KVM: ia64: Drop in SN2 replacement of fast path ITC emulation fault handler
Copy in SN2 RTC based ITC emulation for fast exit. The two versions have the same size, so a dropin is simpler than patching the branch instruction to hit the SN2 version. Signed-off-by: Jes Sorensen <jes@sgi.com> Acked-by: Xiantao Zhang <xiantao.zhang@intel.com> Signed-off-by: Avi Kivity <avi@redhat.com>
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ce17c64373
Коммит
0b5d7a2ccb
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@ -580,6 +580,8 @@ struct kvm_vmm_info{
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kvm_vmm_entry *vmm_entry;
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kvm_tramp_entry *tramp_entry;
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unsigned long vmm_ivt;
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unsigned long patch_mov_ar;
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unsigned long patch_mov_ar_sn2;
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};
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int kvm_highest_pending_irq(struct kvm_vcpu *vcpu);
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@ -1671,8 +1671,37 @@ out:
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return 0;
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}
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/*
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* On SN2, the ITC isn't stable, so copy in fast path code to use the
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* SN2 RTC, replacing the ITC based default verion.
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*/
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static void kvm_patch_vmm(struct kvm_vmm_info *vmm_info,
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struct module *module)
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{
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unsigned long new_ar, new_ar_sn2;
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unsigned long module_base;
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if (!ia64_platform_is("sn2"))
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return;
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module_base = (unsigned long)module->module_core;
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new_ar = kvm_vmm_base + vmm_info->patch_mov_ar - module_base;
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new_ar_sn2 = kvm_vmm_base + vmm_info->patch_mov_ar_sn2 - module_base;
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printk(KERN_INFO "kvm: Patching ITC emulation to use SGI SN2 RTC "
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"as source\n");
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/*
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* Copy the SN2 version of mov_ar into place. They are both
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* the same size, so 6 bundles is sufficient (6 * 0x10).
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*/
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memcpy((void *)new_ar, (void *)new_ar_sn2, 0x60);
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}
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static int kvm_relocate_vmm(struct kvm_vmm_info *vmm_info,
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struct module *module)
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struct module *module)
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{
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unsigned long module_base;
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unsigned long vmm_size;
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@ -1694,6 +1723,7 @@ static int kvm_relocate_vmm(struct kvm_vmm_info *vmm_info,
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return -EFAULT;
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memcpy((void *)kvm_vmm_base, (void *)module_base, vmm_size);
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kvm_patch_vmm(vmm_info, module);
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kvm_flush_icache(kvm_vmm_base, vmm_size);
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/*Recalculate kvm_vmm_info based on new VMM*/
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@ -11,6 +11,7 @@
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#include <asm/asmmacro.h>
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#include <asm/processor.h>
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#include <asm/kvm_host.h>
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#include "vti.h"
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#include "asm-offsets.h"
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@ -140,6 +141,35 @@ GLOBAL_ENTRY(kvm_asm_mov_from_ar)
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;;
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END(kvm_asm_mov_from_ar)
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/*
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* Special SGI SN2 optimized version of mov_from_ar using the SN2 RTC
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* clock as it's source for emulating the ITC. This version will be
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* copied on top of the original version if the host is determined to
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* be an SN2.
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*/
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GLOBAL_ENTRY(kvm_asm_mov_from_ar_sn2)
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add r18=VMM_VCPU_ITC_OFS_OFFSET, r21
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movl r19 = (KVM_VMM_BASE+(1<<KVM_VMM_SHIFT))
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add r16=VMM_VCPU_LAST_ITC_OFFSET,r21
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extr.u r17=r25,6,7
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mov r24=b0
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;;
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ld8 r18=[r18]
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ld8 r19=[r19]
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addl r20=@gprel(asm_mov_to_reg),gp
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;;
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add r19=r19,r18
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shladd r17=r17,4,r20
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;;
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adds r30=kvm_resume_to_guest-asm_mov_to_reg,r20
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st8 [r16] = r19
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mov b0=r17
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br.sptk.few b0
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;;
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END(kvm_asm_mov_from_ar_sn2)
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// mov r1=rr[r3]
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GLOBAL_ENTRY(kvm_asm_mov_from_rr)
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@ -30,15 +30,19 @@ MODULE_AUTHOR("Intel");
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MODULE_LICENSE("GPL");
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extern char kvm_ia64_ivt;
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extern char kvm_asm_mov_from_ar;
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extern char kvm_asm_mov_from_ar_sn2;
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extern fpswa_interface_t *vmm_fpswa_interface;
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long vmm_sanity = 1;
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struct kvm_vmm_info vmm_info = {
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.module = THIS_MODULE,
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.vmm_entry = vmm_entry,
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.tramp_entry = vmm_trampoline,
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.vmm_ivt = (unsigned long)&kvm_ia64_ivt,
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.module = THIS_MODULE,
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.vmm_entry = vmm_entry,
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.tramp_entry = vmm_trampoline,
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.vmm_ivt = (unsigned long)&kvm_ia64_ivt,
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.patch_mov_ar = (unsigned long)&kvm_asm_mov_from_ar,
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.patch_mov_ar_sn2 = (unsigned long)&kvm_asm_mov_from_ar_sn2,
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};
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static int __init kvm_vmm_init(void)
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