mirror of
https://github.com/edk2-porting/linux-next.git
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1da177e4c3
Initial git repository build. I'm not bothering with the full history, even though we have it. We can create a separate "historical" git archive of that later if we want to, and in the meantime it's about 3.2GB when imported into git - space that would just make the early git days unnecessarily complicated, when we don't have a lot of good infrastructure for it. Let it rip!
183 lines
4.9 KiB
ArmAsm
183 lines
4.9 KiB
ArmAsm
/* memset.S: optimised assembly memset
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*
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* Copyright (C) 2003 Red Hat, Inc. All Rights Reserved.
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* Written by David Howells (dhowells@redhat.com)
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version
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* 2 of the License, or (at your option) any later version.
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*/
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.text
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.p2align 4
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###############################################################################
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#
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# void *memset(void *p, char ch, size_t count)
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#
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# - NOTE: must not use any stack. exception detection performs function return
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# to caller's fixup routine, aborting the remainder of the set
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# GR4, GR7, GR8, and GR11 must be managed
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#
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###############################################################################
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.globl memset,__memset_end
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.type memset,@function
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memset:
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orcc.p gr10,gr0,gr5,icc3 ; GR5 = count
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andi gr9,#0xff,gr9
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or.p gr8,gr0,gr4 ; GR4 = address
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beqlr icc3,#0
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# conditionally write a byte to 2b-align the address
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setlos.p #1,gr6
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andicc gr4,#1,gr0,icc0
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ckne icc0,cc7
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cstb.p gr9,@(gr4,gr0) ,cc7,#1
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csubcc gr5,gr6,gr5 ,cc7,#1 ; also set ICC3
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cadd.p gr4,gr6,gr4 ,cc7,#1
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beqlr icc3,#0
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# conditionally write a word to 4b-align the address
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andicc.p gr4,#2,gr0,icc0
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subicc gr5,#2,gr0,icc1
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setlos.p #2,gr6
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ckne icc0,cc7
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slli.p gr9,#8,gr12 ; need to double up the pattern
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cknc icc1,cc5
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or.p gr9,gr12,gr12
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andcr cc7,cc5,cc7
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csth.p gr12,@(gr4,gr0) ,cc7,#1
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csubcc gr5,gr6,gr5 ,cc7,#1 ; also set ICC3
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cadd.p gr4,gr6,gr4 ,cc7,#1
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beqlr icc3,#0
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# conditionally write a dword to 8b-align the address
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andicc.p gr4,#4,gr0,icc0
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subicc gr5,#4,gr0,icc1
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setlos.p #4,gr6
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ckne icc0,cc7
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slli.p gr12,#16,gr13 ; need to quadruple-up the pattern
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cknc icc1,cc5
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or.p gr13,gr12,gr12
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andcr cc7,cc5,cc7
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cst.p gr12,@(gr4,gr0) ,cc7,#1
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csubcc gr5,gr6,gr5 ,cc7,#1 ; also set ICC3
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cadd.p gr4,gr6,gr4 ,cc7,#1
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beqlr icc3,#0
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or.p gr12,gr12,gr13 ; need to octuple-up the pattern
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# the address is now 8b-aligned - loop around writing 64b chunks
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setlos #8,gr7
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subi.p gr4,#8,gr4 ; store with update index does weird stuff
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setlos #64,gr6
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subicc gr5,#64,gr0,icc0
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0: cknc icc0,cc7
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cstdu gr12,@(gr4,gr7) ,cc7,#1
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cstdu gr12,@(gr4,gr7) ,cc7,#1
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cstdu gr12,@(gr4,gr7) ,cc7,#1
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cstdu gr12,@(gr4,gr7) ,cc7,#1
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cstdu gr12,@(gr4,gr7) ,cc7,#1
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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csubcc gr5,gr6,gr5 ,cc7,#1 ; also set ICC3
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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subicc gr5,#64,gr0,icc0
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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beqlr icc3,#0
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bnc icc0,#2,0b
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# now do 32-byte remnant
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subicc.p gr5,#32,gr0,icc0
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setlos #32,gr6
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cknc icc0,cc7
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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csubcc gr5,gr6,gr5 ,cc7,#1 ; also set ICC3
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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setlos #16,gr6
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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subicc gr5,#16,gr0,icc0
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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beqlr icc3,#0
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# now do 16-byte remnant
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cknc icc0,cc7
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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csubcc gr5,gr6,gr5 ,cc7,#1 ; also set ICC3
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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beqlr icc3,#0
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# now do 8-byte remnant
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subicc gr5,#8,gr0,icc1
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cknc icc1,cc7
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cstdu.p gr12,@(gr4,gr7) ,cc7,#1
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csubcc gr5,gr7,gr5 ,cc7,#1 ; also set ICC3
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setlos.p #4,gr7
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beqlr icc3,#0
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# now do 4-byte remnant
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subicc gr5,#4,gr0,icc0
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addi.p gr4,#4,gr4
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cknc icc0,cc7
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cstu.p gr12,@(gr4,gr7) ,cc7,#1
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csubcc gr5,gr7,gr5 ,cc7,#1 ; also set ICC3
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subicc.p gr5,#2,gr0,icc1
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beqlr icc3,#0
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# now do 2-byte remnant
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setlos #2,gr7
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addi.p gr4,#2,gr4
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cknc icc1,cc7
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csthu.p gr12,@(gr4,gr7) ,cc7,#1
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csubcc gr5,gr7,gr5 ,cc7,#1 ; also set ICC3
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subicc.p gr5,#1,gr0,icc0
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beqlr icc3,#0
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# now do 1-byte remnant
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setlos #0,gr7
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addi.p gr4,#2,gr4
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cknc icc0,cc7
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cstb.p gr12,@(gr4,gr0) ,cc7,#1
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bralr
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__memset_end:
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.size memset, __memset_end-memset
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###############################################################################
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#
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# clear memory in userspace
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# - return the number of bytes that could not be cleared (0 on complete success)
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#
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# long __memset_user(void *p, size_t count)
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#
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###############################################################################
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.globl __memset_user, __memset_user_error_lr, __memset_user_error_handler
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.type __memset_user,@function
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__memset_user:
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movsg lr,gr11
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# abuse memset to do the dirty work
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or.p gr9,gr9,gr10
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setlos #0,gr9
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call memset
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__memset_user_error_lr:
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jmpl.p @(gr11,gr0)
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setlos #0,gr8
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# deal any exception generated by memset
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# GR4 - memset's address tracking pointer
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# GR7 - memset's step value (index register for store insns)
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# GR8 - memset's original start address
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# GR10 - memset's original count
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__memset_user_error_handler:
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add.p gr4,gr7,gr4
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add gr8,gr10,gr8
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jmpl.p @(gr11,gr0)
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sub gr8,gr4,gr8 ; we return the amount left uncleared
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.size __memset_user, .-__memset_user
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