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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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0a0300dc8c
Most machine classes want some way to register a block of clk_lookup structures, and most do it by implementing a clks_register() type function which walks an array, or by open-coding a loop. Consolidate all this into clkdev_add_table(). Acked-by: H Hartley Sweeten <hsweeten@visionengravers.com> Reviewed-by: Kevin Hilman <khilman@deeprootsystems.com> Acked-by: Eric Miao <eric.y.miao@gmail.com> Signed-off-by: Russell King <rmk+kernel@arm.linux.org.uk>
181 lines
4.9 KiB
C
181 lines
4.9 KiB
C
/*
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* linux/arch/arm/mach-mmp/pxa910.c
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*
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* Code specific to PXA910
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*/
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#include <linux/module.h>
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#include <linux/kernel.h>
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#include <linux/init.h>
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#include <linux/list.h>
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#include <linux/io.h>
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#include <asm/mach/time.h>
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#include <mach/addr-map.h>
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#include <mach/regs-apbc.h>
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#include <mach/regs-apmu.h>
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#include <mach/cputype.h>
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#include <mach/irqs.h>
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#include <mach/gpio.h>
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#include <mach/dma.h>
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#include <mach/mfp.h>
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#include <mach/devices.h>
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#include "common.h"
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#include "clock.h"
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#define MFPR_VIRT_BASE (APB_VIRT_BASE + 0x1e000)
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static struct mfp_addr_map pxa910_mfp_addr_map[] __initdata =
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{
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MFP_ADDR_X(GPIO0, GPIO54, 0xdc),
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MFP_ADDR_X(GPIO67, GPIO98, 0x1b8),
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MFP_ADDR_X(GPIO100, GPIO109, 0x238),
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MFP_ADDR(GPIO123, 0xcc),
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MFP_ADDR(GPIO124, 0xd0),
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MFP_ADDR(DF_IO0, 0x40),
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MFP_ADDR(DF_IO1, 0x3c),
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MFP_ADDR(DF_IO2, 0x38),
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MFP_ADDR(DF_IO3, 0x34),
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MFP_ADDR(DF_IO4, 0x30),
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MFP_ADDR(DF_IO5, 0x2c),
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MFP_ADDR(DF_IO6, 0x28),
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MFP_ADDR(DF_IO7, 0x24),
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MFP_ADDR(DF_IO8, 0x20),
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MFP_ADDR(DF_IO9, 0x1c),
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MFP_ADDR(DF_IO10, 0x18),
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MFP_ADDR(DF_IO11, 0x14),
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MFP_ADDR(DF_IO12, 0x10),
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MFP_ADDR(DF_IO13, 0xc),
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MFP_ADDR(DF_IO14, 0x8),
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MFP_ADDR(DF_IO15, 0x4),
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MFP_ADDR(DF_nCS0_SM_nCS2, 0x44),
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MFP_ADDR(DF_nCS1_SM_nCS3, 0x48),
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MFP_ADDR(SM_nCS0, 0x4c),
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MFP_ADDR(SM_nCS1, 0x50),
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MFP_ADDR(DF_WEn, 0x54),
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MFP_ADDR(DF_REn, 0x58),
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MFP_ADDR(DF_CLE_SM_OEn, 0x5c),
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MFP_ADDR(DF_ALE_SM_WEn, 0x60),
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MFP_ADDR(SM_SCLK, 0x64),
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MFP_ADDR(DF_RDY0, 0x68),
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MFP_ADDR(SM_BE0, 0x6c),
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MFP_ADDR(SM_BE1, 0x70),
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MFP_ADDR(SM_ADV, 0x74),
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MFP_ADDR(DF_RDY1, 0x78),
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MFP_ADDR(SM_ADVMUX, 0x7c),
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MFP_ADDR(SM_RDY, 0x80),
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MFP_ADDR_X(MMC1_DAT7, MMC1_WP, 0x84),
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MFP_ADDR_END,
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};
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#define APMASK(i) (GPIO_REGS_VIRT + BANK_OFF(i) + 0x09c)
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static void __init pxa910_init_gpio(void)
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{
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int i;
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/* enable GPIO clock */
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__raw_writel(APBC_APBCLK | APBC_FNCLK, APBC_PXA910_GPIO);
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/* unmask GPIO edge detection for all 4 banks - APMASKx */
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for (i = 0; i < 4; i++)
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__raw_writel(0xffffffff, APMASK(i));
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pxa_init_gpio(IRQ_PXA910_AP_GPIO, 0, 127, NULL);
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}
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void __init pxa910_init_irq(void)
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{
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icu_init_irq();
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pxa910_init_gpio();
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}
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/* APB peripheral clocks */
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static APBC_CLK(uart1, PXA910_UART0, 1, 14745600);
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static APBC_CLK(uart2, PXA910_UART1, 1, 14745600);
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static APBC_CLK(twsi0, PXA168_TWSI0, 1, 33000000);
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static APBC_CLK(twsi1, PXA168_TWSI1, 1, 33000000);
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static APBC_CLK(pwm1, PXA910_PWM1, 1, 13000000);
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static APBC_CLK(pwm2, PXA910_PWM2, 1, 13000000);
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static APBC_CLK(pwm3, PXA910_PWM3, 1, 13000000);
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static APBC_CLK(pwm4, PXA910_PWM4, 1, 13000000);
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static APMU_CLK(nand, NAND, 0x01db, 208000000);
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/* device and clock bindings */
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static struct clk_lookup pxa910_clkregs[] = {
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INIT_CLKREG(&clk_uart1, "pxa2xx-uart.0", NULL),
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INIT_CLKREG(&clk_uart2, "pxa2xx-uart.1", NULL),
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INIT_CLKREG(&clk_twsi0, "pxa2xx-i2c.0", NULL),
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INIT_CLKREG(&clk_twsi1, "pxa2xx-i2c.1", NULL),
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INIT_CLKREG(&clk_pwm1, "pxa910-pwm.0", NULL),
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INIT_CLKREG(&clk_pwm2, "pxa910-pwm.1", NULL),
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INIT_CLKREG(&clk_pwm3, "pxa910-pwm.2", NULL),
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INIT_CLKREG(&clk_pwm4, "pxa910-pwm.3", NULL),
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INIT_CLKREG(&clk_nand, "pxa3xx-nand", NULL),
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};
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static int __init pxa910_init(void)
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{
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if (cpu_is_pxa910()) {
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mfp_init_base(MFPR_VIRT_BASE);
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mfp_init_addr(pxa910_mfp_addr_map);
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pxa_init_dma(IRQ_PXA910_DMA_INT0, 32);
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clkdev_add_table(ARRAY_AND_SIZE(pxa910_clkregs));
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}
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return 0;
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}
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postcore_initcall(pxa910_init);
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/* system timer - clock enabled, 3.25MHz */
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#define TIMER_CLK_RST (APBC_APBCLK | APBC_FNCLK | APBC_FNCLKSEL(3))
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static void __init pxa910_timer_init(void)
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{
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/* reset and configure */
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__raw_writel(APBC_APBCLK | APBC_RST, APBC_PXA910_TIMERS);
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__raw_writel(TIMER_CLK_RST, APBC_PXA910_TIMERS);
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timer_init(IRQ_PXA910_AP1_TIMER1);
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}
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struct sys_timer pxa910_timer = {
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.init = pxa910_timer_init,
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};
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/* on-chip devices */
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/* NOTE: there are totally 3 UARTs on PXA910:
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*
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* UART1 - Slow UART (can be used both by AP and CP)
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* UART2/3 - Fast UART
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*
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* To be backward compatible with the legacy FFUART/BTUART/STUART sequence,
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* they are re-ordered as:
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*
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* pxa910_device_uart1 - UART2 as FFUART
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* pxa910_device_uart2 - UART3 as BTUART
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*
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* UART1 is not used by AP for the moment.
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*/
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PXA910_DEVICE(uart1, "pxa2xx-uart", 0, UART2, 0xd4017000, 0x30, 21, 22);
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PXA910_DEVICE(uart2, "pxa2xx-uart", 1, UART3, 0xd4018000, 0x30, 23, 24);
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PXA910_DEVICE(twsi0, "pxa2xx-i2c", 0, TWSI0, 0xd4011000, 0x28);
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PXA910_DEVICE(twsi1, "pxa2xx-i2c", 1, TWSI1, 0xd4025000, 0x28);
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PXA910_DEVICE(pwm1, "pxa910-pwm", 0, NONE, 0xd401a000, 0x10);
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PXA910_DEVICE(pwm2, "pxa910-pwm", 1, NONE, 0xd401a400, 0x10);
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PXA910_DEVICE(pwm3, "pxa910-pwm", 2, NONE, 0xd401a800, 0x10);
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PXA910_DEVICE(pwm4, "pxa910-pwm", 3, NONE, 0xd401ac00, 0x10);
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PXA910_DEVICE(nand, "pxa3xx-nand", -1, NAND, 0xd4283000, 0x80, 97, 99);
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