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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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86 lines
3.1 KiB
C
86 lines
3.1 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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#include "prcm-common.h"
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extern struct omap_domain_base cm_base;
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extern struct omap_domain_base 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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* @xlate_clkctrl: ptr to the SoC CM-specific clkctrl xlate addr 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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u32 (*xlate_clkctrl)(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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u32 omap_cm_xlate_clkctrl(u8 part, u16 inst, u16 clkctrl_offs);
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extern int cm_register(const struct cm_ll_data *cld);
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extern int cm_unregister(const 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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