Remove env->ready_for_interrupt_injection
[qemu-kvm/fedora.git] / target-mips / exec.h
blobf10a35df0339b4cdafcdfd2936a04399cb687c79
1 #if !defined(__QEMU_MIPS_EXEC_H__)
2 #define __QEMU_MIPS_EXEC_H__
4 //#define DEBUG_OP
6 #include "config.h"
7 #include "mips-defs.h"
8 #include "dyngen-exec.h"
9 #include "cpu-defs.h"
11 register struct CPUMIPSState *env asm(AREG0);
13 #if TARGET_LONG_BITS > HOST_LONG_BITS
14 #define T0 (env->t0)
15 #define T1 (env->t1)
16 #else
17 register target_ulong T0 asm(AREG1);
18 register target_ulong T1 asm(AREG2);
19 #endif
21 #if defined (USE_HOST_FLOAT_REGS)
22 #error "implement me."
23 #else
24 #define FDT0 (env->fpu->ft0.fd)
25 #define FDT1 (env->fpu->ft1.fd)
26 #define FDT2 (env->fpu->ft2.fd)
27 #define FST0 (env->fpu->ft0.fs[FP_ENDIAN_IDX])
28 #define FST1 (env->fpu->ft1.fs[FP_ENDIAN_IDX])
29 #define FST2 (env->fpu->ft2.fs[FP_ENDIAN_IDX])
30 #define FSTH0 (env->fpu->ft0.fs[!FP_ENDIAN_IDX])
31 #define FSTH1 (env->fpu->ft1.fs[!FP_ENDIAN_IDX])
32 #define FSTH2 (env->fpu->ft2.fs[!FP_ENDIAN_IDX])
33 #define DT0 (env->fpu->ft0.d)
34 #define DT1 (env->fpu->ft1.d)
35 #define DT2 (env->fpu->ft2.d)
36 #define WT0 (env->fpu->ft0.w[FP_ENDIAN_IDX])
37 #define WT1 (env->fpu->ft1.w[FP_ENDIAN_IDX])
38 #define WT2 (env->fpu->ft2.w[FP_ENDIAN_IDX])
39 #define WTH0 (env->fpu->ft0.w[!FP_ENDIAN_IDX])
40 #define WTH1 (env->fpu->ft1.w[!FP_ENDIAN_IDX])
41 #define WTH2 (env->fpu->ft2.w[!FP_ENDIAN_IDX])
42 #endif
44 #include "cpu.h"
45 #include "exec-all.h"
47 #if !defined(CONFIG_USER_ONLY)
48 #include "softmmu_exec.h"
49 #endif /* !defined(CONFIG_USER_ONLY) */
51 #if defined(TARGET_MIPS64)
52 #if TARGET_LONG_BITS > HOST_LONG_BITS
53 void do_dsll (void);
54 void do_dsll32 (void);
55 void do_dsra (void);
56 void do_dsra32 (void);
57 void do_dsrl (void);
58 void do_dsrl32 (void);
59 void do_drotr (void);
60 void do_drotr32 (void);
61 void do_dsllv (void);
62 void do_dsrav (void);
63 void do_dsrlv (void);
64 void do_drotrv (void);
65 void do_dclo (void);
66 void do_dclz (void);
67 #endif
68 #endif
70 #if HOST_LONG_BITS < 64
71 void do_div (void);
72 #endif
73 #if TARGET_LONG_BITS > HOST_LONG_BITS
74 void do_mult (void);
75 void do_multu (void);
76 void do_madd (void);
77 void do_maddu (void);
78 void do_msub (void);
79 void do_msubu (void);
80 void do_muls (void);
81 void do_mulsu (void);
82 void do_macc (void);
83 void do_macchi (void);
84 void do_maccu (void);
85 void do_macchiu (void);
86 void do_msac (void);
87 void do_msachi (void);
88 void do_msacu (void);
89 void do_msachiu (void);
90 void do_mulhi (void);
91 void do_mulhiu (void);
92 void do_mulshi (void);
93 void do_mulshiu (void);
94 #endif
95 #if defined(TARGET_MIPS64)
96 void do_ddiv (void);
97 #if TARGET_LONG_BITS > HOST_LONG_BITS
98 void do_ddivu (void);
99 #endif
100 #endif
101 void do_mfc0_random(void);
102 void do_mfc0_count(void);
103 void do_mtc0_entryhi(uint32_t in);
104 void do_mtc0_status_debug(uint32_t old, uint32_t val);
105 void do_mtc0_status_irqraise_debug(void);
106 void dump_fpu(CPUState *env);
107 void fpu_dump_state(CPUState *env, FILE *f,
108 int (*fpu_fprintf)(FILE *f, const char *fmt, ...),
109 int flags);
110 void dump_sc (void);
111 void do_pmon (int function);
113 int cpu_mips_handle_mmu_fault (CPUState *env, target_ulong address, int rw,
114 int mmu_idx, int is_softmmu);
115 void do_interrupt (CPUState *env);
116 void r4k_invalidate_tlb (CPUState *env, int idx, int use_extra);
118 void cpu_loop_exit(void);
119 void do_raise_exception_err (uint32_t exception, int error_code);
120 void do_raise_exception (uint32_t exception);
122 void cpu_dump_state(CPUState *env, FILE *f,
123 int (*cpu_fprintf)(FILE *f, const char *fmt, ...),
124 int flags);
125 void cpu_mips_irqctrl_init (void);
126 uint32_t cpu_mips_get_random (CPUState *env);
127 uint32_t cpu_mips_get_count (CPUState *env);
128 void cpu_mips_store_count (CPUState *env, uint32_t value);
129 void cpu_mips_store_compare (CPUState *env, uint32_t value);
130 void cpu_mips_start_count(CPUState *env);
131 void cpu_mips_stop_count(CPUState *env);
132 void cpu_mips_update_irq (CPUState *env);
133 void cpu_mips_clock_init (CPUState *env);
134 void cpu_mips_tlb_flush (CPUState *env, int flush_global);
136 void do_cfc1 (int reg);
137 void do_ctc1 (int reg);
139 #define FOP_PROTO(op) \
140 void do_float_ ## op ## _s(void); \
141 void do_float_ ## op ## _d(void);
142 FOP_PROTO(roundl)
143 FOP_PROTO(roundw)
144 FOP_PROTO(truncl)
145 FOP_PROTO(truncw)
146 FOP_PROTO(ceill)
147 FOP_PROTO(ceilw)
148 FOP_PROTO(floorl)
149 FOP_PROTO(floorw)
150 FOP_PROTO(rsqrt)
151 FOP_PROTO(recip)
152 #undef FOP_PROTO
154 #define FOP_PROTO(op) \
155 void do_float_ ## op ## _s(void); \
156 void do_float_ ## op ## _d(void); \
157 void do_float_ ## op ## _ps(void);
158 FOP_PROTO(add)
159 FOP_PROTO(sub)
160 FOP_PROTO(mul)
161 FOP_PROTO(div)
162 FOP_PROTO(recip1)
163 FOP_PROTO(recip2)
164 FOP_PROTO(rsqrt1)
165 FOP_PROTO(rsqrt2)
166 #undef FOP_PROTO
168 void do_float_cvtd_s(void);
169 void do_float_cvtd_w(void);
170 void do_float_cvtd_l(void);
171 void do_float_cvtl_d(void);
172 void do_float_cvtl_s(void);
173 void do_float_cvtps_pw(void);
174 void do_float_cvtpw_ps(void);
175 void do_float_cvts_d(void);
176 void do_float_cvts_w(void);
177 void do_float_cvts_l(void);
178 void do_float_cvts_pl(void);
179 void do_float_cvts_pu(void);
180 void do_float_cvtw_s(void);
181 void do_float_cvtw_d(void);
183 void do_float_addr_ps(void);
184 void do_float_mulr_ps(void);
186 #define FOP_PROTO(op) \
187 void do_cmp_d_ ## op(long cc); \
188 void do_cmpabs_d_ ## op(long cc); \
189 void do_cmp_s_ ## op(long cc); \
190 void do_cmpabs_s_ ## op(long cc); \
191 void do_cmp_ps_ ## op(long cc); \
192 void do_cmpabs_ps_ ## op(long cc);
194 FOP_PROTO(f)
195 FOP_PROTO(un)
196 FOP_PROTO(eq)
197 FOP_PROTO(ueq)
198 FOP_PROTO(olt)
199 FOP_PROTO(ult)
200 FOP_PROTO(ole)
201 FOP_PROTO(ule)
202 FOP_PROTO(sf)
203 FOP_PROTO(ngle)
204 FOP_PROTO(seq)
205 FOP_PROTO(ngl)
206 FOP_PROTO(lt)
207 FOP_PROTO(nge)
208 FOP_PROTO(le)
209 FOP_PROTO(ngt)
210 #undef FOP_PROTO
212 static always_inline void env_to_regs(void)
216 static always_inline void regs_to_env(void)
220 static always_inline int cpu_halted(CPUState *env)
222 if (!env->halted)
223 return 0;
224 if (env->interrupt_request &
225 (CPU_INTERRUPT_HARD | CPU_INTERRUPT_TIMER)) {
226 env->halted = 0;
227 return 0;
229 return EXCP_HALTED;
232 static always_inline void compute_hflags(CPUState *env)
234 env->hflags &= ~(MIPS_HFLAG_COP1X | MIPS_HFLAG_64 | MIPS_HFLAG_CP0 |
235 MIPS_HFLAG_F64 | MIPS_HFLAG_FPU | MIPS_HFLAG_KSU);
236 if (!(env->CP0_Status & (1 << CP0St_EXL)) &&
237 !(env->CP0_Status & (1 << CP0St_ERL)) &&
238 !(env->hflags & MIPS_HFLAG_DM)) {
239 env->hflags |= (env->CP0_Status >> CP0St_KSU) & MIPS_HFLAG_KSU;
241 #if defined(TARGET_MIPS64)
242 if (((env->hflags & MIPS_HFLAG_KSU) != MIPS_HFLAG_UM) ||
243 (env->CP0_Status & (1 << CP0St_PX)) ||
244 (env->CP0_Status & (1 << CP0St_UX)))
245 env->hflags |= MIPS_HFLAG_64;
246 #endif
247 if ((env->CP0_Status & (1 << CP0St_CU0)) ||
248 !(env->hflags & MIPS_HFLAG_KSU))
249 env->hflags |= MIPS_HFLAG_CP0;
250 if (env->CP0_Status & (1 << CP0St_CU1))
251 env->hflags |= MIPS_HFLAG_FPU;
252 if (env->CP0_Status & (1 << CP0St_FR))
253 env->hflags |= MIPS_HFLAG_F64;
254 if (env->insn_flags & ISA_MIPS32R2) {
255 if (env->fpu->fcr0 & (1 << FCR0_F64))
256 env->hflags |= MIPS_HFLAG_COP1X;
257 } else if (env->insn_flags & ISA_MIPS32) {
258 if (env->hflags & MIPS_HFLAG_64)
259 env->hflags |= MIPS_HFLAG_COP1X;
260 } else if (env->insn_flags & ISA_MIPS4) {
261 /* All supported MIPS IV CPUs use the XX (CU3) to enable
262 and disable the MIPS IV extensions to the MIPS III ISA.
263 Some other MIPS IV CPUs ignore the bit, so the check here
264 would be too restrictive for them. */
265 if (env->CP0_Status & (1 << CP0St_CU3))
266 env->hflags |= MIPS_HFLAG_COP1X;
270 #endif /* !defined(__QEMU_MIPS_EXEC_H__) */