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	I used these shell commands: ../glibc/scripts/update-copyrights $PWD/../gnulib/build-aux/update-copyright (cd ../glibc && git commit -am"[this commit message]") and then ignored the output, which consisted lines saying "FOO: warning: copyright statement not found" for each of 6694 files FOO. I then removed trailing white space from benchtests/bench-pthread-locks.c and iconvdata/tst-iconv-big5-hkscs-to-2ucs4.c, to work around this diagnostic from Savannah: remote: *** pre-commit check failed ... remote: *** error: lines with trailing whitespace found remote: error: hook declined to update refs/heads/master
		
			
				
	
	
		
			169 lines
		
	
	
		
			4.4 KiB
		
	
	
	
		
			ArmAsm
		
	
	
	
	
	
			
		
		
	
	
			169 lines
		
	
	
		
			4.4 KiB
		
	
	
	
		
			ArmAsm
		
	
	
	
	
	
| /* Copyright (C) 1999-2021 Free Software Foundation, Inc.
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|    Contributed by David Mosberger-Tang <davidm@hpl.hp.com>.
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| 
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|    The GNU C Library is free software; you can redistribute it and/or
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|    modify it under the terms of the GNU Lesser General Public
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|    License as published by the Free Software Foundation; either
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|    version 2.1 of the License, or (at your option) any later version.
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| 
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|    The GNU C Library is distributed in the hope that it will be useful,
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|    but WITHOUT ANY WARRANTY; without even the implied warranty of
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|    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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|    Lesser General Public License for more details.
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| 
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|    You should have received a copy of the GNU Lesser General Public
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|    License along with the GNU C Library; if not, see
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|    <https://www.gnu.org/licenses/>.
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| 
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|    Note that __sigsetjmp() did NOT flush the register stack.  Instead,
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|    we do it here since __longjmp() is usually much less frequently
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|    invoked than __sigsetjmp(). The only difficulty is that __sigsetjmp()
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|    didn't (and wouldn't be able to) save ar.rnat either.  This is a problem
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|    because if we're not careful, we could end up loading random NaT bits.
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|    There are two cases:
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| 
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| 	(i)  ar.bsp < ia64_rse_rnat_addr(jmpbuf.ar_bsp)
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| 		ar.rnat contains the desired bits---preserve ar.rnat
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| 		across loadrs and write to ar.bspstore
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| 
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| 	(ii) ar.bsp >= ia64_rse_rnat_addr(jmpbuf.ar_bsp)
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| 		The desired ar.rnat is stored in
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| 		ia64_rse_rnat_addr(jmpbuf.ar_bsp).  Load those
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| 		bits into ar.rnat after setting ar.bspstore. */
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| 
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| #include <sysdep.h>
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| #include <features.h>
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| 
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| #	define	pPos	p6	/* is rotate count positive? */
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| #	define	pNeg	p7	/* is rotate count negative? */
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| 
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| 
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| 	/* __longjmp(__jmp_buf buf, int val) */
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| 
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| LEAF(__longjmp)
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| #ifdef CHECK_RSP
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| 	alloc r8=ar.pfs,2,1,3,0
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| 	CHECK_RSP
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| #else
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| 	alloc r8=ar.pfs,2,0,0,0
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| #endif
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| 	mov r27=ar.rsc
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| 	add r2=0x98,in0		// r2 <- &jmpbuf.orig_jmp_buf_addr
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| 	;;
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| 	ld8 r8=[r2],-16		// r8 <- orig_jmp_buf_addr
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| 	mov r10=ar.bsp
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| 	and r11=~0x3,r27	// clear ar.rsc.mode
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| 	;;
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| 	flushrs			// flush dirty regs to backing store (must be first in insn grp)
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| 	ld8 r23=[r2],8		// r23 <- jmpbuf.ar_bsp
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| 	sub r8=r8,in0		// r8 <- &orig_jmpbuf - &jmpbuf
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| 	;;
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| 	ld8 r25=[r2]		// r25 <- jmpbuf.ar_unat
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| 	extr.u r8=r8,3,6	// r8 <- (&orig_jmpbuf - &jmpbuf)/8 & 0x3f
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| 	;;
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| 	cmp.lt pNeg,pPos=r8,r0
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| 	mov r2=in0
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| 	;;
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| (pPos)	mov r16=r8
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| (pNeg)	add r16=64,r8
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| (pPos)	sub r17=64,r8
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| (pNeg)	sub r17=r0,r8
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| 	;;
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| 	mov ar.rsc=r11		// put RSE in enforced lazy mode
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| 	shr.u r8=r25,r16
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| 	add r3=8,in0		// r3 <- &jmpbuf.r1
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| 	shl r9=r25,r17
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| 	;;
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| 	ld8.fill.nta r28=[r2],16	// r28 <- jmpbuf.sp
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| 	or r25=r8,r9
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| 	;;
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| 	mov r26=ar.rnat
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| 	mov ar.unat=r25		// setup ar.unat (NaT bits for r1, r4-r7, and r12)
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| 	;;
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| 	ld8.fill.nta gp=[r3],32		// r1 (gp)
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| 	dep r11=-1,r23,3,6	// r11 <- ia64_rse_rnat_addr(jmpbuf.ar_bsp)
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| 	mov sp=r28		// r12 (sp)
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| 	;;
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| 	ld8.nta r16=[r2],16		// caller's unat
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| //	ld8.nta r17=[r3],16		// fpsr
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| 	;;
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| 	ld8.fill.nta r4=[r2],16	// r4
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| 	ld8.fill.nta r5=[r3],16		// r5 (gp)
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| 	cmp.geu p8,p0=r10,r11	// p8 <- (ar.bsp >= jmpbuf.ar_bsp)
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| 	;;
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| 	ld8.fill.nta r6=[r2],16	// r6
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| 	ld8.fill.nta r7=[r3],16		// r7
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| 	;;
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| 	mov ar.unat=r16			// restore caller's unat
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| //	mov ar.fpsr=r17			// restore fpsr
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| 	;;
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| 	ld8.nta r16=[r2],16		// b0
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| 	ld8.nta r17=[r3],16		// b1
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| 	;;
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| (p8)	ld8 r26=[r11]		// r26 <- *ia64_rse_rnat_addr(jmpbuf.ar_bsp)
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| 	mov ar.bspstore=r23	// restore ar.bspstore
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| 	;;
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| 	ld8.nta r18=[r2],16		// b2
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| 	ld8.nta r19=[r3],16		// b3
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| 	;;
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| #ifdef PTR_DEMANGLE
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| 	PTR_DEMANGLE (r16, r24)
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| #endif
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| 	ld8.nta r20=[r2],16		// b4
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| 	ld8.nta r21=[r3],16		// b5
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| 	;;
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| 	ld8.nta r11=[r2],16		// ar.pfs
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| 	ld8.nta r22=[r3],56		// ar.lc
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| 	;;
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| 	ld8.nta r24=[r2],32		// pr
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| 	mov b0=r16
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| 	;;
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| 	ldf.fill.nta f2=[r2],32
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| 	ldf.fill.nta f3=[r3],32
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| 	mov b1=r17
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| 	;;
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| 	ldf.fill.nta f4=[r2],32
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| 	ldf.fill.nta f5=[r3],32
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| 	mov b2=r18
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| 	;;
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| 	ldf.fill.nta f16=[r2],32
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| 	ldf.fill.nta f17=[r3],32
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| 	mov b3=r19
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| 	;;
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| 	ldf.fill.nta f18=[r2],32
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| 	ldf.fill.nta f19=[r3],32
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| 	mov b4=r20
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| 	;;
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| 	ldf.fill.nta f20=[r2],32
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| 	ldf.fill.nta f21=[r3],32
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| 	mov b5=r21
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| 	;;
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| 	ldf.fill.nta f22=[r2],32
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| 	ldf.fill.nta f23=[r3],32
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| 	mov ar.lc=r22
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| 	;;
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| 	ldf.fill.nta f24=[r2],32
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| 	ldf.fill.nta f25=[r3],32
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| 	cmp.eq p8,p9=0,in1
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| 	;;
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| 	ldf.fill.nta f26=[r2],32
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| 	ldf.fill.nta f27=[r3],32
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| 	mov ar.pfs=r11
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| 	;;
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| 	ldf.fill.nta f28=[r2],32
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| 	ldf.fill.nta f29=[r3],32
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| 	;;
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| 	ldf.fill.nta f30=[r2]
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| 	ldf.fill.nta f31=[r3]
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| (p8)	mov r8=1
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| 
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| 	mov ar.rnat=r26		// restore ar.rnat
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| 	;;
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| 	mov ar.rsc=r27		// restore ar.rsc
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| (p9)	mov r8=in1
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| 
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| 	invala			// virt. -> phys. regnum mapping may change
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| 	mov pr=r24,-1
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| 	ret
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| END(__longjmp)
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