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@@ -16,6 +16,7 @@
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#include <asm/mmu_context.h>
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#include <asm/mmu_context.h>
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#include <asm/msa.h>
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#include <asm/msa.h>
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#include <asm/setup.h>
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#include <asm/setup.h>
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+#include <asm/tlbex.h>
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#include <asm/uasm.h>
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#include <asm/uasm.h>
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/* Register names */
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/* Register names */
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@@ -122,6 +123,9 @@ int kvm_mips_entry_setup(void)
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*/
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*/
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unsigned int kscratch_mask = cpu_data[0].kscratch_mask;
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unsigned int kscratch_mask = cpu_data[0].kscratch_mask;
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+ if (pgd_reg != -1)
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+ kscratch_mask &= ~BIT(pgd_reg);
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+
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/* Pick a scratch register for storing VCPU */
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/* Pick a scratch register for storing VCPU */
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if (kscratch_mask) {
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if (kscratch_mask) {
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scratch_vcpu[0] = c0_kscratch();
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scratch_vcpu[0] = c0_kscratch();
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@@ -380,6 +384,80 @@ static void *kvm_mips_build_enter_guest(void *addr)
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return p;
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return p;
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}
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}
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+/**
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+ * kvm_mips_build_tlb_refill_exception() - Assemble TLB refill handler.
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+ * @addr: Address to start writing code.
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+ * @handler: Address of common handler (within range of @addr).
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+ *
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+ * Assemble TLB refill exception fast path handler for guest execution.
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+ *
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+ * Returns: Next address after end of written function.
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+ */
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+void *kvm_mips_build_tlb_refill_exception(void *addr, void *handler)
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+{
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+ u32 *p = addr;
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+ struct uasm_label labels[2];
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+ struct uasm_reloc relocs[2];
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+ struct uasm_label *l = labels;
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+ struct uasm_reloc *r = relocs;
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+
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+ memset(labels, 0, sizeof(labels));
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+ memset(relocs, 0, sizeof(relocs));
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+
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+ /* Save guest k1 into scratch register */
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+ UASM_i_MTC0(&p, K1, scratch_tmp[0], scratch_tmp[1]);
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+
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+ /* Get the VCPU pointer from the VCPU scratch register */
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+ UASM_i_MFC0(&p, K1, scratch_vcpu[0], scratch_vcpu[1]);
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+
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+ /* Save guest k0 into VCPU structure */
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+ UASM_i_SW(&p, K0, offsetof(struct kvm_vcpu, arch.gprs[K0]), K1);
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+
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+ /*
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+ * Some of the common tlbex code uses current_cpu_type(). For KVM we
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+ * assume symmetry and just disable preemption to silence the warning.
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+ */
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+ preempt_disable();
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+
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+ /*
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+ * Now for the actual refill bit. A lot of this can be common with the
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+ * Linux TLB refill handler, however we don't need to handle so many
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+ * cases. We only need to handle user mode refills, and user mode runs
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+ * with 32-bit addressing.
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+ *
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+ * Therefore the branch to label_vmalloc generated by build_get_pmde64()
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+ * that isn't resolved should never actually get taken and is harmless
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+ * to leave in place for now.
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+ */
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+
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+#ifdef CONFIG_64BIT
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+ build_get_pmde64(&p, &l, &r, K0, K1); /* get pmd in K1 */
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+#else
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+ build_get_pgde32(&p, K0, K1); /* get pgd in K1 */
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+#endif
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+
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+ /* we don't support huge pages yet */
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+
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+ build_get_ptep(&p, K0, K1);
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+ build_update_entries(&p, K0, K1);
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+ build_tlb_write_entry(&p, &l, &r, tlb_random);
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+
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+ preempt_enable();
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+
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+ /* Get the VCPU pointer from the VCPU scratch register again */
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+ UASM_i_MFC0(&p, K1, scratch_vcpu[0], scratch_vcpu[1]);
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+
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+ /* Restore the guest's k0/k1 registers */
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+ UASM_i_LW(&p, K0, offsetof(struct kvm_vcpu, arch.gprs[K0]), K1);
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+ uasm_i_ehb(&p);
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+ UASM_i_MFC0(&p, K1, scratch_tmp[0], scratch_tmp[1]);
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+
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+ /* Jump to guest */
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+ uasm_i_eret(&p);
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+
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+ return p;
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+}
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+
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/**
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/**
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* kvm_mips_build_exception() - Assemble first level guest exception handler.
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* kvm_mips_build_exception() - Assemble first level guest exception handler.
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* @addr: Address to start writing code.
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* @addr: Address to start writing code.
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