop
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lit_len_loop_pre:
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// if lit_len > 0
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CMPQ CX, $0
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JEQ offset
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CMPQ CX, $0xF
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JNE copy_literal
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lit_len_loop:
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// for src[si] == 0xFF
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CMPB (SI), $0xFF
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JNE lit_len_finalise
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// bounds check src[si+1]
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MOVQ SI, AX
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ADDQ $1, AX
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CMPQ AX, R9
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JGT err_short_buf
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// lit_len += 0xFF
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ADDQ $0xFF, CX
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INCQ SI
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JMP lit_len_loop
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lit_len_finalise:
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// lit_len += int(src[si])
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// si++
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MOVBQZX (SI), AX
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ADDQ AX, CX
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INCQ SI
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copy_literal:
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// bounds check src and dst
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MOVQ SI, AX
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ADDQ CX, AX
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CMPQ AX, R9
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JGT err_short_buf
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MOVQ DI, AX
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ADDQ CX, AX
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CMPQ AX, R8
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JGT err_short_buf
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// whats a good cut off to call memmove?
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CMPQ CX, $16
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JGT memmove_lit
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// if len(dst[di:]) < 16
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MOVQ R8, AX
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SUBQ DI, AX
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CMPQ AX, $16
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JLT memmove_lit
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// if len(src[si:]) < 16
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MOVQ R9, AX
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SUBQ SI, AX
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CMPQ AX, $16
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JLT memmove_lit
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MOVOU (SI), X0
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MOVOU X0, (DI)
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JMP finish_lit_copy
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memmove_lit:
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// memmove(to, from, len)
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MOVQ DI, 0(SP)
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MOVQ SI, 8(SP)
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MOVQ CX, 16(SP)
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// spill
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MOVQ DI, 24(SP)
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MOVQ SI, 32(SP)
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MOVQ CX, 40(SP) // need len to inc SI, DI after
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MOVB DX, 48(SP)
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CALL runtime·memmove(SB)
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// restore registers
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MOVQ 24(SP), DI
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MOVQ 32(SP), SI
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MOVQ 40(SP), CX
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MOVB 48(SP), DX
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// recalc initial values
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MOVQ dst_base+0(FP), R8
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MOVQ R8, R11
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ADDQ dst_len+8(FP), R8
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MOVQ src_base+24(FP), R9
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ADDQ src_len+32(FP), R9
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MOVQ R8, R12
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SUBQ $32, R12
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MOVQ R9, R13
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SUBQ $16, R13
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finish_lit_copy:
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ADDQ CX, SI
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ADDQ CX, DI
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CMPQ SI, R9
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JGE end
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offset:
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// CX := mLen
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// free up DX to use for offset
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MOVQ DX, CX
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MOVQ SI, AX
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ADDQ $2, AX
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CMPQ AX, R9
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JGT err_short_buf
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// offset
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// DX := int(src[si]) | int(src[si+1])<<8
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MOVWQZX (SI), DX
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ADDQ $2, SI
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// 0 offset is invalid
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CMPQ DX, $0
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JEQ err_corrupt
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ANDB $0xF, CX
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match_len_loop_pre:
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// if mlen != 0xF
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CMPB CX, $0xF
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JNE copy_match
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match_len_loop:
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// for src[si] == 0xFF
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// lit_len += 0xFF
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CMPB (SI), $0xFF
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JNE match_len_finalise
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// bounds check src[si+1]
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MOVQ SI, AX
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ADDQ $1, AX
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CMPQ AX, R9
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JGT err_short_buf
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ADDQ $0xFF, CX
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INCQ SI
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JMP match_len_loop
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match_len_finalise:
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// lit_len += int(src[si])
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// si++
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MOVBQZX (SI), AX
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ADDQ AX, CX
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INCQ SI
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copy_match:
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// mLen += minMatch
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ADDQ $4, CX
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// check we have match_len bytes left in dst
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// di+match_len < len(dst)
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MOVQ DI, AX
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ADDQ CX, AX
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CMPQ AX, R8
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JGT err_short_buf
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// DX = offset
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// CX = match_len
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// BX = &dst + (di - offset)
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MOVQ DI, BX
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SUBQ DX, BX
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// check BX is within dst
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// if BX < &dst
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CMPQ BX, R11
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JLT err_short_buf
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// if offset + match_len < di
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MOVQ BX, AX
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ADDQ CX, AX
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CMPQ DI, AX
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JGT copy_interior_match
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// AX := len(dst[:di])
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// MOVQ DI, AX
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// SUBQ R11, AX
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// copy 16 bytes at a time
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// if di-offset < 16 copy 16-(di-offset) bytes to di
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// then do the remaining
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copy_match_loop:
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// for match_len >= 0
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// dst[di] = dst[i]
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// di++
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// i++
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MOVB (BX), AX
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MOVB AX, (DI)
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INCQ DI
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INCQ BX
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DECQ CX
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CMPQ CX, $0
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JGT copy_match_loop
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JMP loop
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copy_interior_match:
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CMPQ CX, $16
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JGT memmove_match
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// if len(dst[di:]) < 16
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MOVQ R8, AX
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SUBQ DI, AX
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CMPQ AX, $16
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JLT memmove_match
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MOVOU (BX), X0
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MOVOU X0, (DI)
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ADDQ CX, DI
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JMP loop
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memmove_match:
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// memmove(to, from, len)
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MOVQ DI, 0(SP)
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MOVQ BX, 8(SP)
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MOVQ CX, 16(SP)
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// spill
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MOVQ DI, 24(SP)
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MOVQ SI, 32(SP)
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MOVQ CX, 40(SP) // need len to inc SI, DI after
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CALL runtime·memmove(SB)
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// restore registers
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MOVQ 24(SP), DI
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MOVQ 32(SP), SI
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MOVQ 40(SP), CX
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// recalc initial values
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MOVQ dst_base+0(FP), R8
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MOVQ R8, R11 // TODO: make these sensible numbers
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ADDQ dst_len+8(FP), R8
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MOVQ src_base+24(FP), R9
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ADDQ src_len+32(FP), R9
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MOVQ R8, R12
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SUBQ $32, R12
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MOVQ R9, R13
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SUBQ $16, R13
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ADDQ CX, DI
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JMP loop
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err_corrupt:
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MOVQ $-1, ret+48(FP)
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RET
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err_short_buf:
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MOVQ $-2, ret+48(FP)
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RET
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end:
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SUBQ R11, DI
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MOVQ DI, ret+48(FP)
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RET
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