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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
synced 2024-11-24 14:41:02 +07:00
MIPS: Move Cause.ExcCode trap codes to mipsregs.h
Move the Cause.ExcCode trap code definitions from kvm_host.h to mipsregs.h, since they describe architectural bits rather than KVM specific constants, and change the prefix from T_ to EXCCODE_. Signed-off-by: James Hogan <james.hogan@imgtec.com> Cc: Paolo Bonzini <pbonzini@redhat.com> Cc: Gleb Natapov <gleb@kernel.org> Cc: linux-mips@linux-mips.org Cc: kvm@vger.kernel.org Patchwork: https://patchwork.linux-mips.org/patch/11891/ Signed-off-by: Ralf Baechle <ralf@linux-mips.org>
This commit is contained in:
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2db9d23386
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@ -281,34 +281,6 @@ enum mips_mmu_types {
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MMU_TYPE_R8000
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};
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/*
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* Trap codes
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*/
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#define T_INT 0 /* Interrupt pending */
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#define T_TLB_MOD 1 /* TLB modified fault */
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#define T_TLB_LD_MISS 2 /* TLB miss on load or ifetch */
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#define T_TLB_ST_MISS 3 /* TLB miss on a store */
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#define T_ADDR_ERR_LD 4 /* Address error on a load or ifetch */
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#define T_ADDR_ERR_ST 5 /* Address error on a store */
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#define T_BUS_ERR_IFETCH 6 /* Bus error on an ifetch */
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#define T_BUS_ERR_LD_ST 7 /* Bus error on a load or store */
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#define T_SYSCALL 8 /* System call */
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#define T_BREAK 9 /* Breakpoint */
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#define T_RES_INST 10 /* Reserved instruction exception */
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#define T_COP_UNUSABLE 11 /* Coprocessor unusable */
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#define T_OVFLOW 12 /* Arithmetic overflow */
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/*
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* Trap definitions added for r4000 port.
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*/
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#define T_TRAP 13 /* Trap instruction */
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#define T_VCEI 14 /* Virtual coherency exception */
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#define T_MSAFPE 14 /* MSA floating point exception */
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#define T_FPE 15 /* Floating point exception */
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#define T_MSADIS 21 /* MSA disabled exception */
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#define T_WATCH 23 /* Watch address reference */
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#define T_VCED 31 /* Virtual coherency data */
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/* Resume Flags */
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#define RESUME_FLAG_DR (1<<0) /* Reload guest nonvolatile state? */
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#define RESUME_FLAG_HOST (1<<1) /* Resume host? */
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@ -403,6 +403,30 @@
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#define CAUSEB_BD 31
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#define CAUSEF_BD (_ULCAST_(1) << 31)
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/*
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* Cause.ExcCode trap codes.
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*/
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#define EXCCODE_INT 0 /* Interrupt pending */
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#define EXCCODE_MOD 1 /* TLB modified fault */
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#define EXCCODE_TLBL 2 /* TLB miss on load or ifetch */
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#define EXCCODE_TLBS 3 /* TLB miss on a store */
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#define EXCCODE_ADEL 4 /* Address error on a load or ifetch */
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#define EXCCODE_ADES 5 /* Address error on a store */
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#define EXCCODE_IBE 6 /* Bus error on an ifetch */
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#define EXCCODE_DBE 7 /* Bus error on a load or store */
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#define EXCCODE_SYS 8 /* System call */
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#define EXCCODE_BP 9 /* Breakpoint */
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#define EXCCODE_RI 10 /* Reserved instruction exception */
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#define EXCCODE_CPU 11 /* Coprocessor unusable */
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#define EXCCODE_OV 12 /* Arithmetic overflow */
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#define EXCCODE_TR 13 /* Trap instruction */
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#define EXCCODE_VCEI 14 /* Virtual coherency exception */
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#define EXCCODE_MSAFPE 14 /* MSA floating point exception */
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#define EXCCODE_FPE 15 /* Floating point exception */
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#define EXCCODE_MSADIS 21 /* MSA disabled exception */
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#define EXCCODE_WATCH 23 /* Watch address reference */
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#define EXCCODE_VCED 31 /* Virtual coherency data */
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/*
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* Bits in the coprocessor 0 config register.
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*/
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@ -1780,7 +1780,7 @@ enum emulation_result kvm_mips_emulate_syscall(unsigned long cause,
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kvm_debug("Delivering SYSCALL @ pc %#lx\n", arch->pc);
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_SYSCALL << CAUSEB_EXCCODE));
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(EXCCODE_SYS << CAUSEB_EXCCODE));
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/* Set PC to the exception entry point */
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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@ -1827,7 +1827,7 @@ enum emulation_result kvm_mips_emulate_tlbmiss_ld(unsigned long cause,
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}
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_TLB_LD_MISS << CAUSEB_EXCCODE));
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(EXCCODE_TLBL << CAUSEB_EXCCODE));
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/* setup badvaddr, context and entryhi registers for the guest */
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kvm_write_c0_guest_badvaddr(cop0, vcpu->arch.host_cp0_badvaddr);
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@ -1873,7 +1873,7 @@ enum emulation_result kvm_mips_emulate_tlbinv_ld(unsigned long cause,
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}
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_TLB_LD_MISS << CAUSEB_EXCCODE));
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(EXCCODE_TLBL << CAUSEB_EXCCODE));
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/* setup badvaddr, context and entryhi registers for the guest */
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kvm_write_c0_guest_badvaddr(cop0, vcpu->arch.host_cp0_badvaddr);
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@ -1917,7 +1917,7 @@ enum emulation_result kvm_mips_emulate_tlbmiss_st(unsigned long cause,
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}
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_TLB_ST_MISS << CAUSEB_EXCCODE));
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(EXCCODE_TLBS << CAUSEB_EXCCODE));
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/* setup badvaddr, context and entryhi registers for the guest */
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kvm_write_c0_guest_badvaddr(cop0, vcpu->arch.host_cp0_badvaddr);
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@ -1961,7 +1961,7 @@ enum emulation_result kvm_mips_emulate_tlbinv_st(unsigned long cause,
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}
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_TLB_ST_MISS << CAUSEB_EXCCODE));
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(EXCCODE_TLBS << CAUSEB_EXCCODE));
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/* setup badvaddr, context and entryhi registers for the guest */
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kvm_write_c0_guest_badvaddr(cop0, vcpu->arch.host_cp0_badvaddr);
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@ -2032,7 +2032,8 @@ enum emulation_result kvm_mips_emulate_tlbmod(unsigned long cause,
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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}
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kvm_change_c0_guest_cause(cop0, (0xff), (T_TLB_MOD << CAUSEB_EXCCODE));
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kvm_change_c0_guest_cause(cop0, (0xff),
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(EXCCODE_MOD << CAUSEB_EXCCODE));
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/* setup badvaddr, context and entryhi registers for the guest */
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kvm_write_c0_guest_badvaddr(cop0, vcpu->arch.host_cp0_badvaddr);
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@ -2067,7 +2068,7 @@ enum emulation_result kvm_mips_emulate_fpu_exc(unsigned long cause,
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_COP_UNUSABLE << CAUSEB_EXCCODE));
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(EXCCODE_CPU << CAUSEB_EXCCODE));
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kvm_change_c0_guest_cause(cop0, (CAUSEF_CE), (0x1 << CAUSEB_CE));
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return EMULATE_DONE;
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@ -2095,7 +2096,7 @@ enum emulation_result kvm_mips_emulate_ri_exc(unsigned long cause,
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kvm_debug("Delivering RI @ pc %#lx\n", arch->pc);
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_RES_INST << CAUSEB_EXCCODE));
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(EXCCODE_RI << CAUSEB_EXCCODE));
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/* Set PC to the exception entry point */
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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@ -2130,7 +2131,7 @@ enum emulation_result kvm_mips_emulate_bp_exc(unsigned long cause,
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kvm_debug("Delivering BP @ pc %#lx\n", arch->pc);
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_BREAK << CAUSEB_EXCCODE));
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(EXCCODE_BP << CAUSEB_EXCCODE));
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/* Set PC to the exception entry point */
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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@ -2165,7 +2166,7 @@ enum emulation_result kvm_mips_emulate_trap_exc(unsigned long cause,
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kvm_debug("Delivering TRAP @ pc %#lx\n", arch->pc);
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_TRAP << CAUSEB_EXCCODE));
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(EXCCODE_TR << CAUSEB_EXCCODE));
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/* Set PC to the exception entry point */
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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@ -2200,7 +2201,7 @@ enum emulation_result kvm_mips_emulate_msafpe_exc(unsigned long cause,
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kvm_debug("Delivering MSAFPE @ pc %#lx\n", arch->pc);
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_MSAFPE << CAUSEB_EXCCODE));
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(EXCCODE_MSAFPE << CAUSEB_EXCCODE));
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/* Set PC to the exception entry point */
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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@ -2235,7 +2236,7 @@ enum emulation_result kvm_mips_emulate_fpe_exc(unsigned long cause,
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kvm_debug("Delivering FPE @ pc %#lx\n", arch->pc);
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_FPE << CAUSEB_EXCCODE));
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(EXCCODE_FPE << CAUSEB_EXCCODE));
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/* Set PC to the exception entry point */
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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@ -2270,7 +2271,7 @@ enum emulation_result kvm_mips_emulate_msadis_exc(unsigned long cause,
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kvm_debug("Delivering MSADIS @ pc %#lx\n", arch->pc);
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kvm_change_c0_guest_cause(cop0, (0xff),
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(T_MSADIS << CAUSEB_EXCCODE));
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(EXCCODE_MSADIS << CAUSEB_EXCCODE));
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/* Set PC to the exception entry point */
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arch->pc = KVM_GUEST_KSEG0 + 0x180;
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@ -2479,25 +2480,25 @@ enum emulation_result kvm_mips_check_privilege(unsigned long cause,
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if (usermode) {
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switch (exccode) {
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case T_INT:
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case T_SYSCALL:
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case T_BREAK:
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case T_RES_INST:
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case T_TRAP:
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case T_MSAFPE:
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case T_FPE:
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case T_MSADIS:
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case EXCCODE_INT:
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case EXCCODE_SYS:
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case EXCCODE_BP:
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case EXCCODE_RI:
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case EXCCODE_TR:
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case EXCCODE_MSAFPE:
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case EXCCODE_FPE:
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case EXCCODE_MSADIS:
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break;
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case T_COP_UNUSABLE:
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case EXCCODE_CPU:
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if (((cause & CAUSEF_CE) >> CAUSEB_CE) == 0)
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er = EMULATE_PRIV_FAIL;
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break;
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case T_TLB_MOD:
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case EXCCODE_MOD:
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break;
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case T_TLB_LD_MISS:
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case EXCCODE_TLBL:
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/*
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* We we are accessing Guest kernel space, then send an
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* address error exception to the guest
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@ -2506,12 +2507,12 @@ enum emulation_result kvm_mips_check_privilege(unsigned long cause,
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kvm_debug("%s: LD MISS @ %#lx\n", __func__,
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badvaddr);
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cause &= ~0xff;
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cause |= (T_ADDR_ERR_LD << CAUSEB_EXCCODE);
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cause |= (EXCCODE_ADEL << CAUSEB_EXCCODE);
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er = EMULATE_PRIV_FAIL;
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}
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break;
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case T_TLB_ST_MISS:
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case EXCCODE_TLBS:
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/*
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* We we are accessing Guest kernel space, then send an
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* address error exception to the guest
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@ -2520,26 +2521,26 @@ enum emulation_result kvm_mips_check_privilege(unsigned long cause,
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kvm_debug("%s: ST MISS @ %#lx\n", __func__,
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badvaddr);
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cause &= ~0xff;
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cause |= (T_ADDR_ERR_ST << CAUSEB_EXCCODE);
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cause |= (EXCCODE_ADES << CAUSEB_EXCCODE);
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er = EMULATE_PRIV_FAIL;
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}
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break;
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case T_ADDR_ERR_ST:
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case EXCCODE_ADES:
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kvm_debug("%s: address error ST @ %#lx\n", __func__,
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badvaddr);
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if ((badvaddr & PAGE_MASK) == KVM_GUEST_COMMPAGE_ADDR) {
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cause &= ~0xff;
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cause |= (T_TLB_ST_MISS << CAUSEB_EXCCODE);
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cause |= (EXCCODE_TLBS << CAUSEB_EXCCODE);
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}
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er = EMULATE_PRIV_FAIL;
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break;
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case T_ADDR_ERR_LD:
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case EXCCODE_ADEL:
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kvm_debug("%s: address error LD @ %#lx\n", __func__,
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badvaddr);
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if ((badvaddr & PAGE_MASK) == KVM_GUEST_COMMPAGE_ADDR) {
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cause &= ~0xff;
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cause |= (T_TLB_LD_MISS << CAUSEB_EXCCODE);
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cause |= (EXCCODE_TLBL << CAUSEB_EXCCODE);
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}
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er = EMULATE_PRIV_FAIL;
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break;
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@ -2585,9 +2586,9 @@ enum emulation_result kvm_mips_handle_tlbmiss(unsigned long cause,
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(va & VPN2_MASK) |
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(kvm_read_c0_guest_entryhi(vcpu->arch.cop0) & ASID_MASK));
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if (index < 0) {
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if (exccode == T_TLB_LD_MISS) {
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if (exccode == EXCCODE_TLBL) {
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er = kvm_mips_emulate_tlbmiss_ld(cause, opc, run, vcpu);
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} else if (exccode == T_TLB_ST_MISS) {
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} else if (exccode == EXCCODE_TLBS) {
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er = kvm_mips_emulate_tlbmiss_st(cause, opc, run, vcpu);
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} else {
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kvm_err("%s: invalid exc code: %d\n", __func__,
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@ -2602,10 +2603,10 @@ enum emulation_result kvm_mips_handle_tlbmiss(unsigned long cause,
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* exception to the guest
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*/
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if (!TLB_IS_VALID(*tlb, va)) {
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if (exccode == T_TLB_LD_MISS) {
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if (exccode == EXCCODE_TLBL) {
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er = kvm_mips_emulate_tlbinv_ld(cause, opc, run,
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vcpu);
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} else if (exccode == T_TLB_ST_MISS) {
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} else if (exccode == EXCCODE_TLBS) {
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er = kvm_mips_emulate_tlbinv_st(cause, opc, run,
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vcpu);
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} else {
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@ -128,7 +128,7 @@ int kvm_mips_irq_deliver_cb(struct kvm_vcpu *vcpu, unsigned int priority,
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&& (!(kvm_read_c0_guest_status(cop0) & (ST0_EXL | ST0_ERL)))
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&& (kvm_read_c0_guest_status(cop0) & IE_IRQ5)) {
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allowed = 1;
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exccode = T_INT;
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exccode = EXCCODE_INT;
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}
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break;
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@ -137,7 +137,7 @@ int kvm_mips_irq_deliver_cb(struct kvm_vcpu *vcpu, unsigned int priority,
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&& (!(kvm_read_c0_guest_status(cop0) & (ST0_EXL | ST0_ERL)))
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&& (kvm_read_c0_guest_status(cop0) & IE_IRQ0)) {
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allowed = 1;
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exccode = T_INT;
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exccode = EXCCODE_INT;
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}
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break;
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@ -146,7 +146,7 @@ int kvm_mips_irq_deliver_cb(struct kvm_vcpu *vcpu, unsigned int priority,
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&& (!(kvm_read_c0_guest_status(cop0) & (ST0_EXL | ST0_ERL)))
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&& (kvm_read_c0_guest_status(cop0) & IE_IRQ1)) {
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allowed = 1;
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exccode = T_INT;
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exccode = EXCCODE_INT;
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}
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break;
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@ -155,7 +155,7 @@ int kvm_mips_irq_deliver_cb(struct kvm_vcpu *vcpu, unsigned int priority,
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&& (!(kvm_read_c0_guest_status(cop0) & (ST0_EXL | ST0_ERL)))
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&& (kvm_read_c0_guest_status(cop0) & IE_IRQ2)) {
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allowed = 1;
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exccode = T_INT;
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exccode = EXCCODE_INT;
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}
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break;
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@ -1264,8 +1264,8 @@ int kvm_mips_handle_exit(struct kvm_run *run, struct kvm_vcpu *vcpu)
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}
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switch (exccode) {
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case T_INT:
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kvm_debug("[%d]T_INT @ %p\n", vcpu->vcpu_id, opc);
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case EXCCODE_INT:
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kvm_debug("[%d]EXCCODE_INT @ %p\n", vcpu->vcpu_id, opc);
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++vcpu->stat.int_exits;
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trace_kvm_exit(vcpu, INT_EXITS);
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@ -1276,8 +1276,8 @@ int kvm_mips_handle_exit(struct kvm_run *run, struct kvm_vcpu *vcpu)
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ret = RESUME_GUEST;
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break;
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case T_COP_UNUSABLE:
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kvm_debug("T_COP_UNUSABLE: @ PC: %p\n", opc);
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case EXCCODE_CPU:
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kvm_debug("EXCCODE_CPU: @ PC: %p\n", opc);
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++vcpu->stat.cop_unusable_exits;
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trace_kvm_exit(vcpu, COP_UNUSABLE_EXITS);
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@ -1287,13 +1287,13 @@ int kvm_mips_handle_exit(struct kvm_run *run, struct kvm_vcpu *vcpu)
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ret = RESUME_HOST;
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break;
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case T_TLB_MOD:
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case EXCCODE_MOD:
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++vcpu->stat.tlbmod_exits;
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trace_kvm_exit(vcpu, TLBMOD_EXITS);
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ret = kvm_mips_callbacks->handle_tlb_mod(vcpu);
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break;
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|
||||
case T_TLB_ST_MISS:
|
||||
case EXCCODE_TLBS:
|
||||
kvm_debug("TLB ST fault: cause %#x, status %#lx, PC: %p, BadVaddr: %#lx\n",
|
||||
cause, kvm_read_c0_guest_status(vcpu->arch.cop0), opc,
|
||||
badvaddr);
|
||||
@ -1303,7 +1303,7 @@ int kvm_mips_handle_exit(struct kvm_run *run, struct kvm_vcpu *vcpu)
|
||||
ret = kvm_mips_callbacks->handle_tlb_st_miss(vcpu);
|
||||
break;
|
||||
|
||||
case T_TLB_LD_MISS:
|
||||
case EXCCODE_TLBL:
|
||||
kvm_debug("TLB LD fault: cause %#x, PC: %p, BadVaddr: %#lx\n",
|
||||
cause, opc, badvaddr);
|
||||
|
||||
@ -1312,55 +1312,55 @@ int kvm_mips_handle_exit(struct kvm_run *run, struct kvm_vcpu *vcpu)
|
||||
ret = kvm_mips_callbacks->handle_tlb_ld_miss(vcpu);
|
||||
break;
|
||||
|
||||
case T_ADDR_ERR_ST:
|
||||
case EXCCODE_ADES:
|
||||
++vcpu->stat.addrerr_st_exits;
|
||||
trace_kvm_exit(vcpu, ADDRERR_ST_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_addr_err_st(vcpu);
|
||||
break;
|
||||
|
||||
case T_ADDR_ERR_LD:
|
||||
case EXCCODE_ADEL:
|
||||
++vcpu->stat.addrerr_ld_exits;
|
||||
trace_kvm_exit(vcpu, ADDRERR_LD_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_addr_err_ld(vcpu);
|
||||
break;
|
||||
|
||||
case T_SYSCALL:
|
||||
case EXCCODE_SYS:
|
||||
++vcpu->stat.syscall_exits;
|
||||
trace_kvm_exit(vcpu, SYSCALL_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_syscall(vcpu);
|
||||
break;
|
||||
|
||||
case T_RES_INST:
|
||||
case EXCCODE_RI:
|
||||
++vcpu->stat.resvd_inst_exits;
|
||||
trace_kvm_exit(vcpu, RESVD_INST_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_res_inst(vcpu);
|
||||
break;
|
||||
|
||||
case T_BREAK:
|
||||
case EXCCODE_BP:
|
||||
++vcpu->stat.break_inst_exits;
|
||||
trace_kvm_exit(vcpu, BREAK_INST_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_break(vcpu);
|
||||
break;
|
||||
|
||||
case T_TRAP:
|
||||
case EXCCODE_TR:
|
||||
++vcpu->stat.trap_inst_exits;
|
||||
trace_kvm_exit(vcpu, TRAP_INST_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_trap(vcpu);
|
||||
break;
|
||||
|
||||
case T_MSAFPE:
|
||||
case EXCCODE_MSAFPE:
|
||||
++vcpu->stat.msa_fpe_exits;
|
||||
trace_kvm_exit(vcpu, MSA_FPE_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_msa_fpe(vcpu);
|
||||
break;
|
||||
|
||||
case T_FPE:
|
||||
case EXCCODE_FPE:
|
||||
++vcpu->stat.fpe_exits;
|
||||
trace_kvm_exit(vcpu, FPE_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_fpe(vcpu);
|
||||
break;
|
||||
|
||||
case T_MSADIS:
|
||||
case EXCCODE_MSADIS:
|
||||
++vcpu->stat.msa_disabled_exits;
|
||||
trace_kvm_exit(vcpu, MSA_DISABLED_EXITS);
|
||||
ret = kvm_mips_callbacks->handle_msa_disabled(vcpu);
|
||||
|
Loading…
Reference in New Issue
Block a user