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#if !defined (__MIPS_CPU_H__)
#define __MIPS_CPU_H__
#define TARGET_HAS_ICE 1
#include "mips-defs.h"
#include "cpu-defs.h"
#include "config.h"
#include "softfloat.h"
typedef union fpr_t fpr_t;
union fpr_t {
double d;
float f;
uint32_t u[2];
};
#if defined(MIPS_USES_R4K_TLB)
typedef struct tlb_t tlb_t;
struct tlb_t {
target_ulong VPN;
target_ulong end;
target_ulong end2;
uint8_t ASID;
uint8_t G;
uint8_t C[2];
uint8_t V[2];
uint8_t D[2];
target_ulong PFN[2];
};
#endif
typedef struct CPUMIPSState CPUMIPSState;
struct CPUMIPSState {
/* General integer registers */
target_ulong gpr[32];
/* Special registers */
target_ulong PC;
uint32_t HI, LO;
uint32_t DCR; /* ? */
#if defined(MIPS_USES_FPU)
/* Floating point registers */
fpr_t fpr[16];
/* Floating point special purpose registers */
uint32_t fcr0;
uint32_t fcr25;
uint32_t fcr26;
uint32_t fcr28;
uint32_t fcsr;
#endif
#if defined(MIPS_USES_R4K_TLB)
tlb_t tlb[16];
#endif
uint32_t CP0_index;
uint32_t CP0_random;
uint32_t CP0_EntryLo0;
uint32_t CP0_EntryLo1;
uint32_t CP0_Context;
uint32_t CP0_PageMask;
uint32_t CP0_Wired;
uint32_t CP0_BadVAddr;
uint32_t CP0_Count;
uint32_t CP0_EntryHi;
uint32_t CP0_Compare;
uint32_t CP0_Status;
#define CP0St_CU3 31
#define CP0St_CU2 30
#define CP0St_CU1 29
#define CP0St_CU0 28
#define CP0St_RP 27
#define CP0St_RE 25
#define CP0St_BEV 22
#define CP0St_TS 21
#define CP0St_SR 20
#define CP0St_NMI 19
#define CP0St_IM 8
#define CP0St_UM 4
#define CP0St_ERL 2
#define CP0St_EXL 1
#define CP0St_IE 0
uint32_t CP0_Cause;
#define CP0Ca_IV 23
uint32_t CP0_EPC;
uint32_t CP0_PRid;
uint32_t CP0_Config0;
#define CP0C0_M 31
#define CP0C0_K23 28
#define CP0C0_KU 25
#define CP0C0_MDU 20
#define CP0C0_MM 17
#define CP0C0_BM 16
#define CP0C0_BE 15
#define CP0C0_AT 13
#define CP0C0_AR 10
#define CP0C0_MT 7
#define CP0C0_K0 0
uint32_t CP0_Config1;
#define CP0C1_MMU 25
#define CP0C1_IS 22
#define CP0C1_IL 19
#define CP0C1_IA 16
#define CP0C1_DS 13
#define CP0C1_DL 10
#define CP0C1_DA 7
#define CP0C1_PC 4
#define CP0C1_WR 3
#define CP0C1_CA 2
#define CP0C1_EP 1
#define CP0C1_FP 0
uint32_t CP0_LLAddr;
uint32_t CP0_WatchLo;
uint32_t CP0_WatchHi;
uint32_t CP0_Debug;
#define CPDB_DBD 31
#define CP0DB_DM 30
#define CP0DB_LSNM 28
#define CP0DB_Doze 27
#define CP0DB_Halt 26
#define CP0DB_CNT 25
#define CP0DB_IBEP 24
#define CP0DB_DBEP 21
#define CP0DB_IEXI 20
#define CP0DB_VER 15
#define CP0DB_DEC 10
#define CP0DB_SSt 8
#define CP0DB_DINT 5
#define CP0DB_DIB 4
#define CP0DB_DDBS 3
#define CP0DB_DDBL 2
#define CP0DB_DBp 1
#define CP0DB_DSS 0
uint32_t CP0_DEPC;
uint32_t CP0_TagLo;
uint32_t CP0_DataLo;
uint32_t CP0_ErrorEPC;
uint32_t CP0_DESAVE;
/* Qemu */
#if defined (USE_HOST_FLOAT_REGS) && defined(MIPS_USES_FPU)
double ft0, ft1, ft2;
#endif
struct QEMUTimer *timer; /* Internal timer */
int interrupt_request;
jmp_buf jmp_env;
int exception_index;
int error_code;
int user_mode_only; /* user mode only simulation */
uint32_t hflags; /* CPU State */
/* TMASK defines different execution modes */
#define MIPS_HFLAGS_TMASK 0x00FF
#define MIPS_HFLAG_MODE 0x001F /* execution modes */
#define MIPS_HFLAG_UM 0x0001 /* user mode */
#define MIPS_HFLAG_ERL 0x0002 /* Error mode */
#define MIPS_HFLAG_EXL 0x0004 /* Exception mode */
#define MIPS_HFLAG_DM 0x0008 /* Debug mode */
#define MIPS_HFLAG_SM 0x0010 /* Supervisor mode */
#define MIPS_HFLAG_RE 0x0040 /* Reversed endianness */
/* If translation is interrupted between the branch instruction and
* the delay slot, record what type of branch it is so that we can
* resume translation properly. It might be possible to reduce
* this from three bits to two. */
#define MIPS_HFLAG_BMASK 0x0380
#define MIPS_HFLAG_B 0x0080 /* Unconditional branch */
#define MIPS_HFLAG_BC 0x0100 /* Conditional branch */
#define MIPS_HFLAG_BL 0x0180 /* Likely branch */
#define MIPS_HFLAG_BR 0x0200 /* branch to register (can't link TB) */
target_ulong btarget; /* Jump / branch target */
int bcond; /* Branch condition (if needed) */
int halted; /* TRUE if the CPU is in suspend state */
CPU_COMMON
};
#include "cpu-all.h"
/* Memory access type :
* may be needed for precise access rights control and precise exceptions.
*/
enum {
/* 1 bit to define user level / supervisor access */
ACCESS_USER = 0x00,
ACCESS_SUPER = 0x01,
/* 1 bit to indicate direction */
ACCESS_STORE = 0x02,
/* Type of instruction that generated the access */
ACCESS_CODE = 0x10, /* Code fetch access */
ACCESS_INT = 0x20, /* Integer load/store access */
ACCESS_FLOAT = 0x30, /* floating point load/store access */
};
/* Exceptions */
enum {
EXCP_NONE = -1,
EXCP_RESET = 0,
EXCP_SRESET,
EXCP_DSS,
EXCP_DINT,
EXCP_NMI,
EXCP_MCHECK,
EXCP_EXT_INTERRUPT,
EXCP_DFWATCH,
EXCP_DIB, /* 8 */
EXCP_IWATCH,
EXCP_AdEL,
EXCP_AdES,
EXCP_TLBF,
EXCP_IBE,
EXCP_DBp,
EXCP_SYSCALL,
EXCP_BREAK, /* 16 */
EXCP_CpU,
EXCP_RI,
EXCP_OVERFLOW,
EXCP_TRAP,
EXCP_DDBS,
EXCP_DWATCH,
EXCP_LAE,
EXCP_SAE, /* 24 */
EXCP_LTLBL,
EXCP_TLBL,
EXCP_TLBS,
EXCP_DBE,
EXCP_DDBL,
EXCP_MTCP0 = 0x104, /* mtmsr instruction: */
/* may change privilege level */
EXCP_BRANCH = 0x108, /* branch instruction */
EXCP_ERET = 0x10C, /* return from interrupt */
EXCP_SYSCALL_USER = 0x110, /* System call in user mode only */
EXCP_FLUSH = 0x109,
};
int cpu_mips_exec(CPUMIPSState *s);
CPUMIPSState *cpu_mips_init(void);
uint32_t cpu_mips_get_clock (void);
#endif /* !defined (__MIPS_CPU_H__) */
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