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										 |  |  | /*
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							|  |  |  |  * Copyright (C) 2012 - Virtual Open Systems and Columbia University | 
					
						
							|  |  |  |  * Author: Christoffer Dall <c.dall@virtualopensystems.com> | 
					
						
							|  |  |  |  * | 
					
						
							|  |  |  |  * This program is free software; you can redistribute it and/or modify | 
					
						
							|  |  |  |  * it under the terms of the GNU General Public License, version 2, as | 
					
						
							|  |  |  |  * published by the Free Software Foundation. | 
					
						
							|  |  |  |  * | 
					
						
							|  |  |  |  * This program is distributed in the hope that it will be useful, | 
					
						
							|  |  |  |  * but WITHOUT ANY WARRANTY; without even the implied warranty of | 
					
						
							|  |  |  |  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the | 
					
						
							|  |  |  |  * GNU General Public License for more details. | 
					
						
							|  |  |  |  * | 
					
						
							|  |  |  |  * You should have received a copy of the GNU General Public License | 
					
						
							|  |  |  |  * along with this program; if not, write to the Free Software | 
					
						
							|  |  |  |  * Foundation, 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301, USA. | 
					
						
							|  |  |  |  */ | 
					
						
							|  |  |  | 
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							|  |  |  | #include <linux/kvm_host.h>
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							|  |  |  | #include <asm/kvm_mmio.h>
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							|  |  |  | #include <asm/kvm_emulate.h>
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							|  |  |  | #include <trace/events/kvm.h>
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							|  |  |  | 
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							|  |  |  | #include "trace.h"
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							|  |  |  | 
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										 |  |  | static void mmio_write_buf(char *buf, unsigned int len, unsigned long data) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  | 	void *datap = NULL; | 
					
						
							|  |  |  | 	union { | 
					
						
							|  |  |  | 		u8	byte; | 
					
						
							|  |  |  | 		u16	hword; | 
					
						
							|  |  |  | 		u32	word; | 
					
						
							|  |  |  | 		u64	dword; | 
					
						
							|  |  |  | 	} tmp; | 
					
						
							|  |  |  | 
 | 
					
						
							|  |  |  | 	switch (len) { | 
					
						
							|  |  |  | 	case 1: | 
					
						
							|  |  |  | 		tmp.byte	= data; | 
					
						
							|  |  |  | 		datap		= &tmp.byte; | 
					
						
							|  |  |  | 		break; | 
					
						
							|  |  |  | 	case 2: | 
					
						
							|  |  |  | 		tmp.hword	= data; | 
					
						
							|  |  |  | 		datap		= &tmp.hword; | 
					
						
							|  |  |  | 		break; | 
					
						
							|  |  |  | 	case 4: | 
					
						
							|  |  |  | 		tmp.word	= data; | 
					
						
							|  |  |  | 		datap		= &tmp.word; | 
					
						
							|  |  |  | 		break; | 
					
						
							|  |  |  | 	case 8: | 
					
						
							|  |  |  | 		tmp.dword	= data; | 
					
						
							|  |  |  | 		datap		= &tmp.dword; | 
					
						
							|  |  |  | 		break; | 
					
						
							|  |  |  | 	} | 
					
						
							|  |  |  | 
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							|  |  |  | 	memcpy(buf, datap, len); | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | static unsigned long mmio_read_buf(char *buf, unsigned int len) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  | 	unsigned long data = 0; | 
					
						
							|  |  |  | 	union { | 
					
						
							|  |  |  | 		u16	hword; | 
					
						
							|  |  |  | 		u32	word; | 
					
						
							|  |  |  | 		u64	dword; | 
					
						
							|  |  |  | 	} tmp; | 
					
						
							|  |  |  | 
 | 
					
						
							|  |  |  | 	switch (len) { | 
					
						
							|  |  |  | 	case 1: | 
					
						
							|  |  |  | 		data = buf[0]; | 
					
						
							|  |  |  | 		break; | 
					
						
							|  |  |  | 	case 2: | 
					
						
							|  |  |  | 		memcpy(&tmp.hword, buf, len); | 
					
						
							|  |  |  | 		data = tmp.hword; | 
					
						
							|  |  |  | 		break; | 
					
						
							|  |  |  | 	case 4: | 
					
						
							|  |  |  | 		memcpy(&tmp.word, buf, len); | 
					
						
							|  |  |  | 		data = tmp.word; | 
					
						
							|  |  |  | 		break; | 
					
						
							|  |  |  | 	case 8: | 
					
						
							|  |  |  | 		memcpy(&tmp.dword, buf, len); | 
					
						
							|  |  |  | 		data = tmp.dword; | 
					
						
							|  |  |  | 		break; | 
					
						
							|  |  |  | 	} | 
					
						
							|  |  |  | 
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							|  |  |  | 	return data; | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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										 |  |  | /**
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							|  |  |  |  * kvm_handle_mmio_return -- Handle MMIO loads after user space emulation | 
					
						
							|  |  |  |  * @vcpu: The VCPU pointer | 
					
						
							|  |  |  |  * @run:  The VCPU run struct containing the mmio data | 
					
						
							|  |  |  |  * | 
					
						
							|  |  |  |  * This should only be called after returning from userspace for MMIO load | 
					
						
							|  |  |  |  * emulation. | 
					
						
							|  |  |  |  */ | 
					
						
							|  |  |  | int kvm_handle_mmio_return(struct kvm_vcpu *vcpu, struct kvm_run *run) | 
					
						
							|  |  |  | { | 
					
						
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										 |  |  | 	unsigned long data; | 
					
						
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										 |  |  | 	unsigned int len; | 
					
						
							|  |  |  | 	int mask; | 
					
						
							|  |  |  | 
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							|  |  |  | 	if (!run->mmio.is_write) { | 
					
						
							|  |  |  | 		len = run->mmio.len; | 
					
						
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										 |  |  | 		if (len > sizeof(unsigned long)) | 
					
						
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										 |  |  | 			return -EINVAL; | 
					
						
							|  |  |  | 
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										 |  |  | 		data = mmio_read_buf(run->mmio.data, len); | 
					
						
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										 |  |  | 
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										 |  |  | 		if (vcpu->arch.mmio_decode.sign_extend && | 
					
						
							|  |  |  | 		    len < sizeof(unsigned long)) { | 
					
						
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										 |  |  | 			mask = 1U << ((len * 8) - 1); | 
					
						
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										 |  |  | 			data = (data ^ mask) - mask; | 
					
						
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										 |  |  | 		} | 
					
						
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										 |  |  | 
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							|  |  |  | 		trace_kvm_mmio(KVM_TRACE_MMIO_READ, len, run->mmio.phys_addr, | 
					
						
							|  |  |  | 			       data); | 
					
						
							|  |  |  | 		data = vcpu_data_host_to_guest(vcpu, data, len); | 
					
						
							|  |  |  | 		*vcpu_reg(vcpu, vcpu->arch.mmio_decode.rt) = data; | 
					
						
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										 |  |  | 	} | 
					
						
							|  |  |  | 
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							|  |  |  | 	return 0; | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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										 |  |  | static int decode_hsr(struct kvm_vcpu *vcpu, bool *is_write, int *len) | 
					
						
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										 |  |  | { | 
					
						
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										 |  |  | 	unsigned long rt; | 
					
						
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										 |  |  | 	int access_size; | 
					
						
							|  |  |  | 	bool sign_extend; | 
					
						
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										 |  |  | 	if (kvm_vcpu_dabt_isextabt(vcpu)) { | 
					
						
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										 |  |  | 		/* cache operation on I/O addr, tell guest unsupported */ | 
					
						
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										 |  |  | 		kvm_inject_dabt(vcpu, kvm_vcpu_get_hfar(vcpu)); | 
					
						
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										 |  |  | 		return 1; | 
					
						
							|  |  |  | 	} | 
					
						
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										 |  |  | 	if (kvm_vcpu_dabt_iss1tw(vcpu)) { | 
					
						
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										 |  |  | 		/* page table accesses IO mem: tell guest to fix its TTBR */ | 
					
						
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										 |  |  | 		kvm_inject_dabt(vcpu, kvm_vcpu_get_hfar(vcpu)); | 
					
						
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										 |  |  | 		return 1; | 
					
						
							|  |  |  | 	} | 
					
						
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										 |  |  | 	access_size = kvm_vcpu_dabt_get_as(vcpu); | 
					
						
							|  |  |  | 	if (unlikely(access_size < 0)) | 
					
						
							|  |  |  | 		return access_size; | 
					
						
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										 |  |  | 	*is_write = kvm_vcpu_dabt_iswrite(vcpu); | 
					
						
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										 |  |  | 	sign_extend = kvm_vcpu_dabt_issext(vcpu); | 
					
						
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										 |  |  | 	rt = kvm_vcpu_dabt_get_rd(vcpu); | 
					
						
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										 |  |  | 	*len = access_size; | 
					
						
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										 |  |  | 	vcpu->arch.mmio_decode.sign_extend = sign_extend; | 
					
						
							|  |  |  | 	vcpu->arch.mmio_decode.rt = rt; | 
					
						
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							|  |  |  | 	/*
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							|  |  |  | 	 * The MMIO instruction is emulated and should not be re-executed | 
					
						
							|  |  |  | 	 * in the guest. | 
					
						
							|  |  |  | 	 */ | 
					
						
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										 |  |  | 	kvm_skip_instr(vcpu, kvm_vcpu_trap_il_is32bit(vcpu)); | 
					
						
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										 |  |  | 	return 0; | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | int io_mem_abort(struct kvm_vcpu *vcpu, struct kvm_run *run, | 
					
						
							|  |  |  | 		 phys_addr_t fault_ipa) | 
					
						
							|  |  |  | { | 
					
						
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										 |  |  | 	unsigned long data; | 
					
						
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										 |  |  | 	unsigned long rt; | 
					
						
							|  |  |  | 	int ret; | 
					
						
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										 |  |  | 	bool is_write; | 
					
						
							|  |  |  | 	int len; | 
					
						
							|  |  |  | 	u8 data_buf[8]; | 
					
						
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							|  |  |  | 	/*
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										 |  |  | 	 * Prepare MMIO operation. First decode the syndrome data we get | 
					
						
							|  |  |  | 	 * from the CPU. Then try if some in-kernel emulation feels | 
					
						
							|  |  |  | 	 * responsible, otherwise let user space do its magic. | 
					
						
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										 |  |  | 	 */ | 
					
						
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										 |  |  | 	if (kvm_vcpu_dabt_isvalid(vcpu)) { | 
					
						
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										 |  |  | 		ret = decode_hsr(vcpu, &is_write, &len); | 
					
						
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										 |  |  | 		if (ret) | 
					
						
							|  |  |  | 			return ret; | 
					
						
							|  |  |  | 	} else { | 
					
						
							|  |  |  | 		kvm_err("load/store instruction decoding not implemented\n"); | 
					
						
							|  |  |  | 		return -ENOSYS; | 
					
						
							|  |  |  | 	} | 
					
						
							|  |  |  | 
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							|  |  |  | 	rt = vcpu->arch.mmio_decode.rt; | 
					
						
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										 |  |  | 	if (is_write) { | 
					
						
							|  |  |  | 		data = vcpu_data_guest_to_host(vcpu, *vcpu_reg(vcpu, rt), len); | 
					
						
							|  |  |  | 
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							|  |  |  | 		trace_kvm_mmio(KVM_TRACE_MMIO_WRITE, len, fault_ipa, data); | 
					
						
							|  |  |  | 		mmio_write_buf(data_buf, len, data); | 
					
						
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										 |  |  | 		ret = kvm_io_bus_write(vcpu, KVM_MMIO_BUS, fault_ipa, len, | 
					
						
							|  |  |  | 				       data_buf); | 
					
						
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										 |  |  | 	} else { | 
					
						
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										 |  |  | 		trace_kvm_mmio(KVM_TRACE_MMIO_READ_UNSATISFIED, len, | 
					
						
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										 |  |  | 			       fault_ipa, 0); | 
					
						
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										 |  |  | 
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							|  |  |  | 		ret = kvm_io_bus_read(vcpu, KVM_MMIO_BUS, fault_ipa, len, | 
					
						
							|  |  |  | 				      data_buf); | 
					
						
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										 |  |  | 	} | 
					
						
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										 |  |  | 
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										 |  |  | 	/* Now prepare kvm_run for the potential return to userland. */ | 
					
						
							|  |  |  | 	run->mmio.is_write	= is_write; | 
					
						
							|  |  |  | 	run->mmio.phys_addr	= fault_ipa; | 
					
						
							|  |  |  | 	run->mmio.len		= len; | 
					
						
							|  |  |  | 	memcpy(run->mmio.data, data_buf, len); | 
					
						
							|  |  |  | 
 | 
					
						
							|  |  |  | 	if (!ret) { | 
					
						
							|  |  |  | 		/* We handled the access successfully in the kernel. */ | 
					
						
							|  |  |  | 		kvm_handle_mmio_return(vcpu, run); | 
					
						
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										 |  |  | 		return 1; | 
					
						
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										 |  |  | 	} | 
					
						
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										 |  |  | 
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										 |  |  | 	run->exit_reason	= KVM_EXIT_MMIO; | 
					
						
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										 |  |  | 	return 0; | 
					
						
							|  |  |  | } |