220 lines
6.0 KiB
C
220 lines
6.0 KiB
C
/*
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* Copyright (C) 2009 by Sascha Hauer, Pengutronix
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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* MA 02110-1301, USA.
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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/list.h>
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#include <linux/clk.h>
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#include <linux/io.h>
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#include <asm/clkdev.h>
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#include <mach/clock.h>
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#include <mach/hardware.h>
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#include <mach/common.h>
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#include <mach/mx25.h>
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#define CRM_BASE MX25_IO_ADDRESS(MX25_CRM_BASE_ADDR)
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#define CCM_MPCTL 0x00
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#define CCM_UPCTL 0x04
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#define CCM_CCTL 0x08
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#define CCM_CGCR0 0x0C
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#define CCM_CGCR1 0x10
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#define CCM_CGCR2 0x14
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#define CCM_PCDR0 0x18
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#define CCM_PCDR1 0x1C
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#define CCM_PCDR2 0x20
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#define CCM_PCDR3 0x24
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#define CCM_RCSR 0x28
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#define CCM_CRDR 0x2C
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#define CCM_DCVR0 0x30
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#define CCM_DCVR1 0x34
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#define CCM_DCVR2 0x38
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#define CCM_DCVR3 0x3c
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#define CCM_LTR0 0x40
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#define CCM_LTR1 0x44
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#define CCM_LTR2 0x48
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#define CCM_LTR3 0x4c
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static unsigned long get_rate_mpll(void)
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{
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ulong mpctl = __raw_readl(CRM_BASE + CCM_MPCTL);
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return mxc_decode_pll(mpctl, 24000000);
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}
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static unsigned long get_rate_upll(void)
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{
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ulong mpctl = __raw_readl(CRM_BASE + CCM_UPCTL);
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return mxc_decode_pll(mpctl, 24000000);
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}
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unsigned long get_rate_arm(struct clk *clk)
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{
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unsigned long cctl = readl(CRM_BASE + CCM_CCTL);
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unsigned long rate = get_rate_mpll();
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if (cctl & (1 << 14))
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rate = (rate * 3) >> 1;
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return rate / ((cctl >> 30) + 1);
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}
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static unsigned long get_rate_ahb(struct clk *clk)
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{
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unsigned long cctl = readl(CRM_BASE + CCM_CCTL);
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return get_rate_arm(NULL) / (((cctl >> 28) & 0x3) + 1);
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}
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static unsigned long get_rate_ipg(struct clk *clk)
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{
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return get_rate_ahb(NULL) >> 1;
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}
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static unsigned long get_rate_per(int per)
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{
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unsigned long ofs = (per & 0x3) * 8;
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unsigned long reg = per & ~0x3;
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unsigned long val = (readl(CRM_BASE + CCM_PCDR0 + reg) >> ofs) & 0x3f;
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unsigned long fref;
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if (readl(CRM_BASE + 0x64) & (1 << per))
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fref = get_rate_upll();
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else
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fref = get_rate_ipg(NULL);
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return fref / (val + 1);
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}
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static unsigned long get_rate_uart(struct clk *clk)
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{
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return get_rate_per(15);
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}
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static unsigned long get_rate_i2c(struct clk *clk)
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{
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return get_rate_per(6);
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}
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static unsigned long get_rate_nfc(struct clk *clk)
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{
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return get_rate_per(8);
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}
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static unsigned long get_rate_otg(struct clk *clk)
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{
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return 48000000; /* FIXME */
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}
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static int clk_cgcr_enable(struct clk *clk)
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{
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u32 reg;
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reg = __raw_readl(clk->enable_reg);
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reg |= 1 << clk->enable_shift;
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__raw_writel(reg, clk->enable_reg);
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return 0;
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}
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static void clk_cgcr_disable(struct clk *clk)
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{
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u32 reg;
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reg = __raw_readl(clk->enable_reg);
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reg &= ~(1 << clk->enable_shift);
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__raw_writel(reg, clk->enable_reg);
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}
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#define DEFINE_CLOCK(name, i, er, es, gr, sr) \
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static struct clk name = { \
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.id = i, \
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.enable_reg = CRM_BASE + er, \
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.enable_shift = es, \
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.get_rate = gr, \
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.set_rate = sr, \
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.enable = clk_cgcr_enable, \
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.disable = clk_cgcr_disable, \
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}
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DEFINE_CLOCK(gpt_clk, 0, CCM_CGCR0, 5, get_rate_ipg, NULL);
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DEFINE_CLOCK(cspi1_clk, 0, CCM_CGCR1, 5, get_rate_ipg, NULL);
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DEFINE_CLOCK(cspi2_clk, 0, CCM_CGCR1, 6, get_rate_ipg, NULL);
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DEFINE_CLOCK(cspi3_clk, 0, CCM_CGCR1, 7, get_rate_ipg, NULL);
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DEFINE_CLOCK(uart1_clk, 0, CCM_CGCR2, 14, get_rate_uart, NULL);
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DEFINE_CLOCK(uart2_clk, 0, CCM_CGCR2, 15, get_rate_uart, NULL);
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DEFINE_CLOCK(uart3_clk, 0, CCM_CGCR2, 16, get_rate_uart, NULL);
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DEFINE_CLOCK(uart4_clk, 0, CCM_CGCR2, 17, get_rate_uart, NULL);
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DEFINE_CLOCK(uart5_clk, 0, CCM_CGCR2, 18, get_rate_uart, NULL);
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DEFINE_CLOCK(nfc_clk, 0, CCM_CGCR0, 8, get_rate_nfc, NULL);
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DEFINE_CLOCK(usbotg_clk, 0, CCM_CGCR0, 28, get_rate_otg, NULL);
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DEFINE_CLOCK(pwm1_clk, 0, CCM_CGCR1, 31, get_rate_ipg, NULL);
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DEFINE_CLOCK(pwm2_clk, 0, CCM_CGCR2, 0, get_rate_ipg, NULL);
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DEFINE_CLOCK(pwm3_clk, 0, CCM_CGCR2, 1, get_rate_ipg, NULL);
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DEFINE_CLOCK(pwm4_clk, 0, CCM_CGCR2, 2, get_rate_ipg, NULL);
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DEFINE_CLOCK(kpp_clk, 0, CCM_CGCR1, 28, get_rate_ipg, NULL);
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DEFINE_CLOCK(tsc_clk, 0, CCM_CGCR2, 13, get_rate_ipg, NULL);
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DEFINE_CLOCK(i2c_clk, 0, CCM_CGCR0, 6, get_rate_i2c, NULL);
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#define _REGISTER_CLOCK(d, n, c) \
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{ \
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.dev_id = d, \
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.con_id = n, \
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.clk = &c, \
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},
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static struct clk_lookup lookups[] = {
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_REGISTER_CLOCK("imx-uart.0", NULL, uart1_clk)
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_REGISTER_CLOCK("imx-uart.1", NULL, uart2_clk)
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_REGISTER_CLOCK("imx-uart.2", NULL, uart3_clk)
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_REGISTER_CLOCK("imx-uart.3", NULL, uart4_clk)
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_REGISTER_CLOCK("imx-uart.4", NULL, uart5_clk)
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_REGISTER_CLOCK("mxc-ehci.0", "usb", usbotg_clk)
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_REGISTER_CLOCK("mxc-ehci.1", "usb", usbotg_clk)
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_REGISTER_CLOCK("mxc-ehci.2", "usb", usbotg_clk)
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_REGISTER_CLOCK("fsl-usb2-udc", "usb", usbotg_clk)
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_REGISTER_CLOCK("mxc_nand.0", NULL, nfc_clk)
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_REGISTER_CLOCK("spi_imx.0", NULL, cspi1_clk)
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_REGISTER_CLOCK("spi_imx.1", NULL, cspi2_clk)
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_REGISTER_CLOCK("spi_imx.2", NULL, cspi3_clk)
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_REGISTER_CLOCK("mxc_pwm.0", NULL, pwm1_clk)
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_REGISTER_CLOCK("mxc_pwm.1", NULL, pwm2_clk)
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_REGISTER_CLOCK("mxc_pwm.2", NULL, pwm3_clk)
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_REGISTER_CLOCK("mxc_pwm.3", NULL, pwm4_clk)
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_REGISTER_CLOCK("mxc-keypad", NULL, kpp_clk)
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_REGISTER_CLOCK("mx25-adc", NULL, tsc_clk)
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_REGISTER_CLOCK("imx-i2c.0", NULL, i2c_clk)
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_REGISTER_CLOCK("imx-i2c.1", NULL, i2c_clk)
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_REGISTER_CLOCK("imx-i2c.2", NULL, i2c_clk)
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};
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int __init mx25_clocks_init(unsigned long fref)
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{
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int i;
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for (i = 0; i < ARRAY_SIZE(lookups); i++)
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clkdev_add(&lookups[i]);
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mxc_timer_init(&gpt_clk, MX25_IO_ADDRESS(MX25_GPT1_BASE_ADDR), 54);
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return 0;
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}
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