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This driver initializes a clock provider via lpc18xx_creg_clk_init and then continues the initialization on lpc18xx_creg_clk_probe. Use the new macro to notify the clk subsystem about this behaviour. Signed-off-by: Ricardo Ribalda Delgado <ricardo.ribalda@gmail.com> [sboyd@codeaurora.org: s/npx/nxp/ in subject] Signed-off-by: Stephen Boyd <sboyd@codeaurora.org>
229 lines
5.6 KiB
C
229 lines
5.6 KiB
C
/*
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* Clk driver for NXP LPC18xx/43xx Configuration Registers (CREG)
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*
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* Copyright (C) 2015 Joachim Eastwood <manabian@gmail.com>
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*
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* This file is licensed under the terms of the GNU General Public
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* License version 2. This program is licensed "as is" without any
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* warranty of any kind, whether express or implied.
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*/
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#include <linux/clk-provider.h>
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#include <linux/delay.h>
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#include <linux/kernel.h>
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#include <linux/mfd/syscon.h>
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#include <linux/of.h>
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#include <linux/platform_device.h>
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#include <linux/regmap.h>
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#define LPC18XX_CREG_CREG0 0x004
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#define LPC18XX_CREG_CREG0_EN1KHZ BIT(0)
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#define LPC18XX_CREG_CREG0_EN32KHZ BIT(1)
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#define LPC18XX_CREG_CREG0_RESET32KHZ BIT(2)
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#define LPC18XX_CREG_CREG0_PD32KHZ BIT(3)
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#define to_clk_creg(_hw) container_of(_hw, struct clk_creg_data, hw)
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enum {
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CREG_CLK_1KHZ,
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CREG_CLK_32KHZ,
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CREG_CLK_MAX,
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};
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struct clk_creg_data {
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struct clk_hw hw;
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const char *name;
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struct regmap *reg;
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unsigned int en_mask;
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const struct clk_ops *ops;
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};
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#define CREG_CLK(_name, _emask, _ops) \
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{ \
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.name = _name, \
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.en_mask = LPC18XX_CREG_CREG0_##_emask, \
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.ops = &_ops, \
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}
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static int clk_creg_32k_prepare(struct clk_hw *hw)
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{
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struct clk_creg_data *creg = to_clk_creg(hw);
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int ret;
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ret = regmap_update_bits(creg->reg, LPC18XX_CREG_CREG0,
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LPC18XX_CREG_CREG0_PD32KHZ |
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LPC18XX_CREG_CREG0_RESET32KHZ, 0);
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/*
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* Powering up the 32k oscillator takes a long while
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* and sadly there aren't any status bit to poll.
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*/
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msleep(2500);
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return ret;
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}
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static void clk_creg_32k_unprepare(struct clk_hw *hw)
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{
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struct clk_creg_data *creg = to_clk_creg(hw);
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regmap_update_bits(creg->reg, LPC18XX_CREG_CREG0,
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LPC18XX_CREG_CREG0_PD32KHZ,
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LPC18XX_CREG_CREG0_PD32KHZ);
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}
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static int clk_creg_32k_is_prepared(struct clk_hw *hw)
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{
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struct clk_creg_data *creg = to_clk_creg(hw);
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u32 reg;
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regmap_read(creg->reg, LPC18XX_CREG_CREG0, ®);
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return !(reg & LPC18XX_CREG_CREG0_PD32KHZ) &&
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!(reg & LPC18XX_CREG_CREG0_RESET32KHZ);
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}
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static unsigned long clk_creg_1k_recalc_rate(struct clk_hw *hw,
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unsigned long parent_rate)
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{
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return parent_rate / 32;
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}
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static int clk_creg_enable(struct clk_hw *hw)
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{
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struct clk_creg_data *creg = to_clk_creg(hw);
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return regmap_update_bits(creg->reg, LPC18XX_CREG_CREG0,
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creg->en_mask, creg->en_mask);
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}
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static void clk_creg_disable(struct clk_hw *hw)
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{
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struct clk_creg_data *creg = to_clk_creg(hw);
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regmap_update_bits(creg->reg, LPC18XX_CREG_CREG0,
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creg->en_mask, 0);
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}
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static int clk_creg_is_enabled(struct clk_hw *hw)
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{
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struct clk_creg_data *creg = to_clk_creg(hw);
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u32 reg;
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regmap_read(creg->reg, LPC18XX_CREG_CREG0, ®);
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return !!(reg & creg->en_mask);
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}
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static const struct clk_ops clk_creg_32k = {
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.enable = clk_creg_enable,
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.disable = clk_creg_disable,
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.is_enabled = clk_creg_is_enabled,
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.prepare = clk_creg_32k_prepare,
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.unprepare = clk_creg_32k_unprepare,
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.is_prepared = clk_creg_32k_is_prepared,
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};
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static const struct clk_ops clk_creg_1k = {
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.enable = clk_creg_enable,
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.disable = clk_creg_disable,
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.is_enabled = clk_creg_is_enabled,
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.recalc_rate = clk_creg_1k_recalc_rate,
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};
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static struct clk_creg_data clk_creg_clocks[] = {
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[CREG_CLK_1KHZ] = CREG_CLK("1khz_clk", EN1KHZ, clk_creg_1k),
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[CREG_CLK_32KHZ] = CREG_CLK("32khz_clk", EN32KHZ, clk_creg_32k),
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};
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static struct clk *clk_register_creg_clk(struct device *dev,
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struct clk_creg_data *creg_clk,
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const char **parent_name,
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struct regmap *syscon)
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{
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struct clk_init_data init;
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init.ops = creg_clk->ops;
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init.name = creg_clk->name;
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init.parent_names = parent_name;
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init.num_parents = 1;
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init.flags = 0;
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creg_clk->reg = syscon;
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creg_clk->hw.init = &init;
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if (dev)
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return devm_clk_register(dev, &creg_clk->hw);
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return clk_register(NULL, &creg_clk->hw);
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}
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static struct clk *clk_creg_early[CREG_CLK_MAX];
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static struct clk_onecell_data clk_creg_early_data = {
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.clks = clk_creg_early,
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.clk_num = CREG_CLK_MAX,
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};
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static void __init lpc18xx_creg_clk_init(struct device_node *np)
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{
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const char *clk_32khz_parent;
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struct regmap *syscon;
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syscon = syscon_node_to_regmap(np->parent);
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if (IS_ERR(syscon)) {
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pr_err("%s: syscon lookup failed\n", __func__);
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return;
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}
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clk_32khz_parent = of_clk_get_parent_name(np, 0);
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clk_creg_early[CREG_CLK_32KHZ] =
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clk_register_creg_clk(NULL, &clk_creg_clocks[CREG_CLK_32KHZ],
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&clk_32khz_parent, syscon);
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clk_creg_early[CREG_CLK_1KHZ] = ERR_PTR(-EPROBE_DEFER);
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of_clk_add_provider(np, of_clk_src_onecell_get, &clk_creg_early_data);
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}
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CLK_OF_DECLARE_DRIVER(lpc18xx_creg_clk, "nxp,lpc1850-creg-clk",
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lpc18xx_creg_clk_init);
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static struct clk *clk_creg[CREG_CLK_MAX];
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static struct clk_onecell_data clk_creg_data = {
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.clks = clk_creg,
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.clk_num = CREG_CLK_MAX,
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};
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static int lpc18xx_creg_clk_probe(struct platform_device *pdev)
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{
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struct device_node *np = pdev->dev.of_node;
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struct regmap *syscon;
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syscon = syscon_node_to_regmap(np->parent);
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if (IS_ERR(syscon)) {
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dev_err(&pdev->dev, "syscon lookup failed\n");
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return PTR_ERR(syscon);
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}
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clk_creg[CREG_CLK_32KHZ] = clk_creg_early[CREG_CLK_32KHZ];
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clk_creg[CREG_CLK_1KHZ] =
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clk_register_creg_clk(NULL, &clk_creg_clocks[CREG_CLK_1KHZ],
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&clk_creg_clocks[CREG_CLK_32KHZ].name,
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syscon);
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return of_clk_add_provider(np, of_clk_src_onecell_get, &clk_creg_data);
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}
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static const struct of_device_id lpc18xx_creg_clk_of_match[] = {
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{ .compatible = "nxp,lpc1850-creg-clk" },
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{},
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};
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static struct platform_driver lpc18xx_creg_clk_driver = {
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.probe = lpc18xx_creg_clk_probe,
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.driver = {
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.name = "lpc18xx-creg-clk",
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.of_match_table = lpc18xx_creg_clk_of_match,
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},
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};
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builtin_platform_driver(lpc18xx_creg_clk_driver);
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