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https://github.com/AsahiLinux/u-boot
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fa18ed7658
The LS1043A rev1.1 silicon supports two types of GIC offset: 4K alignment and 64K alignment. The bit SCFG_GIC400_ALIGN[GIC_ADDR_BIT] is used to choose which offset will be used. The LS1043A rev1.0 silicon only supports the CIG offset with 4K alignment. If GIC_ADDR_BIT bit is set, 4K alignment is used, or else 64K alignment is used. 64K alignment is the default setting. Overriding the weak smp_kick_all_cpus, the new impletment is able to detect GIC offset. The default GIC offset in kernel device tree is using 4K alignment, it need to be fixed if 64K alignment is detected. Signed-off-by: Wenbin Song <wenbin.song@nxp.com> Signed-off-by: Mingkai Hu <mingkai.hu@nxp.com> Signed-off-by: Hou Zhiqiang <Zhiqiang.Hou@nxp.com> Reviewed-by: York Sun <york.sun@nxp.com>
120 lines
3.3 KiB
C
120 lines
3.3 KiB
C
/*
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* Copyright 2015 Freescale Semiconductor
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#ifndef _ASM_ARMV8_FSL_LAYERSCAPE_SOC_H_
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#define _ASM_ARMV8_FSL_LAYERSCAPE_SOC_H_
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#ifdef CONFIG_SYS_FSL_CCSR_GUR_LE
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#define gur_in32(a) in_le32(a)
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#define gur_out32(a, v) out_le32(a, v)
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#elif defined(CONFIG_SYS_FSL_CCSR_GUR_BE)
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#define gur_in32(a) in_be32(a)
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#define gur_out32(a, v) out_be32(a, v)
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#endif
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#ifdef CONFIG_SYS_FSL_CCSR_SCFG_LE
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#define scfg_in32(a) in_le32(a)
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#define scfg_out32(a, v) out_le32(a, v)
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#elif defined(CONFIG_SYS_FSL_CCSR_SCFG_BE)
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#define scfg_in32(a) in_be32(a)
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#define scfg_out32(a, v) out_be32(a, v)
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#endif
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#ifdef CONFIG_SYS_FSL_PEX_LUT_LE
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#define pex_lut_in32(a) in_le32(a)
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#define pex_lut_out32(a, v) out_le32(a, v)
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#elif defined(CONFIG_SYS_FSL_PEX_LUT_BE)
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#define pex_lut_in32(a) in_be32(a)
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#define pex_lut_out32(a, v) out_be32(a, v)
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#endif
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#ifndef __ASSEMBLY__
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struct cpu_type {
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char name[15];
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u32 soc_ver;
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u32 num_cores;
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};
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#define CPU_TYPE_ENTRY(n, v, nc) \
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{ .name = #n, .soc_ver = SVR_##v, .num_cores = (nc)}
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#endif
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#define SVR_WO_E 0xFFFFFE
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#define SVR_LS1012A 0x870400
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#define SVR_LS1043A 0x879200
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#define SVR_LS1023A 0x879208
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#define SVR_LS1046A 0x870700
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#define SVR_LS1026A 0x870708
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#define SVR_LS2045A 0x870120
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#define SVR_LS2080A 0x870110
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#define SVR_LS2085A 0x870100
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#define SVR_LS2040A 0x870130
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#define SVR_LS2088A 0x870900
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#define SVR_LS2084A 0x870910
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#define SVR_LS2048A 0x870920
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#define SVR_LS2044A 0x870930
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#define SVR_DEV_LS2080A 0x8701
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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_REV(svr) (((svr) >> 0) & 0xff)
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#define SVR_SOC_VER(svr) (((svr) >> 8) & SVR_WO_E)
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#define IS_E_PROCESSOR(svr) (!((svr >> 8) & 0x1))
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#define IS_SVR_REV(svr, maj, min) \
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((SVR_MAJ(svr) == (maj)) && (SVR_MIN(svr) == (min)))
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/* ahci port register default value */
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#define AHCI_PORT_PHY_1_CFG 0xa003fffe
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#define AHCI_PORT_TRANS_CFG 0x08000029
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#define AHCI_PORT_AXICC_CFG 0x3fffffff
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#ifndef __ASSEMBLY__
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/* AHCI (sata) register map */
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struct ccsr_ahci {
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u32 res1[0xa4/4]; /* 0x0 - 0xa4 */
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u32 pcfg; /* port config */
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u32 ppcfg; /* port phy1 config */
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u32 pp2c; /* port phy2 config */
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u32 pp3c; /* port phy3 config */
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u32 pp4c; /* port phy4 config */
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u32 pp5c; /* port phy5 config */
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u32 axicc; /* AXI cache control */
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u32 paxic; /* port AXI config */
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u32 axipc; /* AXI PROT control */
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u32 ptc; /* port Trans Config */
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u32 pts; /* port Trans Status */
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u32 plc; /* port link config */
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u32 plc1; /* port link config1 */
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u32 plc2; /* port link config2 */
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u32 pls; /* port link status */
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u32 pls1; /* port link status1 */
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u32 pcmdc; /* port CMD config */
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u32 ppcs; /* port phy control status */
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u32 pberr; /* port 0/1 BIST error */
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u32 cmds; /* port 0/1 CMD status error */
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};
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#ifdef CONFIG_FSL_LSCH3
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void fsl_lsch3_early_init_f(void);
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#elif defined(CONFIG_FSL_LSCH2)
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void fsl_lsch2_early_init_f(void);
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int setup_chip_volt(void);
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/* Setup core vdd in unit mV */
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int board_setup_core_volt(u32 vdd);
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#endif
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void cpu_name(char *name);
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#ifdef CONFIG_SYS_FSL_ERRATUM_A009635
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void erratum_a009635(void);
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#endif
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#ifdef CONFIG_SYS_FSL_ERRATUM_A010315
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void erratum_a010315(void);
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#endif
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bool soc_has_dp_ddr(void);
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bool soc_has_aiop(void);
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#endif
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#endif /* _ASM_ARMV8_FSL_LAYERSCAPE_SOC_H_ */
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