MIPS: KVM: Expose FPU registers
Add KVM register numbers for the MIPS FPU registers, and implement access to them with the KVM_GET_ONE_REG / KVM_SET_ONE_REG ioctls when the FPU capability is enabled (exposed in a later patch) and present in the guest according to its Config1.FP bit. The registers are accessible in the current mode of the guest, with each sized access showing what the guest would see with an equivalent access, and like the architecture they may become UNPREDICTABLE if the FR mode is changed. When FR=0, odd doubles are inaccessible as they do not exist in that mode. Signed-off-by: James Hogan <james.hogan@imgtec.com> Acked-by: Paolo Bonzini <pbonzini@redhat.com> Cc: Paul Burton <paul.burton@imgtec.com> Cc: Ralf Baechle <ralf@linux-mips.org> Cc: Gleb Natapov <gleb@kernel.org> Cc: Jonathan Corbet <corbet@lwn.net> Cc: linux-mips@linux-mips.org Cc: kvm@vger.kernel.org Cc: linux-api@vger.kernel.org Cc: linux-doc@vger.kernel.org
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@ -1979,6 +1979,10 @@ registers, find a list below:
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MIPS | KVM_REG_MIPS_COUNT_CTL | 64
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MIPS | KVM_REG_MIPS_COUNT_RESUME | 64
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MIPS | KVM_REG_MIPS_COUNT_HZ | 64
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MIPS | KVM_REG_MIPS_FPR_32(0..31) | 32
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MIPS | KVM_REG_MIPS_FPR_64(0..31) | 64
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MIPS | KVM_REG_MIPS_FCR_IR | 32
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MIPS | KVM_REG_MIPS_FCR_CSR | 32
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ARM registers are mapped using the lower 32 bits. The upper 16 of that
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is the register group type, or coprocessor number:
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@ -2032,6 +2036,18 @@ patterns depending on whether they're 32-bit or 64-bit registers:
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MIPS KVM control registers (see above) have the following id bit patterns:
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0x7030 0000 0002 <reg:16>
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MIPS FPU registers (see KVM_REG_MIPS_FPR_{32,64}() above) have the following
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id bit patterns depending on the size of the register being accessed. They are
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always accessed according to the current guest FPU mode (Status.FR and
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Config5.FRE), i.e. as the guest would see them, and they become unpredictable
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if the guest FPU mode is changed:
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0x7020 0000 0003 00 <0:3> <reg:5> (32-bit FPU registers)
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0x7030 0000 0003 00 <0:3> <reg:5> (64-bit FPU registers)
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MIPS FPU control registers (see KVM_REG_MIPS_FCR_{IR,CSR} above) have the
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following id bit patterns:
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0x7020 0000 0003 01 <0:3> <reg:5>
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4.69 KVM_GET_ONE_REG
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@ -36,18 +36,8 @@ struct kvm_regs {
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/*
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* for KVM_GET_FPU and KVM_SET_FPU
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*
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* If Status[FR] is zero (32-bit FPU), the upper 32-bits of the FPRs
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* are zero filled.
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*/
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struct kvm_fpu {
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__u64 fpr[32];
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__u32 fir;
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__u32 fccr;
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__u32 fexr;
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__u32 fenr;
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__u32 fcsr;
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__u32 pad;
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};
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@ -68,6 +58,8 @@ struct kvm_fpu {
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*
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* Register set = 2: KVM specific registers (see definitions below).
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*
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* Register set = 3: FPU registers (see definitions below).
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*
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* Other sets registers may be added in the future. Each set would
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* have its own identifier in bits[31..16].
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*/
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@ -75,6 +67,7 @@ struct kvm_fpu {
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#define KVM_REG_MIPS_GP (KVM_REG_MIPS | 0x0000000000000000ULL)
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#define KVM_REG_MIPS_CP0 (KVM_REG_MIPS | 0x0000000000010000ULL)
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#define KVM_REG_MIPS_KVM (KVM_REG_MIPS | 0x0000000000020000ULL)
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#define KVM_REG_MIPS_FPU (KVM_REG_MIPS | 0x0000000000030000ULL)
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/*
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@ -154,6 +147,30 @@ struct kvm_fpu {
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#define KVM_REG_MIPS_COUNT_HZ (KVM_REG_MIPS_KVM | KVM_REG_SIZE_U64 | 2)
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/*
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* KVM_REG_MIPS_FPU - Floating Point registers.
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*
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* bits[15..8] - Register subset (see definitions below).
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* bits[7..5] - Must be zero.
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* bits[4..0] - Register number within register subset.
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*/
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#define KVM_REG_MIPS_FPR (KVM_REG_MIPS_FPU | 0x0000000000000000ULL)
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#define KVM_REG_MIPS_FCR (KVM_REG_MIPS_FPU | 0x0000000000000100ULL)
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/*
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* KVM_REG_MIPS_FPR - Floating point / Vector registers.
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*/
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#define KVM_REG_MIPS_FPR_32(n) (KVM_REG_MIPS_FPR | KVM_REG_SIZE_U32 | (n))
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#define KVM_REG_MIPS_FPR_64(n) (KVM_REG_MIPS_FPR | KVM_REG_SIZE_U64 | (n))
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/*
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* KVM_REG_MIPS_FCR - Floating point control registers.
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*/
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#define KVM_REG_MIPS_FCR_IR (KVM_REG_MIPS_FCR | KVM_REG_SIZE_U32 | 0)
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#define KVM_REG_MIPS_FCR_CSR (KVM_REG_MIPS_FCR | KVM_REG_SIZE_U32 | 31)
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/*
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* KVM MIPS specific structures and definitions
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*
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@ -526,10 +526,13 @@ static int kvm_mips_get_reg(struct kvm_vcpu *vcpu,
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const struct kvm_one_reg *reg)
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{
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struct mips_coproc *cop0 = vcpu->arch.cop0;
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struct mips_fpu_struct *fpu = &vcpu->arch.fpu;
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int ret;
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s64 v;
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unsigned int idx;
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switch (reg->id) {
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/* General purpose registers */
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case KVM_REG_MIPS_R0 ... KVM_REG_MIPS_R31:
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v = (long)vcpu->arch.gprs[reg->id - KVM_REG_MIPS_R0];
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break;
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@ -543,6 +546,38 @@ static int kvm_mips_get_reg(struct kvm_vcpu *vcpu,
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v = (long)vcpu->arch.pc;
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break;
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/* Floating point registers */
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case KVM_REG_MIPS_FPR_32(0) ... KVM_REG_MIPS_FPR_32(31):
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if (!kvm_mips_guest_has_fpu(&vcpu->arch))
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return -EINVAL;
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idx = reg->id - KVM_REG_MIPS_FPR_32(0);
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/* Odd singles in top of even double when FR=0 */
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if (kvm_read_c0_guest_status(cop0) & ST0_FR)
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v = get_fpr32(&fpu->fpr[idx], 0);
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else
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v = get_fpr32(&fpu->fpr[idx & ~1], idx & 1);
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break;
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case KVM_REG_MIPS_FPR_64(0) ... KVM_REG_MIPS_FPR_64(31):
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if (!kvm_mips_guest_has_fpu(&vcpu->arch))
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return -EINVAL;
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idx = reg->id - KVM_REG_MIPS_FPR_64(0);
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/* Can't access odd doubles in FR=0 mode */
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if (idx & 1 && !(kvm_read_c0_guest_status(cop0) & ST0_FR))
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return -EINVAL;
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v = get_fpr64(&fpu->fpr[idx], 0);
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break;
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case KVM_REG_MIPS_FCR_IR:
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if (!kvm_mips_guest_has_fpu(&vcpu->arch))
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return -EINVAL;
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v = boot_cpu_data.fpu_id;
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break;
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case KVM_REG_MIPS_FCR_CSR:
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if (!kvm_mips_guest_has_fpu(&vcpu->arch))
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return -EINVAL;
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v = fpu->fcr31;
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break;
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/* Co-processor 0 registers */
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case KVM_REG_MIPS_CP0_INDEX:
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v = (long)kvm_read_c0_guest_index(cop0);
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break;
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@ -636,7 +671,9 @@ static int kvm_mips_set_reg(struct kvm_vcpu *vcpu,
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const struct kvm_one_reg *reg)
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{
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struct mips_coproc *cop0 = vcpu->arch.cop0;
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u64 v;
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struct mips_fpu_struct *fpu = &vcpu->arch.fpu;
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s64 v;
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unsigned int idx;
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if ((reg->id & KVM_REG_SIZE_MASK) == KVM_REG_SIZE_U64) {
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u64 __user *uaddr64 = (u64 __user *)(long)reg->addr;
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@ -655,6 +692,7 @@ static int kvm_mips_set_reg(struct kvm_vcpu *vcpu,
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}
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switch (reg->id) {
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/* General purpose registers */
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case KVM_REG_MIPS_R0:
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/* Silently ignore requests to set $0 */
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break;
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@ -671,6 +709,38 @@ static int kvm_mips_set_reg(struct kvm_vcpu *vcpu,
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vcpu->arch.pc = v;
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break;
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/* Floating point registers */
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case KVM_REG_MIPS_FPR_32(0) ... KVM_REG_MIPS_FPR_32(31):
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if (!kvm_mips_guest_has_fpu(&vcpu->arch))
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return -EINVAL;
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idx = reg->id - KVM_REG_MIPS_FPR_32(0);
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/* Odd singles in top of even double when FR=0 */
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if (kvm_read_c0_guest_status(cop0) & ST0_FR)
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set_fpr32(&fpu->fpr[idx], 0, v);
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else
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set_fpr32(&fpu->fpr[idx & ~1], idx & 1, v);
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break;
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case KVM_REG_MIPS_FPR_64(0) ... KVM_REG_MIPS_FPR_64(31):
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if (!kvm_mips_guest_has_fpu(&vcpu->arch))
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return -EINVAL;
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idx = reg->id - KVM_REG_MIPS_FPR_64(0);
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/* Can't access odd doubles in FR=0 mode */
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if (idx & 1 && !(kvm_read_c0_guest_status(cop0) & ST0_FR))
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return -EINVAL;
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set_fpr64(&fpu->fpr[idx], 0, v);
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break;
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case KVM_REG_MIPS_FCR_IR:
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if (!kvm_mips_guest_has_fpu(&vcpu->arch))
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return -EINVAL;
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/* Read-only */
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break;
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case KVM_REG_MIPS_FCR_CSR:
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if (!kvm_mips_guest_has_fpu(&vcpu->arch))
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return -EINVAL;
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fpu->fcr31 = v;
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break;
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/* Co-processor 0 registers */
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case KVM_REG_MIPS_CP0_INDEX:
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kvm_write_c0_guest_index(cop0, v);
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break;
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