1e6b673b7SDave Martin // SPDX-License-Identifier: GPL-2.0
2e6b673b7SDave Martin /*
3e6b673b7SDave Martin * arch/arm64/kvm/fpsimd.c: Guest/host FPSIMD context coordination helpers
4e6b673b7SDave Martin *
5e6b673b7SDave Martin * Copyright 2018 Arm Limited
6e6b673b7SDave Martin * Author: Dave Martin <Dave.Martin@arm.com>
7e6b673b7SDave Martin */
8b045e4d0SDave Martin #include <linux/irqflags.h>
9e6b673b7SDave Martin #include <linux/sched.h>
10e6b673b7SDave Martin #include <linux/kvm_host.h>
1104950674SDave Martin #include <asm/fpsimd.h>
12e6b673b7SDave Martin #include <asm/kvm_asm.h>
1383857371SMarc Zyngier #include <asm/kvm_hyp.h>
14e6b673b7SDave Martin #include <asm/kvm_mmu.h>
15b3eb56b6SDave Martin #include <asm/sysreg.h>
16e6b673b7SDave Martin
kvm_vcpu_unshare_task_fp(struct kvm_vcpu * vcpu)1752b28657SQuentin Perret void kvm_vcpu_unshare_task_fp(struct kvm_vcpu *vcpu)
1852b28657SQuentin Perret {
1952b28657SQuentin Perret struct task_struct *p = vcpu->arch.parent_task;
2052b28657SQuentin Perret struct user_fpsimd_state *fpsimd;
2152b28657SQuentin Perret
2252b28657SQuentin Perret if (!is_protected_kvm_enabled() || !p)
2352b28657SQuentin Perret return;
2452b28657SQuentin Perret
2552b28657SQuentin Perret fpsimd = &p->thread.uw.fpsimd_state;
2652b28657SQuentin Perret kvm_unshare_hyp(fpsimd, fpsimd + 1);
2752b28657SQuentin Perret put_task_struct(p);
2852b28657SQuentin Perret }
2952b28657SQuentin Perret
30e6b673b7SDave Martin /*
31e6b673b7SDave Martin * Called on entry to KVM_RUN unless this vcpu previously ran at least
32e6b673b7SDave Martin * once and the most recent prior KVM_RUN for this vcpu was called from
33e6b673b7SDave Martin * the same task as current (highly likely).
34e6b673b7SDave Martin *
35e6b673b7SDave Martin * This is guaranteed to execute before kvm_arch_vcpu_load_fp(vcpu),
36e6b673b7SDave Martin * such that on entering hyp the relevant parts of current are already
37e6b673b7SDave Martin * mapped.
38e6b673b7SDave Martin */
kvm_arch_vcpu_run_map_fp(struct kvm_vcpu * vcpu)39e6b673b7SDave Martin int kvm_arch_vcpu_run_map_fp(struct kvm_vcpu *vcpu)
40e6b673b7SDave Martin {
41e6b673b7SDave Martin int ret;
42e6b673b7SDave Martin
43e6b673b7SDave Martin struct user_fpsimd_state *fpsimd = ¤t->thread.uw.fpsimd_state;
44e6b673b7SDave Martin
4552b28657SQuentin Perret kvm_vcpu_unshare_task_fp(vcpu);
4652b28657SQuentin Perret
47bee14bcaSMarc Zyngier /* Make sure the host task fpsimd state is visible to hyp: */
483f868e14SQuentin Perret ret = kvm_share_hyp(fpsimd, fpsimd + 1);
4952b28657SQuentin Perret if (ret)
5052b28657SQuentin Perret return ret;
5152b28657SQuentin Perret
52e6b673b7SDave Martin vcpu->arch.host_fpsimd_state = kern_hyp_va(fpsimd);
532d761dbfSMarc Zyngier
5452b28657SQuentin Perret /*
5552b28657SQuentin Perret * We need to keep current's task_struct pinned until its data has been
5652b28657SQuentin Perret * unshared with the hypervisor to make sure it is not re-used by the
5752b28657SQuentin Perret * kernel and donated to someone else while already shared -- see
5852b28657SQuentin Perret * kvm_vcpu_unshare_task_fp() for the matching put_task_struct().
5952b28657SQuentin Perret */
6052b28657SQuentin Perret if (is_protected_kvm_enabled()) {
6152b28657SQuentin Perret get_task_struct(current);
6252b28657SQuentin Perret vcpu->arch.parent_task = current;
6352b28657SQuentin Perret }
6452b28657SQuentin Perret
6552b28657SQuentin Perret return 0;
66e6b673b7SDave Martin }
67e6b673b7SDave Martin
68e6b673b7SDave Martin /*
69e6b673b7SDave Martin * Prepare vcpu for saving the host's FPSIMD state and loading the guest's.
70e6b673b7SDave Martin * The actual loading is done by the FPSIMD access trap taken to hyp.
71e6b673b7SDave Martin *
72e6b673b7SDave Martin * Here, we just set the correct metadata to indicate that the FPSIMD
73e6b673b7SDave Martin * state in the cpu regs (if any) belongs to current on the host.
74e6b673b7SDave Martin */
kvm_arch_vcpu_load_fp(struct kvm_vcpu * vcpu)75e6b673b7SDave Martin void kvm_arch_vcpu_load_fp(struct kvm_vcpu *vcpu)
76e6b673b7SDave Martin {
77e6b673b7SDave Martin BUG_ON(!current->mm);
78e6b673b7SDave Martin
79b4da9187SMarc Zyngier if (!system_supports_fpsimd())
80b4da9187SMarc Zyngier return;
81b4da9187SMarc Zyngier
8293ae6b01SMark Brown fpsimd_kvm_prepare();
8393ae6b01SMark Brown
844c181e3dSMark Brown /*
854c181e3dSMark Brown * We will check TIF_FOREIGN_FPSTATE just before entering the
864c181e3dSMark Brown * guest in kvm_arch_vcpu_ctxflush_fp() and override this to
874c181e3dSMark Brown * FP_STATE_FREE if the flag set.
884c181e3dSMark Brown */
89f8077b0dSMarc Zyngier vcpu->arch.fp_state = FP_STATE_HOST_OWNED;
90b3eb56b6SDave Martin
910affa37fSMarc Zyngier vcpu_clear_flag(vcpu, HOST_SVE_ENABLED);
92b3eb56b6SDave Martin if (read_sysreg(cpacr_el1) & CPACR_EL1_ZEN_EL0EN)
930affa37fSMarc Zyngier vcpu_set_flag(vcpu, HOST_SVE_ENABLED);
94861262abSMark Brown
95861262abSMark Brown if (system_supports_sme()) {
960affa37fSMarc Zyngier vcpu_clear_flag(vcpu, HOST_SME_ENABLED);
97861262abSMark Brown if (read_sysreg(cpacr_el1) & CPACR_EL1_SMEN_EL0EN)
980affa37fSMarc Zyngier vcpu_set_flag(vcpu, HOST_SME_ENABLED);
99861262abSMark Brown
100*aaa2f14eSMark Brown /*
101*aaa2f14eSMark Brown * If PSTATE.SM is enabled then save any pending FP
102*aaa2f14eSMark Brown * state and disable PSTATE.SM. If we leave PSTATE.SM
103*aaa2f14eSMark Brown * enabled and the guest does not enable SME via
104*aaa2f14eSMark Brown * CPACR_EL1.SMEN then operations that should be valid
105*aaa2f14eSMark Brown * may generate SME traps from EL1 to EL1 which we
106*aaa2f14eSMark Brown * can't intercept and which would confuse the guest.
107*aaa2f14eSMark Brown *
108*aaa2f14eSMark Brown * Do the same for PSTATE.ZA in the case where there
109*aaa2f14eSMark Brown * is state in the registers which has not already
110*aaa2f14eSMark Brown * been saved, this is very unlikely to happen.
111*aaa2f14eSMark Brown */
112f8077b0dSMarc Zyngier if (read_sysreg_s(SYS_SVCR) & (SVCR_SM_MASK | SVCR_ZA_MASK)) {
113f8077b0dSMarc Zyngier vcpu->arch.fp_state = FP_STATE_FREE;
114861262abSMark Brown fpsimd_save_and_flush_cpu_state();
115861262abSMark Brown }
116861262abSMark Brown }
117e6b673b7SDave Martin }
118e6b673b7SDave Martin
11923afc825SMark Brown /*
120e9ada6c2SMarc Zyngier * Called just before entering the guest once we are no longer preemptable
121e9ada6c2SMarc Zyngier * and interrupts are disabled. If we have managed to run anything using
122e9ada6c2SMarc Zyngier * FP while we were preemptible (such as off the back of an interrupt),
123e9ada6c2SMarc Zyngier * then neither the host nor the guest own the FP hardware (and it was the
124e9ada6c2SMarc Zyngier * responsibility of the code that used FP to save the existing state).
12523afc825SMark Brown */
kvm_arch_vcpu_ctxflush_fp(struct kvm_vcpu * vcpu)126af9a0e21SMarc Zyngier void kvm_arch_vcpu_ctxflush_fp(struct kvm_vcpu *vcpu)
127af9a0e21SMarc Zyngier {
128b4da9187SMarc Zyngier if (test_thread_flag(TIF_FOREIGN_FPSTATE))
129f8077b0dSMarc Zyngier vcpu->arch.fp_state = FP_STATE_FREE;
130af9a0e21SMarc Zyngier }
131af9a0e21SMarc Zyngier
132e6b673b7SDave Martin /*
13323afc825SMark Brown * Called just after exiting the guest. If the guest FPSIMD state
13423afc825SMark Brown * was loaded, update the host's context tracking data mark the CPU
13523afc825SMark Brown * FPSIMD regs as dirty and belonging to vcpu so that they will be
13623afc825SMark Brown * written back if the kernel clobbers them due to kernel-mode NEON
13723afc825SMark Brown * before re-entry into the guest.
138e6b673b7SDave Martin */
kvm_arch_vcpu_ctxsync_fp(struct kvm_vcpu * vcpu)139e6b673b7SDave Martin void kvm_arch_vcpu_ctxsync_fp(struct kvm_vcpu *vcpu)
140e6b673b7SDave Martin {
1411192b93bSMark Brown struct cpu_fp_state fp_state;
142deeb8f9aSMark Brown
143e6b673b7SDave Martin WARN_ON_ONCE(!irqs_disabled());
144e6b673b7SDave Martin
145f8077b0dSMarc Zyngier if (vcpu->arch.fp_state == FP_STATE_GUEST_OWNED) {
146deeb8f9aSMark Brown
147b40c559bSMark Brown /*
148b40c559bSMark Brown * Currently we do not support SME guests so SVCR is
149b40c559bSMark Brown * always 0 and we just need a variable to point to.
150b40c559bSMark Brown */
1511192b93bSMark Brown fp_state.st = &vcpu->arch.ctxt.fp_regs;
1521192b93bSMark Brown fp_state.sve_state = vcpu->arch.sve_state;
1531192b93bSMark Brown fp_state.sve_vl = vcpu->arch.sve_max_vl;
154ce514000SMark Brown fp_state.sme_state = NULL;
1551192b93bSMark Brown fp_state.svcr = &vcpu->arch.svcr;
1561192b93bSMark Brown fp_state.fp_type = &vcpu->arch.fp_type;
1571192b93bSMark Brown
1581192b93bSMark Brown if (vcpu_has_sve(vcpu))
1591192b93bSMark Brown fp_state.to_save = FP_STATE_SVE;
1601192b93bSMark Brown else
1611192b93bSMark Brown fp_state.to_save = FP_STATE_FPSIMD;
1621192b93bSMark Brown
1631192b93bSMark Brown fpsimd_bind_state_to_cpu(&fp_state);
16404950674SDave Martin
165e6b673b7SDave Martin clear_thread_flag(TIF_FOREIGN_FPSTATE);
166e6b673b7SDave Martin }
167e6b673b7SDave Martin }
168e6b673b7SDave Martin
169e6b673b7SDave Martin /*
170e6b673b7SDave Martin * Write back the vcpu FPSIMD regs if they are dirty, and invalidate the
171e6b673b7SDave Martin * cpu FPSIMD regs so that they can't be spuriously reused if this vcpu
172e6b673b7SDave Martin * disappears and another task or vcpu appears that recycles the same
173e6b673b7SDave Martin * struct fpsimd_state.
174e6b673b7SDave Martin */
kvm_arch_vcpu_put_fp(struct kvm_vcpu * vcpu)175e6b673b7SDave Martin void kvm_arch_vcpu_put_fp(struct kvm_vcpu *vcpu)
176e6b673b7SDave Martin {
177b045e4d0SDave Martin unsigned long flags;
178b045e4d0SDave Martin
179b045e4d0SDave Martin local_irq_save(flags);
180e6b673b7SDave Martin
181861262abSMark Brown /*
182861262abSMark Brown * If we have VHE then the Hyp code will reset CPACR_EL1 to
183861262abSMark Brown * the default value and we need to reenable SME.
184861262abSMark Brown */
185861262abSMark Brown if (has_vhe() && system_supports_sme()) {
186861262abSMark Brown /* Also restore EL0 state seen on entry */
1870affa37fSMarc Zyngier if (vcpu_get_flag(vcpu, HOST_SME_ENABLED))
188861262abSMark Brown sysreg_clear_set(CPACR_EL1, 0,
189861262abSMark Brown CPACR_EL1_SMEN_EL0EN |
190861262abSMark Brown CPACR_EL1_SMEN_EL1EN);
191861262abSMark Brown else
192861262abSMark Brown sysreg_clear_set(CPACR_EL1,
193861262abSMark Brown CPACR_EL1_SMEN_EL0EN,
194861262abSMark Brown CPACR_EL1_SMEN_EL1EN);
19559d78a2eSNianyao Tang isb();
196861262abSMark Brown }
197861262abSMark Brown
198f8077b0dSMarc Zyngier if (vcpu->arch.fp_state == FP_STATE_GUEST_OWNED) {
1998383741aSMarc Zyngier if (vcpu_has_sve(vcpu)) {
20083857371SMarc Zyngier __vcpu_sys_reg(vcpu, ZCR_EL1) = read_sysreg_el1(SYS_ZCR);
201b145a843SMarc Zyngier
2028c8010d6SMarc Zyngier /* Restore the VL that was saved when bound to the CPU */
2038c8010d6SMarc Zyngier if (!has_vhe())
2048c8010d6SMarc Zyngier sve_cond_update_zcr_vq(vcpu_sve_max_vq(vcpu) - 1,
2058c8010d6SMarc Zyngier SYS_ZCR_EL1);
2068c8010d6SMarc Zyngier }
2078c8010d6SMarc Zyngier
208b145a843SMarc Zyngier fpsimd_save_and_flush_cpu_state();
2098383741aSMarc Zyngier } else if (has_vhe() && system_supports_sve()) {
210b3eb56b6SDave Martin /*
211b3eb56b6SDave Martin * The FPSIMD/SVE state in the CPU has not been touched, and we
212b3eb56b6SDave Martin * have SVE (and VHE): CPACR_EL1 (alias CPTR_EL2) has been
213b3eb56b6SDave Martin * reset by kvm_reset_cptr_el2() in the Hyp code, disabling SVE
214b3eb56b6SDave Martin * for EL0. To avoid spurious traps, restore the trap state
215b3eb56b6SDave Martin * seen by kvm_arch_vcpu_load_fp():
216b3eb56b6SDave Martin */
2170affa37fSMarc Zyngier if (vcpu_get_flag(vcpu, HOST_SVE_ENABLED))
218b3eb56b6SDave Martin sysreg_clear_set(CPACR_EL1, 0, CPACR_EL1_ZEN_EL0EN);
219b3eb56b6SDave Martin else
220b3eb56b6SDave Martin sysreg_clear_set(CPACR_EL1, CPACR_EL1_ZEN_EL0EN, 0);
221e6b673b7SDave Martin }
222e6b673b7SDave Martin
223b045e4d0SDave Martin local_irq_restore(flags);
224e6b673b7SDave Martin }
225