dispc.c 110.1 KB
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/*
 * linux/drivers/video/omap2/dss/dispc.c
 *
 * Copyright (C) 2009 Nokia Corporation
 * Author: Tomi Valkeinen <tomi.valkeinen@nokia.com>
 *
 * Some code and ideas taken from drivers/video/omap/ driver
 * by Imre Deak.
 *
 * This program is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License version 2 as published by
 * the Free Software Foundation.
 *
 * 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.
 *
 * You should have received a copy of the GNU General Public License along with
 * this program.  If not, see <http://www.gnu.org/licenses/>.
 */

#define DSS_SUBSYS_NAME "DISPC"

#include <linux/kernel.h>
#include <linux/dma-mapping.h>
#include <linux/vmalloc.h>
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#include <linux/export.h>
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#include <linux/clk.h>
#include <linux/io.h>
#include <linux/jiffies.h>
#include <linux/seq_file.h>
#include <linux/delay.h>
#include <linux/workqueue.h>
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#include <linux/hardirq.h>
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#include <linux/platform_device.h>
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#include <linux/pm_runtime.h>
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#include <linux/sizes.h>
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#include <linux/mfd/syscon.h>
#include <linux/regmap.h>
#include <linux/of.h>
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#include <linux/component.h>
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#include "omapdss.h"
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#include "dss.h"
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#include "dss_features.h"
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#include "dispc.h"
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/* DISPC */
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#define DISPC_SZ_REGS			SZ_4K
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enum omap_burst_size {
	BURST_SIZE_X2 = 0,
	BURST_SIZE_X4 = 1,
	BURST_SIZE_X8 = 2,
};

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#define REG_GET(idx, start, end) \
	FLD_GET(dispc_read_reg(idx), start, end)

#define REG_FLD_MOD(idx, val, start, end)				\
	dispc_write_reg(idx, FLD_MOD(dispc_read_reg(idx), val, start, end))

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struct dispc_features {
	u8 sw_start;
	u8 fp_start;
	u8 bp_start;
	u16 sw_max;
	u16 vp_max;
	u16 hp_max;
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	u8 mgr_width_start;
	u8 mgr_height_start;
	u16 mgr_width_max;
	u16 mgr_height_max;
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	unsigned long max_lcd_pclk;
	unsigned long max_tv_pclk;
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	int (*calc_scaling) (unsigned long pclk, unsigned long lclk,
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		const struct omap_video_timings *mgr_timings,
		u16 width, u16 height, u16 out_width, u16 out_height,
		enum omap_color_mode color_mode, bool *five_taps,
		int *x_predecim, int *y_predecim, int *decim_x, int *decim_y,
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		u16 pos_x, unsigned long *core_clk, bool mem_to_mem);
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	unsigned long (*calc_core_clk) (unsigned long pclk,
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		u16 width, u16 height, u16 out_width, u16 out_height,
		bool mem_to_mem);
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	u8 num_fifos;
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	/* swap GFX & WB fifos */
	bool gfx_fifo_workaround:1;
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	/* no DISPC_IRQ_FRAMEDONETV on this SoC */
	bool no_framedone_tv:1;
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	/* revert to the OMAP4 mechanism of DISPC Smart Standby operation */
	bool mstandby_workaround:1;
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	bool set_max_preload:1;
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	/* PIXEL_INC is not added to the last pixel of a line */
	bool last_pixel_inc_missing:1;
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	/* POL_FREQ has ALIGN bit */
	bool supports_sync_align:1;
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	bool has_writeback:1;
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	bool supports_double_pixel:1;
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	/*
	 * Field order for VENC is different than HDMI. We should handle this in
	 * some intelligent manner, but as the SoCs have either HDMI or VENC,
	 * never both, we can just use this flag for now.
	 */
	bool reverse_ilace_field_order:1;
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	bool has_gamma_table:1;
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	bool has_gamma_i734_bug:1;
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};

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#define DISPC_MAX_NR_FIFOS 5
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#define DISPC_MAX_CHANNEL_GAMMA 4
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static struct {
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	struct platform_device *pdev;
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	void __iomem    *base;
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	int irq;
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	irq_handler_t user_handler;
	void *user_data;
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	unsigned long core_clk_rate;
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	unsigned long tv_pclk_rate;
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	u32 fifo_size[DISPC_MAX_NR_FIFOS];
	/* maps which plane is using a fifo. fifo-id -> plane-id */
	int fifo_assignment[DISPC_MAX_NR_FIFOS];
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	bool		ctx_valid;
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	u32		ctx[DISPC_SZ_REGS / sizeof(u32)];
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	u32 *gamma_table[DISPC_MAX_CHANNEL_GAMMA];

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	const struct dispc_features *feat;
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	bool is_enabled;
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	struct regmap *syscon_pol;
	u32 syscon_pol_offset;
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	/* DISPC_CONTROL & DISPC_CONFIG lock*/
	spinlock_t control_lock;
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} dispc;

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enum omap_color_component {
	/* used for all color formats for OMAP3 and earlier
	 * and for RGB and Y color component on OMAP4
	 */
	DISPC_COLOR_COMPONENT_RGB_Y		= 1 << 0,
	/* used for UV component for
	 * OMAP_DSS_COLOR_YUV2, OMAP_DSS_COLOR_UYVY, OMAP_DSS_COLOR_NV12
	 * color formats on OMAP4
	 */
	DISPC_COLOR_COMPONENT_UV		= 1 << 1,
};

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enum mgr_reg_fields {
	DISPC_MGR_FLD_ENABLE,
	DISPC_MGR_FLD_STNTFT,
	DISPC_MGR_FLD_GO,
	DISPC_MGR_FLD_TFTDATALINES,
	DISPC_MGR_FLD_STALLMODE,
	DISPC_MGR_FLD_TCKENABLE,
	DISPC_MGR_FLD_TCKSELECTION,
	DISPC_MGR_FLD_CPR,
	DISPC_MGR_FLD_FIFOHANDCHECK,
	/* used to maintain a count of the above fields */
	DISPC_MGR_FLD_NUM,
};

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struct dispc_reg_field {
	u16 reg;
	u8 high;
	u8 low;
};

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struct dispc_gamma_desc {
	u32 len;
	u32 bits;
	u16 reg;
	bool has_index;
};

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static const struct {
	const char *name;
	u32 vsync_irq;
	u32 framedone_irq;
	u32 sync_lost_irq;
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	struct dispc_gamma_desc gamma;
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	struct dispc_reg_field reg_desc[DISPC_MGR_FLD_NUM];
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} mgr_desc[] = {
	[OMAP_DSS_CHANNEL_LCD] = {
		.name		= "LCD",
		.vsync_irq	= DISPC_IRQ_VSYNC,
		.framedone_irq	= DISPC_IRQ_FRAMEDONE,
		.sync_lost_irq	= DISPC_IRQ_SYNC_LOST,
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		.gamma		= {
			.len	= 256,
			.bits	= 8,
			.reg	= DISPC_GAMMA_TABLE0,
			.has_index = true,
		},
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		.reg_desc	= {
			[DISPC_MGR_FLD_ENABLE]		= { DISPC_CONTROL,  0,  0 },
			[DISPC_MGR_FLD_STNTFT]		= { DISPC_CONTROL,  3,  3 },
			[DISPC_MGR_FLD_GO]		= { DISPC_CONTROL,  5,  5 },
			[DISPC_MGR_FLD_TFTDATALINES]	= { DISPC_CONTROL,  9,  8 },
			[DISPC_MGR_FLD_STALLMODE]	= { DISPC_CONTROL, 11, 11 },
			[DISPC_MGR_FLD_TCKENABLE]	= { DISPC_CONFIG,  10, 10 },
			[DISPC_MGR_FLD_TCKSELECTION]	= { DISPC_CONFIG,  11, 11 },
			[DISPC_MGR_FLD_CPR]		= { DISPC_CONFIG,  15, 15 },
			[DISPC_MGR_FLD_FIFOHANDCHECK]	= { DISPC_CONFIG,  16, 16 },
		},
	},
	[OMAP_DSS_CHANNEL_DIGIT] = {
		.name		= "DIGIT",
		.vsync_irq	= DISPC_IRQ_EVSYNC_ODD | DISPC_IRQ_EVSYNC_EVEN,
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		.framedone_irq	= DISPC_IRQ_FRAMEDONETV,
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		.sync_lost_irq	= DISPC_IRQ_SYNC_LOST_DIGIT,
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		.gamma		= {
			.len	= 1024,
			.bits	= 10,
			.reg	= DISPC_GAMMA_TABLE2,
			.has_index = false,
		},
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		.reg_desc	= {
			[DISPC_MGR_FLD_ENABLE]		= { DISPC_CONTROL,  1,  1 },
			[DISPC_MGR_FLD_STNTFT]		= { },
			[DISPC_MGR_FLD_GO]		= { DISPC_CONTROL,  6,  6 },
			[DISPC_MGR_FLD_TFTDATALINES]	= { },
			[DISPC_MGR_FLD_STALLMODE]	= { },
			[DISPC_MGR_FLD_TCKENABLE]	= { DISPC_CONFIG,  12, 12 },
			[DISPC_MGR_FLD_TCKSELECTION]	= { DISPC_CONFIG,  13, 13 },
			[DISPC_MGR_FLD_CPR]		= { },
			[DISPC_MGR_FLD_FIFOHANDCHECK]	= { DISPC_CONFIG,  16, 16 },
		},
	},
	[OMAP_DSS_CHANNEL_LCD2] = {
		.name		= "LCD2",
		.vsync_irq	= DISPC_IRQ_VSYNC2,
		.framedone_irq	= DISPC_IRQ_FRAMEDONE2,
		.sync_lost_irq	= DISPC_IRQ_SYNC_LOST2,
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		.gamma		= {
			.len	= 256,
			.bits	= 8,
			.reg	= DISPC_GAMMA_TABLE1,
			.has_index = true,
		},
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		.reg_desc	= {
			[DISPC_MGR_FLD_ENABLE]		= { DISPC_CONTROL2,  0,  0 },
			[DISPC_MGR_FLD_STNTFT]		= { DISPC_CONTROL2,  3,  3 },
			[DISPC_MGR_FLD_GO]		= { DISPC_CONTROL2,  5,  5 },
			[DISPC_MGR_FLD_TFTDATALINES]	= { DISPC_CONTROL2,  9,  8 },
			[DISPC_MGR_FLD_STALLMODE]	= { DISPC_CONTROL2, 11, 11 },
			[DISPC_MGR_FLD_TCKENABLE]	= { DISPC_CONFIG2,  10, 10 },
			[DISPC_MGR_FLD_TCKSELECTION]	= { DISPC_CONFIG2,  11, 11 },
			[DISPC_MGR_FLD_CPR]		= { DISPC_CONFIG2,  15, 15 },
			[DISPC_MGR_FLD_FIFOHANDCHECK]	= { DISPC_CONFIG2,  16, 16 },
		},
	},
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	[OMAP_DSS_CHANNEL_LCD3] = {
		.name		= "LCD3",
		.vsync_irq	= DISPC_IRQ_VSYNC3,
		.framedone_irq	= DISPC_IRQ_FRAMEDONE3,
		.sync_lost_irq	= DISPC_IRQ_SYNC_LOST3,
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		.gamma		= {
			.len	= 256,
			.bits	= 8,
			.reg	= DISPC_GAMMA_TABLE3,
			.has_index = true,
		},
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		.reg_desc	= {
			[DISPC_MGR_FLD_ENABLE]		= { DISPC_CONTROL3,  0,  0 },
			[DISPC_MGR_FLD_STNTFT]		= { DISPC_CONTROL3,  3,  3 },
			[DISPC_MGR_FLD_GO]		= { DISPC_CONTROL3,  5,  5 },
			[DISPC_MGR_FLD_TFTDATALINES]	= { DISPC_CONTROL3,  9,  8 },
			[DISPC_MGR_FLD_STALLMODE]	= { DISPC_CONTROL3, 11, 11 },
			[DISPC_MGR_FLD_TCKENABLE]	= { DISPC_CONFIG3,  10, 10 },
			[DISPC_MGR_FLD_TCKSELECTION]	= { DISPC_CONFIG3,  11, 11 },
			[DISPC_MGR_FLD_CPR]		= { DISPC_CONFIG3,  15, 15 },
			[DISPC_MGR_FLD_FIFOHANDCHECK]	= { DISPC_CONFIG3,  16, 16 },
		},
	},
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};

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struct color_conv_coef {
	int ry, rcr, rcb, gy, gcr, gcb, by, bcr, bcb;
	int full_range;
};

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static unsigned long dispc_fclk_rate(void);
static unsigned long dispc_core_clk_rate(void);
static unsigned long dispc_mgr_lclk_rate(enum omap_channel channel);
static unsigned long dispc_mgr_pclk_rate(enum omap_channel channel);

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static unsigned long dispc_plane_pclk_rate(enum omap_plane plane);
static unsigned long dispc_plane_lclk_rate(enum omap_plane plane);
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static inline void dispc_write_reg(const u16 idx, u32 val)
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{
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	__raw_writel(val, dispc.base + idx);
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}

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static inline u32 dispc_read_reg(const u16 idx)
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{
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	return __raw_readl(dispc.base + idx);
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}

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static u32 mgr_fld_read(enum omap_channel channel, enum mgr_reg_fields regfld)
{
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	const struct dispc_reg_field rfld = mgr_desc[channel].reg_desc[regfld];
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	return REG_GET(rfld.reg, rfld.high, rfld.low);
}

static void mgr_fld_write(enum omap_channel channel,
					enum mgr_reg_fields regfld, int val) {
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	const struct dispc_reg_field rfld = mgr_desc[channel].reg_desc[regfld];
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	const bool need_lock = rfld.reg == DISPC_CONTROL || rfld.reg == DISPC_CONFIG;
	unsigned long flags;

	if (need_lock)
		spin_lock_irqsave(&dispc.control_lock, flags);

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	REG_FLD_MOD(rfld.reg, val, rfld.high, rfld.low);
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	if (need_lock)
		spin_unlock_irqrestore(&dispc.control_lock, flags);
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}

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#define SR(reg) \
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	dispc.ctx[DISPC_##reg / sizeof(u32)] = dispc_read_reg(DISPC_##reg)
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#define RR(reg) \
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	dispc_write_reg(DISPC_##reg, dispc.ctx[DISPC_##reg / sizeof(u32)])
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static void dispc_save_context(void)
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{
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	int i, j;
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	DSSDBG("dispc_save_context\n");

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	SR(IRQENABLE);
	SR(CONTROL);
	SR(CONFIG);
	SR(LINE_NUMBER);
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	if (dss_has_feature(FEAT_ALPHA_FIXED_ZORDER) ||
			dss_has_feature(FEAT_ALPHA_FREE_ZORDER))
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		SR(GLOBAL_ALPHA);
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	if (dss_has_feature(FEAT_MGR_LCD2)) {
		SR(CONTROL2);
		SR(CONFIG2);
	}
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	if (dss_has_feature(FEAT_MGR_LCD3)) {
		SR(CONTROL3);
		SR(CONFIG3);
	}
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	for (i = 0; i < dss_feat_get_num_mgrs(); i++) {
		SR(DEFAULT_COLOR(i));
		SR(TRANS_COLOR(i));
		SR(SIZE_MGR(i));
		if (i == OMAP_DSS_CHANNEL_DIGIT)
			continue;
		SR(TIMING_H(i));
		SR(TIMING_V(i));
		SR(POL_FREQ(i));
		SR(DIVISORo(i));

		SR(DATA_CYCLE1(i));
		SR(DATA_CYCLE2(i));
		SR(DATA_CYCLE3(i));

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		if (dss_has_feature(FEAT_CPR)) {
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			SR(CPR_COEF_R(i));
			SR(CPR_COEF_G(i));
			SR(CPR_COEF_B(i));
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		}
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	}
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	for (i = 0; i < dss_feat_get_num_ovls(); i++) {
		SR(OVL_BA0(i));
		SR(OVL_BA1(i));
		SR(OVL_POSITION(i));
		SR(OVL_SIZE(i));
		SR(OVL_ATTRIBUTES(i));
		SR(OVL_FIFO_THRESHOLD(i));
		SR(OVL_ROW_INC(i));
		SR(OVL_PIXEL_INC(i));
		if (dss_has_feature(FEAT_PRELOAD))
			SR(OVL_PRELOAD(i));
		if (i == OMAP_DSS_GFX) {
			SR(OVL_WINDOW_SKIP(i));
			SR(OVL_TABLE_BA(i));
			continue;
		}
		SR(OVL_FIR(i));
		SR(OVL_PICTURE_SIZE(i));
		SR(OVL_ACCU0(i));
		SR(OVL_ACCU1(i));
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		for (j = 0; j < 8; j++)
			SR(OVL_FIR_COEF_H(i, j));
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		for (j = 0; j < 8; j++)
			SR(OVL_FIR_COEF_HV(i, j));
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		for (j = 0; j < 5; j++)
			SR(OVL_CONV_COEF(i, j));
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		if (dss_has_feature(FEAT_FIR_COEF_V)) {
			for (j = 0; j < 8; j++)
				SR(OVL_FIR_COEF_V(i, j));
		}
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		if (dss_has_feature(FEAT_HANDLE_UV_SEPARATE)) {
			SR(OVL_BA0_UV(i));
			SR(OVL_BA1_UV(i));
			SR(OVL_FIR2(i));
			SR(OVL_ACCU2_0(i));
			SR(OVL_ACCU2_1(i));
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			for (j = 0; j < 8; j++)
				SR(OVL_FIR_COEF_H2(i, j));
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			for (j = 0; j < 8; j++)
				SR(OVL_FIR_COEF_HV2(i, j));
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			for (j = 0; j < 8; j++)
				SR(OVL_FIR_COEF_V2(i, j));
		}
		if (dss_has_feature(FEAT_ATTR2))
			SR(OVL_ATTRIBUTES2(i));
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	}
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	if (dss_has_feature(FEAT_CORE_CLK_DIV))
		SR(DIVISOR);
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	dispc.ctx_valid = true;

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	DSSDBG("context saved\n");
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}

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static void dispc_restore_context(void)
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{
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	int i, j;
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	DSSDBG("dispc_restore_context\n");

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	if (!dispc.ctx_valid)
		return;

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	/*RR(IRQENABLE);*/
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	/*RR(CONTROL);*/
	RR(CONFIG);
	RR(LINE_NUMBER);
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	if (dss_has_feature(FEAT_ALPHA_FIXED_ZORDER) ||
			dss_has_feature(FEAT_ALPHA_FREE_ZORDER))
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		RR(GLOBAL_ALPHA);
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	if (dss_has_feature(FEAT_MGR_LCD2))
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		RR(CONFIG2);
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	if (dss_has_feature(FEAT_MGR_LCD3))
		RR(CONFIG3);
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	for (i = 0; i < dss_feat_get_num_mgrs(); i++) {
		RR(DEFAULT_COLOR(i));
		RR(TRANS_COLOR(i));
		RR(SIZE_MGR(i));
		if (i == OMAP_DSS_CHANNEL_DIGIT)
			continue;
		RR(TIMING_H(i));
		RR(TIMING_V(i));
		RR(POL_FREQ(i));
		RR(DIVISORo(i));

		RR(DATA_CYCLE1(i));
		RR(DATA_CYCLE2(i));
		RR(DATA_CYCLE3(i));
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		if (dss_has_feature(FEAT_CPR)) {
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			RR(CPR_COEF_R(i));
			RR(CPR_COEF_G(i));
			RR(CPR_COEF_B(i));
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		}
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	}
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	for (i = 0; i < dss_feat_get_num_ovls(); i++) {
		RR(OVL_BA0(i));
		RR(OVL_BA1(i));
		RR(OVL_POSITION(i));
		RR(OVL_SIZE(i));
		RR(OVL_ATTRIBUTES(i));
		RR(OVL_FIFO_THRESHOLD(i));
		RR(OVL_ROW_INC(i));
		RR(OVL_PIXEL_INC(i));
		if (dss_has_feature(FEAT_PRELOAD))
			RR(OVL_PRELOAD(i));
		if (i == OMAP_DSS_GFX) {
			RR(OVL_WINDOW_SKIP(i));
			RR(OVL_TABLE_BA(i));
			continue;
		}
		RR(OVL_FIR(i));
		RR(OVL_PICTURE_SIZE(i));
		RR(OVL_ACCU0(i));
		RR(OVL_ACCU1(i));
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		for (j = 0; j < 8; j++)
			RR(OVL_FIR_COEF_H(i, j));
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		for (j = 0; j < 8; j++)
			RR(OVL_FIR_COEF_HV(i, j));
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		for (j = 0; j < 5; j++)
			RR(OVL_CONV_COEF(i, j));
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		if (dss_has_feature(FEAT_FIR_COEF_V)) {
			for (j = 0; j < 8; j++)
				RR(OVL_FIR_COEF_V(i, j));
		}
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530 531 532 533 534 535
		if (dss_has_feature(FEAT_HANDLE_UV_SEPARATE)) {
			RR(OVL_BA0_UV(i));
			RR(OVL_BA1_UV(i));
			RR(OVL_FIR2(i));
			RR(OVL_ACCU2_0(i));
			RR(OVL_ACCU2_1(i));
536

537 538
			for (j = 0; j < 8; j++)
				RR(OVL_FIR_COEF_H2(i, j));
539

540 541
			for (j = 0; j < 8; j++)
				RR(OVL_FIR_COEF_HV2(i, j));
542

543 544 545 546 547
			for (j = 0; j < 8; j++)
				RR(OVL_FIR_COEF_V2(i, j));
		}
		if (dss_has_feature(FEAT_ATTR2))
			RR(OVL_ATTRIBUTES2(i));
548
	}
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550 551 552
	if (dss_has_feature(FEAT_CORE_CLK_DIV))
		RR(DIVISOR);

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	/* enable last, because LCD & DIGIT enable are here */
	RR(CONTROL);
555 556
	if (dss_has_feature(FEAT_MGR_LCD2))
		RR(CONTROL2);
557 558
	if (dss_has_feature(FEAT_MGR_LCD3))
		RR(CONTROL3);
559
	/* clear spurious SYNC_LOST_DIGIT interrupts */
560
	dispc_clear_irqstatus(DISPC_IRQ_SYNC_LOST_DIGIT);
561 562 563 564 565 566

	/*
	 * enable last so IRQs won't trigger before
	 * the context is fully restored
	 */
	RR(IRQENABLE);
567 568

	DSSDBG("context restored\n");
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}

#undef SR
#undef RR

574 575 576 577 578 579 580 581 582 583
int dispc_runtime_get(void)
{
	int r;

	DSSDBG("dispc_runtime_get\n");

	r = pm_runtime_get_sync(&dispc.pdev->dev);
	WARN_ON(r < 0);
	return r < 0 ? r : 0;
}
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EXPORT_SYMBOL(dispc_runtime_get);
585 586 587 588 589 590 591

void dispc_runtime_put(void)
{
	int r;

	DSSDBG("dispc_runtime_put\n");

592
	r = pm_runtime_put_sync(&dispc.pdev->dev);
593
	WARN_ON(r < 0 && r != -ENOSYS);
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}
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EXPORT_SYMBOL(dispc_runtime_put);
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597 598
u32 dispc_mgr_get_vsync_irq(enum omap_channel channel)
{
599
	return mgr_desc[channel].vsync_irq;
600
}
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EXPORT_SYMBOL(dispc_mgr_get_vsync_irq);
602

603 604
u32 dispc_mgr_get_framedone_irq(enum omap_channel channel)
{
605 606 607
	if (channel == OMAP_DSS_CHANNEL_DIGIT && dispc.feat->no_framedone_tv)
		return 0;

608
	return mgr_desc[channel].framedone_irq;
609
}
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EXPORT_SYMBOL(dispc_mgr_get_framedone_irq);
611

612 613 614 615
u32 dispc_mgr_get_sync_lost_irq(enum omap_channel channel)
{
	return mgr_desc[channel].sync_lost_irq;
}
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EXPORT_SYMBOL(dispc_mgr_get_sync_lost_irq);
617

618 619 620 621 622
u32 dispc_wb_get_framedone_irq(void)
{
	return DISPC_IRQ_FRAMEDONEWB;
}

623
bool dispc_mgr_go_busy(enum omap_channel channel)
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{
625
	return mgr_fld_read(channel, DISPC_MGR_FLD_GO) == 1;
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}
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EXPORT_SYMBOL(dispc_mgr_go_busy);
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629
void dispc_mgr_go(enum omap_channel channel)
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{
631
	WARN_ON(!dispc_mgr_is_enabled(channel));
632
	WARN_ON(dispc_mgr_go_busy(channel));
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634
	DSSDBG("GO %s\n", mgr_desc[channel].name);
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636
	mgr_fld_write(channel, DISPC_MGR_FLD_GO, 1);
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}
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EXPORT_SYMBOL(dispc_mgr_go);
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640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663
bool dispc_wb_go_busy(void)
{
	return REG_GET(DISPC_CONTROL2, 6, 6) == 1;
}

void dispc_wb_go(void)
{
	enum omap_plane plane = OMAP_DSS_WB;
	bool enable, go;

	enable = REG_GET(DISPC_OVL_ATTRIBUTES(plane), 0, 0) == 1;

	if (!enable)
		return;

	go = REG_GET(DISPC_CONTROL2, 6, 6) == 1;
	if (go) {
		DSSERR("GO bit not down for WB\n");
		return;
	}

	REG_FLD_MOD(DISPC_CONTROL2, 1, 6, 6);
}

664
static void dispc_ovl_write_firh_reg(enum omap_plane plane, int reg, u32 value)
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{
666
	dispc_write_reg(DISPC_OVL_FIR_COEF_H(plane, reg), value);
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}

669
static void dispc_ovl_write_firhv_reg(enum omap_plane plane, int reg, u32 value)
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{
671
	dispc_write_reg(DISPC_OVL_FIR_COEF_HV(plane, reg), value);
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}

674
static void dispc_ovl_write_firv_reg(enum omap_plane plane, int reg, u32 value)
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{
676
	dispc_write_reg(DISPC_OVL_FIR_COEF_V(plane, reg), value);
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}

679
static void dispc_ovl_write_firh2_reg(enum omap_plane plane, int reg, u32 value)
680 681 682 683 684 685
{
	BUG_ON(plane == OMAP_DSS_GFX);

	dispc_write_reg(DISPC_OVL_FIR_COEF_H2(plane, reg), value);
}

686 687
static void dispc_ovl_write_firhv2_reg(enum omap_plane plane, int reg,
		u32 value)
688 689 690 691 692 693
{
	BUG_ON(plane == OMAP_DSS_GFX);

	dispc_write_reg(DISPC_OVL_FIR_COEF_HV2(plane, reg), value);
}

694
static void dispc_ovl_write_firv2_reg(enum omap_plane plane, int reg, u32 value)
695 696 697 698 699 700
{
	BUG_ON(plane == OMAP_DSS_GFX);

	dispc_write_reg(DISPC_OVL_FIR_COEF_V2(plane, reg), value);
}

701 702 703
static void dispc_ovl_set_scale_coef(enum omap_plane plane, int fir_hinc,
				int fir_vinc, int five_taps,
				enum omap_color_component color_comp)
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{
705
	const struct dispc_coef *h_coef, *v_coef;
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	int i;

708 709
	h_coef = dispc_ovl_get_scale_coef(fir_hinc, true);
	v_coef = dispc_ovl_get_scale_coef(fir_vinc, five_taps);
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	for (i = 0; i < 8; i++) {
		u32 h, hv;

714 715 716 717 718 719 720 721
		h = FLD_VAL(h_coef[i].hc0_vc00, 7, 0)
			| FLD_VAL(h_coef[i].hc1_vc0, 15, 8)
			| FLD_VAL(h_coef[i].hc2_vc1, 23, 16)
			| FLD_VAL(h_coef[i].hc3_vc2, 31, 24);
		hv = FLD_VAL(h_coef[i].hc4_vc22, 7, 0)
			| FLD_VAL(v_coef[i].hc1_vc0, 15, 8)
			| FLD_VAL(v_coef[i].hc2_vc1, 23, 16)
			| FLD_VAL(v_coef[i].hc3_vc2, 31, 24);
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723
		if (color_comp == DISPC_COLOR_COMPONENT_RGB_Y) {
724 725
			dispc_ovl_write_firh_reg(plane, i, h);
			dispc_ovl_write_firhv_reg(plane, i, hv);
726
		} else {
727 728
			dispc_ovl_write_firh2_reg(plane, i, h);
			dispc_ovl_write_firhv2_reg(plane, i, hv);
729 730
		}

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	}

733 734 735
	if (five_taps) {
		for (i = 0; i < 8; i++) {
			u32 v;
736 737
			v = FLD_VAL(v_coef[i].hc0_vc00, 7, 0)
				| FLD_VAL(v_coef[i].hc4_vc22, 15, 8);
738
			if (color_comp == DISPC_COLOR_COMPONENT_RGB_Y)
739
				dispc_ovl_write_firv_reg(plane, i, v);
740
			else
741
				dispc_ovl_write_firv2_reg(plane, i, v);
742
		}
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	}
}


747 748 749
static void dispc_ovl_write_color_conv_coef(enum omap_plane plane,
		const struct color_conv_coef *ct)
{
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#define CVAL(x, y) (FLD_VAL(x, 26, 16) | FLD_VAL(y, 10, 0))

752 753 754 755 756
	dispc_write_reg(DISPC_OVL_CONV_COEF(plane, 0), CVAL(ct->rcr, ct->ry));
	dispc_write_reg(DISPC_OVL_CONV_COEF(plane, 1), CVAL(ct->gy,  ct->rcb));
	dispc_write_reg(DISPC_OVL_CONV_COEF(plane, 2), CVAL(ct->gcb, ct->gcr));
	dispc_write_reg(DISPC_OVL_CONV_COEF(plane, 3), CVAL(ct->bcr, ct->by));
	dispc_write_reg(DISPC_OVL_CONV_COEF(plane, 4), CVAL(0, ct->bcb));
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758
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), ct->full_range, 11, 11);
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#undef CVAL
}

763 764 765 766 767
static void dispc_setup_color_conv_coef(void)
{
	int i;
	int num_ovl = dss_feat_get_num_ovls();
	const struct color_conv_coef ctbl_bt601_5_ovl = {
768
		/* YUV -> RGB */
769 770 771
		298, 409, 0, 298, -208, -100, 298, 0, 517, 0,
	};
	const struct color_conv_coef ctbl_bt601_5_wb = {
772 773
		/* RGB -> YUV */
		66, 129, 25, 112, -94, -18, -38, -74, 112, 0,
774 775 776 777 778
	};

	for (i = 1; i < num_ovl; i++)
		dispc_ovl_write_color_conv_coef(i, &ctbl_bt601_5_ovl);

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	if (dispc.feat->has_writeback)
		dispc_ovl_write_color_conv_coef(OMAP_DSS_WB, &ctbl_bt601_5_wb);
781
}
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783
static void dispc_ovl_set_ba0(enum omap_plane plane, u32 paddr)
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{
785
	dispc_write_reg(DISPC_OVL_BA0(plane), paddr);
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}

788
static void dispc_ovl_set_ba1(enum omap_plane plane, u32 paddr)
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{
790
	dispc_write_reg(DISPC_OVL_BA1(plane), paddr);
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}

793
static void dispc_ovl_set_ba0_uv(enum omap_plane plane, u32 paddr)
794 795 796 797
{
	dispc_write_reg(DISPC_OVL_BA0_UV(plane), paddr);
}

798
static void dispc_ovl_set_ba1_uv(enum omap_plane plane, u32 paddr)
799 800 801 802
{
	dispc_write_reg(DISPC_OVL_BA1_UV(plane), paddr);
}

803 804
static void dispc_ovl_set_pos(enum omap_plane plane,
		enum omap_overlay_caps caps, int x, int y)
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{
806 807 808 809 810 811
	u32 val;

	if ((caps & OMAP_DSS_OVL_CAP_POS) == 0)
		return;

	val = FLD_VAL(y, 26, 16) | FLD_VAL(x, 10, 0);
812 813

	dispc_write_reg(DISPC_OVL_POSITION(plane), val);
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}

816 817
static void dispc_ovl_set_input_size(enum omap_plane plane, int width,
		int height)
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{
	u32 val = FLD_VAL(height - 1, 26, 16) | FLD_VAL(width - 1, 10, 0);
820

821
	if (plane == OMAP_DSS_GFX || plane == OMAP_DSS_WB)
822 823 824
		dispc_write_reg(DISPC_OVL_SIZE(plane), val);
	else
		dispc_write_reg(DISPC_OVL_PICTURE_SIZE(plane), val);
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}

827 828
static void dispc_ovl_set_output_size(enum omap_plane plane, int width,
		int height)
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{
	u32 val;

	BUG_ON(plane == OMAP_DSS_GFX);

	val = FLD_VAL(height - 1, 26, 16) | FLD_VAL(width - 1, 10, 0);
835

836 837 838 839
	if (plane == OMAP_DSS_WB)
		dispc_write_reg(DISPC_OVL_PICTURE_SIZE(plane), val);
	else
		dispc_write_reg(DISPC_OVL_SIZE(plane), val);
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}

842 843
static void dispc_ovl_set_zorder(enum omap_plane plane,
		enum omap_overlay_caps caps, u8 zorder)
844
{
845
	if ((caps & OMAP_DSS_OVL_CAP_ZORDER) == 0)
846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861
		return;

	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), zorder, 27, 26);
}

static void dispc_ovl_enable_zorder_planes(void)
{
	int i;

	if (!dss_has_feature(FEAT_ALPHA_FREE_ZORDER))
		return;

	for (i = 0; i < dss_feat_get_num_ovls(); i++)
		REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(i), 1, 25, 25);
}

862 863
static void dispc_ovl_set_pre_mult_alpha(enum omap_plane plane,
		enum omap_overlay_caps caps, bool enable)
864
{
865
	if ((caps & OMAP_DSS_OVL_CAP_PRE_MULT_ALPHA) == 0)
866 867
		return;

868
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), enable ? 1 : 0, 28, 28);
869 870
}

871 872
static void dispc_ovl_setup_global_alpha(enum omap_plane plane,
		enum omap_overlay_caps caps, u8 global_alpha)
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{
874
	static const unsigned shifts[] = { 0, 8, 16, 24, };
875 876
	int shift;

877
	if ((caps & OMAP_DSS_OVL_CAP_GLOBAL_ALPHA) == 0)
878
		return;
879

880 881
	shift = shifts[plane];
	REG_FLD_MOD(DISPC_GLOBAL_ALPHA, global_alpha, shift + 7, shift);
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}

884
static void dispc_ovl_set_pix_inc(enum omap_plane plane, s32 inc)
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{
886
	dispc_write_reg(DISPC_OVL_PIXEL_INC(plane), inc);
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}

889
static void dispc_ovl_set_row_inc(enum omap_plane plane, s32 inc)
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890
{
891
	dispc_write_reg(DISPC_OVL_ROW_INC(plane), inc);
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}

894
static void dispc_ovl_set_color_mode(enum omap_plane plane,
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		enum omap_color_mode color_mode)
{
	u32 m = 0;
898 899 900 901
	if (plane != OMAP_DSS_GFX) {
		switch (color_mode) {
		case OMAP_DSS_COLOR_NV12:
			m = 0x0; break;
902
		case OMAP_DSS_COLOR_RGBX16:
903 904 905
			m = 0x1; break;
		case OMAP_DSS_COLOR_RGBA16:
			m = 0x2; break;
906
		case OMAP_DSS_COLOR_RGB12U:
907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930
			m = 0x4; break;
		case OMAP_DSS_COLOR_ARGB16:
			m = 0x5; break;
		case OMAP_DSS_COLOR_RGB16:
			m = 0x6; break;
		case OMAP_DSS_COLOR_ARGB16_1555:
			m = 0x7; break;
		case OMAP_DSS_COLOR_RGB24U:
			m = 0x8; break;
		case OMAP_DSS_COLOR_RGB24P:
			m = 0x9; break;
		case OMAP_DSS_COLOR_YUV2:
			m = 0xa; break;
		case OMAP_DSS_COLOR_UYVY:
			m = 0xb; break;
		case OMAP_DSS_COLOR_ARGB32:
			m = 0xc; break;
		case OMAP_DSS_COLOR_RGBA32:
			m = 0xd; break;
		case OMAP_DSS_COLOR_RGBX32:
			m = 0xe; break;
		case OMAP_DSS_COLOR_XRGB16_1555:
			m = 0xf; break;
		default:
931
			BUG(); return;
932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954
		}
	} else {
		switch (color_mode) {
		case OMAP_DSS_COLOR_CLUT1:
			m = 0x0; break;
		case OMAP_DSS_COLOR_CLUT2:
			m = 0x1; break;
		case OMAP_DSS_COLOR_CLUT4:
			m = 0x2; break;
		case OMAP_DSS_COLOR_CLUT8:
			m = 0x3; break;
		case OMAP_DSS_COLOR_RGB12U:
			m = 0x4; break;
		case OMAP_DSS_COLOR_ARGB16:
			m = 0x5; break;
		case OMAP_DSS_COLOR_RGB16:
			m = 0x6; break;
		case OMAP_DSS_COLOR_ARGB16_1555:
			m = 0x7; break;
		case OMAP_DSS_COLOR_RGB24U:
			m = 0x8; break;
		case OMAP_DSS_COLOR_RGB24P:
			m = 0x9; break;
955
		case OMAP_DSS_COLOR_RGBX16:
956
			m = 0xa; break;
957
		case OMAP_DSS_COLOR_RGBA16:
958 959 960 961 962 963 964 965 966 967
			m = 0xb; break;
		case OMAP_DSS_COLOR_ARGB32:
			m = 0xc; break;
		case OMAP_DSS_COLOR_RGBA32:
			m = 0xd; break;
		case OMAP_DSS_COLOR_RGBX32:
			m = 0xe; break;
		case OMAP_DSS_COLOR_XRGB16_1555:
			m = 0xf; break;
		default:
968
			BUG(); return;
969
		}
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	}

972
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), m, 4, 1);
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}

975 976 977 978 979 980 981 982 983 984 985 986
static void dispc_ovl_configure_burst_type(enum omap_plane plane,
		enum omap_dss_rotation_type rotation_type)
{
	if (dss_has_feature(FEAT_BURST_2D) == 0)
		return;

	if (rotation_type == OMAP_DSS_ROT_TILER)
		REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), 1, 29, 29);
	else
		REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), 0, 29, 29);
}

987
void dispc_ovl_set_channel_out(enum omap_plane plane, enum omap_channel channel)
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{
	int shift;
	u32 val;
991
	int chan = 0, chan2 = 0;
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	switch (plane) {
	case OMAP_DSS_GFX:
		shift = 8;
		break;
	case OMAP_DSS_VIDEO1:
	case OMAP_DSS_VIDEO2:
999
	case OMAP_DSS_VIDEO3:
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		shift = 16;
		break;
	default:
		BUG();
		return;
	}

1007
	val = dispc_read_reg(DISPC_OVL_ATTRIBUTES(plane));
1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021
	if (dss_has_feature(FEAT_MGR_LCD2)) {
		switch (channel) {
		case OMAP_DSS_CHANNEL_LCD:
			chan = 0;
			chan2 = 0;
			break;
		case OMAP_DSS_CHANNEL_DIGIT:
			chan = 1;
			chan2 = 0;
			break;
		case OMAP_DSS_CHANNEL_LCD2:
			chan = 0;
			chan2 = 1;
			break;
1022 1023 1024 1025 1026 1027 1028 1029 1030
		case OMAP_DSS_CHANNEL_LCD3:
			if (dss_has_feature(FEAT_MGR_LCD3)) {
				chan = 0;
				chan2 = 2;
			} else {
				BUG();
				return;
			}
			break;
1031 1032 1033 1034
		case OMAP_DSS_CHANNEL_WB:
			chan = 0;
			chan2 = 3;
			break;
1035 1036
		default:
			BUG();
1037
			return;
1038 1039 1040 1041 1042 1043 1044
		}

		val = FLD_MOD(val, chan, shift, shift);
		val = FLD_MOD(val, chan2, 31, 30);
	} else {
		val = FLD_MOD(val, channel, shift, shift);
	}
1045
	dispc_write_reg(DISPC_OVL_ATTRIBUTES(plane), val);
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}
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EXPORT_SYMBOL(dispc_ovl_set_channel_out);
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1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064
static enum omap_channel dispc_ovl_get_channel_out(enum omap_plane plane)
{
	int shift;
	u32 val;

	switch (plane) {
	case OMAP_DSS_GFX:
		shift = 8;
		break;
	case OMAP_DSS_VIDEO1:
	case OMAP_DSS_VIDEO2:
	case OMAP_DSS_VIDEO3:
		shift = 16;
		break;
	default:
		BUG();
1065
		return 0;
1066 1067 1068 1069
	}

	val = dispc_read_reg(DISPC_OVL_ATTRIBUTES(plane));

1070 1071
	if (FLD_GET(val, shift, shift) == 1)
		return OMAP_DSS_CHANNEL_DIGIT;
1072

1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083
	if (!dss_has_feature(FEAT_MGR_LCD2))
		return OMAP_DSS_CHANNEL_LCD;

	switch (FLD_GET(val, 31, 30)) {
	case 0:
	default:
		return OMAP_DSS_CHANNEL_LCD;
	case 1:
		return OMAP_DSS_CHANNEL_LCD2;
	case 2:
		return OMAP_DSS_CHANNEL_LCD3;
1084 1085
	case 3:
		return OMAP_DSS_CHANNEL_WB;
1086
	}
1087 1088
}

1089 1090 1091 1092 1093 1094 1095
void dispc_wb_set_channel_in(enum dss_writeback_channel channel)
{
	enum omap_plane plane = OMAP_DSS_WB;

	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), channel, 18, 16);
}

1096
static void dispc_ovl_set_burst_size(enum omap_plane plane,
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		enum omap_burst_size burst_size)
{
1099
	static const unsigned shifts[] = { 6, 14, 14, 14, 14, };
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	int shift;

1102
	shift = shifts[plane];
1103
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), burst_size, shift + 1, shift);
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}

1106 1107 1108 1109 1110 1111
static void dispc_configure_burst_sizes(void)
{
	int i;
	const int burst_size = BURST_SIZE_X8;

	/* Configure burst size always to maximum size */
1112
	for (i = 0; i < dss_feat_get_num_ovls(); ++i)
1113
		dispc_ovl_set_burst_size(i, burst_size);
1114 1115
	if (dispc.feat->has_writeback)
		dispc_ovl_set_burst_size(OMAP_DSS_WB, burst_size);
1116 1117
}

1118
static u32 dispc_ovl_get_burst_size(enum omap_plane plane)
1119 1120 1121 1122 1123 1124
{
	unsigned unit = dss_feat_get_burst_size_unit();
	/* burst multiplier is always x8 (see dispc_configure_burst_sizes()) */
	return unit * 8;
}

1125
static void dispc_mgr_enable_cpr(enum omap_channel channel, bool enable)
1126
{
1127
	if (channel == OMAP_DSS_CHANNEL_DIGIT)
1128 1129
		return;

1130
	mgr_fld_write(channel, DISPC_MGR_FLD_CPR, enable);
1131 1132
}

1133
static void dispc_mgr_set_cpr_coef(enum omap_channel channel,
1134
		const struct omap_dss_cpr_coefs *coefs)
1135 1136 1137
{
	u32 coef_r, coef_g, coef_b;

1138
	if (!dss_mgr_is_lcd(channel))
1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152
		return;

	coef_r = FLD_VAL(coefs->rr, 31, 22) | FLD_VAL(coefs->rg, 20, 11) |
		FLD_VAL(coefs->rb, 9, 0);
	coef_g = FLD_VAL(coefs->gr, 31, 22) | FLD_VAL(coefs->gg, 20, 11) |
		FLD_VAL(coefs->gb, 9, 0);
	coef_b = FLD_VAL(coefs->br, 31, 22) | FLD_VAL(coefs->bg, 20, 11) |
		FLD_VAL(coefs->bb, 9, 0);

	dispc_write_reg(DISPC_CPR_COEF_R(channel), coef_r);
	dispc_write_reg(DISPC_CPR_COEF_G(channel), coef_g);
	dispc_write_reg(DISPC_CPR_COEF_B(channel), coef_b);
}

1153
static void dispc_ovl_set_vid_color_conv(enum omap_plane plane, bool enable)
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{
	u32 val;

	BUG_ON(plane == OMAP_DSS_GFX);

1159
	val = dispc_read_reg(DISPC_OVL_ATTRIBUTES(plane));
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	val = FLD_MOD(val, enable, 9, 9);
1161
	dispc_write_reg(DISPC_OVL_ATTRIBUTES(plane), val);
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}

1164 1165
static void dispc_ovl_enable_replication(enum omap_plane plane,
		enum omap_overlay_caps caps, bool enable)
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{
1167
	static const unsigned shifts[] = { 5, 10, 10, 10 };
1168
	int shift;
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1170 1171 1172
	if ((caps & OMAP_DSS_OVL_CAP_REPLICATION) == 0)
		return;

1173 1174
	shift = shifts[plane];
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), enable, shift, shift);
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}

1177
static void dispc_mgr_set_size(enum omap_channel channel, u16 width,
1178
		u16 height)
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{
	u32 val;

1182 1183 1184
	val = FLD_VAL(height - 1, dispc.feat->mgr_height_start, 16) |
		FLD_VAL(width - 1, dispc.feat->mgr_width_start, 0);

1185
	dispc_write_reg(DISPC_SIZE_MGR(channel), val);
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}

1188
static void dispc_init_fifos(void)
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{
	u32 size;
1191
	int fifo;
1192
	u8 start, end;
1193
	u32 unit;
1194
	int i;
1195 1196

	unit = dss_feat_get_buffer_size_unit();
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1198
	dss_feat_get_reg_field(FEAT_REG_FIFOSIZE, &start, &end);
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1200 1201
	for (fifo = 0; fifo < dispc.feat->num_fifos; ++fifo) {
		size = REG_GET(DISPC_OVL_FIFO_SIZE_STATUS(fifo), start, end);
1202
		size *= unit;
1203 1204 1205 1206 1207 1208 1209
		dispc.fifo_size[fifo] = size;

		/*
		 * By default fifos are mapped directly to overlays, fifo 0 to
		 * ovl 0, fifo 1 to ovl 1, etc.
		 */
		dispc.fifo_assignment[fifo] = fifo;
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	}
1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233

	/*
	 * The GFX fifo on OMAP4 is smaller than the other fifos. The small fifo
	 * causes problems with certain use cases, like using the tiler in 2D
	 * mode. The below hack swaps the fifos of GFX and WB planes, thus
	 * giving GFX plane a larger fifo. WB but should work fine with a
	 * smaller fifo.
	 */
	if (dispc.feat->gfx_fifo_workaround) {
		u32 v;

		v = dispc_read_reg(DISPC_GLOBAL_BUFFER);

		v = FLD_MOD(v, 4, 2, 0); /* GFX BUF top to WB */
		v = FLD_MOD(v, 4, 5, 3); /* GFX BUF bottom to WB */
		v = FLD_MOD(v, 0, 26, 24); /* WB BUF top to GFX */
		v = FLD_MOD(v, 0, 29, 27); /* WB BUF bottom to GFX */

		dispc_write_reg(DISPC_GLOBAL_BUFFER, v);

		dispc.fifo_assignment[OMAP_DSS_GFX] = OMAP_DSS_WB;
		dispc.fifo_assignment[OMAP_DSS_WB] = OMAP_DSS_GFX;
	}
1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247

	/*
	 * Setup default fifo thresholds.
	 */
	for (i = 0; i < dss_feat_get_num_ovls(); ++i) {
		u32 low, high;
		const bool use_fifomerge = false;
		const bool manual_update = false;

		dispc_ovl_compute_fifo_thresholds(i, &low, &high,
			use_fifomerge, manual_update);

		dispc_ovl_set_fifo_threshold(i, low, high);
	}
1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258

	if (dispc.feat->has_writeback) {
		u32 low, high;
		const bool use_fifomerge = false;
		const bool manual_update = false;

		dispc_ovl_compute_fifo_thresholds(OMAP_DSS_WB, &low, &high,
			use_fifomerge, manual_update);

		dispc_ovl_set_fifo_threshold(OMAP_DSS_WB, low, high);
	}
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}

1261
static u32 dispc_ovl_get_fifo_size(enum omap_plane plane)
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{
1263 1264 1265 1266 1267 1268 1269 1270 1271
	int fifo;
	u32 size = 0;

	for (fifo = 0; fifo < dispc.feat->num_fifos; ++fifo) {
		if (dispc.fifo_assignment[fifo] == plane)
			size += dispc.fifo_size[fifo];
	}

	return size;
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}

1274
void dispc_ovl_set_fifo_threshold(enum omap_plane plane, u32 low, u32 high)
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{
1276
	u8 hi_start, hi_end, lo_start, lo_end;
1277 1278 1279 1280 1281 1282 1283 1284 1285
	u32 unit;

	unit = dss_feat_get_buffer_size_unit();

	WARN_ON(low % unit != 0);
	WARN_ON(high % unit != 0);

	low /= unit;
	high /= unit;
1286

1287 1288 1289
	dss_feat_get_reg_field(FEAT_REG_FIFOHIGHTHRESHOLD, &hi_start, &hi_end);
	dss_feat_get_reg_field(FEAT_REG_FIFOLOWTHRESHOLD, &lo_start, &lo_end);

1290
	DSSDBG("fifo(%d) threshold (bytes), old %u/%u, new %u/%u\n",
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			plane,
1292
			REG_GET(DISPC_OVL_FIFO_THRESHOLD(plane),
1293
				lo_start, lo_end) * unit,
1294
			REG_GET(DISPC_OVL_FIFO_THRESHOLD(plane),
1295 1296
				hi_start, hi_end) * unit,
			low * unit, high * unit);
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1298
	dispc_write_reg(DISPC_OVL_FIFO_THRESHOLD(plane),
1299 1300
			FLD_VAL(high, hi_start, hi_end) |
			FLD_VAL(low, lo_start, lo_end));
1301 1302 1303 1304 1305 1306 1307 1308 1309

	/*
	 * configure the preload to the pipeline's high threhold, if HT it's too
	 * large for the preload field, set the threshold to the maximum value
	 * that can be held by the preload register
	 */
	if (dss_has_feature(FEAT_PRELOAD) && dispc.feat->set_max_preload &&
			plane != OMAP_DSS_WB)
		dispc_write_reg(DISPC_OVL_PRELOAD(plane), min(high, 0xfffu));
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}

void dispc_enable_fifomerge(bool enable)
{
1314 1315 1316 1317 1318
	if (!dss_has_feature(FEAT_FIFO_MERGE)) {
		WARN_ON(enable);
		return;
	}

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	DSSDBG("FIFO merge %s\n", enable ? "enabled" : "disabled");
	REG_FLD_MOD(DISPC_CONFIG, enable ? 1 : 0, 14, 14);
}

1323
void dispc_ovl_compute_fifo_thresholds(enum omap_plane plane,
1324 1325
		u32 *fifo_low, u32 *fifo_high, bool use_fifomerge,
		bool manual_update)
1326 1327 1328 1329 1330 1331 1332
{
	/*
	 * All sizes are in bytes. Both the buffer and burst are made of
	 * buffer_units, and the fifo thresholds must be buffer_unit aligned.
	 */

	unsigned buf_unit = dss_feat_get_buffer_size_unit();
1333 1334
	unsigned ovl_fifo_size, total_fifo_size, burst_size;
	int i;
1335 1336

	burst_size = dispc_ovl_get_burst_size(plane);
1337
	ovl_fifo_size = dispc_ovl_get_fifo_size(plane);
1338

1339 1340
	if (use_fifomerge) {
		total_fifo_size = 0;
1341
		for (i = 0; i < dss_feat_get_num_ovls(); ++i)
1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352
			total_fifo_size += dispc_ovl_get_fifo_size(i);
	} else {
		total_fifo_size = ovl_fifo_size;
	}

	/*
	 * We use the same low threshold for both fifomerge and non-fifomerge
	 * cases, but for fifomerge we calculate the high threshold using the
	 * combined fifo size
	 */

1353
	if (manual_update && dss_has_feature(FEAT_OMAP3_DSI_FIFO_BUG)) {
1354 1355
		*fifo_low = ovl_fifo_size - burst_size * 2;
		*fifo_high = total_fifo_size - burst_size;
1356 1357 1358 1359 1360 1361 1362 1363
	} else if (plane == OMAP_DSS_WB) {
		/*
		 * Most optimal configuration for writeback is to push out data
		 * to the interconnect the moment writeback pushes enough pixels
		 * in the FIFO to form a burst
		 */
		*fifo_low = 0;
		*fifo_high = burst_size;
1364 1365 1366 1367
	} else {
		*fifo_low = ovl_fifo_size - burst_size;
		*fifo_high = total_fifo_size - buf_unit;
	}
1368 1369
}

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static void dispc_ovl_set_mflag(enum omap_plane plane, bool enable)
{
	int bit;

	if (plane == OMAP_DSS_GFX)
		bit = 14;
	else
		bit = 23;

	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), enable, bit, bit);
}

static void dispc_ovl_set_mflag_threshold(enum omap_plane plane,
	int low, int high)
{
	dispc_write_reg(DISPC_OVL_MFLAG_THRESHOLD(plane),
		FLD_VAL(high, 31, 16) |	FLD_VAL(low, 15, 0));
}

static void dispc_init_mflag(void)
{
	int i;

1393 1394 1395 1396 1397 1398 1399 1400 1401 1402
	/*
	 * HACK: NV12 color format and MFLAG seem to have problems working
	 * together: using two displays, and having an NV12 overlay on one of
	 * the displays will cause underflows/synclosts when MFLAG_CTRL=2.
	 * Changing MFLAG thresholds and PRELOAD to certain values seem to
	 * remove the errors, but there doesn't seem to be a clear logic on
	 * which values work and which not.
	 *
	 * As a work-around, set force MFLAG to always on.
	 */
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	dispc_write_reg(DISPC_GLOBAL_MFLAG_ATTRIBUTE,
1404
		(1 << 0) |	/* MFLAG_CTRL = force always on */
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		(0 << 2));	/* MFLAG_START = disable */

	for (i = 0; i < dss_feat_get_num_ovls(); ++i) {
		u32 size = dispc_ovl_get_fifo_size(i);
		u32 unit = dss_feat_get_buffer_size_unit();
		u32 low, high;

		dispc_ovl_set_mflag(i, true);

		/*
		 * Simulation team suggests below thesholds:
		 * HT = fifosize * 5 / 8;
		 * LT = fifosize * 4 / 8;
		 */

		low = size * 4 / 8 / unit;
		high = size * 5 / 8 / unit;

		dispc_ovl_set_mflag_threshold(i, low, high);
	}
1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443

	if (dispc.feat->has_writeback) {
		u32 size = dispc_ovl_get_fifo_size(OMAP_DSS_WB);
		u32 unit = dss_feat_get_buffer_size_unit();
		u32 low, high;

		dispc_ovl_set_mflag(OMAP_DSS_WB, true);

		/*
		 * Simulation team suggests below thesholds:
		 * HT = fifosize * 5 / 8;
		 * LT = fifosize * 4 / 8;
		 */

		low = size * 4 / 8 / unit;
		high = size * 5 / 8 / unit;

		dispc_ovl_set_mflag_threshold(OMAP_DSS_WB, low, high);
	}
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}

1446
static void dispc_ovl_set_fir(enum omap_plane plane,
1447 1448
				int hinc, int vinc,
				enum omap_color_component color_comp)
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1449 1450 1451
{
	u32 val;

1452 1453
	if (color_comp == DISPC_COLOR_COMPONENT_RGB_Y) {
		u8 hinc_start, hinc_end, vinc_start, vinc_end;
1454

1455 1456 1457 1458 1459 1460
		dss_feat_get_reg_field(FEAT_REG_FIRHINC,
					&hinc_start, &hinc_end);
		dss_feat_get_reg_field(FEAT_REG_FIRVINC,
					&vinc_start, &vinc_end);
		val = FLD_VAL(vinc, vinc_start, vinc_end) |
				FLD_VAL(hinc, hinc_start, hinc_end);
1461

1462 1463 1464 1465 1466
		dispc_write_reg(DISPC_OVL_FIR(plane), val);
	} else {
		val = FLD_VAL(vinc, 28, 16) | FLD_VAL(hinc, 12, 0);
		dispc_write_reg(DISPC_OVL_FIR2(plane), val);
	}
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}

1469
static void dispc_ovl_set_vid_accu0(enum omap_plane plane, int haccu, int vaccu)
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1470 1471
{
	u32 val;
1472
	u8 hor_start, hor_end, vert_start, vert_end;
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1474 1475 1476 1477 1478 1479
	dss_feat_get_reg_field(FEAT_REG_HORIZONTALACCU, &hor_start, &hor_end);
	dss_feat_get_reg_field(FEAT_REG_VERTICALACCU, &vert_start, &vert_end);

	val = FLD_VAL(vaccu, vert_start, vert_end) |
			FLD_VAL(haccu, hor_start, hor_end);

1480
	dispc_write_reg(DISPC_OVL_ACCU0(plane), val);
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}

1483
static void dispc_ovl_set_vid_accu1(enum omap_plane plane, int haccu, int vaccu)
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1484 1485
{
	u32 val;
1486
	u8 hor_start, hor_end, vert_start, vert_end;
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1488 1489 1490 1491 1492 1493
	dss_feat_get_reg_field(FEAT_REG_HORIZONTALACCU, &hor_start, &hor_end);
	dss_feat_get_reg_field(FEAT_REG_VERTICALACCU, &vert_start, &vert_end);

	val = FLD_VAL(vaccu, vert_start, vert_end) |
			FLD_VAL(haccu, hor_start, hor_end);

1494
	dispc_write_reg(DISPC_OVL_ACCU1(plane), val);
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}

1497 1498
static void dispc_ovl_set_vid_accu2_0(enum omap_plane plane, int haccu,
		int vaccu)
1499 1500 1501 1502 1503 1504 1505
{
	u32 val;

	val = FLD_VAL(vaccu, 26, 16) | FLD_VAL(haccu, 10, 0);
	dispc_write_reg(DISPC_OVL_ACCU2_0(plane), val);
}

1506 1507
static void dispc_ovl_set_vid_accu2_1(enum omap_plane plane, int haccu,
		int vaccu)
1508 1509 1510 1511 1512 1513
{
	u32 val;

	val = FLD_VAL(vaccu, 26, 16) | FLD_VAL(haccu, 10, 0);
	dispc_write_reg(DISPC_OVL_ACCU2_1(plane), val);
}
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1515
static void dispc_ovl_set_scale_param(enum omap_plane plane,
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		u16 orig_width, u16 orig_height,
		u16 out_width, u16 out_height,
1518 1519
		bool five_taps, u8 rotation,
		enum omap_color_component color_comp)
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{
1521
	int fir_hinc, fir_vinc;
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1523 1524
	fir_hinc = 1024 * orig_width / out_width;
	fir_vinc = 1024 * orig_height / out_height;
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1526 1527
	dispc_ovl_set_scale_coef(plane, fir_hinc, fir_vinc, five_taps,
				color_comp);
1528
	dispc_ovl_set_fir(plane, fir_hinc, fir_vinc, color_comp);
1529 1530
}

1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585
static void dispc_ovl_set_accu_uv(enum omap_plane plane,
		u16 orig_width,	u16 orig_height, u16 out_width, u16 out_height,
		bool ilace, enum omap_color_mode color_mode, u8 rotation)
{
	int h_accu2_0, h_accu2_1;
	int v_accu2_0, v_accu2_1;
	int chroma_hinc, chroma_vinc;
	int idx;

	struct accu {
		s8 h0_m, h0_n;
		s8 h1_m, h1_n;
		s8 v0_m, v0_n;
		s8 v1_m, v1_n;
	};

	const struct accu *accu_table;
	const struct accu *accu_val;

	static const struct accu accu_nv12[4] = {
		{  0, 1,  0, 1 , -1, 2, 0, 1 },
		{  1, 2, -3, 4 ,  0, 1, 0, 1 },
		{ -1, 1,  0, 1 , -1, 2, 0, 1 },
		{ -1, 2, -1, 2 , -1, 1, 0, 1 },
	};

	static const struct accu accu_nv12_ilace[4] = {
		{  0, 1,  0, 1 , -3, 4, -1, 4 },
		{ -1, 4, -3, 4 ,  0, 1,  0, 1 },
		{ -1, 1,  0, 1 , -1, 4, -3, 4 },
		{ -3, 4, -3, 4 , -1, 1,  0, 1 },
	};

	static const struct accu accu_yuv[4] = {
		{  0, 1, 0, 1,  0, 1, 0, 1 },
		{  0, 1, 0, 1,  0, 1, 0, 1 },
		{ -1, 1, 0, 1,  0, 1, 0, 1 },
		{  0, 1, 0, 1, -1, 1, 0, 1 },
	};

	switch (rotation) {
	case OMAP_DSS_ROT_0:
		idx = 0;
		break;
	case OMAP_DSS_ROT_90:
		idx = 1;
		break;
	case OMAP_DSS_ROT_180:
		idx = 2;
		break;
	case OMAP_DSS_ROT_270:
		idx = 3;
		break;
	default:
		BUG();
1586
		return;
1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601
	}

	switch (color_mode) {
	case OMAP_DSS_COLOR_NV12:
		if (ilace)
			accu_table = accu_nv12_ilace;
		else
			accu_table = accu_nv12;
		break;
	case OMAP_DSS_COLOR_YUV2:
	case OMAP_DSS_COLOR_UYVY:
		accu_table = accu_yuv;
		break;
	default:
		BUG();
1602
		return;
1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618
	}

	accu_val = &accu_table[idx];

	chroma_hinc = 1024 * orig_width / out_width;
	chroma_vinc = 1024 * orig_height / out_height;

	h_accu2_0 = (accu_val->h0_m * chroma_hinc / accu_val->h0_n) % 1024;
	h_accu2_1 = (accu_val->h1_m * chroma_hinc / accu_val->h1_n) % 1024;
	v_accu2_0 = (accu_val->v0_m * chroma_vinc / accu_val->v0_n) % 1024;
	v_accu2_1 = (accu_val->v1_m * chroma_vinc / accu_val->v1_n) % 1024;

	dispc_ovl_set_vid_accu2_0(plane, h_accu2_0, v_accu2_0);
	dispc_ovl_set_vid_accu2_1(plane, h_accu2_1, v_accu2_1);
}

1619
static void dispc_ovl_set_scaling_common(enum omap_plane plane,
1620 1621 1622 1623 1624 1625 1626 1627 1628
		u16 orig_width, u16 orig_height,
		u16 out_width, u16 out_height,
		bool ilace, bool five_taps,
		bool fieldmode, enum omap_color_mode color_mode,
		u8 rotation)
{
	int accu0 = 0;
	int accu1 = 0;
	u32 l;
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1630
	dispc_ovl_set_scale_param(plane, orig_width, orig_height,
1631 1632
				out_width, out_height, five_taps,
				rotation, DISPC_COLOR_COMPONENT_RGB_Y);
1633
	l = dispc_read_reg(DISPC_OVL_ATTRIBUTES(plane));
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1635 1636
	/* RESIZEENABLE and VERTICALTAPS */
	l &= ~((0x3 << 5) | (0x1 << 21));
1637 1638
	l |= (orig_width != out_width) ? (1 << 5) : 0;
	l |= (orig_height != out_height) ? (1 << 6) : 0;
1639
	l |= five_taps ? (1 << 21) : 0;
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1641 1642 1643
	/* VRESIZECONF and HRESIZECONF */
	if (dss_has_feature(FEAT_RESIZECONF)) {
		l &= ~(0x3 << 7);
1644 1645
		l |= (orig_width <= out_width) ? 0 : (1 << 7);
		l |= (orig_height <= out_height) ? 0 : (1 << 8);
1646
	}
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1648 1649 1650 1651 1652
	/* LINEBUFFERSPLIT */
	if (dss_has_feature(FEAT_LINEBUFFERSPLIT)) {
		l &= ~(0x1 << 22);
		l |= five_taps ? (1 << 22) : 0;
	}
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1654
	dispc_write_reg(DISPC_OVL_ATTRIBUTES(plane), l);
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	/*
	 * field 0 = even field = bottom field
	 * field 1 = odd field = top field
	 */
	if (ilace && !fieldmode) {
		accu1 = 0;
1662
		accu0 = ((1024 * orig_height / out_height) / 2) & 0x3ff;
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		if (accu0 >= 1024/2) {
			accu1 = 1024/2;
			accu0 -= accu1;
		}
	}

1669 1670
	dispc_ovl_set_vid_accu0(plane, 0, accu0);
	dispc_ovl_set_vid_accu1(plane, 0, accu1);
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}

1673
static void dispc_ovl_set_scaling_uv(enum omap_plane plane,
1674 1675 1676 1677 1678 1679 1680 1681
		u16 orig_width, u16 orig_height,
		u16 out_width, u16 out_height,
		bool ilace, bool five_taps,
		bool fieldmode, enum omap_color_mode color_mode,
		u8 rotation)
{
	int scale_x = out_width != orig_width;
	int scale_y = out_height != orig_height;
1682
	bool chroma_upscale = plane != OMAP_DSS_WB;
1683 1684 1685 1686 1687 1688 1689

	if (!dss_has_feature(FEAT_HANDLE_UV_SEPARATE))
		return;
	if ((color_mode != OMAP_DSS_COLOR_YUV2 &&
			color_mode != OMAP_DSS_COLOR_UYVY &&
			color_mode != OMAP_DSS_COLOR_NV12)) {
		/* reset chroma resampling for RGB formats  */
1690 1691
		if (plane != OMAP_DSS_WB)
			REG_FLD_MOD(DISPC_OVL_ATTRIBUTES2(plane), 0, 8, 8);
1692 1693
		return;
	}
1694 1695 1696 1697

	dispc_ovl_set_accu_uv(plane, orig_width, orig_height, out_width,
			out_height, ilace, color_mode, rotation);

1698 1699
	switch (color_mode) {
	case OMAP_DSS_COLOR_NV12:
1700 1701 1702 1703 1704 1705 1706 1707 1708 1709
		if (chroma_upscale) {
			/* UV is subsampled by 2 horizontally and vertically */
			orig_height >>= 1;
			orig_width >>= 1;
		} else {
			/* UV is downsampled by 2 horizontally and vertically */
			orig_height <<= 1;
			orig_width <<= 1;
		}

1710 1711 1712
		break;
	case OMAP_DSS_COLOR_YUV2:
	case OMAP_DSS_COLOR_UYVY:
1713
		/* For YUV422 with 90/270 rotation, we don't upsample chroma */
1714
		if (rotation == OMAP_DSS_ROT_0 ||
1715 1716 1717 1718 1719 1720 1721 1722 1723
				rotation == OMAP_DSS_ROT_180) {
			if (chroma_upscale)
				/* UV is subsampled by 2 horizontally */
				orig_width >>= 1;
			else
				/* UV is downsampled by 2 horizontally */
				orig_width <<= 1;
		}

1724 1725 1726
		/* must use FIR for YUV422 if rotated */
		if (rotation != OMAP_DSS_ROT_0)
			scale_x = scale_y = true;
1727

1728 1729 1730
		break;
	default:
		BUG();
1731
		return;
1732 1733 1734 1735 1736 1737 1738
	}

	if (out_width != orig_width)
		scale_x = true;
	if (out_height != orig_height)
		scale_y = true;

1739
	dispc_ovl_set_scale_param(plane, orig_width, orig_height,
1740 1741 1742
			out_width, out_height, five_taps,
				rotation, DISPC_COLOR_COMPONENT_UV);

1743 1744 1745 1746
	if (plane != OMAP_DSS_WB)
		REG_FLD_MOD(DISPC_OVL_ATTRIBUTES2(plane),
			(scale_x || scale_y) ? 1 : 0, 8, 8);

1747 1748 1749 1750 1751 1752
	/* set H scaling */
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), scale_x ? 1 : 0, 5, 5);
	/* set V scaling */
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), scale_y ? 1 : 0, 6, 6);
}

1753
static void dispc_ovl_set_scaling(enum omap_plane plane,
1754 1755 1756 1757 1758 1759 1760 1761
		u16 orig_width, u16 orig_height,
		u16 out_width, u16 out_height,
		bool ilace, bool five_taps,
		bool fieldmode, enum omap_color_mode color_mode,
		u8 rotation)
{
	BUG_ON(plane == OMAP_DSS_GFX);

1762
	dispc_ovl_set_scaling_common(plane,
1763 1764 1765 1766 1767 1768
			orig_width, orig_height,
			out_width, out_height,
			ilace, five_taps,
			fieldmode, color_mode,
			rotation);

1769
	dispc_ovl_set_scaling_uv(plane,
1770 1771 1772 1773 1774 1775 1776
		orig_width, orig_height,
		out_width, out_height,
		ilace, five_taps,
		fieldmode, color_mode,
		rotation);
}

1777
static void dispc_ovl_set_rotation_attrs(enum omap_plane plane, u8 rotation,
1778
		enum omap_dss_rotation_type rotation_type,
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		bool mirroring, enum omap_color_mode color_mode)
{
1781 1782 1783
	bool row_repeat = false;
	int vidrot = 0;

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	if (color_mode == OMAP_DSS_COLOR_YUV2 ||
			color_mode == OMAP_DSS_COLOR_UYVY) {

		if (mirroring) {
			switch (rotation) {
			case OMAP_DSS_ROT_0:
				vidrot = 2;
				break;
			case OMAP_DSS_ROT_90:
				vidrot = 1;
				break;
			case OMAP_DSS_ROT_180:
				vidrot = 0;
				break;
			case OMAP_DSS_ROT_270:
				vidrot = 3;
				break;
			}
		} else {
			switch (rotation) {
			case OMAP_DSS_ROT_0:
				vidrot = 0;
				break;
			case OMAP_DSS_ROT_90:
				vidrot = 1;
				break;
			case OMAP_DSS_ROT_180:
				vidrot = 2;
				break;
			case OMAP_DSS_ROT_270:
				vidrot = 3;
				break;
			}
		}

		if (rotation == OMAP_DSS_ROT_90 || rotation == OMAP_DSS_ROT_270)
1820
			row_repeat = true;
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		else
1822
			row_repeat = false;
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	}
1824

1825 1826 1827 1828 1829 1830 1831 1832 1833
	/*
	 * OMAP4/5 Errata i631:
	 * NV12 in 1D mode must use ROTATION=1. Otherwise DSS will fetch extra
	 * rows beyond the framebuffer, which may cause OCP error.
	 */
	if (color_mode == OMAP_DSS_COLOR_NV12 &&
			rotation_type != OMAP_DSS_ROT_TILER)
		vidrot = 1;

1834
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), vidrot, 13, 12);
1835
	if (dss_has_feature(FEAT_ROWREPEATENABLE))
1836 1837
		REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane),
			row_repeat ? 1 : 0, 18, 18);
1838 1839 1840 1841 1842 1843 1844 1845 1846

	if (color_mode == OMAP_DSS_COLOR_NV12) {
		bool doublestride = (rotation_type == OMAP_DSS_ROT_TILER) &&
					(rotation == OMAP_DSS_ROT_0 ||
					rotation == OMAP_DSS_ROT_180);
		/* DOUBLESTRIDE */
		REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), doublestride, 22, 22);
	}

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}

static int color_mode_to_bpp(enum omap_color_mode color_mode)
{
	switch (color_mode) {
	case OMAP_DSS_COLOR_CLUT1:
		return 1;
	case OMAP_DSS_COLOR_CLUT2:
		return 2;
	case OMAP_DSS_COLOR_CLUT4:
		return 4;
	case OMAP_DSS_COLOR_CLUT8:
1859
	case OMAP_DSS_COLOR_NV12:
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		return 8;
	case OMAP_DSS_COLOR_RGB12U:
	case OMAP_DSS_COLOR_RGB16:
	case OMAP_DSS_COLOR_ARGB16:
	case OMAP_DSS_COLOR_YUV2:
	case OMAP_DSS_COLOR_UYVY:
1866 1867 1868 1869
	case OMAP_DSS_COLOR_RGBA16:
	case OMAP_DSS_COLOR_RGBX16:
	case OMAP_DSS_COLOR_ARGB16_1555:
	case OMAP_DSS_COLOR_XRGB16_1555:
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		return 16;
	case OMAP_DSS_COLOR_RGB24P:
		return 24;
	case OMAP_DSS_COLOR_RGB24U:
	case OMAP_DSS_COLOR_ARGB32:
	case OMAP_DSS_COLOR_RGBA32:
	case OMAP_DSS_COLOR_RGBX32:
		return 32;
	default:
		BUG();
1880
		return 0;
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	}
}

static s32 pixinc(int pixels, u8 ps)
{
	if (pixels == 1)
		return 1;
	else if (pixels > 1)
		return 1 + (pixels - 1) * ps;
	else if (pixels < 0)
		return 1 - (-pixels + 1) * ps;
	else
		BUG();
1894
		return 0;
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}

static void calc_vrfb_rotation_offset(u8 rotation, bool mirror,
		u16 screen_width,
		u16 width, u16 height,
		enum omap_color_mode color_mode, bool fieldmode,
		unsigned int field_offset,
		unsigned *offset0, unsigned *offset1,
1903
		s32 *row_inc, s32 *pix_inc, int x_predecim, int y_predecim)
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{
	u8 ps;

	/* FIXME CLUT formats */
	switch (color_mode) {
	case OMAP_DSS_COLOR_CLUT1:
	case OMAP_DSS_COLOR_CLUT2:
	case OMAP_DSS_COLOR_CLUT4:
	case OMAP_DSS_COLOR_CLUT8:
		BUG();
		return;
	case OMAP_DSS_COLOR_YUV2:
	case OMAP_DSS_COLOR_UYVY:
		ps = 4;
		break;
	default:
		ps = color_mode_to_bpp(color_mode) / 8;
		break;
	}

	DSSDBG("calc_rot(%d): scrw %d, %dx%d\n", rotation, screen_width,
			width, height);

	/*
	 * field 0 = even field = bottom field
	 * field 1 = odd field = top field
	 */
	switch (rotation + mirror * 4) {
	case OMAP_DSS_ROT_0:
	case OMAP_DSS_ROT_180:
		/*
		 * If the pixel format is YUV or UYVY divide the width
		 * of the image by 2 for 0 and 180 degree rotation.
		 */
		if (color_mode == OMAP_DSS_COLOR_YUV2 ||
			color_mode == OMAP_DSS_COLOR_UYVY)
			width = width >> 1;
	case OMAP_DSS_ROT_90:
	case OMAP_DSS_ROT_270:
		*offset1 = 0;
		if (field_offset)
			*offset0 = field_offset * screen_width * ps;
		else
			*offset0 = 0;

1949 1950 1951 1952
		*row_inc = pixinc(1 +
			(y_predecim * screen_width - x_predecim * width) +
			(fieldmode ? screen_width : 0), ps);
		*pix_inc = pixinc(x_predecim, ps);
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		break;

	case OMAP_DSS_ROT_0 + 4:
	case OMAP_DSS_ROT_180 + 4:
		/* If the pixel format is YUV or UYVY divide the width
		 * of the image by 2  for 0 degree and 180 degree
		 */
		if (color_mode == OMAP_DSS_COLOR_YUV2 ||
			color_mode == OMAP_DSS_COLOR_UYVY)
			width = width >> 1;
	case OMAP_DSS_ROT_90 + 4:
	case OMAP_DSS_ROT_270 + 4:
		*offset1 = 0;
		if (field_offset)
			*offset0 = field_offset * screen_width * ps;
		else
			*offset0 = 0;
1970 1971 1972 1973
		*row_inc = pixinc(1 -
			(y_predecim * screen_width + x_predecim * width) -
			(fieldmode ? screen_width : 0), ps);
		*pix_inc = pixinc(x_predecim, ps);
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		break;

	default:
		BUG();
1978
		return;
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	}
}

static void calc_dma_rotation_offset(u8 rotation, bool mirror,
		u16 screen_width,
		u16 width, u16 height,
		enum omap_color_mode color_mode, bool fieldmode,
		unsigned int field_offset,
		unsigned *offset0, unsigned *offset1,
1988
		s32 *row_inc, s32 *pix_inc, int x_predecim, int y_predecim)
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{
	u8 ps;
	u16 fbw, fbh;

	/* FIXME CLUT formats */
	switch (color_mode) {
	case OMAP_DSS_COLOR_CLUT1:
	case OMAP_DSS_COLOR_CLUT2:
	case OMAP_DSS_COLOR_CLUT4:
	case OMAP_DSS_COLOR_CLUT8:
		BUG();
		return;
	default:
		ps = color_mode_to_bpp(color_mode) / 8;
		break;
	}

	DSSDBG("calc_rot(%d): scrw %d, %dx%d\n", rotation, screen_width,
			width, height);

	/* width & height are overlay sizes, convert to fb sizes */

	if (rotation == OMAP_DSS_ROT_0 || rotation == OMAP_DSS_ROT_180) {
		fbw = width;
		fbh = height;
	} else {
		fbw = height;
		fbh = width;
	}

	/*
	 * field 0 = even field = bottom field
	 * field 1 = odd field = top field
	 */
	switch (rotation + mirror * 4) {
	case OMAP_DSS_ROT_0:
		*offset1 = 0;
		if (field_offset)
			*offset0 = *offset1 + field_offset * screen_width * ps;
		else
			*offset0 = *offset1;
2030 2031 2032 2033 2034 2035 2036 2037
		*row_inc = pixinc(1 +
			(y_predecim * screen_width - fbw * x_predecim) +
			(fieldmode ? screen_width : 0),	ps);
		if (color_mode == OMAP_DSS_COLOR_YUV2 ||
			color_mode == OMAP_DSS_COLOR_UYVY)
			*pix_inc = pixinc(x_predecim, 2 * ps);
		else
			*pix_inc = pixinc(x_predecim, ps);
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		break;
	case OMAP_DSS_ROT_90:
		*offset1 = screen_width * (fbh - 1) * ps;
		if (field_offset)
			*offset0 = *offset1 + field_offset * ps;
		else
			*offset0 = *offset1;
2045 2046 2047
		*row_inc = pixinc(screen_width * (fbh * x_predecim - 1) +
				y_predecim + (fieldmode ? 1 : 0), ps);
		*pix_inc = pixinc(-x_predecim * screen_width, ps);
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		break;
	case OMAP_DSS_ROT_180:
		*offset1 = (screen_width * (fbh - 1) + fbw - 1) * ps;
		if (field_offset)
			*offset0 = *offset1 - field_offset * screen_width * ps;
		else
			*offset0 = *offset1;
		*row_inc = pixinc(-1 -
2056 2057 2058 2059 2060 2061 2062
			(y_predecim * screen_width - fbw * x_predecim) -
			(fieldmode ? screen_width : 0),	ps);
		if (color_mode == OMAP_DSS_COLOR_YUV2 ||
			color_mode == OMAP_DSS_COLOR_UYVY)
			*pix_inc = pixinc(-x_predecim, 2 * ps);
		else
			*pix_inc = pixinc(-x_predecim, ps);
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		break;
	case OMAP_DSS_ROT_270:
		*offset1 = (fbw - 1) * ps;
		if (field_offset)
			*offset0 = *offset1 - field_offset * ps;
		else
			*offset0 = *offset1;
2070 2071 2072
		*row_inc = pixinc(-screen_width * (fbh * x_predecim - 1) -
				y_predecim - (fieldmode ? 1 : 0), ps);
		*pix_inc = pixinc(x_predecim * screen_width, ps);
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		break;

	/* mirroring */
	case OMAP_DSS_ROT_0 + 4:
		*offset1 = (fbw - 1) * ps;
		if (field_offset)
			*offset0 = *offset1 + field_offset * screen_width * ps;
		else
			*offset0 = *offset1;
2082
		*row_inc = pixinc(y_predecim * screen_width * 2 - 1 +
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				(fieldmode ? screen_width : 0),
				ps);
2085 2086 2087 2088 2089
		if (color_mode == OMAP_DSS_COLOR_YUV2 ||
			color_mode == OMAP_DSS_COLOR_UYVY)
			*pix_inc = pixinc(-x_predecim, 2 * ps);
		else
			*pix_inc = pixinc(-x_predecim, ps);
T
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2090 2091 2092 2093 2094 2095 2096 2097
		break;

	case OMAP_DSS_ROT_90 + 4:
		*offset1 = 0;
		if (field_offset)
			*offset0 = *offset1 + field_offset * ps;
		else
			*offset0 = *offset1;
2098 2099
		*row_inc = pixinc(-screen_width * (fbh * x_predecim - 1) +
				y_predecim + (fieldmode ? 1 : 0),
T
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2100
				ps);
2101
		*pix_inc = pixinc(x_predecim * screen_width, ps);
T
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2102 2103 2104 2105 2106 2107 2108 2109
		break;

	case OMAP_DSS_ROT_180 + 4:
		*offset1 = screen_width * (fbh - 1) * ps;
		if (field_offset)
			*offset0 = *offset1 - field_offset * screen_width * ps;
		else
			*offset0 = *offset1;
2110
		*row_inc = pixinc(1 - y_predecim * screen_width * 2 -
T
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2111 2112
				(fieldmode ? screen_width : 0),
				ps);
2113 2114 2115 2116 2117
		if (color_mode == OMAP_DSS_COLOR_YUV2 ||
			color_mode == OMAP_DSS_COLOR_UYVY)
			*pix_inc = pixinc(x_predecim, 2 * ps);
		else
			*pix_inc = pixinc(x_predecim, ps);
T
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2118 2119 2120 2121 2122 2123 2124 2125
		break;

	case OMAP_DSS_ROT_270 + 4:
		*offset1 = (screen_width * (fbh - 1) + fbw - 1) * ps;
		if (field_offset)
			*offset0 = *offset1 - field_offset * ps;
		else
			*offset0 = *offset1;
2126 2127
		*row_inc = pixinc(screen_width * (fbh * x_predecim - 1) -
				y_predecim - (fieldmode ? 1 : 0),
T
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2128
				ps);
2129
		*pix_inc = pixinc(-x_predecim * screen_width, ps);
T
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2130 2131 2132 2133
		break;

	default:
		BUG();
2134
		return;
T
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2135 2136 2137
	}
}

2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176
static void calc_tiler_rotation_offset(u16 screen_width, u16 width,
		enum omap_color_mode color_mode, bool fieldmode,
		unsigned int field_offset, unsigned *offset0, unsigned *offset1,
		s32 *row_inc, s32 *pix_inc, int x_predecim, int y_predecim)
{
	u8 ps;

	switch (color_mode) {
	case OMAP_DSS_COLOR_CLUT1:
	case OMAP_DSS_COLOR_CLUT2:
	case OMAP_DSS_COLOR_CLUT4:
	case OMAP_DSS_COLOR_CLUT8:
		BUG();
		return;
	default:
		ps = color_mode_to_bpp(color_mode) / 8;
		break;
	}

	DSSDBG("scrw %d, width %d\n", screen_width, width);

	/*
	 * field 0 = even field = bottom field
	 * field 1 = odd field = top field
	 */
	*offset1 = 0;
	if (field_offset)
		*offset0 = *offset1 + field_offset * screen_width * ps;
	else
		*offset0 = *offset1;
	*row_inc = pixinc(1 + (y_predecim * screen_width - width * x_predecim) +
			(fieldmode ? screen_width : 0), ps);
	if (color_mode == OMAP_DSS_COLOR_YUV2 ||
		color_mode == OMAP_DSS_COLOR_UYVY)
		*pix_inc = pixinc(x_predecim, 2 * ps);
	else
		*pix_inc = pixinc(x_predecim, ps);
}

2177 2178 2179 2180
/*
 * This function is used to avoid synclosts in OMAP3, because of some
 * undocumented horizontal position and timing related limitations.
 */
2181
static int check_horiz_timing_omap3(unsigned long pclk, unsigned long lclk,
2182
		const struct omap_video_timings *t, u16 pos_x,
2183 2184
		u16 width, u16 height, u16 out_width, u16 out_height,
		bool five_taps)
2185
{
2186
	const int ds = DIV_ROUND_UP(height, out_height);
2187
	unsigned long nonactive;
2188 2189 2190 2191
	static const u8 limits[3] = { 8, 10, 20 };
	u64 val, blank;
	int i;

2192
	nonactive = t->hactive + t->hfront_porch + t->hsync_len +
2193
		    t->hback_porch - out_width;
2194 2195 2196 2197 2198 2199

	i = 0;
	if (out_height < height)
		i++;
	if (out_width < width)
		i++;
2200
	blank = div_u64((u64)(t->hback_porch + t->hsync_len + t->hfront_porch) *
2201
			lclk, pclk);
2202 2203 2204 2205
	DSSDBG("blanking period + ppl = %llu (limit = %u)\n", blank, limits[i]);
	if (blank <= limits[i])
		return -EINVAL;

2206 2207 2208 2209
	/* FIXME add checks for 3-tap filter once the limitations are known */
	if (!five_taps)
		return 0;

2210 2211 2212 2213 2214 2215 2216
	/*
	 * Pixel data should be prepared before visible display point starts.
	 * So, atleast DS-2 lines must have already been fetched by DISPC
	 * during nonactive - pos_x period.
	 */
	val = div_u64((u64)(nonactive - pos_x) * lclk, pclk);
	DSSDBG("(nonactive - pos_x) * pcd = %llu max(0, DS - 2) * width = %d\n",
2217 2218
		val, max(0, ds - 2) * width);
	if (val < max(0, ds - 2) * width)
2219 2220 2221 2222 2223 2224 2225 2226 2227
		return -EINVAL;

	/*
	 * All lines need to be refilled during the nonactive period of which
	 * only one line can be loaded during the active period. So, atleast
	 * DS - 1 lines should be loaded during nonactive period.
	 */
	val =  div_u64((u64)nonactive * lclk, pclk);
	DSSDBG("nonactive * pcd  = %llu, max(0, DS - 1) * width = %d\n",
2228 2229
		val, max(0, ds - 1) * width);
	if (val < max(0, ds - 1) * width)
2230 2231 2232 2233 2234
		return -EINVAL;

	return 0;
}

2235
static unsigned long calc_core_clk_five_taps(unsigned long pclk,
2236 2237
		const struct omap_video_timings *mgr_timings, u16 width,
		u16 height, u16 out_width, u16 out_height,
2238
		enum omap_color_mode color_mode)
T
Tomi Valkeinen 已提交
2239
{
2240
	u32 core_clk = 0;
2241
	u64 tmp;
T
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2242

2243 2244 2245
	if (height <= out_height && width <= out_width)
		return (unsigned long) pclk;

T
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2246
	if (height > out_height) {
2247
		unsigned int ppl = mgr_timings->hactive;
T
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2248

2249
		tmp = (u64)pclk * height * out_width;
T
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2250
		do_div(tmp, 2 * out_height * ppl);
2251
		core_clk = tmp;
T
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2252

2253 2254 2255 2256
		if (height > 2 * out_height) {
			if (ppl == out_width)
				return 0;

2257
			tmp = (u64)pclk * (height - 2 * out_height) * out_width;
T
Tomi Valkeinen 已提交
2258
			do_div(tmp, 2 * out_height * (ppl - out_width));
2259
			core_clk = max_t(u32, core_clk, tmp);
T
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2260 2261 2262 2263
		}
	}

	if (width > out_width) {
2264
		tmp = (u64)pclk * width;
T
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2265
		do_div(tmp, out_width);
2266
		core_clk = max_t(u32, core_clk, tmp);
T
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2267 2268

		if (color_mode == OMAP_DSS_COLOR_RGB24U)
2269
			core_clk <<= 1;
T
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2270 2271
	}

2272
	return core_clk;
T
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2273 2274
}

2275
static unsigned long calc_core_clk_24xx(unsigned long pclk, u16 width,
2276
		u16 height, u16 out_width, u16 out_height, bool mem_to_mem)
2277 2278 2279 2280 2281 2282 2283
{
	if (height > out_height && width > out_width)
		return pclk * 4;
	else
		return pclk * 2;
}

2284
static unsigned long calc_core_clk_34xx(unsigned long pclk, u16 width,
2285
		u16 height, u16 out_width, u16 out_height, bool mem_to_mem)
T
Tomi Valkeinen 已提交
2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306
{
	unsigned int hf, vf;

	/*
	 * FIXME how to determine the 'A' factor
	 * for the no downscaling case ?
	 */

	if (width > 3 * out_width)
		hf = 4;
	else if (width > 2 * out_width)
		hf = 3;
	else if (width > out_width)
		hf = 2;
	else
		hf = 1;
	if (height > out_height)
		vf = 2;
	else
		vf = 1;

2307 2308 2309
	return pclk * vf * hf;
}

2310
static unsigned long calc_core_clk_44xx(unsigned long pclk, u16 width,
2311
		u16 height, u16 out_width, u16 out_height, bool mem_to_mem)
2312
{
2313 2314 2315 2316 2317 2318 2319 2320 2321
	/*
	 * If the overlay/writeback is in mem to mem mode, there are no
	 * downscaling limitations with respect to pixel clock, return 1 as
	 * required core clock to represent that we have sufficient enough
	 * core clock to do maximum downscaling
	 */
	if (mem_to_mem)
		return 1;

2322 2323 2324 2325 2326 2327
	if (width > out_width)
		return DIV_ROUND_UP(pclk, out_width) * width;
	else
		return pclk;
}

2328
static int dispc_ovl_calc_scaling_24xx(unsigned long pclk, unsigned long lclk,
2329 2330 2331 2332
		const struct omap_video_timings *mgr_timings,
		u16 width, u16 height, u16 out_width, u16 out_height,
		enum omap_color_mode color_mode, bool *five_taps,
		int *x_predecim, int *y_predecim, int *decim_x, int *decim_y,
2333
		u16 pos_x, unsigned long *core_clk, bool mem_to_mem)
2334 2335 2336 2337 2338 2339
{
	int error;
	u16 in_width, in_height;
	int min_factor = min(*decim_x, *decim_y);
	const int maxsinglelinewidth =
			dss_feat_get_param_max(FEAT_PARAM_LINEWIDTH);
2340

2341 2342 2343
	*five_taps = false;

	do {
2344 2345
		in_height = height / *decim_y;
		in_width = width / *decim_x;
2346
		*core_clk = dispc.feat->calc_core_clk(pclk, in_width,
2347
				in_height, out_width, out_height, mem_to_mem);
2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361
		error = (in_width > maxsinglelinewidth || !*core_clk ||
			*core_clk > dispc_core_clk_rate());
		if (error) {
			if (*decim_x == *decim_y) {
				*decim_x = min_factor;
				++*decim_y;
			} else {
				swap(*decim_x, *decim_y);
				if (*decim_x < *decim_y)
					++*decim_x;
			}
		}
	} while (*decim_x <= *x_predecim && *decim_y <= *y_predecim && error);

2362 2363 2364 2365 2366
	if (error) {
		DSSERR("failed to find scaling settings\n");
		return -EINVAL;
	}

2367 2368 2369 2370 2371 2372 2373
	if (in_width > maxsinglelinewidth) {
		DSSERR("Cannot scale max input width exceeded");
		return -EINVAL;
	}
	return 0;
}

2374
static int dispc_ovl_calc_scaling_34xx(unsigned long pclk, unsigned long lclk,
2375 2376 2377 2378
		const struct omap_video_timings *mgr_timings,
		u16 width, u16 height, u16 out_width, u16 out_height,
		enum omap_color_mode color_mode, bool *five_taps,
		int *x_predecim, int *y_predecim, int *decim_x, int *decim_y,
2379
		u16 pos_x, unsigned long *core_clk, bool mem_to_mem)
2380 2381 2382 2383 2384 2385 2386
{
	int error;
	u16 in_width, in_height;
	const int maxsinglelinewidth =
			dss_feat_get_param_max(FEAT_PARAM_LINEWIDTH);

	do {
2387 2388
		in_height = height / *decim_y;
		in_width = width / *decim_x;
2389
		*five_taps = in_height > out_height;
2390 2391 2392 2393 2394

		if (in_width > maxsinglelinewidth)
			if (in_height > out_height &&
						in_height < out_height * 2)
				*five_taps = false;
2395 2396 2397 2398 2399 2400
again:
		if (*five_taps)
			*core_clk = calc_core_clk_five_taps(pclk, mgr_timings,
						in_width, in_height, out_width,
						out_height, color_mode);
		else
2401
			*core_clk = dispc.feat->calc_core_clk(pclk, in_width,
2402 2403
					in_height, out_width, out_height,
					mem_to_mem);
2404

2405 2406 2407 2408 2409 2410 2411 2412
		error = check_horiz_timing_omap3(pclk, lclk, mgr_timings,
				pos_x, in_width, in_height, out_width,
				out_height, *five_taps);
		if (error && *five_taps) {
			*five_taps = false;
			goto again;
		}

2413 2414 2415
		error = (error || in_width > maxsinglelinewidth * 2 ||
			(in_width > maxsinglelinewidth && *five_taps) ||
			!*core_clk || *core_clk > dispc_core_clk_rate());
2416 2417 2418 2419 2420 2421 2422 2423 2424

		if (!error) {
			/* verify that we're inside the limits of scaler */
			if (in_width / 4 > out_width)
					error = 1;

			if (*five_taps) {
				if (in_height / 4 > out_height)
					error = 1;
2425
			} else {
2426 2427
				if (in_height / 2 > out_height)
					error = 1;
2428 2429
			}
		}
2430

2431 2432
		if (error)
			++*decim_y;
2433 2434
	} while (*decim_x <= *x_predecim && *decim_y <= *y_predecim && error);

2435 2436 2437 2438 2439
	if (error) {
		DSSERR("failed to find scaling settings\n");
		return -EINVAL;
	}

2440 2441
	if (check_horiz_timing_omap3(pclk, lclk, mgr_timings, pos_x, in_width,
				in_height, out_width, out_height, *five_taps)) {
2442 2443
			DSSERR("horizontal timing too tight\n");
			return -EINVAL;
2444
	}
2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458

	if (in_width > (maxsinglelinewidth * 2)) {
		DSSERR("Cannot setup scaling");
		DSSERR("width exceeds maximum width possible");
		return -EINVAL;
	}

	if (in_width > maxsinglelinewidth && *five_taps) {
		DSSERR("cannot setup scaling with five taps");
		return -EINVAL;
	}
	return 0;
}

2459
static int dispc_ovl_calc_scaling_44xx(unsigned long pclk, unsigned long lclk,
2460 2461 2462 2463
		const struct omap_video_timings *mgr_timings,
		u16 width, u16 height, u16 out_width, u16 out_height,
		enum omap_color_mode color_mode, bool *five_taps,
		int *x_predecim, int *y_predecim, int *decim_x, int *decim_y,
2464
		u16 pos_x, unsigned long *core_clk, bool mem_to_mem)
2465 2466 2467
{
	u16 in_width, in_width_max;
	int decim_x_min = *decim_x;
2468
	u16 in_height = height / *decim_y;
2469 2470
	const int maxsinglelinewidth =
				dss_feat_get_param_max(FEAT_PARAM_LINEWIDTH);
2471
	const int maxdownscale = dss_feat_get_param_max(FEAT_PARAM_DOWNSCALE);
2472

2473 2474 2475
	if (mem_to_mem) {
		in_width_max = out_width * maxdownscale;
	} else {
2476 2477
		in_width_max = dispc_core_clk_rate() /
					DIV_ROUND_UP(pclk, out_width);
2478
	}
2479 2480 2481 2482 2483 2484 2485 2486

	*decim_x = DIV_ROUND_UP(width, in_width_max);

	*decim_x = *decim_x > decim_x_min ? *decim_x : decim_x_min;
	if (*decim_x > *x_predecim)
		return -EINVAL;

	do {
2487
		in_width = width / *decim_x;
2488 2489 2490 2491 2492 2493 2494 2495
	} while (*decim_x <= *x_predecim &&
			in_width > maxsinglelinewidth && ++*decim_x);

	if (in_width > maxsinglelinewidth) {
		DSSERR("Cannot scale width exceeds max line width");
		return -EINVAL;
	}

2496
	*core_clk = dispc.feat->calc_core_clk(pclk, in_width, in_height,
2497
				out_width, out_height, mem_to_mem);
2498
	return 0;
T
Tomi Valkeinen 已提交
2499 2500
}

2501 2502 2503
#define DIV_FRAC(dividend, divisor) \
	((dividend) * 100 / (divisor) - ((dividend) / (divisor) * 100))

2504
static int dispc_ovl_calc_scaling(unsigned long pclk, unsigned long lclk,
2505
		enum omap_overlay_caps caps,
2506 2507
		const struct omap_video_timings *mgr_timings,
		u16 width, u16 height, u16 out_width, u16 out_height,
2508
		enum omap_color_mode color_mode, bool *five_taps,
2509
		int *x_predecim, int *y_predecim, u16 pos_x,
2510
		enum omap_dss_rotation_type rotation_type, bool mem_to_mem)
2511
{
2512
	const int maxdownscale = dss_feat_get_param_max(FEAT_PARAM_DOWNSCALE);
2513
	const int max_decim_limit = 16;
2514
	unsigned long core_clk = 0;
2515
	int decim_x, decim_y, ret;
2516

2517 2518 2519
	if (width == out_width && height == out_height)
		return 0;

2520
	if (!mem_to_mem && (pclk == 0 || mgr_timings->pixelclock == 0)) {
2521 2522 2523 2524
		DSSERR("cannot calculate scaling settings: pclk is zero\n");
		return -EINVAL;
	}

2525
	if ((caps & OMAP_DSS_OVL_CAP_SCALE) == 0)
2526
		return -EINVAL;
2527

2528
	if (mem_to_mem) {
2529 2530 2531 2532 2533 2534 2535
		*x_predecim = *y_predecim = 1;
	} else {
		*x_predecim = max_decim_limit;
		*y_predecim = (rotation_type == OMAP_DSS_ROT_TILER &&
				dss_has_feature(FEAT_BURST_2D)) ?
				2 : max_decim_limit;
	}
2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550

	if (color_mode == OMAP_DSS_COLOR_CLUT1 ||
	    color_mode == OMAP_DSS_COLOR_CLUT2 ||
	    color_mode == OMAP_DSS_COLOR_CLUT4 ||
	    color_mode == OMAP_DSS_COLOR_CLUT8) {
		*x_predecim = 1;
		*y_predecim = 1;
		*five_taps = false;
		return 0;
	}

	decim_x = DIV_ROUND_UP(DIV_ROUND_UP(width, out_width), maxdownscale);
	decim_y = DIV_ROUND_UP(DIV_ROUND_UP(height, out_height), maxdownscale);

	if (decim_x > *x_predecim || out_width > width * 8)
2551 2552
		return -EINVAL;

2553
	if (decim_y > *y_predecim || out_height > height * 8)
2554 2555
		return -EINVAL;

2556
	ret = dispc.feat->calc_scaling(pclk, lclk, mgr_timings, width, height,
2557
		out_width, out_height, color_mode, five_taps,
2558 2559
		x_predecim, y_predecim, &decim_x, &decim_y, pos_x, &core_clk,
		mem_to_mem);
2560 2561
	if (ret)
		return ret;
2562

2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575
	DSSDBG("%dx%d -> %dx%d (%d.%02d x %d.%02d), decim %dx%d %dx%d (%d.%02d x %d.%02d), taps %d, req clk %lu, cur clk %lu\n",
		width, height,
		out_width, out_height,
		out_width / width, DIV_FRAC(out_width, width),
		out_height / height, DIV_FRAC(out_height, height),

		decim_x, decim_y,
		width / decim_x, height / decim_y,
		out_width / (width / decim_x), DIV_FRAC(out_width, width / decim_x),
		out_height / (height / decim_y), DIV_FRAC(out_height, height / decim_y),

		*five_taps ? 5 : 3,
		core_clk, dispc_core_clk_rate());
2576

2577
	if (!core_clk || core_clk > dispc_core_clk_rate()) {
2578
		DSSERR("failed to set up scaling, "
2579 2580 2581
			"required core clk rate = %lu Hz, "
			"current core clk rate = %lu Hz\n",
			core_clk, dispc_core_clk_rate());
2582 2583 2584
		return -EINVAL;
	}

2585 2586
	*x_predecim = decim_x;
	*y_predecim = decim_y;
2587 2588 2589
	return 0;
}

2590
static int dispc_ovl_setup_common(enum omap_plane plane,
2591 2592 2593 2594 2595
		enum omap_overlay_caps caps, u32 paddr, u32 p_uv_addr,
		u16 screen_width, int pos_x, int pos_y, u16 width, u16 height,
		u16 out_width, u16 out_height, enum omap_color_mode color_mode,
		u8 rotation, bool mirror, u8 zorder, u8 pre_mult_alpha,
		u8 global_alpha, enum omap_dss_rotation_type rotation_type,
2596 2597
		bool replication, const struct omap_video_timings *mgr_timings,
		bool mem_to_mem)
T
Tomi Valkeinen 已提交
2598
{
2599
	bool five_taps = true;
2600
	bool fieldmode = false;
2601
	int r, cconv = 0;
T
Tomi Valkeinen 已提交
2602 2603 2604
	unsigned offset0, offset1;
	s32 row_inc;
	s32 pix_inc;
2605
	u16 frame_width, frame_height;
T
Tomi Valkeinen 已提交
2606
	unsigned int field_offset = 0;
2607 2608
	u16 in_height = height;
	u16 in_width = width;
2609
	int x_predecim = 1, y_predecim = 1;
2610
	bool ilace = !!(mgr_timings->flags & DISPLAY_FLAGS_INTERLACED);
2611 2612
	unsigned long pclk = dispc_plane_pclk_rate(plane);
	unsigned long lclk = dispc_plane_lclk_rate(plane);
2613

2614
	if (paddr == 0 && rotation_type != OMAP_DSS_ROT_TILER)
T
Tomi Valkeinen 已提交
2615 2616
		return -EINVAL;

2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631
	switch (color_mode) {
	case OMAP_DSS_COLOR_YUV2:
	case OMAP_DSS_COLOR_UYVY:
	case OMAP_DSS_COLOR_NV12:
		if (in_width & 1) {
			DSSERR("input width %d is not even for YUV format\n",
				in_width);
			return -EINVAL;
		}
		break;

	default:
		break;
	}

2632 2633
	out_width = out_width == 0 ? width : out_width;
	out_height = out_height == 0 ? height : out_height;
2634

2635
	if (ilace && height == out_height)
2636
		fieldmode = true;
T
Tomi Valkeinen 已提交
2637 2638 2639

	if (ilace) {
		if (fieldmode)
2640
			in_height /= 2;
2641
		pos_y /= 2;
2642
		out_height /= 2;
T
Tomi Valkeinen 已提交
2643 2644

		DSSDBG("adjusting for ilace: height %d, pos_y %d, "
2645 2646
			"out_height %d\n", in_height, pos_y,
			out_height);
T
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2647 2648
	}

2649
	if (!dss_feat_color_mode_supported(plane, color_mode))
2650 2651
		return -EINVAL;

2652
	r = dispc_ovl_calc_scaling(pclk, lclk, caps, mgr_timings, in_width,
2653 2654
			in_height, out_width, out_height, color_mode,
			&five_taps, &x_predecim, &y_predecim, pos_x,
2655
			rotation_type, mem_to_mem);
2656 2657
	if (r)
		return r;
T
Tomi Valkeinen 已提交
2658

2659 2660
	in_width = in_width / x_predecim;
	in_height = in_height / y_predecim;
2661

2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682
	if (x_predecim > 1 || y_predecim > 1)
		DSSDBG("predecimation %d x %x, new input size %d x %d\n",
			x_predecim, y_predecim, in_width, in_height);

	switch (color_mode) {
	case OMAP_DSS_COLOR_YUV2:
	case OMAP_DSS_COLOR_UYVY:
	case OMAP_DSS_COLOR_NV12:
		if (in_width & 1) {
			DSSDBG("predecimated input width is not even for YUV format\n");
			DSSDBG("adjusting input width %d -> %d\n",
				in_width, in_width & ~1);

			in_width &= ~1;
		}
		break;

	default:
		break;
	}

2683 2684 2685
	if (color_mode == OMAP_DSS_COLOR_YUV2 ||
			color_mode == OMAP_DSS_COLOR_UYVY ||
			color_mode == OMAP_DSS_COLOR_NV12)
2686
		cconv = 1;
T
Tomi Valkeinen 已提交
2687 2688 2689 2690 2691 2692 2693 2694 2695

	if (ilace && !fieldmode) {
		/*
		 * when downscaling the bottom field may have to start several
		 * source lines below the top field. Unfortunately ACCUI
		 * registers will only hold the fractional part of the offset
		 * so the integer part must be added to the base address of the
		 * bottom field.
		 */
2696
		if (!in_height || in_height == out_height)
T
Tomi Valkeinen 已提交
2697 2698
			field_offset = 0;
		else
2699
			field_offset = in_height / out_height / 2;
T
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2700 2701 2702 2703 2704 2705
	}

	/* Fields are independent but interleaved in memory. */
	if (fieldmode)
		field_offset = 1;

2706 2707 2708 2709 2710
	offset0 = 0;
	offset1 = 0;
	row_inc = 0;
	pix_inc = 0;

2711 2712 2713 2714 2715 2716 2717 2718
	if (plane == OMAP_DSS_WB) {
		frame_width = out_width;
		frame_height = out_height;
	} else {
		frame_width = in_width;
		frame_height = height;
	}

2719
	if (rotation_type == OMAP_DSS_ROT_TILER)
2720
		calc_tiler_rotation_offset(screen_width, frame_width,
2721
				color_mode, fieldmode, field_offset,
2722 2723
				&offset0, &offset1, &row_inc, &pix_inc,
				x_predecim, y_predecim);
2724
	else if (rotation_type == OMAP_DSS_ROT_DMA)
2725 2726
		calc_dma_rotation_offset(rotation, mirror, screen_width,
				frame_width, frame_height,
2727
				color_mode, fieldmode, field_offset,
2728 2729
				&offset0, &offset1, &row_inc, &pix_inc,
				x_predecim, y_predecim);
T
Tomi Valkeinen 已提交
2730
	else
2731
		calc_vrfb_rotation_offset(rotation, mirror,
2732
				screen_width, frame_width, frame_height,
2733
				color_mode, fieldmode, field_offset,
2734 2735
				&offset0, &offset1, &row_inc, &pix_inc,
				x_predecim, y_predecim);
T
Tomi Valkeinen 已提交
2736 2737 2738 2739

	DSSDBG("offset0 %u, offset1 %u, row_inc %d, pix_inc %d\n",
			offset0, offset1, row_inc, pix_inc);

2740
	dispc_ovl_set_color_mode(plane, color_mode);
T
Tomi Valkeinen 已提交
2741

2742
	dispc_ovl_configure_burst_type(plane, rotation_type);
2743

2744 2745 2746
	if (dispc.feat->reverse_ilace_field_order)
		swap(offset0, offset1);

2747 2748
	dispc_ovl_set_ba0(plane, paddr + offset0);
	dispc_ovl_set_ba1(plane, paddr + offset1);
T
Tomi Valkeinen 已提交
2749

2750 2751 2752
	if (OMAP_DSS_COLOR_NV12 == color_mode) {
		dispc_ovl_set_ba0_uv(plane, p_uv_addr + offset0);
		dispc_ovl_set_ba1_uv(plane, p_uv_addr + offset1);
2753 2754
	}

2755 2756 2757
	if (dispc.feat->last_pixel_inc_missing)
		row_inc += pix_inc - 1;

2758 2759
	dispc_ovl_set_row_inc(plane, row_inc);
	dispc_ovl_set_pix_inc(plane, pix_inc);
T
Tomi Valkeinen 已提交
2760

2761
	DSSDBG("%d,%d %dx%d -> %dx%d\n", pos_x, pos_y, in_width,
2762
			in_height, out_width, out_height);
T
Tomi Valkeinen 已提交
2763

2764
	dispc_ovl_set_pos(plane, caps, pos_x, pos_y);
T
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2765

2766
	dispc_ovl_set_input_size(plane, in_width, in_height);
T
Tomi Valkeinen 已提交
2767

2768
	if (caps & OMAP_DSS_OVL_CAP_SCALE) {
2769 2770
		dispc_ovl_set_scaling(plane, in_width, in_height, out_width,
				   out_height, ilace, five_taps, fieldmode,
2771
				   color_mode, rotation);
2772
		dispc_ovl_set_output_size(plane, out_width, out_height);
2773
		dispc_ovl_set_vid_color_conv(plane, cconv);
T
Tomi Valkeinen 已提交
2774 2775
	}

2776 2777
	dispc_ovl_set_rotation_attrs(plane, rotation, rotation_type, mirror,
			color_mode);
T
Tomi Valkeinen 已提交
2778

2779 2780 2781
	dispc_ovl_set_zorder(plane, caps, zorder);
	dispc_ovl_set_pre_mult_alpha(plane, caps, pre_mult_alpha);
	dispc_ovl_setup_global_alpha(plane, caps, global_alpha);
T
Tomi Valkeinen 已提交
2782

2783
	dispc_ovl_enable_replication(plane, caps, replication);
2784

T
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2785 2786 2787
	return 0;
}

2788
int dispc_ovl_setup(enum omap_plane plane, const struct omap_overlay_info *oi,
2789 2790
		bool replication, const struct omap_video_timings *mgr_timings,
		bool mem_to_mem)
2791 2792
{
	int r;
2793
	enum omap_overlay_caps caps = dss_feat_get_overlay_caps(plane);
2794 2795 2796 2797
	enum omap_channel channel;

	channel = dispc_ovl_get_channel_out(plane);

2798 2799 2800
	DSSDBG("dispc_ovl_setup %d, pa %pad, pa_uv %pad, sw %d, %d,%d, %dx%d ->"
		" %dx%d, cmode %x, rot %d, mir %d, chan %d repl %d\n",
		plane, &oi->paddr, &oi->p_uv_addr, oi->screen_width, oi->pos_x,
2801 2802 2803
		oi->pos_y, oi->width, oi->height, oi->out_width, oi->out_height,
		oi->color_mode, oi->rotation, oi->mirror, channel, replication);

2804
	r = dispc_ovl_setup_common(plane, caps, oi->paddr, oi->p_uv_addr,
2805 2806 2807
		oi->screen_width, oi->pos_x, oi->pos_y, oi->width, oi->height,
		oi->out_width, oi->out_height, oi->color_mode, oi->rotation,
		oi->mirror, oi->zorder, oi->pre_mult_alpha, oi->global_alpha,
2808
		oi->rotation_type, replication, mgr_timings, mem_to_mem);
2809 2810 2811

	return r;
}
T
Tomi Valkeinen 已提交
2812
EXPORT_SYMBOL(dispc_ovl_setup);
2813

2814
int dispc_wb_setup(const struct omap_dss_writeback_info *wi,
2815
		bool mem_to_mem, const struct omap_video_timings *mgr_timings)
2816 2817
{
	int r;
2818
	u32 l;
2819 2820 2821 2822
	enum omap_plane plane = OMAP_DSS_WB;
	const int pos_x = 0, pos_y = 0;
	const u8 zorder = 0, global_alpha = 0;
	const bool replication = false;
2823
	bool truncation;
2824
	int in_width = mgr_timings->hactive;
2825
	int in_height = mgr_timings->vactive;
2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837
	enum omap_overlay_caps caps =
		OMAP_DSS_OVL_CAP_SCALE | OMAP_DSS_OVL_CAP_PRE_MULT_ALPHA;

	DSSDBG("dispc_wb_setup, pa %x, pa_uv %x, %d,%d -> %dx%d, cmode %x, "
		"rot %d, mir %d\n", wi->paddr, wi->p_uv_addr, in_width,
		in_height, wi->width, wi->height, wi->color_mode, wi->rotation,
		wi->mirror);

	r = dispc_ovl_setup_common(plane, caps, wi->paddr, wi->p_uv_addr,
		wi->buf_width, pos_x, pos_y, in_width, in_height, wi->width,
		wi->height, wi->color_mode, wi->rotation, wi->mirror, zorder,
		wi->pre_mult_alpha, global_alpha, wi->rotation_type,
2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858 2859
		replication, mgr_timings, mem_to_mem);

	switch (wi->color_mode) {
	case OMAP_DSS_COLOR_RGB16:
	case OMAP_DSS_COLOR_RGB24P:
	case OMAP_DSS_COLOR_ARGB16:
	case OMAP_DSS_COLOR_RGBA16:
	case OMAP_DSS_COLOR_RGB12U:
	case OMAP_DSS_COLOR_ARGB16_1555:
	case OMAP_DSS_COLOR_XRGB16_1555:
	case OMAP_DSS_COLOR_RGBX16:
		truncation = true;
		break;
	default:
		truncation = false;
		break;
	}

	/* setup extra DISPC_WB_ATTRIBUTES */
	l = dispc_read_reg(DISPC_OVL_ATTRIBUTES(plane));
	l = FLD_MOD(l, truncation, 10, 10);	/* TRUNCATIONENABLE */
	l = FLD_MOD(l, mem_to_mem, 19, 19);	/* WRITEBACKMODE */
2860 2861
	if (mem_to_mem)
		l = FLD_MOD(l, 1, 26, 24);	/* CAPTUREMODE */
2862 2863
	else
		l = FLD_MOD(l, 0, 26, 24);	/* CAPTUREMODE */
2864
	dispc_write_reg(DISPC_OVL_ATTRIBUTES(plane), l);
2865

2866 2867 2868 2869 2870 2871
	if (mem_to_mem) {
		/* WBDELAYCOUNT */
		REG_FLD_MOD(DISPC_OVL_ATTRIBUTES2(plane), 0, 7, 0);
	} else {
		int wbdelay;

2872
		wbdelay = min(mgr_timings->vfront_porch +
2873
			      mgr_timings->vsync_len + mgr_timings->vback_porch, 255);
2874 2875 2876 2877 2878

		/* WBDELAYCOUNT */
		REG_FLD_MOD(DISPC_OVL_ATTRIBUTES2(plane), wbdelay, 7, 0);
	}

2879 2880 2881
	return r;
}

2882
int dispc_ovl_enable(enum omap_plane plane, bool enable)
T
Tomi Valkeinen 已提交
2883
{
2884 2885
	DSSDBG("dispc_enable_plane %d, %d\n", plane, enable);

2886
	REG_FLD_MOD(DISPC_OVL_ATTRIBUTES(plane), enable ? 1 : 0, 0, 0);
2887 2888

	return 0;
T
Tomi Valkeinen 已提交
2889
}
T
Tomi Valkeinen 已提交
2890
EXPORT_SYMBOL(dispc_ovl_enable);
T
Tomi Valkeinen 已提交
2891

T
Tomi Valkeinen 已提交
2892 2893 2894 2895
bool dispc_ovl_enabled(enum omap_plane plane)
{
	return REG_GET(DISPC_OVL_ATTRIBUTES(plane), 0, 0);
}
T
Tomi Valkeinen 已提交
2896
EXPORT_SYMBOL(dispc_ovl_enabled);
T
Tomi Valkeinen 已提交
2897

2898 2899 2900 2901 2902 2903
enum omap_dss_output_id dispc_mgr_get_supported_outputs(enum omap_channel channel)
{
	return dss_feat_get_supported_outputs(channel);
}
EXPORT_SYMBOL(dispc_mgr_get_supported_outputs);

2904
void dispc_mgr_enable(enum omap_channel channel, bool enable)
T
Tomi Valkeinen 已提交
2905
{
2906 2907 2908
	mgr_fld_write(channel, DISPC_MGR_FLD_ENABLE, enable);
	/* flush posted write */
	mgr_fld_read(channel, DISPC_MGR_FLD_ENABLE);
T
Tomi Valkeinen 已提交
2909
}
T
Tomi Valkeinen 已提交
2910
EXPORT_SYMBOL(dispc_mgr_enable);
T
Tomi Valkeinen 已提交
2911

2912 2913 2914 2915
bool dispc_mgr_is_enabled(enum omap_channel channel)
{
	return !!mgr_fld_read(channel, DISPC_MGR_FLD_ENABLE);
}
T
Tomi Valkeinen 已提交
2916
EXPORT_SYMBOL(dispc_mgr_is_enabled);
2917

2918 2919
void dispc_wb_enable(bool enable)
{
2920
	dispc_ovl_enable(OMAP_DSS_WB, enable);
2921 2922 2923 2924
}

bool dispc_wb_is_enabled(void)
{
2925
	return dispc_ovl_enabled(OMAP_DSS_WB);
2926 2927
}

2928
static void dispc_lcd_enable_signal_polarity(bool act_high)
T
Tomi Valkeinen 已提交
2929
{
2930 2931 2932
	if (!dss_has_feature(FEAT_LCDENABLEPOL))
		return;

T
Tomi Valkeinen 已提交
2933 2934 2935 2936 2937
	REG_FLD_MOD(DISPC_CONTROL, act_high ? 1 : 0, 29, 29);
}

void dispc_lcd_enable_signal(bool enable)
{
2938 2939 2940
	if (!dss_has_feature(FEAT_LCDENABLESIGNAL))
		return;

T
Tomi Valkeinen 已提交
2941 2942 2943 2944 2945
	REG_FLD_MOD(DISPC_CONTROL, enable ? 1 : 0, 28, 28);
}

void dispc_pck_free_enable(bool enable)
{
2946 2947 2948
	if (!dss_has_feature(FEAT_PCKFREEENABLE))
		return;

T
Tomi Valkeinen 已提交
2949 2950 2951
	REG_FLD_MOD(DISPC_CONTROL, enable ? 1 : 0, 27, 27);
}

2952
static void dispc_mgr_enable_fifohandcheck(enum omap_channel channel, bool enable)
T
Tomi Valkeinen 已提交
2953
{
2954
	mgr_fld_write(channel, DISPC_MGR_FLD_FIFOHANDCHECK, enable);
T
Tomi Valkeinen 已提交
2955 2956 2957
}


2958
static void dispc_mgr_set_lcd_type_tft(enum omap_channel channel)
T
Tomi Valkeinen 已提交
2959
{
2960
	mgr_fld_write(channel, DISPC_MGR_FLD_STNTFT, 1);
T
Tomi Valkeinen 已提交
2961 2962
}

2963
static void dispc_set_loadmode(enum omap_dss_load_mode mode)
T
Tomi Valkeinen 已提交
2964 2965 2966 2967 2968
{
	REG_FLD_MOD(DISPC_CONFIG, mode, 2, 1);
}


2969
static void dispc_mgr_set_default_color(enum omap_channel channel, u32 color)
T
Tomi Valkeinen 已提交
2970
{
2971
	dispc_write_reg(DISPC_DEFAULT_COLOR(channel), color);
T
Tomi Valkeinen 已提交
2972 2973
}

2974
static void dispc_mgr_set_trans_key(enum omap_channel ch,
T
Tomi Valkeinen 已提交
2975 2976 2977
		enum omap_dss_trans_key_type type,
		u32 trans_key)
{
2978
	mgr_fld_write(ch, DISPC_MGR_FLD_TCKSELECTION, type);
T
Tomi Valkeinen 已提交
2979

2980
	dispc_write_reg(DISPC_TRANS_COLOR(ch), trans_key);
T
Tomi Valkeinen 已提交
2981 2982
}

2983
static void dispc_mgr_enable_trans_key(enum omap_channel ch, bool enable)
T
Tomi Valkeinen 已提交
2984
{
2985
	mgr_fld_write(ch, DISPC_MGR_FLD_TCKENABLE, enable);
T
Tomi Valkeinen 已提交
2986
}
2987

2988 2989
static void dispc_mgr_enable_alpha_fixed_zorder(enum omap_channel ch,
		bool enable)
T
Tomi Valkeinen 已提交
2990
{
2991
	if (!dss_has_feature(FEAT_ALPHA_FIXED_ZORDER))
T
Tomi Valkeinen 已提交
2992 2993 2994 2995
		return;

	if (ch == OMAP_DSS_CHANNEL_LCD)
		REG_FLD_MOD(DISPC_CONFIG, enable, 18, 18);
2996
	else if (ch == OMAP_DSS_CHANNEL_DIGIT)
T
Tomi Valkeinen 已提交
2997 2998
		REG_FLD_MOD(DISPC_CONFIG, enable, 19, 19);
}
2999

3000
void dispc_mgr_setup(enum omap_channel channel,
3001
		const struct omap_overlay_manager_info *info)
3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012
{
	dispc_mgr_set_default_color(channel, info->default_color);
	dispc_mgr_set_trans_key(channel, info->trans_key_type, info->trans_key);
	dispc_mgr_enable_trans_key(channel, info->trans_enabled);
	dispc_mgr_enable_alpha_fixed_zorder(channel,
			info->partial_alpha_enabled);
	if (dss_has_feature(FEAT_CPR)) {
		dispc_mgr_enable_cpr(channel, info->cpr_enable);
		dispc_mgr_set_cpr_coef(channel, &info->cpr_coefs);
	}
}
T
Tomi Valkeinen 已提交
3013
EXPORT_SYMBOL(dispc_mgr_setup);
T
Tomi Valkeinen 已提交
3014

3015
static void dispc_mgr_set_tft_data_lines(enum omap_channel channel, u8 data_lines)
T
Tomi Valkeinen 已提交
3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034 3035 3036
{
	int code;

	switch (data_lines) {
	case 12:
		code = 0;
		break;
	case 16:
		code = 1;
		break;
	case 18:
		code = 2;
		break;
	case 24:
		code = 3;
		break;
	default:
		BUG();
		return;
	}

3037
	mgr_fld_write(channel, DISPC_MGR_FLD_TFTDATALINES, code);
T
Tomi Valkeinen 已提交
3038 3039
}

3040
static void dispc_mgr_set_io_pad_mode(enum dss_io_pad_mode mode)
T
Tomi Valkeinen 已提交
3041 3042
{
	u32 l;
3043
	int gpout0, gpout1;
T
Tomi Valkeinen 已提交
3044 3045

	switch (mode) {
3046 3047 3048
	case DSS_IO_PAD_MODE_RESET:
		gpout0 = 0;
		gpout1 = 0;
T
Tomi Valkeinen 已提交
3049
		break;
3050 3051
	case DSS_IO_PAD_MODE_RFBI:
		gpout0 = 1;
T
Tomi Valkeinen 已提交
3052 3053
		gpout1 = 0;
		break;
3054 3055
	case DSS_IO_PAD_MODE_BYPASS:
		gpout0 = 1;
T
Tomi Valkeinen 已提交
3056 3057 3058 3059 3060 3061 3062
		gpout1 = 1;
		break;
	default:
		BUG();
		return;
	}

3063 3064 3065 3066 3067 3068
	l = dispc_read_reg(DISPC_CONTROL);
	l = FLD_MOD(l, gpout0, 15, 15);
	l = FLD_MOD(l, gpout1, 16, 16);
	dispc_write_reg(DISPC_CONTROL, l);
}

3069
static void dispc_mgr_enable_stallmode(enum omap_channel channel, bool enable)
3070
{
3071
	mgr_fld_write(channel, DISPC_MGR_FLD_STALLMODE, enable);
T
Tomi Valkeinen 已提交
3072 3073
}

3074 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089
void dispc_mgr_set_lcd_config(enum omap_channel channel,
		const struct dss_lcd_mgr_config *config)
{
	dispc_mgr_set_io_pad_mode(config->io_pad_mode);

	dispc_mgr_enable_stallmode(channel, config->stallmode);
	dispc_mgr_enable_fifohandcheck(channel, config->fifohandcheck);

	dispc_mgr_set_clock_div(channel, &config->clock_info);

	dispc_mgr_set_tft_data_lines(channel, config->video_port_width);

	dispc_lcd_enable_signal_polarity(config->lcden_sig_polarity);

	dispc_mgr_set_lcd_type_tft(channel);
}
T
Tomi Valkeinen 已提交
3090
EXPORT_SYMBOL(dispc_mgr_set_lcd_config);
3091

3092 3093
static bool _dispc_mgr_size_ok(u16 width, u16 height)
{
3094 3095
	return width <= dispc.feat->mgr_width_max &&
		height <= dispc.feat->mgr_height_max;
3096 3097
}

3098
static bool _dispc_lcd_timings_ok(int hsync_len, int hfp, int hbp,
T
Tomi Valkeinen 已提交
3099 3100
		int vsw, int vfp, int vbp)
{
3101
	if (hsync_len < 1 || hsync_len > dispc.feat->sw_max ||
3102 3103 3104 3105 3106 3107
			hfp < 1 || hfp > dispc.feat->hp_max ||
			hbp < 1 || hbp > dispc.feat->hp_max ||
			vsw < 1 || vsw > dispc.feat->sw_max ||
			vfp < 0 || vfp > dispc.feat->vp_max ||
			vbp < 0 || vbp > dispc.feat->vp_max)
		return false;
T
Tomi Valkeinen 已提交
3108 3109 3110
	return true;
}

3111 3112 3113 3114
static bool _dispc_mgr_pclk_ok(enum omap_channel channel,
		unsigned long pclk)
{
	if (dss_mgr_is_lcd(channel))
3115
		return pclk <= dispc.feat->max_lcd_pclk;
3116
	else
3117
		return pclk <= dispc.feat->max_tv_pclk;
3118 3119
}

3120
bool dispc_mgr_timings_ok(enum omap_channel channel,
3121
		const struct omap_video_timings *timings)
T
Tomi Valkeinen 已提交
3122
{
3123
	if (!_dispc_mgr_size_ok(timings->hactive, timings->vactive))
3124
		return false;
3125

3126 3127
	if (!_dispc_mgr_pclk_ok(channel, timings->pixelclock))
		return false;
3128 3129

	if (dss_mgr_is_lcd(channel)) {
3130
		/* TODO: OMAP4+ supports interlace for LCD outputs */
3131
		if (timings->flags & DISPLAY_FLAGS_INTERLACED)
3132
			return false;
3133

3134
		if (!_dispc_lcd_timings_ok(timings->hsync_len,
3135
				timings->hfront_porch, timings->hback_porch,
3136
				timings->vsync_len, timings->vfront_porch,
3137
				timings->vback_porch))
3138
			return false;
3139
	}
3140

3141
	return true;
T
Tomi Valkeinen 已提交
3142 3143
}

3144 3145
static void _dispc_mgr_set_lcd_timings(enum omap_channel channel,
				       const struct omap_video_timings *ovt)
T
Tomi Valkeinen 已提交
3146
{
3147
	u32 timing_h, timing_v, l;
3148
	bool onoff, rf, ipc, vs, hs, de;
T
Tomi Valkeinen 已提交
3149

3150 3151 3152 3153 3154 3155
	timing_h = FLD_VAL(ovt->hsync_len - 1, dispc.feat->sw_start, 0) |
		   FLD_VAL(ovt->hfront_porch - 1, dispc.feat->fp_start, 8) |
		   FLD_VAL(ovt->hback_porch - 1, dispc.feat->bp_start, 20);
	timing_v = FLD_VAL(ovt->vsync_len - 1, dispc.feat->sw_start, 0) |
		   FLD_VAL(ovt->vfront_porch, dispc.feat->fp_start, 8) |
		   FLD_VAL(ovt->vback_porch, dispc.feat->bp_start, 20);
T
Tomi Valkeinen 已提交
3156

3157 3158
	dispc_write_reg(DISPC_TIMING_H(channel), timing_h);
	dispc_write_reg(DISPC_TIMING_V(channel), timing_v);
3159

3160
	if (ovt->flags & DISPLAY_FLAGS_VSYNC_HIGH)
3161
		vs = false;
3162 3163
	else
		vs = true;
3164

3165
	if (ovt->flags & DISPLAY_FLAGS_HSYNC_HIGH)
3166
		hs = false;
3167 3168
	else
		hs = true;
3169

3170
	if (ovt->flags & DISPLAY_FLAGS_DE_HIGH)
3171
		de = false;
3172 3173
	else
		de = true;
3174

3175
	switch (ovt->data_pclk_edge) {
3176 3177 3178 3179 3180 3181 3182 3183 3184 3185
	case OMAPDSS_DRIVE_SIG_RISING_EDGE:
		ipc = false;
		break;
	case OMAPDSS_DRIVE_SIG_FALLING_EDGE:
		ipc = true;
		break;
	default:
		BUG();
	}

3186 3187 3188
	/* always use the 'rf' setting */
	onoff = true;

3189
	switch (ovt->sync_pclk_edge) {
3190 3191 3192 3193 3194 3195 3196 3197
	case OMAPDSS_DRIVE_SIG_FALLING_EDGE:
		rf = false;
		break;
	case OMAPDSS_DRIVE_SIG_RISING_EDGE:
		rf = true;
		break;
	default:
		BUG();
J
Joe Perches 已提交
3198
	}
3199

3200 3201
	l = FLD_VAL(onoff, 17, 17) |
		FLD_VAL(rf, 16, 16) |
3202
		FLD_VAL(de, 15, 15) |
3203
		FLD_VAL(ipc, 14, 14) |
3204 3205
		FLD_VAL(hs, 13, 13) |
		FLD_VAL(vs, 12, 12);
3206

3207 3208 3209 3210
	/* always set ALIGN bit when available */
	if (dispc.feat->supports_sync_align)
		l |= (1 << 18);

3211
	dispc_write_reg(DISPC_POL_FREQ(channel), l);
3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225 3226 3227 3228 3229 3230

	if (dispc.syscon_pol) {
		const int shifts[] = {
			[OMAP_DSS_CHANNEL_LCD] = 0,
			[OMAP_DSS_CHANNEL_LCD2] = 1,
			[OMAP_DSS_CHANNEL_LCD3] = 2,
		};

		u32 mask, val;

		mask = (1 << 0) | (1 << 3) | (1 << 6);
		val = (rf << 0) | (ipc << 3) | (onoff << 6);

		mask <<= 16 + shifts[channel];
		val <<= 16 + shifts[channel];

		regmap_update_bits(dispc.syscon_pol, dispc.syscon_pol_offset,
			mask, val);
	}
T
Tomi Valkeinen 已提交
3231 3232 3233
}

/* change name to mode? */
3234
void dispc_mgr_set_timings(enum omap_channel channel,
3235
		const struct omap_video_timings *timings)
T
Tomi Valkeinen 已提交
3236 3237 3238
{
	unsigned xtot, ytot;
	unsigned long ht, vt;
3239
	struct omap_video_timings t = *timings;
T
Tomi Valkeinen 已提交
3240

3241
	DSSDBG("channel %d xres %u yres %u\n", channel, t.hactive, t.vactive);
T
Tomi Valkeinen 已提交
3242

3243
	if (!dispc_mgr_timings_ok(channel, &t)) {
3244
		BUG();
3245 3246
		return;
	}
T
Tomi Valkeinen 已提交
3247

3248
	if (dss_mgr_is_lcd(channel)) {
3249
		_dispc_mgr_set_lcd_timings(channel, &t);
T
Tomi Valkeinen 已提交
3250

3251
		xtot = t.hactive + t.hfront_porch + t.hsync_len + t.hback_porch;
3252
		ytot = t.vactive + t.vfront_porch + t.vsync_len + t.vback_porch;
T
Tomi Valkeinen 已提交
3253

3254 3255
		ht = timings->pixelclock / xtot;
		vt = timings->pixelclock / xtot / ytot;
3256

3257
		DSSDBG("pck %u\n", timings->pixelclock);
3258
		DSSDBG("hsync_len %d hfp %d hbp %d vsw %d vfp %d vbp %d\n",
3259
			t.hsync_len, t.hfront_porch, t.hback_porch,
3260
			t.vsync_len, t.vfront_porch, t.vback_porch);
3261
		DSSDBG("vsync_level %d hsync_level %d data_pclk_edge %d de_level %d sync_pclk_edge %d\n",
3262 3263
			!!(t.flags & DISPLAY_FLAGS_VSYNC_HIGH),
			!!(t.flags & DISPLAY_FLAGS_HSYNC_HIGH),
3264 3265
			t.data_pclk_edge, !!(t.flags & DISPLAY_FLAGS_DE_HIGH),
			t.sync_pclk_edge);
T
Tomi Valkeinen 已提交
3266

3267
		DSSDBG("hsync %luHz, vsync %luHz\n", ht, vt);
3268
	} else {
3269
		if (t.flags & DISPLAY_FLAGS_INTERLACED)
3270
			t.vactive /= 2;
3271 3272 3273 3274

		if (dispc.feat->supports_double_pixel)
			REG_FLD_MOD(DISPC_CONTROL, t.double_pixel ? 1 : 0,
				19, 17);
3275
	}
3276

3277
	dispc_mgr_set_size(channel, t.hactive, t.vactive);
T
Tomi Valkeinen 已提交
3278
}
T
Tomi Valkeinen 已提交
3279
EXPORT_SYMBOL(dispc_mgr_set_timings);
T
Tomi Valkeinen 已提交
3280

3281
static void dispc_mgr_set_lcd_divisor(enum omap_channel channel, u16 lck_div,
3282
		u16 pck_div)
T
Tomi Valkeinen 已提交
3283 3284
{
	BUG_ON(lck_div < 1);
3285
	BUG_ON(pck_div < 1);
T
Tomi Valkeinen 已提交
3286

3287
	dispc_write_reg(DISPC_DIVISORo(channel),
T
Tomi Valkeinen 已提交
3288
			FLD_VAL(lck_div, 23, 16) | FLD_VAL(pck_div, 7, 0));
3289

3290
	if (!dss_has_feature(FEAT_CORE_CLK_DIV) &&
3291 3292
			channel == OMAP_DSS_CHANNEL_LCD)
		dispc.core_clk_rate = dispc_fclk_rate() / lck_div;
T
Tomi Valkeinen 已提交
3293 3294
}

3295
static void dispc_mgr_get_lcd_divisor(enum omap_channel channel, int *lck_div,
3296
		int *pck_div)
T
Tomi Valkeinen 已提交
3297 3298
{
	u32 l;
3299
	l = dispc_read_reg(DISPC_DIVISORo(channel));
T
Tomi Valkeinen 已提交
3300 3301 3302 3303
	*lck_div = FLD_GET(l, 23, 16);
	*pck_div = FLD_GET(l, 7, 0);
}

3304
static unsigned long dispc_fclk_rate(void)
T
Tomi Valkeinen 已提交
3305
{
3306 3307
	unsigned long r;
	enum dss_clk_source src;
T
Tomi Valkeinen 已提交
3308

3309 3310 3311
	src = dss_get_dispc_clk_source();

	if (src == DSS_CLK_SRC_FCK) {
3312
		r = dss_get_dispc_clk_rate();
3313 3314 3315
	} else {
		struct dss_pll *pll;
		unsigned clkout_idx;
3316

3317 3318
		pll = dss_pll_find_by_src(src);
		clkout_idx = dss_pll_get_clkout_idx_for_src(src);
3319

3320
		r = pll->cinfo.clkout[clkout_idx];
3321 3322
	}

T
Tomi Valkeinen 已提交
3323 3324 3325
	return r;
}

3326
static unsigned long dispc_mgr_lclk_rate(enum omap_channel channel)
T
Tomi Valkeinen 已提交
3327 3328 3329
{
	int lcd;
	unsigned long r;
3330
	enum dss_clk_source src;
T
Tomi Valkeinen 已提交
3331

3332 3333 3334
	/* for TV, LCLK rate is the FCLK rate */
	if (!dss_mgr_is_lcd(channel))
		return dispc_fclk_rate();
T
Tomi Valkeinen 已提交
3335

3336
	src = dss_get_lcd_clk_source(channel);
3337

3338 3339 3340 3341 3342
	if (src == DSS_CLK_SRC_FCK) {
		r = dss_get_dispc_clk_rate();
	} else {
		struct dss_pll *pll;
		unsigned clkout_idx;
3343

3344 3345
		pll = dss_pll_find_by_src(src);
		clkout_idx = dss_pll_get_clkout_idx_for_src(src);
T
Tomi Valkeinen 已提交
3346

3347
		r = pll->cinfo.clkout[clkout_idx];
3348
	}
3349 3350 3351 3352

	lcd = REG_GET(DISPC_DIVISORo(channel), 23, 16);

	return r / lcd;
T
Tomi Valkeinen 已提交
3353 3354
}

3355
static unsigned long dispc_mgr_pclk_rate(enum omap_channel channel)
T
Tomi Valkeinen 已提交
3356 3357 3358
{
	unsigned long r;

3359
	if (dss_mgr_is_lcd(channel)) {
3360 3361
		int pcd;
		u32 l;
T
Tomi Valkeinen 已提交
3362

3363
		l = dispc_read_reg(DISPC_DIVISORo(channel));
T
Tomi Valkeinen 已提交
3364

3365
		pcd = FLD_GET(l, 7, 0);
T
Tomi Valkeinen 已提交
3366

3367 3368 3369 3370
		r = dispc_mgr_lclk_rate(channel);

		return r / pcd;
	} else {
3371
		return dispc.tv_pclk_rate;
3372
	}
T
Tomi Valkeinen 已提交
3373 3374
}

3375 3376 3377 3378 3379
void dispc_set_tv_pclk(unsigned long pclk)
{
	dispc.tv_pclk_rate = pclk;
}

3380
static unsigned long dispc_core_clk_rate(void)
3381
{
3382
	return dispc.core_clk_rate;
3383 3384
}

3385 3386
static unsigned long dispc_plane_pclk_rate(enum omap_plane plane)
{
3387 3388 3389 3390 3391 3392
	enum omap_channel channel;

	if (plane == OMAP_DSS_WB)
		return 0;

	channel = dispc_ovl_get_channel_out(plane);
3393 3394 3395 3396 3397 3398

	return dispc_mgr_pclk_rate(channel);
}

static unsigned long dispc_plane_lclk_rate(enum omap_plane plane)
{
3399 3400 3401 3402 3403 3404
	enum omap_channel channel;

	if (plane == OMAP_DSS_WB)
		return 0;

	channel	= dispc_ovl_get_channel_out(plane);
3405

3406
	return dispc_mgr_lclk_rate(channel);
3407
}
3408

3409
static void dispc_dump_clocks_channel(struct seq_file *s, enum omap_channel channel)
T
Tomi Valkeinen 已提交
3410 3411
{
	int lcd, pcd;
3412
	enum dss_clk_source lcd_clk_src;
3413 3414 3415 3416 3417

	seq_printf(s, "- %s -\n", mgr_desc[channel].name);

	lcd_clk_src = dss_get_lcd_clk_source(channel);

3418
	seq_printf(s, "%s clk source = %s\n", mgr_desc[channel].name,
3419
		dss_get_clk_source_name(lcd_clk_src));
3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431

	dispc_mgr_get_lcd_divisor(channel, &lcd, &pcd);

	seq_printf(s, "lck\t\t%-16lulck div\t%u\n",
		dispc_mgr_lclk_rate(channel), lcd);
	seq_printf(s, "pck\t\t%-16lupck div\t%u\n",
		dispc_mgr_pclk_rate(channel), pcd);
}

void dispc_dump_clocks(struct seq_file *s)
{
	int lcd;
3432
	u32 l;
3433
	enum dss_clk_source dispc_clk_src = dss_get_dispc_clk_source();
T
Tomi Valkeinen 已提交
3434

3435 3436
	if (dispc_runtime_get())
		return;
T
Tomi Valkeinen 已提交
3437 3438 3439

	seq_printf(s, "- DISPC -\n");

3440
	seq_printf(s, "dispc fclk source = %s\n",
3441
			dss_get_clk_source_name(dispc_clk_src));
T
Tomi Valkeinen 已提交
3442 3443

	seq_printf(s, "fck\t\t%-16lu\n", dispc_fclk_rate());
3444

3445 3446 3447 3448 3449 3450 3451 3452
	if (dss_has_feature(FEAT_CORE_CLK_DIV)) {
		seq_printf(s, "- DISPC-CORE-CLK -\n");
		l = dispc_read_reg(DISPC_DIVISOR);
		lcd = FLD_GET(l, 23, 16);

		seq_printf(s, "lck\t\t%-16lulck div\t%u\n",
				(dispc_fclk_rate()/lcd), lcd);
	}
3453

3454
	dispc_dump_clocks_channel(s, OMAP_DSS_CHANNEL_LCD);
3455

3456 3457 3458 3459
	if (dss_has_feature(FEAT_MGR_LCD2))
		dispc_dump_clocks_channel(s, OMAP_DSS_CHANNEL_LCD2);
	if (dss_has_feature(FEAT_MGR_LCD3))
		dispc_dump_clocks_channel(s, OMAP_DSS_CHANNEL_LCD3);
3460 3461

	dispc_runtime_put();
T
Tomi Valkeinen 已提交
3462 3463
}

3464
static void dispc_dump_regs(struct seq_file *s)
T
Tomi Valkeinen 已提交
3465
{
3466 3467 3468 3469 3470
	int i, j;
	const char *mgr_names[] = {
		[OMAP_DSS_CHANNEL_LCD]		= "LCD",
		[OMAP_DSS_CHANNEL_DIGIT]	= "TV",
		[OMAP_DSS_CHANNEL_LCD2]		= "LCD2",
3471
		[OMAP_DSS_CHANNEL_LCD3]		= "LCD3",
3472 3473 3474 3475 3476
	};
	const char *ovl_names[] = {
		[OMAP_DSS_GFX]		= "GFX",
		[OMAP_DSS_VIDEO1]	= "VID1",
		[OMAP_DSS_VIDEO2]	= "VID2",
3477
		[OMAP_DSS_VIDEO3]	= "VID3",
T
Tomi Valkeinen 已提交
3478
		[OMAP_DSS_WB]		= "WB",
3479 3480 3481
	};
	const char **p_names;

3482
#define DUMPREG(r) seq_printf(s, "%-50s %08x\n", #r, dispc_read_reg(r))
T
Tomi Valkeinen 已提交
3483

3484 3485
	if (dispc_runtime_get())
		return;
T
Tomi Valkeinen 已提交
3486

3487
	/* DISPC common registers */
T
Tomi Valkeinen 已提交
3488 3489 3490 3491 3492 3493 3494 3495 3496 3497
	DUMPREG(DISPC_REVISION);
	DUMPREG(DISPC_SYSCONFIG);
	DUMPREG(DISPC_SYSSTATUS);
	DUMPREG(DISPC_IRQSTATUS);
	DUMPREG(DISPC_IRQENABLE);
	DUMPREG(DISPC_CONTROL);
	DUMPREG(DISPC_CONFIG);
	DUMPREG(DISPC_CAPABLE);
	DUMPREG(DISPC_LINE_STATUS);
	DUMPREG(DISPC_LINE_NUMBER);
3498 3499
	if (dss_has_feature(FEAT_ALPHA_FIXED_ZORDER) ||
			dss_has_feature(FEAT_ALPHA_FREE_ZORDER))
3500
		DUMPREG(DISPC_GLOBAL_ALPHA);
3501 3502 3503
	if (dss_has_feature(FEAT_MGR_LCD2)) {
		DUMPREG(DISPC_CONTROL2);
		DUMPREG(DISPC_CONFIG2);
3504
	}
3505 3506 3507 3508
	if (dss_has_feature(FEAT_MGR_LCD3)) {
		DUMPREG(DISPC_CONTROL3);
		DUMPREG(DISPC_CONFIG3);
	}
T
Tomi Valkeinen 已提交
3509 3510
	if (dss_has_feature(FEAT_MFLAG))
		DUMPREG(DISPC_GLOBAL_MFLAG_ATTRIBUTE);
3511 3512 3513 3514

#undef DUMPREG

#define DISPC_REG(i, name) name(i)
3515
#define DUMPREG(i, r) seq_printf(s, "%s(%s)%*s %08x\n", #r, p_names[i], \
T
Tomi Valkeinen 已提交
3516
	(int)(48 - strlen(#r) - strlen(p_names[i])), " ", \
3517 3518
	dispc_read_reg(DISPC_REG(i, r)))

3519
	p_names = mgr_names;
3520

3521 3522 3523 3524 3525
	/* DISPC channel specific registers */
	for (i = 0; i < dss_feat_get_num_mgrs(); i++) {
		DUMPREG(i, DISPC_DEFAULT_COLOR);
		DUMPREG(i, DISPC_TRANS_COLOR);
		DUMPREG(i, DISPC_SIZE_MGR);
T
Tomi Valkeinen 已提交
3526

3527 3528
		if (i == OMAP_DSS_CHANNEL_DIGIT)
			continue;
3529

3530 3531 3532 3533
		DUMPREG(i, DISPC_TIMING_H);
		DUMPREG(i, DISPC_TIMING_V);
		DUMPREG(i, DISPC_POL_FREQ);
		DUMPREG(i, DISPC_DIVISORo);
3534

3535 3536 3537
		DUMPREG(i, DISPC_DATA_CYCLE1);
		DUMPREG(i, DISPC_DATA_CYCLE2);
		DUMPREG(i, DISPC_DATA_CYCLE3);
3538

3539
		if (dss_has_feature(FEAT_CPR)) {
3540 3541 3542
			DUMPREG(i, DISPC_CPR_COEF_R);
			DUMPREG(i, DISPC_CPR_COEF_G);
			DUMPREG(i, DISPC_CPR_COEF_B);
3543
		}
3544
	}
T
Tomi Valkeinen 已提交
3545

3546 3547 3548 3549 3550 3551 3552 3553 3554 3555 3556 3557
	p_names = ovl_names;

	for (i = 0; i < dss_feat_get_num_ovls(); i++) {
		DUMPREG(i, DISPC_OVL_BA0);
		DUMPREG(i, DISPC_OVL_BA1);
		DUMPREG(i, DISPC_OVL_POSITION);
		DUMPREG(i, DISPC_OVL_SIZE);
		DUMPREG(i, DISPC_OVL_ATTRIBUTES);
		DUMPREG(i, DISPC_OVL_FIFO_THRESHOLD);
		DUMPREG(i, DISPC_OVL_FIFO_SIZE_STATUS);
		DUMPREG(i, DISPC_OVL_ROW_INC);
		DUMPREG(i, DISPC_OVL_PIXEL_INC);
3558

3559 3560
		if (dss_has_feature(FEAT_PRELOAD))
			DUMPREG(i, DISPC_OVL_PRELOAD);
3561 3562
		if (dss_has_feature(FEAT_MFLAG))
			DUMPREG(i, DISPC_OVL_MFLAG_THRESHOLD);
3563 3564 3565 3566 3567 3568 3569 3570 3571 3572 3573 3574 3575 3576 3577 3578 3579 3580 3581 3582

		if (i == OMAP_DSS_GFX) {
			DUMPREG(i, DISPC_OVL_WINDOW_SKIP);
			DUMPREG(i, DISPC_OVL_TABLE_BA);
			continue;
		}

		DUMPREG(i, DISPC_OVL_FIR);
		DUMPREG(i, DISPC_OVL_PICTURE_SIZE);
		DUMPREG(i, DISPC_OVL_ACCU0);
		DUMPREG(i, DISPC_OVL_ACCU1);
		if (dss_has_feature(FEAT_HANDLE_UV_SEPARATE)) {
			DUMPREG(i, DISPC_OVL_BA0_UV);
			DUMPREG(i, DISPC_OVL_BA1_UV);
			DUMPREG(i, DISPC_OVL_FIR2);
			DUMPREG(i, DISPC_OVL_ACCU2_0);
			DUMPREG(i, DISPC_OVL_ACCU2_1);
		}
		if (dss_has_feature(FEAT_ATTR2))
			DUMPREG(i, DISPC_OVL_ATTRIBUTES2);
3583
	}
3584

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	if (dispc.feat->has_writeback) {
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3586 3587 3588 3589 3590 3591 3592 3593 3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3611 3612 3613
		i = OMAP_DSS_WB;
		DUMPREG(i, DISPC_OVL_BA0);
		DUMPREG(i, DISPC_OVL_BA1);
		DUMPREG(i, DISPC_OVL_SIZE);
		DUMPREG(i, DISPC_OVL_ATTRIBUTES);
		DUMPREG(i, DISPC_OVL_FIFO_THRESHOLD);
		DUMPREG(i, DISPC_OVL_FIFO_SIZE_STATUS);
		DUMPREG(i, DISPC_OVL_ROW_INC);
		DUMPREG(i, DISPC_OVL_PIXEL_INC);

		if (dss_has_feature(FEAT_MFLAG))
			DUMPREG(i, DISPC_OVL_MFLAG_THRESHOLD);

		DUMPREG(i, DISPC_OVL_FIR);
		DUMPREG(i, DISPC_OVL_PICTURE_SIZE);
		DUMPREG(i, DISPC_OVL_ACCU0);
		DUMPREG(i, DISPC_OVL_ACCU1);
		if (dss_has_feature(FEAT_HANDLE_UV_SEPARATE)) {
			DUMPREG(i, DISPC_OVL_BA0_UV);
			DUMPREG(i, DISPC_OVL_BA1_UV);
			DUMPREG(i, DISPC_OVL_FIR2);
			DUMPREG(i, DISPC_OVL_ACCU2_0);
			DUMPREG(i, DISPC_OVL_ACCU2_1);
		}
		if (dss_has_feature(FEAT_ATTR2))
			DUMPREG(i, DISPC_OVL_ATTRIBUTES2);
	}

3614 3615 3616 3617 3618
#undef DISPC_REG
#undef DUMPREG

#define DISPC_REG(plane, name, i) name(plane, i)
#define DUMPREG(plane, name, i) \
3619
	seq_printf(s, "%s_%d(%s)%*s %08x\n", #name, i, p_names[plane], \
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	(int)(46 - strlen(#name) - strlen(p_names[plane])), " ", \
3621 3622
	dispc_read_reg(DISPC_REG(plane, name, i)))

3623
	/* Video pipeline coefficient registers */
3624

3625 3626 3627 3628
	/* start from OMAP_DSS_VIDEO1 */
	for (i = 1; i < dss_feat_get_num_ovls(); i++) {
		for (j = 0; j < 8; j++)
			DUMPREG(i, DISPC_OVL_FIR_COEF_H, j);
3629

3630 3631
		for (j = 0; j < 8; j++)
			DUMPREG(i, DISPC_OVL_FIR_COEF_HV, j);
3632

3633 3634
		for (j = 0; j < 5; j++)
			DUMPREG(i, DISPC_OVL_CONV_COEF, j);
3635

3636 3637 3638 3639 3640 3641 3642 3643 3644 3645 3646 3647 3648 3649 3650
		if (dss_has_feature(FEAT_FIR_COEF_V)) {
			for (j = 0; j < 8; j++)
				DUMPREG(i, DISPC_OVL_FIR_COEF_V, j);
		}

		if (dss_has_feature(FEAT_HANDLE_UV_SEPARATE)) {
			for (j = 0; j < 8; j++)
				DUMPREG(i, DISPC_OVL_FIR_COEF_H2, j);

			for (j = 0; j < 8; j++)
				DUMPREG(i, DISPC_OVL_FIR_COEF_HV2, j);

			for (j = 0; j < 8; j++)
				DUMPREG(i, DISPC_OVL_FIR_COEF_V2, j);
		}
3651
	}
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3653
	dispc_runtime_put();
3654 3655

#undef DISPC_REG
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#undef DUMPREG
}

/* calculate clock rates using dividers in cinfo */
int dispc_calc_clock_rates(unsigned long dispc_fclk_rate,
		struct dispc_clock_info *cinfo)
{
	if (cinfo->lck_div > 255 || cinfo->lck_div == 0)
		return -EINVAL;
3665
	if (cinfo->pck_div < 1 || cinfo->pck_div > 255)
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		return -EINVAL;

	cinfo->lck = dispc_fclk_rate / cinfo->lck_div;
	cinfo->pck = cinfo->lck / cinfo->pck_div;
3670

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	return 0;
}

3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684
bool dispc_div_calc(unsigned long dispc,
		unsigned long pck_min, unsigned long pck_max,
		dispc_div_calc_func func, void *data)
{
	int lckd, lckd_start, lckd_stop;
	int pckd, pckd_start, pckd_stop;
	unsigned long pck, lck;
	unsigned long lck_max;
	unsigned long pckd_hw_min, pckd_hw_max;
	unsigned min_fck_per_pck;
	unsigned long fck;
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3686 3687 3688 3689 3690
#ifdef CONFIG_OMAP2_DSS_MIN_FCK_PER_PCK
	min_fck_per_pck = CONFIG_OMAP2_DSS_MIN_FCK_PER_PCK;
#else
	min_fck_per_pck = 0;
#endif
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3692 3693
	pckd_hw_min = dss_feat_get_param_min(FEAT_PARAM_DSS_PCD);
	pckd_hw_max = dss_feat_get_param_max(FEAT_PARAM_DSS_PCD);
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3695
	lck_max = dss_feat_get_param_max(FEAT_PARAM_DSS_FCK);
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3697 3698
	pck_min = pck_min ? pck_min : 1;
	pck_max = pck_max ? pck_max : ULONG_MAX;
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3700 3701
	lckd_start = max(DIV_ROUND_UP(dispc, lck_max), 1ul);
	lckd_stop = min(dispc / pck_min, 255ul);
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3703 3704
	for (lckd = lckd_start; lckd <= lckd_stop; ++lckd) {
		lck = dispc / lckd;
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3706 3707
		pckd_start = max(DIV_ROUND_UP(lck, pck_max), pckd_hw_min);
		pckd_stop = min(lck / pck_min, pckd_hw_max);
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3709 3710
		for (pckd = pckd_start; pckd <= pckd_stop; ++pckd) {
			pck = lck / pckd;
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3712 3713 3714 3715 3716 3717 3718 3719 3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731
			/*
			 * For OMAP2/3 the DISPC fclk is the same as LCD's logic
			 * clock, which means we're configuring DISPC fclk here
			 * also. Thus we need to use the calculated lck. For
			 * OMAP4+ the DISPC fclk is a separate clock.
			 */
			if (dss_has_feature(FEAT_CORE_CLK_DIV))
				fck = dispc_core_clk_rate();
			else
				fck = lck;

			if (fck < pck * min_fck_per_pck)
				continue;

			if (func(lckd, pckd, lck, pck, data))
				return true;
		}
	}

	return false;
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3732 3733
}

3734
void dispc_mgr_set_clock_div(enum omap_channel channel,
3735
		const struct dispc_clock_info *cinfo)
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3736 3737 3738 3739
{
	DSSDBG("lck = %lu (%u)\n", cinfo->lck, cinfo->lck_div);
	DSSDBG("pck = %lu (%u)\n", cinfo->pck, cinfo->pck_div);

3740
	dispc_mgr_set_lcd_divisor(channel, cinfo->lck_div, cinfo->pck_div);
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3741 3742
}

3743
int dispc_mgr_get_clock_div(enum omap_channel channel,
3744
		struct dispc_clock_info *cinfo)
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3745 3746 3747 3748 3749
{
	unsigned long fck;

	fck = dispc_fclk_rate();

3750 3751
	cinfo->lck_div = REG_GET(DISPC_DIVISORo(channel), 23, 16);
	cinfo->pck_div = REG_GET(DISPC_DIVISORo(channel), 7, 0);
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	cinfo->lck = fck / cinfo->lck_div;
	cinfo->pck = cinfo->lck / cinfo->pck_div;

	return 0;
}

3759 3760 3761 3762
u32 dispc_read_irqstatus(void)
{
	return dispc_read_reg(DISPC_IRQSTATUS);
}
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3763
EXPORT_SYMBOL(dispc_read_irqstatus);
3764 3765 3766 3767 3768

void dispc_clear_irqstatus(u32 mask)
{
	dispc_write_reg(DISPC_IRQSTATUS, mask);
}
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3769
EXPORT_SYMBOL(dispc_clear_irqstatus);
3770 3771 3772 3773 3774

u32 dispc_read_irqenable(void)
{
	return dispc_read_reg(DISPC_IRQENABLE);
}
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EXPORT_SYMBOL(dispc_read_irqenable);
3776 3777 3778 3779 3780 3781 3782 3783 3784 3785

void dispc_write_irqenable(u32 mask)
{
	u32 old_mask = dispc_read_reg(DISPC_IRQENABLE);

	/* clear the irqstatus for newly enabled irqs */
	dispc_clear_irqstatus((mask ^ old_mask) & mask);

	dispc_write_reg(DISPC_IRQENABLE, mask);
}
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3786
EXPORT_SYMBOL(dispc_write_irqenable);
3787

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void dispc_enable_sidle(void)
{
	REG_FLD_MOD(DISPC_SYSCONFIG, 2, 4, 3);	/* SIDLEMODE: smart idle */
}

void dispc_disable_sidle(void)
{
	REG_FLD_MOD(DISPC_SYSCONFIG, 1, 4, 3);	/* SIDLEMODE: no idle */
}

3798 3799 3800 3801 3802 3803 3804 3805 3806 3807 3808 3809 3810 3811 3812 3813 3814 3815 3816 3817 3818 3819 3820 3821 3822 3823 3824 3825 3826 3827 3828 3829 3830 3831 3832 3833 3834 3835 3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850 3851 3852 3853 3854 3855 3856 3857 3858 3859 3860 3861 3862 3863 3864 3865 3866 3867 3868 3869 3870 3871 3872 3873 3874 3875 3876 3877 3878 3879 3880 3881 3882 3883 3884 3885 3886 3887 3888 3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914 3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928 3929 3930
u32 dispc_mgr_gamma_size(enum omap_channel channel)
{
	const struct dispc_gamma_desc *gdesc = &mgr_desc[channel].gamma;

	if (!dispc.feat->has_gamma_table)
		return 0;

	return gdesc->len;
}
EXPORT_SYMBOL(dispc_mgr_gamma_size);

static void dispc_mgr_write_gamma_table(enum omap_channel channel)
{
	const struct dispc_gamma_desc *gdesc = &mgr_desc[channel].gamma;
	u32 *table = dispc.gamma_table[channel];
	unsigned int i;

	DSSDBG("%s: channel %d\n", __func__, channel);

	for (i = 0; i < gdesc->len; ++i) {
		u32 v = table[i];

		if (gdesc->has_index)
			v |= i << 24;
		else if (i == 0)
			v |= 1 << 31;

		dispc_write_reg(gdesc->reg, v);
	}
}

static void dispc_restore_gamma_tables(void)
{
	DSSDBG("%s()\n", __func__);

	if (!dispc.feat->has_gamma_table)
		return;

	dispc_mgr_write_gamma_table(OMAP_DSS_CHANNEL_LCD);

	dispc_mgr_write_gamma_table(OMAP_DSS_CHANNEL_DIGIT);

	if (dss_has_feature(FEAT_MGR_LCD2))
		dispc_mgr_write_gamma_table(OMAP_DSS_CHANNEL_LCD2);

	if (dss_has_feature(FEAT_MGR_LCD3))
		dispc_mgr_write_gamma_table(OMAP_DSS_CHANNEL_LCD3);
}

static const struct drm_color_lut dispc_mgr_gamma_default_lut[] = {
	{ .red = 0, .green = 0, .blue = 0, },
	{ .red = U16_MAX, .green = U16_MAX, .blue = U16_MAX, },
};

void dispc_mgr_set_gamma(enum omap_channel channel,
			 const struct drm_color_lut *lut,
			 unsigned int length)
{
	const struct dispc_gamma_desc *gdesc = &mgr_desc[channel].gamma;
	u32 *table = dispc.gamma_table[channel];
	uint i;

	DSSDBG("%s: channel %d, lut len %u, hw len %u\n", __func__,
	       channel, length, gdesc->len);

	if (!dispc.feat->has_gamma_table)
		return;

	if (lut == NULL || length < 2) {
		lut = dispc_mgr_gamma_default_lut;
		length = ARRAY_SIZE(dispc_mgr_gamma_default_lut);
	}

	for (i = 0; i < length - 1; ++i) {
		uint first = i * (gdesc->len - 1) / (length - 1);
		uint last = (i + 1) * (gdesc->len - 1) / (length - 1);
		uint w = last - first;
		u16 r, g, b;
		uint j;

		if (w == 0)
			continue;

		for (j = 0; j <= w; j++) {
			r = (lut[i].red * (w - j) + lut[i+1].red * j) / w;
			g = (lut[i].green * (w - j) + lut[i+1].green * j) / w;
			b = (lut[i].blue * (w - j) + lut[i+1].blue * j) / w;

			r >>= 16 - gdesc->bits;
			g >>= 16 - gdesc->bits;
			b >>= 16 - gdesc->bits;

			table[first + j] = (r << (gdesc->bits * 2)) |
				(g << gdesc->bits) | b;
		}
	}

	if (dispc.is_enabled)
		dispc_mgr_write_gamma_table(channel);
}
EXPORT_SYMBOL(dispc_mgr_set_gamma);

static int dispc_init_gamma_tables(void)
{
	int channel;

	if (!dispc.feat->has_gamma_table)
		return 0;

	for (channel = 0; channel < ARRAY_SIZE(dispc.gamma_table); channel++) {
		const struct dispc_gamma_desc *gdesc = &mgr_desc[channel].gamma;
		u32 *gt;

		if (channel == OMAP_DSS_CHANNEL_LCD2 &&
		    !dss_has_feature(FEAT_MGR_LCD2))
			continue;

		if (channel == OMAP_DSS_CHANNEL_LCD3 &&
		    !dss_has_feature(FEAT_MGR_LCD3))
			continue;

		gt = devm_kmalloc_array(&dispc.pdev->dev, gdesc->len,
					   sizeof(u32), GFP_KERNEL);
		if (!gt)
			return -ENOMEM;

		dispc.gamma_table[channel] = gt;

		dispc_mgr_set_gamma(channel, NULL, 0);
	}
	return 0;
}

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static void _omap_dispc_initial_config(void)
{
	u32 l;

3935 3936 3937 3938 3939 3940 3941
	/* Exclusively enable DISPC_CORE_CLK and set divider to 1 */
	if (dss_has_feature(FEAT_CORE_CLK_DIV)) {
		l = dispc_read_reg(DISPC_DIVISOR);
		/* Use DISPC_DIVISOR.LCD, instead of DISPC_DIVISOR1.LCD */
		l = FLD_MOD(l, 1, 0, 0);
		l = FLD_MOD(l, 1, 23, 16);
		dispc_write_reg(DISPC_DIVISOR, l);
3942 3943

		dispc.core_clk_rate = dispc_fclk_rate();
3944 3945
	}

3946 3947 3948 3949 3950 3951 3952 3953 3954
	/* Use gamma table mode, instead of palette mode */
	if (dispc.feat->has_gamma_table)
		REG_FLD_MOD(DISPC_CONFIG, 1, 3, 3);

	/* For older DSS versions (FEAT_FUNCGATED) this enables
	 * func-clock auto-gating. For newer versions
	 * (dispc.feat->has_gamma_table) this enables tv-out gamma tables.
	 */
	if (dss_has_feature(FEAT_FUNCGATED) || dispc.feat->has_gamma_table)
3955
		REG_FLD_MOD(DISPC_CONFIG, 1, 9, 9);
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3956

3957
	dispc_setup_color_conv_coef();
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3958 3959 3960

	dispc_set_loadmode(OMAP_DSS_LOAD_FRAME_ONLY);

3961
	dispc_init_fifos();
3962 3963

	dispc_configure_burst_sizes();
3964 3965

	dispc_ovl_enable_zorder_planes();
3966 3967 3968

	if (dispc.feat->mstandby_workaround)
		REG_FLD_MOD(DISPC_MSTANDBY_CTRL, 1, 0, 0);
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3969 3970 3971

	if (dss_has_feature(FEAT_MFLAG))
		dispc_init_mflag();
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3972 3973
}

3974
static const struct dispc_features omap24xx_dispc_feats = {
3975 3976 3977 3978 3979 3980
	.sw_start		=	5,
	.fp_start		=	15,
	.bp_start		=	27,
	.sw_max			=	64,
	.vp_max			=	255,
	.hp_max			=	256,
3981 3982 3983 3984
	.mgr_width_start	=	10,
	.mgr_height_start	=	26,
	.mgr_width_max		=	2048,
	.mgr_height_max		=	2048,
3985
	.max_lcd_pclk		=	66500000,
3986 3987
	.calc_scaling		=	dispc_ovl_calc_scaling_24xx,
	.calc_core_clk		=	calc_core_clk_24xx,
3988
	.num_fifos		=	3,
3989
	.no_framedone_tv	=	true,
3990
	.set_max_preload	=	false,
3991
	.last_pixel_inc_missing	=	true,
3992 3993
};

3994
static const struct dispc_features omap34xx_rev1_0_dispc_feats = {
3995 3996 3997 3998 3999 4000
	.sw_start		=	5,
	.fp_start		=	15,
	.bp_start		=	27,
	.sw_max			=	64,
	.vp_max			=	255,
	.hp_max			=	256,
4001 4002 4003 4004
	.mgr_width_start	=	10,
	.mgr_height_start	=	26,
	.mgr_width_max		=	2048,
	.mgr_height_max		=	2048,
4005 4006
	.max_lcd_pclk		=	173000000,
	.max_tv_pclk		=	59000000,
4007 4008
	.calc_scaling		=	dispc_ovl_calc_scaling_34xx,
	.calc_core_clk		=	calc_core_clk_34xx,
4009
	.num_fifos		=	3,
4010
	.no_framedone_tv	=	true,
4011
	.set_max_preload	=	false,
4012
	.last_pixel_inc_missing	=	true,
4013 4014
};

4015
static const struct dispc_features omap34xx_rev3_0_dispc_feats = {
4016 4017 4018 4019 4020 4021
	.sw_start		=	7,
	.fp_start		=	19,
	.bp_start		=	31,
	.sw_max			=	256,
	.vp_max			=	4095,
	.hp_max			=	4096,
4022 4023 4024 4025
	.mgr_width_start	=	10,
	.mgr_height_start	=	26,
	.mgr_width_max		=	2048,
	.mgr_height_max		=	2048,
4026 4027
	.max_lcd_pclk		=	173000000,
	.max_tv_pclk		=	59000000,
4028 4029
	.calc_scaling		=	dispc_ovl_calc_scaling_34xx,
	.calc_core_clk		=	calc_core_clk_34xx,
4030
	.num_fifos		=	3,
4031
	.no_framedone_tv	=	true,
4032
	.set_max_preload	=	false,
4033
	.last_pixel_inc_missing	=	true,
4034 4035
};

4036
static const struct dispc_features omap44xx_dispc_feats = {
4037 4038 4039 4040 4041 4042
	.sw_start		=	7,
	.fp_start		=	19,
	.bp_start		=	31,
	.sw_max			=	256,
	.vp_max			=	4095,
	.hp_max			=	4096,
4043 4044 4045 4046
	.mgr_width_start	=	10,
	.mgr_height_start	=	26,
	.mgr_width_max		=	2048,
	.mgr_height_max		=	2048,
4047 4048
	.max_lcd_pclk		=	170000000,
	.max_tv_pclk		=	185625000,
4049 4050
	.calc_scaling		=	dispc_ovl_calc_scaling_44xx,
	.calc_core_clk		=	calc_core_clk_44xx,
4051
	.num_fifos		=	5,
4052
	.gfx_fifo_workaround	=	true,
4053
	.set_max_preload	=	true,
4054
	.supports_sync_align	=	true,
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	.has_writeback		=	true,
4056
	.supports_double_pixel	=	true,
4057
	.reverse_ilace_field_order =	true,
4058
	.has_gamma_table	=	true,
4059
	.has_gamma_i734_bug	=	true,
4060 4061
};

4062
static const struct dispc_features omap54xx_dispc_feats = {
4063 4064 4065 4066 4067 4068 4069 4070 4071 4072
	.sw_start		=	7,
	.fp_start		=	19,
	.bp_start		=	31,
	.sw_max			=	256,
	.vp_max			=	4095,
	.hp_max			=	4096,
	.mgr_width_start	=	11,
	.mgr_height_start	=	27,
	.mgr_width_max		=	4096,
	.mgr_height_max		=	4096,
4073 4074
	.max_lcd_pclk		=	170000000,
	.max_tv_pclk		=	186000000,
4075 4076 4077 4078
	.calc_scaling		=	dispc_ovl_calc_scaling_44xx,
	.calc_core_clk		=	calc_core_clk_44xx,
	.num_fifos		=	5,
	.gfx_fifo_workaround	=	true,
4079
	.mstandby_workaround	=	true,
4080
	.set_max_preload	=	true,
4081
	.supports_sync_align	=	true,
T
Tomi Valkeinen 已提交
4082
	.has_writeback		=	true,
4083
	.supports_double_pixel	=	true,
4084
	.reverse_ilace_field_order =	true,
4085
	.has_gamma_table	=	true,
4086
	.has_gamma_i734_bug	=	true,
4087 4088
};

4089
static int dispc_init_features(struct platform_device *pdev)
4090 4091 4092 4093
{
	const struct dispc_features *src;
	struct dispc_features *dst;

4094
	dst = devm_kzalloc(&pdev->dev, sizeof(*dst), GFP_KERNEL);
4095
	if (!dst) {
4096
		dev_err(&pdev->dev, "Failed to allocate DISPC Features\n");
4097 4098 4099
		return -ENOMEM;
	}

4100
	switch (omapdss_get_version()) {
4101
	case OMAPDSS_VER_OMAP24xx:
4102
		src = &omap24xx_dispc_feats;
4103 4104 4105 4106 4107 4108 4109 4110 4111
		break;

	case OMAPDSS_VER_OMAP34xx_ES1:
		src = &omap34xx_rev1_0_dispc_feats;
		break;

	case OMAPDSS_VER_OMAP34xx_ES3:
	case OMAPDSS_VER_OMAP3630:
	case OMAPDSS_VER_AM35xx:
4112
	case OMAPDSS_VER_AM43xx:
4113 4114 4115 4116 4117 4118
		src = &omap34xx_rev3_0_dispc_feats;
		break;

	case OMAPDSS_VER_OMAP4430_ES1:
	case OMAPDSS_VER_OMAP4430_ES2:
	case OMAPDSS_VER_OMAP4:
4119
		src = &omap44xx_dispc_feats;
4120 4121 4122
		break;

	case OMAPDSS_VER_OMAP5:
4123
	case OMAPDSS_VER_DRA7xx:
4124
		src = &omap54xx_dispc_feats;
4125 4126 4127
		break;

	default:
4128 4129 4130 4131 4132 4133 4134 4135 4136
		return -ENODEV;
	}

	memcpy(dst, src, sizeof(*dst));
	dispc.feat = dst;

	return 0;
}

4137 4138 4139 4140 4141 4142 4143 4144
static irqreturn_t dispc_irq_handler(int irq, void *arg)
{
	if (!dispc.is_enabled)
		return IRQ_NONE;

	return dispc.user_handler(irq, dispc.user_data);
}

4145 4146
int dispc_request_irq(irq_handler_t handler, void *dev_id)
{
4147 4148 4149 4150 4151 4152 4153 4154 4155 4156 4157 4158 4159 4160 4161 4162 4163 4164 4165
	int r;

	if (dispc.user_handler != NULL)
		return -EBUSY;

	dispc.user_handler = handler;
	dispc.user_data = dev_id;

	/* ensure the dispc_irq_handler sees the values above */
	smp_wmb();

	r = devm_request_irq(&dispc.pdev->dev, dispc.irq, dispc_irq_handler,
			     IRQF_SHARED, "OMAP DISPC", &dispc);
	if (r) {
		dispc.user_handler = NULL;
		dispc.user_data = NULL;
	}

	return r;
4166
}
T
Tomi Valkeinen 已提交
4167
EXPORT_SYMBOL(dispc_request_irq);
4168 4169 4170

void dispc_free_irq(void *dev_id)
{
4171 4172 4173 4174
	devm_free_irq(&dispc.pdev->dev, dispc.irq, &dispc);

	dispc.user_handler = NULL;
	dispc.user_data = NULL;
4175
}
T
Tomi Valkeinen 已提交
4176
EXPORT_SYMBOL(dispc_free_irq);
4177

4178 4179 4180 4181 4182 4183 4184 4185 4186 4187 4188 4189 4190 4191 4192 4193 4194 4195 4196 4197 4198 4199 4200 4201 4202
/*
 * Workaround for errata i734 in DSS dispc
 *  - LCD1 Gamma Correction Is Not Working When GFX Pipe Is Disabled
 *
 * For gamma tables to work on LCD1 the GFX plane has to be used at
 * least once after DSS HW has come out of reset. The workaround
 * sets up a minimal LCD setup with GFX plane and waits for one
 * vertical sync irq before disabling the setup and continuing with
 * the context restore. The physical outputs are gated during the
 * operation. This workaround requires that gamma table's LOADMODE
 * is set to 0x2 in DISPC_CONTROL1 register.
 *
 * For details see:
 * OMAP543x Multimedia Device Silicon Revision 2.0 Silicon Errata
 * Literature Number: SWPZ037E
 * Or some other relevant errata document for the DSS IP version.
 */

static const struct dispc_errata_i734_data {
	struct omap_video_timings timings;
	struct omap_overlay_info ovli;
	struct omap_overlay_manager_info mgri;
	struct dss_lcd_mgr_config lcd_conf;
} i734 = {
	.timings = {
4203
		.hactive = 8, .vactive = 1,
4204
		.pixelclock = 16000000,
4205
		.hsync_len = 8, .hfront_porch = 4, .hback_porch = 4,
4206
		.vsync_len = 1, .vfront_porch = 1, .vback_porch = 1,
4207 4208 4209
		.data_pclk_edge = OMAPDSS_DRIVE_SIG_RISING_EDGE,
		.sync_pclk_edge = OMAPDSS_DRIVE_SIG_RISING_EDGE,
		.double_pixel = false,
4210

4211 4212
		.flags = DISPLAY_FLAGS_HSYNC_LOW | DISPLAY_FLAGS_VSYNC_LOW |
			 DISPLAY_FLAGS_DE_HIGH,
4213 4214 4215 4216 4217 4218 4219 4220 4221 4222 4223 4224 4225 4226 4227 4228 4229 4230 4231 4232 4233 4234 4235 4236 4237 4238 4239 4240 4241 4242 4243 4244 4245 4246 4247 4248 4249 4250 4251 4252 4253 4254 4255 4256 4257 4258 4259 4260 4261 4262 4263 4264 4265 4266 4267 4268 4269 4270 4271 4272 4273 4274 4275 4276 4277 4278 4279 4280 4281 4282 4283 4284 4285 4286 4287 4288 4289 4290 4291 4292 4293 4294 4295 4296 4297 4298 4299 4300 4301 4302 4303 4304 4305 4306 4307 4308 4309 4310 4311 4312 4313 4314 4315 4316 4317 4318 4319 4320 4321 4322 4323 4324 4325 4326 4327 4328 4329 4330 4331 4332 4333 4334 4335 4336 4337 4338
	},
	.ovli = {
		.screen_width = 1,
		.width = 1, .height = 1,
		.color_mode = OMAP_DSS_COLOR_RGB24U,
		.rotation = OMAP_DSS_ROT_0,
		.rotation_type = OMAP_DSS_ROT_DMA,
		.mirror = 0,
		.pos_x = 0, .pos_y = 0,
		.out_width = 0, .out_height = 0,
		.global_alpha = 0xff,
		.pre_mult_alpha = 0,
		.zorder = 0,
	},
	.mgri = {
		.default_color = 0,
		.trans_enabled = false,
		.partial_alpha_enabled = false,
		.cpr_enable = false,
	},
	.lcd_conf = {
		.io_pad_mode = DSS_IO_PAD_MODE_BYPASS,
		.stallmode = false,
		.fifohandcheck = false,
		.clock_info = {
			.lck_div = 1,
			.pck_div = 2,
		},
		.video_port_width = 24,
		.lcden_sig_polarity = 0,
	},
};

static struct i734_buf {
	size_t size;
	dma_addr_t paddr;
	void *vaddr;
} i734_buf;

static int dispc_errata_i734_wa_init(void)
{
	if (!dispc.feat->has_gamma_i734_bug)
		return 0;

	i734_buf.size = i734.ovli.width * i734.ovli.height *
		color_mode_to_bpp(i734.ovli.color_mode) / 8;

	i734_buf.vaddr = dma_alloc_writecombine(&dispc.pdev->dev, i734_buf.size,
						&i734_buf.paddr, GFP_KERNEL);
	if (!i734_buf.vaddr) {
		dev_err(&dispc.pdev->dev, "%s: dma_alloc_writecombine failed",
			__func__);
		return -ENOMEM;
	}

	return 0;
}

static void dispc_errata_i734_wa_fini(void)
{
	if (!dispc.feat->has_gamma_i734_bug)
		return;

	dma_free_writecombine(&dispc.pdev->dev, i734_buf.size, i734_buf.vaddr,
			      i734_buf.paddr);
}

static void dispc_errata_i734_wa(void)
{
	u32 framedone_irq = dispc_mgr_get_framedone_irq(OMAP_DSS_CHANNEL_LCD);
	struct omap_overlay_info ovli;
	struct dss_lcd_mgr_config lcd_conf;
	u32 gatestate;
	unsigned int count;

	if (!dispc.feat->has_gamma_i734_bug)
		return;

	gatestate = REG_GET(DISPC_CONFIG, 8, 4);

	ovli = i734.ovli;
	ovli.paddr = i734_buf.paddr;
	lcd_conf = i734.lcd_conf;

	/* Gate all LCD1 outputs */
	REG_FLD_MOD(DISPC_CONFIG, 0x1f, 8, 4);

	/* Setup and enable GFX plane */
	dispc_ovl_set_channel_out(OMAP_DSS_GFX, OMAP_DSS_CHANNEL_LCD);
	dispc_ovl_setup(OMAP_DSS_GFX, &ovli, false, &i734.timings, false);
	dispc_ovl_enable(OMAP_DSS_GFX, true);

	/* Set up and enable display manager for LCD1 */
	dispc_mgr_setup(OMAP_DSS_CHANNEL_LCD, &i734.mgri);
	dispc_calc_clock_rates(dss_get_dispc_clk_rate(),
			       &lcd_conf.clock_info);
	dispc_mgr_set_lcd_config(OMAP_DSS_CHANNEL_LCD, &lcd_conf);
	dispc_mgr_set_timings(OMAP_DSS_CHANNEL_LCD, &i734.timings);

	dispc_clear_irqstatus(framedone_irq);

	/* Enable and shut the channel to produce just one frame */
	dispc_mgr_enable(OMAP_DSS_CHANNEL_LCD, true);
	dispc_mgr_enable(OMAP_DSS_CHANNEL_LCD, false);

	/* Busy wait for framedone. We can't fiddle with irq handlers
	 * in PM resume. Typically the loop runs less than 5 times and
	 * waits less than a micro second.
	 */
	count = 0;
	while (!(dispc_read_irqstatus() & framedone_irq)) {
		if (count++ > 10000) {
			dev_err(&dispc.pdev->dev, "%s: framedone timeout\n",
				__func__);
			break;
		}
	}
	dispc_ovl_enable(OMAP_DSS_GFX, false);

	/* Clear all irq bits before continuing */
	dispc_clear_irqstatus(0xffffffff);

	/* Restore the original state to LCD1 output gates */
	REG_FLD_MOD(DISPC_CONFIG, gatestate, 8, 4);
}

4339
/* DISPC HW IP initialisation */
T
Tomi Valkeinen 已提交
4340
static int dispc_bind(struct device *dev, struct device *master, void *data)
4341
{
T
Tomi Valkeinen 已提交
4342
	struct platform_device *pdev = to_platform_device(dev);
4343
	u32 rev;
4344
	int r = 0;
4345
	struct resource *dispc_mem;
4346
	struct device_node *np = pdev->dev.of_node;
4347

4348 4349
	dispc.pdev = pdev;

4350 4351
	spin_lock_init(&dispc.control_lock);

4352
	r = dispc_init_features(dispc.pdev);
4353 4354 4355
	if (r)
		return r;

4356 4357 4358 4359
	r = dispc_errata_i734_wa_init();
	if (r)
		return r;

4360 4361 4362
	dispc_mem = platform_get_resource(dispc.pdev, IORESOURCE_MEM, 0);
	if (!dispc_mem) {
		DSSERR("can't get IORESOURCE_MEM DISPC\n");
4363
		return -EINVAL;
4364
	}
4365

J
Julia Lawall 已提交
4366 4367
	dispc.base = devm_ioremap(&pdev->dev, dispc_mem->start,
				  resource_size(dispc_mem));
4368 4369
	if (!dispc.base) {
		DSSERR("can't ioremap DISPC\n");
4370
		return -ENOMEM;
4371
	}
4372

4373 4374 4375
	dispc.irq = platform_get_irq(dispc.pdev, 0);
	if (dispc.irq < 0) {
		DSSERR("platform_get_irq failed\n");
4376
		return -ENODEV;
4377 4378
	}

4379 4380 4381 4382 4383 4384 4385 4386 4387 4388 4389 4390 4391 4392
	if (np && of_property_read_bool(np, "syscon-pol")) {
		dispc.syscon_pol = syscon_regmap_lookup_by_phandle(np, "syscon-pol");
		if (IS_ERR(dispc.syscon_pol)) {
			dev_err(&pdev->dev, "failed to get syscon-pol regmap\n");
			return PTR_ERR(dispc.syscon_pol);
		}

		if (of_property_read_u32_index(np, "syscon-pol", 1,
				&dispc.syscon_pol_offset)) {
			dev_err(&pdev->dev, "failed to get syscon-pol offset\n");
			return -EINVAL;
		}
	}

4393 4394 4395 4396
	r = dispc_init_gamma_tables();
	if (r)
		return r;

4397 4398 4399 4400 4401
	pm_runtime_enable(&pdev->dev);

	r = dispc_runtime_get();
	if (r)
		goto err_runtime_get;
4402 4403 4404 4405

	_omap_dispc_initial_config();

	rev = dispc_read_reg(DISPC_REVISION);
4406
	dev_dbg(&pdev->dev, "OMAP DISPC rev %d.%d\n",
4407 4408
	       FLD_GET(rev, 7, 4), FLD_GET(rev, 3, 0));

4409
	dispc_runtime_put();
4410

4411 4412
	dss_debugfs_create_file("dispc", dispc_dump_regs);

4413
	return 0;
4414 4415 4416

err_runtime_get:
	pm_runtime_disable(&pdev->dev);
4417
	return r;
4418 4419
}

T
Tomi Valkeinen 已提交
4420 4421
static void dispc_unbind(struct device *dev, struct device *master,
			       void *data)
4422
{
T
Tomi Valkeinen 已提交
4423
	pm_runtime_disable(dev);
4424 4425

	dispc_errata_i734_wa_fini();
T
Tomi Valkeinen 已提交
4426 4427 4428 4429 4430 4431
}

static const struct component_ops dispc_component_ops = {
	.bind	= dispc_bind,
	.unbind	= dispc_unbind,
};
4432

T
Tomi Valkeinen 已提交
4433 4434 4435 4436 4437 4438 4439 4440
static int dispc_probe(struct platform_device *pdev)
{
	return component_add(&pdev->dev, &dispc_component_ops);
}

static int dispc_remove(struct platform_device *pdev)
{
	component_del(&pdev->dev, &dispc_component_ops);
4441 4442 4443
	return 0;
}

4444 4445
static int dispc_runtime_suspend(struct device *dev)
{
4446 4447 4448 4449 4450 4451
	dispc.is_enabled = false;
	/* ensure the dispc_irq_handler sees the is_enabled value */
	smp_wmb();
	/* wait for current handler to finish before turning the DISPC off */
	synchronize_irq(dispc.irq);

4452 4453 4454 4455 4456 4457 4458
	dispc_save_context();

	return 0;
}

static int dispc_runtime_resume(struct device *dev)
{
4459 4460 4461 4462 4463 4464
	/*
	 * The reset value for load mode is 0 (OMAP_DSS_LOAD_CLUT_AND_FRAME)
	 * but we always initialize it to 2 (OMAP_DSS_LOAD_FRAME_ONLY) in
	 * _omap_dispc_initial_config(). We can thus use it to detect if
	 * we have lost register context.
	 */
4465 4466
	if (REG_GET(DISPC_CONFIG, 2, 1) != OMAP_DSS_LOAD_FRAME_ONLY) {
		_omap_dispc_initial_config();
4467

4468 4469
		dispc_errata_i734_wa();

4470
		dispc_restore_context();
4471 4472

		dispc_restore_gamma_tables();
4473
	}
4474

4475 4476 4477
	dispc.is_enabled = true;
	/* ensure the dispc_irq_handler sees the is_enabled value */
	smp_wmb();
4478 4479 4480 4481 4482 4483 4484 4485 4486

	return 0;
}

static const struct dev_pm_ops dispc_pm_ops = {
	.runtime_suspend = dispc_runtime_suspend,
	.runtime_resume = dispc_runtime_resume,
};

4487 4488 4489 4490
static const struct of_device_id dispc_of_match[] = {
	{ .compatible = "ti,omap2-dispc", },
	{ .compatible = "ti,omap3-dispc", },
	{ .compatible = "ti,omap4-dispc", },
4491
	{ .compatible = "ti,omap5-dispc", },
4492
	{ .compatible = "ti,dra7-dispc", },
4493 4494 4495
	{},
};

4496
static struct platform_driver omap_dispchw_driver = {
T
Tomi Valkeinen 已提交
4497 4498
	.probe		= dispc_probe,
	.remove         = dispc_remove,
4499 4500
	.driver         = {
		.name   = "omapdss_dispc",
4501
		.pm	= &dispc_pm_ops,
4502
		.of_match_table = dispc_of_match,
T
Tomi Valkeinen 已提交
4503
		.suppress_bind_attrs = true,
4504 4505 4506
	},
};

T
Tomi Valkeinen 已提交
4507
int __init dispc_init_platform_driver(void)
4508
{
T
Tomi Valkeinen 已提交
4509
	return platform_driver_register(&omap_dispchw_driver);
4510 4511
}

4512
void dispc_uninit_platform_driver(void)
4513
{
4514
	platform_driver_unregister(&omap_dispchw_driver);
4515
}