OMAP2/3 clock: split, rename omap2_wait_clock_ready()
Some OMAP2/3 hardware modules have CM_IDLEST attributes that are not handled by the current omap2_wait_clock_ready() code. In preparation for patches that fix the unusual devices, rename the function omap2_wait_clock_ready() to omap2_wait_module_ready() and split it into three parts: 1. A clkops-specific companion clock return function (by default, omap2_clk_dflt_find_companion()) 2. A clkops-specific CM_IDLEST register address and bit shift return function (by default, omap2_clk_dflt_find_idlest()) 3. Code to wait for the CM to indicate that the module is ready (omap2_cm_wait_idlest()) Clocks can now specify their own custom find_companion() and find_idlest() functions; used in subsequent patches. Signed-off-by: Paul Walmsley <paul@pwsan.com>
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@ -27,6 +27,7 @@
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#include <mach/clock.h>
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#include <mach/clockdomain.h>
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#include <mach/cpu.h>
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#include <mach/prcm.h>
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#include <asm/div64.h>
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#include <mach/sdrc.h>
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@ -38,8 +39,6 @@
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#include "cm-regbits-24xx.h"
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#include "cm-regbits-34xx.h"
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#define MAX_CLOCK_ENABLE_WAIT 100000
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/* DPLL rate rounding: minimum DPLL multiplier, divider values */
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#define DPLL_MIN_MULTIPLIER 1
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#define DPLL_MIN_DIVIDER 1
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@ -274,83 +273,97 @@ unsigned long omap2_fixed_divisor_recalc(struct clk *clk)
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}
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/**
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* omap2_wait_clock_ready - wait for clock to enable
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* @reg: physical address of clock IDLEST register
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* @mask: value to mask against to determine if the clock is active
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* @name: name of the clock (for printk)
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* omap2_clk_dflt_find_companion - find companion clock to @clk
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* @clk: struct clk * to find the companion clock of
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* @other_reg: void __iomem ** to return the companion clock CM_*CLKEN va in
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* @other_bit: u8 ** to return the companion clock bit shift in
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*
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* Returns 1 if the clock enabled in time, or 0 if it failed to enable
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* in roughly MAX_CLOCK_ENABLE_WAIT microseconds.
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*/
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int omap2_wait_clock_ready(void __iomem *reg, u32 mask, const char *name)
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{
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int i = 0;
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int ena = 0;
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/*
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* 24xx uses 0 to indicate not ready, and 1 to indicate ready.
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* 34xx reverses this, just to keep us on our toes
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*/
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if (cpu_mask & (RATE_IN_242X | RATE_IN_243X))
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ena = mask;
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else if (cpu_mask & RATE_IN_343X)
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ena = 0;
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/* Wait for lock */
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while (((__raw_readl(reg) & mask) != ena) &&
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(i++ < MAX_CLOCK_ENABLE_WAIT)) {
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udelay(1);
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}
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if (i <= MAX_CLOCK_ENABLE_WAIT)
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pr_debug("Clock %s stable after %d loops\n", name, i);
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else
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printk(KERN_ERR "Clock %s didn't enable in %d tries\n",
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name, MAX_CLOCK_ENABLE_WAIT);
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return (i < MAX_CLOCK_ENABLE_WAIT) ? 1 : 0;
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};
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/*
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* Note: We don't need special code here for INVERT_ENABLE
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* for the time being since INVERT_ENABLE only applies to clocks enabled by
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* Note: We don't need special code here for INVERT_ENABLE for the
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* time being since INVERT_ENABLE only applies to clocks enabled by
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* CM_CLKEN_PLL
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*
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* Convert CM_ICLKEN* <-> CM_FCLKEN*. This conversion assumes it's
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* just a matter of XORing the bits.
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*
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* Some clocks don't have companion clocks. For example, modules with
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* only an interface clock (such as MAILBOXES) don't have a companion
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* clock. Right now, this code relies on the hardware exporting a bit
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* in the correct companion register that indicates that the
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* nonexistent 'companion clock' is active. Future patches will
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* associate this type of code with per-module data structures to
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* avoid this issue, and remove the casts. No return value.
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*/
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static void omap2_clk_wait_ready(struct clk *clk)
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void omap2_clk_dflt_find_companion(struct clk *clk, void __iomem **other_reg,
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u8 *other_bit)
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{
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void __iomem *reg, *other_reg, *st_reg;
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u32 bit;
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/*
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* REVISIT: This code is pretty ugly. It would be nice to generalize
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* it and pull it into struct clk itself somehow.
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*/
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reg = clk->enable_reg;
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u32 r;
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/*
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* Convert CM_ICLKEN* <-> CM_FCLKEN*. This conversion assumes
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* it's just a matter of XORing the bits.
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*/
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other_reg = (void __iomem *)((u32)reg ^ (CM_FCLKEN ^ CM_ICLKEN));
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r = ((__force u32)clk->enable_reg ^ (CM_FCLKEN ^ CM_ICLKEN));
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/* Check if both functional and interface clocks
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* are running. */
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bit = 1 << clk->enable_bit;
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if (!(__raw_readl(other_reg) & bit))
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return;
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st_reg = (void __iomem *)(((u32)other_reg & ~0xf0) | 0x20); /* CM_IDLEST* */
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omap2_wait_clock_ready(st_reg, bit, clk->name);
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*other_reg = (__force void __iomem *)r;
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*other_bit = clk->enable_bit;
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}
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static int omap2_dflt_clk_enable(struct clk *clk)
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/**
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* omap2_clk_dflt_find_idlest - find CM_IDLEST reg va, bit shift for @clk
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* @clk: struct clk * to find IDLEST info for
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* @idlest_reg: void __iomem ** to return the CM_IDLEST va in
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* @idlest_bit: u8 ** to return the CM_IDLEST bit shift in
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*
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* Return the CM_IDLEST register address and bit shift corresponding
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* to the module that "owns" this clock. This default code assumes
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* that the CM_IDLEST bit shift is the CM_*CLKEN bit shift, and that
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* the IDLEST register address ID corresponds to the CM_*CLKEN
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* register address ID (e.g., that CM_FCLKEN2 corresponds to
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* CM_IDLEST2). This is not true for all modules. No return value.
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*/
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void omap2_clk_dflt_find_idlest(struct clk *clk, void __iomem **idlest_reg,
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u8 *idlest_bit)
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{
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u32 r;
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r = (((__force u32)clk->enable_reg & ~0xf0) | 0x20);
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*idlest_reg = (__force void __iomem *)r;
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*idlest_bit = clk->enable_bit;
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}
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/**
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* omap2_module_wait_ready - wait for an OMAP module to leave IDLE
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* @clk: struct clk * belonging to the module
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*
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* If the necessary clocks for the OMAP hardware IP block that
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* corresponds to clock @clk are enabled, then wait for the module to
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* indicate readiness (i.e., to leave IDLE). This code does not
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* belong in the clock code and will be moved in the medium term to
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* module-dependent code. No return value.
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*/
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static void omap2_module_wait_ready(struct clk *clk)
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{
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void __iomem *companion_reg, *idlest_reg;
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u8 other_bit, idlest_bit;
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/* Not all modules have multiple clocks that their IDLEST depends on */
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if (clk->ops->find_companion) {
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clk->ops->find_companion(clk, &companion_reg, &other_bit);
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if (!(__raw_readl(companion_reg) & (1 << other_bit)))
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return;
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}
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clk->ops->find_idlest(clk, &idlest_reg, &idlest_bit);
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omap2_cm_wait_idlest(idlest_reg, (1 << idlest_bit), clk->name);
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}
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int omap2_dflt_clk_enable(struct clk *clk)
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{
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u32 v;
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if (unlikely(clk->enable_reg == NULL)) {
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printk(KERN_ERR "clock.c: Enable for %s without enable code\n",
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pr_err("clock.c: Enable for %s without enable code\n",
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clk->name);
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return 0; /* REVISIT: -EINVAL */
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}
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@ -363,26 +376,13 @@ static int omap2_dflt_clk_enable(struct clk *clk)
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__raw_writel(v, clk->enable_reg);
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v = __raw_readl(clk->enable_reg); /* OCP barrier */
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if (clk->ops->find_idlest)
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omap2_module_wait_ready(clk);
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return 0;
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}
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static int omap2_dflt_clk_enable_wait(struct clk *clk)
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{
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int ret;
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if (!clk->enable_reg) {
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printk(KERN_ERR "clock.c: Enable for %s without enable code\n",
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clk->name);
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return 0; /* REVISIT: -EINVAL */
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}
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ret = omap2_dflt_clk_enable(clk);
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if (ret == 0)
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omap2_clk_wait_ready(clk);
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return ret;
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}
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static void omap2_dflt_clk_disable(struct clk *clk)
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void omap2_dflt_clk_disable(struct clk *clk)
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{
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u32 v;
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@ -406,8 +406,10 @@ static void omap2_dflt_clk_disable(struct clk *clk)
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}
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const struct clkops clkops_omap2_dflt_wait = {
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.enable = omap2_dflt_clk_enable_wait,
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.enable = omap2_dflt_clk_enable,
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.disable = omap2_dflt_clk_disable,
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.find_companion = omap2_clk_dflt_find_companion,
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.find_idlest = omap2_clk_dflt_find_idlest,
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};
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const struct clkops clkops_omap2_dflt = {
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@ -65,6 +65,12 @@ int omap2_clksel_set_rate(struct clk *clk, unsigned long rate);
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u32 omap2_get_dpll_rate(struct clk *clk);
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int omap2_wait_clock_ready(void __iomem *reg, u32 cval, const char *name);
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void omap2_clk_prepare_for_reboot(void);
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int omap2_dflt_clk_enable(struct clk *clk);
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void omap2_dflt_clk_disable(struct clk *clk);
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void omap2_clk_dflt_find_companion(struct clk *clk, void __iomem **other_reg,
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u8 *other_bit);
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void omap2_clk_dflt_find_idlest(struct clk *clk, void __iomem **idlest_reg,
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u8 *idlest_bit);
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extern const struct clkops clkops_omap2_dflt_wait;
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extern const struct clkops clkops_omap2_dflt;
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@ -17,6 +17,7 @@
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#include <linux/init.h>
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#include <linux/clk.h>
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#include <linux/io.h>
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#include <linux/delay.h>
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#include <mach/common.h>
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#include <mach/prcm.h>
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static void __iomem *prm_base;
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static void __iomem *cm_base;
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#define MAX_MODULE_ENABLE_WAIT 100000
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u32 omap_prcm_get_reset_sources(void)
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{
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/* XXX This presumably needs modification for 34XX */
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}
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EXPORT_SYMBOL(cm_rmw_mod_reg_bits);
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/**
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* omap2_cm_wait_idlest - wait for IDLEST bit to indicate module readiness
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* @reg: physical address of module IDLEST register
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* @mask: value to mask against to determine if the module is active
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* @name: name of the clock (for printk)
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*
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* Returns 1 if the module indicated readiness in time, or 0 if it
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* failed to enable in roughly MAX_MODULE_ENABLE_WAIT microseconds.
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*/
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int omap2_cm_wait_idlest(void __iomem *reg, u32 mask, const char *name)
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{
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int i = 0;
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int ena = 0;
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/*
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* 24xx uses 0 to indicate not ready, and 1 to indicate ready.
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* 34xx reverses this, just to keep us on our toes
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*/
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if (cpu_is_omap24xx())
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ena = mask;
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else if (cpu_is_omap34xx())
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ena = 0;
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else
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BUG();
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/* Wait for lock */
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while (((__raw_readl(reg) & mask) != ena) &&
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(i++ < MAX_MODULE_ENABLE_WAIT))
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udelay(1);
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if (i < MAX_MODULE_ENABLE_WAIT)
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pr_debug("cm: Module associated with clock %s ready after %d "
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"loops\n", name, i);
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else
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pr_err("cm: Module associated with clock %s didn't enable in "
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"%d tries\n", name, MAX_MODULE_ENABLE_WAIT);
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return (i < MAX_MODULE_ENABLE_WAIT) ? 1 : 0;
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};
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void __init omap2_set_globals_prcm(struct omap_globals *omap2_globals)
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{
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prm_base = omap2_globals->prm;
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struct clkops {
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int (*enable)(struct clk *);
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void (*disable)(struct clk *);
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void (*find_idlest)(struct clk *, void __iomem **, u8 *);
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void (*find_companion)(struct clk *, void __iomem **, u8 *);
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};
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#if defined(CONFIG_ARCH_OMAP2) || defined(CONFIG_ARCH_OMAP3) || \
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@ -25,6 +25,7 @@
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u32 omap_prcm_get_reset_sources(void);
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void omap_prcm_arch_reset(char mode);
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int omap2_cm_wait_idlest(void __iomem *reg, u32 mask, const char *name);
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#endif
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