mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-12-11 22:03:15 +00:00
909a1ab2f0
Move USB controller Base address mapping from ls102xa immap to fsl xhci header. This is required to remove any warnings when controller base addresses are mapped for multiple platforms in their respective files. Signed-off-by: Nikhil Badola <nikhil.badola@freescale.com>
400 lines
11 KiB
C
400 lines
11 KiB
C
/*
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* Copyright 2014 Freescale Semiconductor, Inc.
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#ifndef __ASM_ARCH_LS102XA_IMMAP_H_
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#define __ASM_ARCH_LS102XA_IMMAP_H_
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#define SVR_MAJ(svr) (((svr) >> 4) & 0xf)
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#define SVR_MIN(svr) (((svr) >> 0) & 0xf)
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#define SVR_SOC_VER(svr) (((svr) >> 8) & 0x7ff)
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#define IS_E_PROCESSOR(svr) (svr & 0x80000)
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#define SOC_VER_SLS1020 0x00
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#define SOC_VER_LS1020 0x10
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#define SOC_VER_LS1021 0x11
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#define SOC_VER_LS1022 0x12
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#define SOC_MAJOR_VER_1_0 0x1
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#define SOC_MAJOR_VER_2_0 0x2
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#define CCSR_BRR_OFFSET 0xe4
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#define CCSR_SCRATCHRW1_OFFSET 0x200
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#define RCWSR0_SYS_PLL_RAT_SHIFT 25
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#define RCWSR0_SYS_PLL_RAT_MASK 0x1f
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#define RCWSR0_MEM_PLL_RAT_SHIFT 16
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#define RCWSR0_MEM_PLL_RAT_MASK 0x3f
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#define RCWSR4_SRDS1_PRTCL_SHIFT 24
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#define RCWSR4_SRDS1_PRTCL_MASK 0xff000000
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#define TIMER_COMP_VAL 0xffffffff
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#define ARCH_TIMER_CTRL_ENABLE (1 << 0)
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#define SYS_COUNTER_CTRL_ENABLE (1 << 24)
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#define DCFG_CCSR_PORSR1_RCW_MASK 0xff800000
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#define DCFG_CCSR_PORSR1_RCW_SRC_I2C 0x24800000
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#define DCFG_DCSR_PORCR1 0
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/*
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* Define default values for some CCSR macros to make header files cleaner
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*
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* To completely disable CCSR relocation in a board header file, define
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* CONFIG_SYS_CCSR_DO_NOT_RELOCATE. This will force CONFIG_SYS_CCSRBAR_PHYS
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* to a value that is the same as CONFIG_SYS_CCSRBAR.
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*/
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#ifdef CONFIG_SYS_CCSRBAR_PHYS
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#error "Do not define CONFIG_SYS_CCSRBAR_PHYS directly."
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#endif
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#ifdef CONFIG_SYS_CCSR_DO_NOT_RELOCATE
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#undef CONFIG_SYS_CCSRBAR_PHYS_HIGH
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#undef CONFIG_SYS_CCSRBAR_PHYS_LOW
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#define CONFIG_SYS_CCSRBAR_PHYS_HIGH 0
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#endif
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#ifndef CONFIG_SYS_CCSRBAR
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#define CONFIG_SYS_CCSRBAR CONFIG_SYS_IMMR
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#endif
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#ifndef CONFIG_SYS_CCSRBAR_PHYS_HIGH
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#ifdef CONFIG_PHYS_64BIT
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#define CONFIG_SYS_CCSRBAR_PHYS_HIGH 0xf
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#else
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#define CONFIG_SYS_CCSRBAR_PHYS_HIGH 0
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#endif
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#endif
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#ifndef CONFIG_SYS_CCSRBAR_PHYS_LOW
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#define CONFIG_SYS_CCSRBAR_PHYS_LOW CONFIG_SYS_IMMR
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#endif
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#define CONFIG_SYS_CCSRBAR_PHYS ((CONFIG_SYS_CCSRBAR_PHYS_HIGH * 1ull) << 32 | \
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CONFIG_SYS_CCSRBAR_PHYS_LOW)
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struct sys_info {
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unsigned long freq_processor[CONFIG_MAX_CPUS];
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unsigned long freq_systembus;
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unsigned long freq_ddrbus;
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unsigned long freq_localbus;
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};
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/* Device Configuration and Pin Control */
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struct ccsr_gur {
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u32 porsr1; /* POR status 1 */
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u32 porsr2; /* POR status 2 */
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u8 res_008[0x20-0x8];
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u32 gpporcr1; /* General-purpose POR configuration */
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u32 gpporcr2;
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u32 dcfg_fusesr; /* Fuse status register */
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u8 res_02c[0x70-0x2c];
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u32 devdisr; /* Device disable control */
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u32 devdisr2; /* Device disable control 2 */
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u32 devdisr3; /* Device disable control 3 */
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u32 devdisr4; /* Device disable control 4 */
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u32 devdisr5; /* Device disable control 5 */
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u8 res_084[0x94-0x84];
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u32 coredisru; /* uppper portion for support of 64 cores */
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u32 coredisrl; /* lower portion for support of 64 cores */
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u8 res_09c[0xa4-0x9c];
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u32 svr; /* System version */
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u8 res_0a8[0xb0-0xa8];
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u32 rstcr; /* Reset control */
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u32 rstrqpblsr; /* Reset request preboot loader status */
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u8 res_0b8[0xc0-0xb8];
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u32 rstrqmr1; /* Reset request mask */
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u8 res_0c4[0xc8-0xc4];
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u32 rstrqsr1; /* Reset request status */
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u8 res_0cc[0xd4-0xcc];
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u32 rstrqwdtmrl; /* Reset request WDT mask */
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u8 res_0d8[0xdc-0xd8];
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u32 rstrqwdtsrl; /* Reset request WDT status */
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u8 res_0e0[0xe4-0xe0];
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u32 brrl; /* Boot release */
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u8 res_0e8[0x100-0xe8];
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u32 rcwsr[16]; /* Reset control word status */
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u8 res_140[0x200-0x140];
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u32 scratchrw[4]; /* Scratch Read/Write */
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u8 res_210[0x300-0x210];
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u32 scratchw1r[4]; /* Scratch Read (Write once) */
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u8 res_310[0x400-0x310];
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u32 crstsr;
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u8 res_404[0x550-0x404];
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u32 sataliodnr;
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u8 res_554[0x604-0x554];
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u32 pamubypenr;
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u32 dmacr1;
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u8 res_60c[0x740-0x60c]; /* add more registers when needed */
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u32 tp_ityp[64]; /* Topology Initiator Type Register */
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struct {
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u32 upper;
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u32 lower;
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} tp_cluster[1]; /* Core Cluster n Topology Register */
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u8 res_848[0xe60-0x848];
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u32 ddrclkdr;
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u8 res_e60[0xe68-0xe64];
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u32 ifcclkdr;
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u8 res_e68[0xe80-0xe6c];
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u32 sdhcpcr;
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};
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#define SCFG_ETSECDMAMCR_LE_BD_FR 0xf8001a0f
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#define SCFG_ETSECCMCR_GE2_CLK125 0x04000000
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#define SCFG_ETSECCMCR_GE0_CLK125 0x00000000
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#define SCFG_ETSECCMCR_GE1_CLK125 0x08000000
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#define SCFG_PIXCLKCR_PXCKEN 0x80000000
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#define SCFG_QSPI_CLKSEL 0xc0100000
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#define SCFG_ENDIANCR_LE 0x80000000
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/* Supplemental Configuration Unit */
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struct ccsr_scfg {
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u32 dpslpcr;
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u32 resv0[2];
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u32 etsecclkdpslpcr;
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u32 resv1[5];
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u32 fuseovrdcr;
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u32 pixclkcr;
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u32 resv2[5];
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u32 spimsicr;
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u32 resv3[6];
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u32 pex1pmwrcr;
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u32 pex1pmrdsr;
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u32 resv4[3];
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u32 usb3prm1cr;
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u32 usb4prm2cr;
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u32 pex1rdmsgpldlsbsr;
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u32 pex1rdmsgpldmsbsr;
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u32 pex2rdmsgpldlsbsr;
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u32 pex2rdmsgpldmsbsr;
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u32 pex1rdmmsgrqsr;
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u32 pex2rdmmsgrqsr;
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u32 spimsiclrcr;
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u32 pexmscportsr[2];
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u32 pex2pmwrcr;
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u32 resv5[24];
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u32 mac1_streamid;
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u32 mac2_streamid;
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u32 mac3_streamid;
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u32 pex1_streamid;
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u32 pex2_streamid;
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u32 dma_streamid;
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u32 sata_streamid;
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u32 usb3_streamid;
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u32 qe_streamid;
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u32 sdhc_streamid;
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u32 adma_streamid;
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u32 letechsftrstcr;
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u32 core0_sft_rst;
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u32 core1_sft_rst;
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u32 resv6[1];
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u32 usb_hi_addr;
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u32 etsecclkadjcr;
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u32 sai_clk;
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u32 resv7[1];
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u32 dcu_streamid;
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u32 usb2_streamid;
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u32 ftm_reset;
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u32 altcbar;
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u32 qspi_cfg;
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u32 pmcintecr;
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u32 pmcintlecr;
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u32 pmcintsr;
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u32 qos1;
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u32 qos2;
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u32 qos3;
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u32 cci_cfg;
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u32 endiancr;
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u32 etsecdmamcr;
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u32 usb3prm3cr;
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u32 resv9[1];
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u32 debug_streamid;
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u32 resv10[5];
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u32 snpcnfgcr;
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u32 resv11[1];
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u32 intpcr;
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u32 resv12[20];
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u32 scfgrevcr;
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u32 coresrencr;
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u32 pex2pmrdsr;
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u32 ddrc1cr;
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u32 ddrc2cr;
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u32 ddrc3cr;
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u32 ddrc4cr;
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u32 ddrgcr;
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u32 resv13[120];
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u32 qeioclkcr;
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u32 etsecmcr;
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u32 sdhciovserlcr;
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u32 resv14[61];
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u32 sparecr[8];
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};
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/* Clocking */
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struct ccsr_clk {
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struct {
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u32 clkcncsr; /* core cluster n clock control status */
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u8 res_004[0x1c];
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} clkcsr[2];
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u8 res_040[0x7c0]; /* 0x100 */
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struct {
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u32 pllcngsr;
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u8 res_804[0x1c];
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} pllcgsr[2];
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u8 res_840[0x1c0];
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u32 clkpcsr; /* 0xa00 Platform clock domain control/status */
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u8 res_a04[0x1fc];
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u32 pllpgsr; /* 0xc00 Platform PLL General Status */
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u8 res_c04[0x1c];
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u32 plldgsr; /* 0xc20 DDR PLL General Status */
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u8 res_c24[0x3dc];
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};
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/* System Counter */
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struct sctr_regs {
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u32 cntcr;
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u32 cntsr;
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u32 cntcv1;
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u32 cntcv2;
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u32 resv1[4];
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u32 cntfid0;
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u32 cntfid1;
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u32 resv2[1002];
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u32 counterid[12];
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};
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#define MAX_SERDES 1
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#define SRDS_MAX_LANES 4
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#define SRDS_MAX_BANK 2
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#define SRDS_RSTCTL_RST 0x80000000
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#define SRDS_RSTCTL_RSTDONE 0x40000000
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#define SRDS_RSTCTL_RSTERR 0x20000000
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#define SRDS_RSTCTL_SWRST 0x10000000
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#define SRDS_RSTCTL_SDEN 0x00000020
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#define SRDS_RSTCTL_SDRST_B 0x00000040
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#define SRDS_RSTCTL_PLLRST_B 0x00000080
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#define SRDS_PLLCR0_POFF 0x80000000
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#define SRDS_PLLCR0_RFCK_SEL_MASK 0x70000000
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#define SRDS_PLLCR0_RFCK_SEL_100 0x00000000
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#define SRDS_PLLCR0_RFCK_SEL_125 0x10000000
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#define SRDS_PLLCR0_RFCK_SEL_156_25 0x20000000
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#define SRDS_PLLCR0_RFCK_SEL_150 0x30000000
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#define SRDS_PLLCR0_RFCK_SEL_161_13 0x40000000
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#define SRDS_PLLCR0_RFCK_SEL_122_88 0x50000000
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#define SRDS_PLLCR0_PLL_LCK 0x00800000
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#define SRDS_PLLCR0_FRATE_SEL_MASK 0x000f0000
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#define SRDS_PLLCR0_FRATE_SEL_5 0x00000000
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#define SRDS_PLLCR0_FRATE_SEL_3_75 0x00050000
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#define SRDS_PLLCR0_FRATE_SEL_5_15 0x00060000
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#define SRDS_PLLCR0_FRATE_SEL_4 0x00070000
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#define SRDS_PLLCR0_FRATE_SEL_3_12 0x00090000
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#define SRDS_PLLCR0_FRATE_SEL_3 0x000a0000
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#define SRDS_PLLCR1_PLL_BWSEL 0x08000000
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struct ccsr_serdes {
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struct {
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u32 rstctl; /* Reset Control Register */
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u32 pllcr0; /* PLL Control Register 0 */
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u32 pllcr1; /* PLL Control Register 1 */
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u32 res_0c; /* 0x00c */
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u32 pllcr3;
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u32 pllcr4;
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u8 res_18[0x20-0x18];
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} bank[2];
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u8 res_40[0x90-0x40];
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u32 srdstcalcr; /* 0x90 TX Calibration Control */
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u8 res_94[0xa0-0x94];
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u32 srdsrcalcr; /* 0xa0 RX Calibration Control */
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u8 res_a4[0xb0-0xa4];
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u32 srdsgr0; /* 0xb0 General Register 0 */
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u8 res_b4[0xe0-0xb4];
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u32 srdspccr0; /* 0xe0 Protocol Converter Config 0 */
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u32 srdspccr1; /* 0xe4 Protocol Converter Config 1 */
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u32 srdspccr2; /* 0xe8 Protocol Converter Config 2 */
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u32 srdspccr3; /* 0xec Protocol Converter Config 3 */
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u32 srdspccr4; /* 0xf0 Protocol Converter Config 4 */
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u8 res_f4[0x100-0xf4];
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struct {
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u32 lnpssr; /* 0x100, 0x120, ..., 0x1e0 */
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u8 res_104[0x120-0x104];
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} srdslnpssr[4];
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u8 res_180[0x300-0x180];
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u32 srdspexeqcr;
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u32 srdspexeqpcr[11];
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u8 res_330[0x400-0x330];
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u32 srdspexapcr;
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u8 res_404[0x440-0x404];
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u32 srdspexbpcr;
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u8 res_444[0x800-0x444];
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struct {
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u32 gcr0; /* 0x800 General Control Register 0 */
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u32 gcr1; /* 0x804 General Control Register 1 */
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u32 gcr2; /* 0x808 General Control Register 2 */
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u32 sscr0;
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u32 recr0; /* 0x810 Receive Equalization Control */
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u32 recr1;
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u32 tecr0; /* 0x818 Transmit Equalization Control */
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u32 sscr1;
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u32 ttlcr0; /* 0x820 Transition Tracking Loop Ctrl 0 */
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u8 res_824[0x83c-0x824];
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u32 tcsr3;
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} lane[4]; /* Lane A, B, C, D, E, F, G, H */
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u8 res_a00[0x1000-0xa00]; /* from 0xa00 to 0xfff */
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};
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#define CCI400_CTRLORD_TERM_BARRIER 0x00000008
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#define CCI400_CTRLORD_EN_BARRIER 0
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#define CCI400_SHAORD_NON_SHAREABLE 0x00000002
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#define CCI400_DVM_MESSAGE_REQ_EN 0x00000002
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#define CCI400_SNOOP_REQ_EN 0x00000001
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/* CCI-400 registers */
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struct ccsr_cci400 {
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u32 ctrl_ord; /* Control Override */
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u32 spec_ctrl; /* Speculation Control */
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u32 secure_access; /* Secure Access */
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u32 status; /* Status */
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u32 impr_err; /* Imprecise Error */
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u8 res_14[0x100 - 0x14];
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u32 pmcr; /* Performance Monitor Control */
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u8 res_104[0xfd0 - 0x104];
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u32 pid[8]; /* Peripheral ID */
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u32 cid[4]; /* Component ID */
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struct {
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u32 snoop_ctrl; /* Snoop Control */
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u32 sha_ord; /* Shareable Override */
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u8 res_1008[0x1100 - 0x1008];
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u32 rc_qos_ord; /* read channel QoS Value Override */
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u32 wc_qos_ord; /* read channel QoS Value Override */
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u8 res_1108[0x110c - 0x1108];
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u32 qos_ctrl; /* QoS Control */
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u32 max_ot; /* Max OT */
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u8 res_1114[0x1130 - 0x1114];
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u32 target_lat; /* Target Latency */
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u32 latency_regu; /* Latency Regulation */
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u32 qos_range; /* QoS Range */
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u8 res_113c[0x2000 - 0x113c];
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} slave[5]; /* Slave Interface */
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u8 res_6000[0x9004 - 0x6000];
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u32 cycle_counter; /* Cycle counter */
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u32 count_ctrl; /* Count Control */
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u32 overflow_status; /* Overflow Flag Status */
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u8 res_9010[0xa000 - 0x9010];
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struct {
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u32 event_select; /* Event Select */
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u32 event_count; /* Event Count */
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u32 counter_ctrl; /* Counter Control */
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u32 overflow_status; /* Overflow Flag Status */
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u8 res_a010[0xb000 - 0xa010];
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} pcounter[4]; /* Performance Counter */
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u8 res_e004[0x10000 - 0xe004];
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};
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#endif /* __ASM_ARCH_LS102XA_IMMAP_H_ */
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