adc1831588
Delete CONFIG_TEGRA_DEBUG_UART_AUTO_SCRATCH; it's not useful any more: * No upstream bootloader currently or will ever support this option. * CONFIG_TEGRA_DEBUG_UART_AUTO_ODMDATA is a much more direct alternative. Merge the fixed and automatic UART selection menus into a single choice for simplicity; now you either pick AUTO_ODMDATA or a single fixed UART, rather than potentially having an AUTO option override whatever fixed option was chosen. Remove TEGRA_DEBUG_UART_NONE; if you don't want a Tegra DEBUG_LL UART, simply don't turn on DEBUG_LL. NONE used to be the default option, so pick AUTO_ODMDATA as the new default. Signed-off-by: Stephen Warren <swarren@nvidia.com>
309 lines
7.8 KiB
C
309 lines
7.8 KiB
C
/*
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* Copyright (C) 2010 Google, Inc.
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*
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* Author:
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* Colin Cross <ccross@google.com>
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* Erik Gilling <konkers@google.com>
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*
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* This software is licensed under the terms of the GNU General Public
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* License version 2, as published by the Free Software Foundation, and
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* may be copied, distributed, and modified under those terms.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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*/
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#ifndef __MACH_TEGRA_IOMAP_H
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#define __MACH_TEGRA_IOMAP_H
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#include <asm/sizes.h>
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#define TEGRA_IRAM_BASE 0x40000000
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#define TEGRA_IRAM_SIZE SZ_256K
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#define TEGRA_HOST1X_BASE 0x50000000
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#define TEGRA_HOST1X_SIZE 0x24000
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#define TEGRA_ARM_PERIF_BASE 0x50040000
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#define TEGRA_ARM_PERIF_SIZE SZ_8K
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#define TEGRA_ARM_PL310_BASE 0x50043000
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#define TEGRA_ARM_PL310_SIZE SZ_4K
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#define TEGRA_ARM_INT_DIST_BASE 0x50041000
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#define TEGRA_ARM_INT_DIST_SIZE SZ_4K
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#define TEGRA_MPE_BASE 0x54040000
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#define TEGRA_MPE_SIZE SZ_256K
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#define TEGRA_VI_BASE 0x54080000
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#define TEGRA_VI_SIZE SZ_256K
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#define TEGRA_ISP_BASE 0x54100000
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#define TEGRA_ISP_SIZE SZ_256K
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#define TEGRA_DISPLAY_BASE 0x54200000
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#define TEGRA_DISPLAY_SIZE SZ_256K
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#define TEGRA_DISPLAY2_BASE 0x54240000
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#define TEGRA_DISPLAY2_SIZE SZ_256K
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#define TEGRA_HDMI_BASE 0x54280000
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#define TEGRA_HDMI_SIZE SZ_256K
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#define TEGRA_GART_BASE 0x58000000
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#define TEGRA_GART_SIZE SZ_32M
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#define TEGRA_RES_SEMA_BASE 0x60001000
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#define TEGRA_RES_SEMA_SIZE SZ_4K
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#define TEGRA_PRIMARY_ICTLR_BASE 0x60004000
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#define TEGRA_PRIMARY_ICTLR_SIZE SZ_64
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#define TEGRA_SECONDARY_ICTLR_BASE 0x60004100
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#define TEGRA_SECONDARY_ICTLR_SIZE SZ_64
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#define TEGRA_TERTIARY_ICTLR_BASE 0x60004200
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#define TEGRA_TERTIARY_ICTLR_SIZE SZ_64
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#define TEGRA_QUATERNARY_ICTLR_BASE 0x60004300
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#define TEGRA_QUATERNARY_ICTLR_SIZE SZ_64
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#define TEGRA_QUINARY_ICTLR_BASE 0x60004400
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#define TEGRA_QUINARY_ICTLR_SIZE SZ_64
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#define TEGRA_TMR1_BASE 0x60005000
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#define TEGRA_TMR1_SIZE SZ_8
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#define TEGRA_TMR2_BASE 0x60005008
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#define TEGRA_TMR2_SIZE SZ_8
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#define TEGRA_TMRUS_BASE 0x60005010
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#define TEGRA_TMRUS_SIZE SZ_64
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#define TEGRA_TMR3_BASE 0x60005050
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#define TEGRA_TMR3_SIZE SZ_8
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#define TEGRA_TMR4_BASE 0x60005058
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#define TEGRA_TMR4_SIZE SZ_8
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#define TEGRA_CLK_RESET_BASE 0x60006000
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#define TEGRA_CLK_RESET_SIZE SZ_4K
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#define TEGRA_FLOW_CTRL_BASE 0x60007000
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#define TEGRA_FLOW_CTRL_SIZE 20
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#define TEGRA_AHB_DMA_BASE 0x60008000
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#define TEGRA_AHB_DMA_SIZE SZ_4K
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#define TEGRA_AHB_DMA_CH0_BASE 0x60009000
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#define TEGRA_AHB_DMA_CH0_SIZE 32
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#define TEGRA_APB_DMA_BASE 0x6000A000
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#define TEGRA_APB_DMA_SIZE SZ_4K
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#define TEGRA_APB_DMA_CH0_BASE 0x6000B000
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#define TEGRA_APB_DMA_CH0_SIZE 32
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#define TEGRA_AHB_GIZMO_BASE 0x6000C004
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#define TEGRA_AHB_GIZMO_SIZE 0x10C
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#define TEGRA_SB_BASE 0x6000C200
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#define TEGRA_SB_SIZE 256
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#define TEGRA_STATMON_BASE 0x6000C400
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#define TEGRA_STATMON_SIZE SZ_1K
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#define TEGRA_GPIO_BASE 0x6000D000
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#define TEGRA_GPIO_SIZE SZ_4K
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#define TEGRA_EXCEPTION_VECTORS_BASE 0x6000F000
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#define TEGRA_EXCEPTION_VECTORS_SIZE SZ_4K
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#define TEGRA_APB_MISC_BASE 0x70000000
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#define TEGRA_APB_MISC_SIZE SZ_4K
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#define TEGRA_APB_MISC_DAS_BASE 0x70000c00
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#define TEGRA_APB_MISC_DAS_SIZE SZ_128
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#define TEGRA_AC97_BASE 0x70002000
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#define TEGRA_AC97_SIZE SZ_512
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#define TEGRA_SPDIF_BASE 0x70002400
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#define TEGRA_SPDIF_SIZE SZ_512
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#define TEGRA_I2S1_BASE 0x70002800
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#define TEGRA_I2S1_SIZE SZ_256
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#define TEGRA_I2S2_BASE 0x70002A00
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#define TEGRA_I2S2_SIZE SZ_256
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#define TEGRA_UARTA_BASE 0x70006000
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#define TEGRA_UARTA_SIZE SZ_64
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#define TEGRA_UARTB_BASE 0x70006040
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#define TEGRA_UARTB_SIZE SZ_64
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#define TEGRA_UARTC_BASE 0x70006200
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#define TEGRA_UARTC_SIZE SZ_256
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#define TEGRA_UARTD_BASE 0x70006300
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#define TEGRA_UARTD_SIZE SZ_256
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#define TEGRA_UARTE_BASE 0x70006400
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#define TEGRA_UARTE_SIZE SZ_256
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#define TEGRA_NAND_BASE 0x70008000
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#define TEGRA_NAND_SIZE SZ_256
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#define TEGRA_HSMMC_BASE 0x70008500
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#define TEGRA_HSMMC_SIZE SZ_256
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#define TEGRA_SNOR_BASE 0x70009000
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#define TEGRA_SNOR_SIZE SZ_4K
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#define TEGRA_PWFM_BASE 0x7000A000
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#define TEGRA_PWFM_SIZE SZ_256
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#define TEGRA_PWFM0_BASE 0x7000A000
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#define TEGRA_PWFM0_SIZE 4
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#define TEGRA_PWFM1_BASE 0x7000A010
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#define TEGRA_PWFM1_SIZE 4
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#define TEGRA_PWFM2_BASE 0x7000A020
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#define TEGRA_PWFM2_SIZE 4
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#define TEGRA_PWFM3_BASE 0x7000A030
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#define TEGRA_PWFM3_SIZE 4
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#define TEGRA_MIPI_BASE 0x7000B000
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#define TEGRA_MIPI_SIZE SZ_256
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#define TEGRA_I2C_BASE 0x7000C000
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#define TEGRA_I2C_SIZE SZ_256
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#define TEGRA_TWC_BASE 0x7000C100
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#define TEGRA_TWC_SIZE SZ_256
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#define TEGRA_SPI_BASE 0x7000C380
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#define TEGRA_SPI_SIZE 48
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#define TEGRA_I2C2_BASE 0x7000C400
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#define TEGRA_I2C2_SIZE SZ_256
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#define TEGRA_I2C3_BASE 0x7000C500
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#define TEGRA_I2C3_SIZE SZ_256
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#define TEGRA_OWR_BASE 0x7000C600
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#define TEGRA_OWR_SIZE 80
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#define TEGRA_DVC_BASE 0x7000D000
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#define TEGRA_DVC_SIZE SZ_512
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#define TEGRA_SPI1_BASE 0x7000D400
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#define TEGRA_SPI1_SIZE SZ_512
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#define TEGRA_SPI2_BASE 0x7000D600
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#define TEGRA_SPI2_SIZE SZ_512
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#define TEGRA_SPI3_BASE 0x7000D800
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#define TEGRA_SPI3_SIZE SZ_512
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#define TEGRA_SPI4_BASE 0x7000DA00
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#define TEGRA_SPI4_SIZE SZ_512
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#define TEGRA_RTC_BASE 0x7000E000
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#define TEGRA_RTC_SIZE SZ_256
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#define TEGRA_KBC_BASE 0x7000E200
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#define TEGRA_KBC_SIZE SZ_256
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#define TEGRA_PMC_BASE 0x7000E400
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#define TEGRA_PMC_SIZE SZ_256
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#define TEGRA_MC_BASE 0x7000F000
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#define TEGRA_MC_SIZE SZ_1K
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#define TEGRA_EMC_BASE 0x7000F400
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#define TEGRA_EMC_SIZE SZ_1K
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#define TEGRA_FUSE_BASE 0x7000F800
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#define TEGRA_FUSE_SIZE SZ_1K
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#define TEGRA_KFUSE_BASE 0x7000FC00
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#define TEGRA_KFUSE_SIZE SZ_1K
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#define TEGRA_CSITE_BASE 0x70040000
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#define TEGRA_CSITE_SIZE SZ_256K
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#define TEGRA_USB_BASE 0xC5000000
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#define TEGRA_USB_SIZE SZ_16K
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#define TEGRA_USB2_BASE 0xC5004000
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#define TEGRA_USB2_SIZE SZ_16K
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#define TEGRA_USB3_BASE 0xC5008000
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#define TEGRA_USB3_SIZE SZ_16K
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#define TEGRA_SDMMC1_BASE 0xC8000000
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#define TEGRA_SDMMC1_SIZE SZ_512
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#define TEGRA_SDMMC2_BASE 0xC8000200
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#define TEGRA_SDMMC2_SIZE SZ_512
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#define TEGRA_SDMMC3_BASE 0xC8000400
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#define TEGRA_SDMMC3_SIZE SZ_512
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#define TEGRA_SDMMC4_BASE 0xC8000600
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#define TEGRA_SDMMC4_SIZE SZ_512
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/* On TEGRA, many peripherals are very closely packed in
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* two 256MB io windows (that actually only use about 64KB
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* at the start of each).
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*
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* We will just map the first 1MB of each window (to minimize
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* pt entries needed) and provide a macro to transform physical
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* io addresses to an appropriate void __iomem *.
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*
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*/
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#define IO_IRAM_PHYS 0x40000000
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#define IO_IRAM_VIRT IOMEM(0xFE400000)
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#define IO_IRAM_SIZE SZ_256K
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#define IO_CPU_PHYS 0x50040000
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#define IO_CPU_VIRT IOMEM(0xFE000000)
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#define IO_CPU_SIZE SZ_16K
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#define IO_PPSB_PHYS 0x60000000
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#define IO_PPSB_VIRT IOMEM(0xFE200000)
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#define IO_PPSB_SIZE SZ_1M
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#define IO_APB_PHYS 0x70000000
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#define IO_APB_VIRT IOMEM(0xFE300000)
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#define IO_APB_SIZE SZ_1M
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#define TEGRA_PCIE_BASE 0x80000000
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#define TEGRA_PCIE_IO_BASE (TEGRA_PCIE_BASE + SZ_4M)
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#define IO_TO_VIRT_BETWEEN(p, st, sz) ((p) >= (st) && (p) < ((st) + (sz)))
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#define IO_TO_VIRT_XLATE(p, pst, vst) (((p) - (pst) + (vst)))
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#define IO_TO_VIRT(n) ( \
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IO_TO_VIRT_BETWEEN((n), IO_PPSB_PHYS, IO_PPSB_SIZE) ? \
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IO_TO_VIRT_XLATE((n), IO_PPSB_PHYS, IO_PPSB_VIRT) : \
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IO_TO_VIRT_BETWEEN((n), IO_APB_PHYS, IO_APB_SIZE) ? \
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IO_TO_VIRT_XLATE((n), IO_APB_PHYS, IO_APB_VIRT) : \
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IO_TO_VIRT_BETWEEN((n), IO_CPU_PHYS, IO_CPU_SIZE) ? \
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IO_TO_VIRT_XLATE((n), IO_CPU_PHYS, IO_CPU_VIRT) : \
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IO_TO_VIRT_BETWEEN((n), IO_IRAM_PHYS, IO_IRAM_SIZE) ? \
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IO_TO_VIRT_XLATE((n), IO_IRAM_PHYS, IO_IRAM_VIRT) : \
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NULL)
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#define IO_ADDRESS(n) (IO_TO_VIRT(n))
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#endif
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