cpu.h revision 1.90.16.41 1 1.90.16.37 matt /* cpu.h,v 1.90.16.36 2011/04/29 08:26:20 matt Exp */
2 1.8 cgd
3 1.1 deraadt /*-
4 1.5 glass * Copyright (c) 1992, 1993
5 1.5 glass * The Regents of the University of California. All rights reserved.
6 1.1 deraadt *
7 1.1 deraadt * This code is derived from software contributed to Berkeley by
8 1.1 deraadt * Ralph Campbell and Rick Macklem.
9 1.1 deraadt *
10 1.1 deraadt * Redistribution and use in source and binary forms, with or without
11 1.1 deraadt * modification, are permitted provided that the following conditions
12 1.1 deraadt * are met:
13 1.1 deraadt * 1. Redistributions of source code must retain the above copyright
14 1.1 deraadt * notice, this list of conditions and the following disclaimer.
15 1.1 deraadt * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 deraadt * notice, this list of conditions and the following disclaimer in the
17 1.1 deraadt * documentation and/or other materials provided with the distribution.
18 1.71 agc * 3. Neither the name of the University nor the names of its contributors
19 1.1 deraadt * may be used to endorse or promote products derived from this software
20 1.1 deraadt * without specific prior written permission.
21 1.1 deraadt *
22 1.1 deraadt * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 deraadt * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 deraadt * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 deraadt * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 deraadt * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 deraadt * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 deraadt * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 deraadt * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 deraadt * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 deraadt * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 deraadt * SUCH DAMAGE.
33 1.1 deraadt *
34 1.8 cgd * @(#)cpu.h 8.4 (Berkeley) 1/4/94
35 1.1 deraadt */
36 1.1 deraadt
37 1.1 deraadt #ifndef _CPU_H_
38 1.1 deraadt #define _CPU_H_
39 1.1 deraadt
40 1.54 simonb #include <mips/cpuregs.h>
41 1.53 simonb
42 1.1 deraadt /*
43 1.13 jonathan * Exported definitions unique to NetBSD/mips cpu support.
44 1.1 deraadt */
45 1.36 soren
46 1.68 simonb #ifdef _KERNEL
47 1.90.16.19 matt
48 1.53 simonb #if defined(_KERNEL_OPT)
49 1.90.16.24 matt #include "opt_cputype.h"
50 1.53 simonb #include "opt_lockdebug.h"
51 1.90.16.11 matt #include "opt_multiprocessor.h"
52 1.53 simonb #endif
53 1.53 simonb
54 1.90.16.36 matt #ifndef _LOCORE
55 1.90.16.33 cliff #include <sys/cpu_data.h>
56 1.90.16.33 cliff #include <sys/device.h>
57 1.90.16.33 cliff #include <sys/evcnt.h>
58 1.90.16.36 matt
59 1.90.16.36 matt typedef struct cpu_watchpoint {
60 1.90.16.36 matt register_t cw_addr;
61 1.90.16.36 matt register_t cw_mask;
62 1.90.16.36 matt uint32_t cw_asid;
63 1.90.16.36 matt uint32_t cw_mode;
64 1.90.16.36 matt } cpu_watchpoint_t;
65 1.90.16.36 matt /* (abstract) mode bits */
66 1.90.16.36 matt #define CPUWATCH_WRITE __BIT(0)
67 1.90.16.36 matt #define CPUWATCH_READ __BIT(1)
68 1.90.16.36 matt #define CPUWATCH_EXEC __BIT(2)
69 1.90.16.36 matt #define CPUWATCH_MASK __BIT(3)
70 1.90.16.36 matt #define CPUWATCH_ASID __BIT(4)
71 1.90.16.36 matt #define CPUWATCH_RWX (CPUWATCH_EXEC|CPUWATCH_READ|CPUWATCH_WRITE)
72 1.90.16.36 matt
73 1.90.16.36 matt #define CPUWATCH_MAX 8 /* max possible number of watchpoints */
74 1.90.16.36 matt
75 1.90.16.36 matt u_int cpuwatch_discover(void);
76 1.90.16.36 matt void cpuwatch_free(cpu_watchpoint_t *);
77 1.90.16.36 matt cpu_watchpoint_t *cpuwatch_alloc(void);
78 1.90.16.36 matt void cpuwatch_set_all(void);
79 1.90.16.36 matt void cpuwatch_clr_all(void);
80 1.90.16.36 matt void cpuwatch_set(cpu_watchpoint_t *);
81 1.90.16.36 matt void cpuwatch_clr(cpu_watchpoint_t *);
82 1.90.16.33 cliff
83 1.53 simonb struct cpu_info {
84 1.73 yamt struct cpu_data ci_data; /* MI per-cpu data */
85 1.85 ad struct cpu_info *ci_next; /* Next CPU in list */
86 1.90.16.26 matt struct cpu_softc *ci_softc; /* chip-dependent hook */
87 1.90.16.24 matt device_t ci_dev; /* owning device */
88 1.85 ad cpuid_t ci_cpuid; /* Machine-level identifier */
89 1.90.16.24 matt u_long ci_cctr_freq; /* cycle counter frequency */
90 1.58 simonb u_long ci_cpu_freq; /* CPU frequency */
91 1.58 simonb u_long ci_cycles_per_hz; /* CPU freq / hz */
92 1.58 simonb u_long ci_divisor_delay; /* for delay/DELAY */
93 1.90 tsutsui u_long ci_divisor_recip; /* unused, for obsolete microtime(9) */
94 1.82 yamt struct lwp *ci_curlwp; /* currently running lwp */
95 1.90.16.24 matt #ifndef NOFPU
96 1.82 yamt struct lwp *ci_fpcurlwp; /* the current FPU owner */
97 1.90.16.24 matt #endif
98 1.90.16.24 matt volatile int ci_want_resched; /* user preemption pending */
99 1.78 ad int ci_mtx_count; /* negative count of held mutexes */
100 1.78 ad int ci_mtx_oldspl; /* saved SPL value */
101 1.86 ad int ci_idepth; /* hardware interrupt depth */
102 1.90.16.19 matt int ci_cpl; /* current [interrupt] priority level */
103 1.90.16.28 cliff uint32_t ci_next_cp0_clk_intr; /* for hard clock intr scheduling */
104 1.90.16.36 matt struct evcnt ci_ev_count_compare; /* hard clock intr counter */
105 1.90.16.36 matt struct evcnt ci_ev_count_compare_missed; /* hard clock miss counter */
106 1.90.16.18 matt struct lwp *ci_softlwps[SOFTINT_COUNT];
107 1.90.16.36 matt volatile u_int ci_softints;
108 1.90.16.36 matt struct evcnt ci_ev_fpu_loads; /* fpu load counter */
109 1.90.16.36 matt struct evcnt ci_ev_fpu_saves; /* fpu save counter */
110 1.90.16.38 matt struct evcnt ci_ev_kern_tlbmisses;
111 1.90.16.38 matt struct evcnt ci_ev_user_tlbmisses;
112 1.90.16.38 matt struct evcnt ci_ev_tlblocked;
113 1.90.16.28 cliff
114 1.90.16.12 matt /*
115 1.90.16.12 matt * Per-cpu pmap information
116 1.90.16.12 matt */
117 1.90.16.23 matt int ci_tlb_slot; /* reserved tlb entry for cpu_info */
118 1.90.16.32 matt u_int ci_pmap_asid_cur; /* current ASID */
119 1.90.16.24 matt struct pmap_tlb_info *ci_tlb_info; /* tlb information for this cpu */
120 1.90.16.30 matt union segtab *ci_pmap_seg0tab;
121 1.90.16.30 matt #ifdef _LP64
122 1.90.16.30 matt union segtab *ci_pmap_segtab;
123 1.90.16.30 matt #else
124 1.90.16.15 matt vaddr_t ci_pmap_srcbase; /* starting VA of ephemeral src space */
125 1.90.16.15 matt vaddr_t ci_pmap_dstbase; /* starting VA of ephemeral dst space */
126 1.90.16.30 matt #endif
127 1.90.16.28 cliff
128 1.90.16.36 matt u_int ci_cpuwatch_count; /* number of watchpoints on this CPU */
129 1.90.16.36 matt cpu_watchpoint_t ci_cpuwatch_tab[CPUWATCH_MAX];
130 1.90.16.28 cliff
131 1.90.16.24 matt #ifdef MULTIPROCESSOR
132 1.90.16.25 matt volatile u_long ci_flags;
133 1.90.16.28 cliff volatile uint64_t ci_request_ipis;
134 1.90.16.28 cliff /* bitmask of IPIs requested */
135 1.90.16.28 cliff /* use on chips where hw cannot pass tag */
136 1.90.16.24 matt uint64_t ci_active_ipis; /* bitmask of IPIs being serviced */
137 1.90.16.24 matt uint32_t ci_ksp_tlb_slot; /* tlb entry for kernel stack */
138 1.90.16.24 matt void *ci_fpsave_si; /* FP sync softint handler */
139 1.90.16.24 matt struct evcnt ci_evcnt_all_ipis; /* aggregated IPI counter */
140 1.90.16.24 matt struct evcnt ci_evcnt_per_ipi[NIPIS]; /* individual IPI counters*/
141 1.90.16.25 matt
142 1.90.16.25 matt #define CPUF_PRIMARY 0x01 /* CPU is primary CPU */
143 1.90.16.25 matt #define CPUF_PRESENT 0x02 /* CPU is present */
144 1.90.16.25 matt #define CPUF_RUNNING 0x04 /* CPU is running */
145 1.90.16.25 matt #define CPUF_PAUSED 0x08 /* CPU is paused */
146 1.90.16.25 matt #define CPUF_FPUSAVE 0x10 /* CPU is currently in fpusave_cpu() */
147 1.90.16.27 matt #define CPUF_USERPMAP 0x20 /* CPU has a user pmap activated */
148 1.90.16.24 matt #endif
149 1.90.16.28 cliff
150 1.53 simonb };
151 1.68 simonb
152 1.85 ad #define CPU_INFO_ITERATOR int
153 1.85 ad #define CPU_INFO_FOREACH(cii, ci) \
154 1.85 ad (void)(cii), ci = &cpu_info_store; ci != NULL; ci = ci->ci_next
155 1.85 ad
156 1.68 simonb #endif /* !_LOCORE */
157 1.68 simonb #endif /* _KERNEL */
158 1.53 simonb
159 1.36 soren /*
160 1.36 soren * CTL_MACHDEP definitions.
161 1.36 soren */
162 1.36 soren #define CPU_CONSDEV 1 /* dev_t: console terminal device */
163 1.36 soren #define CPU_BOOTED_KERNEL 2 /* string: booted kernel name */
164 1.36 soren #define CPU_ROOT_DEVICE 3 /* string: root device name */
165 1.66 gmcgarry #define CPU_LLSC 4 /* OS/CPU supports LL/SC instruction */
166 1.43 jeffs
167 1.43 jeffs /*
168 1.51 wiz * Platform can override, but note this breaks userland compatibility
169 1.43 jeffs * with other mips platforms.
170 1.43 jeffs */
171 1.43 jeffs #ifndef CPU_MAXID
172 1.67 shin #define CPU_MAXID 5 /* number of valid machdep ids */
173 1.42 jeffs #endif
174 1.33 simonb
175 1.33 simonb #ifdef _KERNEL
176 1.90.16.36 matt #if defined(_MODULAR) || defined(_LKM) || defined(_STANDALONE)
177 1.87 he /* Assume all CPU architectures are valid for LKM's and standlone progs */
178 1.90.16.36 matt #define MIPS1 1
179 1.90.16.36 matt #define MIPS3 1
180 1.90.16.36 matt #define MIPS4 1
181 1.90.16.36 matt #define MIPS32 1
182 1.90.16.36 matt #define MIPS32R2 1
183 1.90.16.36 matt #define MIPS64 1
184 1.90.16.36 matt #define MIPS64R2 1
185 1.90.16.37 matt #define MIPS64_RMIXL 1
186 1.90.16.37 matt #define MIPS64R2_RMIXL 1
187 1.77 tsutsui #endif
188 1.77 tsutsui
189 1.90.16.37 matt #if (MIPS1 + MIPS3 + MIPS4 + MIPS32 + MIPS32R2 + MIPS64 + MIPS64R2 + MIPS64_RMIXL + MIPS64R2_RMIXL) == 0
190 1.90.16.37 matt #error at least one of MIPS1, MIPS3, MIPS4, MIPS32, MIPS32R2, MIPS64, MIPS64R2, MIPS64_RMIXL, or MIPS64R2_RMIXL must be specified
191 1.77 tsutsui #endif
192 1.53 simonb
193 1.77 tsutsui /* Shortcut for MIPS3 or above defined */
194 1.90.16.36 matt #if defined(MIPS3) || defined(MIPS4) \
195 1.90.16.36 matt || defined(MIPS32) || defined(MIPS32R2) \
196 1.90.16.37 matt || defined(MIPS64) || defined(MIPS64R2) \
197 1.90.16.37 matt || defined(MIPS64_RMIXL) || defined(MIPS64R2_RMIXL)
198 1.90.16.36 matt
199 1.77 tsutsui #define MIPS3_PLUS 1
200 1.90.16.24 matt #define __HAVE_CPU_COUNTER
201 1.77 tsutsui #else
202 1.77 tsutsui #undef MIPS3_PLUS
203 1.77 tsutsui #endif
204 1.33 simonb
205 1.33 simonb /*
206 1.21 jonathan * Macros to find the CPU architecture we're on at run-time,
207 1.21 jonathan * or if possible, at compile-time.
208 1.21 jonathan */
209 1.21 jonathan
210 1.90.16.36 matt #define CPU_ARCH_MIPSx 0 /* XXX unknown */
211 1.90.16.36 matt #define CPU_ARCH_MIPS1 (1 << 0)
212 1.90.16.36 matt #define CPU_ARCH_MIPS2 (1 << 1)
213 1.90.16.36 matt #define CPU_ARCH_MIPS3 (1 << 2)
214 1.90.16.36 matt #define CPU_ARCH_MIPS4 (1 << 3)
215 1.90.16.36 matt #define CPU_ARCH_MIPS5 (1 << 4)
216 1.90.16.36 matt #define CPU_ARCH_MIPS32 (1 << 5)
217 1.90.16.36 matt #define CPU_ARCH_MIPS64 (1 << 6)
218 1.90.16.36 matt #define CPU_ARCH_MIPS32R2 (1 << 7)
219 1.90.16.36 matt #define CPU_ARCH_MIPS64R2 (1 << 8)
220 1.46 cgd
221 1.82 yamt /* Note: must be kept in sync with -ffixed-?? Makefile.mips. */
222 1.90.16.16 matt #define MIPS_CURLWP $24
223 1.90.16.16 matt #define MIPS_CURLWP_QUOTED "$24"
224 1.90.16.16 matt #define MIPS_CURLWP_LABEL _L_T8
225 1.90.16.21 matt #define MIPS_CURLWP_REG _R_T8
226 1.90.16.17 matt #define TF_MIPS_CURLWP(x) TF_REG_T8(x)
227 1.82 yamt
228 1.58 simonb #ifndef _LOCORE
229 1.82 yamt
230 1.77 tsutsui extern struct cpu_info cpu_info_store;
231 1.82 yamt register struct lwp *mips_curlwp asm(MIPS_CURLWP_QUOTED);
232 1.77 tsutsui
233 1.82 yamt #define curlwp mips_curlwp
234 1.82 yamt #define curcpu() (curlwp->l_cpu)
235 1.90.16.36 matt #define curpcb ((struct pcb *)lwp_getpcb(curlwp))
236 1.90.16.13 matt #ifdef MULTIPROCESSOR
237 1.90.16.34 cliff #define cpu_number() (curcpu()->ci_index)
238 1.90.16.34 cliff #define CPU_IS_PRIMARY(ci) ((ci)->ci_flags & CPUF_PRIMARY)
239 1.90.16.13 matt #else
240 1.90.16.36 matt #define cpu_number() (0)
241 1.90.16.40 matt #define CPU_IS_PRIMARY(ci) ((void) (ci), true)
242 1.90.16.13 matt #endif
243 1.77 tsutsui
244 1.58 simonb /* XXX simonb
245 1.58 simonb * Should the following be in a cpu_info type structure?
246 1.58 simonb * And how many of these are per-cpu vs. per-system? (Ie,
247 1.58 simonb * we can assume that all cpus have the same mmu-type, but
248 1.58 simonb * maybe not that all cpus run at the same clock speed.
249 1.58 simonb * Some SGI's apparently support R12k and R14k in the same
250 1.58 simonb * box.)
251 1.58 simonb */
252 1.90.16.13 matt struct mips_options {
253 1.90.16.13 matt const struct pridtab *mips_cpu;
254 1.90.16.13 matt
255 1.90.16.13 matt u_int mips_cpu_arch;
256 1.90.16.14 matt u_int mips_cpu_mhz; /* CPU speed in MHz, estimated by mc_cpuspeed(). */
257 1.90.16.13 matt u_int mips_cpu_flags;
258 1.90.16.13 matt u_int mips_num_tlb_entries;
259 1.90.16.39 matt u_int mips_num_tlb_asids;
260 1.90.16.13 matt mips_prid_t mips_cpu_id;
261 1.90.16.13 matt mips_prid_t mips_fpu_id;
262 1.90.16.13 matt bool mips_has_r4k_mmu;
263 1.90.16.13 matt bool mips_has_llsc;
264 1.90.16.14 matt u_int mips3_pg_shift;
265 1.90.16.14 matt u_int mips3_pg_cached;
266 1.90.16.13 matt #ifdef MIPS3_PLUS
267 1.90.16.13 matt uint64_t mips3_xkphys_cached;
268 1.90.16.13 matt uint64_t mips3_tlb_vpn_mask;
269 1.90.16.13 matt uint64_t mips3_tlb_pfn_mask;
270 1.90.16.13 matt uint32_t mips3_tlb_pg_mask;
271 1.90.16.13 matt #endif
272 1.90.16.13 matt };
273 1.90.16.13 matt extern struct mips_options mips_options;
274 1.58 simonb
275 1.58 simonb #define CPU_MIPS_R4K_MMU 0x0001
276 1.58 simonb #define CPU_MIPS_NO_LLSC 0x0002
277 1.58 simonb #define CPU_MIPS_CAUSE_IV 0x0004
278 1.58 simonb #define CPU_MIPS_HAVE_SPECIAL_CCA 0x0008 /* Defaults to '3' if not set. */
279 1.58 simonb #define CPU_MIPS_CACHED_CCA_MASK 0x0070
280 1.58 simonb #define CPU_MIPS_CACHED_CCA_SHIFT 4
281 1.62 simonb #define CPU_MIPS_DOUBLE_COUNT 0x0080 /* 1 cp0 count == 2 clock cycles */
282 1.63 simonb #define CPU_MIPS_USE_WAIT 0x0100 /* Use "wait"-based cpu_idle() */
283 1.63 simonb #define CPU_MIPS_NO_WAIT 0x0200 /* Inverse of previous, for mips32/64 */
284 1.69 simonb #define CPU_MIPS_D_CACHE_COHERENT 0x0400 /* D-cache is fully coherent */
285 1.69 simonb #define CPU_MIPS_I_D_CACHE_COHERENT 0x0800 /* I-cache funcs don't need to flush the D-cache */
286 1.90.16.3 matt #define CPU_MIPS_NO_LLADDR 0x1000
287 1.90.16.5 cliff #define CPU_MIPS_HAVE_MxCR 0x2000 /* have mfcr, mtcr insns */
288 1.58 simonb #define MIPS_NOT_SUPP 0x8000
289 1.60 simonb
290 1.78 ad #endif /* !_LOCORE */
291 1.78 ad
292 1.90.16.37 matt #if ((MIPS1 + MIPS3 + MIPS4 + MIPS32 + MIPS32R2 + MIPS64 + MIPS64R2 + MIPS64_RMIXL + MIPS64R2_RMIXL) == 1) || defined(_LOCORE)
293 1.78 ad
294 1.78 ad #if defined(MIPS1)
295 1.78 ad
296 1.58 simonb # define CPUISMIPS3 0
297 1.58 simonb # define CPUIS64BITS 0
298 1.58 simonb # define CPUISMIPS32 0
299 1.90.16.36 matt # define CPUISMIPS32R2 0
300 1.58 simonb # define CPUISMIPS64 0
301 1.90.16.36 matt # define CPUISMIPS64R2 0
302 1.58 simonb # define CPUISMIPSNN 0
303 1.58 simonb # define MIPS_HAS_R4K_MMU 0
304 1.58 simonb # define MIPS_HAS_CLOCK 0
305 1.58 simonb # define MIPS_HAS_LLSC 0
306 1.90.16.4 matt # define MIPS_HAS_LLADDR 0
307 1.58 simonb
308 1.78 ad #elif defined(MIPS3) || defined(MIPS4)
309 1.78 ad
310 1.58 simonb # define CPUISMIPS3 1
311 1.58 simonb # define CPUIS64BITS 1
312 1.58 simonb # define CPUISMIPS32 0
313 1.90.16.36 matt # define CPUISMIPS32R2 0
314 1.58 simonb # define CPUISMIPS64 0
315 1.90.16.36 matt # define CPUISMIPS64R2 0
316 1.58 simonb # define CPUISMIPSNN 0
317 1.58 simonb # define MIPS_HAS_R4K_MMU 1
318 1.58 simonb # define MIPS_HAS_CLOCK 1
319 1.78 ad # if defined(_LOCORE)
320 1.90.16.36 matt # if !defined(MIPS3_4100)
321 1.78 ad # define MIPS_HAS_LLSC 1
322 1.78 ad # else
323 1.78 ad # define MIPS_HAS_LLSC 0
324 1.78 ad # endif
325 1.78 ad # else /* _LOCORE */
326 1.90.16.13 matt # define MIPS_HAS_LLSC (mips_options.mips_has_llsc)
327 1.78 ad # endif /* _LOCORE */
328 1.90.16.13 matt # define MIPS_HAS_LLADDR ((mips_options.mips_cpu_flags & CPU_MIPS_NO_LLADDR) == 0)
329 1.78 ad
330 1.78 ad #elif defined(MIPS32)
331 1.58 simonb
332 1.58 simonb # define CPUISMIPS3 1
333 1.58 simonb # define CPUIS64BITS 0
334 1.58 simonb # define CPUISMIPS32 1
335 1.90.16.36 matt # define CPUISMIPS32R2 0
336 1.58 simonb # define CPUISMIPS64 0
337 1.90.16.36 matt # define CPUISMIPS64R2 0
338 1.90.16.36 matt # define CPUISMIPSNN 1
339 1.90.16.36 matt # define MIPS_HAS_R4K_MMU 1
340 1.90.16.36 matt # define MIPS_HAS_CLOCK 1
341 1.90.16.36 matt # define MIPS_HAS_LLSC 1
342 1.90.16.36 matt # define MIPS_HAS_LLADDR ((mips_options.mips_cpu_flags & CPU_MIPS_NO_LLADDR) == 0)
343 1.90.16.36 matt
344 1.90.16.36 matt #elif defined(MIPS32R2)
345 1.90.16.36 matt
346 1.90.16.36 matt # define CPUISMIPS3 1
347 1.90.16.36 matt # define CPUIS64BITS 0
348 1.90.16.36 matt # define CPUISMIPS32 0
349 1.90.16.36 matt # define CPUISMIPS32R2 1
350 1.90.16.36 matt # define CPUISMIPS64 0
351 1.90.16.36 matt # define CPUISMIPS64R2 0
352 1.58 simonb # define CPUISMIPSNN 1
353 1.58 simonb # define MIPS_HAS_R4K_MMU 1
354 1.58 simonb # define MIPS_HAS_CLOCK 1
355 1.58 simonb # define MIPS_HAS_LLSC 1
356 1.90.16.13 matt # define MIPS_HAS_LLADDR ((mips_options.mips_cpu_flags & CPU_MIPS_NO_LLADDR) == 0)
357 1.58 simonb
358 1.90.16.37 matt #elif defined(MIPS64) || defined(MIPS64_RMIXL)
359 1.78 ad
360 1.58 simonb # define CPUISMIPS3 1
361 1.58 simonb # define CPUIS64BITS 1
362 1.58 simonb # define CPUISMIPS32 0
363 1.90.16.36 matt # define CPUISMIPS32R2 0
364 1.58 simonb # define CPUISMIPS64 1
365 1.90.16.36 matt # define CPUISMIPS64R2 0
366 1.90.16.36 matt # define CPUISMIPSNN 1
367 1.90.16.36 matt # define MIPS_HAS_R4K_MMU 1
368 1.90.16.36 matt # define MIPS_HAS_CLOCK 1
369 1.90.16.36 matt # define MIPS_HAS_LLSC 1
370 1.90.16.36 matt # define MIPS_HAS_LLADDR ((mips_options.mips_cpu_flags & CPU_MIPS_NO_LLADDR) == 0)
371 1.90.16.36 matt
372 1.90.16.37 matt #elif defined(MIPS64R2) || defined(MIPS64R2_RMIXL)
373 1.90.16.36 matt
374 1.90.16.36 matt # define CPUISMIPS3 1
375 1.90.16.36 matt # define CPUIS64BITS 1
376 1.90.16.36 matt # define CPUISMIPS32 0
377 1.90.16.36 matt # define CPUISMIPS32R2 0
378 1.90.16.36 matt # define CPUISMIPS64 0
379 1.90.16.36 matt # define CPUISMIPS64R2 1
380 1.58 simonb # define CPUISMIPSNN 1
381 1.58 simonb # define MIPS_HAS_R4K_MMU 1
382 1.58 simonb # define MIPS_HAS_CLOCK 1
383 1.58 simonb # define MIPS_HAS_LLSC 1
384 1.90.16.13 matt # define MIPS_HAS_LLADDR ((mips_options.mips_cpu_flags & CPU_MIPS_NO_LLADDR) == 0)
385 1.78 ad
386 1.78 ad #endif
387 1.21 jonathan
388 1.58 simonb #else /* run-time test */
389 1.21 jonathan
390 1.78 ad #ifndef _LOCORE
391 1.78 ad
392 1.90.16.13 matt #define MIPS_HAS_R4K_MMU (mips_options.mips_has_r4k_mmu)
393 1.90.16.13 matt #define MIPS_HAS_LLSC (mips_options.mips_has_llsc)
394 1.90.16.13 matt #define MIPS_HAS_LLADDR ((mips_options.mips_cpu_flags & CPU_MIPS_NO_LLADDR) == 0)
395 1.45 cgd
396 1.45 cgd /* This test is ... rather bogus */
397 1.90.16.39 matt #define CPUISMIPS3 ((mips_options.mips_cpu_arch & (CPU_ARCH_MIPS3 | CPU_ARCH_MIPS4 | CPU_ARCH_MIPS32 | CPU_ARCH_MIPS64 | CPU_ARCH_MIPS32R2 | CPU_ARCH_MIPS64R2 )) != 0)
398 1.58 simonb
399 1.58 simonb /* And these aren't much better while the previous test exists as is... */
400 1.90.16.13 matt #define CPUISMIPS4 ((mips_options.mips_cpu_arch & CPU_ARCH_MIPS4) != 0)
401 1.90.16.13 matt #define CPUISMIPS5 ((mips_options.mips_cpu_arch & CPU_ARCH_MIPS5) != 0)
402 1.90.16.13 matt #define CPUISMIPS32 ((mips_options.mips_cpu_arch & CPU_ARCH_MIPS32) != 0)
403 1.90.16.36 matt #define CPUISMIPS32R2 ((mips_options.mips_cpu_arch & CPU_ARCH_MIPS32R2) != 0)
404 1.90.16.13 matt #define CPUISMIPS64 ((mips_options.mips_cpu_arch & CPU_ARCH_MIPS64) != 0)
405 1.90.16.36 matt #define CPUISMIPS64R2 ((mips_options.mips_cpu_arch & CPU_ARCH_MIPS64R2) != 0)
406 1.90.16.36 matt #define CPUISMIPSNN ((mips_options.mips_cpu_arch & (CPU_ARCH_MIPS32 | CPU_ARCH_MIPS32R2 | CPU_ARCH_MIPS64 | CPU_ARCH_MIPS64R2)) != 0)
407 1.90.16.13 matt #define CPUIS64BITS ((mips_options.mips_cpu_arch & \
408 1.90.16.36 matt (CPU_ARCH_MIPS3 | CPU_ARCH_MIPS4 | CPU_ARCH_MIPS64 | CPU_ARCH_MIPS64R2)) != 0)
409 1.58 simonb
410 1.90.16.13 matt #define MIPS_HAS_CLOCK (mips_options.mips_cpu_arch >= CPU_ARCH_MIPS3)
411 1.78 ad
412 1.78 ad #else /* !_LOCORE */
413 1.78 ad
414 1.78 ad #define MIPS_HAS_LLSC 0
415 1.78 ad
416 1.78 ad #endif /* !_LOCORE */
417 1.78 ad
418 1.21 jonathan #endif /* run-time test */
419 1.21 jonathan
420 1.78 ad #ifndef _LOCORE
421 1.58 simonb
422 1.21 jonathan /*
423 1.1 deraadt * definitions of cpu-dependent requirements
424 1.1 deraadt * referenced in generic code
425 1.1 deraadt */
426 1.11 cgd #define cpu_swapout(p) panic("cpu_swapout: can't get here");
427 1.42 jeffs
428 1.90.16.19 matt /*
429 1.90.16.33 cliff * Send an inter-processor interupt to each other CPU (excludes curcpu())
430 1.90.16.33 cliff */
431 1.90.16.33 cliff void cpu_broadcast_ipi(int);
432 1.90.16.33 cliff
433 1.90.16.33 cliff /*
434 1.90.16.33 cliff * Send an inter-processor interupt to CPUs in cpuset (excludes curcpu())
435 1.90.16.33 cliff */
436 1.90.16.36 matt void cpu_multicast_ipi(__cpuset_t, int);
437 1.90.16.33 cliff
438 1.90.16.33 cliff /*
439 1.90.16.21 matt * Send an inter-processor interupt to another CPU.
440 1.90.16.21 matt */
441 1.90.16.21 matt int cpu_send_ipi(struct cpu_info *, int);
442 1.90.16.21 matt
443 1.90.16.21 matt /*
444 1.90.16.19 matt * cpu_intr(ppl, pc, status); (most state needed by clockframe)
445 1.90.16.19 matt */
446 1.90.16.19 matt void cpu_intr(int, vaddr_t, uint32_t);
447 1.1 deraadt
448 1.1 deraadt /*
449 1.1 deraadt * Arguments to hardclock and gatherstats encapsulate the previous
450 1.1 deraadt * machine state in an opaque clockframe.
451 1.1 deraadt */
452 1.5 glass struct clockframe {
453 1.90.16.19 matt vaddr_t pc; /* program counter at time of interrupt */
454 1.90.16.8 cliff uint32_t sr; /* status register at time of interrupt */
455 1.90.16.19 matt bool intr; /* interrupted a interrupt */
456 1.5 glass };
457 1.1 deraadt
458 1.14 jonathan /*
459 1.79 ad * A port must provde CLKF_USERMODE() for use in machine-independent code.
460 1.79 ad * These differ on r4000 and r3000 systems; provide them in the
461 1.79 ad * port-dependent file that includes this one, using the macros below.
462 1.14 jonathan */
463 1.14 jonathan
464 1.21 jonathan /* mips1 versions */
465 1.22 jonathan #define MIPS1_CLKF_USERMODE(framep) ((framep)->sr & MIPS_SR_KU_PREV)
466 1.14 jonathan
467 1.21 jonathan /* mips3 versions */
468 1.22 jonathan #define MIPS3_CLKF_USERMODE(framep) ((framep)->sr & MIPS_SR_KSU_USER)
469 1.56 uch
470 1.1 deraadt #define CLKF_PC(framep) ((framep)->pc)
471 1.90.16.19 matt #define CLKF_INTR(framep) ((framep)->intr)
472 1.18 jonathan
473 1.58 simonb #if defined(MIPS3_PLUS) && !defined(MIPS1) /* XXX bogus! */
474 1.21 jonathan #define CLKF_USERMODE(framep) MIPS3_CLKF_USERMODE(framep)
475 1.21 jonathan #endif
476 1.21 jonathan
477 1.58 simonb #if !defined(MIPS3_PLUS) && defined(MIPS1) /* XXX bogus! */
478 1.21 jonathan #define CLKF_USERMODE(framep) MIPS1_CLKF_USERMODE(framep)
479 1.21 jonathan #endif
480 1.21 jonathan
481 1.58 simonb #if defined(MIPS3_PLUS) && defined(MIPS1) /* XXX bogus! */
482 1.21 jonathan #define CLKF_USERMODE(framep) \
483 1.21 jonathan ((CPUISMIPS3) ? MIPS3_CLKF_USERMODE(framep): MIPS1_CLKF_USERMODE(framep))
484 1.18 jonathan #endif
485 1.18 jonathan
486 1.47 thorpej /*
487 1.90.16.20 matt * Misc prototypes and variable declarations.
488 1.47 thorpej */
489 1.90.16.36 matt #define LWP_PC(l) cpu_lwp_pc(l)
490 1.90.16.36 matt
491 1.90.16.36 matt struct proc;
492 1.90.16.20 matt struct lwp;
493 1.90.16.36 matt struct pcb;
494 1.90.16.36 matt struct reg;
495 1.1 deraadt
496 1.1 deraadt /*
497 1.1 deraadt * Preempt the current process if in interrupt from user mode,
498 1.1 deraadt * or after the current trap/syscall if in system mode.
499 1.1 deraadt */
500 1.82 yamt void cpu_need_resched(struct cpu_info *, int);
501 1.1 deraadt /*
502 1.81 simonb * Notify the current lwp (l) that it has a signal pending,
503 1.1 deraadt * process as soon as possible.
504 1.1 deraadt */
505 1.90.16.20 matt void cpu_signotify(struct lwp *);
506 1.1 deraadt
507 1.23 thorpej /*
508 1.90.16.20 matt * Give a profiling tick to the current process when the user profiling
509 1.90.16.20 matt * buffer pages are invalid. On the MIPS, request an ast to send us
510 1.90.16.20 matt * through trap, marking the proc as needing a profiling tick.
511 1.23 thorpej */
512 1.90.16.20 matt void cpu_need_proftick(struct lwp *);
513 1.90.16.20 matt void cpu_set_curpri(int);
514 1.37 simonb
515 1.90.16.9 matt extern int mips_poolpage_vmfreelist; /* freelist to allocate poolpages */
516 1.25 jonathan
517 1.90.16.24 matt struct cpu_info *
518 1.90.16.32 matt cpu_info_alloc(struct pmap_tlb_info *, cpuid_t, cpuid_t, cpuid_t,
519 1.90.16.32 matt cpuid_t);
520 1.90.16.24 matt void cpu_attach_common(device_t, struct cpu_info *);
521 1.90.16.24 matt void cpu_startup_common(void);
522 1.90.16.31 matt #ifdef _LP64
523 1.90.16.31 matt void cpu_vmspace_exec(struct lwp *, vaddr_t, vaddr_t);
524 1.90.16.31 matt #endif
525 1.90.16.33 cliff
526 1.90.16.25 matt #ifdef MULTIPROCESSOR
527 1.90.16.25 matt void cpu_hatch(struct cpu_info *ci);
528 1.90.16.25 matt void cpu_trampoline(void);
529 1.90.16.25 matt void cpu_boot_secondary_processors(void);
530 1.90.16.33 cliff void cpu_halt(void);
531 1.90.16.33 cliff void cpu_halt_others(void);
532 1.90.16.33 cliff void cpu_pause(struct reg *);
533 1.90.16.33 cliff void cpu_pause_others(void);
534 1.90.16.33 cliff void cpu_resume(int);
535 1.90.16.33 cliff void cpu_resume_others(void);
536 1.90.16.33 cliff int cpu_is_paused(int);
537 1.90.16.33 cliff void cpu_debug_dump(void);
538 1.90.16.33 cliff
539 1.90.16.36 matt extern volatile __cpuset_t cpus_running;
540 1.90.16.36 matt extern volatile __cpuset_t cpus_hatched;
541 1.90.16.36 matt extern volatile __cpuset_t cpus_paused;
542 1.90.16.36 matt extern volatile __cpuset_t cpus_resumed;
543 1.90.16.36 matt extern volatile __cpuset_t cpus_halted;
544 1.90.16.25 matt #endif
545 1.90.16.24 matt
546 1.90.16.6 matt /* copy.S */
547 1.90.16.6 matt int8_t ufetch_int8(void *);
548 1.90.16.6 matt int16_t ufetch_int16(void *);
549 1.90.16.6 matt int32_t ufetch_int32(void *);
550 1.90.16.6 matt uint8_t ufetch_uint8(void *);
551 1.90.16.6 matt uint16_t ufetch_uint16(void *);
552 1.90.16.6 matt uint32_t ufetch_uint32(void *);
553 1.90.16.6 matt int8_t ufetch_int8_intrsafe(void *);
554 1.90.16.6 matt int16_t ufetch_int16_intrsafe(void *);
555 1.90.16.6 matt int32_t ufetch_int32_intrsafe(void *);
556 1.90.16.6 matt uint8_t ufetch_uint8_intrsafe(void *);
557 1.90.16.6 matt uint16_t ufetch_uint16_intrsafe(void *);
558 1.90.16.6 matt uint32_t ufetch_uint32_intrsafe(void *);
559 1.90.16.6 matt #ifdef _LP64
560 1.90.16.6 matt int64_t ufetch_int64(void *);
561 1.90.16.6 matt uint64_t ufetch_uint64(void *);
562 1.90.16.6 matt int64_t ufetch_int64_intrsafe(void *);
563 1.90.16.6 matt uint64_t ufetch_uint64_intrsafe(void *);
564 1.90.16.6 matt #endif
565 1.90.16.6 matt char ufetch_char(void *);
566 1.90.16.6 matt short ufetch_short(void *);
567 1.90.16.6 matt int ufetch_int(void *);
568 1.90.16.6 matt long ufetch_long(void *);
569 1.90.16.6 matt char ufetch_char_intrsafe(void *);
570 1.90.16.6 matt short ufetch_short_intrsafe(void *);
571 1.90.16.6 matt int ufetch_int_intrsafe(void *);
572 1.90.16.6 matt long ufetch_long_intrsafe(void *);
573 1.90.16.6 matt
574 1.90.16.6 matt u_char ufetch_uchar(void *);
575 1.90.16.6 matt u_short ufetch_ushort(void *);
576 1.90.16.6 matt u_int ufetch_uint(void *);
577 1.90.16.6 matt u_long ufetch_ulong(void *);
578 1.90.16.6 matt u_char ufetch_uchar_intrsafe(void *);
579 1.90.16.6 matt u_short ufetch_ushort_intrsafe(void *);
580 1.90.16.6 matt u_int ufetch_uint_intrsafe(void *);
581 1.90.16.6 matt u_long ufetch_ulong_intrsafe(void *);
582 1.90.16.6 matt void *ufetch_ptr(void *);
583 1.90.16.6 matt
584 1.90.16.6 matt int ustore_int8(void *, int8_t);
585 1.90.16.6 matt int ustore_int16(void *, int16_t);
586 1.90.16.6 matt int ustore_int32(void *, int32_t);
587 1.90.16.6 matt int ustore_uint8(void *, uint8_t);
588 1.90.16.7 matt int ustore_uint16(void *, uint16_t);
589 1.90.16.6 matt int ustore_uint32(void *, uint32_t);
590 1.90.16.6 matt int ustore_int8_intrsafe(void *, int8_t);
591 1.90.16.6 matt int ustore_int16_intrsafe(void *, int16_t);
592 1.90.16.6 matt int ustore_int32_intrsafe(void *, int32_t);
593 1.90.16.6 matt int ustore_uint8_intrsafe(void *, uint8_t);
594 1.90.16.6 matt int ustore_uint16_intrsafe(void *, uint16_t);
595 1.90.16.6 matt int ustore_uint32_intrsafe(void *, uint32_t);
596 1.90.16.6 matt #ifdef _LP64
597 1.90.16.6 matt int ustore_int64(void *, int64_t);
598 1.90.16.6 matt int ustore_uint64(void *, uint64_t);
599 1.90.16.6 matt int ustore_int64_intrsafe(void *, int64_t);
600 1.90.16.6 matt int ustore_uint64_intrsafe(void *, uint64_t);
601 1.90.16.6 matt #endif
602 1.90.16.6 matt int ustore_char(void *, char);
603 1.90.16.6 matt int ustore_char_intrsafe(void *, char);
604 1.90.16.6 matt int ustore_short(void *, short);
605 1.90.16.6 matt int ustore_short_intrsafe(void *, short);
606 1.90.16.6 matt int ustore_int(void *, int);
607 1.90.16.6 matt int ustore_int_intrsafe(void *, int);
608 1.90.16.6 matt int ustore_long(void *, long);
609 1.90.16.6 matt int ustore_long_intrsafe(void *, long);
610 1.90.16.6 matt int ustore_uchar(void *, u_char);
611 1.90.16.6 matt int ustore_uchar_intrsafe(void *, u_char);
612 1.90.16.6 matt int ustore_ushort(void *, u_short);
613 1.90.16.6 matt int ustore_ushort_intrsafe(void *, u_short);
614 1.90.16.6 matt int ustore_uint(void *, u_int);
615 1.90.16.6 matt int ustore_uint_intrsafe(void *, u_int);
616 1.90.16.6 matt int ustore_ulong(void *, u_long);
617 1.90.16.6 matt int ustore_ulong_intrsafe(void *, u_long);
618 1.90.16.6 matt int ustore_ptr(void *, void *);
619 1.90.16.6 matt int ustore_ptr_intrsafe(void *, void *);
620 1.90.16.6 matt
621 1.90.16.6 matt int ustore_uint32_isync(void *, uint32_t);
622 1.90.16.6 matt
623 1.28 castor /* trap.c */
624 1.58 simonb void netintr(void);
625 1.58 simonb int kdbpeek(vaddr_t);
626 1.23 thorpej
627 1.90.16.24 matt /* mips_fpu.c */
628 1.90.16.24 matt void fpu_init(void);
629 1.90.16.36 matt void fpu_discard(void);
630 1.90.16.36 matt void fpu_load(void);
631 1.90.16.36 matt void fpu_save(void);
632 1.90.16.36 matt void fpu_save_lwp(struct lwp *);
633 1.90.16.24 matt void fpusave_cpu(struct cpu_info *);
634 1.90.16.24 matt
635 1.28 castor /* mips_machdep.c */
636 1.58 simonb void dumpsys(void);
637 1.90.16.36 matt int savectx(struct pcb *);
638 1.90.16.39 matt void cpu_identify(device_t, const char *);
639 1.90.16.41 matt bool mm_md_direct_mapped_phys(paddr_t, vaddr_t *);
640 1.13 jonathan
641 1.61 simonb /* locore*.S */
642 1.58 simonb int badaddr(void *, size_t);
643 1.61 simonb int badaddr64(uint64_t, size_t);
644 1.25 jonathan
645 1.90.16.18 matt /* vm_machdep.c */
646 1.90.16.36 matt void cpu_proc_fork(struct proc *, struct proc *);
647 1.90.16.36 matt vaddr_t cpu_lwp_pc(struct lwp *);
648 1.90.16.18 matt void cpu_uarea_remap(struct lwp *);
649 1.90.16.18 matt
650 1.33 simonb #endif /* ! _LOCORE */
651 1.28 castor #endif /* _KERNEL */
652 1.1 deraadt #endif /* _CPU_H_ */
653