mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-12-21 10:43:06 +00:00
20e442ab2d
The current macro is a misnomer since it does not declare a device directly. Instead, it declares driver_info record which U-Boot uses at runtime to create a device. The distinction seems somewhat minor most of the time, but is becomes quite confusing when we actually want to declare a device, with of-platdata. We are left trying to distinguish between a device which isn't actually device, and a device that is (perhaps an 'instance'?) It seems better to rename this macro to describe what it actually is. The macros is not widely used, since boards should use devicetree to declare devices. Rename it to U_BOOT_DRVINFO(), which indicates clearly that this is declaring a new driver_info record, not a device. Signed-off-by: Simon Glass <sjg@chromium.org>
492 lines
11 KiB
C
492 lines
11 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* (C) Copyright 2015 Linaro
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* Peter Griffin <peter.griffin@linaro.org>
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*/
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#include <common.h>
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#include <cpu_func.h>
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#include <dm.h>
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#include <fdt_support.h>
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#include <init.h>
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#include <log.h>
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#include <dm/platform_data/serial_pl01x.h>
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#include <errno.h>
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#include <malloc.h>
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#include <netdev.h>
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#include <asm/io.h>
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#include <usb.h>
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#include <linux/delay.h>
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#include <power/hi6553_pmic.h>
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#include <asm-generic/gpio.h>
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#include <asm/arch/dwmmc.h>
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#include <asm/arch/gpio.h>
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#include <asm/arch/periph.h>
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#include <asm/arch/pinmux.h>
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#include <asm/arch/hi6220.h>
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#include <asm/armv8/mmu.h>
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/*TODO drop this table in favour of device tree */
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static const struct hikey_gpio_plat hi6220_gpio[] = {
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{ 0, HI6220_GPIO_BASE(0)},
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{ 1, HI6220_GPIO_BASE(1)},
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{ 2, HI6220_GPIO_BASE(2)},
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{ 3, HI6220_GPIO_BASE(3)},
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{ 4, HI6220_GPIO_BASE(4)},
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{ 5, HI6220_GPIO_BASE(5)},
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{ 6, HI6220_GPIO_BASE(6)},
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{ 7, HI6220_GPIO_BASE(7)},
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{ 8, HI6220_GPIO_BASE(8)},
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{ 9, HI6220_GPIO_BASE(9)},
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{ 10, HI6220_GPIO_BASE(10)},
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{ 11, HI6220_GPIO_BASE(11)},
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{ 12, HI6220_GPIO_BASE(12)},
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{ 13, HI6220_GPIO_BASE(13)},
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{ 14, HI6220_GPIO_BASE(14)},
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{ 15, HI6220_GPIO_BASE(15)},
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{ 16, HI6220_GPIO_BASE(16)},
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{ 17, HI6220_GPIO_BASE(17)},
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{ 18, HI6220_GPIO_BASE(18)},
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{ 19, HI6220_GPIO_BASE(19)},
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};
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U_BOOT_DRVINFOS(hi6220_gpios) = {
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{ "gpio_hi6220", &hi6220_gpio[0] },
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{ "gpio_hi6220", &hi6220_gpio[1] },
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{ "gpio_hi6220", &hi6220_gpio[2] },
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{ "gpio_hi6220", &hi6220_gpio[3] },
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{ "gpio_hi6220", &hi6220_gpio[4] },
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{ "gpio_hi6220", &hi6220_gpio[5] },
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{ "gpio_hi6220", &hi6220_gpio[6] },
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{ "gpio_hi6220", &hi6220_gpio[7] },
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{ "gpio_hi6220", &hi6220_gpio[8] },
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{ "gpio_hi6220", &hi6220_gpio[9] },
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{ "gpio_hi6220", &hi6220_gpio[10] },
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{ "gpio_hi6220", &hi6220_gpio[11] },
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{ "gpio_hi6220", &hi6220_gpio[12] },
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{ "gpio_hi6220", &hi6220_gpio[13] },
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{ "gpio_hi6220", &hi6220_gpio[14] },
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{ "gpio_hi6220", &hi6220_gpio[15] },
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{ "gpio_hi6220", &hi6220_gpio[16] },
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{ "gpio_hi6220", &hi6220_gpio[17] },
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{ "gpio_hi6220", &hi6220_gpio[18] },
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{ "gpio_hi6220", &hi6220_gpio[19] },
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};
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DECLARE_GLOBAL_DATA_PTR;
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#if !CONFIG_IS_ENABLED(OF_CONTROL)
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static const struct pl01x_serial_plat serial_plat = {
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#if CONFIG_CONS_INDEX == 1
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.base = HI6220_UART0_BASE,
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#elif CONFIG_CONS_INDEX == 4
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.base = HI6220_UART3_BASE,
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#else
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#error "Unsupported console index value."
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#endif
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.type = TYPE_PL011,
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.clock = 19200000
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};
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U_BOOT_DRVINFO(hikey_seriala) = {
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.name = "serial_pl01x",
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.plat = &serial_plat,
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};
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#endif
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static struct mm_region hikey_mem_map[] = {
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{
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.virt = 0x0UL,
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.phys = 0x0UL,
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.size = 0x80000000UL,
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.attrs = PTE_BLOCK_MEMTYPE(MT_NORMAL) |
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PTE_BLOCK_INNER_SHARE
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}, {
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.virt = 0x80000000UL,
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.phys = 0x80000000UL,
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.size = 0x80000000UL,
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.attrs = PTE_BLOCK_MEMTYPE(MT_DEVICE_NGNRNE) |
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PTE_BLOCK_NON_SHARE |
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PTE_BLOCK_PXN | PTE_BLOCK_UXN
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}, {
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/* List terminator */
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0,
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}
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};
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struct mm_region *mem_map = hikey_mem_map;
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#ifdef CONFIG_BOARD_EARLY_INIT_F
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int board_uart_init(void)
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{
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switch (CONFIG_CONS_INDEX) {
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case 1:
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hi6220_pinmux_config(PERIPH_ID_UART0);
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break;
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case 4:
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hi6220_pinmux_config(PERIPH_ID_UART3);
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break;
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default:
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debug("%s: Unsupported UART selected\n", __func__);
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return -1;
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}
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return 0;
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}
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int board_early_init_f(void)
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{
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board_uart_init();
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return 0;
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}
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#endif
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struct peri_sc_periph_regs *peri_sc =
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(struct peri_sc_periph_regs *)HI6220_PERI_BASE;
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struct alwayson_sc_regs *ao_sc =
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(struct alwayson_sc_regs *)ALWAYSON_CTRL_BASE;
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/* status offset from enable reg */
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#define STAT_EN_OFF 0x2
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void hi6220_clk_enable(u32 bitfield, unsigned int *clk_base)
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{
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uint32_t data;
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data = readl(clk_base);
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data |= bitfield;
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writel(bitfield, clk_base);
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do {
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data = readl(clk_base + STAT_EN_OFF);
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} while ((data & bitfield) == 0);
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}
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/* status offset from disable reg */
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#define STAT_DIS_OFF 0x1
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void hi6220_clk_disable(u32 bitfield, unsigned int *clk_base)
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{
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uint32_t data;
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data = readl(clk_base);
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data |= bitfield;
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writel(data, clk_base);
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do {
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data = readl(clk_base + STAT_DIS_OFF);
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} while (data & bitfield);
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}
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#define EYE_PATTERN 0x70533483
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int board_usb_init(int index, enum usb_init_type init)
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{
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unsigned int data;
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/* enable USB clock */
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hi6220_clk_enable(PERI_CLK0_USBOTG, &peri_sc->clk0_en);
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/* take usb IPs out of reset */
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writel(PERI_RST0_USBOTG_BUS | PERI_RST0_POR_PICOPHY |
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PERI_RST0_USBOTG | PERI_RST0_USBOTG_32K,
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&peri_sc->rst0_dis);
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do {
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data = readl(&peri_sc->rst0_stat);
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data &= PERI_RST0_USBOTG_BUS | PERI_RST0_POR_PICOPHY |
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PERI_RST0_USBOTG | PERI_RST0_USBOTG_32K;
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} while (data);
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/*CTRL 5*/
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data = readl(&peri_sc->ctrl5);
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data &= ~PERI_CTRL5_PICOPHY_BC_MODE;
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data |= PERI_CTRL5_USBOTG_RES_SEL | PERI_CTRL5_PICOPHY_ACAENB;
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data |= 0x300;
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writel(data, &peri_sc->ctrl5);
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/*CTRL 4*/
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/* configure USB PHY */
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data = readl(&peri_sc->ctrl4);
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/* make PHY out of low power mode */
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data &= ~PERI_CTRL4_PICO_SIDDQ;
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data &= ~PERI_CTRL4_PICO_OGDISABLE;
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data |= PERI_CTRL4_PICO_VBUSVLDEXTSEL | PERI_CTRL4_PICO_VBUSVLDEXT;
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writel(data, &peri_sc->ctrl4);
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writel(EYE_PATTERN, &peri_sc->ctrl8);
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mdelay(5);
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return 0;
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}
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static int config_sd_carddetect(void)
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{
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int ret;
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/* configure GPIO8 as nopull */
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writel(0, 0xf8001830);
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gpio_request(8, "SD CD");
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gpio_direction_input(8);
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ret = gpio_get_value(8);
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if (!ret) {
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printf("%s: SD card present\n", __func__);
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return 1;
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}
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printf("%s: SD card not present\n", __func__);
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return 0;
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}
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static void mmc1_init_pll(void)
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{
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uint32_t data;
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/* select SYSPLL as the source of MMC1 */
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/* select SYSPLL as the source of MUX1 (SC_CLK_SEL0) */
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writel(1 << 11 | 1 << 27, &peri_sc->clk0_sel);
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do {
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data = readl(&peri_sc->clk0_sel);
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} while (!(data & (1 << 11)));
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/* select MUX1 as the source of MUX2 (SC_CLK_SEL0) */
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writel(1 << 30, &peri_sc->clk0_sel);
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do {
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data = readl(&peri_sc->clk0_sel);
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} while (data & (1 << 14));
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hi6220_clk_enable(PERI_CLK0_MMC1, &peri_sc->clk0_en);
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hi6220_clk_enable(PERI_CLK12_MMC1_SRC, &peri_sc->clk12_en);
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do {
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/* 1.2GHz / 50 = 24MHz */
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writel(0x31 | (1 << 7), &peri_sc->clkcfg8bit2);
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data = readl(&peri_sc->clkcfg8bit2);
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} while ((data & 0x31) != 0x31);
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}
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static void mmc1_reset_clk(void)
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{
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unsigned int data;
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/* disable mmc1 bus clock */
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hi6220_clk_disable(PERI_CLK0_MMC1, &peri_sc->clk0_dis);
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/* enable mmc1 bus clock */
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hi6220_clk_enable(PERI_CLK0_MMC1, &peri_sc->clk0_en);
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/* reset mmc1 clock domain */
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writel(PERI_RST0_MMC1, &peri_sc->rst0_en);
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/* bypass mmc1 clock phase */
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data = readl(&peri_sc->ctrl2);
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data |= 3 << 2;
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writel(data, &peri_sc->ctrl2);
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/* disable low power */
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data = readl(&peri_sc->ctrl13);
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data |= 1 << 4;
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writel(data, &peri_sc->ctrl13);
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do {
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data = readl(&peri_sc->rst0_stat);
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} while (!(data & PERI_RST0_MMC1));
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/* unreset mmc1 clock domain */
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writel(PERI_RST0_MMC1, &peri_sc->rst0_dis);
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do {
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data = readl(&peri_sc->rst0_stat);
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} while (data & PERI_RST0_MMC1);
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}
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static void mmc0_reset_clk(void)
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{
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unsigned int data;
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/* disable mmc0 bus clock */
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hi6220_clk_disable(PERI_CLK0_MMC0, &peri_sc->clk0_dis);
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/* enable mmc0 bus clock */
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hi6220_clk_enable(PERI_CLK0_MMC0, &peri_sc->clk0_en);
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/* reset mmc0 clock domain */
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writel(PERI_RST0_MMC0, &peri_sc->rst0_en);
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/* bypass mmc0 clock phase */
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data = readl(&peri_sc->ctrl2);
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data |= 3;
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writel(data, &peri_sc->ctrl2);
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/* disable low power */
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data = readl(&peri_sc->ctrl13);
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data |= 1 << 3;
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writel(data, &peri_sc->ctrl13);
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do {
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data = readl(&peri_sc->rst0_stat);
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} while (!(data & PERI_RST0_MMC0));
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/* unreset mmc0 clock domain */
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writel(PERI_RST0_MMC0, &peri_sc->rst0_dis);
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do {
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data = readl(&peri_sc->rst0_stat);
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} while (data & PERI_RST0_MMC0);
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}
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/* PMU SSI is the IP that maps the external PMU hi6553 registers as IO */
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static void hi6220_pmussi_init(void)
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{
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uint32_t data;
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/* Take PMUSSI out of reset */
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writel(ALWAYSON_SC_PERIPH_RST4_DIS_PRESET_PMUSSI_N,
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&ao_sc->rst4_dis);
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do {
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data = readl(&ao_sc->rst4_stat);
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} while (data & ALWAYSON_SC_PERIPH_RST4_DIS_PRESET_PMUSSI_N);
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/* set PMU SSI clock latency for read operation */
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data = readl(&ao_sc->mcu_subsys_ctrl3);
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data &= ~ALWAYSON_SC_MCU_SUBSYS_CTRL3_RCLK_MASK;
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data |= ALWAYSON_SC_MCU_SUBSYS_CTRL3_RCLK_3;
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writel(data, &ao_sc->mcu_subsys_ctrl3);
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/* enable PMUSSI clock */
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data = ALWAYSON_SC_PERIPH_CLK5_EN_PCLK_PMUSSI_CCPU |
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ALWAYSON_SC_PERIPH_CLK5_EN_PCLK_PMUSSI_MCU;
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hi6220_clk_enable(data, &ao_sc->clk5_en);
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/* Output high to PMIC on PWR_HOLD_GPIO0_0 */
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gpio_request(0, "PWR_HOLD_GPIO0_0");
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gpio_direction_output(0, 1);
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}
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int misc_init_r(void)
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{
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return 0;
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}
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int board_init(void)
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{
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return 0;
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}
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#ifdef CONFIG_MMC
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static int init_dwmmc(void)
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{
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int ret = 0;
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#ifdef CONFIG_MMC_DW
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/* mmc0 pll is already configured by ATF */
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mmc0_reset_clk();
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ret = hi6220_pinmux_config(PERIPH_ID_SDMMC0);
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if (ret)
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printf("%s: Error configuring pinmux for eMMC (%d)\n"
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, __func__, ret);
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ret |= hi6220_dwmci_add_port(0, HI6220_MMC0_BASE, 8);
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if (ret)
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printf("%s: Error adding eMMC port (%d)\n", __func__, ret);
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/* take mmc1 (sd slot) out of reset, configure clocks and pinmuxing */
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mmc1_init_pll();
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mmc1_reset_clk();
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ret |= hi6220_pinmux_config(PERIPH_ID_SDMMC1);
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if (ret)
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printf("%s: Error configuring pinmux for eMMC (%d)\n"
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, __func__, ret);
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config_sd_carddetect();
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ret |= hi6220_dwmci_add_port(1, HI6220_MMC1_BASE, 4);
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if (ret)
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printf("%s: Error adding SD port (%d)\n", __func__, ret);
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#endif
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return ret;
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}
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/* setup board specific PMIC */
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int power_init_board(void)
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{
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/* init the hi6220 pmussi ip */
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hi6220_pmussi_init();
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power_hi6553_init((u8 *)HI6220_PMUSSI_BASE);
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return 0;
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}
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int board_mmc_init(struct bd_info *bis)
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{
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int ret;
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/* add the eMMC and sd ports */
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ret = init_dwmmc();
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if (ret)
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debug("init_dwmmc failed\n");
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return ret;
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}
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#endif
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int dram_init(void)
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{
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gd->ram_size = PHYS_SDRAM_1_SIZE;
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return 0;
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}
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int dram_init_banksize(void)
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{
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/*
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* Reserve regions below from DT memory node (which gets generated
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* by U-Boot from the dram banks in arch_fixup_fdt() before booting
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* the kernel. This will then match the kernel hikey dts memory node.
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*
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* 0x05e0,0000 - 0x05ef,ffff: MCU firmware runtime using
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* 0x05f0,1000 - 0x05f0,1fff: Reboot reason
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* 0x06df,f000 - 0x06df,ffff: Mailbox message data
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* 0x0740,f000 - 0x0740,ffff: MCU firmware section
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* 0x21f0,0000 - 0x21ff,ffff: pstore/ramoops buffer
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* 0x3e00,0000 - 0x3fff,ffff: OP-TEE
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*/
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gd->bd->bi_dram[0].start = PHYS_SDRAM_1;
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gd->bd->bi_dram[0].size = 0x05e00000;
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gd->bd->bi_dram[1].start = 0x05f00000;
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gd->bd->bi_dram[1].size = 0x00001000;
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gd->bd->bi_dram[2].start = 0x05f02000;
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gd->bd->bi_dram[2].size = 0x00efd000;
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gd->bd->bi_dram[3].start = 0x06e00000;
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gd->bd->bi_dram[3].size = 0x0060f000;
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gd->bd->bi_dram[4].start = 0x07410000;
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gd->bd->bi_dram[4].size = 0x1aaf0000;
|
|
|
|
gd->bd->bi_dram[5].start = 0x22000000;
|
|
gd->bd->bi_dram[5].size = 0x1c000000;
|
|
|
|
return 0;
|
|
}
|
|
|
|
void reset_cpu(ulong addr)
|
|
{
|
|
writel(0x48698284, &ao_sc->stat0);
|
|
wfi();
|
|
}
|