forked from Minki/linux
c5e91ba25a
Signed-off-by: Wolfram Sang <wsa+renesas@sang-engineering.com> Link: https://lore.kernel.org/r/20210121100619.5653-3-wsa+renesas@sang-engineering.com Signed-off-by: Geert Uytterhoeven <geert+renesas@glider.be>
379 lines
12 KiB
C
379 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* r8a779a0 Clock Pulse Generator / Module Standby and Software Reset
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*
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* Copyright (C) 2020 Renesas Electronics Corp.
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*
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* Based on r8a7795-cpg-mssr.c
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*
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* Copyright (C) 2015 Glider bvba
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* Copyright (C) 2015 Renesas Electronics Corp.
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*/
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#include <linux/bug.h>
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#include <linux/bitfield.h>
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#include <linux/clk.h>
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#include <linux/clk-provider.h>
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#include <linux/device.h>
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#include <linux/err.h>
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#include <linux/init.h>
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#include <linux/io.h>
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#include <linux/kernel.h>
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#include <linux/pm.h>
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#include <linux/slab.h>
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#include <linux/soc/renesas/rcar-rst.h>
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#include <dt-bindings/clock/r8a779a0-cpg-mssr.h>
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#include "rcar-cpg-lib.h"
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#include "renesas-cpg-mssr.h"
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enum rcar_r8a779a0_clk_types {
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CLK_TYPE_R8A779A0_MAIN = CLK_TYPE_CUSTOM,
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CLK_TYPE_R8A779A0_PLL1,
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CLK_TYPE_R8A779A0_PLL2X_3X, /* PLL[23][01] */
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CLK_TYPE_R8A779A0_PLL5,
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CLK_TYPE_R8A779A0_SD,
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CLK_TYPE_R8A779A0_MDSEL, /* Select parent/divider using mode pin */
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CLK_TYPE_R8A779A0_OSC, /* OSC EXTAL predivider and fixed divider */
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};
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struct rcar_r8a779a0_cpg_pll_config {
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u8 extal_div;
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u8 pll1_mult;
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u8 pll1_div;
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u8 pll5_mult;
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u8 pll5_div;
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u8 osc_prediv;
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};
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enum clk_ids {
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/* Core Clock Outputs exported to DT */
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LAST_DT_CORE_CLK = R8A779A0_CLK_OSC,
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/* External Input Clocks */
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CLK_EXTAL,
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CLK_EXTALR,
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/* Internal Core Clocks */
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CLK_MAIN,
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CLK_PLL1,
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CLK_PLL20,
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CLK_PLL21,
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CLK_PLL30,
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CLK_PLL31,
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CLK_PLL5,
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CLK_PLL1_DIV2,
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CLK_PLL20_DIV2,
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CLK_PLL21_DIV2,
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CLK_PLL30_DIV2,
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CLK_PLL31_DIV2,
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CLK_PLL5_DIV2,
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CLK_PLL5_DIV4,
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CLK_S1,
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CLK_S3,
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CLK_SDSRC,
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CLK_RPCSRC,
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CLK_OCO,
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/* Module Clocks */
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MOD_CLK_BASE
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};
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#define DEF_PLL(_name, _id, _offset) \
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DEF_BASE(_name, _id, CLK_TYPE_R8A779A0_PLL2X_3X, CLK_MAIN, \
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.offset = _offset)
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#define DEF_SD(_name, _id, _parent, _offset) \
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DEF_BASE(_name, _id, CLK_TYPE_R8A779A0_SD, _parent, .offset = _offset)
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#define DEF_MDSEL(_name, _id, _md, _parent0, _div0, _parent1, _div1) \
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DEF_BASE(_name, _id, CLK_TYPE_R8A779A0_MDSEL, \
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(_parent0) << 16 | (_parent1), \
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.div = (_div0) << 16 | (_div1), .offset = _md)
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#define DEF_OSC(_name, _id, _parent, _div) \
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DEF_BASE(_name, _id, CLK_TYPE_R8A779A0_OSC, _parent, .div = _div)
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static const struct cpg_core_clk r8a779a0_core_clks[] __initconst = {
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/* External Clock Inputs */
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DEF_INPUT("extal", CLK_EXTAL),
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DEF_INPUT("extalr", CLK_EXTALR),
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/* Internal Core Clocks */
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DEF_BASE(".main", CLK_MAIN, CLK_TYPE_R8A779A0_MAIN, CLK_EXTAL),
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DEF_BASE(".pll1", CLK_PLL1, CLK_TYPE_R8A779A0_PLL1, CLK_MAIN),
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DEF_BASE(".pll5", CLK_PLL5, CLK_TYPE_R8A779A0_PLL5, CLK_MAIN),
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DEF_PLL(".pll20", CLK_PLL20, 0x0834),
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DEF_PLL(".pll21", CLK_PLL21, 0x0838),
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DEF_PLL(".pll30", CLK_PLL30, 0x083c),
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DEF_PLL(".pll31", CLK_PLL31, 0x0840),
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DEF_FIXED(".pll1_div2", CLK_PLL1_DIV2, CLK_PLL1, 2, 1),
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DEF_FIXED(".pll20_div2", CLK_PLL20_DIV2, CLK_PLL20, 2, 1),
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DEF_FIXED(".pll21_div2", CLK_PLL21_DIV2, CLK_PLL21, 2, 1),
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DEF_FIXED(".pll30_div2", CLK_PLL30_DIV2, CLK_PLL30, 2, 1),
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DEF_FIXED(".pll31_div2", CLK_PLL31_DIV2, CLK_PLL31, 2, 1),
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DEF_FIXED(".pll5_div2", CLK_PLL5_DIV2, CLK_PLL5, 2, 1),
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DEF_FIXED(".pll5_div4", CLK_PLL5_DIV4, CLK_PLL5_DIV2, 2, 1),
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DEF_FIXED(".s1", CLK_S1, CLK_PLL1_DIV2, 2, 1),
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DEF_FIXED(".s3", CLK_S3, CLK_PLL1_DIV2, 4, 1),
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DEF_FIXED(".sdsrc", CLK_SDSRC, CLK_PLL5_DIV4, 1, 1),
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DEF_RATE(".oco", CLK_OCO, 32768),
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/* Core Clock Outputs */
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DEF_FIXED("zx", R8A779A0_CLK_ZX, CLK_PLL20_DIV2, 2, 1),
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DEF_FIXED("s1d1", R8A779A0_CLK_S1D1, CLK_S1, 1, 1),
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DEF_FIXED("s1d2", R8A779A0_CLK_S1D2, CLK_S1, 2, 1),
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DEF_FIXED("s1d4", R8A779A0_CLK_S1D4, CLK_S1, 4, 1),
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DEF_FIXED("s1d8", R8A779A0_CLK_S1D8, CLK_S1, 8, 1),
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DEF_FIXED("s1d12", R8A779A0_CLK_S1D12, CLK_S1, 12, 1),
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DEF_FIXED("s3d1", R8A779A0_CLK_S3D1, CLK_S3, 1, 1),
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DEF_FIXED("s3d2", R8A779A0_CLK_S3D2, CLK_S3, 2, 1),
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DEF_FIXED("s3d4", R8A779A0_CLK_S3D4, CLK_S3, 4, 1),
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DEF_FIXED("zs", R8A779A0_CLK_ZS, CLK_PLL1_DIV2, 4, 1),
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DEF_FIXED("zt", R8A779A0_CLK_ZT, CLK_PLL1_DIV2, 2, 1),
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DEF_FIXED("ztr", R8A779A0_CLK_ZTR, CLK_PLL1_DIV2, 2, 1),
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DEF_FIXED("zr", R8A779A0_CLK_ZR, CLK_PLL1_DIV2, 1, 1),
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DEF_FIXED("dsi", R8A779A0_CLK_DSI, CLK_PLL5_DIV4, 1, 1),
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DEF_FIXED("cnndsp", R8A779A0_CLK_CNNDSP, CLK_PLL5_DIV4, 1, 1),
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DEF_FIXED("vip", R8A779A0_CLK_VIP, CLK_PLL5, 5, 1),
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DEF_FIXED("adgh", R8A779A0_CLK_ADGH, CLK_PLL5_DIV4, 1, 1),
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DEF_FIXED("icu", R8A779A0_CLK_ICU, CLK_PLL5_DIV4, 2, 1),
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DEF_FIXED("icud2", R8A779A0_CLK_ICUD2, CLK_PLL5_DIV4, 4, 1),
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DEF_FIXED("vcbus", R8A779A0_CLK_VCBUS, CLK_PLL5_DIV4, 1, 1),
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DEF_FIXED("cbfusa", R8A779A0_CLK_CBFUSA, CLK_EXTAL, 2, 1),
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DEF_FIXED("cp", R8A779A0_CLK_CP, CLK_EXTAL, 2, 1),
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DEF_SD("sd0", R8A779A0_CLK_SD0, CLK_SDSRC, 0x870),
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DEF_DIV6P1("mso", R8A779A0_CLK_MSO, CLK_PLL5_DIV4, 0x87c),
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DEF_DIV6P1("canfd", R8A779A0_CLK_CANFD, CLK_PLL5_DIV4, 0x878),
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DEF_DIV6P1("csi0", R8A779A0_CLK_CSI0, CLK_PLL5_DIV4, 0x880),
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DEF_OSC("osc", R8A779A0_CLK_OSC, CLK_EXTAL, 8),
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DEF_MDSEL("r", R8A779A0_CLK_R, 29, CLK_EXTALR, 1, CLK_OCO, 1),
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};
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static const struct mssr_mod_clk r8a779a0_mod_clks[] __initconst = {
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DEF_MOD("avb0", 211, R8A779A0_CLK_S3D2),
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DEF_MOD("avb1", 212, R8A779A0_CLK_S3D2),
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DEF_MOD("avb2", 213, R8A779A0_CLK_S3D2),
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DEF_MOD("avb3", 214, R8A779A0_CLK_S3D2),
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DEF_MOD("avb4", 215, R8A779A0_CLK_S3D2),
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DEF_MOD("avb5", 216, R8A779A0_CLK_S3D2),
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DEF_MOD("csi40", 331, R8A779A0_CLK_CSI0),
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DEF_MOD("csi41", 400, R8A779A0_CLK_CSI0),
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DEF_MOD("csi42", 401, R8A779A0_CLK_CSI0),
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DEF_MOD("csi43", 402, R8A779A0_CLK_CSI0),
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DEF_MOD("fcpvd0", 508, R8A779A0_CLK_S3D1),
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DEF_MOD("fcpvd1", 509, R8A779A0_CLK_S3D1),
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DEF_MOD("hscif0", 514, R8A779A0_CLK_S1D2),
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DEF_MOD("hscif1", 515, R8A779A0_CLK_S1D2),
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DEF_MOD("hscif2", 516, R8A779A0_CLK_S1D2),
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DEF_MOD("hscif3", 517, R8A779A0_CLK_S1D2),
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DEF_MOD("i2c0", 518, R8A779A0_CLK_S1D4),
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DEF_MOD("i2c1", 519, R8A779A0_CLK_S1D4),
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DEF_MOD("i2c2", 520, R8A779A0_CLK_S1D4),
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DEF_MOD("i2c3", 521, R8A779A0_CLK_S1D4),
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DEF_MOD("i2c4", 522, R8A779A0_CLK_S1D4),
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DEF_MOD("i2c5", 523, R8A779A0_CLK_S1D4),
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DEF_MOD("i2c6", 524, R8A779A0_CLK_S1D4),
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DEF_MOD("msi0", 618, R8A779A0_CLK_MSO),
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DEF_MOD("msi1", 619, R8A779A0_CLK_MSO),
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DEF_MOD("msi2", 620, R8A779A0_CLK_MSO),
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DEF_MOD("msi3", 621, R8A779A0_CLK_MSO),
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DEF_MOD("msi4", 622, R8A779A0_CLK_MSO),
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DEF_MOD("msi5", 623, R8A779A0_CLK_MSO),
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DEF_MOD("scif0", 702, R8A779A0_CLK_S1D8),
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DEF_MOD("scif1", 703, R8A779A0_CLK_S1D8),
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DEF_MOD("scif3", 704, R8A779A0_CLK_S1D8),
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DEF_MOD("scif4", 705, R8A779A0_CLK_S1D8),
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DEF_MOD("sdhi0", 706, R8A779A0_CLK_SD0),
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DEF_MOD("sydm1", 709, R8A779A0_CLK_S1D2),
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DEF_MOD("sydm2", 710, R8A779A0_CLK_S1D2),
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DEF_MOD("vin00", 730, R8A779A0_CLK_S1D1),
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DEF_MOD("vin01", 731, R8A779A0_CLK_S1D1),
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DEF_MOD("vin02", 800, R8A779A0_CLK_S1D1),
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DEF_MOD("vin03", 801, R8A779A0_CLK_S1D1),
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DEF_MOD("vin04", 802, R8A779A0_CLK_S1D1),
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DEF_MOD("vin05", 803, R8A779A0_CLK_S1D1),
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DEF_MOD("vin06", 804, R8A779A0_CLK_S1D1),
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DEF_MOD("vin07", 805, R8A779A0_CLK_S1D1),
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DEF_MOD("vin10", 806, R8A779A0_CLK_S1D1),
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DEF_MOD("vin11", 807, R8A779A0_CLK_S1D1),
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DEF_MOD("vin12", 808, R8A779A0_CLK_S1D1),
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DEF_MOD("vin13", 809, R8A779A0_CLK_S1D1),
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DEF_MOD("vin14", 810, R8A779A0_CLK_S1D1),
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DEF_MOD("vin15", 811, R8A779A0_CLK_S1D1),
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DEF_MOD("vin16", 812, R8A779A0_CLK_S1D1),
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DEF_MOD("vin17", 813, R8A779A0_CLK_S1D1),
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DEF_MOD("vin20", 814, R8A779A0_CLK_S1D1),
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DEF_MOD("vin21", 815, R8A779A0_CLK_S1D1),
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DEF_MOD("vin22", 816, R8A779A0_CLK_S1D1),
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DEF_MOD("vin23", 817, R8A779A0_CLK_S1D1),
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DEF_MOD("vin24", 818, R8A779A0_CLK_S1D1),
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DEF_MOD("vin25", 819, R8A779A0_CLK_S1D1),
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DEF_MOD("vin26", 820, R8A779A0_CLK_S1D1),
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DEF_MOD("vin27", 821, R8A779A0_CLK_S1D1),
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DEF_MOD("vin30", 822, R8A779A0_CLK_S1D1),
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DEF_MOD("vin31", 823, R8A779A0_CLK_S1D1),
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DEF_MOD("vin32", 824, R8A779A0_CLK_S1D1),
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DEF_MOD("vin33", 825, R8A779A0_CLK_S1D1),
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DEF_MOD("vin34", 826, R8A779A0_CLK_S1D1),
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DEF_MOD("vin35", 827, R8A779A0_CLK_S1D1),
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DEF_MOD("vin36", 828, R8A779A0_CLK_S1D1),
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DEF_MOD("vin37", 829, R8A779A0_CLK_S1D1),
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DEF_MOD("vspd0", 830, R8A779A0_CLK_S3D1),
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DEF_MOD("vspd1", 831, R8A779A0_CLK_S3D1),
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DEF_MOD("rwdt", 907, R8A779A0_CLK_R),
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DEF_MOD("pfc0", 915, R8A779A0_CLK_CP),
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DEF_MOD("pfc1", 916, R8A779A0_CLK_CP),
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DEF_MOD("pfc2", 917, R8A779A0_CLK_CP),
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DEF_MOD("pfc3", 918, R8A779A0_CLK_CP),
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DEF_MOD("vspx0", 1028, R8A779A0_CLK_S1D1),
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DEF_MOD("vspx1", 1029, R8A779A0_CLK_S1D1),
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DEF_MOD("vspx2", 1030, R8A779A0_CLK_S1D1),
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DEF_MOD("vspx3", 1031, R8A779A0_CLK_S1D1),
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};
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static const struct rcar_r8a779a0_cpg_pll_config *cpg_pll_config __initdata;
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static unsigned int cpg_clk_extalr __initdata;
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static u32 cpg_mode __initdata;
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static struct clk * __init rcar_r8a779a0_cpg_clk_register(struct device *dev,
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const struct cpg_core_clk *core, const struct cpg_mssr_info *info,
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struct clk **clks, void __iomem *base,
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struct raw_notifier_head *notifiers)
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{
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const struct clk *parent;
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unsigned int mult = 1;
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unsigned int div = 1;
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u32 value;
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parent = clks[core->parent & 0xffff]; /* some types use high bits */
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if (IS_ERR(parent))
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return ERR_CAST(parent);
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switch (core->type) {
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case CLK_TYPE_R8A779A0_MAIN:
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div = cpg_pll_config->extal_div;
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break;
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case CLK_TYPE_R8A779A0_PLL1:
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mult = cpg_pll_config->pll1_mult;
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div = cpg_pll_config->pll1_div;
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break;
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case CLK_TYPE_R8A779A0_PLL2X_3X:
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value = readl(base + core->offset);
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mult = (((value >> 24) & 0x7f) + 1) * 2;
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break;
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case CLK_TYPE_R8A779A0_PLL5:
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mult = cpg_pll_config->pll5_mult;
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div = cpg_pll_config->pll5_div;
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break;
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case CLK_TYPE_R8A779A0_SD:
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return cpg_sd_clk_register(core->name, base, core->offset,
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__clk_get_name(parent), notifiers,
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false);
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break;
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case CLK_TYPE_R8A779A0_MDSEL:
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/*
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* Clock selectable between two parents and two fixed dividers
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* using a mode pin
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*/
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if (cpg_mode & BIT(core->offset)) {
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div = core->div & 0xffff;
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} else {
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parent = clks[core->parent >> 16];
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if (IS_ERR(parent))
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return ERR_CAST(parent);
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div = core->div >> 16;
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}
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mult = 1;
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break;
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case CLK_TYPE_R8A779A0_OSC:
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/*
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* Clock combining OSC EXTAL predivider and a fixed divider
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*/
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div = cpg_pll_config->osc_prediv * core->div;
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break;
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default:
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return ERR_PTR(-EINVAL);
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}
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return clk_register_fixed_factor(NULL, core->name,
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__clk_get_name(parent), 0, mult, div);
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}
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static const unsigned int r8a779a0_crit_mod_clks[] __initconst = {
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MOD_CLK_ID(907), /* RWDT */
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};
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/*
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* CPG Clock Data
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*/
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/*
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* MD EXTAL PLL1 PLL20 PLL30 PLL4 PLL5 OSC
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* 14 13 (MHz) 21 31
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* --------------------------------------------------------
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* 0 0 16.66 x 1 x128 x216 x128 x144 x192 /16
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* 0 1 20 x 1 x106 x180 x106 x120 x160 /19
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* 1 0 Prohibited setting
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* 1 1 33.33 / 2 x128 x216 x128 x144 x192 /32
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*/
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#define CPG_PLL_CONFIG_INDEX(md) ((((md) & BIT(14)) >> 13) | \
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(((md) & BIT(13)) >> 13))
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static const struct rcar_r8a779a0_cpg_pll_config cpg_pll_configs[4] = {
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/* EXTAL div PLL1 mult/div PLL5 mult/div OSC prediv */
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{ 1, 128, 1, 192, 1, 16, },
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{ 1, 106, 1, 160, 1, 19, },
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{ 0, 0, 0, 0, 0, 0, },
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{ 2, 128, 1, 192, 1, 32, },
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};
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static int __init r8a779a0_cpg_mssr_init(struct device *dev)
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{
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int error;
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error = rcar_rst_read_mode_pins(&cpg_mode);
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if (error)
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return error;
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cpg_pll_config = &cpg_pll_configs[CPG_PLL_CONFIG_INDEX(cpg_mode)];
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cpg_clk_extalr = CLK_EXTALR;
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spin_lock_init(&cpg_lock);
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|
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return 0;
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}
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const struct cpg_mssr_info r8a779a0_cpg_mssr_info __initconst = {
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/* Core Clocks */
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.core_clks = r8a779a0_core_clks,
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.num_core_clks = ARRAY_SIZE(r8a779a0_core_clks),
|
|
.last_dt_core_clk = LAST_DT_CORE_CLK,
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.num_total_core_clks = MOD_CLK_BASE,
|
|
|
|
/* Module Clocks */
|
|
.mod_clks = r8a779a0_mod_clks,
|
|
.num_mod_clks = ARRAY_SIZE(r8a779a0_mod_clks),
|
|
.num_hw_mod_clks = 15 * 32,
|
|
|
|
/* Critical Module Clocks */
|
|
.crit_mod_clks = r8a779a0_crit_mod_clks,
|
|
.num_crit_mod_clks = ARRAY_SIZE(r8a779a0_crit_mod_clks),
|
|
|
|
/* Callbacks */
|
|
.init = r8a779a0_cpg_mssr_init,
|
|
.cpg_clk_register = rcar_r8a779a0_cpg_clk_register,
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|
|
|
.reg_layout = CLK_REG_LAYOUT_RCAR_V3U,
|
|
};
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