1 1.15 msaitoh /* $NetBSD: spr.h,v 1.15 2021/12/05 07:47:40 msaitoh Exp $ */ 2 1.1 matt /*- 3 1.3 matt * Copyright (c) 2010, 2011 The NetBSD Foundation, Inc. 4 1.1 matt * All rights reserved. 5 1.1 matt * 6 1.1 matt * This code is derived from software contributed to The NetBSD Foundation 7 1.3 matt * by Raytheon BBN Technologies Corp and Defense Advanced Research Projects 8 1.3 matt * Agency and which was developed by Matt Thomas of 3am Software Foundry. 9 1.3 matt * 10 1.3 matt * This material is based upon work supported by the Defense Advanced Research 11 1.3 matt * Projects Agency and Space and Naval Warfare Systems Center, Pacific, under 12 1.3 matt * Contract No. N66001-09-C-2073. 13 1.3 matt * Approved for Public Release, Distribution Unlimited 14 1.1 matt * 15 1.1 matt * Redistribution and use in source and binary forms, with or without 16 1.1 matt * modification, are permitted provided that the following conditions 17 1.1 matt * are met: 18 1.1 matt * 1. Redistributions of source code must retain the above copyright 19 1.1 matt * notice, this list of conditions and the following disclaimer. 20 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright 21 1.1 matt * notice, this list of conditions and the following disclaimer in the 22 1.1 matt * documentation and/or other materials provided with the distribution. 23 1.1 matt * 24 1.1 matt * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 25 1.1 matt * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 26 1.1 matt * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 27 1.1 matt * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 28 1.1 matt * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 29 1.1 matt * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 30 1.1 matt * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 31 1.1 matt * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 32 1.1 matt * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 33 1.1 matt * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 34 1.1 matt * POSSIBILITY OF SUCH DAMAGE. 35 1.1 matt */ 36 1.1 matt 37 1.1 matt #ifndef _POWERPC_BOOKE_SPR_H_ 38 1.1 matt #define _POWERPC_BOOKE_SPR_H_ 39 1.1 matt 40 1.1 matt #define PVR_MPCe500 0x8020 41 1.1 matt #define PVR_MPCe500v2 0x8021 42 1.10 matt #define PVR_MPCe500mc 0x8023 43 1.10 matt #define PVR_MPCe5500 0x8024 /* 64-bit */ 44 1.4 matt 45 1.1 matt #define SVR_MPC8548v1 0x80310010 46 1.1 matt #define SVR_MPC8548v1plus 0x80310011 47 1.1 matt #define SVR_MPC8548v2 0x80310020 48 1.1 matt #define SVR_MPC8547v2 0x80310120 49 1.1 matt #define SVR_MPC8545v2 0x80310220 50 1.4 matt #define SVR_MPC8543v1 0x80320010 51 1.4 matt #define SVR_MPC8543v1plus 0x80320011 52 1.1 matt #define SVR_MPC8543v2 0x80320020 53 1.3 matt 54 1.3 matt #define SVR_MPC8544v1 0x80340110 55 1.3 matt #define SVR_MPC8544v1plus 0x80340111 56 1.5 matt #define SVR_MPC8533 0x80340010 57 1.3 matt 58 1.3 matt #define SVR_MPC8536v1 0x80370091 59 1.3 matt 60 1.3 matt #define SVR_MPC8555v1 0x80710110 61 1.3 matt #define SVR_MPC8541v1 0x80720111 62 1.3 matt 63 1.4 matt #define SVR_MPC8567v1 0x80750111 64 1.4 matt #define SVR_MPC8568v1 0x80750011 65 1.4 matt 66 1.4 matt #define SVR_MPC8572v1 0x80e00011 67 1.4 matt 68 1.4 matt #define SVR_P2020v2 0x80e20020 69 1.4 matt #define SVR_P2010v2 0x80e30020 70 1.6 matt #define SVR_P1011v2 0x80e50020 71 1.6 matt #define SVR_P1012v2 0x80e50120 72 1.6 matt #define SVR_P1013v2 0x80e70020 73 1.10 matt #define SVR_P1015v1 0x80e50210 74 1.9 matt #define SVR_P1016v1 0x80e50310 75 1.12 nonaka #define SVR_P1017v1 0x80f70011 76 1.6 matt #define SVR_P1020v2 0x80e40020 77 1.6 matt #define SVR_P1021v2 0x80e40120 78 1.6 matt #define SVR_P1022v2 0x80e60020 79 1.12 nonaka #define SVR_P1023v1 0x80f60011 80 1.10 matt #define SVR_P1024v2 0x80e40210 81 1.9 matt #define SVR_P1025v1 0x80e40310 82 1.4 matt 83 1.3 matt #define SVR_SECURITY_P(svr) (((svr) & 0x00080000) != 0) 84 1.1 matt 85 1.8 matt #define SVR_P2040v1 0x82100010 /* e500mc */ 86 1.8 matt #define SVR_P2041v1 0x82100110 /* e500mc */ 87 1.8 matt 88 1.10 matt #define SVR_P3041v1 0x82110310 /* e500mc */ 89 1.10 matt 90 1.8 matt #define SVR_P4080v1 0x82000010 /* e500mc */ 91 1.8 matt #define SVR_P4040v1 0x82000110 /* e500mc */ 92 1.8 matt 93 1.8 matt #define SVR_P5010v1 0x82210010 /* e5500 */ 94 1.8 matt #define SVR_P5020v1 0x82200010 /* e5500 */ 95 1.8 matt 96 1.1 matt /* 97 1.1 matt * Special Purpose Register declarations. 98 1.1 matt * 99 1.1 matt * The first column in the comments indicates which PowerPC architectures the 100 1.1 matt * SPR is valid on - E for BookE series, 4 for 4xx series, 101 1.1 matt * 6 for 6xx/7xx series and 8 for 8xx and 8xxx (but not 85xx) series. 102 1.1 matt */ 103 1.1 matt 104 1.1 matt #define SPR_PID0 48 /* E4.. 440 Process ID */ 105 1.1 matt #define SPR_DECAR 54 /* E... Decrementer Auto-reload */ 106 1.1 matt #define SPR_CSRR0 58 /* E... Critical Save/Restore Reg. 0 */ 107 1.1 matt #define SPR_CSRR1 59 /* E... Critical Save/Restore Reg. 1 */ 108 1.1 matt #define SPR_DEAR 61 /* E... Data Exception Address Reg. */ 109 1.1 matt #define SPR_ESR 62 /* E... Exception Syndrome Register */ 110 1.1 matt #define ESR_PIL 0x08000000 /* 4: Program ILlegal */ 111 1.1 matt #define ESR_PPR 0x04000000 /* 5: Program PRivileged */ 112 1.1 matt #define ESR_PTR 0x02000000 /* 6: Program TRap */ 113 1.1 matt #define ESR_ST 0x00800000 /* 8: Store operation */ 114 1.1 matt #define ESR_DLK 0x00200000 /* 10: dcache exception */ 115 1.1 matt #define ESR_ILK 0x00100000 /* 11: icache exception */ 116 1.11 matt #define ESR_AP 0x00080000 /* 12: Auxiliary Processor operation exception */ 117 1.11 matt #define ESR_PUO 0x00040000 /* 13: Program Unimplemented Operation exception */ 118 1.1 matt #define ESR_BO 0x00020000 /* 14: Byte ordering exception */ 119 1.1 matt #define ESR_PIE 0x00020000 /* 14: Program Imprecise Exception */ 120 1.1 matt #define ESR_SPV 0x00000080 /* 24: SPE exception */ 121 1.11 matt #define ESR_VLEMI 0x00000020 /* 26: VLE exception */ 122 1.11 matt #define ESR_MIF 0x00000002 /* 30: VLE Misaligned Instruction Fetch */ 123 1.11 matt #define ESR_XTE 0x00000001 /* 31: eXternal Transaction Error */ 124 1.1 matt #define SPR_IVPR 63 /* E... Interrupt Vector Prefix Reg. */ 125 1.1 matt #define SPR_USPRG0 256 /* E4.. User SPR General 0 */ 126 1.1 matt #define SPR_USPRG3 259 /* E... User SPR General 3 */ 127 1.1 matt #define SPR_USPRG4 260 /* E... User SPR General 4 */ 128 1.1 matt #define SPR_USPRG5 261 /* E... User SPR General 5 */ 129 1.1 matt #define SPR_USPRG6 262 /* E... User SPR General 6 */ 130 1.1 matt #define SPR_USPRG7 263 /* E... User SPR General 7 */ 131 1.1 matt #define SPR_RTBL 268 /* E468 Time Base Lower (RO) */ 132 1.1 matt #define SPR_RTBU 269 /* E468 Time Base Upper (RO) */ 133 1.1 matt #define SPR_WTBL 284 /* E468 Time Base Lower (WO) */ 134 1.1 matt #define SPR_WTBU 285 /* E468 Time Base Upper (WO) */ 135 1.3 matt #define SPR_PIR 286 /* E... Processor ID Register (RO) */ 136 1.1 matt 137 1.1 matt #define SPR_DBSR 304 /* E... Debug Status Register (W1C) */ 138 1.1 matt #define DBSR_IDE 0x80000000 /* 0: Imprecise debug event */ 139 1.1 matt #define DBSR_UDE 0x40000000 /* 1: Unconditional debug event */ 140 1.1 matt #define DBSR_MRR_HARD 0x20000000 /* 2: Most Recent Reset (Hard) */ 141 1.1 matt #define DBSR_MRR_SOFT 0x10000000 /* 3: Most Recent Reset (Soft) */ 142 1.1 matt #define DBSR_ICMP 0x08000000 /* 4: Instruction completion debug event */ 143 1.1 matt #define DBSR_BRT 0x04000000 /* 5: Branch Taken debug event */ 144 1.1 matt #define DBSR_IRPT 0x02000000 /* 6: Interrupt Taken debug event */ 145 1.1 matt #define DBSR_TRAP 0x01000000 /* 7: Trap Instruction debug event */ 146 1.4 matt #define DBSR_IAC 0x00f00000 /* 8-11: IAC debug event */ 147 1.1 matt #define DBSR_IAC1 0x00800000 /* 8: IAC1 debug event */ 148 1.1 matt #define DBSR_IAC2 0x00400000 /* 9: IAC2 debug event */ 149 1.4 matt #define DBSR_IAC3 0x00200000 /* 10: IAC3 debug event */ 150 1.4 matt #define DBSR_IAC4 0x00100000 /* 11: IAC4 debug event */ 151 1.4 matt #define DBSR_DAC 0x000f0000 /* 12-15: DAC debug event */ 152 1.3 matt #define DBSR_DAC1R 0x00080000 /* 12: DAC1 Read debug event */ 153 1.3 matt #define DBSR_DAC1W 0x00040000 /* 13: DAC1 Write debug event */ 154 1.3 matt #define DBSR_DAC2R 0x00020000 /* 14: DAC2 Read debug event */ 155 1.3 matt #define DBSR_DAC2W 0x00010000 /* 15: DAC2 Write debug event */ 156 1.1 matt #define DBSR_RET 0x00008000 /* 16: Return debug event */ 157 1.1 matt #define SPR_DBCR0 308 /* E... Debug Control Register 0 */ 158 1.1 matt #define DBCR0_EDM 0x80000000 /* 0: External Debug Mode */ 159 1.1 matt #define DBCR0_IDM 0x40000000 /* 1: Internal Debug Mode */ 160 1.1 matt #define DBCR0_RST_MASK 0x30000000 /* 2..3: ReSeT */ 161 1.1 matt #define DBCR0_RST_NONE 0x00000000 /* No action */ 162 1.1 matt #define DBCR0_RST_CORE 0x10000000 /* Core reset */ 163 1.1 matt #define DBCR0_RST_CHIP 0x20000000 /* Chip reset */ 164 1.1 matt #define DBCR0_RST_SYSTEM 0x30000000 /* System reset */ 165 1.4 matt #define DBCR0_ICMP 0x08000000 /* 4: Instruction Completion debug event */ 166 1.4 matt #define DBCR0_BRT 0x04000000 /* 5: Branch Taken debug event */ 167 1.4 matt #define DBCR0_IRPT 0x02000000 /* 6: Interrupt Taken debug event */ 168 1.4 matt #define DBCR0_TRAP 0x01000000 /* 7: Trap Instruction Debug Event */ 169 1.5 matt #define DBCR0_IAC1 0x00800000 /* 8: IAC (Instruction Address Compare) 1 debug event */ 170 1.5 matt #define DBCR0_IAC2 0x00400000 /* 9: IAC 2 debug event */ 171 1.5 matt #define DBCR0_IAC3 0x00200000 /* 10: IAC 3 debug event */ 172 1.5 matt #define DBCR0_IAC4 0x00100000 /* 11: IAC 4 debug event */ 173 1.4 matt #define DBCR0_DAC1_LOAD 0x00080000 /* 12: DAC (Data Address Compare) 1 load event */ 174 1.4 matt #define DBCR0_DAC1_STORE 0x00040000 /* 13: DAC (Data Address Compare) 1 store event */ 175 1.4 matt #define DBCR0_DAC2_LOAD 0x00020000 /* 14: DAC 2 load event */ 176 1.4 matt #define DBCR0_DAC2_STORE 0x00010000 /* 15: DAC 2 store event */ 177 1.4 matt #define DBCR0_RET 0x00008000 /* 16: Return debug event */ 178 1.1 matt #define DBCR0_FT 0x00000001 /* 31: Freeze Timers on debug event */ 179 1.1 matt #define SPR_DBCR1 309 /* E... Debug Control Register 1 */ 180 1.4 matt #define DBCR1_IAC1US 0xc0000000 /* 0-1: Data Address Compare 1 user/supervisor mode */ 181 1.4 matt #define DBCR1_IAC1US_ANY 0x00000000 /* MSR[PR] = don't care */ 182 1.4 matt #define DBCR1_IAC1US_KERNEL 0x80000000 /* MSR[PR] = 0 */ 183 1.4 matt #define DBCR1_IAC1US_USER 0xc0000000 /* MSR[PR] = 1 */ 184 1.4 matt #define DBCR1_IAC1ER 0x30000000 /* 2-3: Data Address Compare 1 effective/real mode */ 185 1.4 matt #define DBCR1_IAC1ER_DSX 0x00000000 /* effective address */ 186 1.4 matt #define DBCR1_IAC1ER_REAL 0x10000000 /* real address */ 187 1.4 matt #define DBCR1_IAC1ER_DS0 0x20000000 /* effective address MSR[DS] = 0 */ 188 1.4 matt #define DBCR1_IAC1ER_DS1 0x30000000 /* effective address MSR[DS] = 1 */ 189 1.4 matt #define DBCR1_IAC2US 0x0c000000 /* 4-5: Data Address Compare 1 user/supervisor mode */ 190 1.4 matt #define DBCR1_IAC2US_ANY 0x00000000 /* MSR[PR] = don't care */ 191 1.4 matt #define DBCR1_IAC2US_KERNEL 0x08000000 /* MSR[PR] = 0 */ 192 1.4 matt #define DBCR1_IAC2US_USER 0x0c000000 /* MSR[PR] = 1 */ 193 1.4 matt #define DBCR1_IAC2ER 0x03000000 /* 6-7: Data Address Compare 1 effective/real mode */ 194 1.4 matt #define DBCR1_IAC2ER_DSX 0x00000000 /* effective address */ 195 1.4 matt #define DBCR1_IAC2ER_REAL 0x01000000 /* real address */ 196 1.4 matt #define DBCR1_IAC2ER_DS0 0x02000000 /* effective address MSR[DS] = 0 */ 197 1.4 matt #define DBCR1_IAC2ER_DS1 0x03000000 /* effective address MSR[DS] = 1 */ 198 1.4 matt #define DBCR1_IAC12M 0x00c00000 /* 8-9: Data Address Compare 1 effective/real mode */ 199 1.4 matt #define DBCR1_IAC12M_EXACT 0x00000000 /* equal IAC1 or IAC2 */ 200 1.4 matt #define DBCR1_IAC12M_MASK 0x00400000 /* (addr & IAC2) == (IAC1 & IAC2) */ 201 1.4 matt #define DBCR1_IAC12M_INCLUSIVE 0x00800000 /* IAC1 <= addr < IAC2 */ 202 1.4 matt #define DBCR1_IAC12M_EXCLUSIVE 0x00c00000 /* addr < IAC1 || IAC2 <= addr */ 203 1.4 matt #define DBCR1_IAC3US 0x0000c000 /* 16-17: Data Address Compare 3 user/supervisor mode */ 204 1.4 matt #define DBCR1_IAC3US_ANY 0x00000000 /* MSR[PR] = don't care */ 205 1.4 matt #define DBCR1_IAC3US_KERNEL 0x00008000 /* MSR[PR] = 0 */ 206 1.4 matt #define DBCR1_IAC3US_USER 0x0000c000 /* MSR[PR] = 1 */ 207 1.4 matt #define DBCR1_IAC3ER 0x00003000 /* 18-19: Data Address Compare 3 effective/real mode */ 208 1.4 matt #define DBCR1_IAC3ER_DSX 0x00000000 /* effective address */ 209 1.4 matt #define DBCR1_IAC3ER_REAL 0x00001000 /* real address */ 210 1.4 matt #define DBCR1_IAC3ER_DS0 0x00002000 /* effective address MSR[DS] = 0 */ 211 1.4 matt #define DBCR1_IAC3ER_DS1 0x00003000 /* effective address MSR[DS] = 1 */ 212 1.4 matt #define DBCR1_IAC4US 0x00000c00 /* 20-21: Data Address Compare 3 user/supervisor mode */ 213 1.4 matt #define DBCR1_IAC4US_ANY 0x00000000 /* MSR[PR] = don't care */ 214 1.4 matt #define DBCR1_IAC4US_KERNEL 0x00000800 /* MSR[PR] = 0 */ 215 1.4 matt #define DBCR1_IAC4US_USER 0x00000c00 /* MSR[PR] = 1 */ 216 1.4 matt #define DBCR1_IAC4ER 0x00000300 /* 22-23: Data Address Compare 4 effective/real mode */ 217 1.4 matt #define DBCR1_IAC4ER_DSX 0x00000000 /* effective address */ 218 1.4 matt #define DBCR1_IAC4ER_REAL 0x00000100 /* real address */ 219 1.4 matt #define DBCR1_IAC4ER_DS0 0x00000200 /* effective address MSR[DS] = 0 */ 220 1.4 matt #define DBCR1_IAC4ER_DS1 0x00000300 /* effective address MSR[DS] = 1 */ 221 1.4 matt #define DBCR1_IAC34M 0x000000c0 /* 24-25: Data Address Compare 4 effective/real mode */ 222 1.4 matt #define DBCR1_IAC34M_EXACT 0x00000000 /* equal IAC3 or IAC4 */ 223 1.4 matt #define DBCR1_IAC34M_MASK 0x00000040 /* (addr & IAC4) == (IAC3 & IAC4) */ 224 1.4 matt #define DBCR1_IAC34M_INCLUSIVE 0x00000080 /* IAC3 <= addr < IAC4 */ 225 1.4 matt #define DBCR1_IAC34M_EXCLUSIVE 0x000000c0 /* addr < IAC3 || IAC4 <= addr */ 226 1.1 matt #define SPR_DBCR2 310 /* E... Debug Control Register 2 */ 227 1.3 matt #define DBCR2_DAC1US 0xc0000000 /* 0-1: Data Address Compare 1 user/supervisor mode */ 228 1.3 matt #define DBCR2_DAC1US_ANY 0x00000000 /* MSR[PR] = don't care */ 229 1.3 matt #define DBCR2_DAC1US_KERNEL 0x80000000 /* MSR[PR] = 0 */ 230 1.3 matt #define DBCR2_DAC1US_USER 0xc0000000 /* MSR[PR] = 1 */ 231 1.3 matt #define DBCR2_DAC1ER 0x30000000 /* 2-3: Data Address Compare 1 effective/real mode */ 232 1.4 matt #define DBCR2_DAC1ER_DSX 0x00000000 /* effective address */ 233 1.4 matt #define DBCR2_DAC1ER_REAL 0x10000000 /* real address */ 234 1.3 matt #define DBCR2_DAC1ER_DS0 0x20000000 /* effective address MSR[DS] = 0 */ 235 1.3 matt #define DBCR2_DAC1ER_DS1 0x30000000 /* effective address MSR[DS] = 1 */ 236 1.4 matt #define DBCR2_DAC2US 0x0c000000 /* 4-5: Data Address Compare 1 user/supervisor mode */ 237 1.3 matt #define DBCR2_DAC2US_ANY 0x00000000 /* MSR[PR] = don't care */ 238 1.3 matt #define DBCR2_DAC2US_KERNEL 0x08000000 /* MSR[PR] = 0 */ 239 1.3 matt #define DBCR2_DAC2US_USER 0x0c000000 /* MSR[PR] = 1 */ 240 1.4 matt #define DBCR2_DAC2ER 0x03000000 /* 6-7: Data Address Compare 1 effective/real mode */ 241 1.4 matt #define DBCR2_DAC2ER_DSX 0x00000000 /* effective address */ 242 1.4 matt #define DBCR2_DAC2ER_REAL 0x01000000 /* real address */ 243 1.3 matt #define DBCR2_DAC2ER_DS0 0x02000000 /* effective address MSR[DS] = 0 */ 244 1.3 matt #define DBCR2_DAC2ER_DS1 0x03000000 /* effective address MSR[DS] = 1 */ 245 1.4 matt #define DBCR2_DAC12M 0x00c00000 /* 8-9: Data Address Compare 1 effective/real mode */ 246 1.3 matt #define DBCR2_DAC12M_EXACT 0x00000000 /* equal DAC1 or DAC2 */ 247 1.3 matt #define DBCR2_DAC12M_MASK 0x00400000 /* (addr & DAC2) == (DAC1 & DAC2) */ 248 1.3 matt #define DBCR2_DAC12M_INCLUSIVE 0x00800000 /* DAC1 <= addr < DAC2 */ 249 1.3 matt #define DBCR2_DAC12M_EXCLUSIVE 0x00c00000 /* addr < DAC1 || DAC2 <= addr */ 250 1.4 matt #define DBCR2_DAC3US 0x0000c000 /* 16-17: Data Address Compare 3 user/supervisor mode */ 251 1.4 matt #define DBCR2_DAC3US_ANY 0x00000000 /* MSR[PR] = don't care */ 252 1.4 matt #define DBCR2_DAC3US_KERNEL 0x00008000 /* MSR[PR] = 0 */ 253 1.4 matt #define DBCR2_DAC3US_USER 0x0000c000 /* MSR[PR] = 1 */ 254 1.4 matt #define DBCR2_DAC3ER 0x00003000 /* 18-19: Data Address Compare 3 effective/real mode */ 255 1.4 matt #define DBCR2_DAC3ER_DSX 0x00000000 /* effective address */ 256 1.4 matt #define DBCR2_DAC3ER_REAL 0x00001000 /* real address */ 257 1.4 matt #define DBCR2_DAC3ER_DS0 0x00002000 /* effective address MSR[DS] = 0 */ 258 1.4 matt #define DBCR2_DAC3ER_DS1 0x00003000 /* effective address MSR[DS] = 1 */ 259 1.4 matt #define DBCR2_DAC4US 0x00000c00 /* 20-21: Data Address Compare 3 user/supervisor mode */ 260 1.4 matt #define DBCR2_DAC4US_ANY 0x00000000 /* MSR[PR] = don't care */ 261 1.4 matt #define DBCR2_DAC4US_KERNEL 0x00000800 /* MSR[PR] = 0 */ 262 1.4 matt #define DBCR2_DAC4US_USER 0x00000c00 /* MSR[PR] = 1 */ 263 1.4 matt #define DBCR2_DAC4ER 0x00000300 /* 22-23: Data Address Compare 4 effective/real mode */ 264 1.4 matt #define DBCR2_DAC4ER_DSX 0x00000000 /* effective address */ 265 1.4 matt #define DBCR2_DAC4ER_REAL 0x00000100 /* real address */ 266 1.4 matt #define DBCR2_DAC4ER_DS0 0x00000200 /* effective address MSR[DS] = 0 */ 267 1.4 matt #define DBCR2_DAC4ER_DS1 0x00000300 /* effective address MSR[DS] = 1 */ 268 1.4 matt #define DBCR2_DAC34M 0x000000c0 /* 24-25: Data Address Compare 4 effective/real mode */ 269 1.4 matt #define DBCR2_DAC34M_EXACT 0x00000000 /* equal DAC3 or DAC4 */ 270 1.4 matt #define DBCR2_DAC34M_MASK 0x00000040 /* (addr & DAC4) == (DAC3 & DAC4) */ 271 1.4 matt #define DBCR2_DAC34M_INCLUSIVE 0x00000080 /* DAC3 <= addr < DAC4 */ 272 1.4 matt #define DBCR2_DAC34M_EXCLUSIVE 0x000000c0 /* addr < DAC3 || DAC4 <= addr */ 273 1.1 matt #define SPR_IAC1 312 /* E... Instruction Address Compare 1 */ 274 1.1 matt #define SPR_IAC2 313 /* E... Instruction Address Compare 2 */ 275 1.1 matt #define SPR_IAC3 314 /* E... Instruction Address Compare 3 */ 276 1.1 matt #define SPR_IAC4 315 /* E... Instruction Address Compare 4 */ 277 1.1 matt #define SPR_DAC1 316 /* E... Data Address Compare 1 */ 278 1.1 matt #define SPR_DAC2 317 /* E... Data Address Compare 2 */ 279 1.1 matt #define SPR_TSR 336 /* E... Timer Status Register */ 280 1.1 matt #define TSR_ENW 0x80000000 /* Enable Next Watchdog (W1C) */ 281 1.1 matt #define TSR_WIS 0x40000000 /* Watchdog Interrupt Status (W1C) */ 282 1.1 matt #define TSR_WRS 0x30000000 /* Watchdog Reset Status (W1C) */ 283 1.14 andvar #define TSR_DIS 0x08000000 /* Decrementer Interrupt Status (W1C) */ 284 1.1 matt #define TSR_FIS 0x04000000 /* Fixed-interval Interrupt Status (W1C) */ 285 1.1 matt #define SPR_TCR 340 /* E... Timer Control Register */ 286 1.1 matt #define TCR_WP 0xc0000000 /* Watchdog Period */ 287 1.3 matt #define TCR_WP_2_N(n) (__SHIFTIN((n), TCR_WP) | __SHIFTIN((n) >> 2, TCR_WPEXT)) 288 1.2 matt #define TCR_WP_2_64 0x00000000 289 1.2 matt #define TCR_WP_2_1 0xc01e0000 290 1.1 matt #define TCR_WRC 0x30000000 /* Watchdog Timer Reset Control */ 291 1.3 matt #define TCR_WRC_RESET 0x20000000 292 1.1 matt #define TCR_WIE 0x08000000 /* Watchdog Time Interrupt Enable */ 293 1.14 andvar #define TCR_DIE 0x04000000 /* Decrementer Interrupt Enable */ 294 1.1 matt #define TCR_FP 0x03000000 /* Fixed-interval Timer Period */ 295 1.3 matt #define TCR_FP_2_N(n) ((((64 - (n)) & 0x30) << 20) | (((64 - (n)) & 0xf) << 13)) 296 1.2 matt #define TCR_FP_2_64 0x00000000 297 1.2 matt #define TCR_FP_2_1 0x0301e000 298 1.1 matt #define TCR_FIE 0x00800000 /* Fixed-interval Interrupt Enable */ 299 1.1 matt #define TCR_ARE 0x00400000 /* Auto-reload Enable */ 300 1.2 matt #define TCR_WPEXT 0x001e0000 /* Watchdog Period Extension */ 301 1.2 matt #define TCR_FPEXT 0x0001e000 /* Fixed-interval Period Extension */ 302 1.1 matt 303 1.1 matt #define SPR_IVOR0 400 /* E... Critical input interrupt offset */ 304 1.1 matt #define SPR_IVOR1 401 /* E... Machine check interrupt offset */ 305 1.1 matt #define SPR_IVOR2 402 /* E... Data storage interrupt offset */ 306 1.1 matt #define SPR_IVOR3 403 /* E... Instruction storage interrupt offset */ 307 1.1 matt #define SPR_IVOR4 404 /* E... External input interrupt offset */ 308 1.1 matt #define SPR_IVOR5 405 /* E... Alignment interrupt offset */ 309 1.1 matt #define SPR_IVOR6 406 /* E... Program interrupt offset */ 310 1.1 matt #define SPR_IVOR8 408 /* E... Syscall call interrupt offset */ 311 1.1 matt #define SPR_IVOR10 410 /* E... Decrementer interrupt offset */ 312 1.1 matt #define SPR_IVOR11 411 /* E... Fixed-interval timer interrupt offset */ 313 1.1 matt #define SPR_IVOR12 412 /* E... Watchdog timer interrupt offset */ 314 1.1 matt #define SPR_IVOR13 413 /* E... Data TLB error interrupt offset */ 315 1.1 matt #define SPR_IVOR14 414 /* E... Instruction TLB error interrupt offset */ 316 1.1 matt #define SPR_IVOR15 415 /* E... Debug interrupt offset */ 317 1.1 matt #define SPR_SPEFSCR 512 /* E... Signal processing and embedded floating-point status and control register */ 318 1.1 matt #define SPEFSCR_SOVH 0x80000000 /* 0: Summary Integer Overflow High */ 319 1.1 matt #define SPEFSCR_OVH 0x40000000 /* 1: Integer Overflow High */ 320 1.1 matt #define SPEFSCR_FGH 0x20000000 /* 2: Embedded Floating-Point Guard Bit High */ 321 1.1 matt #define SPEFSCR_FXH 0x10000000 /* 3: Embedded Floating-Point Sticky Bit High */ 322 1.1 matt #define SPEFSCR_FINVH 0x08000000 /* 4: Embedded Floating-Point Invalid Operation High */ 323 1.1 matt #define SPEFSCR_FDBZH 0x04000000 /* 5: Embedded Floating-Point Divide By Zero Error High */ 324 1.1 matt #define SPEFSCR_FUNFH 0x02000000 /* 6: Embedded Floating-Point Underflow Error High */ 325 1.1 matt #define SPEFSCR_FOVFH 0x01000000 /* 7: Embedded Floating-Point Overflow Error High */ 326 1.1 matt #define SPEFSCR_FINXS 0x00200000 /* 10: Embedded Floating-Point Inexact Sticky Bit */ 327 1.1 matt #define SPEFSCR_FINVS 0x00100000 /* 11: Embedded Floating-Point Invalid Operation Sticky Bit */ 328 1.1 matt #define SPEFSCR_FDBZS 0x00080000 /* 12: Embedded Floating-Point Divide By Zero Sticky Bit */ 329 1.1 matt #define SPEFSCR_FUNFS 0x00040000 /* 13: Embedded Floating-Point Underflow Sticky Bit */ 330 1.1 matt #define SPEFSCR_FOVFS 0x00020000 /* 14: Embedded Floating-Point Overflow Sticky Bit */ 331 1.1 matt #define SPEFSCR_MODE 0x00010000 /* 15: Embedded Floating-Point Mode */ 332 1.1 matt #define SPEFSCR_SOV 0x80000000 /* 16: Summary Integer Overflow */ 333 1.1 matt #define SPEFSCR_OV 0x00004000 /* 17: Integer Overflow */ 334 1.1 matt #define SPEFSCR_FG 0x00002000 /* 18: Embedded Floating-Point Guard Bit */ 335 1.1 matt #define SPEFSCR_FX 0x00001000 /* 19: Embedded Floating-Point Sticky Bit */ 336 1.1 matt #define SPEFSCR_FINV 0x00000800 /* 20: Embedded Floating-Point Invalid Operation */ 337 1.1 matt #define SPEFSCR_FDBZ 0x00000400 /* 21: Embedded Floating-Point Divide By Zero Error */ 338 1.1 matt #define SPEFSCR_FUNF 0x00000200 /* 22: Embedded Floating-Point Underflow Error */ 339 1.1 matt #define SPEFSCR_FOVF 0x00000100 /* 23: Embedded Floating-Point Overflow Error */ 340 1.14 andvar #define SPEFSCR_FINXE 0x00000040 /* 25: Embedded Floating-Point Inexact Exception Enable */ 341 1.14 andvar #define SPEFSCR_FINVE 0x00000020 /* 26: Embedded Floating-Point Invalid Operation/Input Error Exception Enable */ 342 1.1 matt #define SPEFSCR_FDBZE 0x00000010 /* 27: Embedded Floating-Point Divide By Zero Exception Enable */ 343 1.1 matt #define SPEFSCR_FUNFE 0x00000008 /* 28: Embedded Floating-Point Underflow Exception Enable */ 344 1.1 matt #define SPEFSCR_FOVFE 0x00000004 /* 29: Embedded Floating-Point Overflow Exception Enable */ 345 1.1 matt #define SPEFSCR_FRMC_MASK 0x00000003 /* 30..31: Embedded Floating-Point Rounding Mode Control */ 346 1.1 matt #define SPEFSCR_FRMC_DOWNWARD 0x00000003 /* Round toward -infinity */ 347 1.1 matt #define SPEFSCR_FRMC_UPWARD 0x00000002 /* Round toward +infinity */ 348 1.1 matt #define SPEFSCR_FRMC_TOWARDZERO 0x00000001 /* Round toward zero */ 349 1.1 matt #define SPEFSCR_FRMC_TONEAREST 0x00000000 /* Round to nearest */ 350 1.14 andvar #define SPR_BBEAR 513 /* E... Branch buffer entry addr register */ 351 1.14 andvar #define SPR_BBTAR 514 /* E... Branch buffer target addr register */ 352 1.1 matt #define SPR_L1CFG0 515 /* E... L1 Cache Configuration Register 0 */ 353 1.1 matt #define SPR_L1CFG1 516 /* E... L1 Cache Configuration Register 1 */ 354 1.1 matt #define L1CFG_CARCH_GET(n) (((n) >> 30) & 3) 355 1.1 matt #define L1CFG_CARCH_HARVARD 0 356 1.1 matt #define L1CFG_CARCH_UNIFIED 1 357 1.1 matt #define L1CFG_CBSIZE_GET(n) (((n) >> 23) & 3) 358 1.1 matt #define L1CFG_CBSIZE_32B 0 359 1.1 matt #define L1CFG_CBSIZE_64B 1 360 1.1 matt #define L1CFG_CREPL_GET(n) (((n) >> 21) & 3) 361 1.1 matt #define L1CFG_CREPL_TRUE_LRU 0 362 1.1 matt #define L1CFG_CREPL_PSEUDO_LRU 1 363 1.1 matt #define L1CFG_CLA_P(n) (((n) >> 20) & 1) 364 1.1 matt #define L1CFG_CPA_P(n) (((n) >> 19) & 1) 365 1.3 matt #define L1CFG_CNWAY_GET(n) ((((n) >> 11) & 0xff) + 1) 366 1.1 matt #define L1CFG_CSIZE_GET(n) ((((n) >> 0) & 0x7ff) << 10) 367 1.1 matt #define SPR_ATBL 526 /* E... Alternate Time Base Lower */ 368 1.1 matt #define SPR_ATBU 527 /* E... Alternate Time Base Upper */ 369 1.1 matt #define SPR_IVOR32 528 /* E... SPE unavailable interrupt offset */ 370 1.1 matt #define SPR_IVOR33 529 /* E... Floating-point data exception interrupt offset */ 371 1.1 matt #define SPR_IVOR34 530 /* E... Floating-point round exception interrupt offset */ 372 1.1 matt #define SPR_IVOR35 531 /* E... Performance monitor interrupt offset */ 373 1.1 matt #define SPR_MCARU 569 /* E... Machine check address register upper */ 374 1.1 matt #define SPR_MCSRR0 570 /* E... Machine check save/restore register 0 */ 375 1.1 matt #define SPR_MCSRR1 571 /* E... Machine check save/restore register 1 */ 376 1.1 matt #define SPR_MCSR 572 /* E... Machine check syndrome register */ 377 1.1 matt #define MCSR_MCP 0x80000000 /* 0: Machine Check Input Pin */ 378 1.1 matt #define MCSR_ICPERR 0x40000000 /* 1: Instruction Cache Parity Error */ 379 1.1 matt #define MCSR_DCP_PERR 0x20000000 /* 2: Data Cache Push Parity Error */ 380 1.1 matt #define MCSR_DCPERR 0x10000000 /* 3: Data Cache Parity Error */ 381 1.1 matt #define MCSR_NMI 0x00100000 /* 12: non maskable interrupt */ 382 1.1 matt #define MCSR_MAV 0x00080000 /* 13: MCAR address valid */ 383 1.1 matt #define MCSR_MEA 0x00040000 /* 14: MCAR [is an] effective address */ 384 1.1 matt #define MCSR_BUS_IAERR 0x00000080 /* 24: Bus Instruction Address Error */ 385 1.1 matt #define MCSR_BUS_RAERR 0x00000040 /* 25: Bus Read Address Error */ 386 1.1 matt #define MCSR_BUS_WAERR 0x00000020 /* 26: Bus Write Address Error */ 387 1.1 matt #define MCSR_BUS_IBERR 0x00000010 /* 27: Bus Instruction Data Bus Error */ 388 1.1 matt #define MCSR_BUS_RBERR 0x00000008 /* 28: Bus Read Data Bus Error */ 389 1.1 matt #define MCSR_BUS_WBERR 0x00000004 /* 29: Bus Write Data Bus Error */ 390 1.1 matt #define MCSR_BUS_IPERR 0x00000002 /* 30: Bus Instruction Parity Error */ 391 1.1 matt #define MCSR_BUS_RPERR 0x00000001 /* 31: Bus Read Parity Error */ 392 1.1 matt #define SPR_MCAR 573 /* E... Machine check address register */ 393 1.1 matt #define SPR_MAS0 624 /* E... MAS Register 0 */ 394 1.3 matt #define MAS0_TLBSEL 0x30000000 /* Select TLB<n> for access */ 395 1.3 matt #define MAS0_TLBSEL_TLB3 0x30000000 /* Select TLB3 for access */ 396 1.3 matt #define MAS0_TLBSEL_TLB2 0x20000000 /* Select TLB2 for access */ 397 1.3 matt #define MAS0_TLBSEL_TLB1 0x10000000 /* Select TLB1 for access */ 398 1.1 matt #define MAS0_TLBSEL_TLB0 0x00000000 /* Select TLB0 for access */ 399 1.1 matt #define MASX_TLBSEL_GET(n) (((n) >> 28) & 3) 400 1.1 matt #define MASX_TLBSEL_MAKE(n) (((n) & 3) << 28) 401 1.1 matt #define MAS0_ESEL 0x0fff0000 /* entry (way) select for tlbwe */ 402 1.1 matt #define MAS0_ESEL_GET(n) (((n) >> 16) & 4095) 403 1.1 matt #define MAS0_ESEL_MAKE(n) (((n) & 4095) << 16) 404 1.1 matt #define MAS0_NV 0x00000fff /* next victim fr TLB0[NV] */ 405 1.1 matt #define SPR_MAS1 625 /* E... MAS Register 1 */ 406 1.1 matt #define MAS1_V 0x80000000 /* TLB Valid Bit */ 407 1.1 matt #define MAS1_IPROT 0x40000000 /* Invalidate Protect */ 408 1.1 matt #define MAS1_TID 0x0fff0000 /* Translation Identity */ 409 1.1 matt #define MASX_TID_GET(n) (((n) >> 16) & 4095) 410 1.1 matt #define MASX_TID_MAKE(n) (((n) & 4095) << 16) 411 1.1 matt #define MAS1_TS 0x00001000 /* Translation Space [IS/DS MSR] */ 412 1.1 matt #define MAS1_TS_SHIFT 12 413 1.1 matt #define MAS1_TSIZE 0x00000f00 /* Translation Size (4KB**tsize) */ 414 1.3 matt #define MASX_TSIZE_4KB 0x00000100 /* 4KB TSIZE */ 415 1.3 matt #define MASX_TSIZE_16KB 0x00000200 /* 16KB TSIZE */ 416 1.3 matt #define MASX_TSIZE_64KB 0x00000300 /* 64KB TSIZE */ 417 1.3 matt #define MASX_TSIZE_256KB 0x00000400 /* 256KB TSIZE */ 418 1.3 matt #define MASX_TSIZE_1MB 0x00000500 /* 1MB TSIZE */ 419 1.3 matt #define MASX_TSIZE_4MB 0x00000600 /* 4MB TSIZE */ 420 1.3 matt #define MASX_TSIZE_16MB 0x00000700 /* 16MB TSIZE */ 421 1.3 matt #define MASX_TSIZE_64MB 0x00000800 /* 64MB TSIZE */ 422 1.3 matt #define MASX_TSIZE_256MB 0x00000900 /* 256MB TSIZE */ 423 1.3 matt #define MASX_TSIZE_1GB 0x00000a00 /* 1GB TSIZE */ 424 1.3 matt #define MASX_TSIZE_4GB 0x00000b00 /* 4GB TSIZE */ 425 1.1 matt #define MASX_TSIZE_GET(n) (((n) >> 8) & 15) 426 1.1 matt #define MASX_TSIZE_MAKE(n) (((n) & 15) << 8) 427 1.1 matt #define SPR_MAS2 626 /* E... MAS Register 2 */ 428 1.1 matt #define MAS2_EPN 0xfffff000 /* Effective Page Number */ 429 1.1 matt #define MAS2_EPN_GET(n) (((n) >> 12) & 1048575) 430 1.1 matt #define MAS2_EPN_MAKE(n) (((n) & 1048575) << 12) 431 1.1 matt #define MAS2_X0 0x00000040 /* Impl. dependent page attr. */ 432 1.1 matt #define MAS2_ACM 0x000000c0 /* Alternate Coherency Mode. */ 433 1.1 matt #define MAS2_X1 0x00000020 /* Impl. dependent page attr. */ 434 1.1 matt #define MAS2_VLE 0x00000020 /* VLE mode. */ 435 1.1 matt #define MAS2_WIMGE 0x0000001f /* Mask of next 5 bits */ 436 1.1 matt #define MAS2_W 0x00000010 /* Write-through */ 437 1.1 matt #define MAS2_I 0x00000008 /* cache-Inhibited */ 438 1.1 matt #define MAS2_M 0x00000004 /* Memory coherency required */ 439 1.14 andvar #define MAS2_G 0x00000002 /* Guarded */ 440 1.1 matt #define MAS2_E 0x00000001 /* [little] Endianness */ 441 1.1 matt #define SPR_MAS3 627 /* E... MAS Register 3 */ 442 1.1 matt #define MAS3_RPN 0xfffff000 /* Real Page Number */ 443 1.1 matt #define MAS3_RPN_GET(n) (((n) >> 12) & 1048575) 444 1.1 matt #define MAS3_RPN_MAKE(n) (((n) & 1048575) << 12) 445 1.1 matt #define MAS3_U0 0x00000200 /* User attribute 0 */ 446 1.1 matt #define MAS3_U1 0x00000100 /* User attribute 1 */ 447 1.1 matt #define MAS3_U2 0x00000080 /* User attribute 2 */ 448 1.1 matt #define MAS3_U3 0x00000040 /* User attribute 3 */ 449 1.1 matt #define MAS3_UX 0x00000020 /* User execute permission */ 450 1.1 matt #define MAS3_SX 0x00000010 /* System execute permission */ 451 1.1 matt #define MAS3_UW 0x00000008 /* User write permission */ 452 1.1 matt #define MAS3_SW 0x00000004 /* System write permission */ 453 1.1 matt #define MAS3_UR 0x00000002 /* User read permission */ 454 1.1 matt #define MAS3_SR 0x00000001 /* System read permission */ 455 1.1 matt #define SPR_MAS4 628 /* E... MAS Register 4 */ 456 1.1 matt #define MAS4_TLBSELD 0x30000000 /* TLBSEL default value */ 457 1.3 matt #define MAS4_TLBSEL_TLB3 0x30000000 /* Select TLB3 for access */ 458 1.3 matt #define MAS4_TLBSEL_TLB2 0x20000000 /* Select TLB2 for access */ 459 1.3 matt #define MAS4_TLBSEL_TLB1 0x10000000 /* Select TLB1 for access */ 460 1.3 matt #define MAS4_TLBSEL_TLB0 0x00000000 /* Select TLB0 for access */ 461 1.3 matt #define MAS4_TIDSELD 0x00030000 /* select TID default value */ 462 1.3 matt #define MAS4_TIDSELD_TIDZ 0x00030000 /* fill in MAS1[TID] with 0 */ 463 1.3 matt #define MAS4_TIDSELD_PID2 0x00020000 /* fill in MAS1[TAD] from ... */ 464 1.3 matt #define MAS4_TIDSELD_PID1 0x00010000 /* fill in MAS1[TAD] from ... */ 465 1.3 matt #define MAS4_TIDSELD_PID0 0x00000000 /* fill in MAS1[TAD] from ... */ 466 1.1 matt #define MAS4_TSIZED 0x00000f00 /* TSIZE default value */ 467 1.3 matt #define MAS4_TSIZED_4KB 0x00000100 /* 4KB TSIZE */ 468 1.1 matt #define MAS4_ACMD 0x000000c0 /* Alternate Coherency Mode. */ 469 1.1 matt #define MAS4_X0D 0x00000040 /* default Impl. dep. page attr. */ 470 1.1 matt #define MAS4_VLED 0x00000020 /* VLE mode. */ 471 1.1 matt #define MAS4_X1D 0x00000020 /* default Impl. dep. page attr. */ 472 1.1 matt #define MAS4_WD 0x00000010 /* default Write-through */ 473 1.1 matt #define MAS4_ID 0x00000008 /* default Cache-inhibited */ 474 1.1 matt #define MAS4_MD 0x00000004 /* default Memory coherency req. */ 475 1.14 andvar #define MAS4_GD 0x00000002 /* default Guarded */ 476 1.1 matt #define MAS4_ED 0x00000001 /* default [little] Endianness */ 477 1.15 msaitoh #define SPR_MAS6 630 /* E... MAS Register 6 (TLB Search CTX) */ 478 1.1 matt #define MAS6_SPID0 0x0fff0000 /* PID used with tlbsx */ 479 1.1 matt #define MAS6_SPID0_SHIFT 16 480 1.1 matt #define MAS6_SAS 0x00000001 /* Address space (IS/DS MSR) ... */ 481 1.1 matt #define MAS6_SAS_USER 0x00000001 /* Address space (IS/DS MSR) ... */ 482 1.1 matt #define SPR_PID1 633 /* E... PID Register 1 */ 483 1.1 matt #define SPR_PID2 634 /* E... PID Register 2 */ 484 1.1 matt #define SPR_TLB0CFG 688 /* E... TLB Configuration Register 0 */ 485 1.1 matt #define SPR_TLB1CFG 689 /* E... TLB Configuration Register 1 */ 486 1.1 matt #define TLBCFG_ASSOC(n) (((n) >> 24) & 0xff) /* assoc of tlb */ 487 1.1 matt #define TLBCFG_MINSIZE(n) (((n) >> 20) & 0x0f) /* minpagesize */ 488 1.1 matt #define TLBCFG_MAXSIZE(n) (((n) >> 16) & 0x0f) /* maxpagesize */ 489 1.1 matt #define TLBCFG_IPROT_P(n) (((n) >> 15) & 0x01) 490 1.1 matt #define TLBCFG_AVAIL_P(n) (((n) >> 14) & 0x01) /* variable page size */ 491 1.1 matt #define TLBCFG_NENTRY(n) (((n) >> 0) & 0xfff) /* # entrys */ 492 1.1 matt #define SPR_MAS7 944 /* E... MAS Register 7 */ 493 1.1 matt #define MAS7_RPNHI 0x00000004 /* bits 32-35 of RPN */ 494 1.1 matt #define SPR_HID0 1008 495 1.3 matt #define HID0_EMCP 0x80000000 /* Enable Machine Check Pin */ 496 1.3 matt #define HID0_DOZE 0x00800000 /* Core in doze mode */ 497 1.3 matt #define HID0_NAP 0x00400000 /* Core in nap mode */ 498 1.3 matt #define HID0_SLEEP 0x00200000 /* Core in sleep mode */ 499 1.3 matt #define HID0_TBEN 0x00004000 /* Time Base ENable */ 500 1.3 matt #define HID0_SEL_TBCLK 0x00002000 /* SELect Time Base Clock */ 501 1.3 matt #define HID0_EN_MAS7_UPDATE 0x00000080 /* ENable MAS7 UPDATE */ 502 1.3 matt #define HID0_DCFA 0x00000040 /* Data Cache Flush Assist */ 503 1.3 matt #define HID0_NOOPTI 0x00000001 /* NO-OP Touch Instructions */ 504 1.1 matt #define SPR_HID1 1009 505 1.7 matt #define HID1_ASTME 0x00004000 /* Address Streaming Enable */ 506 1.7 matt #define HID1_ABE 0x00001000 /* Address Broadcast Enable */ 507 1.1 matt #define SPR_L1CSR0 1010 /* E... L1 Cache Control and Status Register 0 (Data) */ 508 1.1 matt #define SPR_L1CSR1 1011 /* E... L1 Cache Control and Status Register 1 (Instruction) */ 509 1.1 matt #define L1CSR_CPE 0x00010000 /* 15: Cache Parity Error */ 510 1.1 matt #define L1CSR_CPI 0x00008000 /* 16: Cache Parity Injection Enable */ 511 1.1 matt #define L1CSR_CSLC 0x00000800 /* 20: Cache Snoop Lock Clear */ 512 1.1 matt #define L1CSR_CUL 0x00000400 /* 21: Cache Unable to Lock (W0C) */ 513 1.1 matt #define L1CSR_CLO 0x00000200 /* 22: Cache Lock Overflow (W0C) */ 514 1.1 matt #define L1CSR_CLFR 0x00000100 /* 23: Cache Lock Bits Flash Reset */ 515 1.1 matt #define L1CSR_CFI 0x00000002 /* 30: Cache Flash Invalidate */ 516 1.1 matt #define L1CSR_CE 0x00000001 /* 31: Cache Enable */ 517 1.1 matt #define SPR_MMUCSR0 1012 /* E... MMU Control and Status Register 0 */ 518 1.1 matt #define MMUCSR0_TLB2_FI 0x00000040 /* TLB2 Flash Invalidate */ 519 1.1 matt #define MMUCSR0_TLB3_FI 0x00000020 /* TLB3 Flash Invalidate */ 520 1.1 matt #define MMUCSR0_TLB0_FI 0x00000004 /* TLB0 Flash Invalidate */ 521 1.1 matt #define MMUCSR0_TLB1_FI 0x00000002 /* TLB1 Flash Invalidate */ 522 1.1 matt #define SPR_BUCSR 1013 /* E... Branch Unit Control and Status Register */ 523 1.1 matt #define SPR_MMUCFG 1015 /* E... MMU Configuration Register */ 524 1.1 matt #define MMUCFG_RASIZE_GET(n) (((n) >> 17) & 127) /* Real Address Size */ 525 1.1 matt #define MMUCFG_NPIDS_GET(n) (((n) >> 11) & 15) /* # of PID registers */ 526 1.1 matt #define MMUCFG_PIDSIZE_GET(n) (((n) >> 6) & 31) /* PID is PIDSIZE+1 bits wide */ 527 1.1 matt #define MMUCFG_NTLBS_GET(n) (((n) >> 2) & 3) /* NTLBS is max value of MAS0[TLBSEL] */ 528 1.1 matt #define MMUCFG_MAVN 0x00000003 /* MMU Architecture Version Number */ 529 1.1 matt #define MMUCFG_MAVN_V1 0 530 1.13 nonaka #define MMUCFG_MAVN_V2 1 531 1.1 matt #define SPR_SVR 1023 /* E... System Version Register */ 532 1.1 matt 533 1.1 matt #define PMR_PMC0 16 534 1.1 matt #define PMR_PMC1 17 535 1.1 matt #define PMR_PMC2 18 536 1.1 matt #define PMR_PMC3 19 537 1.1 matt #define PMR_PMLCa0 144 538 1.1 matt #define PMR_PMLCa1 145 539 1.1 matt #define PMR_PMLCa2 146 540 1.1 matt #define PMR_PMLCa3 147 541 1.1 matt #define PMLCa_FC 0x80000000 /* 0: Freeze Counter */ 542 1.1 matt #define PMLCa_FCS 0x40000000 /* 1: Freeze Counter In Super */ 543 1.1 matt #define PMLCa_FCU 0x20000000 /* 2: Freeze Counter In User */ 544 1.1 matt #define PMLCa_FCM1 0x10000000 /* 3: Freeze Counter While Mark=1 */ 545 1.1 matt #define PMLCa_FCM0 0x08000000 /* 4: Freeze Counter While Mark=0 */ 546 1.1 matt #define PMLCa_CE 0x04000000 /* 5: Condition Enable */ 547 1.1 matt #define PMLCa_EVENT 0x007f0000 /* 9..15: Event */ 548 1.1 matt #define PMLCa_EVENT_GET(n) (((n) >> 16) & 127) 549 1.1 matt #define PMLCa_EVENT_MAKE(n) (((n) & 127) << 16) 550 1.1 matt 551 1.1 matt #define PMR_PMLCb0 272 552 1.1 matt #define PMR_PMLCb1 273 553 1.1 matt #define PMR_PMLCb2 274 554 1.1 matt #define PMR_PMLCb3 275 555 1.1 matt #define PMLCb_THRESHMUL 0x00007f00 /* 21..23: multiply threshold by 2**<n> */ 556 1.1 matt #define PMLCb_THRESHMUL_GET(n) (((n) >> 16) & 127) 557 1.1 matt #define PMLCb_THRESHMUL_MAKE(n) (((n) & 127) << 16) 558 1.1 matt #define PMLCb_THRESHOLD 0x0000003f /* 26..31: threshold */ 559 1.1 matt #define PMLCb_THRESHOLD_GET(n) (((n) >> 0) & 63) 560 1.1 matt #define PMLCb_THRESHOLD_MAKE(n) (((n) & 63) << 0) 561 1.1 matt #define PMR_PMGC0 400 562 1.1 matt #define PMGC0_FAC 0x80000000 /* 0: Freeze All Counters */ 563 1.1 matt #define PMGC0_PMIE 0x40000000 /* 1: Performance Monitor Interrupt Enable */ 564 1.1 matt #define PMGC0_FCECE 0x40000000 /* 1: Freeze count on enabled condition or event */ 565 1.1 matt #define PMGC0_TBSEL 0x00001800 /* 19..20: Time base selector */ 566 1.1 matt #define PMGC0_TBEE 0x00000100 /* 23: Time base transition event exception enable */ 567 1.1 matt 568 1.1 matt #define PMR_UPMC0 (PMR_PMC0 - 16) 569 1.1 matt #define PMR_UPMC1 (PMR_PMC1 - 16) 570 1.1 matt #define PMR_UPMC2 (PMR_PMC2 - 16) 571 1.1 matt #define PMR_UPMC3 (PMR_PMC3 - 16) 572 1.1 matt #define PMR_UPMLCa0 (PMR_PMLCa0 - 16) 573 1.1 matt #define PMR_UPMLCa1 (PMR_PMLCa1 - 16) 574 1.1 matt #define PMR_UPMLCa2 (PMR_PMLCa2 - 16) 575 1.1 matt #define PMR_UPMLCa3 (PMR_PMLCa3 - 16) 576 1.1 matt #define PMR_UPMLCb0 (PMR_PMLCb0 - 16) 577 1.1 matt #define PMR_UPMLCb1 (PMR_PMLCb1 - 16) 578 1.1 matt #define PMR_UPMLCb2 (PMR_PMLCb2 - 16) 579 1.1 matt #define PMR_UPMLCb3 (PMR_PMLCb3 - 16) 580 1.1 matt #define PMR_UPMGC0 (PMR_PMGC0 - 16) 581 1.1 matt 582 1.3 matt #endif /* !_POWERPC_BOOKE_SPR_H_ */ 583