sysreg_helpers.S 21.7 KB
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/*
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 * Copyright (c) 2013-2014, ARM Limited and Contributors. All rights reserved.
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 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions are met:
 *
 * Redistributions of source code must retain the above copyright notice, this
 * list of conditions and the following disclaimer.
 *
 * Redistributions in binary form must reproduce the above copyright notice,
 * this list of conditions and the following disclaimer in the documentation
 * and/or other materials provided with the distribution.
 *
 * Neither the name of ARM nor the names of its contributors may be used
 * to endorse or promote products derived from this software without specific
 * prior written permission.
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
 * POSSIBILITY OF SUCH DAMAGE.
 */

#include <arch_helpers.h>

	.globl	read_vbar
	.globl	read_vbar_el1
	.globl	read_vbar_el2
	.globl	read_vbar_el3
	.globl	write_vbar
	.globl	write_vbar_el1
	.globl	write_vbar_el2
	.globl	write_vbar_el3

	.globl	read_sctlr
	.globl	read_sctlr_el1
	.globl	read_sctlr_el2
	.globl	read_sctlr_el3
	.globl	write_sctlr
	.globl	write_sctlr_el1
	.globl	write_sctlr_el2
	.globl	write_sctlr_el3

	.globl	read_actlr
	.globl	read_actlr_el1
	.globl	read_actlr_el2
	.globl	read_actlr_el3
	.globl	write_actlr
	.globl	write_actlr_el1
	.globl	write_actlr_el2
	.globl	write_actlr_el3

	.globl	read_esr
	.globl	read_esr_el1
	.globl	read_esr_el2
	.globl	read_esr_el3
	.globl	write_esr
	.globl	write_esr_el1
	.globl	write_esr_el2
	.globl	write_esr_el3

	.globl	read_afsr0
	.globl	read_afsr0_el1
	.globl	read_afsr0_el2
	.globl	read_afsr0_el3
	.globl	write_afsr0
	.globl	write_afsr0_el1
	.globl	write_afsr0_el2
	.globl	write_afsr0_el3

	.globl	read_afsr1
	.globl	read_afsr1_el1
	.globl	read_afsr1_el2
	.globl	read_afsr1_el3
	.globl	write_afsr1
	.globl	write_afsr1_el1
	.globl	write_afsr1_el2
	.globl	write_afsr1_el3

	.globl	read_far
	.globl	read_far_el1
	.globl	read_far_el2
	.globl	read_far_el3
	.globl	write_far
	.globl	write_far_el1
	.globl	write_far_el2
	.globl	write_far_el3

	.globl	read_mair
	.globl	read_mair_el1
	.globl	read_mair_el2
	.globl	read_mair_el3
	.globl	write_mair
	.globl	write_mair_el1
	.globl	write_mair_el2
	.globl	write_mair_el3

	.globl	read_amair
	.globl	read_amair_el1
	.globl	read_amair_el2
	.globl	read_amair_el3
	.globl	write_amair
	.globl	write_amair_el1
	.globl	write_amair_el2
	.globl	write_amair_el3

	.globl	read_rvbar
	.globl	read_rvbar_el1
	.globl	read_rvbar_el2
	.globl	read_rvbar_el3

	.globl	read_rmr
	.globl	read_rmr_el1
	.globl	read_rmr_el2
	.globl	read_rmr_el3
	.globl	write_rmr
	.globl	write_rmr_el1
	.globl	write_rmr_el2
	.globl	write_rmr_el3

	.globl	read_tcr
	.globl	read_tcr_el1
	.globl	read_tcr_el2
	.globl	read_tcr_el3
	.globl	write_tcr
	.globl	write_tcr_el1
	.globl	write_tcr_el2
	.globl	write_tcr_el3

	.globl	read_cptr
	.globl	read_cptr_el2
	.globl	read_cptr_el3
	.globl	write_cptr
	.globl	write_cptr_el2
	.globl	write_cptr_el3

	.globl	read_ttbr0
	.globl	read_ttbr0_el1
	.globl	read_ttbr0_el2
	.globl	read_ttbr0_el3
	.globl	write_ttbr0
	.globl	write_ttbr0_el1
	.globl	write_ttbr0_el2
	.globl	write_ttbr0_el3

	.globl	read_ttbr1
	.globl	read_ttbr1_el1
	.globl	read_ttbr1_el2
	.globl	write_ttbr1
	.globl	write_ttbr1_el1
	.globl	write_ttbr1_el2

	.globl	read_cpacr
	.globl	write_cpacr

	.globl	read_cntfrq
	.globl	write_cntfrq

	.globl	read_cpuectlr
	.globl	write_cpuectlr

	.globl	read_cnthctl_el2
	.globl	write_cnthctl_el2

	.globl	read_cntfrq_el0
	.globl	write_cntfrq_el0

	.globl	read_scr
	.globl	write_scr

	.globl	read_hcr
	.globl	write_hcr

	.globl	read_midr
	.globl	read_mpidr

	.globl	read_current_el
	.globl	read_id_pfr1_el1
	.globl	read_id_aa64pfr0_el1

#if SUPPORT_VFP
	.globl	enable_vfp
	.globl	read_fpexc
	.globl	write_fpexc
#endif


	.section	.text, "ax"

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read_current_el: ; .type read_current_el, %function
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	mrs	x0, CurrentEl
	ret


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read_id_pfr1_el1: ; .type read_id_pfr1_el1, %function
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	mrs	x0, id_pfr1_el1
	ret


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read_id_aa64pfr0_el1: ; .type read_id_aa64pfr0_el1, %function
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	mrs	x0, id_aa64pfr0_el1
	ret


	/* -----------------------------------------------------
	 * VBAR accessors
	 * -----------------------------------------------------
	 */
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read_vbar: ; .type read_vbar, %function
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	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_vbar_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_vbar_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_vbar_el3


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read_vbar_el1: ; .type read_vbar_el1, %function
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	mrs	x0, vbar_el1
	ret


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read_vbar_el2: ; .type read_vbar_el2, %function
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	mrs	x0, vbar_el2
	ret


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read_vbar_el3: ; .type read_vbar_el3, %function
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	mrs	x0, vbar_el3
	ret


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write_vbar: ; .type write_vbar, %function
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	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_vbar_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_vbar_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_vbar_el3


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write_vbar_el1: ; .type write_vbar_el1, %function
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	msr	vbar_el1, x0
	isb
	ret


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write_vbar_el2: ; .type write_vbar_el2, %function
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	msr	vbar_el2, x0
	isb
	ret


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write_vbar_el3: ; .type write_vbar_el3, %function
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	msr	vbar_el3, x0
	isb
	ret


	/* -----------------------------------------------------
	 * AFSR0 accessors
	 * -----------------------------------------------------
	 */
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read_afsr0: ; .type read_afsr0, %function
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	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_afsr0_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_afsr0_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_afsr0_el3


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read_afsr0_el1: ; .type read_afsr0_el1, %function
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	mrs	x0, afsr0_el1
	ret


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read_afsr0_el2: ; .type read_afsr0_el2, %function
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	mrs	x0, afsr0_el2
	ret


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read_afsr0_el3: ; .type read_afsr0_el3, %function
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	mrs	x0, afsr0_el3
	ret


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write_afsr0: ; .type write_afsr0, %function
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	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_afsr0_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_afsr0_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_afsr0_el3


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write_afsr0_el1: ; .type write_afsr0_el1, %function
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	msr	afsr0_el1, x0
	isb
	ret


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write_afsr0_el2: ; .type write_afsr0_el2, %function
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	msr	afsr0_el2, x0
	isb
	ret


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write_afsr0_el3: ; .type write_afsr0_el3, %function
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	msr	afsr0_el3, x0
	isb
	ret


	/* -----------------------------------------------------
	 * FAR accessors
	 * -----------------------------------------------------
	 */
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read_far: ; .type read_far, %function
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	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_far_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_far_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_far_el3


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read_far_el1: ; .type read_far_el1, %function
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	mrs	x0, far_el1
	ret


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read_far_el2: ; .type read_far_el2, %function
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	mrs	x0, far_el2
	ret


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read_far_el3: ; .type read_far_el3, %function
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	mrs	x0, far_el3
	ret


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write_far: ; .type write_far, %function
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	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_far_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_far_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_far_el3


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write_far_el1: ; .type write_far_el1, %function
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	msr	far_el1, x0
	isb
	ret


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write_far_el2: ; .type write_far_el2, %function
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	msr	far_el2, x0
	isb
	ret


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write_far_el3: ; .type write_far_el3, %function
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	msr	far_el3, x0
	isb
	ret


	/* -----------------------------------------------------
	 * MAIR accessors
	 * -----------------------------------------------------
	 */
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read_mair: ; .type read_mair, %function
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	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_mair_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_mair_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_mair_el3


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read_mair_el1: ; .type read_mair_el1, %function
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	mrs	x0, mair_el1
	ret


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read_mair_el2: ; .type read_mair_el2, %function
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	mrs	x0, mair_el2
	ret


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read_mair_el3: ; .type read_mair_el3, %function
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	mrs	x0, mair_el3
	ret


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write_mair: ; .type write_mair, %function
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	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_mair_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_mair_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_mair_el3


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write_mair_el1: ; .type write_mair_el1, %function
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	msr	mair_el1, x0
	isb
	ret


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write_mair_el2: ; .type write_mair_el2, %function
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	msr	mair_el2, x0
	isb
	ret


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write_mair_el3: ; .type write_mair_el3, %function
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	msr	mair_el3, x0
	isb
	ret


	/* -----------------------------------------------------
	 * AMAIR accessors
	 * -----------------------------------------------------
	 */
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read_amair: ; .type read_amair, %function
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	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_amair_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_amair_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_amair_el3


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read_amair_el1: ; .type read_amair_el1, %function
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	mrs	x0, amair_el1
	ret


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read_amair_el2: ; .type read_amair_el2, %function
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	mrs	x0, amair_el2
	ret


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read_amair_el3: ; .type read_amair_el3, %function
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	mrs	x0, amair_el3
	ret


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write_amair: ; .type write_amair, %function
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	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_amair_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_amair_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_amair_el3


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write_amair_el1: ; .type write_amair_el1, %function
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	msr	amair_el1, x0
	isb
	ret


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write_amair_el2: ; .type write_amair_el2, %function
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	msr	amair_el2, x0
	isb
	ret


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write_amair_el3: ; .type write_amair_el3, %function
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	msr	amair_el3, x0
	isb
	ret


	/* -----------------------------------------------------
	 * RVBAR accessors
	 * -----------------------------------------------------
	 */
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read_rvbar: ; .type read_rvbar, %function
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	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_rvbar_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_rvbar_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_rvbar_el3


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read_rvbar_el1: ; .type read_rvbar_el1, %function
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	mrs	x0, rvbar_el1
	ret


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read_rvbar_el2: ; .type read_rvbar_el2, %function
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	mrs	x0, rvbar_el2
	ret


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read_rvbar_el3: ; .type read_rvbar_el3, %function
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	mrs	x0, rvbar_el3
	ret


	/* -----------------------------------------------------
	 * RMR accessors
	 * -----------------------------------------------------
	 */
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read_rmr: ; .type read_rmr, %function
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	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_rmr_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_rmr_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_rmr_el3


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read_rmr_el1: ; .type read_rmr_el1, %function
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	mrs	x0, rmr_el1
	ret


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read_rmr_el2: ; .type read_rmr_el2, %function
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	mrs	x0, rmr_el2
	ret


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read_rmr_el3: ; .type read_rmr_el3, %function
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	mrs	x0, rmr_el3
	ret


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write_rmr: ; .type write_rmr, %function
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	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_rmr_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_rmr_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_rmr_el3


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write_rmr_el1: ; .type write_rmr_el1, %function
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	msr	rmr_el1, x0
	isb
	ret


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write_rmr_el2: ; .type write_rmr_el2, %function
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	msr	rmr_el2, x0
	isb
	ret


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write_rmr_el3: ; .type write_rmr_el3, %function
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	msr	rmr_el3, x0
	isb
	ret


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read_afsr1: ; .type read_afsr1, %function
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	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_afsr1_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_afsr1_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_afsr1_el3


	/* -----------------------------------------------------
	 * AFSR1 accessors
	 * -----------------------------------------------------
	 */
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read_afsr1_el1: ; .type read_afsr1_el1, %function
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	mrs	x0, afsr1_el1
	ret


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read_afsr1_el2: ; .type read_afsr1_el2, %function
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	mrs	x0, afsr1_el2
	ret


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read_afsr1_el3: ; .type read_afsr1_el3, %function
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	mrs	x0, afsr1_el3
	ret


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write_afsr1: ; .type write_afsr1, %function
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620
621
	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_afsr1_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_afsr1_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_afsr1_el3


622
write_afsr1_el1: ; .type write_afsr1_el1, %function
623
624
625
626
627
	msr	afsr1_el1, x0
	isb
	ret


628
write_afsr1_el2: ; .type write_afsr1_el2, %function
629
630
631
632
633
	msr	afsr1_el2, x0
	isb
	ret


634
write_afsr1_el3: ; .type write_afsr1_el3, %function
635
636
637
638
639
640
641
642
643
	msr	afsr1_el3, x0
	isb
	ret


	/* -----------------------------------------------------
	 * SCTLR accessors
	 * -----------------------------------------------------
	 */
644
read_sctlr: ; .type read_sctlr, %function
645
646
647
648
649
650
651
652
653
	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_sctlr_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_sctlr_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_sctlr_el3


654
read_sctlr_el1: ; .type read_sctlr_el1, %function
655
656
657
658
	mrs	x0, sctlr_el1
	ret


659
read_sctlr_el2: ; .type read_sctlr_el2, %function
660
661
662
663
	mrs	x0, sctlr_el2
	ret


664
read_sctlr_el3: ; .type read_sctlr_el3, %function
665
666
667
668
	mrs	x0, sctlr_el3
	ret


669
write_sctlr: ; .type write_sctlr, %function
670
671
672
673
674
675
676
677
678
	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_sctlr_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_sctlr_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_sctlr_el3


679
write_sctlr_el1: ; .type write_sctlr_el1, %function
680
681
682
683
684
685
	msr	sctlr_el1, x0
	dsb	sy
	isb
	ret


686
write_sctlr_el2: ; .type write_sctlr_el2, %function
687
688
689
690
691
692
	msr	sctlr_el2, x0
	dsb	sy
	isb
	ret


693
write_sctlr_el3: ; .type write_sctlr_el3, %function
694
695
696
697
698
699
700
701
702
703
	msr	sctlr_el3, x0
	dsb	sy
	isb
	ret


	/* -----------------------------------------------------
	 * ACTLR accessors
	 * -----------------------------------------------------
	 */
704
read_actlr: ; .type read_actlr, %function
705
706
707
708
709
710
711
712
713
	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_actlr_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_actlr_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_actlr_el3


714
read_actlr_el1: ; .type read_actlr_el1, %function
715
716
717
718
	mrs	x0, actlr_el1
	ret


719
read_actlr_el2: ; .type read_actlr_el2, %function
720
721
722
723
	mrs	x0, actlr_el2
	ret


724
read_actlr_el3: ; .type read_actlr_el3, %function
725
726
727
728
	mrs	x0, actlr_el3
	ret


729
write_actlr: ; .type write_actlr, %function
730
731
732
733
734
735
736
737
738
	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_actlr_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_actlr_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_actlr_el3


739
write_actlr_el1: ; .type write_actlr_el1, %function
740
741
742
743
744
745
	msr	actlr_el1, x0
	dsb	sy
	isb
	ret


746
write_actlr_el2: ; .type write_actlr_el2, %function
747
748
749
750
751
752
	msr	actlr_el2, x0
	dsb	sy
	isb
	ret


753
write_actlr_el3: ; .type write_actlr_el3, %function
754
755
756
757
758
759
760
761
762
763
	msr	actlr_el3, x0
	dsb	sy
	isb
	ret


	/* -----------------------------------------------------
	 * ESR accessors
	 * -----------------------------------------------------
	 */
764
read_esr: ; .type read_esr, %function
765
766
767
768
769
770
771
772
773
	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_esr_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_esr_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_esr_el3


774
read_esr_el1: ; .type read_esr_el1, %function
775
776
777
778
	mrs	x0, esr_el1
	ret


779
read_esr_el2: ; .type read_esr_el2, %function
780
781
782
783
	mrs	x0, esr_el2
	ret


784
read_esr_el3: ; .type read_esr_el3, %function
785
786
787
788
	mrs	x0, esr_el3
	ret


789
write_esr: ; .type write_esr, %function
790
791
792
793
794
795
796
797
798
	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_esr_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_esr_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_esr_el3


799
write_esr_el1: ; .type write_esr_el1, %function
800
801
802
803
804
805
	msr	esr_el1, x0
	dsb	sy
	isb
	ret


806
write_esr_el2: ; .type write_esr_el2, %function
807
808
809
810
811
812
	msr	esr_el2, x0
	dsb	sy
	isb
	ret


813
write_esr_el3: ; .type write_esr_el3, %function
814
815
816
817
818
819
820
821
822
823
	msr	esr_el3, x0
	dsb	sy
	isb
	ret


	/* -----------------------------------------------------
	 * TCR accessors
	 * -----------------------------------------------------
	 */
824
read_tcr: ; .type read_tcr, %function
825
826
827
828
829
830
831
832
833
	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_tcr_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_tcr_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_tcr_el3


834
read_tcr_el1: ; .type read_tcr_el1, %function
835
836
837
838
	mrs	x0, tcr_el1
	ret


839
read_tcr_el2: ; .type read_tcr_el2, %function
840
841
842
843
	mrs	x0, tcr_el2
	ret


844
read_tcr_el3: ; .type read_tcr_el3, %function
845
846
847
848
	mrs	x0, tcr_el3
	ret


849
write_tcr: ; .type write_tcr, %function
850
851
852
853
854
855
856
857
858
	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_tcr_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_tcr_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_tcr_el3


859
write_tcr_el1: ; .type write_tcr_el1, %function
860
861
862
863
864
865
	msr	tcr_el1, x0
	dsb	sy
	isb
	ret


866
write_tcr_el2: ; .type write_tcr_el2, %function
867
868
869
870
871
872
	msr	tcr_el2, x0
	dsb	sy
	isb
	ret


873
write_tcr_el3: ; .type write_tcr_el3, %function
874
875
876
877
878
879
880
881
882
883
	msr	tcr_el3, x0
	dsb	sy
	isb
	ret


	/* -----------------------------------------------------
	 * CPTR accessors
	 * -----------------------------------------------------
	 */
884
read_cptr: ; .type read_cptr, %function
885
886
887
888
889
890
891
892
893
	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_cptr_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_cptr_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_cptr_el3


894
read_cptr_el1: ; .type read_cptr_el1, %function
895
896
897
898
	b	read_cptr_el1
	ret


899
read_cptr_el2: ; .type read_cptr_el2, %function
900
901
902
903
	mrs	x0, cptr_el2
	ret


904
read_cptr_el3: ; .type read_cptr_el3, %function
905
906
907
908
	mrs	x0, cptr_el3
	ret


909
write_cptr: ; .type write_cptr, %function
910
911
912
913
914
915
916
917
918
	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_cptr_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_cptr_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_cptr_el3


919
write_cptr_el1: ; .type write_cptr_el1, %function
920
921
922
	b	write_cptr_el1


923
write_cptr_el2: ; .type write_cptr_el2, %function
924
925
926
927
928
929
	msr	cptr_el2, x0
	dsb	sy
	isb
	ret


930
write_cptr_el3: ; .type write_cptr_el3, %function
931
932
933
934
935
936
937
938
939
940
	msr	cptr_el3, x0
	dsb	sy
	isb
	ret


	/* -----------------------------------------------------
	 * TTBR0 accessors
	 * -----------------------------------------------------
	 */
941
read_ttbr0: ; .type read_ttbr0, %function
942
943
944
945
946
947
948
949
950
	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_ttbr0_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_ttbr0_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_ttbr0_el3


951
read_ttbr0_el1: ; .type read_ttbr0_el1, %function
952
953
954
955
	mrs	x0, ttbr0_el1
	ret


956
read_ttbr0_el2: ; .type read_ttbr0_el2, %function
957
958
959
960
	mrs	x0, ttbr0_el2
	ret


961
read_ttbr0_el3: ; .type read_ttbr0_el3, %function
962
963
964
965
	mrs	x0, ttbr0_el3
	ret


966
write_ttbr0: ; .type write_ttbr0, %function
967
968
969
970
971
972
973
974
975
	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_ttbr0_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_ttbr0_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_ttbr0_el3


976
write_ttbr0_el1: ; .type write_ttbr0_el1, %function
977
978
979
980
981
	msr	ttbr0_el1, x0
	isb
	ret


982
write_ttbr0_el2: ; .type write_ttbr0_el2, %function
983
984
985
986
987
	msr	ttbr0_el2, x0
	isb
	ret


988
write_ttbr0_el3: ; .type write_ttbr0_el3, %function
989
990
991
992
993
994
995
996
997
	msr	ttbr0_el3, x0
	isb
	ret


	/* -----------------------------------------------------
	 * TTBR1 accessors
	 * -----------------------------------------------------
	 */
998
read_ttbr1: ; .type read_ttbr1, %function
999
1000
1001
1002
1003
1004
1005
1006
1007
	mrs	x0, CurrentEl
	cmp	x0, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	read_ttbr1_el1
	cmp	x0, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	read_ttbr1_el2
	cmp	x0, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	read_ttbr1_el3


1008
read_ttbr1_el1: ; .type read_ttbr1_el1, %function
1009
1010
1011
1012
	mrs	x0, ttbr1_el1
	ret


1013
read_ttbr1_el2: ; .type read_ttbr1_el2, %function
1014
1015
1016
	b	read_ttbr1_el2


1017
read_ttbr1_el3: ; .type read_ttbr1_el3, %function
1018
1019
1020
	b	read_ttbr1_el3


1021
write_ttbr1: ; .type write_ttbr1, %function
1022
1023
1024
1025
1026
1027
1028
1029
1030
	mrs	x1, CurrentEl
	cmp	x1, #(MODE_EL1 << MODE_EL_SHIFT)
	b.eq	write_ttbr1_el1
	cmp	x1, #(MODE_EL2 << MODE_EL_SHIFT)
	b.eq	write_ttbr1_el2
	cmp	x1, #(MODE_EL3 << MODE_EL_SHIFT)
	b.eq	write_ttbr1_el3


1031
write_ttbr1_el1: ; .type write_ttbr1_el1, %function
1032
1033
1034
1035
1036
	msr	ttbr1_el1, x0
	isb
	ret


1037
write_ttbr1_el2: ; .type write_ttbr1_el2, %function
1038
1039
1040
	b	write_ttbr1_el2


1041
write_ttbr1_el3: ; .type write_ttbr1_el3, %function
1042
1043
1044
	b	write_ttbr1_el3


1045
read_hcr: ; .type read_hcr, %function
1046
1047
1048
1049
	mrs	x0, hcr_el2
	ret


1050
write_hcr: ; .type write_hcr, %function
1051
1052
1053
1054
1055
1056
	msr	hcr_el2, x0
	dsb	sy
	isb
	ret


1057
read_cpacr: ; .type read_cpacr, %function
1058
1059
1060
1061
	mrs	x0, cpacr_el1
	ret


1062
write_cpacr: ; .type write_cpacr, %function
1063
1064
1065
1066
	msr	cpacr_el1, x0
	ret


1067
read_cntfrq_el0: ; .type read_cntfrq_el0, %function
1068
1069
1070
1071
	mrs	x0, cntfrq_el0
	ret


1072
write_cntfrq_el0: ; .type write_cntfrq_el0, %function
1073
1074
1075
1076
	msr	cntfrq_el0, x0
	ret


1077
read_cpuectlr: ; .type read_cpuectlr, %function
1078
1079
1080
1081
	mrs	x0, CPUECTLR_EL1
	ret


1082
write_cpuectlr: ; .type write_cpuectlr, %function
1083
1084
1085
1086
1087
1088
	msr	CPUECTLR_EL1, x0
	dsb	sy
	isb
	ret


1089
read_cnthctl_el2: ; .type read_cnthctl_el2, %function
1090
1091
1092
1093
	mrs	x0, cnthctl_el2
	ret


1094
write_cnthctl_el2: ; .type write_cnthctl_el2, %function
1095
1096
1097
1098
	msr	cnthctl_el2, x0
	ret


1099
read_cntfrq: ; .type read_cntfrq, %function
1100
1101
1102
1103
	mrs	x0, cntfrq_el0
	ret


1104
write_cntfrq: ; .type write_cntfrq, %function
1105
1106
1107
1108
	msr	cntfrq_el0, x0
	ret


1109
write_scr: ; .type write_scr, %function
1110
1111
1112
1113
1114
1115
	msr	scr_el3, x0
	dsb	sy
	isb
	ret


1116
read_scr: ; .type read_scr, %function
1117
1118
1119
1120
	mrs	x0, scr_el3
	ret


1121
read_midr: ; .type read_midr, %function
1122
1123
1124
1125
	mrs	x0, midr_el1
	ret


1126
read_mpidr: ; .type read_mpidr, %function
1127
1128
1129
1130
1131
	mrs	x0, mpidr_el1
	ret


#if SUPPORT_VFP
1132
enable_vfp: ; .type enable_vfp, %function
1133
1134
1135
1136
1137
1138
1139
1140
1141
1142
1143
	mrs	x0, cpacr_el1
	orr	x0, x0, #CPACR_VFP_BITS
	msr	cpacr_el1, x0
	mrs	x0, cptr_el3
	mov	x1, #AARCH64_CPTR_TFP
	bic	x0, x0, x1
	msr	cptr_el3, x0
	ret


	// int read_fpexc(void)
1144
read_fpexc: ; .type read_fpexc, %function
1145
1146
1147
1148
1149
	b	read_fpexc
	ret


	// void write_fpexc(int fpexc)
1150
write_fpexc: ; .type write_fpexc, %function
1151
1152
1153
1154
	b	write_fpexc
	ret

#endif