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clk: sunxi-ng: Add N-M-factor clock support
Introduce support for clocks that multiply and divide using linear factors. Signed-off-by: Maxime Ripard <maxime.ripard@free-electrons.com> Signed-off-by: Michael Turquette <mturquette@baylibre.com> Link: lkml.kernel.org/r/20160629190535.11855-11-maxime.ripard@free-electrons.com
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Maxime Ripard
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Michael Turquette
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Jul 9, 2016
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/* | ||
* Copyright (C) 2016 Maxime Ripard | ||
* Maxime Ripard <maxime.ripard@free-electrons.com> | ||
* | ||
* This program is free software; you can redistribute it and/or | ||
* modify it under the terms of the GNU General Public License as | ||
* published by the Free Software Foundation; either version 2 of | ||
* the License, or (at your option) any later version. | ||
*/ | ||
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#include <linux/clk-provider.h> | ||
#include <linux/rational.h> | ||
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#include "ccu_frac.h" | ||
#include "ccu_gate.h" | ||
#include "ccu_nm.h" | ||
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static void ccu_nm_disable(struct clk_hw *hw) | ||
{ | ||
struct ccu_nm *nm = hw_to_ccu_nm(hw); | ||
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return ccu_gate_helper_disable(&nm->common, nm->enable); | ||
} | ||
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static int ccu_nm_enable(struct clk_hw *hw) | ||
{ | ||
struct ccu_nm *nm = hw_to_ccu_nm(hw); | ||
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return ccu_gate_helper_enable(&nm->common, nm->enable); | ||
} | ||
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static int ccu_nm_is_enabled(struct clk_hw *hw) | ||
{ | ||
struct ccu_nm *nm = hw_to_ccu_nm(hw); | ||
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return ccu_gate_helper_is_enabled(&nm->common, nm->enable); | ||
} | ||
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static unsigned long ccu_nm_recalc_rate(struct clk_hw *hw, | ||
unsigned long parent_rate) | ||
{ | ||
struct ccu_nm *nm = hw_to_ccu_nm(hw); | ||
unsigned long n, m; | ||
u32 reg; | ||
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if (ccu_frac_helper_is_enabled(&nm->common, &nm->frac)) | ||
return ccu_frac_helper_read_rate(&nm->common, &nm->frac); | ||
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reg = readl(nm->common.base + nm->common.reg); | ||
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n = reg >> nm->n.shift; | ||
n &= (1 << nm->n.width) - 1; | ||
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m = reg >> nm->m.shift; | ||
m &= (1 << nm->m.width) - 1; | ||
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return parent_rate * (n + 1) / (m + 1); | ||
} | ||
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static long ccu_nm_round_rate(struct clk_hw *hw, unsigned long rate, | ||
unsigned long *parent_rate) | ||
{ | ||
struct ccu_nm *nm = hw_to_ccu_nm(hw); | ||
unsigned long n, m; | ||
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rational_best_approximation(rate, *parent_rate, | ||
1 << nm->n.width, 1 << nm->m.width, | ||
&n, &m); | ||
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return *parent_rate * n / m; | ||
} | ||
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static int ccu_nm_set_rate(struct clk_hw *hw, unsigned long rate, | ||
unsigned long parent_rate) | ||
{ | ||
struct ccu_nm *nm = hw_to_ccu_nm(hw); | ||
unsigned long flags; | ||
unsigned long n, m; | ||
u32 reg; | ||
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if (ccu_frac_helper_has_rate(&nm->common, &nm->frac, rate)) | ||
return ccu_frac_helper_set_rate(&nm->common, &nm->frac, rate); | ||
else | ||
ccu_frac_helper_disable(&nm->common, &nm->frac); | ||
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rational_best_approximation(rate, parent_rate, | ||
1 << nm->n.width, 1 << nm->m.width, | ||
&n, &m); | ||
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spin_lock_irqsave(nm->common.lock, flags); | ||
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reg = readl(nm->common.base + nm->common.reg); | ||
reg &= ~GENMASK(nm->n.width + nm->n.shift - 1, nm->n.shift); | ||
reg &= ~GENMASK(nm->m.width + nm->m.shift - 1, nm->m.shift); | ||
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writel(reg | ((m - 1) << nm->m.shift) | ((n - 1) << nm->n.shift), | ||
nm->common.base + nm->common.reg); | ||
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spin_unlock_irqrestore(nm->common.lock, flags); | ||
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ccu_helper_wait_for_lock(&nm->common, nm->lock); | ||
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return 0; | ||
} | ||
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const struct clk_ops ccu_nm_ops = { | ||
.disable = ccu_nm_disable, | ||
.enable = ccu_nm_enable, | ||
.is_enabled = ccu_nm_is_enabled, | ||
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.recalc_rate = ccu_nm_recalc_rate, | ||
.round_rate = ccu_nm_round_rate, | ||
.set_rate = ccu_nm_set_rate, | ||
}; |
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/* | ||
* Copyright (c) 2016 Maxime Ripard. All rights reserved. | ||
* | ||
* This software is licensed under the terms of the GNU General Public | ||
* License version 2, as published by the Free Software Foundation, and | ||
* may be copied, distributed, and modified under those terms. | ||
* | ||
* This program is distributed in the hope that it will be useful, | ||
* but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
* GNU General Public License for more details. | ||
*/ | ||
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#ifndef _CCU_NM_H_ | ||
#define _CCU_NM_H_ | ||
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#include <linux/clk-provider.h> | ||
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#include "ccu_common.h" | ||
#include "ccu_div.h" | ||
#include "ccu_frac.h" | ||
#include "ccu_mult.h" | ||
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/* | ||
* struct ccu_nm - Definition of an N-M clock | ||
* | ||
* Clocks based on the formula parent * N / M | ||
*/ | ||
struct ccu_nm { | ||
u32 enable; | ||
u32 lock; | ||
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struct _ccu_mult n; | ||
struct _ccu_div m; | ||
struct _ccu_frac frac; | ||
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struct ccu_common common; | ||
}; | ||
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#define SUNXI_CCU_NM_WITH_FRAC_GATE_LOCK(_struct, _name, _parent, _reg, \ | ||
_nshift, _nwidth, \ | ||
_mshift, _mwidth, \ | ||
_frac_en, _frac_sel, \ | ||
_frac_rate_0, _frac_rate_1, \ | ||
_gate, _lock, _flags) \ | ||
struct ccu_nm _struct = { \ | ||
.enable = _gate, \ | ||
.lock = _lock, \ | ||
.n = _SUNXI_CCU_MULT(_nshift, _nwidth), \ | ||
.m = _SUNXI_CCU_DIV(_mshift, _mwidth), \ | ||
.frac = _SUNXI_CCU_FRAC(_frac_en, _frac_sel, \ | ||
_frac_rate_0, \ | ||
_frac_rate_1), \ | ||
.common = { \ | ||
.reg = _reg, \ | ||
.features = CCU_FEATURE_FRACTIONAL, \ | ||
.hw.init = CLK_HW_INIT(_name, \ | ||
_parent, \ | ||
&ccu_nm_ops, \ | ||
_flags), \ | ||
}, \ | ||
} | ||
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#define SUNXI_CCU_NM_WITH_GATE_LOCK(_struct, _name, _parent, _reg, \ | ||
_nshift, _nwidth, \ | ||
_mshift, _mwidth, \ | ||
_gate, _lock, _flags) \ | ||
struct ccu_nm _struct = { \ | ||
.enable = _gate, \ | ||
.lock = _lock, \ | ||
.n = _SUNXI_CCU_MULT(_nshift, _nwidth), \ | ||
.m = _SUNXI_CCU_DIV(_mshift, _mwidth), \ | ||
.common = { \ | ||
.reg = _reg, \ | ||
.hw.init = CLK_HW_INIT(_name, \ | ||
_parent, \ | ||
&ccu_nm_ops, \ | ||
_flags), \ | ||
}, \ | ||
} | ||
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static inline struct ccu_nm *hw_to_ccu_nm(struct clk_hw *hw) | ||
{ | ||
struct ccu_common *common = hw_to_ccu_common(hw); | ||
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return container_of(common, struct ccu_nm, common); | ||
} | ||
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extern const struct clk_ops ccu_nm_ops; | ||
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#endif /* _CCU_NM_H_ */ |