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35e424e2c0
Split the DPLL3 M2 divider clock functions out of clock34xx.c and move them into mach-omap2/clkt34xx_dpll3m2.c. This is intended to make the clock code easier to understand, since all of the functions needed to manage the OMAP3 DPLL3 M2 divider are now located in their own file, rather than being mixed with other, unrelated functions. Clock debugging is also now more finely-grained, since the DEBUG macro can now be defined for the DPLL3 M2 clock alone. This should reduce unnecessary console noise when debugging DVFS. Also, if at some future point the mach-omap2/ directory is split into OMAP2/3/4 variants, this clkt file can be placed in the mach-omap34xx/ directory, rather than shared with other chip types that don't use this clock type. This patch also lays the groundwork to skip compilation of this code on OMAP3 chips that don't support DVFS (e.g., AM35xx) via the Makefile, rather than via #ifdefs. Thanks to Alexander Shishkin <virtuoso@slind.org> for his comments to improve the patch description. Signed-off-by: Paul Walmsley <paul@pwsan.com> Cc: Jouni Högander <jouni.hogander@nokia.com> Cc: Alexander Shishkin <virtuoso@slind.org>
121 lines
3.1 KiB
C
121 lines
3.1 KiB
C
/*
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* OMAP34xx M2 divider clock code
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*
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* Copyright (C) 2007-2008 Texas Instruments, Inc.
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* Copyright (C) 2007-2010 Nokia Corporation
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*
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* Paul Walmsley
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* Jouni Högander
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*
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* Parts of this code are based on code written by
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* Richard Woodruff, Tony Lindgren, Tuukka Tikkanen, Karthik Dasu
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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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#undef DEBUG
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#include <linux/kernel.h>
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#include <linux/errno.h>
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#include <linux/clk.h>
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#include <linux/io.h>
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#include <plat/clock.h>
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#include <plat/sram.h>
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#include <plat/sdrc.h>
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#include "clock.h"
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#include "clock34xx.h"
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#include "sdrc.h"
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#define CYCLES_PER_MHZ 1000000
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/*
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* CORE DPLL (DPLL3) M2 divider rate programming functions
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*
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* These call into SRAM code to do the actual CM writes, since the SDRAM
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* is clocked from DPLL3.
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*/
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/**
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* omap3_core_dpll_m2_set_rate - set CORE DPLL M2 divider
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* @clk: struct clk * of DPLL to set
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* @rate: rounded target rate
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*
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* Program the DPLL M2 divider with the rounded target rate. Returns
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* -EINVAL upon error, or 0 upon success.
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*/
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int omap3_core_dpll_m2_set_rate(struct clk *clk, unsigned long rate)
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{
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u32 new_div = 0;
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u32 unlock_dll = 0;
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u32 c;
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unsigned long validrate, sdrcrate, _mpurate;
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struct omap_sdrc_params *sdrc_cs0;
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struct omap_sdrc_params *sdrc_cs1;
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int ret;
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if (!clk || !rate)
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return -EINVAL;
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validrate = omap2_clksel_round_rate_div(clk, rate, &new_div);
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if (validrate != rate)
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return -EINVAL;
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sdrcrate = sdrc_ick_p->rate;
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if (rate > clk->rate)
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sdrcrate <<= ((rate / clk->rate) >> 1);
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else
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sdrcrate >>= ((clk->rate / rate) >> 1);
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ret = omap2_sdrc_get_params(sdrcrate, &sdrc_cs0, &sdrc_cs1);
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if (ret)
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return -EINVAL;
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if (sdrcrate < MIN_SDRC_DLL_LOCK_FREQ) {
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pr_debug("clock: will unlock SDRC DLL\n");
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unlock_dll = 1;
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}
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/*
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* XXX This only needs to be done when the CPU frequency changes
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*/
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_mpurate = arm_fck_p->rate / CYCLES_PER_MHZ;
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c = (_mpurate << SDRC_MPURATE_SCALE) >> SDRC_MPURATE_BASE_SHIFT;
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c += 1; /* for safety */
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c *= SDRC_MPURATE_LOOPS;
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c >>= SDRC_MPURATE_SCALE;
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if (c == 0)
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c = 1;
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pr_debug("clock: changing CORE DPLL rate from %lu to %lu\n", clk->rate,
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validrate);
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pr_debug("clock: SDRC CS0 timing params used:"
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" RFR %08x CTRLA %08x CTRLB %08x MR %08x\n",
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sdrc_cs0->rfr_ctrl, sdrc_cs0->actim_ctrla,
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sdrc_cs0->actim_ctrlb, sdrc_cs0->mr);
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if (sdrc_cs1)
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pr_debug("clock: SDRC CS1 timing params used: "
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" RFR %08x CTRLA %08x CTRLB %08x MR %08x\n",
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sdrc_cs1->rfr_ctrl, sdrc_cs1->actim_ctrla,
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sdrc_cs1->actim_ctrlb, sdrc_cs1->mr);
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if (sdrc_cs1)
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omap3_configure_core_dpll(
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new_div, unlock_dll, c, rate > clk->rate,
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sdrc_cs0->rfr_ctrl, sdrc_cs0->actim_ctrla,
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sdrc_cs0->actim_ctrlb, sdrc_cs0->mr,
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sdrc_cs1->rfr_ctrl, sdrc_cs1->actim_ctrla,
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sdrc_cs1->actim_ctrlb, sdrc_cs1->mr);
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else
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omap3_configure_core_dpll(
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new_div, unlock_dll, c, rate > clk->rate,
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sdrc_cs0->rfr_ctrl, sdrc_cs0->actim_ctrla,
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sdrc_cs0->actim_ctrlb, sdrc_cs0->mr,
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0, 0, 0, 0);
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return 0;
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}
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