11da177e4SLinus Torvalds /* 21da177e4SLinus Torvalds * Handle unaligned accesses by emulation. 31da177e4SLinus Torvalds * 41da177e4SLinus Torvalds * This file is subject to the terms and conditions of the GNU General Public 51da177e4SLinus Torvalds * License. See the file "COPYING" in the main directory of this archive 61da177e4SLinus Torvalds * for more details. 71da177e4SLinus Torvalds * 81da177e4SLinus Torvalds * Copyright (C) 1996, 1998, 1999, 2002 by Ralf Baechle 91da177e4SLinus Torvalds * Copyright (C) 1999 Silicon Graphics, Inc. 109d8e5736SMarkos Chandras * Copyright (C) 2014 Imagination Technologies Ltd. 111da177e4SLinus Torvalds * 121da177e4SLinus Torvalds * This file contains exception handler for address error exception with the 131da177e4SLinus Torvalds * special capability to execute faulting instructions in software. The 141da177e4SLinus Torvalds * handler does not try to handle the case when the program counter points 151da177e4SLinus Torvalds * to an address not aligned to a word boundary. 161da177e4SLinus Torvalds * 171da177e4SLinus Torvalds * Putting data to unaligned addresses is a bad practice even on Intel where 181da177e4SLinus Torvalds * only the performance is affected. Much worse is that such code is non- 191da177e4SLinus Torvalds * portable. Due to several programs that die on MIPS due to alignment 201da177e4SLinus Torvalds * problems I decided to implement this handler anyway though I originally 211da177e4SLinus Torvalds * didn't intend to do this at all for user code. 221da177e4SLinus Torvalds * 231da177e4SLinus Torvalds * For now I enable fixing of address errors by default to make life easier. 241da177e4SLinus Torvalds * I however intend to disable this somewhen in the future when the alignment 251da177e4SLinus Torvalds * problems with user programs have been fixed. For programmers this is the 261da177e4SLinus Torvalds * right way to go. 271da177e4SLinus Torvalds * 281da177e4SLinus Torvalds * Fixing address errors is a per process option. The option is inherited 291da177e4SLinus Torvalds * across fork(2) and execve(2) calls. If you really want to use the 301da177e4SLinus Torvalds * option in your user programs - I discourage the use of the software 311da177e4SLinus Torvalds * emulation strongly - use the following code in your userland stuff: 321da177e4SLinus Torvalds * 331da177e4SLinus Torvalds * #include <sys/sysmips.h> 341da177e4SLinus Torvalds * 351da177e4SLinus Torvalds * ... 361da177e4SLinus Torvalds * sysmips(MIPS_FIXADE, x); 371da177e4SLinus Torvalds * ... 381da177e4SLinus Torvalds * 391da177e4SLinus Torvalds * The argument x is 0 for disabling software emulation, enabled otherwise. 401da177e4SLinus Torvalds * 411da177e4SLinus Torvalds * Below a little program to play around with this feature. 421da177e4SLinus Torvalds * 431da177e4SLinus Torvalds * #include <stdio.h> 441da177e4SLinus Torvalds * #include <sys/sysmips.h> 451da177e4SLinus Torvalds * 461da177e4SLinus Torvalds * struct foo { 471da177e4SLinus Torvalds * unsigned char bar[8]; 481da177e4SLinus Torvalds * }; 491da177e4SLinus Torvalds * 501da177e4SLinus Torvalds * main(int argc, char *argv[]) 511da177e4SLinus Torvalds * { 521da177e4SLinus Torvalds * struct foo x = {0, 1, 2, 3, 4, 5, 6, 7}; 531da177e4SLinus Torvalds * unsigned int *p = (unsigned int *) (x.bar + 3); 541da177e4SLinus Torvalds * int i; 551da177e4SLinus Torvalds * 561da177e4SLinus Torvalds * if (argc > 1) 571da177e4SLinus Torvalds * sysmips(MIPS_FIXADE, atoi(argv[1])); 581da177e4SLinus Torvalds * 591da177e4SLinus Torvalds * printf("*p = %08lx\n", *p); 601da177e4SLinus Torvalds * 611da177e4SLinus Torvalds * *p = 0xdeadface; 621da177e4SLinus Torvalds * 631da177e4SLinus Torvalds * for(i = 0; i <= 7; i++) 641da177e4SLinus Torvalds * printf("%02x ", x.bar[i]); 651da177e4SLinus Torvalds * printf("\n"); 661da177e4SLinus Torvalds * } 671da177e4SLinus Torvalds * 681da177e4SLinus Torvalds * Coprocessor loads are not supported; I think this case is unimportant 691da177e4SLinus Torvalds * in the practice. 701da177e4SLinus Torvalds * 711da177e4SLinus Torvalds * TODO: Handle ndc (attempted store to doubleword in uncached memory) 721da177e4SLinus Torvalds * exception for the R6000. 731da177e4SLinus Torvalds * A store crossing a page boundary might be executed only partially. 741da177e4SLinus Torvalds * Undo the partial store in this case. 751da177e4SLinus Torvalds */ 76c3fc5cd5SRalf Baechle #include <linux/context_tracking.h> 771da177e4SLinus Torvalds #include <linux/mm.h> 781da177e4SLinus Torvalds #include <linux/signal.h> 791da177e4SLinus Torvalds #include <linux/smp.h> 80e8edc6e0SAlexey Dobriyan #include <linux/sched.h> 816312e0eeSAtsushi Nemoto #include <linux/debugfs.h> 827f788d2dSDeng-Cheng Zhu #include <linux/perf_event.h> 837f788d2dSDeng-Cheng Zhu 841da177e4SLinus Torvalds #include <asm/asm.h> 851da177e4SLinus Torvalds #include <asm/branch.h> 861da177e4SLinus Torvalds #include <asm/byteorder.h> 8769f3a7deSRalf Baechle #include <asm/cop2.h> 8875dcfc1dSPaul Burton #include <asm/debug.h> 89102cedc3SLeonid Yegoshin #include <asm/fpu.h> 90102cedc3SLeonid Yegoshin #include <asm/fpu_emulator.h> 911da177e4SLinus Torvalds #include <asm/inst.h> 921da177e4SLinus Torvalds #include <asm/uaccess.h> 931da177e4SLinus Torvalds 941da177e4SLinus Torvalds #define STR(x) __STR(x) 951da177e4SLinus Torvalds #define __STR(x) #x 961da177e4SLinus Torvalds 976312e0eeSAtsushi Nemoto enum { 986312e0eeSAtsushi Nemoto UNALIGNED_ACTION_QUIET, 996312e0eeSAtsushi Nemoto UNALIGNED_ACTION_SIGNAL, 1006312e0eeSAtsushi Nemoto UNALIGNED_ACTION_SHOW, 1016312e0eeSAtsushi Nemoto }; 1026312e0eeSAtsushi Nemoto #ifdef CONFIG_DEBUG_FS 1036312e0eeSAtsushi Nemoto static u32 unaligned_instructions; 1046312e0eeSAtsushi Nemoto static u32 unaligned_action; 1056312e0eeSAtsushi Nemoto #else 1066312e0eeSAtsushi Nemoto #define unaligned_action UNALIGNED_ACTION_QUIET 1071da177e4SLinus Torvalds #endif 1086312e0eeSAtsushi Nemoto extern void show_registers(struct pt_regs *regs); 1091da177e4SLinus Torvalds 11034c2f668SLeonid Yegoshin #ifdef __BIG_ENDIAN 111eeb53895SMarkos Chandras #define _LoadHW(addr, value, res, type) \ 1123563c32dSMarkos Chandras do { \ 11334c2f668SLeonid Yegoshin __asm__ __volatile__ (".set\tnoat\n" \ 114eeb53895SMarkos Chandras "1:\t"type##_lb("%0", "0(%2)")"\n" \ 115eeb53895SMarkos Chandras "2:\t"type##_lbu("$1", "1(%2)")"\n\t"\ 11634c2f668SLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 11734c2f668SLeonid Yegoshin "or\t%0, $1\n\t" \ 11834c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 11934c2f668SLeonid Yegoshin "3:\t.set\tat\n\t" \ 12034c2f668SLeonid Yegoshin ".insn\n\t" \ 12134c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 12234c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 12334c2f668SLeonid Yegoshin "j\t3b\n\t" \ 12434c2f668SLeonid Yegoshin ".previous\n\t" \ 12534c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 12634c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 12734c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 12834c2f668SLeonid Yegoshin ".previous" \ 12934c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 1303563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 1313563c32dSMarkos Chandras } while(0) 13234c2f668SLeonid Yegoshin 1330593a44cSLeonid Yegoshin #ifndef CONFIG_CPU_MIPSR6 134eeb53895SMarkos Chandras #define _LoadW(addr, value, res, type) \ 1353563c32dSMarkos Chandras do { \ 13634c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 137eeb53895SMarkos Chandras "1:\t"type##_lwl("%0", "(%2)")"\n" \ 138eeb53895SMarkos Chandras "2:\t"type##_lwr("%0", "3(%2)")"\n\t"\ 13934c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 14034c2f668SLeonid Yegoshin "3:\n\t" \ 14134c2f668SLeonid Yegoshin ".insn\n\t" \ 14234c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 14334c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 14434c2f668SLeonid Yegoshin "j\t3b\n\t" \ 14534c2f668SLeonid Yegoshin ".previous\n\t" \ 14634c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 14734c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 14834c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 14934c2f668SLeonid Yegoshin ".previous" \ 15034c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 1513563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 1523563c32dSMarkos Chandras } while(0) 1533563c32dSMarkos Chandras 1540593a44cSLeonid Yegoshin #else 1550593a44cSLeonid Yegoshin /* MIPSR6 has no lwl instruction */ 156eeb53895SMarkos Chandras #define _LoadW(addr, value, res, type) \ 1573563c32dSMarkos Chandras do { \ 1580593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 1590593a44cSLeonid Yegoshin ".set\tpush\n" \ 1600593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 161eeb53895SMarkos Chandras "1:"type##_lb("%0", "0(%2)")"\n\t" \ 162eeb53895SMarkos Chandras "2:"type##_lbu("$1", "1(%2)")"\n\t" \ 1630593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 1640593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 165eeb53895SMarkos Chandras "3:"type##_lbu("$1", "2(%2)")"\n\t" \ 1660593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 1670593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 168eeb53895SMarkos Chandras "4:"type##_lbu("$1", "3(%2)")"\n\t" \ 1690593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 1700593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 1710593a44cSLeonid Yegoshin "li\t%1, 0\n" \ 1720593a44cSLeonid Yegoshin ".set\tpop\n" \ 1730593a44cSLeonid Yegoshin "10:\n\t" \ 1740593a44cSLeonid Yegoshin ".insn\n\t" \ 1750593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 1760593a44cSLeonid Yegoshin "11:\tli\t%1, %3\n\t" \ 1770593a44cSLeonid Yegoshin "j\t10b\n\t" \ 1780593a44cSLeonid Yegoshin ".previous\n\t" \ 1790593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 1800593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 1810593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 1820593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 1830593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 1840593a44cSLeonid Yegoshin ".previous" \ 1850593a44cSLeonid Yegoshin : "=&r" (value), "=r" (res) \ 1863563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 1873563c32dSMarkos Chandras } while(0) 1883563c32dSMarkos Chandras 1890593a44cSLeonid Yegoshin #endif /* CONFIG_CPU_MIPSR6 */ 19034c2f668SLeonid Yegoshin 191eeb53895SMarkos Chandras #define _LoadHWU(addr, value, res, type) \ 1923563c32dSMarkos Chandras do { \ 19334c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 19434c2f668SLeonid Yegoshin ".set\tnoat\n" \ 195eeb53895SMarkos Chandras "1:\t"type##_lbu("%0", "0(%2)")"\n" \ 196eeb53895SMarkos Chandras "2:\t"type##_lbu("$1", "1(%2)")"\n\t"\ 19734c2f668SLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 19834c2f668SLeonid Yegoshin "or\t%0, $1\n\t" \ 19934c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 20034c2f668SLeonid Yegoshin "3:\n\t" \ 20134c2f668SLeonid Yegoshin ".insn\n\t" \ 20234c2f668SLeonid Yegoshin ".set\tat\n\t" \ 20334c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 20434c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 20534c2f668SLeonid Yegoshin "j\t3b\n\t" \ 20634c2f668SLeonid Yegoshin ".previous\n\t" \ 20734c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 20834c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 20934c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 21034c2f668SLeonid Yegoshin ".previous" \ 21134c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 2123563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 2133563c32dSMarkos Chandras } while(0) 21434c2f668SLeonid Yegoshin 2150593a44cSLeonid Yegoshin #ifndef CONFIG_CPU_MIPSR6 216eeb53895SMarkos Chandras #define _LoadWU(addr, value, res, type) \ 2173563c32dSMarkos Chandras do { \ 21834c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 219eeb53895SMarkos Chandras "1:\t"type##_lwl("%0", "(%2)")"\n" \ 220eeb53895SMarkos Chandras "2:\t"type##_lwr("%0", "3(%2)")"\n\t"\ 22134c2f668SLeonid Yegoshin "dsll\t%0, %0, 32\n\t" \ 22234c2f668SLeonid Yegoshin "dsrl\t%0, %0, 32\n\t" \ 22334c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 22434c2f668SLeonid Yegoshin "3:\n\t" \ 22534c2f668SLeonid Yegoshin ".insn\n\t" \ 22634c2f668SLeonid Yegoshin "\t.section\t.fixup,\"ax\"\n\t" \ 22734c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 22834c2f668SLeonid Yegoshin "j\t3b\n\t" \ 22934c2f668SLeonid Yegoshin ".previous\n\t" \ 23034c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 23134c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 23234c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 23334c2f668SLeonid Yegoshin ".previous" \ 23434c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 2353563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 2363563c32dSMarkos Chandras } while(0) 23734c2f668SLeonid Yegoshin 238eeb53895SMarkos Chandras #define _LoadDW(addr, value, res) \ 2393563c32dSMarkos Chandras do { \ 24034c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 24134c2f668SLeonid Yegoshin "1:\tldl\t%0, (%2)\n" \ 24234c2f668SLeonid Yegoshin "2:\tldr\t%0, 7(%2)\n\t" \ 24334c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 24434c2f668SLeonid Yegoshin "3:\n\t" \ 24534c2f668SLeonid Yegoshin ".insn\n\t" \ 24634c2f668SLeonid Yegoshin "\t.section\t.fixup,\"ax\"\n\t" \ 24734c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 24834c2f668SLeonid Yegoshin "j\t3b\n\t" \ 24934c2f668SLeonid Yegoshin ".previous\n\t" \ 25034c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 25134c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 25234c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 25334c2f668SLeonid Yegoshin ".previous" \ 25434c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 2553563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 2563563c32dSMarkos Chandras } while(0) 2573563c32dSMarkos Chandras 2580593a44cSLeonid Yegoshin #else 2590593a44cSLeonid Yegoshin /* MIPSR6 has not lwl and ldl instructions */ 260eeb53895SMarkos Chandras #define _LoadWU(addr, value, res, type) \ 2613563c32dSMarkos Chandras do { \ 2620593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 2630593a44cSLeonid Yegoshin ".set\tpush\n\t" \ 2640593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 265eeb53895SMarkos Chandras "1:"type##_lbu("%0", "0(%2)")"\n\t" \ 266eeb53895SMarkos Chandras "2:"type##_lbu("$1", "1(%2)")"\n\t" \ 2670593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 2680593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 269eeb53895SMarkos Chandras "3:"type##_lbu("$1", "2(%2)")"\n\t" \ 2700593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 2710593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 272eeb53895SMarkos Chandras "4:"type##_lbu("$1", "3(%2)")"\n\t" \ 2730593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 2740593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 2750593a44cSLeonid Yegoshin "li\t%1, 0\n" \ 2760593a44cSLeonid Yegoshin ".set\tpop\n" \ 2770593a44cSLeonid Yegoshin "10:\n\t" \ 2780593a44cSLeonid Yegoshin ".insn\n\t" \ 2790593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 2800593a44cSLeonid Yegoshin "11:\tli\t%1, %3\n\t" \ 2810593a44cSLeonid Yegoshin "j\t10b\n\t" \ 2820593a44cSLeonid Yegoshin ".previous\n\t" \ 2830593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 2840593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 2850593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 2860593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 2870593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 2880593a44cSLeonid Yegoshin ".previous" \ 2890593a44cSLeonid Yegoshin : "=&r" (value), "=r" (res) \ 2903563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 2913563c32dSMarkos Chandras } while(0) 2920593a44cSLeonid Yegoshin 293eeb53895SMarkos Chandras #define _LoadDW(addr, value, res) \ 2943563c32dSMarkos Chandras do { \ 2950593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 2960593a44cSLeonid Yegoshin ".set\tpush\n\t" \ 2970593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 2980593a44cSLeonid Yegoshin "1:lb\t%0, 0(%2)\n\t" \ 2990593a44cSLeonid Yegoshin "2:lbu\t $1, 1(%2)\n\t" \ 3000593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 3010593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 3020593a44cSLeonid Yegoshin "3:lbu\t$1, 2(%2)\n\t" \ 3030593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 3040593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 3050593a44cSLeonid Yegoshin "4:lbu\t$1, 3(%2)\n\t" \ 3060593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 3070593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 3080593a44cSLeonid Yegoshin "5:lbu\t$1, 4(%2)\n\t" \ 3090593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 3100593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 3110593a44cSLeonid Yegoshin "6:lbu\t$1, 5(%2)\n\t" \ 3120593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 3130593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 3140593a44cSLeonid Yegoshin "7:lbu\t$1, 6(%2)\n\t" \ 3150593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 3160593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 3170593a44cSLeonid Yegoshin "8:lbu\t$1, 7(%2)\n\t" \ 3180593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 3190593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 3200593a44cSLeonid Yegoshin "li\t%1, 0\n" \ 3210593a44cSLeonid Yegoshin ".set\tpop\n\t" \ 3220593a44cSLeonid Yegoshin "10:\n\t" \ 3230593a44cSLeonid Yegoshin ".insn\n\t" \ 3240593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 3250593a44cSLeonid Yegoshin "11:\tli\t%1, %3\n\t" \ 3260593a44cSLeonid Yegoshin "j\t10b\n\t" \ 3270593a44cSLeonid Yegoshin ".previous\n\t" \ 3280593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 3290593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 3300593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 3310593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 3320593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 3330593a44cSLeonid Yegoshin STR(PTR)"\t5b, 11b\n\t" \ 3340593a44cSLeonid Yegoshin STR(PTR)"\t6b, 11b\n\t" \ 3350593a44cSLeonid Yegoshin STR(PTR)"\t7b, 11b\n\t" \ 3360593a44cSLeonid Yegoshin STR(PTR)"\t8b, 11b\n\t" \ 3370593a44cSLeonid Yegoshin ".previous" \ 3380593a44cSLeonid Yegoshin : "=&r" (value), "=r" (res) \ 3393563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 3403563c32dSMarkos Chandras } while(0) 3413563c32dSMarkos Chandras 3420593a44cSLeonid Yegoshin #endif /* CONFIG_CPU_MIPSR6 */ 3430593a44cSLeonid Yegoshin 34434c2f668SLeonid Yegoshin 345eeb53895SMarkos Chandras #define _StoreHW(addr, value, res, type) \ 3463563c32dSMarkos Chandras do { \ 34734c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 34834c2f668SLeonid Yegoshin ".set\tnoat\n" \ 349eeb53895SMarkos Chandras "1:\t"type##_sb("%1", "1(%2)")"\n" \ 35034c2f668SLeonid Yegoshin "srl\t$1, %1, 0x8\n" \ 351eeb53895SMarkos Chandras "2:\t"type##_sb("$1", "0(%2)")"\n" \ 35234c2f668SLeonid Yegoshin ".set\tat\n\t" \ 35334c2f668SLeonid Yegoshin "li\t%0, 0\n" \ 35434c2f668SLeonid Yegoshin "3:\n\t" \ 35534c2f668SLeonid Yegoshin ".insn\n\t" \ 35634c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 35734c2f668SLeonid Yegoshin "4:\tli\t%0, %3\n\t" \ 35834c2f668SLeonid Yegoshin "j\t3b\n\t" \ 35934c2f668SLeonid Yegoshin ".previous\n\t" \ 36034c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 36134c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 36234c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 36334c2f668SLeonid Yegoshin ".previous" \ 36434c2f668SLeonid Yegoshin : "=r" (res) \ 3653563c32dSMarkos Chandras : "r" (value), "r" (addr), "i" (-EFAULT));\ 3663563c32dSMarkos Chandras } while(0) 36734c2f668SLeonid Yegoshin 3680593a44cSLeonid Yegoshin #ifndef CONFIG_CPU_MIPSR6 369eeb53895SMarkos Chandras #define _StoreW(addr, value, res, type) \ 3703563c32dSMarkos Chandras do { \ 37134c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 372eeb53895SMarkos Chandras "1:\t"type##_swl("%1", "(%2)")"\n" \ 373eeb53895SMarkos Chandras "2:\t"type##_swr("%1", "3(%2)")"\n\t"\ 37434c2f668SLeonid Yegoshin "li\t%0, 0\n" \ 37534c2f668SLeonid Yegoshin "3:\n\t" \ 37634c2f668SLeonid Yegoshin ".insn\n\t" \ 37734c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 37834c2f668SLeonid Yegoshin "4:\tli\t%0, %3\n\t" \ 37934c2f668SLeonid Yegoshin "j\t3b\n\t" \ 38034c2f668SLeonid Yegoshin ".previous\n\t" \ 38134c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 38234c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 38334c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 38434c2f668SLeonid Yegoshin ".previous" \ 38534c2f668SLeonid Yegoshin : "=r" (res) \ 3863563c32dSMarkos Chandras : "r" (value), "r" (addr), "i" (-EFAULT)); \ 3873563c32dSMarkos Chandras } while(0) 38834c2f668SLeonid Yegoshin 389eeb53895SMarkos Chandras #define _StoreDW(addr, value, res) \ 3903563c32dSMarkos Chandras do { \ 39134c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 39234c2f668SLeonid Yegoshin "1:\tsdl\t%1,(%2)\n" \ 39334c2f668SLeonid Yegoshin "2:\tsdr\t%1, 7(%2)\n\t" \ 39434c2f668SLeonid Yegoshin "li\t%0, 0\n" \ 39534c2f668SLeonid Yegoshin "3:\n\t" \ 39634c2f668SLeonid Yegoshin ".insn\n\t" \ 39734c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 39834c2f668SLeonid Yegoshin "4:\tli\t%0, %3\n\t" \ 39934c2f668SLeonid Yegoshin "j\t3b\n\t" \ 40034c2f668SLeonid Yegoshin ".previous\n\t" \ 40134c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 40234c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 40334c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 40434c2f668SLeonid Yegoshin ".previous" \ 40534c2f668SLeonid Yegoshin : "=r" (res) \ 4063563c32dSMarkos Chandras : "r" (value), "r" (addr), "i" (-EFAULT)); \ 4073563c32dSMarkos Chandras } while(0) 4083563c32dSMarkos Chandras 4090593a44cSLeonid Yegoshin #else 4100593a44cSLeonid Yegoshin /* MIPSR6 has no swl and sdl instructions */ 411eeb53895SMarkos Chandras #define _StoreW(addr, value, res, type) \ 4123563c32dSMarkos Chandras do { \ 4130593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 4140593a44cSLeonid Yegoshin ".set\tpush\n\t" \ 4150593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 416eeb53895SMarkos Chandras "1:"type##_sb("%1", "3(%2)")"\n\t" \ 4170593a44cSLeonid Yegoshin "srl\t$1, %1, 0x8\n\t" \ 418eeb53895SMarkos Chandras "2:"type##_sb("$1", "2(%2)")"\n\t" \ 4190593a44cSLeonid Yegoshin "srl\t$1, $1, 0x8\n\t" \ 420eeb53895SMarkos Chandras "3:"type##_sb("$1", "1(%2)")"\n\t" \ 4210593a44cSLeonid Yegoshin "srl\t$1, $1, 0x8\n\t" \ 422eeb53895SMarkos Chandras "4:"type##_sb("$1", "0(%2)")"\n\t" \ 4230593a44cSLeonid Yegoshin ".set\tpop\n\t" \ 4240593a44cSLeonid Yegoshin "li\t%0, 0\n" \ 4250593a44cSLeonid Yegoshin "10:\n\t" \ 4260593a44cSLeonid Yegoshin ".insn\n\t" \ 4270593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 4280593a44cSLeonid Yegoshin "11:\tli\t%0, %3\n\t" \ 4290593a44cSLeonid Yegoshin "j\t10b\n\t" \ 4300593a44cSLeonid Yegoshin ".previous\n\t" \ 4310593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 4320593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 4330593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 4340593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 4350593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 4360593a44cSLeonid Yegoshin ".previous" \ 4370593a44cSLeonid Yegoshin : "=&r" (res) \ 4380593a44cSLeonid Yegoshin : "r" (value), "r" (addr), "i" (-EFAULT) \ 4393563c32dSMarkos Chandras : "memory"); \ 4403563c32dSMarkos Chandras } while(0) 44134c2f668SLeonid Yegoshin 442531a6d59SJames Cowgill #define _StoreDW(addr, value, res) \ 4433563c32dSMarkos Chandras do { \ 4440593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 4450593a44cSLeonid Yegoshin ".set\tpush\n\t" \ 4460593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 4470593a44cSLeonid Yegoshin "1:sb\t%1, 7(%2)\n\t" \ 4480593a44cSLeonid Yegoshin "dsrl\t$1, %1, 0x8\n\t" \ 4490593a44cSLeonid Yegoshin "2:sb\t$1, 6(%2)\n\t" \ 4500593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 4510593a44cSLeonid Yegoshin "3:sb\t$1, 5(%2)\n\t" \ 4520593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 4530593a44cSLeonid Yegoshin "4:sb\t$1, 4(%2)\n\t" \ 4540593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 4550593a44cSLeonid Yegoshin "5:sb\t$1, 3(%2)\n\t" \ 4560593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 4570593a44cSLeonid Yegoshin "6:sb\t$1, 2(%2)\n\t" \ 4580593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 4590593a44cSLeonid Yegoshin "7:sb\t$1, 1(%2)\n\t" \ 4600593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 4610593a44cSLeonid Yegoshin "8:sb\t$1, 0(%2)\n\t" \ 4620593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 4630593a44cSLeonid Yegoshin ".set\tpop\n\t" \ 4640593a44cSLeonid Yegoshin "li\t%0, 0\n" \ 4650593a44cSLeonid Yegoshin "10:\n\t" \ 4660593a44cSLeonid Yegoshin ".insn\n\t" \ 4670593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 4680593a44cSLeonid Yegoshin "11:\tli\t%0, %3\n\t" \ 4690593a44cSLeonid Yegoshin "j\t10b\n\t" \ 4700593a44cSLeonid Yegoshin ".previous\n\t" \ 4710593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 4720593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 4730593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 4740593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 4750593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 4760593a44cSLeonid Yegoshin STR(PTR)"\t5b, 11b\n\t" \ 4770593a44cSLeonid Yegoshin STR(PTR)"\t6b, 11b\n\t" \ 4780593a44cSLeonid Yegoshin STR(PTR)"\t7b, 11b\n\t" \ 4790593a44cSLeonid Yegoshin STR(PTR)"\t8b, 11b\n\t" \ 4800593a44cSLeonid Yegoshin ".previous" \ 4810593a44cSLeonid Yegoshin : "=&r" (res) \ 4820593a44cSLeonid Yegoshin : "r" (value), "r" (addr), "i" (-EFAULT) \ 4833563c32dSMarkos Chandras : "memory"); \ 4843563c32dSMarkos Chandras } while(0) 4853563c32dSMarkos Chandras 4860593a44cSLeonid Yegoshin #endif /* CONFIG_CPU_MIPSR6 */ 4870593a44cSLeonid Yegoshin 4880593a44cSLeonid Yegoshin #else /* __BIG_ENDIAN */ 4890593a44cSLeonid Yegoshin 490eeb53895SMarkos Chandras #define _LoadHW(addr, value, res, type) \ 4913563c32dSMarkos Chandras do { \ 49234c2f668SLeonid Yegoshin __asm__ __volatile__ (".set\tnoat\n" \ 493eeb53895SMarkos Chandras "1:\t"type##_lb("%0", "1(%2)")"\n" \ 494eeb53895SMarkos Chandras "2:\t"type##_lbu("$1", "0(%2)")"\n\t"\ 49534c2f668SLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 49634c2f668SLeonid Yegoshin "or\t%0, $1\n\t" \ 49734c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 49834c2f668SLeonid Yegoshin "3:\t.set\tat\n\t" \ 49934c2f668SLeonid Yegoshin ".insn\n\t" \ 50034c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 50134c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 50234c2f668SLeonid Yegoshin "j\t3b\n\t" \ 50334c2f668SLeonid Yegoshin ".previous\n\t" \ 50434c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 50534c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 50634c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 50734c2f668SLeonid Yegoshin ".previous" \ 50834c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 5093563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 5103563c32dSMarkos Chandras } while(0) 51134c2f668SLeonid Yegoshin 5120593a44cSLeonid Yegoshin #ifndef CONFIG_CPU_MIPSR6 513eeb53895SMarkos Chandras #define _LoadW(addr, value, res, type) \ 5143563c32dSMarkos Chandras do { \ 51534c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 516eeb53895SMarkos Chandras "1:\t"type##_lwl("%0", "3(%2)")"\n" \ 517eeb53895SMarkos Chandras "2:\t"type##_lwr("%0", "(%2)")"\n\t"\ 51834c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 51934c2f668SLeonid Yegoshin "3:\n\t" \ 52034c2f668SLeonid Yegoshin ".insn\n\t" \ 52134c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 52234c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 52334c2f668SLeonid Yegoshin "j\t3b\n\t" \ 52434c2f668SLeonid Yegoshin ".previous\n\t" \ 52534c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 52634c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 52734c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 52834c2f668SLeonid Yegoshin ".previous" \ 52934c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 5303563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 5313563c32dSMarkos Chandras } while(0) 5323563c32dSMarkos Chandras 5330593a44cSLeonid Yegoshin #else 5340593a44cSLeonid Yegoshin /* MIPSR6 has no lwl instruction */ 535eeb53895SMarkos Chandras #define _LoadW(addr, value, res, type) \ 5363563c32dSMarkos Chandras do { \ 5370593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 5380593a44cSLeonid Yegoshin ".set\tpush\n" \ 5390593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 540eeb53895SMarkos Chandras "1:"type##_lb("%0", "3(%2)")"\n\t" \ 541eeb53895SMarkos Chandras "2:"type##_lbu("$1", "2(%2)")"\n\t" \ 5420593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 5430593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 544eeb53895SMarkos Chandras "3:"type##_lbu("$1", "1(%2)")"\n\t" \ 5450593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 5460593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 547eeb53895SMarkos Chandras "4:"type##_lbu("$1", "0(%2)")"\n\t" \ 5480593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 5490593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 5500593a44cSLeonid Yegoshin "li\t%1, 0\n" \ 5510593a44cSLeonid Yegoshin ".set\tpop\n" \ 5520593a44cSLeonid Yegoshin "10:\n\t" \ 5530593a44cSLeonid Yegoshin ".insn\n\t" \ 5540593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 5550593a44cSLeonid Yegoshin "11:\tli\t%1, %3\n\t" \ 5560593a44cSLeonid Yegoshin "j\t10b\n\t" \ 5570593a44cSLeonid Yegoshin ".previous\n\t" \ 5580593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 5590593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 5600593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 5610593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 5620593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 5630593a44cSLeonid Yegoshin ".previous" \ 5640593a44cSLeonid Yegoshin : "=&r" (value), "=r" (res) \ 5653563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 5663563c32dSMarkos Chandras } while(0) 5673563c32dSMarkos Chandras 5680593a44cSLeonid Yegoshin #endif /* CONFIG_CPU_MIPSR6 */ 5690593a44cSLeonid Yegoshin 57034c2f668SLeonid Yegoshin 571eeb53895SMarkos Chandras #define _LoadHWU(addr, value, res, type) \ 5723563c32dSMarkos Chandras do { \ 57334c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 57434c2f668SLeonid Yegoshin ".set\tnoat\n" \ 575eeb53895SMarkos Chandras "1:\t"type##_lbu("%0", "1(%2)")"\n" \ 576eeb53895SMarkos Chandras "2:\t"type##_lbu("$1", "0(%2)")"\n\t"\ 57734c2f668SLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 57834c2f668SLeonid Yegoshin "or\t%0, $1\n\t" \ 57934c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 58034c2f668SLeonid Yegoshin "3:\n\t" \ 58134c2f668SLeonid Yegoshin ".insn\n\t" \ 58234c2f668SLeonid Yegoshin ".set\tat\n\t" \ 58334c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 58434c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 58534c2f668SLeonid Yegoshin "j\t3b\n\t" \ 58634c2f668SLeonid Yegoshin ".previous\n\t" \ 58734c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 58834c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 58934c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 59034c2f668SLeonid Yegoshin ".previous" \ 59134c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 5923563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 5933563c32dSMarkos Chandras } while(0) 59434c2f668SLeonid Yegoshin 5950593a44cSLeonid Yegoshin #ifndef CONFIG_CPU_MIPSR6 596eeb53895SMarkos Chandras #define _LoadWU(addr, value, res, type) \ 5973563c32dSMarkos Chandras do { \ 59834c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 599eeb53895SMarkos Chandras "1:\t"type##_lwl("%0", "3(%2)")"\n" \ 600eeb53895SMarkos Chandras "2:\t"type##_lwr("%0", "(%2)")"\n\t"\ 60134c2f668SLeonid Yegoshin "dsll\t%0, %0, 32\n\t" \ 60234c2f668SLeonid Yegoshin "dsrl\t%0, %0, 32\n\t" \ 60334c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 60434c2f668SLeonid Yegoshin "3:\n\t" \ 60534c2f668SLeonid Yegoshin ".insn\n\t" \ 60634c2f668SLeonid Yegoshin "\t.section\t.fixup,\"ax\"\n\t" \ 60734c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 60834c2f668SLeonid Yegoshin "j\t3b\n\t" \ 60934c2f668SLeonid Yegoshin ".previous\n\t" \ 61034c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 61134c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 61234c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 61334c2f668SLeonid Yegoshin ".previous" \ 61434c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 6153563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 6163563c32dSMarkos Chandras } while(0) 61734c2f668SLeonid Yegoshin 618eeb53895SMarkos Chandras #define _LoadDW(addr, value, res) \ 6193563c32dSMarkos Chandras do { \ 62034c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 62134c2f668SLeonid Yegoshin "1:\tldl\t%0, 7(%2)\n" \ 62234c2f668SLeonid Yegoshin "2:\tldr\t%0, (%2)\n\t" \ 62334c2f668SLeonid Yegoshin "li\t%1, 0\n" \ 62434c2f668SLeonid Yegoshin "3:\n\t" \ 62534c2f668SLeonid Yegoshin ".insn\n\t" \ 62634c2f668SLeonid Yegoshin "\t.section\t.fixup,\"ax\"\n\t" \ 62734c2f668SLeonid Yegoshin "4:\tli\t%1, %3\n\t" \ 62834c2f668SLeonid Yegoshin "j\t3b\n\t" \ 62934c2f668SLeonid Yegoshin ".previous\n\t" \ 63034c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 63134c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 63234c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 63334c2f668SLeonid Yegoshin ".previous" \ 63434c2f668SLeonid Yegoshin : "=&r" (value), "=r" (res) \ 6353563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 6363563c32dSMarkos Chandras } while(0) 6373563c32dSMarkos Chandras 6380593a44cSLeonid Yegoshin #else 6390593a44cSLeonid Yegoshin /* MIPSR6 has not lwl and ldl instructions */ 640eeb53895SMarkos Chandras #define _LoadWU(addr, value, res, type) \ 6413563c32dSMarkos Chandras do { \ 6420593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 6430593a44cSLeonid Yegoshin ".set\tpush\n\t" \ 6440593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 645eeb53895SMarkos Chandras "1:"type##_lbu("%0", "3(%2)")"\n\t" \ 646eeb53895SMarkos Chandras "2:"type##_lbu("$1", "2(%2)")"\n\t" \ 6470593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 6480593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 649eeb53895SMarkos Chandras "3:"type##_lbu("$1", "1(%2)")"\n\t" \ 6500593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 6510593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 652eeb53895SMarkos Chandras "4:"type##_lbu("$1", "0(%2)")"\n\t" \ 6530593a44cSLeonid Yegoshin "sll\t%0, 0x8\n\t" \ 6540593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 6550593a44cSLeonid Yegoshin "li\t%1, 0\n" \ 6560593a44cSLeonid Yegoshin ".set\tpop\n" \ 6570593a44cSLeonid Yegoshin "10:\n\t" \ 6580593a44cSLeonid Yegoshin ".insn\n\t" \ 6590593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 6600593a44cSLeonid Yegoshin "11:\tli\t%1, %3\n\t" \ 6610593a44cSLeonid Yegoshin "j\t10b\n\t" \ 6620593a44cSLeonid Yegoshin ".previous\n\t" \ 6630593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 6640593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 6650593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 6660593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 6670593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 6680593a44cSLeonid Yegoshin ".previous" \ 6690593a44cSLeonid Yegoshin : "=&r" (value), "=r" (res) \ 6703563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 6713563c32dSMarkos Chandras } while(0) 6720593a44cSLeonid Yegoshin 673eeb53895SMarkos Chandras #define _LoadDW(addr, value, res) \ 6743563c32dSMarkos Chandras do { \ 6750593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 6760593a44cSLeonid Yegoshin ".set\tpush\n\t" \ 6770593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 6780593a44cSLeonid Yegoshin "1:lb\t%0, 7(%2)\n\t" \ 6790593a44cSLeonid Yegoshin "2:lbu\t$1, 6(%2)\n\t" \ 6800593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 6810593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 6820593a44cSLeonid Yegoshin "3:lbu\t$1, 5(%2)\n\t" \ 6830593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 6840593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 6850593a44cSLeonid Yegoshin "4:lbu\t$1, 4(%2)\n\t" \ 6860593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 6870593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 6880593a44cSLeonid Yegoshin "5:lbu\t$1, 3(%2)\n\t" \ 6890593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 6900593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 6910593a44cSLeonid Yegoshin "6:lbu\t$1, 2(%2)\n\t" \ 6920593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 6930593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 6940593a44cSLeonid Yegoshin "7:lbu\t$1, 1(%2)\n\t" \ 6950593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 6960593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 6970593a44cSLeonid Yegoshin "8:lbu\t$1, 0(%2)\n\t" \ 6980593a44cSLeonid Yegoshin "dsll\t%0, 0x8\n\t" \ 6990593a44cSLeonid Yegoshin "or\t%0, $1\n\t" \ 7000593a44cSLeonid Yegoshin "li\t%1, 0\n" \ 7010593a44cSLeonid Yegoshin ".set\tpop\n\t" \ 7020593a44cSLeonid Yegoshin "10:\n\t" \ 7030593a44cSLeonid Yegoshin ".insn\n\t" \ 7040593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 7050593a44cSLeonid Yegoshin "11:\tli\t%1, %3\n\t" \ 7060593a44cSLeonid Yegoshin "j\t10b\n\t" \ 7070593a44cSLeonid Yegoshin ".previous\n\t" \ 7080593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 7090593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 7100593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 7110593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 7120593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 7130593a44cSLeonid Yegoshin STR(PTR)"\t5b, 11b\n\t" \ 7140593a44cSLeonid Yegoshin STR(PTR)"\t6b, 11b\n\t" \ 7150593a44cSLeonid Yegoshin STR(PTR)"\t7b, 11b\n\t" \ 7160593a44cSLeonid Yegoshin STR(PTR)"\t8b, 11b\n\t" \ 7170593a44cSLeonid Yegoshin ".previous" \ 7180593a44cSLeonid Yegoshin : "=&r" (value), "=r" (res) \ 7193563c32dSMarkos Chandras : "r" (addr), "i" (-EFAULT)); \ 7203563c32dSMarkos Chandras } while(0) 7210593a44cSLeonid Yegoshin #endif /* CONFIG_CPU_MIPSR6 */ 72234c2f668SLeonid Yegoshin 723eeb53895SMarkos Chandras #define _StoreHW(addr, value, res, type) \ 7243563c32dSMarkos Chandras do { \ 72534c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 72634c2f668SLeonid Yegoshin ".set\tnoat\n" \ 727eeb53895SMarkos Chandras "1:\t"type##_sb("%1", "0(%2)")"\n" \ 72834c2f668SLeonid Yegoshin "srl\t$1,%1, 0x8\n" \ 729eeb53895SMarkos Chandras "2:\t"type##_sb("$1", "1(%2)")"\n" \ 73034c2f668SLeonid Yegoshin ".set\tat\n\t" \ 73134c2f668SLeonid Yegoshin "li\t%0, 0\n" \ 73234c2f668SLeonid Yegoshin "3:\n\t" \ 73334c2f668SLeonid Yegoshin ".insn\n\t" \ 73434c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 73534c2f668SLeonid Yegoshin "4:\tli\t%0, %3\n\t" \ 73634c2f668SLeonid Yegoshin "j\t3b\n\t" \ 73734c2f668SLeonid Yegoshin ".previous\n\t" \ 73834c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 73934c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 74034c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 74134c2f668SLeonid Yegoshin ".previous" \ 74234c2f668SLeonid Yegoshin : "=r" (res) \ 7433563c32dSMarkos Chandras : "r" (value), "r" (addr), "i" (-EFAULT));\ 7443563c32dSMarkos Chandras } while(0) 7453563c32dSMarkos Chandras 7460593a44cSLeonid Yegoshin #ifndef CONFIG_CPU_MIPSR6 747eeb53895SMarkos Chandras #define _StoreW(addr, value, res, type) \ 7483563c32dSMarkos Chandras do { \ 74934c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 750eeb53895SMarkos Chandras "1:\t"type##_swl("%1", "3(%2)")"\n" \ 751eeb53895SMarkos Chandras "2:\t"type##_swr("%1", "(%2)")"\n\t"\ 75234c2f668SLeonid Yegoshin "li\t%0, 0\n" \ 75334c2f668SLeonid Yegoshin "3:\n\t" \ 75434c2f668SLeonid Yegoshin ".insn\n\t" \ 75534c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 75634c2f668SLeonid Yegoshin "4:\tli\t%0, %3\n\t" \ 75734c2f668SLeonid Yegoshin "j\t3b\n\t" \ 75834c2f668SLeonid Yegoshin ".previous\n\t" \ 75934c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 76034c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 76134c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 76234c2f668SLeonid Yegoshin ".previous" \ 76334c2f668SLeonid Yegoshin : "=r" (res) \ 7643563c32dSMarkos Chandras : "r" (value), "r" (addr), "i" (-EFAULT)); \ 7653563c32dSMarkos Chandras } while(0) 76634c2f668SLeonid Yegoshin 767eeb53895SMarkos Chandras #define _StoreDW(addr, value, res) \ 7683563c32dSMarkos Chandras do { \ 76934c2f668SLeonid Yegoshin __asm__ __volatile__ ( \ 77034c2f668SLeonid Yegoshin "1:\tsdl\t%1, 7(%2)\n" \ 77134c2f668SLeonid Yegoshin "2:\tsdr\t%1, (%2)\n\t" \ 77234c2f668SLeonid Yegoshin "li\t%0, 0\n" \ 77334c2f668SLeonid Yegoshin "3:\n\t" \ 77434c2f668SLeonid Yegoshin ".insn\n\t" \ 77534c2f668SLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 77634c2f668SLeonid Yegoshin "4:\tli\t%0, %3\n\t" \ 77734c2f668SLeonid Yegoshin "j\t3b\n\t" \ 77834c2f668SLeonid Yegoshin ".previous\n\t" \ 77934c2f668SLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 78034c2f668SLeonid Yegoshin STR(PTR)"\t1b, 4b\n\t" \ 78134c2f668SLeonid Yegoshin STR(PTR)"\t2b, 4b\n\t" \ 78234c2f668SLeonid Yegoshin ".previous" \ 78334c2f668SLeonid Yegoshin : "=r" (res) \ 7843563c32dSMarkos Chandras : "r" (value), "r" (addr), "i" (-EFAULT)); \ 7853563c32dSMarkos Chandras } while(0) 7863563c32dSMarkos Chandras 7870593a44cSLeonid Yegoshin #else 7880593a44cSLeonid Yegoshin /* MIPSR6 has no swl and sdl instructions */ 789eeb53895SMarkos Chandras #define _StoreW(addr, value, res, type) \ 7903563c32dSMarkos Chandras do { \ 7910593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 7920593a44cSLeonid Yegoshin ".set\tpush\n\t" \ 7930593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 794eeb53895SMarkos Chandras "1:"type##_sb("%1", "0(%2)")"\n\t" \ 7950593a44cSLeonid Yegoshin "srl\t$1, %1, 0x8\n\t" \ 796eeb53895SMarkos Chandras "2:"type##_sb("$1", "1(%2)")"\n\t" \ 7970593a44cSLeonid Yegoshin "srl\t$1, $1, 0x8\n\t" \ 798eeb53895SMarkos Chandras "3:"type##_sb("$1", "2(%2)")"\n\t" \ 7990593a44cSLeonid Yegoshin "srl\t$1, $1, 0x8\n\t" \ 800eeb53895SMarkos Chandras "4:"type##_sb("$1", "3(%2)")"\n\t" \ 8010593a44cSLeonid Yegoshin ".set\tpop\n\t" \ 8020593a44cSLeonid Yegoshin "li\t%0, 0\n" \ 8030593a44cSLeonid Yegoshin "10:\n\t" \ 8040593a44cSLeonid Yegoshin ".insn\n\t" \ 8050593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 8060593a44cSLeonid Yegoshin "11:\tli\t%0, %3\n\t" \ 8070593a44cSLeonid Yegoshin "j\t10b\n\t" \ 8080593a44cSLeonid Yegoshin ".previous\n\t" \ 8090593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 8100593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 8110593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 8120593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 8130593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 8140593a44cSLeonid Yegoshin ".previous" \ 8150593a44cSLeonid Yegoshin : "=&r" (res) \ 8160593a44cSLeonid Yegoshin : "r" (value), "r" (addr), "i" (-EFAULT) \ 8173563c32dSMarkos Chandras : "memory"); \ 8183563c32dSMarkos Chandras } while(0) 8190593a44cSLeonid Yegoshin 820eeb53895SMarkos Chandras #define _StoreDW(addr, value, res) \ 8213563c32dSMarkos Chandras do { \ 8220593a44cSLeonid Yegoshin __asm__ __volatile__ ( \ 8230593a44cSLeonid Yegoshin ".set\tpush\n\t" \ 8240593a44cSLeonid Yegoshin ".set\tnoat\n\t" \ 8250593a44cSLeonid Yegoshin "1:sb\t%1, 0(%2)\n\t" \ 8260593a44cSLeonid Yegoshin "dsrl\t$1, %1, 0x8\n\t" \ 8270593a44cSLeonid Yegoshin "2:sb\t$1, 1(%2)\n\t" \ 8280593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 8290593a44cSLeonid Yegoshin "3:sb\t$1, 2(%2)\n\t" \ 8300593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 8310593a44cSLeonid Yegoshin "4:sb\t$1, 3(%2)\n\t" \ 8320593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 8330593a44cSLeonid Yegoshin "5:sb\t$1, 4(%2)\n\t" \ 8340593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 8350593a44cSLeonid Yegoshin "6:sb\t$1, 5(%2)\n\t" \ 8360593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 8370593a44cSLeonid Yegoshin "7:sb\t$1, 6(%2)\n\t" \ 8380593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 8390593a44cSLeonid Yegoshin "8:sb\t$1, 7(%2)\n\t" \ 8400593a44cSLeonid Yegoshin "dsrl\t$1, $1, 0x8\n\t" \ 8410593a44cSLeonid Yegoshin ".set\tpop\n\t" \ 8420593a44cSLeonid Yegoshin "li\t%0, 0\n" \ 8430593a44cSLeonid Yegoshin "10:\n\t" \ 8440593a44cSLeonid Yegoshin ".insn\n\t" \ 8450593a44cSLeonid Yegoshin ".section\t.fixup,\"ax\"\n\t" \ 8460593a44cSLeonid Yegoshin "11:\tli\t%0, %3\n\t" \ 8470593a44cSLeonid Yegoshin "j\t10b\n\t" \ 8480593a44cSLeonid Yegoshin ".previous\n\t" \ 8490593a44cSLeonid Yegoshin ".section\t__ex_table,\"a\"\n\t" \ 8500593a44cSLeonid Yegoshin STR(PTR)"\t1b, 11b\n\t" \ 8510593a44cSLeonid Yegoshin STR(PTR)"\t2b, 11b\n\t" \ 8520593a44cSLeonid Yegoshin STR(PTR)"\t3b, 11b\n\t" \ 8530593a44cSLeonid Yegoshin STR(PTR)"\t4b, 11b\n\t" \ 8540593a44cSLeonid Yegoshin STR(PTR)"\t5b, 11b\n\t" \ 8550593a44cSLeonid Yegoshin STR(PTR)"\t6b, 11b\n\t" \ 8560593a44cSLeonid Yegoshin STR(PTR)"\t7b, 11b\n\t" \ 8570593a44cSLeonid Yegoshin STR(PTR)"\t8b, 11b\n\t" \ 8580593a44cSLeonid Yegoshin ".previous" \ 8590593a44cSLeonid Yegoshin : "=&r" (res) \ 8600593a44cSLeonid Yegoshin : "r" (value), "r" (addr), "i" (-EFAULT) \ 8613563c32dSMarkos Chandras : "memory"); \ 8623563c32dSMarkos Chandras } while(0) 8633563c32dSMarkos Chandras 8640593a44cSLeonid Yegoshin #endif /* CONFIG_CPU_MIPSR6 */ 86534c2f668SLeonid Yegoshin #endif 86634c2f668SLeonid Yegoshin 867eeb53895SMarkos Chandras #define LoadHWU(addr, value, res) _LoadHWU(addr, value, res, kernel) 868eeb53895SMarkos Chandras #define LoadHWUE(addr, value, res) _LoadHWU(addr, value, res, user) 869eeb53895SMarkos Chandras #define LoadWU(addr, value, res) _LoadWU(addr, value, res, kernel) 870eeb53895SMarkos Chandras #define LoadWUE(addr, value, res) _LoadWU(addr, value, res, user) 871eeb53895SMarkos Chandras #define LoadHW(addr, value, res) _LoadHW(addr, value, res, kernel) 872eeb53895SMarkos Chandras #define LoadHWE(addr, value, res) _LoadHW(addr, value, res, user) 873eeb53895SMarkos Chandras #define LoadW(addr, value, res) _LoadW(addr, value, res, kernel) 874eeb53895SMarkos Chandras #define LoadWE(addr, value, res) _LoadW(addr, value, res, user) 875eeb53895SMarkos Chandras #define LoadDW(addr, value, res) _LoadDW(addr, value, res) 876eeb53895SMarkos Chandras 877eeb53895SMarkos Chandras #define StoreHW(addr, value, res) _StoreHW(addr, value, res, kernel) 878eeb53895SMarkos Chandras #define StoreHWE(addr, value, res) _StoreHW(addr, value, res, user) 879eeb53895SMarkos Chandras #define StoreW(addr, value, res) _StoreW(addr, value, res, kernel) 880eeb53895SMarkos Chandras #define StoreWE(addr, value, res) _StoreW(addr, value, res, user) 881eeb53895SMarkos Chandras #define StoreDW(addr, value, res) _StoreDW(addr, value, res) 882eeb53895SMarkos Chandras 8837f18f151SRalf Baechle static void emulate_load_store_insn(struct pt_regs *regs, 8847f18f151SRalf Baechle void __user *addr, unsigned int __user *pc) 8851da177e4SLinus Torvalds { 8861da177e4SLinus Torvalds union mips_instruction insn; 8871da177e4SLinus Torvalds unsigned long value; 888fa8ff601SPaul Burton unsigned int res, preempted; 88934c2f668SLeonid Yegoshin unsigned long origpc; 89034c2f668SLeonid Yegoshin unsigned long orig31; 891102cedc3SLeonid Yegoshin void __user *fault_addr = NULL; 892c1771216SLeonid Yegoshin #ifdef CONFIG_EVA 893c1771216SLeonid Yegoshin mm_segment_t seg; 894c1771216SLeonid Yegoshin #endif 895e4aa1f15SLeonid Yegoshin union fpureg *fpr; 896e4aa1f15SLeonid Yegoshin enum msa_2b_fmt df; 897e4aa1f15SLeonid Yegoshin unsigned int wd; 89834c2f668SLeonid Yegoshin origpc = (unsigned long)pc; 89934c2f668SLeonid Yegoshin orig31 = regs->regs[31]; 90034c2f668SLeonid Yegoshin 901a8b0ca17SPeter Zijlstra perf_sw_event(PERF_COUNT_SW_EMULATION_FAULTS, 1, regs, 0); 9027f788d2dSDeng-Cheng Zhu 9031da177e4SLinus Torvalds /* 9041da177e4SLinus Torvalds * This load never faults. 9051da177e4SLinus Torvalds */ 906fe00f943SRalf Baechle __get_user(insn.word, pc); 9071da177e4SLinus Torvalds 9081da177e4SLinus Torvalds switch (insn.i_format.opcode) { 9091da177e4SLinus Torvalds /* 9101da177e4SLinus Torvalds * These are instructions that a compiler doesn't generate. We 9111da177e4SLinus Torvalds * can assume therefore that the code is MIPS-aware and 9121da177e4SLinus Torvalds * really buggy. Emulating these instructions would break the 9131da177e4SLinus Torvalds * semantics anyway. 9141da177e4SLinus Torvalds */ 9151da177e4SLinus Torvalds case ll_op: 9161da177e4SLinus Torvalds case lld_op: 9171da177e4SLinus Torvalds case sc_op: 9181da177e4SLinus Torvalds case scd_op: 9191da177e4SLinus Torvalds 9201da177e4SLinus Torvalds /* 9211da177e4SLinus Torvalds * For these instructions the only way to create an address 9221da177e4SLinus Torvalds * error is an attempted access to kernel/supervisor address 9231da177e4SLinus Torvalds * space. 9241da177e4SLinus Torvalds */ 9251da177e4SLinus Torvalds case ldl_op: 9261da177e4SLinus Torvalds case ldr_op: 9271da177e4SLinus Torvalds case lwl_op: 9281da177e4SLinus Torvalds case lwr_op: 9291da177e4SLinus Torvalds case sdl_op: 9301da177e4SLinus Torvalds case sdr_op: 9311da177e4SLinus Torvalds case swl_op: 9321da177e4SLinus Torvalds case swr_op: 9331da177e4SLinus Torvalds case lb_op: 9341da177e4SLinus Torvalds case lbu_op: 9351da177e4SLinus Torvalds case sb_op: 9361da177e4SLinus Torvalds goto sigbus; 9371da177e4SLinus Torvalds 9381da177e4SLinus Torvalds /* 93934c2f668SLeonid Yegoshin * The remaining opcodes are the ones that are really of 94034c2f668SLeonid Yegoshin * interest. 9411da177e4SLinus Torvalds */ 942c1771216SLeonid Yegoshin #ifdef CONFIG_EVA 943c1771216SLeonid Yegoshin case spec3_op: 944c1771216SLeonid Yegoshin /* 945c1771216SLeonid Yegoshin * we can land here only from kernel accessing user memory, 946c1771216SLeonid Yegoshin * so we need to "switch" the address limit to user space, so 947c1771216SLeonid Yegoshin * address check can work properly. 948c1771216SLeonid Yegoshin */ 949c1771216SLeonid Yegoshin seg = get_fs(); 950c1771216SLeonid Yegoshin set_fs(USER_DS); 951c1771216SLeonid Yegoshin switch (insn.spec3_format.func) { 952c1771216SLeonid Yegoshin case lhe_op: 953c1771216SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 2)) { 954c1771216SLeonid Yegoshin set_fs(seg); 955c1771216SLeonid Yegoshin goto sigbus; 956c1771216SLeonid Yegoshin } 957eeb53895SMarkos Chandras LoadHWE(addr, value, res); 958c1771216SLeonid Yegoshin if (res) { 959c1771216SLeonid Yegoshin set_fs(seg); 960c1771216SLeonid Yegoshin goto fault; 961c1771216SLeonid Yegoshin } 962c1771216SLeonid Yegoshin compute_return_epc(regs); 963c1771216SLeonid Yegoshin regs->regs[insn.spec3_format.rt] = value; 964c1771216SLeonid Yegoshin break; 965c1771216SLeonid Yegoshin case lwe_op: 966c1771216SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 4)) { 967c1771216SLeonid Yegoshin set_fs(seg); 968c1771216SLeonid Yegoshin goto sigbus; 969c1771216SLeonid Yegoshin } 970eeb53895SMarkos Chandras LoadWE(addr, value, res); 971c1771216SLeonid Yegoshin if (res) { 972c1771216SLeonid Yegoshin set_fs(seg); 973c1771216SLeonid Yegoshin goto fault; 974c1771216SLeonid Yegoshin } 975c1771216SLeonid Yegoshin compute_return_epc(regs); 976c1771216SLeonid Yegoshin regs->regs[insn.spec3_format.rt] = value; 977c1771216SLeonid Yegoshin break; 978c1771216SLeonid Yegoshin case lhue_op: 979c1771216SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 2)) { 980c1771216SLeonid Yegoshin set_fs(seg); 981c1771216SLeonid Yegoshin goto sigbus; 982c1771216SLeonid Yegoshin } 983eeb53895SMarkos Chandras LoadHWUE(addr, value, res); 984c1771216SLeonid Yegoshin if (res) { 985c1771216SLeonid Yegoshin set_fs(seg); 986c1771216SLeonid Yegoshin goto fault; 987c1771216SLeonid Yegoshin } 988c1771216SLeonid Yegoshin compute_return_epc(regs); 989c1771216SLeonid Yegoshin regs->regs[insn.spec3_format.rt] = value; 990c1771216SLeonid Yegoshin break; 991c1771216SLeonid Yegoshin case she_op: 992c1771216SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 2)) { 993c1771216SLeonid Yegoshin set_fs(seg); 994c1771216SLeonid Yegoshin goto sigbus; 995c1771216SLeonid Yegoshin } 996c1771216SLeonid Yegoshin compute_return_epc(regs); 997c1771216SLeonid Yegoshin value = regs->regs[insn.spec3_format.rt]; 998eeb53895SMarkos Chandras StoreHWE(addr, value, res); 999c1771216SLeonid Yegoshin if (res) { 1000c1771216SLeonid Yegoshin set_fs(seg); 1001c1771216SLeonid Yegoshin goto fault; 1002c1771216SLeonid Yegoshin } 1003c1771216SLeonid Yegoshin break; 1004c1771216SLeonid Yegoshin case swe_op: 1005c1771216SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 4)) { 1006c1771216SLeonid Yegoshin set_fs(seg); 1007c1771216SLeonid Yegoshin goto sigbus; 1008c1771216SLeonid Yegoshin } 1009c1771216SLeonid Yegoshin compute_return_epc(regs); 1010c1771216SLeonid Yegoshin value = regs->regs[insn.spec3_format.rt]; 1011eeb53895SMarkos Chandras StoreWE(addr, value, res); 1012c1771216SLeonid Yegoshin if (res) { 1013c1771216SLeonid Yegoshin set_fs(seg); 1014c1771216SLeonid Yegoshin goto fault; 1015c1771216SLeonid Yegoshin } 1016c1771216SLeonid Yegoshin break; 1017c1771216SLeonid Yegoshin default: 1018c1771216SLeonid Yegoshin set_fs(seg); 1019c1771216SLeonid Yegoshin goto sigill; 1020c1771216SLeonid Yegoshin } 1021c1771216SLeonid Yegoshin set_fs(seg); 1022c1771216SLeonid Yegoshin break; 1023c1771216SLeonid Yegoshin #endif 10241da177e4SLinus Torvalds case lh_op: 10251da177e4SLinus Torvalds if (!access_ok(VERIFY_READ, addr, 2)) 10261da177e4SLinus Torvalds goto sigbus; 10271da177e4SLinus Torvalds 10286eae3548SMarkos Chandras if (config_enabled(CONFIG_EVA)) { 10296eae3548SMarkos Chandras if (segment_eq(get_fs(), get_ds())) 103034c2f668SLeonid Yegoshin LoadHW(addr, value, res); 10316eae3548SMarkos Chandras else 10326eae3548SMarkos Chandras LoadHWE(addr, value, res); 10336eae3548SMarkos Chandras } else { 10346eae3548SMarkos Chandras LoadHW(addr, value, res); 10356eae3548SMarkos Chandras } 10366eae3548SMarkos Chandras 10371da177e4SLinus Torvalds if (res) 10381da177e4SLinus Torvalds goto fault; 10397f18f151SRalf Baechle compute_return_epc(regs); 10407f18f151SRalf Baechle regs->regs[insn.i_format.rt] = value; 10411da177e4SLinus Torvalds break; 10421da177e4SLinus Torvalds 10431da177e4SLinus Torvalds case lw_op: 10441da177e4SLinus Torvalds if (!access_ok(VERIFY_READ, addr, 4)) 10451da177e4SLinus Torvalds goto sigbus; 10461da177e4SLinus Torvalds 10476eae3548SMarkos Chandras if (config_enabled(CONFIG_EVA)) { 10486eae3548SMarkos Chandras if (segment_eq(get_fs(), get_ds())) 104934c2f668SLeonid Yegoshin LoadW(addr, value, res); 10506eae3548SMarkos Chandras else 10516eae3548SMarkos Chandras LoadWE(addr, value, res); 10526eae3548SMarkos Chandras } else { 10536eae3548SMarkos Chandras LoadW(addr, value, res); 10546eae3548SMarkos Chandras } 10556eae3548SMarkos Chandras 10561da177e4SLinus Torvalds if (res) 10571da177e4SLinus Torvalds goto fault; 10587f18f151SRalf Baechle compute_return_epc(regs); 10597f18f151SRalf Baechle regs->regs[insn.i_format.rt] = value; 10601da177e4SLinus Torvalds break; 10611da177e4SLinus Torvalds 10621da177e4SLinus Torvalds case lhu_op: 10631da177e4SLinus Torvalds if (!access_ok(VERIFY_READ, addr, 2)) 10641da177e4SLinus Torvalds goto sigbus; 10651da177e4SLinus Torvalds 10666eae3548SMarkos Chandras if (config_enabled(CONFIG_EVA)) { 10676eae3548SMarkos Chandras if (segment_eq(get_fs(), get_ds())) 106834c2f668SLeonid Yegoshin LoadHWU(addr, value, res); 10696eae3548SMarkos Chandras else 10706eae3548SMarkos Chandras LoadHWUE(addr, value, res); 10716eae3548SMarkos Chandras } else { 10726eae3548SMarkos Chandras LoadHWU(addr, value, res); 10736eae3548SMarkos Chandras } 10746eae3548SMarkos Chandras 10751da177e4SLinus Torvalds if (res) 10761da177e4SLinus Torvalds goto fault; 10777f18f151SRalf Baechle compute_return_epc(regs); 10787f18f151SRalf Baechle regs->regs[insn.i_format.rt] = value; 10791da177e4SLinus Torvalds break; 10801da177e4SLinus Torvalds 10811da177e4SLinus Torvalds case lwu_op: 1082875d43e7SRalf Baechle #ifdef CONFIG_64BIT 10831da177e4SLinus Torvalds /* 10841da177e4SLinus Torvalds * A 32-bit kernel might be running on a 64-bit processor. But 10851da177e4SLinus Torvalds * if we're on a 32-bit processor and an i-cache incoherency 10861da177e4SLinus Torvalds * or race makes us see a 64-bit instruction here the sdl/sdr 10871da177e4SLinus Torvalds * would blow up, so for now we don't handle unaligned 64-bit 10881da177e4SLinus Torvalds * instructions on 32-bit kernels. 10891da177e4SLinus Torvalds */ 10901da177e4SLinus Torvalds if (!access_ok(VERIFY_READ, addr, 4)) 10911da177e4SLinus Torvalds goto sigbus; 10921da177e4SLinus Torvalds 109334c2f668SLeonid Yegoshin LoadWU(addr, value, res); 10941da177e4SLinus Torvalds if (res) 10951da177e4SLinus Torvalds goto fault; 10967f18f151SRalf Baechle compute_return_epc(regs); 10977f18f151SRalf Baechle regs->regs[insn.i_format.rt] = value; 10981da177e4SLinus Torvalds break; 1099875d43e7SRalf Baechle #endif /* CONFIG_64BIT */ 11001da177e4SLinus Torvalds 11011da177e4SLinus Torvalds /* Cannot handle 64-bit instructions in 32-bit kernel */ 11021da177e4SLinus Torvalds goto sigill; 11031da177e4SLinus Torvalds 11041da177e4SLinus Torvalds case ld_op: 1105875d43e7SRalf Baechle #ifdef CONFIG_64BIT 11061da177e4SLinus Torvalds /* 11071da177e4SLinus Torvalds * A 32-bit kernel might be running on a 64-bit processor. But 11081da177e4SLinus Torvalds * if we're on a 32-bit processor and an i-cache incoherency 11091da177e4SLinus Torvalds * or race makes us see a 64-bit instruction here the sdl/sdr 11101da177e4SLinus Torvalds * would blow up, so for now we don't handle unaligned 64-bit 11111da177e4SLinus Torvalds * instructions on 32-bit kernels. 11121da177e4SLinus Torvalds */ 11131da177e4SLinus Torvalds if (!access_ok(VERIFY_READ, addr, 8)) 11141da177e4SLinus Torvalds goto sigbus; 11151da177e4SLinus Torvalds 111634c2f668SLeonid Yegoshin LoadDW(addr, value, res); 11171da177e4SLinus Torvalds if (res) 11181da177e4SLinus Torvalds goto fault; 11197f18f151SRalf Baechle compute_return_epc(regs); 11207f18f151SRalf Baechle regs->regs[insn.i_format.rt] = value; 11211da177e4SLinus Torvalds break; 1122875d43e7SRalf Baechle #endif /* CONFIG_64BIT */ 11231da177e4SLinus Torvalds 11241da177e4SLinus Torvalds /* Cannot handle 64-bit instructions in 32-bit kernel */ 11251da177e4SLinus Torvalds goto sigill; 11261da177e4SLinus Torvalds 11271da177e4SLinus Torvalds case sh_op: 11281da177e4SLinus Torvalds if (!access_ok(VERIFY_WRITE, addr, 2)) 11291da177e4SLinus Torvalds goto sigbus; 11301da177e4SLinus Torvalds 113134c2f668SLeonid Yegoshin compute_return_epc(regs); 11321da177e4SLinus Torvalds value = regs->regs[insn.i_format.rt]; 11336eae3548SMarkos Chandras 11346eae3548SMarkos Chandras if (config_enabled(CONFIG_EVA)) { 11356eae3548SMarkos Chandras if (segment_eq(get_fs(), get_ds())) 113634c2f668SLeonid Yegoshin StoreHW(addr, value, res); 11376eae3548SMarkos Chandras else 11386eae3548SMarkos Chandras StoreHWE(addr, value, res); 11396eae3548SMarkos Chandras } else { 11406eae3548SMarkos Chandras StoreHW(addr, value, res); 11416eae3548SMarkos Chandras } 11426eae3548SMarkos Chandras 11431da177e4SLinus Torvalds if (res) 11441da177e4SLinus Torvalds goto fault; 11451da177e4SLinus Torvalds break; 11461da177e4SLinus Torvalds 11471da177e4SLinus Torvalds case sw_op: 11481da177e4SLinus Torvalds if (!access_ok(VERIFY_WRITE, addr, 4)) 11491da177e4SLinus Torvalds goto sigbus; 11501da177e4SLinus Torvalds 115134c2f668SLeonid Yegoshin compute_return_epc(regs); 11521da177e4SLinus Torvalds value = regs->regs[insn.i_format.rt]; 11536eae3548SMarkos Chandras 11546eae3548SMarkos Chandras if (config_enabled(CONFIG_EVA)) { 11556eae3548SMarkos Chandras if (segment_eq(get_fs(), get_ds())) 115634c2f668SLeonid Yegoshin StoreW(addr, value, res); 11576eae3548SMarkos Chandras else 11586eae3548SMarkos Chandras StoreWE(addr, value, res); 11596eae3548SMarkos Chandras } else { 11606eae3548SMarkos Chandras StoreW(addr, value, res); 11616eae3548SMarkos Chandras } 11626eae3548SMarkos Chandras 11631da177e4SLinus Torvalds if (res) 11641da177e4SLinus Torvalds goto fault; 11651da177e4SLinus Torvalds break; 11661da177e4SLinus Torvalds 11671da177e4SLinus Torvalds case sd_op: 1168875d43e7SRalf Baechle #ifdef CONFIG_64BIT 11691da177e4SLinus Torvalds /* 11701da177e4SLinus Torvalds * A 32-bit kernel might be running on a 64-bit processor. But 11711da177e4SLinus Torvalds * if we're on a 32-bit processor and an i-cache incoherency 11721da177e4SLinus Torvalds * or race makes us see a 64-bit instruction here the sdl/sdr 11731da177e4SLinus Torvalds * would blow up, so for now we don't handle unaligned 64-bit 11741da177e4SLinus Torvalds * instructions on 32-bit kernels. 11751da177e4SLinus Torvalds */ 11761da177e4SLinus Torvalds if (!access_ok(VERIFY_WRITE, addr, 8)) 11771da177e4SLinus Torvalds goto sigbus; 11781da177e4SLinus Torvalds 117934c2f668SLeonid Yegoshin compute_return_epc(regs); 11801da177e4SLinus Torvalds value = regs->regs[insn.i_format.rt]; 118134c2f668SLeonid Yegoshin StoreDW(addr, value, res); 11821da177e4SLinus Torvalds if (res) 11831da177e4SLinus Torvalds goto fault; 11841da177e4SLinus Torvalds break; 1185875d43e7SRalf Baechle #endif /* CONFIG_64BIT */ 11861da177e4SLinus Torvalds 11871da177e4SLinus Torvalds /* Cannot handle 64-bit instructions in 32-bit kernel */ 11881da177e4SLinus Torvalds goto sigill; 11891da177e4SLinus Torvalds 11901da177e4SLinus Torvalds case lwc1_op: 11911da177e4SLinus Torvalds case ldc1_op: 11921da177e4SLinus Torvalds case swc1_op: 11931da177e4SLinus Torvalds case sdc1_op: 1194*e70ac023SPaul Burton case cop1x_op: 1195102cedc3SLeonid Yegoshin die_if_kernel("Unaligned FP access in kernel code", regs); 1196102cedc3SLeonid Yegoshin BUG_ON(!used_math()); 1197102cedc3SLeonid Yegoshin 1198102cedc3SLeonid Yegoshin lose_fpu(1); /* Save FPU state for the emulator. */ 1199102cedc3SLeonid Yegoshin res = fpu_emulator_cop1Handler(regs, ¤t->thread.fpu, 1, 1200102cedc3SLeonid Yegoshin &fault_addr); 1201102cedc3SLeonid Yegoshin own_fpu(1); /* Restore FPU state. */ 1202102cedc3SLeonid Yegoshin 1203102cedc3SLeonid Yegoshin /* Signal if something went wrong. */ 1204304acb71SMaciej W. Rozycki process_fpemu_return(res, fault_addr, 0); 1205102cedc3SLeonid Yegoshin 1206102cedc3SLeonid Yegoshin if (res == 0) 1207102cedc3SLeonid Yegoshin break; 1208102cedc3SLeonid Yegoshin return; 12091da177e4SLinus Torvalds 1210e4aa1f15SLeonid Yegoshin case msa_op: 1211e4aa1f15SLeonid Yegoshin if (!cpu_has_msa) 1212e4aa1f15SLeonid Yegoshin goto sigill; 1213e4aa1f15SLeonid Yegoshin 1214e4aa1f15SLeonid Yegoshin /* 1215e4aa1f15SLeonid Yegoshin * If we've reached this point then userland should have taken 1216e4aa1f15SLeonid Yegoshin * the MSA disabled exception & initialised vector context at 1217e4aa1f15SLeonid Yegoshin * some point in the past. 1218e4aa1f15SLeonid Yegoshin */ 1219e4aa1f15SLeonid Yegoshin BUG_ON(!thread_msa_context_live()); 1220e4aa1f15SLeonid Yegoshin 1221e4aa1f15SLeonid Yegoshin df = insn.msa_mi10_format.df; 1222e4aa1f15SLeonid Yegoshin wd = insn.msa_mi10_format.wd; 1223e4aa1f15SLeonid Yegoshin fpr = ¤t->thread.fpu.fpr[wd]; 1224e4aa1f15SLeonid Yegoshin 1225e4aa1f15SLeonid Yegoshin switch (insn.msa_mi10_format.func) { 1226e4aa1f15SLeonid Yegoshin case msa_ld_op: 1227e4aa1f15SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, sizeof(*fpr))) 1228e4aa1f15SLeonid Yegoshin goto sigbus; 1229e4aa1f15SLeonid Yegoshin 1230fa8ff601SPaul Burton do { 1231e4aa1f15SLeonid Yegoshin /* 1232fa8ff601SPaul Burton * If we have live MSA context keep track of 1233fa8ff601SPaul Burton * whether we get preempted in order to avoid 1234fa8ff601SPaul Burton * the register context we load being clobbered 1235fa8ff601SPaul Burton * by the live context as it's saved during 1236fa8ff601SPaul Burton * preemption. If we don't have live context 1237fa8ff601SPaul Burton * then it can't be saved to clobber the value 1238fa8ff601SPaul Burton * we load. 1239e4aa1f15SLeonid Yegoshin */ 1240fa8ff601SPaul Burton preempted = test_thread_flag(TIF_USEDMSA); 1241e4aa1f15SLeonid Yegoshin 1242e4aa1f15SLeonid Yegoshin res = __copy_from_user_inatomic(fpr, addr, 1243e4aa1f15SLeonid Yegoshin sizeof(*fpr)); 1244e4aa1f15SLeonid Yegoshin if (res) 1245e4aa1f15SLeonid Yegoshin goto fault; 1246e4aa1f15SLeonid Yegoshin 1247e4aa1f15SLeonid Yegoshin /* 1248fa8ff601SPaul Burton * Update the hardware register if it is in use 1249fa8ff601SPaul Burton * by the task in this quantum, in order to 1250fa8ff601SPaul Burton * avoid having to save & restore the whole 1251fa8ff601SPaul Burton * vector context. 1252e4aa1f15SLeonid Yegoshin */ 1253fa8ff601SPaul Burton preempt_disable(); 1254fa8ff601SPaul Burton if (test_thread_flag(TIF_USEDMSA)) { 1255e4aa1f15SLeonid Yegoshin write_msa_wr(wd, fpr, df); 1256fa8ff601SPaul Burton preempted = 0; 1257fa8ff601SPaul Burton } 1258e4aa1f15SLeonid Yegoshin preempt_enable(); 1259fa8ff601SPaul Burton } while (preempted); 1260e4aa1f15SLeonid Yegoshin break; 1261e4aa1f15SLeonid Yegoshin 1262e4aa1f15SLeonid Yegoshin case msa_st_op: 1263e4aa1f15SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, sizeof(*fpr))) 1264e4aa1f15SLeonid Yegoshin goto sigbus; 1265e4aa1f15SLeonid Yegoshin 1266e4aa1f15SLeonid Yegoshin /* 1267e4aa1f15SLeonid Yegoshin * Update from the hardware register if it is in use by 1268e4aa1f15SLeonid Yegoshin * the task in this quantum, in order to avoid having to 1269e4aa1f15SLeonid Yegoshin * save & restore the whole vector context. 1270e4aa1f15SLeonid Yegoshin */ 1271e4aa1f15SLeonid Yegoshin preempt_disable(); 1272e4aa1f15SLeonid Yegoshin if (test_thread_flag(TIF_USEDMSA)) 1273e4aa1f15SLeonid Yegoshin read_msa_wr(wd, fpr, df); 1274e4aa1f15SLeonid Yegoshin preempt_enable(); 1275e4aa1f15SLeonid Yegoshin 1276e4aa1f15SLeonid Yegoshin res = __copy_to_user_inatomic(addr, fpr, sizeof(*fpr)); 1277e4aa1f15SLeonid Yegoshin if (res) 1278e4aa1f15SLeonid Yegoshin goto fault; 1279e4aa1f15SLeonid Yegoshin break; 1280e4aa1f15SLeonid Yegoshin 1281e4aa1f15SLeonid Yegoshin default: 1282e4aa1f15SLeonid Yegoshin goto sigbus; 1283e4aa1f15SLeonid Yegoshin } 1284e4aa1f15SLeonid Yegoshin 1285e4aa1f15SLeonid Yegoshin compute_return_epc(regs); 1286e4aa1f15SLeonid Yegoshin break; 1287e4aa1f15SLeonid Yegoshin 12880593a44cSLeonid Yegoshin #ifndef CONFIG_CPU_MIPSR6 12891da177e4SLinus Torvalds /* 129069f3a7deSRalf Baechle * COP2 is available to implementor for application specific use. 129169f3a7deSRalf Baechle * It's up to applications to register a notifier chain and do 129269f3a7deSRalf Baechle * whatever they have to do, including possible sending of signals. 12930593a44cSLeonid Yegoshin * 12940593a44cSLeonid Yegoshin * This instruction has been reallocated in Release 6 12951da177e4SLinus Torvalds */ 129669f3a7deSRalf Baechle case lwc2_op: 129769f3a7deSRalf Baechle cu2_notifier_call_chain(CU2_LWC2_OP, regs); 129869f3a7deSRalf Baechle break; 129969f3a7deSRalf Baechle 130069f3a7deSRalf Baechle case ldc2_op: 130169f3a7deSRalf Baechle cu2_notifier_call_chain(CU2_LDC2_OP, regs); 130269f3a7deSRalf Baechle break; 130369f3a7deSRalf Baechle 130469f3a7deSRalf Baechle case swc2_op: 130569f3a7deSRalf Baechle cu2_notifier_call_chain(CU2_SWC2_OP, regs); 130669f3a7deSRalf Baechle break; 130769f3a7deSRalf Baechle 130869f3a7deSRalf Baechle case sdc2_op: 130969f3a7deSRalf Baechle cu2_notifier_call_chain(CU2_SDC2_OP, regs); 131069f3a7deSRalf Baechle break; 13110593a44cSLeonid Yegoshin #endif 13121da177e4SLinus Torvalds default: 13131da177e4SLinus Torvalds /* 13141da177e4SLinus Torvalds * Pheeee... We encountered an yet unknown instruction or 13151da177e4SLinus Torvalds * cache coherence problem. Die sucker, die ... 13161da177e4SLinus Torvalds */ 13171da177e4SLinus Torvalds goto sigill; 13181da177e4SLinus Torvalds } 13191da177e4SLinus Torvalds 13206312e0eeSAtsushi Nemoto #ifdef CONFIG_DEBUG_FS 13211da177e4SLinus Torvalds unaligned_instructions++; 13221da177e4SLinus Torvalds #endif 13231da177e4SLinus Torvalds 13247f18f151SRalf Baechle return; 13251da177e4SLinus Torvalds 13261da177e4SLinus Torvalds fault: 132734c2f668SLeonid Yegoshin /* roll back jump/branch */ 132834c2f668SLeonid Yegoshin regs->cp0_epc = origpc; 132934c2f668SLeonid Yegoshin regs->regs[31] = orig31; 13301da177e4SLinus Torvalds /* Did we have an exception handler installed? */ 13311da177e4SLinus Torvalds if (fixup_exception(regs)) 13327f18f151SRalf Baechle return; 13331da177e4SLinus Torvalds 13341da177e4SLinus Torvalds die_if_kernel("Unhandled kernel unaligned access", regs); 1335a6d5ff04SDavid Daney force_sig(SIGSEGV, current); 13361da177e4SLinus Torvalds 13377f18f151SRalf Baechle return; 13381da177e4SLinus Torvalds 13391da177e4SLinus Torvalds sigbus: 13401da177e4SLinus Torvalds die_if_kernel("Unhandled kernel unaligned access", regs); 1341a6d5ff04SDavid Daney force_sig(SIGBUS, current); 13421da177e4SLinus Torvalds 13437f18f151SRalf Baechle return; 13441da177e4SLinus Torvalds 13451da177e4SLinus Torvalds sigill: 134634c2f668SLeonid Yegoshin die_if_kernel 134734c2f668SLeonid Yegoshin ("Unhandled kernel unaligned access or invalid instruction", regs); 134834c2f668SLeonid Yegoshin force_sig(SIGILL, current); 134934c2f668SLeonid Yegoshin } 135034c2f668SLeonid Yegoshin 135134c2f668SLeonid Yegoshin /* Recode table from 16-bit register notation to 32-bit GPR. */ 135234c2f668SLeonid Yegoshin const int reg16to32[] = { 16, 17, 2, 3, 4, 5, 6, 7 }; 135334c2f668SLeonid Yegoshin 135434c2f668SLeonid Yegoshin /* Recode table from 16-bit STORE register notation to 32-bit GPR. */ 135534c2f668SLeonid Yegoshin const int reg16to32st[] = { 0, 17, 2, 3, 4, 5, 6, 7 }; 135634c2f668SLeonid Yegoshin 135774338805SDavid Daney static void emulate_load_store_microMIPS(struct pt_regs *regs, 135874338805SDavid Daney void __user *addr) 135934c2f668SLeonid Yegoshin { 136034c2f668SLeonid Yegoshin unsigned long value; 136134c2f668SLeonid Yegoshin unsigned int res; 136234c2f668SLeonid Yegoshin int i; 136334c2f668SLeonid Yegoshin unsigned int reg = 0, rvar; 136434c2f668SLeonid Yegoshin unsigned long orig31; 136534c2f668SLeonid Yegoshin u16 __user *pc16; 136634c2f668SLeonid Yegoshin u16 halfword; 136734c2f668SLeonid Yegoshin unsigned int word; 136834c2f668SLeonid Yegoshin unsigned long origpc, contpc; 136934c2f668SLeonid Yegoshin union mips_instruction insn; 137034c2f668SLeonid Yegoshin struct mm_decoded_insn mminsn; 137134c2f668SLeonid Yegoshin void __user *fault_addr = NULL; 137234c2f668SLeonid Yegoshin 137334c2f668SLeonid Yegoshin origpc = regs->cp0_epc; 137434c2f668SLeonid Yegoshin orig31 = regs->regs[31]; 137534c2f668SLeonid Yegoshin 137634c2f668SLeonid Yegoshin mminsn.micro_mips_mode = 1; 137734c2f668SLeonid Yegoshin 137834c2f668SLeonid Yegoshin /* 137934c2f668SLeonid Yegoshin * This load never faults. 138034c2f668SLeonid Yegoshin */ 138134c2f668SLeonid Yegoshin pc16 = (unsigned short __user *)msk_isa16_mode(regs->cp0_epc); 138234c2f668SLeonid Yegoshin __get_user(halfword, pc16); 138334c2f668SLeonid Yegoshin pc16++; 138434c2f668SLeonid Yegoshin contpc = regs->cp0_epc + 2; 138534c2f668SLeonid Yegoshin word = ((unsigned int)halfword << 16); 138634c2f668SLeonid Yegoshin mminsn.pc_inc = 2; 138734c2f668SLeonid Yegoshin 138834c2f668SLeonid Yegoshin if (!mm_insn_16bit(halfword)) { 138934c2f668SLeonid Yegoshin __get_user(halfword, pc16); 139034c2f668SLeonid Yegoshin pc16++; 139134c2f668SLeonid Yegoshin contpc = regs->cp0_epc + 4; 139234c2f668SLeonid Yegoshin mminsn.pc_inc = 4; 139334c2f668SLeonid Yegoshin word |= halfword; 139434c2f668SLeonid Yegoshin } 139534c2f668SLeonid Yegoshin mminsn.insn = word; 139634c2f668SLeonid Yegoshin 139734c2f668SLeonid Yegoshin if (get_user(halfword, pc16)) 139834c2f668SLeonid Yegoshin goto fault; 139934c2f668SLeonid Yegoshin mminsn.next_pc_inc = 2; 140034c2f668SLeonid Yegoshin word = ((unsigned int)halfword << 16); 140134c2f668SLeonid Yegoshin 140234c2f668SLeonid Yegoshin if (!mm_insn_16bit(halfword)) { 140334c2f668SLeonid Yegoshin pc16++; 140434c2f668SLeonid Yegoshin if (get_user(halfword, pc16)) 140534c2f668SLeonid Yegoshin goto fault; 140634c2f668SLeonid Yegoshin mminsn.next_pc_inc = 4; 140734c2f668SLeonid Yegoshin word |= halfword; 140834c2f668SLeonid Yegoshin } 140934c2f668SLeonid Yegoshin mminsn.next_insn = word; 141034c2f668SLeonid Yegoshin 141134c2f668SLeonid Yegoshin insn = (union mips_instruction)(mminsn.insn); 141234c2f668SLeonid Yegoshin if (mm_isBranchInstr(regs, mminsn, &contpc)) 141334c2f668SLeonid Yegoshin insn = (union mips_instruction)(mminsn.next_insn); 141434c2f668SLeonid Yegoshin 141534c2f668SLeonid Yegoshin /* Parse instruction to find what to do */ 141634c2f668SLeonid Yegoshin 141734c2f668SLeonid Yegoshin switch (insn.mm_i_format.opcode) { 141834c2f668SLeonid Yegoshin 141934c2f668SLeonid Yegoshin case mm_pool32a_op: 142034c2f668SLeonid Yegoshin switch (insn.mm_x_format.func) { 142134c2f668SLeonid Yegoshin case mm_lwxs_op: 142234c2f668SLeonid Yegoshin reg = insn.mm_x_format.rd; 142334c2f668SLeonid Yegoshin goto loadW; 142434c2f668SLeonid Yegoshin } 142534c2f668SLeonid Yegoshin 142634c2f668SLeonid Yegoshin goto sigbus; 142734c2f668SLeonid Yegoshin 142834c2f668SLeonid Yegoshin case mm_pool32b_op: 142934c2f668SLeonid Yegoshin switch (insn.mm_m_format.func) { 143034c2f668SLeonid Yegoshin case mm_lwp_func: 143134c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 143234c2f668SLeonid Yegoshin if (reg == 31) 143334c2f668SLeonid Yegoshin goto sigbus; 143434c2f668SLeonid Yegoshin 143534c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 8)) 143634c2f668SLeonid Yegoshin goto sigbus; 143734c2f668SLeonid Yegoshin 143834c2f668SLeonid Yegoshin LoadW(addr, value, res); 143934c2f668SLeonid Yegoshin if (res) 144034c2f668SLeonid Yegoshin goto fault; 144134c2f668SLeonid Yegoshin regs->regs[reg] = value; 144234c2f668SLeonid Yegoshin addr += 4; 144334c2f668SLeonid Yegoshin LoadW(addr, value, res); 144434c2f668SLeonid Yegoshin if (res) 144534c2f668SLeonid Yegoshin goto fault; 144634c2f668SLeonid Yegoshin regs->regs[reg + 1] = value; 144734c2f668SLeonid Yegoshin goto success; 144834c2f668SLeonid Yegoshin 144934c2f668SLeonid Yegoshin case mm_swp_func: 145034c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 145134c2f668SLeonid Yegoshin if (reg == 31) 145234c2f668SLeonid Yegoshin goto sigbus; 145334c2f668SLeonid Yegoshin 145434c2f668SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 8)) 145534c2f668SLeonid Yegoshin goto sigbus; 145634c2f668SLeonid Yegoshin 145734c2f668SLeonid Yegoshin value = regs->regs[reg]; 145834c2f668SLeonid Yegoshin StoreW(addr, value, res); 145934c2f668SLeonid Yegoshin if (res) 146034c2f668SLeonid Yegoshin goto fault; 146134c2f668SLeonid Yegoshin addr += 4; 146234c2f668SLeonid Yegoshin value = regs->regs[reg + 1]; 146334c2f668SLeonid Yegoshin StoreW(addr, value, res); 146434c2f668SLeonid Yegoshin if (res) 146534c2f668SLeonid Yegoshin goto fault; 146634c2f668SLeonid Yegoshin goto success; 146734c2f668SLeonid Yegoshin 146834c2f668SLeonid Yegoshin case mm_ldp_func: 146934c2f668SLeonid Yegoshin #ifdef CONFIG_64BIT 147034c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 147134c2f668SLeonid Yegoshin if (reg == 31) 147234c2f668SLeonid Yegoshin goto sigbus; 147334c2f668SLeonid Yegoshin 147434c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 16)) 147534c2f668SLeonid Yegoshin goto sigbus; 147634c2f668SLeonid Yegoshin 147734c2f668SLeonid Yegoshin LoadDW(addr, value, res); 147834c2f668SLeonid Yegoshin if (res) 147934c2f668SLeonid Yegoshin goto fault; 148034c2f668SLeonid Yegoshin regs->regs[reg] = value; 148134c2f668SLeonid Yegoshin addr += 8; 148234c2f668SLeonid Yegoshin LoadDW(addr, value, res); 148334c2f668SLeonid Yegoshin if (res) 148434c2f668SLeonid Yegoshin goto fault; 148534c2f668SLeonid Yegoshin regs->regs[reg + 1] = value; 148634c2f668SLeonid Yegoshin goto success; 148734c2f668SLeonid Yegoshin #endif /* CONFIG_64BIT */ 148834c2f668SLeonid Yegoshin 148934c2f668SLeonid Yegoshin goto sigill; 149034c2f668SLeonid Yegoshin 149134c2f668SLeonid Yegoshin case mm_sdp_func: 149234c2f668SLeonid Yegoshin #ifdef CONFIG_64BIT 149334c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 149434c2f668SLeonid Yegoshin if (reg == 31) 149534c2f668SLeonid Yegoshin goto sigbus; 149634c2f668SLeonid Yegoshin 149734c2f668SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 16)) 149834c2f668SLeonid Yegoshin goto sigbus; 149934c2f668SLeonid Yegoshin 150034c2f668SLeonid Yegoshin value = regs->regs[reg]; 150134c2f668SLeonid Yegoshin StoreDW(addr, value, res); 150234c2f668SLeonid Yegoshin if (res) 150334c2f668SLeonid Yegoshin goto fault; 150434c2f668SLeonid Yegoshin addr += 8; 150534c2f668SLeonid Yegoshin value = regs->regs[reg + 1]; 150634c2f668SLeonid Yegoshin StoreDW(addr, value, res); 150734c2f668SLeonid Yegoshin if (res) 150834c2f668SLeonid Yegoshin goto fault; 150934c2f668SLeonid Yegoshin goto success; 151034c2f668SLeonid Yegoshin #endif /* CONFIG_64BIT */ 151134c2f668SLeonid Yegoshin 151234c2f668SLeonid Yegoshin goto sigill; 151334c2f668SLeonid Yegoshin 151434c2f668SLeonid Yegoshin case mm_lwm32_func: 151534c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 151634c2f668SLeonid Yegoshin rvar = reg & 0xf; 151734c2f668SLeonid Yegoshin if ((rvar > 9) || !reg) 151834c2f668SLeonid Yegoshin goto sigill; 151934c2f668SLeonid Yegoshin if (reg & 0x10) { 152034c2f668SLeonid Yegoshin if (!access_ok 152134c2f668SLeonid Yegoshin (VERIFY_READ, addr, 4 * (rvar + 1))) 152234c2f668SLeonid Yegoshin goto sigbus; 152334c2f668SLeonid Yegoshin } else { 152434c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 4 * rvar)) 152534c2f668SLeonid Yegoshin goto sigbus; 152634c2f668SLeonid Yegoshin } 152734c2f668SLeonid Yegoshin if (rvar == 9) 152834c2f668SLeonid Yegoshin rvar = 8; 152934c2f668SLeonid Yegoshin for (i = 16; rvar; rvar--, i++) { 153034c2f668SLeonid Yegoshin LoadW(addr, value, res); 153134c2f668SLeonid Yegoshin if (res) 153234c2f668SLeonid Yegoshin goto fault; 153334c2f668SLeonid Yegoshin addr += 4; 153434c2f668SLeonid Yegoshin regs->regs[i] = value; 153534c2f668SLeonid Yegoshin } 153634c2f668SLeonid Yegoshin if ((reg & 0xf) == 9) { 153734c2f668SLeonid Yegoshin LoadW(addr, value, res); 153834c2f668SLeonid Yegoshin if (res) 153934c2f668SLeonid Yegoshin goto fault; 154034c2f668SLeonid Yegoshin addr += 4; 154134c2f668SLeonid Yegoshin regs->regs[30] = value; 154234c2f668SLeonid Yegoshin } 154334c2f668SLeonid Yegoshin if (reg & 0x10) { 154434c2f668SLeonid Yegoshin LoadW(addr, value, res); 154534c2f668SLeonid Yegoshin if (res) 154634c2f668SLeonid Yegoshin goto fault; 154734c2f668SLeonid Yegoshin regs->regs[31] = value; 154834c2f668SLeonid Yegoshin } 154934c2f668SLeonid Yegoshin goto success; 155034c2f668SLeonid Yegoshin 155134c2f668SLeonid Yegoshin case mm_swm32_func: 155234c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 155334c2f668SLeonid Yegoshin rvar = reg & 0xf; 155434c2f668SLeonid Yegoshin if ((rvar > 9) || !reg) 155534c2f668SLeonid Yegoshin goto sigill; 155634c2f668SLeonid Yegoshin if (reg & 0x10) { 155734c2f668SLeonid Yegoshin if (!access_ok 155834c2f668SLeonid Yegoshin (VERIFY_WRITE, addr, 4 * (rvar + 1))) 155934c2f668SLeonid Yegoshin goto sigbus; 156034c2f668SLeonid Yegoshin } else { 156134c2f668SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 4 * rvar)) 156234c2f668SLeonid Yegoshin goto sigbus; 156334c2f668SLeonid Yegoshin } 156434c2f668SLeonid Yegoshin if (rvar == 9) 156534c2f668SLeonid Yegoshin rvar = 8; 156634c2f668SLeonid Yegoshin for (i = 16; rvar; rvar--, i++) { 156734c2f668SLeonid Yegoshin value = regs->regs[i]; 156834c2f668SLeonid Yegoshin StoreW(addr, value, res); 156934c2f668SLeonid Yegoshin if (res) 157034c2f668SLeonid Yegoshin goto fault; 157134c2f668SLeonid Yegoshin addr += 4; 157234c2f668SLeonid Yegoshin } 157334c2f668SLeonid Yegoshin if ((reg & 0xf) == 9) { 157434c2f668SLeonid Yegoshin value = regs->regs[30]; 157534c2f668SLeonid Yegoshin StoreW(addr, value, res); 157634c2f668SLeonid Yegoshin if (res) 157734c2f668SLeonid Yegoshin goto fault; 157834c2f668SLeonid Yegoshin addr += 4; 157934c2f668SLeonid Yegoshin } 158034c2f668SLeonid Yegoshin if (reg & 0x10) { 158134c2f668SLeonid Yegoshin value = regs->regs[31]; 158234c2f668SLeonid Yegoshin StoreW(addr, value, res); 158334c2f668SLeonid Yegoshin if (res) 158434c2f668SLeonid Yegoshin goto fault; 158534c2f668SLeonid Yegoshin } 158634c2f668SLeonid Yegoshin goto success; 158734c2f668SLeonid Yegoshin 158834c2f668SLeonid Yegoshin case mm_ldm_func: 158934c2f668SLeonid Yegoshin #ifdef CONFIG_64BIT 159034c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 159134c2f668SLeonid Yegoshin rvar = reg & 0xf; 159234c2f668SLeonid Yegoshin if ((rvar > 9) || !reg) 159334c2f668SLeonid Yegoshin goto sigill; 159434c2f668SLeonid Yegoshin if (reg & 0x10) { 159534c2f668SLeonid Yegoshin if (!access_ok 159634c2f668SLeonid Yegoshin (VERIFY_READ, addr, 8 * (rvar + 1))) 159734c2f668SLeonid Yegoshin goto sigbus; 159834c2f668SLeonid Yegoshin } else { 159934c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 8 * rvar)) 160034c2f668SLeonid Yegoshin goto sigbus; 160134c2f668SLeonid Yegoshin } 160234c2f668SLeonid Yegoshin if (rvar == 9) 160334c2f668SLeonid Yegoshin rvar = 8; 160434c2f668SLeonid Yegoshin 160534c2f668SLeonid Yegoshin for (i = 16; rvar; rvar--, i++) { 160634c2f668SLeonid Yegoshin LoadDW(addr, value, res); 160734c2f668SLeonid Yegoshin if (res) 160834c2f668SLeonid Yegoshin goto fault; 160934c2f668SLeonid Yegoshin addr += 4; 161034c2f668SLeonid Yegoshin regs->regs[i] = value; 161134c2f668SLeonid Yegoshin } 161234c2f668SLeonid Yegoshin if ((reg & 0xf) == 9) { 161334c2f668SLeonid Yegoshin LoadDW(addr, value, res); 161434c2f668SLeonid Yegoshin if (res) 161534c2f668SLeonid Yegoshin goto fault; 161634c2f668SLeonid Yegoshin addr += 8; 161734c2f668SLeonid Yegoshin regs->regs[30] = value; 161834c2f668SLeonid Yegoshin } 161934c2f668SLeonid Yegoshin if (reg & 0x10) { 162034c2f668SLeonid Yegoshin LoadDW(addr, value, res); 162134c2f668SLeonid Yegoshin if (res) 162234c2f668SLeonid Yegoshin goto fault; 162334c2f668SLeonid Yegoshin regs->regs[31] = value; 162434c2f668SLeonid Yegoshin } 162534c2f668SLeonid Yegoshin goto success; 162634c2f668SLeonid Yegoshin #endif /* CONFIG_64BIT */ 162734c2f668SLeonid Yegoshin 162834c2f668SLeonid Yegoshin goto sigill; 162934c2f668SLeonid Yegoshin 163034c2f668SLeonid Yegoshin case mm_sdm_func: 163134c2f668SLeonid Yegoshin #ifdef CONFIG_64BIT 163234c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 163334c2f668SLeonid Yegoshin rvar = reg & 0xf; 163434c2f668SLeonid Yegoshin if ((rvar > 9) || !reg) 163534c2f668SLeonid Yegoshin goto sigill; 163634c2f668SLeonid Yegoshin if (reg & 0x10) { 163734c2f668SLeonid Yegoshin if (!access_ok 163834c2f668SLeonid Yegoshin (VERIFY_WRITE, addr, 8 * (rvar + 1))) 163934c2f668SLeonid Yegoshin goto sigbus; 164034c2f668SLeonid Yegoshin } else { 164134c2f668SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 8 * rvar)) 164234c2f668SLeonid Yegoshin goto sigbus; 164334c2f668SLeonid Yegoshin } 164434c2f668SLeonid Yegoshin if (rvar == 9) 164534c2f668SLeonid Yegoshin rvar = 8; 164634c2f668SLeonid Yegoshin 164734c2f668SLeonid Yegoshin for (i = 16; rvar; rvar--, i++) { 164834c2f668SLeonid Yegoshin value = regs->regs[i]; 164934c2f668SLeonid Yegoshin StoreDW(addr, value, res); 165034c2f668SLeonid Yegoshin if (res) 165134c2f668SLeonid Yegoshin goto fault; 165234c2f668SLeonid Yegoshin addr += 8; 165334c2f668SLeonid Yegoshin } 165434c2f668SLeonid Yegoshin if ((reg & 0xf) == 9) { 165534c2f668SLeonid Yegoshin value = regs->regs[30]; 165634c2f668SLeonid Yegoshin StoreDW(addr, value, res); 165734c2f668SLeonid Yegoshin if (res) 165834c2f668SLeonid Yegoshin goto fault; 165934c2f668SLeonid Yegoshin addr += 8; 166034c2f668SLeonid Yegoshin } 166134c2f668SLeonid Yegoshin if (reg & 0x10) { 166234c2f668SLeonid Yegoshin value = regs->regs[31]; 166334c2f668SLeonid Yegoshin StoreDW(addr, value, res); 166434c2f668SLeonid Yegoshin if (res) 166534c2f668SLeonid Yegoshin goto fault; 166634c2f668SLeonid Yegoshin } 166734c2f668SLeonid Yegoshin goto success; 166834c2f668SLeonid Yegoshin #endif /* CONFIG_64BIT */ 166934c2f668SLeonid Yegoshin 167034c2f668SLeonid Yegoshin goto sigill; 167134c2f668SLeonid Yegoshin 167234c2f668SLeonid Yegoshin /* LWC2, SWC2, LDC2, SDC2 are not serviced */ 167334c2f668SLeonid Yegoshin } 167434c2f668SLeonid Yegoshin 167534c2f668SLeonid Yegoshin goto sigbus; 167634c2f668SLeonid Yegoshin 167734c2f668SLeonid Yegoshin case mm_pool32c_op: 167834c2f668SLeonid Yegoshin switch (insn.mm_m_format.func) { 167934c2f668SLeonid Yegoshin case mm_lwu_func: 168034c2f668SLeonid Yegoshin reg = insn.mm_m_format.rd; 168134c2f668SLeonid Yegoshin goto loadWU; 168234c2f668SLeonid Yegoshin } 168334c2f668SLeonid Yegoshin 168434c2f668SLeonid Yegoshin /* LL,SC,LLD,SCD are not serviced */ 168534c2f668SLeonid Yegoshin goto sigbus; 168634c2f668SLeonid Yegoshin 168734c2f668SLeonid Yegoshin case mm_pool32f_op: 168834c2f668SLeonid Yegoshin switch (insn.mm_x_format.func) { 168934c2f668SLeonid Yegoshin case mm_lwxc1_func: 169034c2f668SLeonid Yegoshin case mm_swxc1_func: 169134c2f668SLeonid Yegoshin case mm_ldxc1_func: 169234c2f668SLeonid Yegoshin case mm_sdxc1_func: 169334c2f668SLeonid Yegoshin goto fpu_emul; 169434c2f668SLeonid Yegoshin } 169534c2f668SLeonid Yegoshin 169634c2f668SLeonid Yegoshin goto sigbus; 169734c2f668SLeonid Yegoshin 169834c2f668SLeonid Yegoshin case mm_ldc132_op: 169934c2f668SLeonid Yegoshin case mm_sdc132_op: 170034c2f668SLeonid Yegoshin case mm_lwc132_op: 170134c2f668SLeonid Yegoshin case mm_swc132_op: 170234c2f668SLeonid Yegoshin fpu_emul: 170334c2f668SLeonid Yegoshin /* roll back jump/branch */ 170434c2f668SLeonid Yegoshin regs->cp0_epc = origpc; 170534c2f668SLeonid Yegoshin regs->regs[31] = orig31; 170634c2f668SLeonid Yegoshin 170734c2f668SLeonid Yegoshin die_if_kernel("Unaligned FP access in kernel code", regs); 170834c2f668SLeonid Yegoshin BUG_ON(!used_math()); 170934c2f668SLeonid Yegoshin BUG_ON(!is_fpu_owner()); 171034c2f668SLeonid Yegoshin 171134c2f668SLeonid Yegoshin lose_fpu(1); /* save the FPU state for the emulator */ 171234c2f668SLeonid Yegoshin res = fpu_emulator_cop1Handler(regs, ¤t->thread.fpu, 1, 171334c2f668SLeonid Yegoshin &fault_addr); 171434c2f668SLeonid Yegoshin own_fpu(1); /* restore FPU state */ 171534c2f668SLeonid Yegoshin 171634c2f668SLeonid Yegoshin /* If something went wrong, signal */ 1717304acb71SMaciej W. Rozycki process_fpemu_return(res, fault_addr, 0); 171834c2f668SLeonid Yegoshin 171934c2f668SLeonid Yegoshin if (res == 0) 172034c2f668SLeonid Yegoshin goto success; 172134c2f668SLeonid Yegoshin return; 172234c2f668SLeonid Yegoshin 172334c2f668SLeonid Yegoshin case mm_lh32_op: 172434c2f668SLeonid Yegoshin reg = insn.mm_i_format.rt; 172534c2f668SLeonid Yegoshin goto loadHW; 172634c2f668SLeonid Yegoshin 172734c2f668SLeonid Yegoshin case mm_lhu32_op: 172834c2f668SLeonid Yegoshin reg = insn.mm_i_format.rt; 172934c2f668SLeonid Yegoshin goto loadHWU; 173034c2f668SLeonid Yegoshin 173134c2f668SLeonid Yegoshin case mm_lw32_op: 173234c2f668SLeonid Yegoshin reg = insn.mm_i_format.rt; 173334c2f668SLeonid Yegoshin goto loadW; 173434c2f668SLeonid Yegoshin 173534c2f668SLeonid Yegoshin case mm_sh32_op: 173634c2f668SLeonid Yegoshin reg = insn.mm_i_format.rt; 173734c2f668SLeonid Yegoshin goto storeHW; 173834c2f668SLeonid Yegoshin 173934c2f668SLeonid Yegoshin case mm_sw32_op: 174034c2f668SLeonid Yegoshin reg = insn.mm_i_format.rt; 174134c2f668SLeonid Yegoshin goto storeW; 174234c2f668SLeonid Yegoshin 174334c2f668SLeonid Yegoshin case mm_ld32_op: 174434c2f668SLeonid Yegoshin reg = insn.mm_i_format.rt; 174534c2f668SLeonid Yegoshin goto loadDW; 174634c2f668SLeonid Yegoshin 174734c2f668SLeonid Yegoshin case mm_sd32_op: 174834c2f668SLeonid Yegoshin reg = insn.mm_i_format.rt; 174934c2f668SLeonid Yegoshin goto storeDW; 175034c2f668SLeonid Yegoshin 175134c2f668SLeonid Yegoshin case mm_pool16c_op: 175234c2f668SLeonid Yegoshin switch (insn.mm16_m_format.func) { 175334c2f668SLeonid Yegoshin case mm_lwm16_op: 175434c2f668SLeonid Yegoshin reg = insn.mm16_m_format.rlist; 175534c2f668SLeonid Yegoshin rvar = reg + 1; 175634c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 4 * rvar)) 175734c2f668SLeonid Yegoshin goto sigbus; 175834c2f668SLeonid Yegoshin 175934c2f668SLeonid Yegoshin for (i = 16; rvar; rvar--, i++) { 176034c2f668SLeonid Yegoshin LoadW(addr, value, res); 176134c2f668SLeonid Yegoshin if (res) 176234c2f668SLeonid Yegoshin goto fault; 176334c2f668SLeonid Yegoshin addr += 4; 176434c2f668SLeonid Yegoshin regs->regs[i] = value; 176534c2f668SLeonid Yegoshin } 176634c2f668SLeonid Yegoshin LoadW(addr, value, res); 176734c2f668SLeonid Yegoshin if (res) 176834c2f668SLeonid Yegoshin goto fault; 176934c2f668SLeonid Yegoshin regs->regs[31] = value; 177034c2f668SLeonid Yegoshin 177134c2f668SLeonid Yegoshin goto success; 177234c2f668SLeonid Yegoshin 177334c2f668SLeonid Yegoshin case mm_swm16_op: 177434c2f668SLeonid Yegoshin reg = insn.mm16_m_format.rlist; 177534c2f668SLeonid Yegoshin rvar = reg + 1; 177634c2f668SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 4 * rvar)) 177734c2f668SLeonid Yegoshin goto sigbus; 177834c2f668SLeonid Yegoshin 177934c2f668SLeonid Yegoshin for (i = 16; rvar; rvar--, i++) { 178034c2f668SLeonid Yegoshin value = regs->regs[i]; 178134c2f668SLeonid Yegoshin StoreW(addr, value, res); 178234c2f668SLeonid Yegoshin if (res) 178334c2f668SLeonid Yegoshin goto fault; 178434c2f668SLeonid Yegoshin addr += 4; 178534c2f668SLeonid Yegoshin } 178634c2f668SLeonid Yegoshin value = regs->regs[31]; 178734c2f668SLeonid Yegoshin StoreW(addr, value, res); 178834c2f668SLeonid Yegoshin if (res) 178934c2f668SLeonid Yegoshin goto fault; 179034c2f668SLeonid Yegoshin 179134c2f668SLeonid Yegoshin goto success; 179234c2f668SLeonid Yegoshin 179334c2f668SLeonid Yegoshin } 179434c2f668SLeonid Yegoshin 179534c2f668SLeonid Yegoshin goto sigbus; 179634c2f668SLeonid Yegoshin 179734c2f668SLeonid Yegoshin case mm_lhu16_op: 179834c2f668SLeonid Yegoshin reg = reg16to32[insn.mm16_rb_format.rt]; 179934c2f668SLeonid Yegoshin goto loadHWU; 180034c2f668SLeonid Yegoshin 180134c2f668SLeonid Yegoshin case mm_lw16_op: 180234c2f668SLeonid Yegoshin reg = reg16to32[insn.mm16_rb_format.rt]; 180334c2f668SLeonid Yegoshin goto loadW; 180434c2f668SLeonid Yegoshin 180534c2f668SLeonid Yegoshin case mm_sh16_op: 180634c2f668SLeonid Yegoshin reg = reg16to32st[insn.mm16_rb_format.rt]; 180734c2f668SLeonid Yegoshin goto storeHW; 180834c2f668SLeonid Yegoshin 180934c2f668SLeonid Yegoshin case mm_sw16_op: 181034c2f668SLeonid Yegoshin reg = reg16to32st[insn.mm16_rb_format.rt]; 181134c2f668SLeonid Yegoshin goto storeW; 181234c2f668SLeonid Yegoshin 181334c2f668SLeonid Yegoshin case mm_lwsp16_op: 181434c2f668SLeonid Yegoshin reg = insn.mm16_r5_format.rt; 181534c2f668SLeonid Yegoshin goto loadW; 181634c2f668SLeonid Yegoshin 181734c2f668SLeonid Yegoshin case mm_swsp16_op: 181834c2f668SLeonid Yegoshin reg = insn.mm16_r5_format.rt; 181934c2f668SLeonid Yegoshin goto storeW; 182034c2f668SLeonid Yegoshin 182134c2f668SLeonid Yegoshin case mm_lwgp16_op: 182234c2f668SLeonid Yegoshin reg = reg16to32[insn.mm16_r3_format.rt]; 182334c2f668SLeonid Yegoshin goto loadW; 182434c2f668SLeonid Yegoshin 182534c2f668SLeonid Yegoshin default: 182634c2f668SLeonid Yegoshin goto sigill; 182734c2f668SLeonid Yegoshin } 182834c2f668SLeonid Yegoshin 182934c2f668SLeonid Yegoshin loadHW: 183034c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 2)) 183134c2f668SLeonid Yegoshin goto sigbus; 183234c2f668SLeonid Yegoshin 183334c2f668SLeonid Yegoshin LoadHW(addr, value, res); 183434c2f668SLeonid Yegoshin if (res) 183534c2f668SLeonid Yegoshin goto fault; 183634c2f668SLeonid Yegoshin regs->regs[reg] = value; 183734c2f668SLeonid Yegoshin goto success; 183834c2f668SLeonid Yegoshin 183934c2f668SLeonid Yegoshin loadHWU: 184034c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 2)) 184134c2f668SLeonid Yegoshin goto sigbus; 184234c2f668SLeonid Yegoshin 184334c2f668SLeonid Yegoshin LoadHWU(addr, value, res); 184434c2f668SLeonid Yegoshin if (res) 184534c2f668SLeonid Yegoshin goto fault; 184634c2f668SLeonid Yegoshin regs->regs[reg] = value; 184734c2f668SLeonid Yegoshin goto success; 184834c2f668SLeonid Yegoshin 184934c2f668SLeonid Yegoshin loadW: 185034c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 4)) 185134c2f668SLeonid Yegoshin goto sigbus; 185234c2f668SLeonid Yegoshin 185334c2f668SLeonid Yegoshin LoadW(addr, value, res); 185434c2f668SLeonid Yegoshin if (res) 185534c2f668SLeonid Yegoshin goto fault; 185634c2f668SLeonid Yegoshin regs->regs[reg] = value; 185734c2f668SLeonid Yegoshin goto success; 185834c2f668SLeonid Yegoshin 185934c2f668SLeonid Yegoshin loadWU: 186034c2f668SLeonid Yegoshin #ifdef CONFIG_64BIT 186134c2f668SLeonid Yegoshin /* 186234c2f668SLeonid Yegoshin * A 32-bit kernel might be running on a 64-bit processor. But 186334c2f668SLeonid Yegoshin * if we're on a 32-bit processor and an i-cache incoherency 186434c2f668SLeonid Yegoshin * or race makes us see a 64-bit instruction here the sdl/sdr 186534c2f668SLeonid Yegoshin * would blow up, so for now we don't handle unaligned 64-bit 186634c2f668SLeonid Yegoshin * instructions on 32-bit kernels. 186734c2f668SLeonid Yegoshin */ 186834c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 4)) 186934c2f668SLeonid Yegoshin goto sigbus; 187034c2f668SLeonid Yegoshin 187134c2f668SLeonid Yegoshin LoadWU(addr, value, res); 187234c2f668SLeonid Yegoshin if (res) 187334c2f668SLeonid Yegoshin goto fault; 187434c2f668SLeonid Yegoshin regs->regs[reg] = value; 187534c2f668SLeonid Yegoshin goto success; 187634c2f668SLeonid Yegoshin #endif /* CONFIG_64BIT */ 187734c2f668SLeonid Yegoshin 187834c2f668SLeonid Yegoshin /* Cannot handle 64-bit instructions in 32-bit kernel */ 187934c2f668SLeonid Yegoshin goto sigill; 188034c2f668SLeonid Yegoshin 188134c2f668SLeonid Yegoshin loadDW: 188234c2f668SLeonid Yegoshin #ifdef CONFIG_64BIT 188334c2f668SLeonid Yegoshin /* 188434c2f668SLeonid Yegoshin * A 32-bit kernel might be running on a 64-bit processor. But 188534c2f668SLeonid Yegoshin * if we're on a 32-bit processor and an i-cache incoherency 188634c2f668SLeonid Yegoshin * or race makes us see a 64-bit instruction here the sdl/sdr 188734c2f668SLeonid Yegoshin * would blow up, so for now we don't handle unaligned 64-bit 188834c2f668SLeonid Yegoshin * instructions on 32-bit kernels. 188934c2f668SLeonid Yegoshin */ 189034c2f668SLeonid Yegoshin if (!access_ok(VERIFY_READ, addr, 8)) 189134c2f668SLeonid Yegoshin goto sigbus; 189234c2f668SLeonid Yegoshin 189334c2f668SLeonid Yegoshin LoadDW(addr, value, res); 189434c2f668SLeonid Yegoshin if (res) 189534c2f668SLeonid Yegoshin goto fault; 189634c2f668SLeonid Yegoshin regs->regs[reg] = value; 189734c2f668SLeonid Yegoshin goto success; 189834c2f668SLeonid Yegoshin #endif /* CONFIG_64BIT */ 189934c2f668SLeonid Yegoshin 190034c2f668SLeonid Yegoshin /* Cannot handle 64-bit instructions in 32-bit kernel */ 190134c2f668SLeonid Yegoshin goto sigill; 190234c2f668SLeonid Yegoshin 190334c2f668SLeonid Yegoshin storeHW: 190434c2f668SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 2)) 190534c2f668SLeonid Yegoshin goto sigbus; 190634c2f668SLeonid Yegoshin 190734c2f668SLeonid Yegoshin value = regs->regs[reg]; 190834c2f668SLeonid Yegoshin StoreHW(addr, value, res); 190934c2f668SLeonid Yegoshin if (res) 191034c2f668SLeonid Yegoshin goto fault; 191134c2f668SLeonid Yegoshin goto success; 191234c2f668SLeonid Yegoshin 191334c2f668SLeonid Yegoshin storeW: 191434c2f668SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 4)) 191534c2f668SLeonid Yegoshin goto sigbus; 191634c2f668SLeonid Yegoshin 191734c2f668SLeonid Yegoshin value = regs->regs[reg]; 191834c2f668SLeonid Yegoshin StoreW(addr, value, res); 191934c2f668SLeonid Yegoshin if (res) 192034c2f668SLeonid Yegoshin goto fault; 192134c2f668SLeonid Yegoshin goto success; 192234c2f668SLeonid Yegoshin 192334c2f668SLeonid Yegoshin storeDW: 192434c2f668SLeonid Yegoshin #ifdef CONFIG_64BIT 192534c2f668SLeonid Yegoshin /* 192634c2f668SLeonid Yegoshin * A 32-bit kernel might be running on a 64-bit processor. But 192734c2f668SLeonid Yegoshin * if we're on a 32-bit processor and an i-cache incoherency 192834c2f668SLeonid Yegoshin * or race makes us see a 64-bit instruction here the sdl/sdr 192934c2f668SLeonid Yegoshin * would blow up, so for now we don't handle unaligned 64-bit 193034c2f668SLeonid Yegoshin * instructions on 32-bit kernels. 193134c2f668SLeonid Yegoshin */ 193234c2f668SLeonid Yegoshin if (!access_ok(VERIFY_WRITE, addr, 8)) 193334c2f668SLeonid Yegoshin goto sigbus; 193434c2f668SLeonid Yegoshin 193534c2f668SLeonid Yegoshin value = regs->regs[reg]; 193634c2f668SLeonid Yegoshin StoreDW(addr, value, res); 193734c2f668SLeonid Yegoshin if (res) 193834c2f668SLeonid Yegoshin goto fault; 193934c2f668SLeonid Yegoshin goto success; 194034c2f668SLeonid Yegoshin #endif /* CONFIG_64BIT */ 194134c2f668SLeonid Yegoshin 194234c2f668SLeonid Yegoshin /* Cannot handle 64-bit instructions in 32-bit kernel */ 194334c2f668SLeonid Yegoshin goto sigill; 194434c2f668SLeonid Yegoshin 194534c2f668SLeonid Yegoshin success: 194634c2f668SLeonid Yegoshin regs->cp0_epc = contpc; /* advance or branch */ 194734c2f668SLeonid Yegoshin 194834c2f668SLeonid Yegoshin #ifdef CONFIG_DEBUG_FS 194934c2f668SLeonid Yegoshin unaligned_instructions++; 195034c2f668SLeonid Yegoshin #endif 195134c2f668SLeonid Yegoshin return; 195234c2f668SLeonid Yegoshin 195334c2f668SLeonid Yegoshin fault: 195434c2f668SLeonid Yegoshin /* roll back jump/branch */ 195534c2f668SLeonid Yegoshin regs->cp0_epc = origpc; 195634c2f668SLeonid Yegoshin regs->regs[31] = orig31; 195734c2f668SLeonid Yegoshin /* Did we have an exception handler installed? */ 195834c2f668SLeonid Yegoshin if (fixup_exception(regs)) 195934c2f668SLeonid Yegoshin return; 196034c2f668SLeonid Yegoshin 196134c2f668SLeonid Yegoshin die_if_kernel("Unhandled kernel unaligned access", regs); 196234c2f668SLeonid Yegoshin force_sig(SIGSEGV, current); 196334c2f668SLeonid Yegoshin 196434c2f668SLeonid Yegoshin return; 196534c2f668SLeonid Yegoshin 196634c2f668SLeonid Yegoshin sigbus: 196734c2f668SLeonid Yegoshin die_if_kernel("Unhandled kernel unaligned access", regs); 196834c2f668SLeonid Yegoshin force_sig(SIGBUS, current); 196934c2f668SLeonid Yegoshin 197034c2f668SLeonid Yegoshin return; 197134c2f668SLeonid Yegoshin 197234c2f668SLeonid Yegoshin sigill: 197334c2f668SLeonid Yegoshin die_if_kernel 197434c2f668SLeonid Yegoshin ("Unhandled kernel unaligned access or invalid instruction", regs); 1975a6d5ff04SDavid Daney force_sig(SIGILL, current); 19761da177e4SLinus Torvalds } 19771da177e4SLinus Torvalds 1978451b001bSSteven J. Hill static void emulate_load_store_MIPS16e(struct pt_regs *regs, void __user * addr) 1979451b001bSSteven J. Hill { 1980451b001bSSteven J. Hill unsigned long value; 1981451b001bSSteven J. Hill unsigned int res; 1982451b001bSSteven J. Hill int reg; 1983451b001bSSteven J. Hill unsigned long orig31; 1984451b001bSSteven J. Hill u16 __user *pc16; 1985451b001bSSteven J. Hill unsigned long origpc; 1986451b001bSSteven J. Hill union mips16e_instruction mips16inst, oldinst; 1987451b001bSSteven J. Hill 1988451b001bSSteven J. Hill origpc = regs->cp0_epc; 1989451b001bSSteven J. Hill orig31 = regs->regs[31]; 1990451b001bSSteven J. Hill pc16 = (unsigned short __user *)msk_isa16_mode(origpc); 1991451b001bSSteven J. Hill /* 1992451b001bSSteven J. Hill * This load never faults. 1993451b001bSSteven J. Hill */ 1994451b001bSSteven J. Hill __get_user(mips16inst.full, pc16); 1995451b001bSSteven J. Hill oldinst = mips16inst; 1996451b001bSSteven J. Hill 1997451b001bSSteven J. Hill /* skip EXTEND instruction */ 1998451b001bSSteven J. Hill if (mips16inst.ri.opcode == MIPS16e_extend_op) { 1999451b001bSSteven J. Hill pc16++; 2000451b001bSSteven J. Hill __get_user(mips16inst.full, pc16); 2001451b001bSSteven J. Hill } else if (delay_slot(regs)) { 2002451b001bSSteven J. Hill /* skip jump instructions */ 2003451b001bSSteven J. Hill /* JAL/JALX are 32 bits but have OPCODE in first short int */ 2004451b001bSSteven J. Hill if (mips16inst.ri.opcode == MIPS16e_jal_op) 2005451b001bSSteven J. Hill pc16++; 2006451b001bSSteven J. Hill pc16++; 2007451b001bSSteven J. Hill if (get_user(mips16inst.full, pc16)) 2008451b001bSSteven J. Hill goto sigbus; 2009451b001bSSteven J. Hill } 2010451b001bSSteven J. Hill 2011451b001bSSteven J. Hill switch (mips16inst.ri.opcode) { 2012451b001bSSteven J. Hill case MIPS16e_i64_op: /* I64 or RI64 instruction */ 2013451b001bSSteven J. Hill switch (mips16inst.i64.func) { /* I64/RI64 func field check */ 2014451b001bSSteven J. Hill case MIPS16e_ldpc_func: 2015451b001bSSteven J. Hill case MIPS16e_ldsp_func: 2016451b001bSSteven J. Hill reg = reg16to32[mips16inst.ri64.ry]; 2017451b001bSSteven J. Hill goto loadDW; 2018451b001bSSteven J. Hill 2019451b001bSSteven J. Hill case MIPS16e_sdsp_func: 2020451b001bSSteven J. Hill reg = reg16to32[mips16inst.ri64.ry]; 2021451b001bSSteven J. Hill goto writeDW; 2022451b001bSSteven J. Hill 2023451b001bSSteven J. Hill case MIPS16e_sdrasp_func: 2024451b001bSSteven J. Hill reg = 29; /* GPRSP */ 2025451b001bSSteven J. Hill goto writeDW; 2026451b001bSSteven J. Hill } 2027451b001bSSteven J. Hill 2028451b001bSSteven J. Hill goto sigbus; 2029451b001bSSteven J. Hill 2030451b001bSSteven J. Hill case MIPS16e_swsp_op: 2031451b001bSSteven J. Hill case MIPS16e_lwpc_op: 2032451b001bSSteven J. Hill case MIPS16e_lwsp_op: 2033451b001bSSteven J. Hill reg = reg16to32[mips16inst.ri.rx]; 2034451b001bSSteven J. Hill break; 2035451b001bSSteven J. Hill 2036451b001bSSteven J. Hill case MIPS16e_i8_op: 2037451b001bSSteven J. Hill if (mips16inst.i8.func != MIPS16e_swrasp_func) 2038451b001bSSteven J. Hill goto sigbus; 2039451b001bSSteven J. Hill reg = 29; /* GPRSP */ 2040451b001bSSteven J. Hill break; 2041451b001bSSteven J. Hill 2042451b001bSSteven J. Hill default: 2043451b001bSSteven J. Hill reg = reg16to32[mips16inst.rri.ry]; 2044451b001bSSteven J. Hill break; 2045451b001bSSteven J. Hill } 2046451b001bSSteven J. Hill 2047451b001bSSteven J. Hill switch (mips16inst.ri.opcode) { 2048451b001bSSteven J. Hill 2049451b001bSSteven J. Hill case MIPS16e_lb_op: 2050451b001bSSteven J. Hill case MIPS16e_lbu_op: 2051451b001bSSteven J. Hill case MIPS16e_sb_op: 2052451b001bSSteven J. Hill goto sigbus; 2053451b001bSSteven J. Hill 2054451b001bSSteven J. Hill case MIPS16e_lh_op: 2055451b001bSSteven J. Hill if (!access_ok(VERIFY_READ, addr, 2)) 2056451b001bSSteven J. Hill goto sigbus; 2057451b001bSSteven J. Hill 2058451b001bSSteven J. Hill LoadHW(addr, value, res); 2059451b001bSSteven J. Hill if (res) 2060451b001bSSteven J. Hill goto fault; 2061451b001bSSteven J. Hill MIPS16e_compute_return_epc(regs, &oldinst); 2062451b001bSSteven J. Hill regs->regs[reg] = value; 2063451b001bSSteven J. Hill break; 2064451b001bSSteven J. Hill 2065451b001bSSteven J. Hill case MIPS16e_lhu_op: 2066451b001bSSteven J. Hill if (!access_ok(VERIFY_READ, addr, 2)) 2067451b001bSSteven J. Hill goto sigbus; 2068451b001bSSteven J. Hill 2069451b001bSSteven J. Hill LoadHWU(addr, value, res); 2070451b001bSSteven J. Hill if (res) 2071451b001bSSteven J. Hill goto fault; 2072451b001bSSteven J. Hill MIPS16e_compute_return_epc(regs, &oldinst); 2073451b001bSSteven J. Hill regs->regs[reg] = value; 2074451b001bSSteven J. Hill break; 2075451b001bSSteven J. Hill 2076451b001bSSteven J. Hill case MIPS16e_lw_op: 2077451b001bSSteven J. Hill case MIPS16e_lwpc_op: 2078451b001bSSteven J. Hill case MIPS16e_lwsp_op: 2079451b001bSSteven J. Hill if (!access_ok(VERIFY_READ, addr, 4)) 2080451b001bSSteven J. Hill goto sigbus; 2081451b001bSSteven J. Hill 2082451b001bSSteven J. Hill LoadW(addr, value, res); 2083451b001bSSteven J. Hill if (res) 2084451b001bSSteven J. Hill goto fault; 2085451b001bSSteven J. Hill MIPS16e_compute_return_epc(regs, &oldinst); 2086451b001bSSteven J. Hill regs->regs[reg] = value; 2087451b001bSSteven J. Hill break; 2088451b001bSSteven J. Hill 2089451b001bSSteven J. Hill case MIPS16e_lwu_op: 2090451b001bSSteven J. Hill #ifdef CONFIG_64BIT 2091451b001bSSteven J. Hill /* 2092451b001bSSteven J. Hill * A 32-bit kernel might be running on a 64-bit processor. But 2093451b001bSSteven J. Hill * if we're on a 32-bit processor and an i-cache incoherency 2094451b001bSSteven J. Hill * or race makes us see a 64-bit instruction here the sdl/sdr 2095451b001bSSteven J. Hill * would blow up, so for now we don't handle unaligned 64-bit 2096451b001bSSteven J. Hill * instructions on 32-bit kernels. 2097451b001bSSteven J. Hill */ 2098451b001bSSteven J. Hill if (!access_ok(VERIFY_READ, addr, 4)) 2099451b001bSSteven J. Hill goto sigbus; 2100451b001bSSteven J. Hill 2101451b001bSSteven J. Hill LoadWU(addr, value, res); 2102451b001bSSteven J. Hill if (res) 2103451b001bSSteven J. Hill goto fault; 2104451b001bSSteven J. Hill MIPS16e_compute_return_epc(regs, &oldinst); 2105451b001bSSteven J. Hill regs->regs[reg] = value; 2106451b001bSSteven J. Hill break; 2107451b001bSSteven J. Hill #endif /* CONFIG_64BIT */ 2108451b001bSSteven J. Hill 2109451b001bSSteven J. Hill /* Cannot handle 64-bit instructions in 32-bit kernel */ 2110451b001bSSteven J. Hill goto sigill; 2111451b001bSSteven J. Hill 2112451b001bSSteven J. Hill case MIPS16e_ld_op: 2113451b001bSSteven J. Hill loadDW: 2114451b001bSSteven J. Hill #ifdef CONFIG_64BIT 2115451b001bSSteven J. Hill /* 2116451b001bSSteven J. Hill * A 32-bit kernel might be running on a 64-bit processor. But 2117451b001bSSteven J. Hill * if we're on a 32-bit processor and an i-cache incoherency 2118451b001bSSteven J. Hill * or race makes us see a 64-bit instruction here the sdl/sdr 2119451b001bSSteven J. Hill * would blow up, so for now we don't handle unaligned 64-bit 2120451b001bSSteven J. Hill * instructions on 32-bit kernels. 2121451b001bSSteven J. Hill */ 2122451b001bSSteven J. Hill if (!access_ok(VERIFY_READ, addr, 8)) 2123451b001bSSteven J. Hill goto sigbus; 2124451b001bSSteven J. Hill 2125451b001bSSteven J. Hill LoadDW(addr, value, res); 2126451b001bSSteven J. Hill if (res) 2127451b001bSSteven J. Hill goto fault; 2128451b001bSSteven J. Hill MIPS16e_compute_return_epc(regs, &oldinst); 2129451b001bSSteven J. Hill regs->regs[reg] = value; 2130451b001bSSteven J. Hill break; 2131451b001bSSteven J. Hill #endif /* CONFIG_64BIT */ 2132451b001bSSteven J. Hill 2133451b001bSSteven J. Hill /* Cannot handle 64-bit instructions in 32-bit kernel */ 2134451b001bSSteven J. Hill goto sigill; 2135451b001bSSteven J. Hill 2136451b001bSSteven J. Hill case MIPS16e_sh_op: 2137451b001bSSteven J. Hill if (!access_ok(VERIFY_WRITE, addr, 2)) 2138451b001bSSteven J. Hill goto sigbus; 2139451b001bSSteven J. Hill 2140451b001bSSteven J. Hill MIPS16e_compute_return_epc(regs, &oldinst); 2141451b001bSSteven J. Hill value = regs->regs[reg]; 2142451b001bSSteven J. Hill StoreHW(addr, value, res); 2143451b001bSSteven J. Hill if (res) 2144451b001bSSteven J. Hill goto fault; 2145451b001bSSteven J. Hill break; 2146451b001bSSteven J. Hill 2147451b001bSSteven J. Hill case MIPS16e_sw_op: 2148451b001bSSteven J. Hill case MIPS16e_swsp_op: 2149451b001bSSteven J. Hill case MIPS16e_i8_op: /* actually - MIPS16e_swrasp_func */ 2150451b001bSSteven J. Hill if (!access_ok(VERIFY_WRITE, addr, 4)) 2151451b001bSSteven J. Hill goto sigbus; 2152451b001bSSteven J. Hill 2153451b001bSSteven J. Hill MIPS16e_compute_return_epc(regs, &oldinst); 2154451b001bSSteven J. Hill value = regs->regs[reg]; 2155451b001bSSteven J. Hill StoreW(addr, value, res); 2156451b001bSSteven J. Hill if (res) 2157451b001bSSteven J. Hill goto fault; 2158451b001bSSteven J. Hill break; 2159451b001bSSteven J. Hill 2160451b001bSSteven J. Hill case MIPS16e_sd_op: 2161451b001bSSteven J. Hill writeDW: 2162451b001bSSteven J. Hill #ifdef CONFIG_64BIT 2163451b001bSSteven J. Hill /* 2164451b001bSSteven J. Hill * A 32-bit kernel might be running on a 64-bit processor. But 2165451b001bSSteven J. Hill * if we're on a 32-bit processor and an i-cache incoherency 2166451b001bSSteven J. Hill * or race makes us see a 64-bit instruction here the sdl/sdr 2167451b001bSSteven J. Hill * would blow up, so for now we don't handle unaligned 64-bit 2168451b001bSSteven J. Hill * instructions on 32-bit kernels. 2169451b001bSSteven J. Hill */ 2170451b001bSSteven J. Hill if (!access_ok(VERIFY_WRITE, addr, 8)) 2171451b001bSSteven J. Hill goto sigbus; 2172451b001bSSteven J. Hill 2173451b001bSSteven J. Hill MIPS16e_compute_return_epc(regs, &oldinst); 2174451b001bSSteven J. Hill value = regs->regs[reg]; 2175451b001bSSteven J. Hill StoreDW(addr, value, res); 2176451b001bSSteven J. Hill if (res) 2177451b001bSSteven J. Hill goto fault; 2178451b001bSSteven J. Hill break; 2179451b001bSSteven J. Hill #endif /* CONFIG_64BIT */ 2180451b001bSSteven J. Hill 2181451b001bSSteven J. Hill /* Cannot handle 64-bit instructions in 32-bit kernel */ 2182451b001bSSteven J. Hill goto sigill; 2183451b001bSSteven J. Hill 2184451b001bSSteven J. Hill default: 2185451b001bSSteven J. Hill /* 2186451b001bSSteven J. Hill * Pheeee... We encountered an yet unknown instruction or 2187451b001bSSteven J. Hill * cache coherence problem. Die sucker, die ... 2188451b001bSSteven J. Hill */ 2189451b001bSSteven J. Hill goto sigill; 2190451b001bSSteven J. Hill } 2191451b001bSSteven J. Hill 2192451b001bSSteven J. Hill #ifdef CONFIG_DEBUG_FS 2193451b001bSSteven J. Hill unaligned_instructions++; 2194451b001bSSteven J. Hill #endif 2195451b001bSSteven J. Hill 2196451b001bSSteven J. Hill return; 2197451b001bSSteven J. Hill 2198451b001bSSteven J. Hill fault: 2199451b001bSSteven J. Hill /* roll back jump/branch */ 2200451b001bSSteven J. Hill regs->cp0_epc = origpc; 2201451b001bSSteven J. Hill regs->regs[31] = orig31; 2202451b001bSSteven J. Hill /* Did we have an exception handler installed? */ 2203451b001bSSteven J. Hill if (fixup_exception(regs)) 2204451b001bSSteven J. Hill return; 2205451b001bSSteven J. Hill 2206451b001bSSteven J. Hill die_if_kernel("Unhandled kernel unaligned access", regs); 2207451b001bSSteven J. Hill force_sig(SIGSEGV, current); 2208451b001bSSteven J. Hill 2209451b001bSSteven J. Hill return; 2210451b001bSSteven J. Hill 2211451b001bSSteven J. Hill sigbus: 2212451b001bSSteven J. Hill die_if_kernel("Unhandled kernel unaligned access", regs); 2213451b001bSSteven J. Hill force_sig(SIGBUS, current); 2214451b001bSSteven J. Hill 2215451b001bSSteven J. Hill return; 2216451b001bSSteven J. Hill 2217451b001bSSteven J. Hill sigill: 2218451b001bSSteven J. Hill die_if_kernel 2219451b001bSSteven J. Hill ("Unhandled kernel unaligned access or invalid instruction", regs); 2220451b001bSSteven J. Hill force_sig(SIGILL, current); 2221451b001bSSteven J. Hill } 2222fc192e50STony Wu 22231da177e4SLinus Torvalds asmlinkage void do_ade(struct pt_regs *regs) 22241da177e4SLinus Torvalds { 2225c3fc5cd5SRalf Baechle enum ctx_state prev_state; 2226fe00f943SRalf Baechle unsigned int __user *pc; 22271da177e4SLinus Torvalds mm_segment_t seg; 22281da177e4SLinus Torvalds 2229c3fc5cd5SRalf Baechle prev_state = exception_enter(); 22307f788d2dSDeng-Cheng Zhu perf_sw_event(PERF_COUNT_SW_ALIGNMENT_FAULTS, 2231a8b0ca17SPeter Zijlstra 1, regs, regs->cp0_badvaddr); 22321da177e4SLinus Torvalds /* 22331da177e4SLinus Torvalds * Did we catch a fault trying to load an instruction? 22341da177e4SLinus Torvalds */ 223534c2f668SLeonid Yegoshin if (regs->cp0_badvaddr == regs->cp0_epc) 22361da177e4SLinus Torvalds goto sigbus; 22371da177e4SLinus Torvalds 2238293c5bd1SRalf Baechle if (user_mode(regs) && !test_thread_flag(TIF_FIXADE)) 22391da177e4SLinus Torvalds goto sigbus; 22406312e0eeSAtsushi Nemoto if (unaligned_action == UNALIGNED_ACTION_SIGNAL) 22416312e0eeSAtsushi Nemoto goto sigbus; 22421da177e4SLinus Torvalds 22431da177e4SLinus Torvalds /* 22441da177e4SLinus Torvalds * Do branch emulation only if we didn't forward the exception. 22451da177e4SLinus Torvalds * This is all so but ugly ... 22461da177e4SLinus Torvalds */ 224734c2f668SLeonid Yegoshin 224834c2f668SLeonid Yegoshin /* 224934c2f668SLeonid Yegoshin * Are we running in microMIPS mode? 225034c2f668SLeonid Yegoshin */ 225134c2f668SLeonid Yegoshin if (get_isa16_mode(regs->cp0_epc)) { 225234c2f668SLeonid Yegoshin /* 225334c2f668SLeonid Yegoshin * Did we catch a fault trying to load an instruction in 225434c2f668SLeonid Yegoshin * 16-bit mode? 225534c2f668SLeonid Yegoshin */ 225634c2f668SLeonid Yegoshin if (regs->cp0_badvaddr == msk_isa16_mode(regs->cp0_epc)) 225734c2f668SLeonid Yegoshin goto sigbus; 225834c2f668SLeonid Yegoshin if (unaligned_action == UNALIGNED_ACTION_SHOW) 225934c2f668SLeonid Yegoshin show_registers(regs); 226034c2f668SLeonid Yegoshin 226134c2f668SLeonid Yegoshin if (cpu_has_mmips) { 226234c2f668SLeonid Yegoshin seg = get_fs(); 226334c2f668SLeonid Yegoshin if (!user_mode(regs)) 226434c2f668SLeonid Yegoshin set_fs(KERNEL_DS); 226534c2f668SLeonid Yegoshin emulate_load_store_microMIPS(regs, 226634c2f668SLeonid Yegoshin (void __user *)regs->cp0_badvaddr); 226734c2f668SLeonid Yegoshin set_fs(seg); 226834c2f668SLeonid Yegoshin 226934c2f668SLeonid Yegoshin return; 227034c2f668SLeonid Yegoshin } 227134c2f668SLeonid Yegoshin 2272451b001bSSteven J. Hill if (cpu_has_mips16) { 2273451b001bSSteven J. Hill seg = get_fs(); 2274451b001bSSteven J. Hill if (!user_mode(regs)) 2275451b001bSSteven J. Hill set_fs(KERNEL_DS); 2276451b001bSSteven J. Hill emulate_load_store_MIPS16e(regs, 2277451b001bSSteven J. Hill (void __user *)regs->cp0_badvaddr); 2278451b001bSSteven J. Hill set_fs(seg); 2279451b001bSSteven J. Hill 2280451b001bSSteven J. Hill return; 2281451b001bSSteven J. Hill } 2282451b001bSSteven J. Hill 228334c2f668SLeonid Yegoshin goto sigbus; 228434c2f668SLeonid Yegoshin } 228534c2f668SLeonid Yegoshin 228634c2f668SLeonid Yegoshin if (unaligned_action == UNALIGNED_ACTION_SHOW) 228734c2f668SLeonid Yegoshin show_registers(regs); 228834c2f668SLeonid Yegoshin pc = (unsigned int __user *)exception_epc(regs); 228934c2f668SLeonid Yegoshin 22901da177e4SLinus Torvalds seg = get_fs(); 22911da177e4SLinus Torvalds if (!user_mode(regs)) 22921da177e4SLinus Torvalds set_fs(KERNEL_DS); 22937f18f151SRalf Baechle emulate_load_store_insn(regs, (void __user *)regs->cp0_badvaddr, pc); 22941da177e4SLinus Torvalds set_fs(seg); 22951da177e4SLinus Torvalds 22961da177e4SLinus Torvalds return; 22971da177e4SLinus Torvalds 22981da177e4SLinus Torvalds sigbus: 22991da177e4SLinus Torvalds die_if_kernel("Kernel unaligned instruction access", regs); 23001da177e4SLinus Torvalds force_sig(SIGBUS, current); 23011da177e4SLinus Torvalds 23021da177e4SLinus Torvalds /* 23031da177e4SLinus Torvalds * XXX On return from the signal handler we should advance the epc 23041da177e4SLinus Torvalds */ 2305c3fc5cd5SRalf Baechle exception_exit(prev_state); 23061da177e4SLinus Torvalds } 23076312e0eeSAtsushi Nemoto 23086312e0eeSAtsushi Nemoto #ifdef CONFIG_DEBUG_FS 23096312e0eeSAtsushi Nemoto static int __init debugfs_unaligned(void) 23106312e0eeSAtsushi Nemoto { 23116312e0eeSAtsushi Nemoto struct dentry *d; 23126312e0eeSAtsushi Nemoto 23136312e0eeSAtsushi Nemoto if (!mips_debugfs_dir) 23146312e0eeSAtsushi Nemoto return -ENODEV; 23156312e0eeSAtsushi Nemoto d = debugfs_create_u32("unaligned_instructions", S_IRUGO, 23166312e0eeSAtsushi Nemoto mips_debugfs_dir, &unaligned_instructions); 2317b517531cSZhaolei if (!d) 2318b517531cSZhaolei return -ENOMEM; 23196312e0eeSAtsushi Nemoto d = debugfs_create_u32("unaligned_action", S_IRUGO | S_IWUSR, 23206312e0eeSAtsushi Nemoto mips_debugfs_dir, &unaligned_action); 2321b517531cSZhaolei if (!d) 2322b517531cSZhaolei return -ENOMEM; 23236312e0eeSAtsushi Nemoto return 0; 23246312e0eeSAtsushi Nemoto } 23258d6b591cSRalf Baechle arch_initcall(debugfs_unaligned); 23266312e0eeSAtsushi Nemoto #endif 2327