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a2faac3986
Similar to commita6c30873ee
("ARM: 8989/1: use .fpu assembler directives instead of assembler arguments"). GCC and GNU binutils support setting the "sub arch" via -march=, -Wa,-march, target function attribute, and .arch assembler directive. Clang was missing support for -Wa,-march=, but this was implemented in clang-13. The behavior of both GCC and Clang is to prefer -Wa,-march= over -march= for assembler and assembler-with-cpp sources, but Clang will warn about the -march= being unused. clang: warning: argument unused during compilation: '-march=armv6k' [-Wunused-command-line-argument] Since most assembler is non-conditionally assembled with one sub arch (modulo arch/arm/delay-loop.S which conditionally is assembled as armv4 based on CONFIG_ARCH_RPC, and arch/arm/mach-at91/pm-suspend.S which is conditionally assembled as armv7-a based on CONFIG_CPU_V7), prefer the .arch assembler directive. Add a few more instances found in compile testing as found by Arnd and Nathan. Link:1d51c699b9
Link: https://bugs.llvm.org/show_bug.cgi?id=48894 Link: https://github.com/ClangBuiltLinux/linux/issues/1195 Link: https://github.com/ClangBuiltLinux/linux/issues/1315 Suggested-by: Arnd Bergmann <arnd@arndb.de> Suggested-by: Nathan Chancellor <nathan@kernel.org> Signed-off-by: Arnd Bergmann <arnd@arndb.de> Tested-by: Nathan Chancellor <nathan@kernel.org> Signed-off-by: Nick Desaulniers <ndesaulniers@google.com> Signed-off-by: Russell King (Oracle) <rmk+kernel@armlinux.org.uk>
438 lines
10 KiB
ArmAsm
438 lines
10 KiB
ArmAsm
/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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* Copyright (c) 2010-2012, NVIDIA Corporation. All rights reserved.
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* Copyright (c) 2011, Google, Inc.
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*
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* Author: Colin Cross <ccross@android.com>
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* Gary King <gking@nvidia.com>
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*/
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#include <linux/linkage.h>
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#include <soc/tegra/flowctrl.h>
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#include <asm/assembler.h>
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#include <asm/proc-fns.h>
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#include <asm/cp15.h>
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#include <asm/cache.h>
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#include "irammap.h"
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#include "reset.h"
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#include "sleep.h"
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#define EMC_CFG 0xc
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#define EMC_ADR_CFG 0x10
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#define EMC_NOP 0xdc
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#define EMC_SELF_REF 0xe0
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#define EMC_REQ_CTRL 0x2b0
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#define EMC_EMC_STATUS 0x2b4
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#define CLK_RESET_CCLK_BURST 0x20
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#define CLK_RESET_CCLK_DIVIDER 0x24
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#define CLK_RESET_SCLK_BURST 0x28
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#define CLK_RESET_SCLK_DIVIDER 0x2c
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#define CLK_RESET_PLLC_BASE 0x80
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#define CLK_RESET_PLLM_BASE 0x90
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#define CLK_RESET_PLLP_BASE 0xa0
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#define APB_MISC_XM2CFGCPADCTRL 0x8c8
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#define APB_MISC_XM2CFGDPADCTRL 0x8cc
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#define APB_MISC_XM2CLKCFGPADCTRL 0x8d0
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#define APB_MISC_XM2COMPPADCTRL 0x8d4
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#define APB_MISC_XM2VTTGENPADCTRL 0x8d8
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#define APB_MISC_XM2CFGCPADCTRL2 0x8e4
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#define APB_MISC_XM2CFGDPADCTRL2 0x8e8
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#define PLLC_STORE_MASK (1 << 0)
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#define PLLM_STORE_MASK (1 << 1)
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#define PLLP_STORE_MASK (1 << 2)
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.arch armv7-a
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.macro test_pll_state, rd, test_mask
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ldr \rd, tegra_pll_state
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tst \rd, #\test_mask
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.endm
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.macro store_pll_state, rd, tmp, r_car_base, pll_base, pll_mask
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ldr \rd, [\r_car_base, #\pll_base]
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tst \rd, #(1 << 30)
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ldr \rd, tegra_pll_state
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biceq \rd, \rd, #\pll_mask
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orrne \rd, \rd, #\pll_mask
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adr \tmp, tegra_pll_state
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str \rd, [\tmp]
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.endm
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.macro pll_enable, rd, r_car_base, pll_base, test_mask
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test_pll_state \rd, \test_mask
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beq 1f
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ldr \rd, [\r_car_base, #\pll_base]
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tst \rd, #(1 << 30)
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orreq \rd, \rd, #(1 << 30)
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streq \rd, [\r_car_base, #\pll_base]
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1:
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.endm
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.macro emc_device_mask, rd, base
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ldr \rd, [\base, #EMC_ADR_CFG]
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tst \rd, #(0x3 << 24)
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moveq \rd, #(0x1 << 8) @ just 1 device
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movne \rd, #(0x3 << 8) @ 2 devices
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.endm
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#if defined(CONFIG_HOTPLUG_CPU) || defined(CONFIG_PM_SLEEP)
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/*
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* tegra20_hotplug_shutdown(void)
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*
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* puts the current cpu in reset
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* should never return
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*/
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ENTRY(tegra20_hotplug_shutdown)
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/* Put this CPU down */
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cpu_id r0
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bl tegra20_cpu_shutdown
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ret lr @ should never get here
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ENDPROC(tegra20_hotplug_shutdown)
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/*
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* tegra20_cpu_shutdown(int cpu)
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*
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* r0 is cpu to reset
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*
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* puts the specified CPU in wait-for-event mode on the flow controller
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* and puts the CPU in reset
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* can be called on the current cpu or another cpu
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* if called on the current cpu, does not return
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* MUST NOT BE CALLED FOR CPU 0.
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*
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* corrupts r0-r3, r12
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*/
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ENTRY(tegra20_cpu_shutdown)
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cmp r0, #0
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reteq lr @ must not be called for CPU 0
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cpu_to_halt_reg r1, r0
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ldr r3, =TEGRA_FLOW_CTRL_VIRT
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mov r2, #FLOW_CTRL_WAITEVENT | FLOW_CTRL_JTAG_RESUME
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str r2, [r3, r1] @ put flow controller in wait event mode
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ldr r2, [r3, r1]
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isb
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dsb
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movw r1, 0x1011
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mov r1, r1, lsl r0
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ldr r3, =TEGRA_CLK_RESET_VIRT
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str r1, [r3, #0x340] @ put slave CPU in reset
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isb
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dsb
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cpu_id r3
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cmp r3, r0
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beq .
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ret lr
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ENDPROC(tegra20_cpu_shutdown)
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#endif
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#ifdef CONFIG_PM_SLEEP
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/*
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* tegra20_sleep_core_finish(unsigned long v2p)
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*
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* Enters suspend in LP0 or LP1 by turning off the mmu and jumping to
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* tegra20_tear_down_core in IRAM
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*/
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ENTRY(tegra20_sleep_core_finish)
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mov r4, r0
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/* Flush, disable the L1 data cache and exit SMP */
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mov r0, #TEGRA_FLUSH_CACHE_ALL
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bl tegra_disable_clean_inv_dcache
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mov r0, r4
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mov32 r3, tegra_shut_off_mmu
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add r3, r3, r0
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mov32 r0, tegra20_tear_down_core
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mov32 r1, tegra20_iram_start
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sub r0, r0, r1
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mov32 r1, TEGRA_IRAM_LPx_RESUME_AREA
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add r0, r0, r1
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ret r3
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ENDPROC(tegra20_sleep_core_finish)
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/*
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* tegra20_tear_down_cpu
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*
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* Switches the CPU cluster to PLL-P and enters sleep.
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*/
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ENTRY(tegra20_tear_down_cpu)
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bl tegra_switch_cpu_to_pllp
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b tegra20_enter_sleep
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ENDPROC(tegra20_tear_down_cpu)
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/* START OF ROUTINES COPIED TO IRAM */
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.align L1_CACHE_SHIFT
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.globl tegra20_iram_start
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tegra20_iram_start:
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/*
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* tegra20_lp1_reset
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*
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* reset vector for LP1 restore; copied into IRAM during suspend.
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* Brings the system back up to a safe staring point (SDRAM out of
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* self-refresh, PLLC, PLLM and PLLP reenabled, CPU running on PLLP,
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* system clock running on the same PLL that it suspended at), and
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* jumps to tegra_resume to restore virtual addressing and PLLX.
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* The physical address of tegra_resume expected to be stored in
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* PMC_SCRATCH41.
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*
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* NOTE: THIS *MUST* BE RELOCATED TO TEGRA_IRAM_LPx_RESUME_AREA.
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*/
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ENTRY(tegra20_lp1_reset)
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/*
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* The CPU and system bus are running at 32KHz and executing from
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* IRAM when this code is executed; immediately switch to CLKM and
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* enable PLLM, PLLP, PLLC.
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*/
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mov32 r0, TEGRA_CLK_RESET_BASE
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mov r1, #(1 << 28)
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str r1, [r0, #CLK_RESET_SCLK_BURST]
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str r1, [r0, #CLK_RESET_CCLK_BURST]
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mov r1, #0
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str r1, [r0, #CLK_RESET_CCLK_DIVIDER]
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str r1, [r0, #CLK_RESET_SCLK_DIVIDER]
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pll_enable r1, r0, CLK_RESET_PLLM_BASE, PLLM_STORE_MASK
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pll_enable r1, r0, CLK_RESET_PLLP_BASE, PLLP_STORE_MASK
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pll_enable r1, r0, CLK_RESET_PLLC_BASE, PLLC_STORE_MASK
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adr r2, tegra20_sdram_pad_address
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adr r4, tegra20_sdram_pad_save
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mov r5, #0
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ldr r6, tegra20_sdram_pad_size
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padload:
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ldr r7, [r2, r5] @ r7 is the addr in the pad_address
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ldr r1, [r4, r5]
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str r1, [r7] @ restore the value in pad_save
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add r5, r5, #4
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cmp r6, r5
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bne padload
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padload_done:
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/* 255uS delay for PLL stabilization */
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mov32 r7, TEGRA_TMRUS_BASE
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ldr r1, [r7]
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add r1, r1, #0xff
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wait_until r1, r7, r9
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adr r4, tegra20_sclk_save
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ldr r4, [r4]
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str r4, [r0, #CLK_RESET_SCLK_BURST]
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mov32 r4, ((1 << 28) | (4)) @ burst policy is PLLP
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str r4, [r0, #CLK_RESET_CCLK_BURST]
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mov32 r0, TEGRA_EMC_BASE
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ldr r1, [r0, #EMC_CFG]
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bic r1, r1, #(1 << 31) @ disable DRAM_CLK_STOP
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str r1, [r0, #EMC_CFG]
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mov r1, #0
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str r1, [r0, #EMC_SELF_REF] @ take DRAM out of self refresh
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mov r1, #1
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str r1, [r0, #EMC_NOP]
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str r1, [r0, #EMC_NOP]
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emc_device_mask r1, r0
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exit_selfrefresh_loop:
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ldr r2, [r0, #EMC_EMC_STATUS]
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ands r2, r2, r1
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bne exit_selfrefresh_loop
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mov r1, #0 @ unstall all transactions
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str r1, [r0, #EMC_REQ_CTRL]
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mov32 r0, TEGRA_PMC_BASE
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ldr r0, [r0, #PMC_SCRATCH41]
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ret r0 @ jump to tegra_resume
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ENDPROC(tegra20_lp1_reset)
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/*
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* tegra20_tear_down_core
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*
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* copied into and executed from IRAM
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* puts memory in self-refresh for LP0 and LP1
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*/
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tegra20_tear_down_core:
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bl tegra20_sdram_self_refresh
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bl tegra20_switch_cpu_to_clk32k
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b tegra20_enter_sleep
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/*
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* tegra20_switch_cpu_to_clk32k
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*
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* In LP0 and LP1 all PLLs will be turned off. Switch the CPU and system clock
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* to the 32KHz clock.
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*/
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tegra20_switch_cpu_to_clk32k:
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/*
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* start by switching to CLKM to safely disable PLLs, then switch to
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* CLKS.
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*/
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mov r0, #(1 << 28)
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str r0, [r5, #CLK_RESET_SCLK_BURST]
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str r0, [r5, #CLK_RESET_CCLK_BURST]
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mov r0, #0
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str r0, [r5, #CLK_RESET_CCLK_DIVIDER]
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str r0, [r5, #CLK_RESET_SCLK_DIVIDER]
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/* 2uS delay delay between changing SCLK and disabling PLLs */
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mov32 r7, TEGRA_TMRUS_BASE
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ldr r1, [r7]
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add r1, r1, #2
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wait_until r1, r7, r9
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store_pll_state r0, r1, r5, CLK_RESET_PLLC_BASE, PLLC_STORE_MASK
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store_pll_state r0, r1, r5, CLK_RESET_PLLM_BASE, PLLM_STORE_MASK
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store_pll_state r0, r1, r5, CLK_RESET_PLLP_BASE, PLLP_STORE_MASK
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/* disable PLLM, PLLP and PLLC */
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ldr r0, [r5, #CLK_RESET_PLLM_BASE]
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bic r0, r0, #(1 << 30)
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str r0, [r5, #CLK_RESET_PLLM_BASE]
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ldr r0, [r5, #CLK_RESET_PLLP_BASE]
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bic r0, r0, #(1 << 30)
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str r0, [r5, #CLK_RESET_PLLP_BASE]
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ldr r0, [r5, #CLK_RESET_PLLC_BASE]
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bic r0, r0, #(1 << 30)
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str r0, [r5, #CLK_RESET_PLLC_BASE]
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/* switch to CLKS */
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mov r0, #0 /* brust policy = 32KHz */
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str r0, [r5, #CLK_RESET_SCLK_BURST]
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ret lr
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/*
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* tegra20_enter_sleep
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*
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* uses flow controller to enter sleep state
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* executes from IRAM with SDRAM in selfrefresh when target state is LP0 or LP1
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* executes from SDRAM with target state is LP2
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*/
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tegra20_enter_sleep:
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mov32 r6, TEGRA_FLOW_CTRL_BASE
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mov r0, #FLOW_CTRL_WAIT_FOR_INTERRUPT
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orr r0, r0, #FLOW_CTRL_HALT_CPU_IRQ | FLOW_CTRL_HALT_CPU_FIQ
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cpu_id r1
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cpu_to_halt_reg r1, r1
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str r0, [r6, r1]
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dsb
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ldr r0, [r6, r1] /* memory barrier */
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halted:
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dsb
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wfe /* CPU should be power gated here */
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isb
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b halted
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/*
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* tegra20_sdram_self_refresh
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*
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* called with MMU off and caches disabled
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* puts sdram in self refresh
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* must be executed from IRAM
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*/
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tegra20_sdram_self_refresh:
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mov32 r1, TEGRA_EMC_BASE @ r1 reserved for emc base addr
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mov r2, #3
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str r2, [r1, #EMC_REQ_CTRL] @ stall incoming DRAM requests
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emcidle:
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ldr r2, [r1, #EMC_EMC_STATUS]
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tst r2, #4
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beq emcidle
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mov r2, #1
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str r2, [r1, #EMC_SELF_REF]
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emc_device_mask r2, r1
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emcself:
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ldr r3, [r1, #EMC_EMC_STATUS]
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and r3, r3, r2
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cmp r3, r2
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bne emcself @ loop until DDR in self-refresh
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adr r2, tegra20_sdram_pad_address
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adr r3, tegra20_sdram_pad_safe
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adr r4, tegra20_sdram_pad_save
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mov r5, #0
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ldr r6, tegra20_sdram_pad_size
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padsave:
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ldr r0, [r2, r5] @ r0 is the addr in the pad_address
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ldr r1, [r0]
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str r1, [r4, r5] @ save the content of the addr
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ldr r1, [r3, r5]
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str r1, [r0] @ set the save val to the addr
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add r5, r5, #4
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cmp r6, r5
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bne padsave
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padsave_done:
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mov32 r5, TEGRA_CLK_RESET_BASE
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ldr r0, [r5, #CLK_RESET_SCLK_BURST]
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adr r2, tegra20_sclk_save
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str r0, [r2]
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dsb
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ret lr
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tegra20_sdram_pad_address:
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.word TEGRA_APB_MISC_BASE + APB_MISC_XM2CFGCPADCTRL
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.word TEGRA_APB_MISC_BASE + APB_MISC_XM2CFGDPADCTRL
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.word TEGRA_APB_MISC_BASE + APB_MISC_XM2CLKCFGPADCTRL
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.word TEGRA_APB_MISC_BASE + APB_MISC_XM2COMPPADCTRL
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.word TEGRA_APB_MISC_BASE + APB_MISC_XM2VTTGENPADCTRL
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.word TEGRA_APB_MISC_BASE + APB_MISC_XM2CFGCPADCTRL2
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.word TEGRA_APB_MISC_BASE + APB_MISC_XM2CFGDPADCTRL2
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tegra20_sdram_pad_size:
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.word tegra20_sdram_pad_size - tegra20_sdram_pad_address
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tegra20_sdram_pad_safe:
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.word 0x8
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.word 0x8
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.word 0x0
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.word 0x8
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.word 0x5500
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.word 0x08080040
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.word 0x0
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tegra20_sclk_save:
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.word 0x0
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tegra20_sdram_pad_save:
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.rept (tegra20_sdram_pad_size - tegra20_sdram_pad_address) / 4
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.long 0
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.endr
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tegra_pll_state:
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.word 0x0
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.ltorg
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/* dummy symbol for end of IRAM */
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.align L1_CACHE_SHIFT
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.globl tegra20_iram_end
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tegra20_iram_end:
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b .
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#endif
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