KVM: arm64: vgic-its: Implement vgic_its_has_attr_regs and attr_regs_access
This patch implements vgic_its_has_attr_regs and vgic_its_attr_regs_access upon the MMIO framework. VGIC ITS KVM device KVM_DEV_ARM_VGIC_GRP_ITS_REGS group becomes functional. At least GITS_CREADR and GITS_IIDR require to differentiate a guest write action from a user access. As such let's introduce a new uaccess_its_write vgic_register_region callback. Signed-off-by: Eric Auger <eric.auger@redhat.com> Reviewed-by: Christoffer Dall <cdall@linaro.org> Reviewed-by: Marc Zyngier <marc.zyngier@arm.com>
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2 changed files with 84 additions and 4 deletions
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@ -1469,14 +1469,89 @@ static void vgic_its_destroy(struct kvm_device *kvm_dev)
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int vgic_its_has_attr_regs(struct kvm_device *dev,
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int vgic_its_has_attr_regs(struct kvm_device *dev,
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struct kvm_device_attr *attr)
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struct kvm_device_attr *attr)
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{
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{
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return -ENXIO;
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const struct vgic_register_region *region;
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gpa_t offset = attr->attr;
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int align;
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align = (offset < GITS_TYPER) || (offset >= GITS_PIDR4) ? 0x3 : 0x7;
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if (offset & align)
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return -EINVAL;
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region = vgic_find_mmio_region(its_registers,
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ARRAY_SIZE(its_registers),
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offset);
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if (!region)
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return -ENXIO;
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return 0;
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}
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}
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int vgic_its_attr_regs_access(struct kvm_device *dev,
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int vgic_its_attr_regs_access(struct kvm_device *dev,
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struct kvm_device_attr *attr,
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struct kvm_device_attr *attr,
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u64 *reg, bool is_write)
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u64 *reg, bool is_write)
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{
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{
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return -ENXIO;
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const struct vgic_register_region *region;
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struct vgic_its *its;
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gpa_t addr, offset;
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unsigned int len;
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int align, ret = 0;
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its = dev->private;
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offset = attr->attr;
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/*
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* Although the spec supports upper/lower 32-bit accesses to
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* 64-bit ITS registers, the userspace ABI requires 64-bit
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* accesses to all 64-bit wide registers. We therefore only
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* support 32-bit accesses to GITS_CTLR, GITS_IIDR and GITS ID
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* registers
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*/
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if ((offset < GITS_TYPER) || (offset >= GITS_PIDR4))
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align = 0x3;
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else
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align = 0x7;
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if (offset & align)
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return -EINVAL;
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mutex_lock(&dev->kvm->lock);
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if (IS_VGIC_ADDR_UNDEF(its->vgic_its_base)) {
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ret = -ENXIO;
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goto out;
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}
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region = vgic_find_mmio_region(its_registers,
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ARRAY_SIZE(its_registers),
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offset);
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if (!region) {
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ret = -ENXIO;
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goto out;
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}
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if (!lock_all_vcpus(dev->kvm)) {
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ret = -EBUSY;
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goto out;
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}
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addr = its->vgic_its_base + offset;
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len = region->access_flags & VGIC_ACCESS_64bit ? 8 : 4;
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if (is_write) {
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if (region->uaccess_its_write)
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ret = region->uaccess_its_write(dev->kvm, its, addr,
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len, *reg);
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else
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region->its_write(dev->kvm, its, addr, len, *reg);
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} else {
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*reg = region->its_read(dev->kvm, its, addr, len);
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}
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unlock_all_vcpus(dev->kvm);
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out:
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mutex_unlock(&dev->kvm->lock);
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return ret;
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}
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}
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static int vgic_its_has_attr(struct kvm_device *dev,
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static int vgic_its_has_attr(struct kvm_device *dev,
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@ -36,8 +36,13 @@ struct vgic_register_region {
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};
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};
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unsigned long (*uaccess_read)(struct kvm_vcpu *vcpu, gpa_t addr,
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unsigned long (*uaccess_read)(struct kvm_vcpu *vcpu, gpa_t addr,
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unsigned int len);
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unsigned int len);
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void (*uaccess_write)(struct kvm_vcpu *vcpu, gpa_t addr,
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union {
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unsigned int len, unsigned long val);
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void (*uaccess_write)(struct kvm_vcpu *vcpu, gpa_t addr,
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unsigned int len, unsigned long val);
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int (*uaccess_its_write)(struct kvm *kvm, struct vgic_its *its,
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gpa_t addr, unsigned int len,
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unsigned long val);
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};
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};
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};
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extern struct kvm_io_device_ops kvm_io_gic_ops;
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extern struct kvm_io_device_ops kvm_io_gic_ops;
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