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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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d321796753
Historically a lot of these existed because we did not have a distinction between what was modular code and what was providing support to modules via EXPORT_SYMBOL and friends. That changed when we forked out support for the latter into the export.h file. This means we should be able to reduce the usage of module.h in code that is obj-y Makefile or bool Kconfig. The advantage in doing so is that module.h itself sources about 15 other headers; adding significantly to what we feed cpp, and it can obscure what headers we are effectively using. Since module.h was the source for init.h (for __init) and for export.h (for EXPORT_SYMBOL) we consider each change instance for the presence of either and replace as needed. An instance where module_param was used without moduleparam.h was also fixed, as well as implicit use of ptrace.h and string.h headers. Signed-off-by: Paul Gortmaker <paul.gortmaker@windriver.com> Signed-off-by: Heiko Carstens <heiko.carstens@de.ibm.com> Signed-off-by: Martin Schwidefsky <schwidefsky@de.ibm.com>
135 lines
2.8 KiB
C
135 lines
2.8 KiB
C
/*
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* Optimized xor_block operation for RAID4/5
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*
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* Copyright IBM Corp. 2016
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* Author(s): Martin Schwidefsky <schwidefsky@de.ibm.com>
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*/
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#include <linux/types.h>
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#include <linux/export.h>
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#include <linux/raid/xor.h>
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static void xor_xc_2(unsigned long bytes, unsigned long *p1, unsigned long *p2)
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{
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asm volatile(
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" larl 1,2f\n"
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" aghi %0,-1\n"
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" jm 3f\n"
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" srlg 0,%0,8\n"
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" ltgr 0,0\n"
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" jz 1f\n"
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"0: xc 0(256,%1),0(%2)\n"
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" la %1,256(%1)\n"
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" la %2,256(%2)\n"
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" brctg 0,0b\n"
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"1: ex %0,0(1)\n"
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" j 3f\n"
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"2: xc 0(1,%1),0(%2)\n"
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"3:\n"
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: : "d" (bytes), "a" (p1), "a" (p2)
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: "0", "1", "cc", "memory");
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}
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static void xor_xc_3(unsigned long bytes, unsigned long *p1, unsigned long *p2,
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unsigned long *p3)
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{
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asm volatile(
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" larl 1,2f\n"
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" aghi %0,-1\n"
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" jm 3f\n"
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" srlg 0,%0,8\n"
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" ltgr 0,0\n"
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" jz 1f\n"
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"0: xc 0(256,%1),0(%2)\n"
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" xc 0(256,%1),0(%3)\n"
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" la %1,256(%1)\n"
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" la %2,256(%2)\n"
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" la %3,256(%3)\n"
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" brctg 0,0b\n"
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"1: ex %0,0(1)\n"
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" ex %0,6(1)\n"
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" j 3f\n"
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"2: xc 0(1,%1),0(%2)\n"
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" xc 0(1,%1),0(%3)\n"
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"3:\n"
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: "+d" (bytes), "+a" (p1), "+a" (p2), "+a" (p3)
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: : "0", "1", "cc", "memory");
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}
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static void xor_xc_4(unsigned long bytes, unsigned long *p1, unsigned long *p2,
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unsigned long *p3, unsigned long *p4)
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{
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asm volatile(
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" larl 1,2f\n"
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" aghi %0,-1\n"
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" jm 3f\n"
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" srlg 0,%0,8\n"
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" ltgr 0,0\n"
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" jz 1f\n"
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"0: xc 0(256,%1),0(%2)\n"
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" xc 0(256,%1),0(%3)\n"
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" xc 0(256,%1),0(%4)\n"
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" la %1,256(%1)\n"
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" la %2,256(%2)\n"
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" la %3,256(%3)\n"
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" la %4,256(%4)\n"
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" brctg 0,0b\n"
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"1: ex %0,0(1)\n"
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" ex %0,6(1)\n"
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" ex %0,12(1)\n"
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" j 3f\n"
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"2: xc 0(1,%1),0(%2)\n"
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" xc 0(1,%1),0(%3)\n"
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" xc 0(1,%1),0(%4)\n"
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"3:\n"
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: "+d" (bytes), "+a" (p1), "+a" (p2), "+a" (p3), "+a" (p4)
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: : "0", "1", "cc", "memory");
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}
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static void xor_xc_5(unsigned long bytes, unsigned long *p1, unsigned long *p2,
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unsigned long *p3, unsigned long *p4, unsigned long *p5)
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{
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/* Get around a gcc oddity */
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register unsigned long *reg7 asm ("7") = p5;
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asm volatile(
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" larl 1,2f\n"
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" aghi %0,-1\n"
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" jm 3f\n"
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" srlg 0,%0,8\n"
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" ltgr 0,0\n"
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" jz 1f\n"
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"0: xc 0(256,%1),0(%2)\n"
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" xc 0(256,%1),0(%3)\n"
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" xc 0(256,%1),0(%4)\n"
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" xc 0(256,%1),0(%5)\n"
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" la %1,256(%1)\n"
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" la %2,256(%2)\n"
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" la %3,256(%3)\n"
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" la %4,256(%4)\n"
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" la %5,256(%5)\n"
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" brctg 0,0b\n"
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"1: ex %0,0(1)\n"
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" ex %0,6(1)\n"
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" ex %0,12(1)\n"
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" ex %0,18(1)\n"
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" j 3f\n"
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"2: xc 0(1,%1),0(%2)\n"
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" xc 0(1,%1),0(%3)\n"
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" xc 0(1,%1),0(%4)\n"
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" xc 0(1,%1),0(%5)\n"
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"3:\n"
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: "+d" (bytes), "+a" (p1), "+a" (p2), "+a" (p3), "+a" (p4),
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"+a" (reg7)
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: : "0", "1", "cc", "memory");
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}
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struct xor_block_template xor_block_xc = {
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.name = "xc",
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.do_2 = xor_xc_2,
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.do_3 = xor_xc_3,
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.do_4 = xor_xc_4,
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.do_5 = xor_xc_5,
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};
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EXPORT_SYMBOL(xor_block_xc);
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