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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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d2912cb15b
Based on 2 normalized pattern(s): this program is free software you can redistribute it and or modify it under the terms of the gnu general public license version 2 as published by the free software foundation this program is free software you can redistribute it and or modify it under the terms of the gnu general public license version 2 as published by the free software foundation # extracted by the scancode license scanner the SPDX license identifier GPL-2.0-only has been chosen to replace the boilerplate/reference in 4122 file(s). Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Reviewed-by: Enrico Weigelt <info@metux.net> Reviewed-by: Kate Stewart <kstewart@linuxfoundation.org> Reviewed-by: Allison Randal <allison@lohutok.net> Cc: linux-spdx@vger.kernel.org Link: https://lkml.kernel.org/r/20190604081206.933168790@linutronix.de Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
279 lines
8.4 KiB
C
279 lines
8.4 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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*
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* Parts of this file are based on Ralink's 2.6.21 BSP
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*
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* Copyright (C) 2008-2011 Gabor Juhos <juhosg@openwrt.org>
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* Copyright (C) 2008 Imre Kaloz <kaloz@openwrt.org>
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* Copyright (C) 2013 John Crispin <john@phrozen.org>
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*/
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#include <linux/kernel.h>
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#include <linux/init.h>
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#include <linux/bug.h>
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#include <asm/io.h>
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#include <asm/mipsregs.h>
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#include <asm/mach-ralink/ralink_regs.h>
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#include <asm/mach-ralink/rt305x.h>
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#include <asm/mach-ralink/pinmux.h>
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#include "common.h"
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static struct rt2880_pmx_func i2c_func[] = { FUNC("i2c", 0, 1, 2) };
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static struct rt2880_pmx_func spi_func[] = { FUNC("spi", 0, 3, 4) };
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static struct rt2880_pmx_func uartf_func[] = {
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FUNC("uartf", RT305X_GPIO_MODE_UARTF, 7, 8),
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FUNC("pcm uartf", RT305X_GPIO_MODE_PCM_UARTF, 7, 8),
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FUNC("pcm i2s", RT305X_GPIO_MODE_PCM_I2S, 7, 8),
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FUNC("i2s uartf", RT305X_GPIO_MODE_I2S_UARTF, 7, 8),
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FUNC("pcm gpio", RT305X_GPIO_MODE_PCM_GPIO, 11, 4),
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FUNC("gpio uartf", RT305X_GPIO_MODE_GPIO_UARTF, 7, 4),
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FUNC("gpio i2s", RT305X_GPIO_MODE_GPIO_I2S, 7, 4),
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};
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static struct rt2880_pmx_func uartlite_func[] = { FUNC("uartlite", 0, 15, 2) };
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static struct rt2880_pmx_func jtag_func[] = { FUNC("jtag", 0, 17, 5) };
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static struct rt2880_pmx_func mdio_func[] = { FUNC("mdio", 0, 22, 2) };
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static struct rt2880_pmx_func rt5350_led_func[] = { FUNC("led", 0, 22, 5) };
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static struct rt2880_pmx_func rt5350_cs1_func[] = {
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FUNC("spi_cs1", 0, 27, 1),
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FUNC("wdg_cs1", 1, 27, 1),
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};
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static struct rt2880_pmx_func sdram_func[] = { FUNC("sdram", 0, 24, 16) };
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static struct rt2880_pmx_func rt3352_rgmii_func[] = {
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FUNC("rgmii", 0, 24, 12)
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};
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static struct rt2880_pmx_func rgmii_func[] = { FUNC("rgmii", 0, 40, 12) };
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static struct rt2880_pmx_func rt3352_lna_func[] = { FUNC("lna", 0, 36, 2) };
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static struct rt2880_pmx_func rt3352_pa_func[] = { FUNC("pa", 0, 38, 2) };
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static struct rt2880_pmx_func rt3352_led_func[] = { FUNC("led", 0, 40, 5) };
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static struct rt2880_pmx_func rt3352_cs1_func[] = {
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FUNC("spi_cs1", 0, 45, 1),
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FUNC("wdg_cs1", 1, 45, 1),
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};
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static struct rt2880_pmx_group rt3050_pinmux_data[] = {
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GRP("i2c", i2c_func, 1, RT305X_GPIO_MODE_I2C),
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GRP("spi", spi_func, 1, RT305X_GPIO_MODE_SPI),
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GRP("uartf", uartf_func, RT305X_GPIO_MODE_UART0_MASK,
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RT305X_GPIO_MODE_UART0_SHIFT),
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GRP("uartlite", uartlite_func, 1, RT305X_GPIO_MODE_UART1),
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GRP("jtag", jtag_func, 1, RT305X_GPIO_MODE_JTAG),
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GRP("mdio", mdio_func, 1, RT305X_GPIO_MODE_MDIO),
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GRP("rgmii", rgmii_func, 1, RT305X_GPIO_MODE_RGMII),
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GRP("sdram", sdram_func, 1, RT305X_GPIO_MODE_SDRAM),
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{ 0 }
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};
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static struct rt2880_pmx_group rt3352_pinmux_data[] = {
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GRP("i2c", i2c_func, 1, RT305X_GPIO_MODE_I2C),
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GRP("spi", spi_func, 1, RT305X_GPIO_MODE_SPI),
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GRP("uartf", uartf_func, RT305X_GPIO_MODE_UART0_MASK,
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RT305X_GPIO_MODE_UART0_SHIFT),
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GRP("uartlite", uartlite_func, 1, RT305X_GPIO_MODE_UART1),
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GRP("jtag", jtag_func, 1, RT305X_GPIO_MODE_JTAG),
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GRP("mdio", mdio_func, 1, RT305X_GPIO_MODE_MDIO),
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GRP("rgmii", rt3352_rgmii_func, 1, RT305X_GPIO_MODE_RGMII),
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GRP("lna", rt3352_lna_func, 1, RT3352_GPIO_MODE_LNA),
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GRP("pa", rt3352_pa_func, 1, RT3352_GPIO_MODE_PA),
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GRP("led", rt3352_led_func, 1, RT5350_GPIO_MODE_PHY_LED),
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GRP("spi_cs1", rt3352_cs1_func, 2, RT5350_GPIO_MODE_SPI_CS1),
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{ 0 }
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};
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static struct rt2880_pmx_group rt5350_pinmux_data[] = {
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GRP("i2c", i2c_func, 1, RT305X_GPIO_MODE_I2C),
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GRP("spi", spi_func, 1, RT305X_GPIO_MODE_SPI),
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GRP("uartf", uartf_func, RT305X_GPIO_MODE_UART0_MASK,
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RT305X_GPIO_MODE_UART0_SHIFT),
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GRP("uartlite", uartlite_func, 1, RT305X_GPIO_MODE_UART1),
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GRP("jtag", jtag_func, 1, RT305X_GPIO_MODE_JTAG),
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GRP("led", rt5350_led_func, 1, RT5350_GPIO_MODE_PHY_LED),
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GRP("spi_cs1", rt5350_cs1_func, 2, RT5350_GPIO_MODE_SPI_CS1),
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{ 0 }
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};
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static unsigned long rt5350_get_mem_size(void)
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{
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void __iomem *sysc = (void __iomem *) KSEG1ADDR(RT305X_SYSC_BASE);
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unsigned long ret;
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u32 t;
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t = __raw_readl(sysc + SYSC_REG_SYSTEM_CONFIG);
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t = (t >> RT5350_SYSCFG0_DRAM_SIZE_SHIFT) &
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RT5350_SYSCFG0_DRAM_SIZE_MASK;
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switch (t) {
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case RT5350_SYSCFG0_DRAM_SIZE_2M:
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ret = 2;
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break;
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case RT5350_SYSCFG0_DRAM_SIZE_8M:
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ret = 8;
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break;
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case RT5350_SYSCFG0_DRAM_SIZE_16M:
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ret = 16;
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break;
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case RT5350_SYSCFG0_DRAM_SIZE_32M:
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ret = 32;
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break;
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case RT5350_SYSCFG0_DRAM_SIZE_64M:
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ret = 64;
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break;
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default:
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panic("rt5350: invalid DRAM size: %u", t);
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break;
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}
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return ret;
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}
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void __init ralink_clk_init(void)
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{
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unsigned long cpu_rate, sys_rate, wdt_rate, uart_rate;
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unsigned long wmac_rate = 40000000;
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u32 t = rt_sysc_r32(SYSC_REG_SYSTEM_CONFIG);
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if (soc_is_rt305x() || soc_is_rt3350()) {
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t = (t >> RT305X_SYSCFG_CPUCLK_SHIFT) &
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RT305X_SYSCFG_CPUCLK_MASK;
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switch (t) {
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case RT305X_SYSCFG_CPUCLK_LOW:
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cpu_rate = 320000000;
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break;
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case RT305X_SYSCFG_CPUCLK_HIGH:
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cpu_rate = 384000000;
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break;
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}
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sys_rate = uart_rate = wdt_rate = cpu_rate / 3;
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} else if (soc_is_rt3352()) {
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t = (t >> RT3352_SYSCFG0_CPUCLK_SHIFT) &
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RT3352_SYSCFG0_CPUCLK_MASK;
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switch (t) {
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case RT3352_SYSCFG0_CPUCLK_LOW:
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cpu_rate = 384000000;
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break;
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case RT3352_SYSCFG0_CPUCLK_HIGH:
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cpu_rate = 400000000;
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break;
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}
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sys_rate = wdt_rate = cpu_rate / 3;
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uart_rate = 40000000;
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} else if (soc_is_rt5350()) {
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t = (t >> RT5350_SYSCFG0_CPUCLK_SHIFT) &
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RT5350_SYSCFG0_CPUCLK_MASK;
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switch (t) {
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case RT5350_SYSCFG0_CPUCLK_360:
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cpu_rate = 360000000;
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sys_rate = cpu_rate / 3;
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break;
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case RT5350_SYSCFG0_CPUCLK_320:
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cpu_rate = 320000000;
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sys_rate = cpu_rate / 4;
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break;
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case RT5350_SYSCFG0_CPUCLK_300:
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cpu_rate = 300000000;
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sys_rate = cpu_rate / 3;
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break;
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default:
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BUG();
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}
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uart_rate = 40000000;
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wdt_rate = sys_rate;
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} else {
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BUG();
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}
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if (soc_is_rt3352() || soc_is_rt5350()) {
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u32 val = rt_sysc_r32(RT3352_SYSC_REG_SYSCFG0);
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if (!(val & RT3352_CLKCFG0_XTAL_SEL))
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wmac_rate = 20000000;
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}
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ralink_clk_add("cpu", cpu_rate);
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ralink_clk_add("sys", sys_rate);
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ralink_clk_add("10000900.i2c", uart_rate);
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ralink_clk_add("10000a00.i2s", uart_rate);
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ralink_clk_add("10000b00.spi", sys_rate);
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ralink_clk_add("10000b40.spi", sys_rate);
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ralink_clk_add("10000100.timer", wdt_rate);
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ralink_clk_add("10000120.watchdog", wdt_rate);
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ralink_clk_add("10000500.uart", uart_rate);
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ralink_clk_add("10000c00.uartlite", uart_rate);
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ralink_clk_add("10100000.ethernet", sys_rate);
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ralink_clk_add("10180000.wmac", wmac_rate);
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}
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void __init ralink_of_remap(void)
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{
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rt_sysc_membase = plat_of_remap_node("ralink,rt3050-sysc");
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rt_memc_membase = plat_of_remap_node("ralink,rt3050-memc");
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if (!rt_sysc_membase || !rt_memc_membase)
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panic("Failed to remap core resources");
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}
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void prom_soc_init(struct ralink_soc_info *soc_info)
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{
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void __iomem *sysc = (void __iomem *) KSEG1ADDR(RT305X_SYSC_BASE);
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unsigned char *name;
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u32 n0;
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u32 n1;
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u32 id;
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n0 = __raw_readl(sysc + SYSC_REG_CHIP_NAME0);
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n1 = __raw_readl(sysc + SYSC_REG_CHIP_NAME1);
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if (n0 == RT3052_CHIP_NAME0 && n1 == RT3052_CHIP_NAME1) {
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unsigned long icache_sets;
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icache_sets = (read_c0_config1() >> 22) & 7;
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if (icache_sets == 1) {
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ralink_soc = RT305X_SOC_RT3050;
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name = "RT3050";
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soc_info->compatible = "ralink,rt3050-soc";
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} else {
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ralink_soc = RT305X_SOC_RT3052;
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name = "RT3052";
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soc_info->compatible = "ralink,rt3052-soc";
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}
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} else if (n0 == RT3350_CHIP_NAME0 && n1 == RT3350_CHIP_NAME1) {
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ralink_soc = RT305X_SOC_RT3350;
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name = "RT3350";
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soc_info->compatible = "ralink,rt3350-soc";
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} else if (n0 == RT3352_CHIP_NAME0 && n1 == RT3352_CHIP_NAME1) {
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ralink_soc = RT305X_SOC_RT3352;
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name = "RT3352";
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soc_info->compatible = "ralink,rt3352-soc";
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} else if (n0 == RT5350_CHIP_NAME0 && n1 == RT5350_CHIP_NAME1) {
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ralink_soc = RT305X_SOC_RT5350;
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name = "RT5350";
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soc_info->compatible = "ralink,rt5350-soc";
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} else {
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panic("rt305x: unknown SoC, n0:%08x n1:%08x", n0, n1);
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}
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id = __raw_readl(sysc + SYSC_REG_CHIP_ID);
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snprintf(soc_info->sys_type, RAMIPS_SYS_TYPE_LEN,
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"Ralink %s id:%u rev:%u",
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name,
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(id >> CHIP_ID_ID_SHIFT) & CHIP_ID_ID_MASK,
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(id & CHIP_ID_REV_MASK));
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soc_info->mem_base = RT305X_SDRAM_BASE;
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if (soc_is_rt5350()) {
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soc_info->mem_size = rt5350_get_mem_size();
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rt2880_pinmux_data = rt5350_pinmux_data;
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} else if (soc_is_rt305x() || soc_is_rt3350()) {
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soc_info->mem_size_min = RT305X_MEM_SIZE_MIN;
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soc_info->mem_size_max = RT305X_MEM_SIZE_MAX;
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rt2880_pinmux_data = rt3050_pinmux_data;
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} else if (soc_is_rt3352()) {
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soc_info->mem_size_min = RT3352_MEM_SIZE_MIN;
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soc_info->mem_size_max = RT3352_MEM_SIZE_MAX;
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rt2880_pinmux_data = rt3352_pinmux_data;
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}
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}
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