locore.h revision 1.20 1 1.20 matt /* $NetBSD: locore.h,v 1.20 2015/03/29 09:49:54 matt Exp $ */
2 1.1 matt
3 1.1 matt /*
4 1.1 matt * Copyright (c) 1994-1996 Mark Brinicombe.
5 1.1 matt * Copyright (c) 1994 Brini.
6 1.1 matt * All rights reserved.
7 1.1 matt *
8 1.1 matt * This code is derived from software written for Brini by Mark Brinicombe
9 1.1 matt *
10 1.1 matt * Redistribution and use in source and binary forms, with or without
11 1.1 matt * modification, are permitted provided that the following conditions
12 1.1 matt * are met:
13 1.1 matt * 1. Redistributions of source code must retain the above copyright
14 1.1 matt * notice, this list of conditions and the following disclaimer.
15 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 matt * notice, this list of conditions and the following disclaimer in the
17 1.1 matt * documentation and/or other materials provided with the distribution.
18 1.1 matt * 3. All advertising materials mentioning features or use of this software
19 1.1 matt * must display the following acknowledgement:
20 1.1 matt * This product includes software developed by Brini.
21 1.1 matt * 4. The name of the company nor the name of the author may be used to
22 1.1 matt * endorse or promote products derived from this software without specific
23 1.1 matt * prior written permission.
24 1.1 matt *
25 1.1 matt * THIS SOFTWARE IS PROVIDED BY BRINI ``AS IS'' AND ANY EXPRESS OR IMPLIED
26 1.1 matt * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
27 1.1 matt * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
28 1.1 matt * IN NO EVENT SHALL BRINI OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
29 1.1 matt * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
30 1.1 matt * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
31 1.1 matt * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
32 1.1 matt * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
33 1.1 matt * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
34 1.1 matt * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
35 1.1 matt * SUCH DAMAGE.
36 1.1 matt *
37 1.1 matt * RiscBSD kernel project
38 1.1 matt *
39 1.1 matt * cpu.h
40 1.1 matt *
41 1.1 matt * CPU specific symbols
42 1.1 matt *
43 1.1 matt * Created : 18/09/94
44 1.1 matt *
45 1.1 matt * Based on kate/katelib/arm6.h
46 1.1 matt */
47 1.1 matt
48 1.1 matt #ifndef _ARM_LOCORE_H_
49 1.1 matt #define _ARM_LOCORE_H_
50 1.1 matt
51 1.2 matt #ifdef _KERNEL_OPT
52 1.2 matt #include "opt_cpuoptions.h"
53 1.2 matt #include "opt_cputypes.h"
54 1.15 matt #include "opt_arm_debug.h"
55 1.2 matt #endif
56 1.2 matt
57 1.1 matt #include <arm/cpuconf.h>
58 1.1 matt #include <arm/armreg.h>
59 1.1 matt
60 1.1 matt #include <machine/frame.h>
61 1.1 matt
62 1.1 matt #ifdef _LOCORE
63 1.1 matt
64 1.1 matt #if defined(_ARM_ARCH_6)
65 1.1 matt #define IRQdisable cpsid i
66 1.1 matt #define IRQenable cpsie i
67 1.1 matt #elif defined(__PROG32)
68 1.1 matt #define IRQdisable \
69 1.1 matt stmfd sp!, {r0} ; \
70 1.1 matt mrs r0, cpsr ; \
71 1.1 matt orr r0, r0, #(I32_bit) ; \
72 1.1 matt msr cpsr_c, r0 ; \
73 1.1 matt ldmfd sp!, {r0}
74 1.1 matt
75 1.1 matt #define IRQenable \
76 1.1 matt stmfd sp!, {r0} ; \
77 1.1 matt mrs r0, cpsr ; \
78 1.1 matt bic r0, r0, #(I32_bit) ; \
79 1.1 matt msr cpsr_c, r0 ; \
80 1.1 matt ldmfd sp!, {r0}
81 1.1 matt #else
82 1.1 matt /* Not yet used in 26-bit code */
83 1.1 matt #endif
84 1.1 matt
85 1.1 matt #if defined (TPIDRPRW_IS_CURCPU)
86 1.1 matt #define GET_CURCPU(rX) mrc p15, 0, rX, c13, c0, 4
87 1.1 matt #define GET_CURLWP(rX) GET_CURCPU(rX); ldr rX, [rX, #CI_CURLWP]
88 1.1 matt #elif defined (TPIDRPRW_IS_CURLWP)
89 1.1 matt #define GET_CURLWP(rX) mrc p15, 0, rX, c13, c0, 4
90 1.20 matt #if defined (MULTIPROCESSOR)
91 1.1 matt #define GET_CURCPU(rX) GET_CURLWP(rX); ldr rX, [rX, #L_CPU]
92 1.20 matt #elif defined(_ARM_ARCH_7)
93 1.20 matt #define GET_CURCPU(rX) movw rX, #:lower16:cpu_info_store; movt rX, #:upper16:cpu_info_store
94 1.20 matt #else
95 1.20 matt #define GET_CURCPU(rX) ldr rX, =_C_LABEL(cpu_info_store)
96 1.20 matt #endif
97 1.1 matt #elif !defined(MULTIPROCESSOR)
98 1.1 matt #define GET_CURCPU(rX) ldr rX, =_C_LABEL(cpu_info_store)
99 1.1 matt #define GET_CURLWP(rX) GET_CURCPU(rX); ldr rX, [rX, #CI_CURLWP]
100 1.1 matt #endif
101 1.1 matt #define GET_CURPCB(rX) GET_CURLWP(rX); ldr rX, [rX, #L_PCB]
102 1.1 matt
103 1.1 matt #else /* !_LOCORE */
104 1.1 matt
105 1.3 matt #include <arm/cpufunc.h>
106 1.3 matt
107 1.1 matt #ifdef __PROG32
108 1.1 matt #define IRQdisable __set_cpsr_c(I32_bit, I32_bit);
109 1.1 matt #define IRQenable __set_cpsr_c(I32_bit, 0);
110 1.1 matt #else
111 1.1 matt #define IRQdisable set_r15(R15_IRQ_DISABLE, R15_IRQ_DISABLE);
112 1.1 matt #define IRQenable set_r15(R15_IRQ_DISABLE, 0);
113 1.1 matt #endif
114 1.1 matt
115 1.1 matt /*
116 1.1 matt * Validate a PC or PSR for a user process. Used by various system calls
117 1.1 matt * that take a context passed by the user and restore it.
118 1.1 matt */
119 1.1 matt
120 1.1 matt #ifdef __PROG32
121 1.17 matt #ifdef __NO_FIQ
122 1.1 matt #define VALID_R15_PSR(r15,psr) \
123 1.17 matt (((psr) & PSR_MODE) == PSR_USR32_MODE && ((psr) & I32_bit) == 0)
124 1.17 matt #else
125 1.17 matt #define VALID_R15_PSR(r15,psr) \
126 1.17 matt (((psr) & PSR_MODE) == PSR_USR32_MODE && ((psr) & IF32_bits) == 0)
127 1.17 matt #endif
128 1.1 matt #else
129 1.1 matt #define VALID_R15_PSR(r15,psr) \
130 1.1 matt (((r15) & R15_MODE) == R15_MODE_USR && \
131 1.1 matt ((r15) & (R15_IRQ_DISABLE | R15_FIQ_DISABLE)) == 0)
132 1.1 matt #endif
133 1.1 matt
134 1.1 matt
135 1.1 matt
136 1.1 matt /* The address of the vector page. */
137 1.1 matt extern vaddr_t vector_page;
138 1.1 matt #ifdef __PROG32
139 1.1 matt void arm32_vector_init(vaddr_t, int);
140 1.1 matt
141 1.1 matt #define ARM_VEC_RESET (1 << 0)
142 1.1 matt #define ARM_VEC_UNDEFINED (1 << 1)
143 1.1 matt #define ARM_VEC_SWI (1 << 2)
144 1.1 matt #define ARM_VEC_PREFETCH_ABORT (1 << 3)
145 1.1 matt #define ARM_VEC_DATA_ABORT (1 << 4)
146 1.1 matt #define ARM_VEC_ADDRESS_EXCEPTION (1 << 5)
147 1.1 matt #define ARM_VEC_IRQ (1 << 6)
148 1.1 matt #define ARM_VEC_FIQ (1 << 7)
149 1.1 matt
150 1.1 matt #define ARM_NVEC 8
151 1.1 matt #define ARM_VEC_ALL 0xffffffff
152 1.1 matt #endif /* __PROG32 */
153 1.1 matt
154 1.1 matt #ifndef acorn26
155 1.1 matt /*
156 1.1 matt * cpu device glue (belongs in cpuvar.h)
157 1.1 matt */
158 1.1 matt void cpu_attach(device_t, cpuid_t);
159 1.1 matt #endif
160 1.1 matt
161 1.2 matt /* 1 == use cpu_sleep(), 0 == don't */
162 1.14 matt extern int cpu_do_powersave;
163 1.7 matt extern int cpu_printfataltraps;
164 1.2 matt extern int cpu_fpu_present;
165 1.5 matt extern int cpu_hwdiv_present;
166 1.14 matt extern int cpu_neon_present;
167 1.14 matt extern int cpu_simd_present;
168 1.14 matt extern int cpu_simdex_present;
169 1.14 matt extern int cpu_umull_present;
170 1.14 matt extern int cpu_synchprim_present;
171 1.14 matt
172 1.14 matt extern int cpu_instruction_set_attributes[6];
173 1.14 matt extern int cpu_memory_model_features[4];
174 1.14 matt extern int cpu_processor_features[2];
175 1.14 matt extern int cpu_media_and_vfp_features[2];
176 1.2 matt
177 1.16 matt extern bool arm_has_tlbiasid_p;
178 1.16 matt #ifdef MULTIPROCESSOR
179 1.13 matt extern u_int arm_cpu_max;
180 1.16 matt extern volatile u_int arm_cpu_hatched;
181 1.16 matt #endif
182 1.13 matt
183 1.2 matt #if !defined(CPU_ARMV7)
184 1.2 matt #define CPU_IS_ARMV7_P() false
185 1.2 matt #elif defined(CPU_ARMV6) || defined(CPU_PRE_ARMV6)
186 1.2 matt extern bool cpu_armv7_p;
187 1.2 matt #define CPU_IS_ARMV7_P() (cpu_armv7_p)
188 1.2 matt #else
189 1.2 matt #define CPU_IS_ARMV7_P() true
190 1.2 matt #endif
191 1.6 matt #if !defined(CPU_ARMV6)
192 1.6 matt #define CPU_IS_ARMV6_P() false
193 1.6 matt #elif defined(CPU_ARMV7) || defined(CPU_PRE_ARMV6)
194 1.6 matt extern bool cpu_armv6_p;
195 1.6 matt #define CPU_IS_ARMV6_P() (cpu_armv6_p)
196 1.6 matt #else
197 1.6 matt #define CPU_IS_ARMV6_P() true
198 1.6 matt #endif
199 1.6 matt
200 1.8 matt /*
201 1.12 joerg * Used by the fault code to read the current instruction.
202 1.8 matt */
203 1.8 matt static inline uint32_t
204 1.8 matt read_insn(vaddr_t va, bool user_p)
205 1.8 matt {
206 1.8 matt uint32_t insn;
207 1.8 matt if (user_p) {
208 1.8 matt __asm __volatile("ldrt %0, [%1]" : "=&r"(insn) : "r"(va));
209 1.8 matt } else {
210 1.8 matt insn = *(const uint32_t *)va;
211 1.8 matt }
212 1.8 matt #if defined(__ARMEB__) && defined(_ARM_ARCH_7)
213 1.8 matt insn = bswap32(insn);
214 1.8 matt #endif
215 1.8 matt return insn;
216 1.8 matt }
217 1.8 matt
218 1.8 matt /*
219 1.12 joerg * Used by the fault code to read the current thumb instruction.
220 1.8 matt */
221 1.8 matt static inline uint32_t
222 1.8 matt read_thumb_insn(vaddr_t va, bool user_p)
223 1.8 matt {
224 1.8 matt va &= ~1;
225 1.8 matt uint32_t insn;
226 1.8 matt if (user_p) {
227 1.9 matt #ifdef _ARM_ARCH_T2
228 1.10 joerg __asm __volatile("ldrht %0, [%1], #0" : "=&r"(insn) : "r"(va));
229 1.9 matt #else
230 1.9 matt __asm __volatile("ldrt %0, [%1]" : "=&r"(insn) : "r"(va & ~3));
231 1.9 matt #ifdef __ARMEB__
232 1.9 matt insn = (uint16_t) (insn >> (((va ^ 2) & 2) << 3));
233 1.9 matt #else
234 1.9 matt insn = (uint16_t) (insn >> ((va & 2) << 3));
235 1.9 matt #endif
236 1.9 matt #endif
237 1.8 matt } else {
238 1.8 matt insn = *(const uint16_t *)va;
239 1.8 matt }
240 1.8 matt #if defined(__ARMEB__) && defined(_ARM_ARCH_7)
241 1.8 matt insn = bswap16(insn);
242 1.8 matt #endif
243 1.8 matt return insn;
244 1.8 matt }
245 1.2 matt
246 1.18 martin #ifndef _RUMPKERNEL
247 1.16 matt static inline void
248 1.16 matt arm_dmb(void)
249 1.16 matt {
250 1.16 matt if (CPU_IS_ARMV6_P())
251 1.16 matt armreg_dmb_write(0);
252 1.16 matt else if (CPU_IS_ARMV7_P())
253 1.19 joerg __asm __volatile("dmb" ::: "memory");
254 1.16 matt }
255 1.16 matt
256 1.16 matt static inline void
257 1.16 matt arm_dsb(void)
258 1.16 matt {
259 1.16 matt if (CPU_IS_ARMV6_P())
260 1.16 matt armreg_dsb_write(0);
261 1.16 matt else if (CPU_IS_ARMV7_P())
262 1.19 joerg __asm __volatile("dsb" ::: "memory");
263 1.16 matt }
264 1.16 matt
265 1.16 matt static inline void
266 1.16 matt arm_isb(void)
267 1.16 matt {
268 1.16 matt if (CPU_IS_ARMV6_P())
269 1.16 matt armreg_isb_write(0);
270 1.16 matt else if (CPU_IS_ARMV7_P())
271 1.19 joerg __asm __volatile("isb" ::: "memory");
272 1.16 matt }
273 1.18 martin #endif
274 1.16 matt
275 1.1 matt /*
276 1.1 matt * Random cruft
277 1.1 matt */
278 1.1 matt
279 1.1 matt struct lwp;
280 1.1 matt
281 1.16 matt /* cpu.c */
282 1.16 matt void identify_arm_cpu(device_t, struct cpu_info *);
283 1.1 matt
284 1.1 matt /* cpuswitch.S */
285 1.1 matt struct pcb;
286 1.1 matt void savectx(struct pcb *);
287 1.1 matt
288 1.1 matt /* ast.c */
289 1.1 matt void userret(struct lwp *);
290 1.1 matt
291 1.1 matt /* *_machdep.c */
292 1.1 matt void bootsync(void);
293 1.1 matt
294 1.1 matt /* fault.c */
295 1.1 matt int badaddr_read(void *, size_t, void *);
296 1.1 matt
297 1.1 matt /* syscall.c */
298 1.1 matt void swi_handler(trapframe_t *);
299 1.1 matt
300 1.1 matt /* arm_machdep.c */
301 1.1 matt void ucas_ras_check(trapframe_t *);
302 1.1 matt
303 1.1 matt /* vfp_init.c */
304 1.16 matt void vfp_attach(struct cpu_info *);
305 1.4 matt void vfp_discardcontext(bool);
306 1.1 matt void vfp_savecontext(void);
307 1.1 matt void vfp_kernel_acquire(void);
308 1.1 matt void vfp_kernel_release(void);
309 1.4 matt bool vfp_used_p(void);
310 1.1 matt extern const pcu_ops_t arm_vfp_ops;
311 1.1 matt
312 1.1 matt #endif /* !_LOCORE */
313 1.1 matt
314 1.1 matt #endif /* !_ARM_LOCORE_H_ */
315