2 * UniCore32 helper routines
4 * Copyright (C) 2010-2012 Guan Xuetao
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation, or (at your option) any
9 * later version. See the COPYING file in the top-level directory.
11 #include "qemu/osdep.h"
13 #include "exec/helper-proto.h"
14 #include "exec/cpu_ldst.h"
16 #define SIGNBIT (uint32_t)0x80000000
17 #define SIGNBIT64 ((uint64_t)1 << 63)
19 void HELPER(exception
)(CPUUniCore32State
*env
, uint32_t excp
)
21 CPUState
*cs
= CPU(uc32_env_get_cpu(env
));
23 cs
->exception_index
= excp
;
27 static target_ulong
asr_read(CPUUniCore32State
*env
)
31 return env
->uncached_asr
| (env
->NF
& 0x80000000) | (ZF
<< 30) |
32 (env
->CF
<< 29) | ((env
->VF
& 0x80000000) >> 3);
35 target_ulong
cpu_asr_read(CPUUniCore32State
*env
)
40 target_ulong
HELPER(asr_read
)(CPUUniCore32State
*env
)
45 static void asr_write(CPUUniCore32State
*env
, target_ulong val
,
48 if (mask
& ASR_NZCV
) {
49 env
->ZF
= (~val
) & ASR_Z
;
51 env
->CF
= (val
>> 29) & 1;
52 env
->VF
= (val
<< 3) & 0x80000000;
55 if ((env
->uncached_asr
^ val
) & mask
& ASR_M
) {
56 switch_mode(env
, val
& ASR_M
);
59 env
->uncached_asr
= (env
->uncached_asr
& ~mask
) | (val
& mask
);
62 void cpu_asr_write(CPUUniCore32State
*env
, target_ulong val
, target_ulong mask
)
64 asr_write(env
, val
, mask
);
67 void HELPER(asr_write
)(CPUUniCore32State
*env
, target_ulong val
,
70 asr_write(env
, val
, mask
);
73 /* Access to user mode registers from privileged modes. */
74 uint32_t HELPER(get_user_reg
)(CPUUniCore32State
*env
, uint32_t regno
)
79 val
= env
->banked_r29
[0];
80 } else if (regno
== 30) {
81 val
= env
->banked_r30
[0];
83 val
= env
->regs
[regno
];
88 void HELPER(set_user_reg
)(CPUUniCore32State
*env
, uint32_t regno
, uint32_t val
)
91 env
->banked_r29
[0] = val
;
92 } else if (regno
== 30) {
93 env
->banked_r30
[0] = val
;
95 env
->regs
[regno
] = val
;
99 /* ??? Flag setting arithmetic is awkward because we need to do comparisons.
100 The only way to do that in TCG is a conditional branch, which clobbers
101 all our temporaries. For now implement these as helper functions. */
103 uint32_t HELPER(add_cc
)(CPUUniCore32State
*env
, uint32_t a
, uint32_t b
)
107 env
->NF
= env
->ZF
= result
;
108 env
->CF
= result
< a
;
109 env
->VF
= (a
^ b
^ -1) & (a
^ result
);
113 uint32_t HELPER(adc_cc
)(CPUUniCore32State
*env
, uint32_t a
, uint32_t b
)
118 env
->CF
= result
< a
;
121 env
->CF
= result
<= a
;
123 env
->VF
= (a
^ b
^ -1) & (a
^ result
);
124 env
->NF
= env
->ZF
= result
;
128 uint32_t HELPER(sub_cc
)(CPUUniCore32State
*env
, uint32_t a
, uint32_t b
)
132 env
->NF
= env
->ZF
= result
;
134 env
->VF
= (a
^ b
) & (a
^ result
);
138 uint32_t HELPER(sbc_cc
)(CPUUniCore32State
*env
, uint32_t a
, uint32_t b
)
148 env
->VF
= (a
^ b
) & (a
^ result
);
149 env
->NF
= env
->ZF
= result
;
153 /* Similarly for variable shift instructions. */
155 uint32_t HELPER(shl
)(uint32_t x
, uint32_t i
)
157 int shift
= i
& 0xff;
164 uint32_t HELPER(shr
)(uint32_t x
, uint32_t i
)
166 int shift
= i
& 0xff;
170 return (uint32_t)x
>> shift
;
173 uint32_t HELPER(sar
)(uint32_t x
, uint32_t i
)
175 int shift
= i
& 0xff;
179 return (int32_t)x
>> shift
;
182 uint32_t HELPER(shl_cc
)(CPUUniCore32State
*env
, uint32_t x
, uint32_t i
)
184 int shift
= i
& 0xff;
192 } else if (shift
!= 0) {
193 env
->CF
= (x
>> (32 - shift
)) & 1;
199 uint32_t HELPER(shr_cc
)(CPUUniCore32State
*env
, uint32_t x
, uint32_t i
)
201 int shift
= i
& 0xff;
204 env
->CF
= (x
>> 31) & 1;
209 } else if (shift
!= 0) {
210 env
->CF
= (x
>> (shift
- 1)) & 1;
216 uint32_t HELPER(sar_cc
)(CPUUniCore32State
*env
, uint32_t x
, uint32_t i
)
218 int shift
= i
& 0xff;
220 env
->CF
= (x
>> 31) & 1;
221 return (int32_t)x
>> 31;
222 } else if (shift
!= 0) {
223 env
->CF
= (x
>> (shift
- 1)) & 1;
224 return (int32_t)x
>> shift
;
229 uint32_t HELPER(ror_cc
)(CPUUniCore32State
*env
, uint32_t x
, uint32_t i
)
233 shift
= shift1
& 0x1f;
236 env
->CF
= (x
>> 31) & 1;
240 env
->CF
= (x
>> (shift
- 1)) & 1;
241 return ((uint32_t)x
>> shift
) | (x
<< (32 - shift
));
245 #ifndef CONFIG_USER_ONLY
246 void tlb_fill(CPUState
*cs
, target_ulong addr
, int is_write
,
247 int mmu_idx
, uintptr_t retaddr
)
251 ret
= uc32_cpu_handle_mmu_fault(cs
, addr
, is_write
, mmu_idx
);
254 /* now we have a real cpu fault */
255 cpu_restore_state(cs
, retaddr
);