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79aceca5 1/*
3fc6c082 2 * PowerPC emulation cpu definitions for qemu.
5fafdf24 3 *
76a66253 4 * Copyright (c) 2003-2007 Jocelyn Mayer
79aceca5
FB
5 *
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2 of the License, or (at your option) any later version.
10 *
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
15 *
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 */
20#if !defined (__CPU_PPC_H__)
21#define __CPU_PPC_H__
22
3fc6c082 23#include "config.h"
de270b3c 24#include <inttypes.h>
3fc6c082 25
a4f30719
JM
26//#define PPC_EMULATE_32BITS_HYPV
27
76a66253 28#if defined (TARGET_PPC64)
3cd7d1dd 29/* PowerPC 64 definitions */
d9d7210c 30#define TARGET_LONG_BITS 64
35cdaad6 31#define TARGET_PAGE_BITS 12
3cd7d1dd
JM
32
33#else /* defined (TARGET_PPC64) */
34/* PowerPC 32 definitions */
d9d7210c 35#define TARGET_LONG_BITS 32
3cd7d1dd
JM
36
37#if defined(TARGET_PPCEMB)
38/* Specific definitions for PowerPC embedded */
39/* BookE have 36 bits physical address space */
40#define TARGET_PHYS_ADDR_BITS 64
41#if defined(CONFIG_USER_ONLY)
42/* It looks like a lot of Linux programs assume page size
43 * is 4kB long. This is evil, but we have to deal with it...
44 */
35cdaad6 45#define TARGET_PAGE_BITS 12
3cd7d1dd
JM
46#else /* defined(CONFIG_USER_ONLY) */
47/* Pages can be 1 kB small */
48#define TARGET_PAGE_BITS 10
49#endif /* defined(CONFIG_USER_ONLY) */
50#else /* defined(TARGET_PPCEMB) */
51/* "standard" PowerPC 32 definitions */
52#define TARGET_PAGE_BITS 12
53#endif /* defined(TARGET_PPCEMB) */
54
55#endif /* defined (TARGET_PPC64) */
3cf1e035 56
79aceca5
FB
57#include "cpu-defs.h"
58
6b542af7 59#define REGX "%016" PRIx64
e96efcfc
JM
60#define ADDRX TARGET_FMT_lx
61#define PADDRX TARGET_FMT_plx
62
79aceca5
FB
63#include <setjmp.h>
64
4ecc3190
FB
65#include "softfloat.h"
66
1fddef4b
FB
67#define TARGET_HAS_ICE 1
68
76a66253
JM
69#if defined (TARGET_PPC64)
70#define ELF_MACHINE EM_PPC64
71#else
72#define ELF_MACHINE EM_PPC
73#endif
9042c0e2 74
3fc6c082 75/*****************************************************************************/
a750fc0b 76/* MMU model */
7820dbf3
JM
77typedef enum powerpc_mmu_t powerpc_mmu_t;
78enum powerpc_mmu_t {
add78955 79 POWERPC_MMU_UNKNOWN = 0x00000000,
a750fc0b 80 /* Standard 32 bits PowerPC MMU */
add78955 81 POWERPC_MMU_32B = 0x00000001,
a750fc0b 82 /* PowerPC 6xx MMU with software TLB */
add78955 83 POWERPC_MMU_SOFT_6xx = 0x00000002,
a750fc0b 84 /* PowerPC 74xx MMU with software TLB */
add78955 85 POWERPC_MMU_SOFT_74xx = 0x00000003,
a750fc0b 86 /* PowerPC 4xx MMU with software TLB */
add78955 87 POWERPC_MMU_SOFT_4xx = 0x00000004,
a750fc0b 88 /* PowerPC 4xx MMU with software TLB and zones protections */
add78955 89 POWERPC_MMU_SOFT_4xx_Z = 0x00000005,
b4095fed 90 /* PowerPC MMU in real mode only */
add78955 91 POWERPC_MMU_REAL = 0x00000006,
b4095fed 92 /* Freescale MPC8xx MMU model */
add78955 93 POWERPC_MMU_MPC8xx = 0x00000007,
a750fc0b 94 /* BookE MMU model */
add78955 95 POWERPC_MMU_BOOKE = 0x00000008,
a750fc0b 96 /* BookE FSL MMU model */
add78955 97 POWERPC_MMU_BOOKE_FSL = 0x00000009,
faadf50e 98 /* PowerPC 601 MMU model (specific BATs format) */
add78955 99 POWERPC_MMU_601 = 0x0000000A,
00af685f 100#if defined(TARGET_PPC64)
add78955 101#define POWERPC_MMU_64 0x00010000
12de9a39 102 /* 64 bits PowerPC MMU */
add78955
JM
103 POWERPC_MMU_64B = POWERPC_MMU_64 | 0x00000001,
104 /* 620 variant (no segment exceptions) */
105 POWERPC_MMU_620 = POWERPC_MMU_64 | 0x00000002,
00af685f 106#endif /* defined(TARGET_PPC64) */
3fc6c082
FB
107};
108
109/*****************************************************************************/
a750fc0b 110/* Exception model */
7820dbf3
JM
111typedef enum powerpc_excp_t powerpc_excp_t;
112enum powerpc_excp_t {
a750fc0b 113 POWERPC_EXCP_UNKNOWN = 0,
3fc6c082 114 /* Standard PowerPC exception model */
a750fc0b 115 POWERPC_EXCP_STD,
2662a059 116 /* PowerPC 40x exception model */
a750fc0b 117 POWERPC_EXCP_40x,
2662a059 118 /* PowerPC 601 exception model */
a750fc0b 119 POWERPC_EXCP_601,
2662a059 120 /* PowerPC 602 exception model */
a750fc0b 121 POWERPC_EXCP_602,
2662a059 122 /* PowerPC 603 exception model */
a750fc0b
JM
123 POWERPC_EXCP_603,
124 /* PowerPC 603e exception model */
125 POWERPC_EXCP_603E,
126 /* PowerPC G2 exception model */
127 POWERPC_EXCP_G2,
2662a059 128 /* PowerPC 604 exception model */
a750fc0b 129 POWERPC_EXCP_604,
2662a059 130 /* PowerPC 7x0 exception model */
a750fc0b 131 POWERPC_EXCP_7x0,
2662a059 132 /* PowerPC 7x5 exception model */
a750fc0b 133 POWERPC_EXCP_7x5,
2662a059 134 /* PowerPC 74xx exception model */
a750fc0b 135 POWERPC_EXCP_74xx,
2662a059 136 /* BookE exception model */
a750fc0b 137 POWERPC_EXCP_BOOKE,
00af685f
JM
138#if defined(TARGET_PPC64)
139 /* PowerPC 970 exception model */
140 POWERPC_EXCP_970,
141#endif /* defined(TARGET_PPC64) */
a750fc0b
JM
142};
143
e1833e1f
JM
144/*****************************************************************************/
145/* Exception vectors definitions */
146enum {
147 POWERPC_EXCP_NONE = -1,
148 /* The 64 first entries are used by the PowerPC embedded specification */
149 POWERPC_EXCP_CRITICAL = 0, /* Critical input */
150 POWERPC_EXCP_MCHECK = 1, /* Machine check exception */
151 POWERPC_EXCP_DSI = 2, /* Data storage exception */
152 POWERPC_EXCP_ISI = 3, /* Instruction storage exception */
153 POWERPC_EXCP_EXTERNAL = 4, /* External input */
154 POWERPC_EXCP_ALIGN = 5, /* Alignment exception */
155 POWERPC_EXCP_PROGRAM = 6, /* Program exception */
156 POWERPC_EXCP_FPU = 7, /* Floating-point unavailable exception */
157 POWERPC_EXCP_SYSCALL = 8, /* System call exception */
158 POWERPC_EXCP_APU = 9, /* Auxiliary processor unavailable */
159 POWERPC_EXCP_DECR = 10, /* Decrementer exception */
160 POWERPC_EXCP_FIT = 11, /* Fixed-interval timer interrupt */
161 POWERPC_EXCP_WDT = 12, /* Watchdog timer interrupt */
b4095fed
JM
162 POWERPC_EXCP_DTLB = 13, /* Data TLB miss */
163 POWERPC_EXCP_ITLB = 14, /* Instruction TLB miss */
e1833e1f
JM
164 POWERPC_EXCP_DEBUG = 15, /* Debug interrupt */
165 /* Vectors 16 to 31 are reserved */
e1833e1f
JM
166 POWERPC_EXCP_SPEU = 32, /* SPE/embedded floating-point unavailable */
167 POWERPC_EXCP_EFPDI = 33, /* Embedded floating-point data interrupt */
168 POWERPC_EXCP_EFPRI = 34, /* Embedded floating-point round interrupt */
169 POWERPC_EXCP_EPERFM = 35, /* Embedded performance monitor interrupt */
170 POWERPC_EXCP_DOORI = 36, /* Embedded doorbell interrupt */
171 POWERPC_EXCP_DOORCI = 37, /* Embedded doorbell critical interrupt */
e1833e1f
JM
172 /* Vectors 38 to 63 are reserved */
173 /* Exceptions defined in the PowerPC server specification */
174 POWERPC_EXCP_RESET = 64, /* System reset exception */
e1833e1f
JM
175 POWERPC_EXCP_DSEG = 65, /* Data segment exception */
176 POWERPC_EXCP_ISEG = 66, /* Instruction segment exception */
e1833e1f 177 POWERPC_EXCP_HDECR = 67, /* Hypervisor decrementer exception */
e1833e1f 178 POWERPC_EXCP_TRACE = 68, /* Trace exception */
e1833e1f
JM
179 POWERPC_EXCP_HDSI = 69, /* Hypervisor data storage exception */
180 POWERPC_EXCP_HISI = 70, /* Hypervisor instruction storage exception */
181 POWERPC_EXCP_HDSEG = 71, /* Hypervisor data segment exception */
182 POWERPC_EXCP_HISEG = 72, /* Hypervisor instruction segment exception */
e1833e1f
JM
183 POWERPC_EXCP_VPU = 73, /* Vector unavailable exception */
184 /* 40x specific exceptions */
185 POWERPC_EXCP_PIT = 74, /* Programmable interval timer interrupt */
186 /* 601 specific exceptions */
187 POWERPC_EXCP_IO = 75, /* IO error exception */
188 POWERPC_EXCP_RUNM = 76, /* Run mode exception */
189 /* 602 specific exceptions */
190 POWERPC_EXCP_EMUL = 77, /* Emulation trap exception */
191 /* 602/603 specific exceptions */
b4095fed 192 POWERPC_EXCP_IFTLB = 78, /* Instruction fetch TLB miss */
e1833e1f
JM
193 POWERPC_EXCP_DLTLB = 79, /* Data load TLB miss */
194 POWERPC_EXCP_DSTLB = 80, /* Data store TLB miss */
195 /* Exceptions available on most PowerPC */
196 POWERPC_EXCP_FPA = 81, /* Floating-point assist exception */
b4095fed
JM
197 POWERPC_EXCP_DABR = 82, /* Data address breakpoint */
198 POWERPC_EXCP_IABR = 83, /* Instruction address breakpoint */
199 POWERPC_EXCP_SMI = 84, /* System management interrupt */
200 POWERPC_EXCP_PERFM = 85, /* Embedded performance monitor interrupt */
e1833e1f 201 /* 7xx/74xx specific exceptions */
b4095fed 202 POWERPC_EXCP_THERM = 86, /* Thermal interrupt */
e1833e1f 203 /* 74xx specific exceptions */
b4095fed 204 POWERPC_EXCP_VPUA = 87, /* Vector assist exception */
e1833e1f 205 /* 970FX specific exceptions */
b4095fed
JM
206 POWERPC_EXCP_SOFTP = 88, /* Soft patch exception */
207 POWERPC_EXCP_MAINT = 89, /* Maintenance exception */
208 /* Freescale embeded cores specific exceptions */
209 POWERPC_EXCP_MEXTBR = 90, /* Maskable external breakpoint */
210 POWERPC_EXCP_NMEXTBR = 91, /* Non maskable external breakpoint */
211 POWERPC_EXCP_ITLBE = 92, /* Instruction TLB error */
212 POWERPC_EXCP_DTLBE = 93, /* Data TLB error */
e1833e1f
JM
213 /* EOL */
214 POWERPC_EXCP_NB = 96,
215 /* Qemu exceptions: used internally during code translation */
216 POWERPC_EXCP_STOP = 0x200, /* stop translation */
217 POWERPC_EXCP_BRANCH = 0x201, /* branch instruction */
218 /* Qemu exceptions: special cases we want to stop translation */
219 POWERPC_EXCP_SYNC = 0x202, /* context synchronizing instruction */
220 POWERPC_EXCP_SYSCALL_USER = 0x203, /* System call in user mode only */
221};
222
e1833e1f
JM
223/* Exceptions error codes */
224enum {
225 /* Exception subtypes for POWERPC_EXCP_ALIGN */
226 POWERPC_EXCP_ALIGN_FP = 0x01, /* FP alignment exception */
227 POWERPC_EXCP_ALIGN_LST = 0x02, /* Unaligned mult/extern load/store */
228 POWERPC_EXCP_ALIGN_LE = 0x03, /* Multiple little-endian access */
229 POWERPC_EXCP_ALIGN_PROT = 0x04, /* Access cross protection boundary */
230 POWERPC_EXCP_ALIGN_BAT = 0x05, /* Access cross a BAT/seg boundary */
231 POWERPC_EXCP_ALIGN_CACHE = 0x06, /* Impossible dcbz access */
232 /* Exception subtypes for POWERPC_EXCP_PROGRAM */
233 /* FP exceptions */
234 POWERPC_EXCP_FP = 0x10,
235 POWERPC_EXCP_FP_OX = 0x01, /* FP overflow */
236 POWERPC_EXCP_FP_UX = 0x02, /* FP underflow */
237 POWERPC_EXCP_FP_ZX = 0x03, /* FP divide by zero */
238 POWERPC_EXCP_FP_XX = 0x04, /* FP inexact */
7c58044c 239 POWERPC_EXCP_FP_VXSNAN = 0x05, /* FP invalid SNaN op */
e1833e1f
JM
240 POWERPC_EXCP_FP_VXISI = 0x06, /* FP invalid infinite subtraction */
241 POWERPC_EXCP_FP_VXIDI = 0x07, /* FP invalid infinite divide */
242 POWERPC_EXCP_FP_VXZDZ = 0x08, /* FP invalid zero divide */
243 POWERPC_EXCP_FP_VXIMZ = 0x09, /* FP invalid infinite * zero */
244 POWERPC_EXCP_FP_VXVC = 0x0A, /* FP invalid compare */
245 POWERPC_EXCP_FP_VXSOFT = 0x0B, /* FP invalid operation */
246 POWERPC_EXCP_FP_VXSQRT = 0x0C, /* FP invalid square root */
247 POWERPC_EXCP_FP_VXCVI = 0x0D, /* FP invalid integer conversion */
248 /* Invalid instruction */
249 POWERPC_EXCP_INVAL = 0x20,
250 POWERPC_EXCP_INVAL_INVAL = 0x01, /* Invalid instruction */
251 POWERPC_EXCP_INVAL_LSWX = 0x02, /* Invalid lswx instruction */
252 POWERPC_EXCP_INVAL_SPR = 0x03, /* Invalid SPR access */
253 POWERPC_EXCP_INVAL_FP = 0x04, /* Unimplemented mandatory fp instr */
254 /* Privileged instruction */
255 POWERPC_EXCP_PRIV = 0x30,
256 POWERPC_EXCP_PRIV_OPC = 0x01, /* Privileged operation exception */
257 POWERPC_EXCP_PRIV_REG = 0x02, /* Privileged register exception */
258 /* Trap */
259 POWERPC_EXCP_TRAP = 0x40,
260};
261
a750fc0b
JM
262/*****************************************************************************/
263/* Input pins model */
7820dbf3
JM
264typedef enum powerpc_input_t powerpc_input_t;
265enum powerpc_input_t {
a750fc0b 266 PPC_FLAGS_INPUT_UNKNOWN = 0,
2662a059 267 /* PowerPC 6xx bus */
a750fc0b 268 PPC_FLAGS_INPUT_6xx,
2662a059 269 /* BookE bus */
a750fc0b
JM
270 PPC_FLAGS_INPUT_BookE,
271 /* PowerPC 405 bus */
272 PPC_FLAGS_INPUT_405,
2662a059 273 /* PowerPC 970 bus */
a750fc0b
JM
274 PPC_FLAGS_INPUT_970,
275 /* PowerPC 401 bus */
276 PPC_FLAGS_INPUT_401,
b4095fed
JM
277 /* Freescale RCPU bus */
278 PPC_FLAGS_INPUT_RCPU,
3fc6c082
FB
279};
280
a750fc0b 281#define PPC_INPUT(env) (env->bus_model)
3fc6c082 282
be147d08 283/*****************************************************************************/
3fc6c082 284typedef struct ppc_def_t ppc_def_t;
a750fc0b 285typedef struct opc_handler_t opc_handler_t;
79aceca5 286
3fc6c082
FB
287/*****************************************************************************/
288/* Types used to describe some PowerPC registers */
289typedef struct CPUPPCState CPUPPCState;
9fddaa0c 290typedef struct ppc_tb_t ppc_tb_t;
3fc6c082
FB
291typedef struct ppc_spr_t ppc_spr_t;
292typedef struct ppc_dcr_t ppc_dcr_t;
a9d9eb8f 293typedef union ppc_avr_t ppc_avr_t;
1d0a48fb 294typedef union ppc_tlb_t ppc_tlb_t;
76a66253 295
3fc6c082
FB
296/* SPR access micro-ops generations callbacks */
297struct ppc_spr_t {
298 void (*uea_read)(void *opaque, int spr_num);
299 void (*uea_write)(void *opaque, int spr_num);
76a66253 300#if !defined(CONFIG_USER_ONLY)
3fc6c082
FB
301 void (*oea_read)(void *opaque, int spr_num);
302 void (*oea_write)(void *opaque, int spr_num);
be147d08
JM
303 void (*hea_read)(void *opaque, int spr_num);
304 void (*hea_write)(void *opaque, int spr_num);
76a66253 305#endif
b55266b5 306 const char *name;
3fc6c082
FB
307};
308
309/* Altivec registers (128 bits) */
a9d9eb8f
JM
310union ppc_avr_t {
311 uint8_t u8[16];
312 uint16_t u16[8];
313 uint32_t u32[4];
314 uint64_t u64[2];
3fc6c082 315};
9fddaa0c 316
3fc6c082 317/* Software TLB cache */
1d0a48fb
JM
318typedef struct ppc6xx_tlb_t ppc6xx_tlb_t;
319struct ppc6xx_tlb_t {
76a66253
JM
320 target_ulong pte0;
321 target_ulong pte1;
322 target_ulong EPN;
1d0a48fb
JM
323};
324
325typedef struct ppcemb_tlb_t ppcemb_tlb_t;
326struct ppcemb_tlb_t {
c55e9aef 327 target_phys_addr_t RPN;
1d0a48fb 328 target_ulong EPN;
76a66253 329 target_ulong PID;
c55e9aef
JM
330 target_ulong size;
331 uint32_t prot;
332 uint32_t attr; /* Storage attributes */
1d0a48fb
JM
333};
334
335union ppc_tlb_t {
336 ppc6xx_tlb_t tlb6;
337 ppcemb_tlb_t tlbe;
3fc6c082
FB
338};
339
340/*****************************************************************************/
341/* Machine state register bits definition */
76a66253 342#define MSR_SF 63 /* Sixty-four-bit mode hflags */
bd928eba 343#define MSR_TAG 62 /* Tag-active mode (POWERx ?) */
3fc6c082 344#define MSR_ISF 61 /* Sixty-four-bit interrupt mode on 630 */
a4f30719 345#define MSR_SHV 60 /* hypervisor state hflags */
363be49c
JM
346#define MSR_CM 31 /* Computation mode for BookE hflags */
347#define MSR_ICM 30 /* Interrupt computation mode for BookE */
a4f30719 348#define MSR_THV 29 /* hypervisor state for 32 bits PowerPC hflags */
363be49c 349#define MSR_UCLE 26 /* User-mode cache lock enable for BookE */
d26bfc9a
JM
350#define MSR_VR 25 /* altivec available x hflags */
351#define MSR_SPE 25 /* SPE enable for BookE x hflags */
76a66253
JM
352#define MSR_AP 23 /* Access privilege state on 602 hflags */
353#define MSR_SA 22 /* Supervisor access mode on 602 hflags */
3fc6c082 354#define MSR_KEY 19 /* key bit on 603e */
25ba3a68 355#define MSR_POW 18 /* Power management */
d26bfc9a
JM
356#define MSR_TGPR 17 /* TGPR usage on 602/603 x */
357#define MSR_CE 17 /* Critical interrupt enable on embedded PowerPC x */
3fc6c082
FB
358#define MSR_ILE 16 /* Interrupt little-endian mode */
359#define MSR_EE 15 /* External interrupt enable */
76a66253
JM
360#define MSR_PR 14 /* Problem state hflags */
361#define MSR_FP 13 /* Floating point available hflags */
3fc6c082 362#define MSR_ME 12 /* Machine check interrupt enable */
76a66253 363#define MSR_FE0 11 /* Floating point exception mode 0 hflags */
d26bfc9a
JM
364#define MSR_SE 10 /* Single-step trace enable x hflags */
365#define MSR_DWE 10 /* Debug wait enable on 405 x */
366#define MSR_UBLE 10 /* User BTB lock enable on e500 x */
367#define MSR_BE 9 /* Branch trace enable x hflags */
368#define MSR_DE 9 /* Debug interrupts enable on embedded PowerPC x */
76a66253 369#define MSR_FE1 8 /* Floating point exception mode 1 hflags */
3fc6c082 370#define MSR_AL 7 /* AL bit on POWER */
0411a972 371#define MSR_EP 6 /* Exception prefix on 601 */
3fc6c082 372#define MSR_IR 5 /* Instruction relocate */
3fc6c082 373#define MSR_DR 4 /* Data relocate */
25ba3a68 374#define MSR_PE 3 /* Protection enable on 403 */
d26bfc9a
JM
375#define MSR_PX 2 /* Protection exclusive on 403 x */
376#define MSR_PMM 2 /* Performance monitor mark on POWER x */
377#define MSR_RI 1 /* Recoverable interrupt 1 */
378#define MSR_LE 0 /* Little-endian mode 1 hflags */
0411a972
JM
379
380#define msr_sf ((env->msr >> MSR_SF) & 1)
381#define msr_isf ((env->msr >> MSR_ISF) & 1)
a4f30719 382#define msr_shv ((env->msr >> MSR_SHV) & 1)
0411a972
JM
383#define msr_cm ((env->msr >> MSR_CM) & 1)
384#define msr_icm ((env->msr >> MSR_ICM) & 1)
a4f30719 385#define msr_thv ((env->msr >> MSR_THV) & 1)
0411a972
JM
386#define msr_ucle ((env->msr >> MSR_UCLE) & 1)
387#define msr_vr ((env->msr >> MSR_VR) & 1)
f9320410 388#define msr_spe ((env->msr >> MSR_SPE) & 1)
0411a972
JM
389#define msr_ap ((env->msr >> MSR_AP) & 1)
390#define msr_sa ((env->msr >> MSR_SA) & 1)
391#define msr_key ((env->msr >> MSR_KEY) & 1)
392#define msr_pow ((env->msr >> MSR_POW) & 1)
393#define msr_tgpr ((env->msr >> MSR_TGPR) & 1)
394#define msr_ce ((env->msr >> MSR_CE) & 1)
395#define msr_ile ((env->msr >> MSR_ILE) & 1)
396#define msr_ee ((env->msr >> MSR_EE) & 1)
397#define msr_pr ((env->msr >> MSR_PR) & 1)
398#define msr_fp ((env->msr >> MSR_FP) & 1)
399#define msr_me ((env->msr >> MSR_ME) & 1)
400#define msr_fe0 ((env->msr >> MSR_FE0) & 1)
401#define msr_se ((env->msr >> MSR_SE) & 1)
402#define msr_dwe ((env->msr >> MSR_DWE) & 1)
403#define msr_uble ((env->msr >> MSR_UBLE) & 1)
404#define msr_be ((env->msr >> MSR_BE) & 1)
405#define msr_de ((env->msr >> MSR_DE) & 1)
406#define msr_fe1 ((env->msr >> MSR_FE1) & 1)
407#define msr_al ((env->msr >> MSR_AL) & 1)
408#define msr_ep ((env->msr >> MSR_EP) & 1)
409#define msr_ir ((env->msr >> MSR_IR) & 1)
410#define msr_dr ((env->msr >> MSR_DR) & 1)
411#define msr_pe ((env->msr >> MSR_PE) & 1)
412#define msr_px ((env->msr >> MSR_PX) & 1)
413#define msr_pmm ((env->msr >> MSR_PMM) & 1)
414#define msr_ri ((env->msr >> MSR_RI) & 1)
415#define msr_le ((env->msr >> MSR_LE) & 1)
a4f30719
JM
416/* Hypervisor bit is more specific */
417#if defined(TARGET_PPC64)
418#define MSR_HVB (1ULL << MSR_SHV)
419#define msr_hv msr_shv
420#else
421#if defined(PPC_EMULATE_32BITS_HYPV)
422#define MSR_HVB (1ULL << MSR_THV)
423#define msr_hv msr_thv
a4f30719
JM
424#else
425#define MSR_HVB (0ULL)
426#define msr_hv (0)
427#endif
428#endif
79aceca5 429
d26bfc9a 430enum {
4018bae9 431 POWERPC_FLAG_NONE = 0x00000000,
d26bfc9a 432 /* Flag for MSR bit 25 signification (VRE/SPE) */
4018bae9
JM
433 POWERPC_FLAG_SPE = 0x00000001,
434 POWERPC_FLAG_VRE = 0x00000002,
d26bfc9a 435 /* Flag for MSR bit 17 signification (TGPR/CE) */
4018bae9
JM
436 POWERPC_FLAG_TGPR = 0x00000004,
437 POWERPC_FLAG_CE = 0x00000008,
d26bfc9a 438 /* Flag for MSR bit 10 signification (SE/DWE/UBLE) */
4018bae9
JM
439 POWERPC_FLAG_SE = 0x00000010,
440 POWERPC_FLAG_DWE = 0x00000020,
441 POWERPC_FLAG_UBLE = 0x00000040,
d26bfc9a 442 /* Flag for MSR bit 9 signification (BE/DE) */
4018bae9
JM
443 POWERPC_FLAG_BE = 0x00000080,
444 POWERPC_FLAG_DE = 0x00000100,
a4f30719 445 /* Flag for MSR bit 2 signification (PX/PMM) */
4018bae9
JM
446 POWERPC_FLAG_PX = 0x00000200,
447 POWERPC_FLAG_PMM = 0x00000400,
448 /* Flag for special features */
449 /* Decrementer clock: RTC clock (POWER, 601) or bus clock */
450 POWERPC_FLAG_RTC_CLK = 0x00010000,
451 POWERPC_FLAG_BUS_CLK = 0x00020000,
d26bfc9a
JM
452};
453
7c58044c
JM
454/*****************************************************************************/
455/* Floating point status and control register */
456#define FPSCR_FX 31 /* Floating-point exception summary */
457#define FPSCR_FEX 30 /* Floating-point enabled exception summary */
458#define FPSCR_VX 29 /* Floating-point invalid operation exception summ. */
459#define FPSCR_OX 28 /* Floating-point overflow exception */
460#define FPSCR_UX 27 /* Floating-point underflow exception */
461#define FPSCR_ZX 26 /* Floating-point zero divide exception */
462#define FPSCR_XX 25 /* Floating-point inexact exception */
463#define FPSCR_VXSNAN 24 /* Floating-point invalid operation exception (sNan) */
464#define FPSCR_VXISI 23 /* Floating-point invalid operation exception (inf) */
465#define FPSCR_VXIDI 22 /* Floating-point invalid operation exception (inf) */
466#define FPSCR_VXZDZ 21 /* Floating-point invalid operation exception (zero) */
467#define FPSCR_VXIMZ 20 /* Floating-point invalid operation exception (inf) */
468#define FPSCR_VXVC 19 /* Floating-point invalid operation exception (comp) */
469#define FPSCR_FR 18 /* Floating-point fraction rounded */
470#define FPSCR_FI 17 /* Floating-point fraction inexact */
471#define FPSCR_C 16 /* Floating-point result class descriptor */
472#define FPSCR_FL 15 /* Floating-point less than or negative */
473#define FPSCR_FG 14 /* Floating-point greater than or negative */
474#define FPSCR_FE 13 /* Floating-point equal or zero */
475#define FPSCR_FU 12 /* Floating-point unordered or NaN */
476#define FPSCR_FPCC 12 /* Floating-point condition code */
477#define FPSCR_FPRF 12 /* Floating-point result flags */
478#define FPSCR_VXSOFT 10 /* Floating-point invalid operation exception (soft) */
479#define FPSCR_VXSQRT 9 /* Floating-point invalid operation exception (sqrt) */
480#define FPSCR_VXCVI 8 /* Floating-point invalid operation exception (int) */
481#define FPSCR_VE 7 /* Floating-point invalid operation exception enable */
482#define FPSCR_OE 6 /* Floating-point overflow exception enable */
483#define FPSCR_UE 5 /* Floating-point undeflow exception enable */
484#define FPSCR_ZE 4 /* Floating-point zero divide exception enable */
485#define FPSCR_XE 3 /* Floating-point inexact exception enable */
486#define FPSCR_NI 2 /* Floating-point non-IEEE mode */
487#define FPSCR_RN1 1
488#define FPSCR_RN 0 /* Floating-point rounding control */
489#define fpscr_fex (((env->fpscr) >> FPSCR_FEX) & 0x1)
490#define fpscr_vx (((env->fpscr) >> FPSCR_VX) & 0x1)
491#define fpscr_ox (((env->fpscr) >> FPSCR_OX) & 0x1)
492#define fpscr_ux (((env->fpscr) >> FPSCR_UX) & 0x1)
493#define fpscr_zx (((env->fpscr) >> FPSCR_ZX) & 0x1)
494#define fpscr_xx (((env->fpscr) >> FPSCR_XX) & 0x1)
495#define fpscr_vxsnan (((env->fpscr) >> FPSCR_VXSNAN) & 0x1)
496#define fpscr_vxisi (((env->fpscr) >> FPSCR_VXISI) & 0x1)
497#define fpscr_vxidi (((env->fpscr) >> FPSCR_VXIDI) & 0x1)
498#define fpscr_vxzdz (((env->fpscr) >> FPSCR_VXZDZ) & 0x1)
499#define fpscr_vximz (((env->fpscr) >> FPSCR_VXIMZ) & 0x1)
500#define fpscr_vxvc (((env->fpscr) >> FPSCR_VXVC) & 0x1)
501#define fpscr_fpcc (((env->fpscr) >> FPSCR_FPCC) & 0xF)
502#define fpscr_vxsoft (((env->fpscr) >> FPSCR_VXSOFT) & 0x1)
503#define fpscr_vxsqrt (((env->fpscr) >> FPSCR_VXSQRT) & 0x1)
504#define fpscr_vxcvi (((env->fpscr) >> FPSCR_VXCVI) & 0x1)
505#define fpscr_ve (((env->fpscr) >> FPSCR_VE) & 0x1)
506#define fpscr_oe (((env->fpscr) >> FPSCR_OE) & 0x1)
507#define fpscr_ue (((env->fpscr) >> FPSCR_UE) & 0x1)
508#define fpscr_ze (((env->fpscr) >> FPSCR_ZE) & 0x1)
509#define fpscr_xe (((env->fpscr) >> FPSCR_XE) & 0x1)
510#define fpscr_ni (((env->fpscr) >> FPSCR_NI) & 0x1)
511#define fpscr_rn (((env->fpscr) >> FPSCR_RN) & 0x3)
512/* Invalid operation exception summary */
513#define fpscr_ix ((env->fpscr) & ((1 << FPSCR_VXSNAN) | (1 << FPSCR_VXISI) | \
514 (1 << FPSCR_VXIDI) | (1 << FPSCR_VXZDZ) | \
515 (1 << FPSCR_VXIMZ) | (1 << FPSCR_VXVC) | \
516 (1 << FPSCR_VXSOFT) | (1 << FPSCR_VXSQRT) | \
517 (1 << FPSCR_VXCVI)))
518/* exception summary */
519#define fpscr_ex (((env->fpscr) >> FPSCR_XX) & 0x1F)
520/* enabled exception summary */
521#define fpscr_eex (((env->fpscr) >> FPSCR_XX) & ((env->fpscr) >> FPSCR_XE) & \
522 0x1F)
523
524/*****************************************************************************/
525/* The whole PowerPC CPU context */
6ebbf390 526#define NB_MMU_MODES 3
6ebbf390 527
3fc6c082
FB
528struct CPUPPCState {
529 /* First are the most commonly used resources
530 * during translated code execution
531 */
bd7d9a6d
AJ
532#if TARGET_LONG_BITS > HOST_LONG_BITS
533 target_ulong t0, t1, t2;
534#endif
535#if !defined(TARGET_PPC64)
3fc6c082 536 /* temporary fixed-point registers
bd7d9a6d 537 * used to emulate 64 bits registers on 32 bits targets
5fafdf24 538 */
bd7d9a6d 539 uint64_t t0_64, t1_64, t2_64;
3fc6c082 540#endif
a9d9eb8f 541 ppc_avr_t avr0, avr1, avr2;
d9bce9d9 542
79aceca5 543 /* general purpose registers */
bd7d9a6d 544 target_ulong gpr[32];
65d6c0f3 545#if !defined(TARGET_PPC64)
3cd7d1dd 546 /* Storage for GPR MSB, used by the SPE extension */
bd7d9a6d 547 target_ulong gprh[32];
3cd7d1dd 548#endif
3fc6c082
FB
549 /* LR */
550 target_ulong lr;
551 /* CTR */
552 target_ulong ctr;
553 /* condition register */
47e4661c 554 uint32_t crf[8];
79aceca5 555 /* XER */
3fc6c082
FB
556 /* XXX: We use only 5 fields, but we want to keep the structure aligned */
557 uint8_t xer[8];
79aceca5 558 /* Reservation address */
3fc6c082
FB
559 target_ulong reserve;
560
561 /* Those ones are used in supervisor mode only */
79aceca5 562 /* machine state register */
0411a972 563 target_ulong msr;
3fc6c082 564 /* temporary general purpose registers */
bd7d9a6d 565 target_ulong tgpr[4]; /* Used to speed-up TLB assist handlers */
3fc6c082
FB
566
567 /* Floating point execution context */
76a66253 568 /* temporary float registers */
4ecc3190
FB
569 float64 ft0;
570 float64 ft1;
571 float64 ft2;
572 float_status fp_status;
3fc6c082
FB
573 /* floating point registers */
574 float64 fpr[32];
575 /* floating point status and control register */
7c58044c 576 uint32_t fpscr;
4ecc3190 577
a316d335
FB
578 CPU_COMMON
579
ac9eb073
FB
580 int access_type; /* when a memory exception occurs, the access
581 type is stored here */
a541f297 582
f2e63a42
JM
583 /* MMU context - only relevant for full system emulation */
584#if !defined(CONFIG_USER_ONLY)
585#if defined(TARGET_PPC64)
3fc6c082
FB
586 /* Address space register */
587 target_ulong asr;
f2e63a42
JM
588 /* PowerPC 64 SLB area */
589 int slb_nr;
590#endif
3fc6c082
FB
591 /* segment registers */
592 target_ulong sdr1;
593 target_ulong sr[16];
594 /* BATs */
595 int nb_BATs;
596 target_ulong DBAT[2][8];
597 target_ulong IBAT[2][8];
f2e63a42
JM
598 /* PowerPC TLB registers (for 4xx and 60x software driven TLBs) */
599 int nb_tlb; /* Total number of TLB */
600 int tlb_per_way; /* Speed-up helper: used to avoid divisions at run time */
601 int nb_ways; /* Number of ways in the TLB set */
602 int last_way; /* Last used way used to allocate TLB in a LRU way */
603 int id_tlbs; /* If 1, MMU has separated TLBs for instructions & data */
604 int nb_pids; /* Number of available PID registers */
605 ppc_tlb_t *tlb; /* TLB is optional. Allocate them only if needed */
606 /* 403 dedicated access protection registers */
607 target_ulong pb[4];
608#endif
9fddaa0c 609
3fc6c082
FB
610 /* Other registers */
611 /* Special purpose registers */
612 target_ulong spr[1024];
f2e63a42 613 ppc_spr_t spr_cb[1024];
3fc6c082
FB
614 /* Altivec registers */
615 ppc_avr_t avr[32];
616 uint32_t vscr;
d9bce9d9 617 /* SPE registers */
bd7d9a6d 618 target_ulong spe_acc;
0487d6a8 619 float_status spe_status;
d9bce9d9 620 uint32_t spe_fscr;
3fc6c082
FB
621
622 /* Internal devices resources */
9fddaa0c
FB
623 /* Time base and decrementer */
624 ppc_tb_t *tb_env;
3fc6c082 625 /* Device control registers */
3fc6c082
FB
626 ppc_dcr_t *dcr_env;
627
d63001d1
JM
628 int dcache_line_size;
629 int icache_line_size;
630
3fc6c082
FB
631 /* Those resources are used during exception processing */
632 /* CPU model definition */
a750fc0b 633 target_ulong msr_mask;
7820dbf3
JM
634 powerpc_mmu_t mmu_model;
635 powerpc_excp_t excp_model;
636 powerpc_input_t bus_model;
237c0af0 637 int bfd_mach;
3fc6c082
FB
638 uint32_t flags;
639
3fc6c082 640 int error_code;
47103572 641 uint32_t pending_interrupts;
e9df014c
JM
642#if !defined(CONFIG_USER_ONLY)
643 /* This is the IRQ controller, which is implementation dependant
644 * and only relevant when emulating a complete machine.
645 */
646 uint32_t irq_input_state;
647 void **irq_inputs;
e1833e1f
JM
648 /* Exception vectors */
649 target_ulong excp_vectors[POWERPC_EXCP_NB];
650 target_ulong excp_prefix;
651 target_ulong ivor_mask;
652 target_ulong ivpr_mask;
d63001d1 653 target_ulong hreset_vector;
e9df014c 654#endif
3fc6c082
FB
655
656 /* Those resources are used only during code translation */
657 /* Next instruction pointer */
658 target_ulong nip;
f2e63a42 659
3fc6c082
FB
660 /* opcode handlers */
661 opc_handler_t *opcodes[0x40];
662
663 /* Those resources are used only in Qemu core */
056401ea
JM
664 target_ulong hflags; /* hflags is a MSR & HFLAGS_MASK */
665 target_ulong hflags_nmsr; /* specific hflags, not comming from MSR */
6ebbf390 666 int mmu_idx; /* precomputed MMU index to speed up mem accesses */
3fc6c082 667
9fddaa0c
FB
668 /* Power management */
669 int power_mode;
cd346349 670 int (*check_pow)(CPUPPCState *env);
a541f297 671
6d506e6d
FB
672 /* temporary hack to handle OSI calls (only used if non NULL) */
673 int (*osi_call)(struct CPUPPCState *env);
3fc6c082 674};
79aceca5 675
76a66253
JM
676/* Context used internally during MMU translations */
677typedef struct mmu_ctx_t mmu_ctx_t;
678struct mmu_ctx_t {
679 target_phys_addr_t raddr; /* Real address */
680 int prot; /* Protection bits */
681 target_phys_addr_t pg_addr[2]; /* PTE tables base addresses */
682 target_ulong ptem; /* Virtual segment ID | API */
683 int key; /* Access key */
b227a8e9 684 int nx; /* Non-execute area */
76a66253
JM
685};
686
3fc6c082 687/*****************************************************************************/
aaed909a 688CPUPPCState *cpu_ppc_init (const char *cpu_model);
2e70f6ef 689void ppc_translate_init(void);
36081602
JM
690int cpu_ppc_exec (CPUPPCState *s);
691void cpu_ppc_close (CPUPPCState *s);
79aceca5
FB
692/* you can call this signal handler from your SIGBUS and SIGSEGV
693 signal handlers to inform the virtual CPU of exceptions. non zero
694 is returned if the signal was handled by the virtual CPU. */
36081602
JM
695int cpu_ppc_signal_handler (int host_signum, void *pinfo,
696 void *puc);
79aceca5 697
a541f297 698void do_interrupt (CPUPPCState *env);
e9df014c 699void ppc_hw_interrupt (CPUPPCState *env);
36081602 700void cpu_loop_exit (void);
a541f297 701
9a64fbe4 702void dump_stack (CPUPPCState *env);
a541f297 703
76a66253 704#if !defined(CONFIG_USER_ONLY)
3fc6c082
FB
705target_ulong do_load_ibatu (CPUPPCState *env, int nr);
706target_ulong do_load_ibatl (CPUPPCState *env, int nr);
707void do_store_ibatu (CPUPPCState *env, int nr, target_ulong value);
708void do_store_ibatl (CPUPPCState *env, int nr, target_ulong value);
709target_ulong do_load_dbatu (CPUPPCState *env, int nr);
710target_ulong do_load_dbatl (CPUPPCState *env, int nr);
711void do_store_dbatu (CPUPPCState *env, int nr, target_ulong value);
712void do_store_dbatl (CPUPPCState *env, int nr, target_ulong value);
056401ea
JM
713void do_store_ibatu_601 (CPUPPCState *env, int nr, target_ulong value);
714void do_store_ibatl_601 (CPUPPCState *env, int nr, target_ulong value);
3fc6c082
FB
715target_ulong do_load_sdr1 (CPUPPCState *env);
716void do_store_sdr1 (CPUPPCState *env, target_ulong value);
d9bce9d9
JM
717#if defined(TARGET_PPC64)
718target_ulong ppc_load_asr (CPUPPCState *env);
719void ppc_store_asr (CPUPPCState *env, target_ulong value);
12de9a39
JM
720target_ulong ppc_load_slb (CPUPPCState *env, int slb_nr);
721void ppc_store_slb (CPUPPCState *env, int slb_nr, target_ulong rs);
722#endif /* defined(TARGET_PPC64) */
723#if 0 // Unused
3fc6c082 724target_ulong do_load_sr (CPUPPCState *env, int srnum);
76a66253 725#endif
12de9a39
JM
726void do_store_sr (CPUPPCState *env, int srnum, target_ulong value);
727#endif /* !defined(CONFIG_USER_ONLY) */
bfa1e5cf
JM
728target_ulong ppc_load_xer (CPUPPCState *env);
729void ppc_store_xer (CPUPPCState *env, target_ulong value);
0411a972 730void ppc_store_msr (CPUPPCState *env, target_ulong value);
3fc6c082 731
0a032cbe 732void cpu_ppc_reset (void *opaque);
a541f297 733
3fc6c082 734void ppc_cpu_list (FILE *f, int (*cpu_fprintf)(FILE *f, const char *fmt, ...));
aaed909a 735
b55266b5 736const ppc_def_t *cpu_ppc_find_by_name (const char *name);
aaed909a 737int cpu_ppc_register_internal (CPUPPCState *env, const ppc_def_t *def);
85c4adf6 738
9fddaa0c
FB
739/* Time-base and decrementer management */
740#ifndef NO_CPU_IO_DEFS
741uint32_t cpu_ppc_load_tbl (CPUPPCState *env);
742uint32_t cpu_ppc_load_tbu (CPUPPCState *env);
743void cpu_ppc_store_tbu (CPUPPCState *env, uint32_t value);
744void cpu_ppc_store_tbl (CPUPPCState *env, uint32_t value);
a062e36c
JM
745uint32_t cpu_ppc_load_atbl (CPUPPCState *env);
746uint32_t cpu_ppc_load_atbu (CPUPPCState *env);
747void cpu_ppc_store_atbl (CPUPPCState *env, uint32_t value);
748void cpu_ppc_store_atbu (CPUPPCState *env, uint32_t value);
9fddaa0c
FB
749uint32_t cpu_ppc_load_decr (CPUPPCState *env);
750void cpu_ppc_store_decr (CPUPPCState *env, uint32_t value);
58a7d328
JM
751uint32_t cpu_ppc_load_hdecr (CPUPPCState *env);
752void cpu_ppc_store_hdecr (CPUPPCState *env, uint32_t value);
753uint64_t cpu_ppc_load_purr (CPUPPCState *env);
754void cpu_ppc_store_purr (CPUPPCState *env, uint64_t value);
d9bce9d9
JM
755uint32_t cpu_ppc601_load_rtcl (CPUPPCState *env);
756uint32_t cpu_ppc601_load_rtcu (CPUPPCState *env);
757#if !defined(CONFIG_USER_ONLY)
758void cpu_ppc601_store_rtcl (CPUPPCState *env, uint32_t value);
759void cpu_ppc601_store_rtcu (CPUPPCState *env, uint32_t value);
760target_ulong load_40x_pit (CPUPPCState *env);
761void store_40x_pit (CPUPPCState *env, target_ulong val);
8ecc7913 762void store_40x_dbcr0 (CPUPPCState *env, uint32_t val);
c294fc58 763void store_40x_sler (CPUPPCState *env, uint32_t val);
d9bce9d9
JM
764void store_booke_tcr (CPUPPCState *env, target_ulong val);
765void store_booke_tsr (CPUPPCState *env, target_ulong val);
0a032cbe 766void ppc_tlb_invalidate_all (CPUPPCState *env);
daf4f96e
JM
767void ppc_tlb_invalidate_one (CPUPPCState *env, target_ulong addr);
768#if defined(TARGET_PPC64)
769void ppc_slb_invalidate_all (CPUPPCState *env);
770void ppc_slb_invalidate_one (CPUPPCState *env, uint64_t T0);
771#endif
36081602 772int ppcemb_tlb_search (CPUPPCState *env, target_ulong address, uint32_t pid);
d9bce9d9 773#endif
9fddaa0c 774#endif
79aceca5 775
6b542af7
JM
776static always_inline uint64_t ppc_dump_gpr (CPUPPCState *env, int gprn)
777{
778 uint64_t gprv;
779
780 gprv = env->gpr[gprn];
781#if !defined(TARGET_PPC64)
782 if (env->flags & POWERPC_FLAG_SPE) {
783 /* If the CPU implements the SPE extension, we have to get the
784 * high bits of the GPR from the gprh storage area
785 */
786 gprv &= 0xFFFFFFFFULL;
787 gprv |= (uint64_t)env->gprh[gprn] << 32;
788 }
789#endif
790
791 return gprv;
792}
793
2e719ba3
JM
794/* Device control registers */
795int ppc_dcr_read (ppc_dcr_t *dcr_env, int dcrn, target_ulong *valp);
796int ppc_dcr_write (ppc_dcr_t *dcr_env, int dcrn, target_ulong val);
797
9467d44c
TS
798#define CPUState CPUPPCState
799#define cpu_init cpu_ppc_init
800#define cpu_exec cpu_ppc_exec
801#define cpu_gen_code cpu_ppc_gen_code
802#define cpu_signal_handler cpu_ppc_signal_handler
c732abe2 803#define cpu_list ppc_cpu_list
9467d44c 804
b3c7724c
PB
805#define CPU_SAVE_VERSION 3
806
6ebbf390
JM
807/* MMU modes definitions */
808#define MMU_MODE0_SUFFIX _user
809#define MMU_MODE1_SUFFIX _kernel
6ebbf390 810#define MMU_MODE2_SUFFIX _hypv
6ebbf390
JM
811#define MMU_USER_IDX 0
812static inline int cpu_mmu_index (CPUState *env)
813{
814 return env->mmu_idx;
815}
816
6e68e076
PB
817#if defined(CONFIG_USER_ONLY)
818static inline void cpu_clone_regs(CPUState *env, target_ulong newsp)
819{
820 int i;
f8ed7070 821 if (newsp)
6e68e076
PB
822 env->gpr[1] = newsp;
823 for (i = 7; i < 32; i++)
824 env->gpr[i] = 0;
825}
826#endif
827
2e70f6ef
PB
828#define CPU_PC_FROM_TB(env, tb) env->nip = tb->pc
829
79aceca5
FB
830#include "cpu-all.h"
831
3fc6c082
FB
832/*****************************************************************************/
833/* Registers definitions */
79aceca5
FB
834#define XER_SO 31
835#define XER_OV 30
836#define XER_CA 29
3fc6c082 837#define XER_CMP 8
36081602 838#define XER_BC 0
3fc6c082
FB
839#define xer_so env->xer[4]
840#define xer_ov env->xer[6]
841#define xer_ca env->xer[2]
842#define xer_cmp env->xer[1]
36081602 843#define xer_bc env->xer[0]
79aceca5 844
3fc6c082 845/* SPR definitions */
80d11f44
JM
846#define SPR_MQ (0x000)
847#define SPR_XER (0x001)
848#define SPR_601_VRTCU (0x004)
849#define SPR_601_VRTCL (0x005)
850#define SPR_601_UDECR (0x006)
851#define SPR_LR (0x008)
852#define SPR_CTR (0x009)
853#define SPR_DSISR (0x012)
854#define SPR_DAR (0x013) /* DAE for PowerPC 601 */
855#define SPR_601_RTCU (0x014)
856#define SPR_601_RTCL (0x015)
857#define SPR_DECR (0x016)
858#define SPR_SDR1 (0x019)
859#define SPR_SRR0 (0x01A)
860#define SPR_SRR1 (0x01B)
861#define SPR_AMR (0x01D)
862#define SPR_BOOKE_PID (0x030)
863#define SPR_BOOKE_DECAR (0x036)
864#define SPR_BOOKE_CSRR0 (0x03A)
865#define SPR_BOOKE_CSRR1 (0x03B)
866#define SPR_BOOKE_DEAR (0x03D)
867#define SPR_BOOKE_ESR (0x03E)
868#define SPR_BOOKE_IVPR (0x03F)
869#define SPR_MPC_EIE (0x050)
870#define SPR_MPC_EID (0x051)
871#define SPR_MPC_NRI (0x052)
872#define SPR_CTRL (0x088)
873#define SPR_MPC_CMPA (0x090)
874#define SPR_MPC_CMPB (0x091)
875#define SPR_MPC_CMPC (0x092)
876#define SPR_MPC_CMPD (0x093)
877#define SPR_MPC_ECR (0x094)
878#define SPR_MPC_DER (0x095)
879#define SPR_MPC_COUNTA (0x096)
880#define SPR_MPC_COUNTB (0x097)
881#define SPR_UCTRL (0x098)
882#define SPR_MPC_CMPE (0x098)
883#define SPR_MPC_CMPF (0x099)
884#define SPR_MPC_CMPG (0x09A)
885#define SPR_MPC_CMPH (0x09B)
886#define SPR_MPC_LCTRL1 (0x09C)
887#define SPR_MPC_LCTRL2 (0x09D)
888#define SPR_MPC_ICTRL (0x09E)
889#define SPR_MPC_BAR (0x09F)
890#define SPR_VRSAVE (0x100)
891#define SPR_USPRG0 (0x100)
892#define SPR_USPRG1 (0x101)
893#define SPR_USPRG2 (0x102)
894#define SPR_USPRG3 (0x103)
895#define SPR_USPRG4 (0x104)
896#define SPR_USPRG5 (0x105)
897#define SPR_USPRG6 (0x106)
898#define SPR_USPRG7 (0x107)
899#define SPR_VTBL (0x10C)
900#define SPR_VTBU (0x10D)
901#define SPR_SPRG0 (0x110)
902#define SPR_SPRG1 (0x111)
903#define SPR_SPRG2 (0x112)
904#define SPR_SPRG3 (0x113)
905#define SPR_SPRG4 (0x114)
906#define SPR_SCOMC (0x114)
907#define SPR_SPRG5 (0x115)
908#define SPR_SCOMD (0x115)
909#define SPR_SPRG6 (0x116)
910#define SPR_SPRG7 (0x117)
911#define SPR_ASR (0x118)
912#define SPR_EAR (0x11A)
913#define SPR_TBL (0x11C)
914#define SPR_TBU (0x11D)
915#define SPR_TBU40 (0x11E)
916#define SPR_SVR (0x11E)
917#define SPR_BOOKE_PIR (0x11E)
918#define SPR_PVR (0x11F)
919#define SPR_HSPRG0 (0x130)
920#define SPR_BOOKE_DBSR (0x130)
921#define SPR_HSPRG1 (0x131)
922#define SPR_HDSISR (0x132)
923#define SPR_HDAR (0x133)
924#define SPR_BOOKE_DBCR0 (0x134)
925#define SPR_IBCR (0x135)
926#define SPR_PURR (0x135)
927#define SPR_BOOKE_DBCR1 (0x135)
928#define SPR_DBCR (0x136)
929#define SPR_HDEC (0x136)
930#define SPR_BOOKE_DBCR2 (0x136)
931#define SPR_HIOR (0x137)
932#define SPR_MBAR (0x137)
933#define SPR_RMOR (0x138)
934#define SPR_BOOKE_IAC1 (0x138)
935#define SPR_HRMOR (0x139)
936#define SPR_BOOKE_IAC2 (0x139)
937#define SPR_HSRR0 (0x13A)
938#define SPR_BOOKE_IAC3 (0x13A)
939#define SPR_HSRR1 (0x13B)
940#define SPR_BOOKE_IAC4 (0x13B)
941#define SPR_LPCR (0x13C)
942#define SPR_BOOKE_DAC1 (0x13C)
943#define SPR_LPIDR (0x13D)
944#define SPR_DABR2 (0x13D)
945#define SPR_BOOKE_DAC2 (0x13D)
946#define SPR_BOOKE_DVC1 (0x13E)
947#define SPR_BOOKE_DVC2 (0x13F)
948#define SPR_BOOKE_TSR (0x150)
949#define SPR_BOOKE_TCR (0x154)
950#define SPR_BOOKE_IVOR0 (0x190)
951#define SPR_BOOKE_IVOR1 (0x191)
952#define SPR_BOOKE_IVOR2 (0x192)
953#define SPR_BOOKE_IVOR3 (0x193)
954#define SPR_BOOKE_IVOR4 (0x194)
955#define SPR_BOOKE_IVOR5 (0x195)
956#define SPR_BOOKE_IVOR6 (0x196)
957#define SPR_BOOKE_IVOR7 (0x197)
958#define SPR_BOOKE_IVOR8 (0x198)
959#define SPR_BOOKE_IVOR9 (0x199)
960#define SPR_BOOKE_IVOR10 (0x19A)
961#define SPR_BOOKE_IVOR11 (0x19B)
962#define SPR_BOOKE_IVOR12 (0x19C)
963#define SPR_BOOKE_IVOR13 (0x19D)
964#define SPR_BOOKE_IVOR14 (0x19E)
965#define SPR_BOOKE_IVOR15 (0x19F)
966#define SPR_BOOKE_SPEFSCR (0x200)
967#define SPR_Exxx_BBEAR (0x201)
968#define SPR_Exxx_BBTAR (0x202)
969#define SPR_Exxx_L1CFG0 (0x203)
970#define SPR_Exxx_NPIDR (0x205)
971#define SPR_ATBL (0x20E)
972#define SPR_ATBU (0x20F)
973#define SPR_IBAT0U (0x210)
974#define SPR_BOOKE_IVOR32 (0x210)
975#define SPR_RCPU_MI_GRA (0x210)
976#define SPR_IBAT0L (0x211)
977#define SPR_BOOKE_IVOR33 (0x211)
978#define SPR_IBAT1U (0x212)
979#define SPR_BOOKE_IVOR34 (0x212)
980#define SPR_IBAT1L (0x213)
981#define SPR_BOOKE_IVOR35 (0x213)
982#define SPR_IBAT2U (0x214)
983#define SPR_BOOKE_IVOR36 (0x214)
984#define SPR_IBAT2L (0x215)
985#define SPR_BOOKE_IVOR37 (0x215)
986#define SPR_IBAT3U (0x216)
987#define SPR_IBAT3L (0x217)
988#define SPR_DBAT0U (0x218)
989#define SPR_RCPU_L2U_GRA (0x218)
990#define SPR_DBAT0L (0x219)
991#define SPR_DBAT1U (0x21A)
992#define SPR_DBAT1L (0x21B)
993#define SPR_DBAT2U (0x21C)
994#define SPR_DBAT2L (0x21D)
995#define SPR_DBAT3U (0x21E)
996#define SPR_DBAT3L (0x21F)
997#define SPR_IBAT4U (0x230)
998#define SPR_RPCU_BBCMCR (0x230)
999#define SPR_MPC_IC_CST (0x230)
1000#define SPR_Exxx_CTXCR (0x230)
1001#define SPR_IBAT4L (0x231)
1002#define SPR_MPC_IC_ADR (0x231)
1003#define SPR_Exxx_DBCR3 (0x231)
1004#define SPR_IBAT5U (0x232)
1005#define SPR_MPC_IC_DAT (0x232)
1006#define SPR_Exxx_DBCNT (0x232)
1007#define SPR_IBAT5L (0x233)
1008#define SPR_IBAT6U (0x234)
1009#define SPR_IBAT6L (0x235)
1010#define SPR_IBAT7U (0x236)
1011#define SPR_IBAT7L (0x237)
1012#define SPR_DBAT4U (0x238)
1013#define SPR_RCPU_L2U_MCR (0x238)
1014#define SPR_MPC_DC_CST (0x238)
1015#define SPR_Exxx_ALTCTXCR (0x238)
1016#define SPR_DBAT4L (0x239)
1017#define SPR_MPC_DC_ADR (0x239)
1018#define SPR_DBAT5U (0x23A)
1019#define SPR_BOOKE_MCSRR0 (0x23A)
1020#define SPR_MPC_DC_DAT (0x23A)
1021#define SPR_DBAT5L (0x23B)
1022#define SPR_BOOKE_MCSRR1 (0x23B)
1023#define SPR_DBAT6U (0x23C)
1024#define SPR_BOOKE_MCSR (0x23C)
1025#define SPR_DBAT6L (0x23D)
1026#define SPR_Exxx_MCAR (0x23D)
1027#define SPR_DBAT7U (0x23E)
1028#define SPR_BOOKE_DSRR0 (0x23E)
1029#define SPR_DBAT7L (0x23F)
1030#define SPR_BOOKE_DSRR1 (0x23F)
1031#define SPR_BOOKE_SPRG8 (0x25C)
1032#define SPR_BOOKE_SPRG9 (0x25D)
1033#define SPR_BOOKE_MAS0 (0x270)
1034#define SPR_BOOKE_MAS1 (0x271)
1035#define SPR_BOOKE_MAS2 (0x272)
1036#define SPR_BOOKE_MAS3 (0x273)
1037#define SPR_BOOKE_MAS4 (0x274)
1038#define SPR_BOOKE_MAS5 (0x275)
1039#define SPR_BOOKE_MAS6 (0x276)
1040#define SPR_BOOKE_PID1 (0x279)
1041#define SPR_BOOKE_PID2 (0x27A)
1042#define SPR_MPC_DPDR (0x280)
1043#define SPR_MPC_IMMR (0x288)
1044#define SPR_BOOKE_TLB0CFG (0x2B0)
1045#define SPR_BOOKE_TLB1CFG (0x2B1)
1046#define SPR_BOOKE_TLB2CFG (0x2B2)
1047#define SPR_BOOKE_TLB3CFG (0x2B3)
1048#define SPR_BOOKE_EPR (0x2BE)
1049#define SPR_PERF0 (0x300)
1050#define SPR_RCPU_MI_RBA0 (0x300)
1051#define SPR_MPC_MI_CTR (0x300)
1052#define SPR_PERF1 (0x301)
1053#define SPR_RCPU_MI_RBA1 (0x301)
1054#define SPR_PERF2 (0x302)
1055#define SPR_RCPU_MI_RBA2 (0x302)
1056#define SPR_MPC_MI_AP (0x302)
1057#define SPR_PERF3 (0x303)
082c6681 1058#define SPR_620_PMC1R (0x303)
80d11f44
JM
1059#define SPR_RCPU_MI_RBA3 (0x303)
1060#define SPR_MPC_MI_EPN (0x303)
1061#define SPR_PERF4 (0x304)
082c6681 1062#define SPR_620_PMC2R (0x304)
80d11f44
JM
1063#define SPR_PERF5 (0x305)
1064#define SPR_MPC_MI_TWC (0x305)
1065#define SPR_PERF6 (0x306)
1066#define SPR_MPC_MI_RPN (0x306)
1067#define SPR_PERF7 (0x307)
1068#define SPR_PERF8 (0x308)
1069#define SPR_RCPU_L2U_RBA0 (0x308)
1070#define SPR_MPC_MD_CTR (0x308)
1071#define SPR_PERF9 (0x309)
1072#define SPR_RCPU_L2U_RBA1 (0x309)
1073#define SPR_MPC_MD_CASID (0x309)
1074#define SPR_PERFA (0x30A)
1075#define SPR_RCPU_L2U_RBA2 (0x30A)
1076#define SPR_MPC_MD_AP (0x30A)
1077#define SPR_PERFB (0x30B)
082c6681 1078#define SPR_620_MMCR0R (0x30B)
80d11f44
JM
1079#define SPR_RCPU_L2U_RBA3 (0x30B)
1080#define SPR_MPC_MD_EPN (0x30B)
1081#define SPR_PERFC (0x30C)
1082#define SPR_MPC_MD_TWB (0x30C)
1083#define SPR_PERFD (0x30D)
1084#define SPR_MPC_MD_TWC (0x30D)
1085#define SPR_PERFE (0x30E)
1086#define SPR_MPC_MD_RPN (0x30E)
1087#define SPR_PERFF (0x30F)
1088#define SPR_MPC_MD_TW (0x30F)
1089#define SPR_UPERF0 (0x310)
1090#define SPR_UPERF1 (0x311)
1091#define SPR_UPERF2 (0x312)
1092#define SPR_UPERF3 (0x313)
082c6681 1093#define SPR_620_PMC1W (0x313)
80d11f44 1094#define SPR_UPERF4 (0x314)
082c6681 1095#define SPR_620_PMC2W (0x314)
80d11f44
JM
1096#define SPR_UPERF5 (0x315)
1097#define SPR_UPERF6 (0x316)
1098#define SPR_UPERF7 (0x317)
1099#define SPR_UPERF8 (0x318)
1100#define SPR_UPERF9 (0x319)
1101#define SPR_UPERFA (0x31A)
1102#define SPR_UPERFB (0x31B)
082c6681 1103#define SPR_620_MMCR0W (0x31B)
80d11f44
JM
1104#define SPR_UPERFC (0x31C)
1105#define SPR_UPERFD (0x31D)
1106#define SPR_UPERFE (0x31E)
1107#define SPR_UPERFF (0x31F)
1108#define SPR_RCPU_MI_RA0 (0x320)
1109#define SPR_MPC_MI_DBCAM (0x320)
1110#define SPR_RCPU_MI_RA1 (0x321)
1111#define SPR_MPC_MI_DBRAM0 (0x321)
1112#define SPR_RCPU_MI_RA2 (0x322)
1113#define SPR_MPC_MI_DBRAM1 (0x322)
1114#define SPR_RCPU_MI_RA3 (0x323)
1115#define SPR_RCPU_L2U_RA0 (0x328)
1116#define SPR_MPC_MD_DBCAM (0x328)
1117#define SPR_RCPU_L2U_RA1 (0x329)
1118#define SPR_MPC_MD_DBRAM0 (0x329)
1119#define SPR_RCPU_L2U_RA2 (0x32A)
1120#define SPR_MPC_MD_DBRAM1 (0x32A)
1121#define SPR_RCPU_L2U_RA3 (0x32B)
1122#define SPR_440_INV0 (0x370)
1123#define SPR_440_INV1 (0x371)
1124#define SPR_440_INV2 (0x372)
1125#define SPR_440_INV3 (0x373)
1126#define SPR_440_ITV0 (0x374)
1127#define SPR_440_ITV1 (0x375)
1128#define SPR_440_ITV2 (0x376)
1129#define SPR_440_ITV3 (0x377)
1130#define SPR_440_CCR1 (0x378)
1131#define SPR_DCRIPR (0x37B)
1132#define SPR_PPR (0x380)
bd928eba 1133#define SPR_750_GQR0 (0x390)
80d11f44 1134#define SPR_440_DNV0 (0x390)
bd928eba 1135#define SPR_750_GQR1 (0x391)
80d11f44 1136#define SPR_440_DNV1 (0x391)
bd928eba 1137#define SPR_750_GQR2 (0x392)
80d11f44 1138#define SPR_440_DNV2 (0x392)
bd928eba 1139#define SPR_750_GQR3 (0x393)
80d11f44 1140#define SPR_440_DNV3 (0x393)
bd928eba 1141#define SPR_750_GQR4 (0x394)
80d11f44 1142#define SPR_440_DTV0 (0x394)
bd928eba 1143#define SPR_750_GQR5 (0x395)
80d11f44 1144#define SPR_440_DTV1 (0x395)
bd928eba 1145#define SPR_750_GQR6 (0x396)
80d11f44 1146#define SPR_440_DTV2 (0x396)
bd928eba 1147#define SPR_750_GQR7 (0x397)
80d11f44 1148#define SPR_440_DTV3 (0x397)
bd928eba
JM
1149#define SPR_750_THRM4 (0x398)
1150#define SPR_750CL_HID2 (0x398)
80d11f44 1151#define SPR_440_DVLIM (0x398)
bd928eba 1152#define SPR_750_WPAR (0x399)
80d11f44 1153#define SPR_440_IVLIM (0x399)
bd928eba
JM
1154#define SPR_750_DMAU (0x39A)
1155#define SPR_750_DMAL (0x39B)
80d11f44
JM
1156#define SPR_440_RSTCFG (0x39B)
1157#define SPR_BOOKE_DCDBTRL (0x39C)
1158#define SPR_BOOKE_DCDBTRH (0x39D)
1159#define SPR_BOOKE_ICDBTRL (0x39E)
1160#define SPR_BOOKE_ICDBTRH (0x39F)
1161#define SPR_UMMCR2 (0x3A0)
1162#define SPR_UPMC5 (0x3A1)
1163#define SPR_UPMC6 (0x3A2)
1164#define SPR_UBAMR (0x3A7)
1165#define SPR_UMMCR0 (0x3A8)
1166#define SPR_UPMC1 (0x3A9)
1167#define SPR_UPMC2 (0x3AA)
1168#define SPR_USIAR (0x3AB)
1169#define SPR_UMMCR1 (0x3AC)
1170#define SPR_UPMC3 (0x3AD)
1171#define SPR_UPMC4 (0x3AE)
1172#define SPR_USDA (0x3AF)
1173#define SPR_40x_ZPR (0x3B0)
1174#define SPR_BOOKE_MAS7 (0x3B0)
1175#define SPR_620_PMR0 (0x3B0)
1176#define SPR_MMCR2 (0x3B0)
1177#define SPR_PMC5 (0x3B1)
1178#define SPR_40x_PID (0x3B1)
1179#define SPR_620_PMR1 (0x3B1)
1180#define SPR_PMC6 (0x3B2)
1181#define SPR_440_MMUCR (0x3B2)
1182#define SPR_620_PMR2 (0x3B2)
1183#define SPR_4xx_CCR0 (0x3B3)
1184#define SPR_BOOKE_EPLC (0x3B3)
1185#define SPR_620_PMR3 (0x3B3)
1186#define SPR_405_IAC3 (0x3B4)
1187#define SPR_BOOKE_EPSC (0x3B4)
1188#define SPR_620_PMR4 (0x3B4)
1189#define SPR_405_IAC4 (0x3B5)
1190#define SPR_620_PMR5 (0x3B5)
1191#define SPR_405_DVC1 (0x3B6)
1192#define SPR_620_PMR6 (0x3B6)
1193#define SPR_405_DVC2 (0x3B7)
1194#define SPR_620_PMR7 (0x3B7)
1195#define SPR_BAMR (0x3B7)
1196#define SPR_MMCR0 (0x3B8)
1197#define SPR_620_PMR8 (0x3B8)
1198#define SPR_PMC1 (0x3B9)
1199#define SPR_40x_SGR (0x3B9)
1200#define SPR_620_PMR9 (0x3B9)
1201#define SPR_PMC2 (0x3BA)
1202#define SPR_40x_DCWR (0x3BA)
1203#define SPR_620_PMRA (0x3BA)
1204#define SPR_SIAR (0x3BB)
1205#define SPR_405_SLER (0x3BB)
1206#define SPR_620_PMRB (0x3BB)
1207#define SPR_MMCR1 (0x3BC)
1208#define SPR_405_SU0R (0x3BC)
1209#define SPR_620_PMRC (0x3BC)
1210#define SPR_401_SKR (0x3BC)
1211#define SPR_PMC3 (0x3BD)
1212#define SPR_405_DBCR1 (0x3BD)
1213#define SPR_620_PMRD (0x3BD)
1214#define SPR_PMC4 (0x3BE)
1215#define SPR_620_PMRE (0x3BE)
1216#define SPR_SDA (0x3BF)
1217#define SPR_620_PMRF (0x3BF)
1218#define SPR_403_VTBL (0x3CC)
1219#define SPR_403_VTBU (0x3CD)
1220#define SPR_DMISS (0x3D0)
1221#define SPR_DCMP (0x3D1)
1222#define SPR_HASH1 (0x3D2)
1223#define SPR_HASH2 (0x3D3)
1224#define SPR_BOOKE_ICDBDR (0x3D3)
1225#define SPR_TLBMISS (0x3D4)
1226#define SPR_IMISS (0x3D4)
1227#define SPR_40x_ESR (0x3D4)
1228#define SPR_PTEHI (0x3D5)
1229#define SPR_ICMP (0x3D5)
1230#define SPR_40x_DEAR (0x3D5)
1231#define SPR_PTELO (0x3D6)
1232#define SPR_RPA (0x3D6)
1233#define SPR_40x_EVPR (0x3D6)
1234#define SPR_L3PM (0x3D7)
1235#define SPR_403_CDBCR (0x3D7)
4e777442 1236#define SPR_L3ITCR0 (0x3D8)
80d11f44
JM
1237#define SPR_TCR (0x3D8)
1238#define SPR_40x_TSR (0x3D8)
1239#define SPR_IBR (0x3DA)
1240#define SPR_40x_TCR (0x3DA)
1241#define SPR_ESASRR (0x3DB)
1242#define SPR_40x_PIT (0x3DB)
1243#define SPR_403_TBL (0x3DC)
1244#define SPR_403_TBU (0x3DD)
1245#define SPR_SEBR (0x3DE)
1246#define SPR_40x_SRR2 (0x3DE)
1247#define SPR_SER (0x3DF)
1248#define SPR_40x_SRR3 (0x3DF)
4e777442 1249#define SPR_L3OHCR (0x3E8)
80d11f44
JM
1250#define SPR_L3ITCR1 (0x3E9)
1251#define SPR_L3ITCR2 (0x3EA)
1252#define SPR_L3ITCR3 (0x3EB)
1253#define SPR_HID0 (0x3F0)
1254#define SPR_40x_DBSR (0x3F0)
1255#define SPR_HID1 (0x3F1)
1256#define SPR_IABR (0x3F2)
1257#define SPR_40x_DBCR0 (0x3F2)
1258#define SPR_601_HID2 (0x3F2)
1259#define SPR_Exxx_L1CSR0 (0x3F2)
1260#define SPR_ICTRL (0x3F3)
1261#define SPR_HID2 (0x3F3)
bd928eba 1262#define SPR_750CL_HID4 (0x3F3)
80d11f44
JM
1263#define SPR_Exxx_L1CSR1 (0x3F3)
1264#define SPR_440_DBDR (0x3F3)
1265#define SPR_LDSTDB (0x3F4)
bd928eba 1266#define SPR_750_TDCL (0x3F4)
80d11f44
JM
1267#define SPR_40x_IAC1 (0x3F4)
1268#define SPR_MMUCSR0 (0x3F4)
1269#define SPR_DABR (0x3F5)
3fc6c082 1270#define DABR_MASK (~(target_ulong)0x7)
80d11f44
JM
1271#define SPR_Exxx_BUCSR (0x3F5)
1272#define SPR_40x_IAC2 (0x3F5)
1273#define SPR_601_HID5 (0x3F5)
1274#define SPR_40x_DAC1 (0x3F6)
1275#define SPR_MSSCR0 (0x3F6)
1276#define SPR_970_HID5 (0x3F6)
1277#define SPR_MSSSR0 (0x3F7)
4e777442 1278#define SPR_MSSCR1 (0x3F7)
80d11f44
JM
1279#define SPR_DABRX (0x3F7)
1280#define SPR_40x_DAC2 (0x3F7)
1281#define SPR_MMUCFG (0x3F7)
1282#define SPR_LDSTCR (0x3F8)
1283#define SPR_L2PMCR (0x3F8)
bd928eba 1284#define SPR_750FX_HID2 (0x3F8)
082c6681 1285#define SPR_620_BUSCSR (0x3F8)
80d11f44
JM
1286#define SPR_Exxx_L1FINV0 (0x3F8)
1287#define SPR_L2CR (0x3F9)
082c6681 1288#define SPR_620_L2CR (0x3F9)
80d11f44 1289#define SPR_L3CR (0x3FA)
bd928eba 1290#define SPR_750_TDCH (0x3FA)
80d11f44
JM
1291#define SPR_IABR2 (0x3FA)
1292#define SPR_40x_DCCR (0x3FA)
082c6681 1293#define SPR_620_L2SR (0x3FA)
80d11f44
JM
1294#define SPR_ICTC (0x3FB)
1295#define SPR_40x_ICCR (0x3FB)
1296#define SPR_THRM1 (0x3FC)
1297#define SPR_403_PBL1 (0x3FC)
1298#define SPR_SP (0x3FD)
1299#define SPR_THRM2 (0x3FD)
1300#define SPR_403_PBU1 (0x3FD)
1301#define SPR_604_HID13 (0x3FD)
1302#define SPR_LT (0x3FE)
1303#define SPR_THRM3 (0x3FE)
1304#define SPR_RCPU_FPECR (0x3FE)
1305#define SPR_403_PBL2 (0x3FE)
1306#define SPR_PIR (0x3FF)
1307#define SPR_403_PBU2 (0x3FF)
1308#define SPR_601_HID15 (0x3FF)
1309#define SPR_604_HID15 (0x3FF)
1310#define SPR_E500_SVR (0x3FF)
79aceca5 1311
76a66253 1312/*****************************************************************************/
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1313/* Memory access type :
1314 * may be needed for precise access rights control and precise exceptions.
1315 */
79aceca5 1316enum {
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1317 /* 1 bit to define user level / supervisor access */
1318 ACCESS_USER = 0x00,
1319 ACCESS_SUPER = 0x01,
1320 /* Type of instruction that generated the access */
1321 ACCESS_CODE = 0x10, /* Code fetch access */
1322 ACCESS_INT = 0x20, /* Integer load/store access */
1323 ACCESS_FLOAT = 0x30, /* floating point load/store access */
1324 ACCESS_RES = 0x40, /* load/store with reservation */
1325 ACCESS_EXT = 0x50, /* external access */
1326 ACCESS_CACHE = 0x60, /* Cache manipulation */
1327};
1328
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1329/* Hardware interruption sources:
1330 * all those exception can be raised simulteaneously
1331 */
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1332/* Input pins definitions */
1333enum {
1334 /* 6xx bus input pins */
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1335 PPC6xx_INPUT_HRESET = 0,
1336 PPC6xx_INPUT_SRESET = 1,
1337 PPC6xx_INPUT_CKSTP_IN = 2,
1338 PPC6xx_INPUT_MCP = 3,
1339 PPC6xx_INPUT_SMI = 4,
1340 PPC6xx_INPUT_INT = 5,
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1341 PPC6xx_INPUT_TBEN = 6,
1342 PPC6xx_INPUT_WAKEUP = 7,
1343 PPC6xx_INPUT_NB,
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1344};
1345
1346enum {
e9df014c 1347 /* Embedded PowerPC input pins */
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1348 PPCBookE_INPUT_HRESET = 0,
1349 PPCBookE_INPUT_SRESET = 1,
1350 PPCBookE_INPUT_CKSTP_IN = 2,
1351 PPCBookE_INPUT_MCP = 3,
1352 PPCBookE_INPUT_SMI = 4,
1353 PPCBookE_INPUT_INT = 5,
1354 PPCBookE_INPUT_CINT = 6,
d68f1306 1355 PPCBookE_INPUT_NB,
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1356};
1357
a750fc0b 1358enum {
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1359 /* PowerPC 40x input pins */
1360 PPC40x_INPUT_RESET_CORE = 0,
1361 PPC40x_INPUT_RESET_CHIP = 1,
1362 PPC40x_INPUT_RESET_SYS = 2,
1363 PPC40x_INPUT_CINT = 3,
1364 PPC40x_INPUT_INT = 4,
1365 PPC40x_INPUT_HALT = 5,
1366 PPC40x_INPUT_DEBUG = 6,
1367 PPC40x_INPUT_NB,
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1368};
1369
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1370enum {
1371 /* RCPU input pins */
1372 PPCRCPU_INPUT_PORESET = 0,
1373 PPCRCPU_INPUT_HRESET = 1,
1374 PPCRCPU_INPUT_SRESET = 2,
1375 PPCRCPU_INPUT_IRQ0 = 3,
1376 PPCRCPU_INPUT_IRQ1 = 4,
1377 PPCRCPU_INPUT_IRQ2 = 5,
1378 PPCRCPU_INPUT_IRQ3 = 6,
1379 PPCRCPU_INPUT_IRQ4 = 7,
1380 PPCRCPU_INPUT_IRQ5 = 8,
1381 PPCRCPU_INPUT_IRQ6 = 9,
1382 PPCRCPU_INPUT_IRQ7 = 10,
1383 PPCRCPU_INPUT_NB,
1384};
1385
00af685f 1386#if defined(TARGET_PPC64)
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1387enum {
1388 /* PowerPC 970 input pins */
1389 PPC970_INPUT_HRESET = 0,
1390 PPC970_INPUT_SRESET = 1,
1391 PPC970_INPUT_CKSTP = 2,
1392 PPC970_INPUT_TBEN = 3,
1393 PPC970_INPUT_MCP = 4,
1394 PPC970_INPUT_INT = 5,
1395 PPC970_INPUT_THINT = 6,
7b62a955 1396 PPC970_INPUT_NB,
d0dfae6e 1397};
00af685f 1398#endif
d0dfae6e 1399
e9df014c 1400/* Hardware exceptions definitions */
47103572 1401enum {
e9df014c 1402 /* External hardware exception sources */
e1833e1f 1403 PPC_INTERRUPT_RESET = 0, /* Reset exception */
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1404 PPC_INTERRUPT_WAKEUP, /* Wakeup exception */
1405 PPC_INTERRUPT_MCK, /* Machine check exception */
1406 PPC_INTERRUPT_EXT, /* External interrupt */
1407 PPC_INTERRUPT_SMI, /* System management interrupt */
1408 PPC_INTERRUPT_CEXT, /* Critical external interrupt */
1409 PPC_INTERRUPT_DEBUG, /* External debug exception */
1410 PPC_INTERRUPT_THERM, /* Thermal exception */
e9df014c 1411 /* Internal hardware exception sources */
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1412 PPC_INTERRUPT_DECR, /* Decrementer exception */
1413 PPC_INTERRUPT_HDECR, /* Hypervisor decrementer exception */
1414 PPC_INTERRUPT_PIT, /* Programmable inteval timer interrupt */
1415 PPC_INTERRUPT_FIT, /* Fixed interval timer interrupt */
1416 PPC_INTERRUPT_WDT, /* Watchdog timer interrupt */
1417 PPC_INTERRUPT_CDOORBELL, /* Critical doorbell interrupt */
1418 PPC_INTERRUPT_DOORBELL, /* Doorbell interrupt */
1419 PPC_INTERRUPT_PERFM, /* Performance monitor interrupt */
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1420};
1421
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1422/*****************************************************************************/
1423
79aceca5 1424#endif /* !defined (__CPU_PPC_H__) */