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6c0afb5039
Currently, TI clock driver uses an encapsulated struct that is cast into a void pointer to store all register addresses. This can be considered as rather nasty hackery, and prevents from expanding the register address field also. Instead, replace all the code to use proper struct in place for this, which contains all the previously used data. This patch is rather large as it is touching multiple files, but this can't be split up as we need to avoid any boot breakage. Signed-off-by: Tero Kristo <t-kristo@ti.com> Acked-by: Tony Lindgren <tony@atomide.com>
80 lines
2.8 KiB
C
80 lines
2.8 KiB
C
/*
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* OMAP2+ Clock Management prototypes
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*
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* Copyright (C) 2007-2009, 2012 Texas Instruments, Inc.
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* Copyright (C) 2007-2009 Nokia Corporation
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*
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* Written by Paul Walmsley
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*/
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#ifndef __ARCH_ASM_MACH_OMAP2_CM_H
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#define __ARCH_ASM_MACH_OMAP2_CM_H
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/*
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* MAX_MODULE_READY_TIME: max duration in microseconds to wait for the
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* PRCM to request that a module exit the inactive state in the case of
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* OMAP2 & 3.
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* In the case of OMAP4 this is the max duration in microseconds for the
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* module to reach the functionnal state from an inactive state.
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*/
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#define MAX_MODULE_READY_TIME 2000
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# ifndef __ASSEMBLER__
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#include <linux/clk/ti.h>
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extern void __iomem *cm_base;
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extern void __iomem *cm2_base;
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extern void omap2_set_globals_cm(void __iomem *cm, void __iomem *cm2);
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# endif
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/*
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* MAX_MODULE_DISABLE_TIME: max duration in microseconds to wait for
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* the PRCM to request that a module enter the inactive state in the
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* case of OMAP2 & 3. In the case of OMAP4 this is the max duration
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* in microseconds for the module to reach the inactive state from
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* a functional state.
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* XXX FSUSB on OMAP4430 takes ~4ms to idle after reset during
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* kernel init.
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*/
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#define MAX_MODULE_DISABLE_TIME 5000
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# ifndef __ASSEMBLER__
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/**
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* struct cm_ll_data - fn ptrs to per-SoC CM function implementations
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* @split_idlest_reg: ptr to the SoC CM-specific split_idlest_reg impl
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* @wait_module_ready: ptr to the SoC CM-specific wait_module_ready impl
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* @wait_module_idle: ptr to the SoC CM-specific wait_module_idle impl
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* @module_enable: ptr to the SoC CM-specific module_enable impl
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* @module_disable: ptr to the SoC CM-specific module_disable impl
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*/
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struct cm_ll_data {
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int (*split_idlest_reg)(struct clk_omap_reg *idlest_reg, s16 *prcm_inst,
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u8 *idlest_reg_id);
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int (*wait_module_ready)(u8 part, s16 prcm_mod, u16 idlest_reg,
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u8 idlest_shift);
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int (*wait_module_idle)(u8 part, s16 prcm_mod, u16 idlest_reg,
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u8 idlest_shift);
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void (*module_enable)(u8 mode, u8 part, u16 inst, u16 clkctrl_offs);
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void (*module_disable)(u8 part, u16 inst, u16 clkctrl_offs);
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};
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extern int cm_split_idlest_reg(struct clk_omap_reg *idlest_reg, s16 *prcm_inst,
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u8 *idlest_reg_id);
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int omap_cm_wait_module_ready(u8 part, s16 prcm_mod, u16 idlest_reg,
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u8 idlest_shift);
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int omap_cm_wait_module_idle(u8 part, s16 prcm_mod, u16 idlest_reg,
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u8 idlest_shift);
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int omap_cm_module_enable(u8 mode, u8 part, u16 inst, u16 clkctrl_offs);
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int omap_cm_module_disable(u8 part, u16 inst, u16 clkctrl_offs);
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extern int cm_register(struct cm_ll_data *cld);
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extern int cm_unregister(struct cm_ll_data *cld);
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int omap_cm_init(void);
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int omap2_cm_base_init(void);
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# endif
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#endif
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