rockchip_drm_vop.c 41.9 KB
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/*
 * Copyright (C) Fuzhou Rockchip Electronics Co.Ltd
 * Author:Mark Yao <mark.yao@rock-chips.com>
 *
 * This software is licensed under the terms of the GNU General Public
 * License version 2, as published by the Free Software Foundation, and
 * may be copied, distributed, and modified under those terms.
 *
 * 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.
 */

#include <drm/drm.h>
#include <drm/drmP.h>
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#include <drm/drm_atomic.h>
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#include <drm/drm_crtc.h>
#include <drm/drm_crtc_helper.h>
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#include <drm/drm_flip_work.h>
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#include <drm/drm_plane_helper.h>
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#ifdef CONFIG_DRM_ANALOGIX_DP
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#include <drm/bridge/analogix_dp.h>
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#endif
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#include <linux/kernel.h>
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#include <linux/module.h>
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#include <linux/platform_device.h>
#include <linux/clk.h>
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#include <linux/iopoll.h>
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#include <linux/of.h>
#include <linux/of_device.h>
#include <linux/pm_runtime.h>
#include <linux/component.h>

#include <linux/reset.h>
#include <linux/delay.h>

#include "rockchip_drm_drv.h"
#include "rockchip_drm_gem.h"
#include "rockchip_drm_fb.h"
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#include "rockchip_drm_psr.h"
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#include "rockchip_drm_vop.h"

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#define __REG_SET_RELAXED(x, off, mask, shift, v, write_mask) \
		vop_mask_write(x, off, mask, shift, v, write_mask, true)

#define __REG_SET_NORMAL(x, off, mask, shift, v, write_mask) \
		vop_mask_write(x, off, mask, shift, v, write_mask, false)
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#define REG_SET(x, base, reg, v, mode) \
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		__REG_SET_##mode(x, base + reg.offset, \
				 reg.mask, reg.shift, v, reg.write_mask)
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#define REG_SET_MASK(x, base, reg, mask, v, mode) \
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		__REG_SET_##mode(x, base + reg.offset, \
				 mask, reg.shift, v, reg.write_mask)
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#define VOP_WIN_SET(x, win, name, v) \
		REG_SET(x, win->base, win->phy->name, v, RELAXED)
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#define VOP_SCL_SET(x, win, name, v) \
		REG_SET(x, win->base, win->phy->scl->name, v, RELAXED)
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#define VOP_SCL_SET_EXT(x, win, name, v) \
		REG_SET(x, win->base, win->phy->scl->ext->name, v, RELAXED)
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#define VOP_CTRL_SET(x, name, v) \
		REG_SET(x, 0, (x)->data->ctrl->name, v, NORMAL)

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#define VOP_INTR_GET(vop, name) \
		vop_read_reg(vop, 0, &vop->data->ctrl->name)

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#define VOP_INTR_SET(vop, name, mask, v) \
		REG_SET_MASK(vop, 0, vop->data->intr->name, mask, v, NORMAL)
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#define VOP_INTR_SET_TYPE(vop, name, type, v) \
	do { \
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		int i, reg = 0, mask = 0; \
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		for (i = 0; i < vop->data->intr->nintrs; i++) { \
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			if (vop->data->intr->intrs[i] & type) { \
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				reg |= (v) << i; \
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				mask |= 1 << i; \
			} \
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		} \
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		VOP_INTR_SET(vop, name, mask, reg); \
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	} while (0)
#define VOP_INTR_GET_TYPE(vop, name, type) \
		vop_get_intr_type(vop, &vop->data->intr->name, type)

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#define VOP_WIN_GET(x, win, name) \
		vop_read_reg(x, win->base, &win->phy->name)

#define VOP_WIN_GET_YRGBADDR(vop, win) \
		vop_readl(vop, win->base + win->phy->yrgb_mst.offset)

#define to_vop(x) container_of(x, struct vop, crtc)
#define to_vop_win(x) container_of(x, struct vop_win, base)

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enum vop_pending {
	VOP_PENDING_FB_UNREF,
};

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struct vop_win {
	struct drm_plane base;
	const struct vop_win_data *data;
	struct vop *vop;
};

struct vop {
	struct drm_crtc crtc;
	struct device *dev;
	struct drm_device *drm_dev;
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	bool is_enabled;
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	/* mutex vsync_ work */
	struct mutex vsync_mutex;
	bool vsync_work_pending;
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	struct completion dsp_hold_completion;
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	/* protected by dev->event_lock */
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	struct drm_pending_vblank_event *event;
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	struct drm_flip_work fb_unref_work;
	unsigned long pending;

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	struct completion line_flag_completion;

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	const struct vop_data *data;

	uint32_t *regsbak;
	void __iomem *regs;

	/* physical map length of vop register */
	uint32_t len;

	/* one time only one process allowed to config the register */
	spinlock_t reg_lock;
	/* lock vop irq reg */
	spinlock_t irq_lock;

	unsigned int irq;

	/* vop AHP clk */
	struct clk *hclk;
	/* vop dclk */
	struct clk *dclk;
	/* vop share memory frequency */
	struct clk *aclk;

	/* vop dclk reset */
	struct reset_control *dclk_rst;

	struct vop_win win[];
};

static inline void vop_writel(struct vop *vop, uint32_t offset, uint32_t v)
{
	writel(v, vop->regs + offset);
	vop->regsbak[offset >> 2] = v;
}

static inline uint32_t vop_readl(struct vop *vop, uint32_t offset)
{
	return readl(vop->regs + offset);
}

static inline uint32_t vop_read_reg(struct vop *vop, uint32_t base,
				    const struct vop_reg *reg)
{
	return (vop_readl(vop, base + reg->offset) >> reg->shift) & reg->mask;
}

static inline void vop_mask_write(struct vop *vop, uint32_t offset,
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				  uint32_t mask, uint32_t shift, uint32_t v,
				  bool write_mask, bool relaxed)
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{
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	if (!mask)
		return;
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	if (write_mask) {
		v = ((v << shift) & 0xffff) | (mask << (shift + 16));
	} else {
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		uint32_t cached_val = vop->regsbak[offset >> 2];

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		v = (cached_val & ~(mask << shift)) | ((v & mask) << shift);
		vop->regsbak[offset >> 2] = v;
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	}
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	if (relaxed)
		writel_relaxed(v, vop->regs + offset);
	else
		writel(v, vop->regs + offset);
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}

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static inline uint32_t vop_get_intr_type(struct vop *vop,
					 const struct vop_reg *reg, int type)
{
	uint32_t i, ret = 0;
	uint32_t regs = vop_read_reg(vop, 0, reg);

	for (i = 0; i < vop->data->intr->nintrs; i++) {
		if ((type & vop->data->intr->intrs[i]) && (regs & 1 << i))
			ret |= vop->data->intr->intrs[i];
	}

	return ret;
}

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static inline void vop_cfg_done(struct vop *vop)
{
	VOP_CTRL_SET(vop, cfg_done, 1);
}

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static bool has_rb_swapped(uint32_t format)
{
	switch (format) {
	case DRM_FORMAT_XBGR8888:
	case DRM_FORMAT_ABGR8888:
	case DRM_FORMAT_BGR888:
	case DRM_FORMAT_BGR565:
		return true;
	default:
		return false;
	}
}

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static enum vop_data_format vop_convert_format(uint32_t format)
{
	switch (format) {
	case DRM_FORMAT_XRGB8888:
	case DRM_FORMAT_ARGB8888:
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	case DRM_FORMAT_XBGR8888:
	case DRM_FORMAT_ABGR8888:
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		return VOP_FMT_ARGB8888;
	case DRM_FORMAT_RGB888:
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	case DRM_FORMAT_BGR888:
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		return VOP_FMT_RGB888;
	case DRM_FORMAT_RGB565:
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	case DRM_FORMAT_BGR565:
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		return VOP_FMT_RGB565;
	case DRM_FORMAT_NV12:
		return VOP_FMT_YUV420SP;
	case DRM_FORMAT_NV16:
		return VOP_FMT_YUV422SP;
	case DRM_FORMAT_NV24:
		return VOP_FMT_YUV444SP;
	default:
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		DRM_ERROR("unsupported format[%08x]\n", format);
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		return -EINVAL;
	}
}

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static bool is_yuv_support(uint32_t format)
{
	switch (format) {
	case DRM_FORMAT_NV12:
	case DRM_FORMAT_NV16:
	case DRM_FORMAT_NV24:
		return true;
	default:
		return false;
	}
}

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static bool is_alpha_support(uint32_t format)
{
	switch (format) {
	case DRM_FORMAT_ARGB8888:
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	case DRM_FORMAT_ABGR8888:
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		return true;
	default:
		return false;
	}
}

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static uint16_t scl_vop_cal_scale(enum scale_mode mode, uint32_t src,
				  uint32_t dst, bool is_horizontal,
				  int vsu_mode, int *vskiplines)
{
	uint16_t val = 1 << SCL_FT_DEFAULT_FIXPOINT_SHIFT;

	if (is_horizontal) {
		if (mode == SCALE_UP)
			val = GET_SCL_FT_BIC(src, dst);
		else if (mode == SCALE_DOWN)
			val = GET_SCL_FT_BILI_DN(src, dst);
	} else {
		if (mode == SCALE_UP) {
			if (vsu_mode == SCALE_UP_BIL)
				val = GET_SCL_FT_BILI_UP(src, dst);
			else
				val = GET_SCL_FT_BIC(src, dst);
		} else if (mode == SCALE_DOWN) {
			if (vskiplines) {
				*vskiplines = scl_get_vskiplines(src, dst);
				val = scl_get_bili_dn_vskip(src, dst,
							    *vskiplines);
			} else {
				val = GET_SCL_FT_BILI_DN(src, dst);
			}
		}
	}

	return val;
}

static void scl_vop_cal_scl_fac(struct vop *vop, const struct vop_win_data *win,
			     uint32_t src_w, uint32_t src_h, uint32_t dst_w,
			     uint32_t dst_h, uint32_t pixel_format)
{
	uint16_t yrgb_hor_scl_mode, yrgb_ver_scl_mode;
	uint16_t cbcr_hor_scl_mode = SCALE_NONE;
	uint16_t cbcr_ver_scl_mode = SCALE_NONE;
	int hsub = drm_format_horz_chroma_subsampling(pixel_format);
	int vsub = drm_format_vert_chroma_subsampling(pixel_format);
	bool is_yuv = is_yuv_support(pixel_format);
	uint16_t cbcr_src_w = src_w / hsub;
	uint16_t cbcr_src_h = src_h / vsub;
	uint16_t vsu_mode;
	uint16_t lb_mode;
	uint32_t val;
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	int vskiplines = 0;
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	if (dst_w > 3840) {
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		DRM_DEV_ERROR(vop->dev, "Maximum dst width (3840) exceeded\n");
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		return;
	}

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	if (!win->phy->scl->ext) {
		VOP_SCL_SET(vop, win, scale_yrgb_x,
			    scl_cal_scale2(src_w, dst_w));
		VOP_SCL_SET(vop, win, scale_yrgb_y,
			    scl_cal_scale2(src_h, dst_h));
		if (is_yuv) {
			VOP_SCL_SET(vop, win, scale_cbcr_x,
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				    scl_cal_scale2(cbcr_src_w, dst_w));
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			VOP_SCL_SET(vop, win, scale_cbcr_y,
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				    scl_cal_scale2(cbcr_src_h, dst_h));
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		}
		return;
	}

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	yrgb_hor_scl_mode = scl_get_scl_mode(src_w, dst_w);
	yrgb_ver_scl_mode = scl_get_scl_mode(src_h, dst_h);

	if (is_yuv) {
		cbcr_hor_scl_mode = scl_get_scl_mode(cbcr_src_w, dst_w);
		cbcr_ver_scl_mode = scl_get_scl_mode(cbcr_src_h, dst_h);
		if (cbcr_hor_scl_mode == SCALE_DOWN)
			lb_mode = scl_vop_cal_lb_mode(dst_w, true);
		else
			lb_mode = scl_vop_cal_lb_mode(cbcr_src_w, true);
	} else {
		if (yrgb_hor_scl_mode == SCALE_DOWN)
			lb_mode = scl_vop_cal_lb_mode(dst_w, false);
		else
			lb_mode = scl_vop_cal_lb_mode(src_w, false);
	}

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	VOP_SCL_SET_EXT(vop, win, lb_mode, lb_mode);
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	if (lb_mode == LB_RGB_3840X2) {
		if (yrgb_ver_scl_mode != SCALE_NONE) {
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			DRM_DEV_ERROR(vop->dev, "not allow yrgb ver scale\n");
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			return;
		}
		if (cbcr_ver_scl_mode != SCALE_NONE) {
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			DRM_DEV_ERROR(vop->dev, "not allow cbcr ver scale\n");
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			return;
		}
		vsu_mode = SCALE_UP_BIL;
	} else if (lb_mode == LB_RGB_2560X4) {
		vsu_mode = SCALE_UP_BIL;
	} else {
		vsu_mode = SCALE_UP_BIC;
	}

	val = scl_vop_cal_scale(yrgb_hor_scl_mode, src_w, dst_w,
				true, 0, NULL);
	VOP_SCL_SET(vop, win, scale_yrgb_x, val);
	val = scl_vop_cal_scale(yrgb_ver_scl_mode, src_h, dst_h,
				false, vsu_mode, &vskiplines);
	VOP_SCL_SET(vop, win, scale_yrgb_y, val);

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	VOP_SCL_SET_EXT(vop, win, vsd_yrgb_gt4, vskiplines == 4);
	VOP_SCL_SET_EXT(vop, win, vsd_yrgb_gt2, vskiplines == 2);
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	VOP_SCL_SET_EXT(vop, win, yrgb_hor_scl_mode, yrgb_hor_scl_mode);
	VOP_SCL_SET_EXT(vop, win, yrgb_ver_scl_mode, yrgb_ver_scl_mode);
	VOP_SCL_SET_EXT(vop, win, yrgb_hsd_mode, SCALE_DOWN_BIL);
	VOP_SCL_SET_EXT(vop, win, yrgb_vsd_mode, SCALE_DOWN_BIL);
	VOP_SCL_SET_EXT(vop, win, yrgb_vsu_mode, vsu_mode);
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	if (is_yuv) {
		val = scl_vop_cal_scale(cbcr_hor_scl_mode, cbcr_src_w,
					dst_w, true, 0, NULL);
		VOP_SCL_SET(vop, win, scale_cbcr_x, val);
		val = scl_vop_cal_scale(cbcr_ver_scl_mode, cbcr_src_h,
					dst_h, false, vsu_mode, &vskiplines);
		VOP_SCL_SET(vop, win, scale_cbcr_y, val);

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		VOP_SCL_SET_EXT(vop, win, vsd_cbcr_gt4, vskiplines == 4);
		VOP_SCL_SET_EXT(vop, win, vsd_cbcr_gt2, vskiplines == 2);
		VOP_SCL_SET_EXT(vop, win, cbcr_hor_scl_mode, cbcr_hor_scl_mode);
		VOP_SCL_SET_EXT(vop, win, cbcr_ver_scl_mode, cbcr_ver_scl_mode);
		VOP_SCL_SET_EXT(vop, win, cbcr_hsd_mode, SCALE_DOWN_BIL);
		VOP_SCL_SET_EXT(vop, win, cbcr_vsd_mode, SCALE_DOWN_BIL);
		VOP_SCL_SET_EXT(vop, win, cbcr_vsu_mode, vsu_mode);
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	}
}

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static void vop_dsp_hold_valid_irq_enable(struct vop *vop)
{
	unsigned long flags;

	if (WARN_ON(!vop->is_enabled))
		return;

	spin_lock_irqsave(&vop->irq_lock, flags);

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	VOP_INTR_SET_TYPE(vop, clear, DSP_HOLD_VALID_INTR, 1);
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	VOP_INTR_SET_TYPE(vop, enable, DSP_HOLD_VALID_INTR, 1);
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	spin_unlock_irqrestore(&vop->irq_lock, flags);
}

static void vop_dsp_hold_valid_irq_disable(struct vop *vop)
{
	unsigned long flags;

	if (WARN_ON(!vop->is_enabled))
		return;

	spin_lock_irqsave(&vop->irq_lock, flags);

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	VOP_INTR_SET_TYPE(vop, enable, DSP_HOLD_VALID_INTR, 0);
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	spin_unlock_irqrestore(&vop->irq_lock, flags);
}

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/*
 * (1) each frame starts at the start of the Vsync pulse which is signaled by
 *     the "FRAME_SYNC" interrupt.
 * (2) the active data region of each frame ends at dsp_vact_end
 * (3) we should program this same number (dsp_vact_end) into dsp_line_frag_num,
 *      to get "LINE_FLAG" interrupt at the end of the active on screen data.
 *
 * VOP_INTR_CTRL0.dsp_line_frag_num = VOP_DSP_VACT_ST_END.dsp_vact_end
 * Interrupts
 * LINE_FLAG -------------------------------+
 * FRAME_SYNC ----+                         |
 *                |                         |
 *                v                         v
 *                | Vsync | Vbp |  Vactive  | Vfp |
 *                        ^     ^           ^     ^
 *                        |     |           |     |
 *                        |     |           |     |
 * dsp_vs_end ------------+     |           |     |   VOP_DSP_VTOTAL_VS_END
 * dsp_vact_start --------------+           |     |   VOP_DSP_VACT_ST_END
 * dsp_vact_end ----------------------------+     |   VOP_DSP_VACT_ST_END
 * dsp_total -------------------------------------+   VOP_DSP_VTOTAL_VS_END
 */
static bool vop_line_flag_irq_is_enabled(struct vop *vop)
{
	uint32_t line_flag_irq;
	unsigned long flags;

	spin_lock_irqsave(&vop->irq_lock, flags);

	line_flag_irq = VOP_INTR_GET_TYPE(vop, enable, LINE_FLAG_INTR);

	spin_unlock_irqrestore(&vop->irq_lock, flags);

	return !!line_flag_irq;
}

static void vop_line_flag_irq_enable(struct vop *vop, int line_num)
{
	unsigned long flags;

	if (WARN_ON(!vop->is_enabled))
		return;

	spin_lock_irqsave(&vop->irq_lock, flags);

	VOP_CTRL_SET(vop, line_flag_num[0], line_num);
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	VOP_INTR_SET_TYPE(vop, clear, LINE_FLAG_INTR, 1);
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	VOP_INTR_SET_TYPE(vop, enable, LINE_FLAG_INTR, 1);

	spin_unlock_irqrestore(&vop->irq_lock, flags);
}

static void vop_line_flag_irq_disable(struct vop *vop)
{
	unsigned long flags;

	if (WARN_ON(!vop->is_enabled))
		return;

	spin_lock_irqsave(&vop->irq_lock, flags);

	VOP_INTR_SET_TYPE(vop, enable, LINE_FLAG_INTR, 0);

	spin_unlock_irqrestore(&vop->irq_lock, flags);
}

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static int vop_enable(struct drm_crtc *crtc)
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{
	struct vop *vop = to_vop(crtc);
	int ret;

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	ret = pm_runtime_get_sync(vop->dev);
	if (ret < 0) {
		dev_err(vop->dev, "failed to get pm runtime: %d\n", ret);
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		goto err_put_pm_runtime;
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	}

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	ret = clk_enable(vop->hclk);
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	if (WARN_ON(ret < 0))
		goto err_put_pm_runtime;
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	ret = clk_enable(vop->dclk);
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	if (WARN_ON(ret < 0))
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		goto err_disable_hclk;

	ret = clk_enable(vop->aclk);
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	if (WARN_ON(ret < 0))
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		goto err_disable_dclk;

	/*
	 * Slave iommu shares power, irq and clock with vop.  It was associated
	 * automatically with this master device via common driver code.
	 * Now that we have enabled the clock we attach it to the shared drm
	 * mapping.
	 */
	ret = rockchip_drm_dma_attach_device(vop->drm_dev, vop->dev);
	if (ret) {
		dev_err(vop->dev, "failed to attach dma mapping, %d\n", ret);
		goto err_disable_aclk;
	}

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	memcpy(vop->regs, vop->regsbak, vop->len);
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	vop_cfg_done(vop);

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	/*
	 * At here, vop clock & iommu is enable, R/W vop regs would be safe.
	 */
	vop->is_enabled = true;

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	spin_lock(&vop->reg_lock);

	VOP_CTRL_SET(vop, standby, 0);

	spin_unlock(&vop->reg_lock);

	enable_irq(vop->irq);

552
	drm_crtc_vblank_on(crtc);
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554
	return 0;
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err_disable_aclk:
	clk_disable(vop->aclk);
err_disable_dclk:
	clk_disable(vop->dclk);
err_disable_hclk:
	clk_disable(vop->hclk);
562 563 564
err_put_pm_runtime:
	pm_runtime_put_sync(vop->dev);
	return ret;
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}

567
static void vop_crtc_disable(struct drm_crtc *crtc)
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{
	struct vop *vop = to_vop(crtc);
570
	int i;
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572 573
	WARN_ON(vop->event);

574 575
	rockchip_drm_psr_deactivate(&vop->crtc);

576 577 578 579 580 581 582 583 584 585 586 587 588 589
	/*
	 * We need to make sure that all windows are disabled before we
	 * disable that crtc. Otherwise we might try to scan from a destroyed
	 * buffer later.
	 */
	for (i = 0; i < vop->data->win_size; i++) {
		struct vop_win *vop_win = &vop->win[i];
		const struct vop_win_data *win = vop_win->data;

		spin_lock(&vop->reg_lock);
		VOP_WIN_SET(vop, win, enable, 0);
		spin_unlock(&vop->reg_lock);
	}

590 591
	vop_cfg_done(vop);

592
	drm_crtc_vblank_off(crtc);
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	/*
595 596 597 598 599
	 * Vop standby will take effect at end of current frame,
	 * if dsp hold valid irq happen, it means standby complete.
	 *
	 * we must wait standby complete when we want to disable aclk,
	 * if not, memory bus maybe dead.
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	 */
601 602 603
	reinit_completion(&vop->dsp_hold_completion);
	vop_dsp_hold_valid_irq_enable(vop);

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	spin_lock(&vop->reg_lock);

	VOP_CTRL_SET(vop, standby, 1);

	spin_unlock(&vop->reg_lock);
609

610 611 612 613 614 615
	wait_for_completion(&vop->dsp_hold_completion);

	vop_dsp_hold_valid_irq_disable(vop);

	disable_irq(vop->irq);

616
	vop->is_enabled = false;
617

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	/*
619
	 * vop standby complete, so iommu detach is safe.
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	 */
	rockchip_drm_dma_detach_device(vop->drm_dev, vop->dev);

623
	clk_disable(vop->dclk);
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	clk_disable(vop->aclk);
	clk_disable(vop->hclk);
626
	pm_runtime_put(vop->dev);
627 628 629 630 631 632 633 634

	if (crtc->state->event && !crtc->state->active) {
		spin_lock_irq(&crtc->dev->event_lock);
		drm_crtc_send_vblank_event(crtc, crtc->state->event);
		spin_unlock_irq(&crtc->dev->event_lock);

		crtc->state->event = NULL;
	}
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}

637
static void vop_plane_destroy(struct drm_plane *plane)
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638
{
639
	drm_plane_cleanup(plane);
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640 641
}

642 643
static int vop_plane_atomic_check(struct drm_plane *plane,
			   struct drm_plane_state *state)
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644
{
645
	struct drm_crtc *crtc = state->crtc;
646
	struct drm_crtc_state *crtc_state;
647
	struct drm_framebuffer *fb = state->fb;
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	struct vop_win *vop_win = to_vop_win(plane);
	const struct vop_win_data *win = vop_win->data;
	int ret;
651
	struct drm_rect clip;
652 653 654 655
	int min_scale = win->phy->scl ? FRAC_16_16(1, 8) :
					DRM_PLANE_HELPER_NO_SCALING;
	int max_scale = win->phy->scl ? FRAC_16_16(8, 1) :
					DRM_PLANE_HELPER_NO_SCALING;
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656

657
	if (!crtc || !fb)
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		return 0;
659 660 661 662 663

	crtc_state = drm_atomic_get_existing_crtc_state(state->state, crtc);
	if (WARN_ON(!crtc_state))
		return -EINVAL;

664 665
	clip.x1 = 0;
	clip.y1 = 0;
666 667
	clip.x2 = crtc_state->adjusted_mode.hdisplay;
	clip.y2 = crtc_state->adjusted_mode.vdisplay;
668

669 670 671
	ret = drm_plane_helper_check_state(state, &clip,
					   min_scale, max_scale,
					   true, true);
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	if (ret)
		return ret;

675
	if (!state->visible)
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		return 0;
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677

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	ret = vop_convert_format(fb->format->format);
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	if (ret < 0)
		return ret;
681

682 683 684 685
	/*
	 * Src.x1 can be odd when do clip, but yuv plane start point
	 * need align with 2 pixel.
	 */
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686
	if (is_yuv_support(fb->format->format) && ((state->src.x1 >> 16) % 2))
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		return -EINVAL;

689 690
	return 0;
}
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692 693 694 695 696 697
static void vop_plane_atomic_disable(struct drm_plane *plane,
				     struct drm_plane_state *old_state)
{
	struct vop_win *vop_win = to_vop_win(plane);
	const struct vop_win_data *win = vop_win->data;
	struct vop *vop = to_vop(old_state->crtc);
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699 700
	if (!old_state->crtc)
		return;
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701

702
	spin_lock(&vop->reg_lock);
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704
	VOP_WIN_SET(vop, win, enable, 0);
705

706 707
	spin_unlock(&vop->reg_lock);
}
708

709 710 711 712 713 714 715 716 717 718 719 720
static void vop_plane_atomic_update(struct drm_plane *plane,
		struct drm_plane_state *old_state)
{
	struct drm_plane_state *state = plane->state;
	struct drm_crtc *crtc = state->crtc;
	struct vop_win *vop_win = to_vop_win(plane);
	const struct vop_win_data *win = vop_win->data;
	struct vop *vop = to_vop(state->crtc);
	struct drm_framebuffer *fb = state->fb;
	unsigned int actual_w, actual_h;
	unsigned int dsp_stx, dsp_sty;
	uint32_t act_info, dsp_info, dsp_st;
721 722
	struct drm_rect *src = &state->src;
	struct drm_rect *dest = &state->dst;
723 724 725 726 727 728
	struct drm_gem_object *obj, *uv_obj;
	struct rockchip_gem_object *rk_obj, *rk_uv_obj;
	unsigned long offset;
	dma_addr_t dma_addr;
	uint32_t val;
	bool rb_swap;
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	int format;
730

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	/*
732
	 * can't update plane when vop is disabled.
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	 */
734
	if (WARN_ON(!crtc))
735
		return;
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737 738
	if (WARN_ON(!vop->is_enabled))
		return;
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739

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740
	if (!state->visible) {
741 742
		vop_plane_atomic_disable(plane, old_state);
		return;
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	}
744 745 746 747 748 749 750 751 752 753 754 755 756 757 758

	obj = rockchip_fb_get_gem_obj(fb, 0);
	rk_obj = to_rockchip_obj(obj);

	actual_w = drm_rect_width(src) >> 16;
	actual_h = drm_rect_height(src) >> 16;
	act_info = (actual_h - 1) << 16 | ((actual_w - 1) & 0xffff);

	dsp_info = (drm_rect_height(dest) - 1) << 16;
	dsp_info |= (drm_rect_width(dest) - 1) & 0xffff;

	dsp_stx = dest->x1 + crtc->mode.htotal - crtc->mode.hsync_start;
	dsp_sty = dest->y1 + crtc->mode.vtotal - crtc->mode.vsync_start;
	dsp_st = dsp_sty << 16 | (dsp_stx & 0xffff);

759
	offset = (src->x1 >> 16) * fb->format->cpp[0];
760
	offset += (src->y1 >> 16) * fb->pitches[0];
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	dma_addr = rk_obj->dma_addr + offset + fb->offsets[0];

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	format = vop_convert_format(fb->format->format);
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764 765 766

	spin_lock(&vop->reg_lock);

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	VOP_WIN_SET(vop, win, format, format);
768
	VOP_WIN_SET(vop, win, yrgb_vir, fb->pitches[0] >> 2);
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769
	VOP_WIN_SET(vop, win, yrgb_mst, dma_addr);
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770 771 772
	if (is_yuv_support(fb->format->format)) {
		int hsub = drm_format_horz_chroma_subsampling(fb->format->format);
		int vsub = drm_format_vert_chroma_subsampling(fb->format->format);
773
		int bpp = fb->format->cpp[1];
774 775 776 777 778 779 780 781 782 783

		uv_obj = rockchip_fb_get_gem_obj(fb, 1);
		rk_uv_obj = to_rockchip_obj(uv_obj);

		offset = (src->x1 >> 16) * bpp / hsub;
		offset += (src->y1 >> 16) * fb->pitches[1] / vsub;

		dma_addr = rk_uv_obj->dma_addr + offset + fb->offsets[1];
		VOP_WIN_SET(vop, win, uv_vir, fb->pitches[1] >> 2);
		VOP_WIN_SET(vop, win, uv_mst, dma_addr);
784
	}
785 786 787

	if (win->phy->scl)
		scl_vop_cal_scl_fac(vop, win, actual_w, actual_h,
788
				    drm_rect_width(dest), drm_rect_height(dest),
V
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				    fb->format->format);
790

791 792 793
	VOP_WIN_SET(vop, win, act_info, act_info);
	VOP_WIN_SET(vop, win, dsp_info, dsp_info);
	VOP_WIN_SET(vop, win, dsp_st, dsp_st);
794

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	rb_swap = has_rb_swapped(fb->format->format);
796
	VOP_WIN_SET(vop, win, rb_swap, rb_swap);
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797

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798
	if (is_alpha_support(fb->format->format)) {
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		VOP_WIN_SET(vop, win, dst_alpha_ctl,
			    DST_FACTOR_M0(ALPHA_SRC_INVERSE));
		val = SRC_ALPHA_EN(1) | SRC_COLOR_M0(ALPHA_SRC_PRE_MUL) |
			SRC_ALPHA_M0(ALPHA_STRAIGHT) |
			SRC_BLEND_M0(ALPHA_PER_PIX) |
			SRC_ALPHA_CAL_M0(ALPHA_NO_SATURATION) |
			SRC_FACTOR_M0(ALPHA_ONE);
		VOP_WIN_SET(vop, win, src_alpha_ctl, val);
	} else {
		VOP_WIN_SET(vop, win, src_alpha_ctl, SRC_ALPHA_EN(0));
	}

	VOP_WIN_SET(vop, win, enable, 1);
	spin_unlock(&vop->reg_lock);
}

815 816 817 818 819
static const struct drm_plane_helper_funcs plane_helper_funcs = {
	.atomic_check = vop_plane_atomic_check,
	.atomic_update = vop_plane_atomic_update,
	.atomic_disable = vop_plane_atomic_disable,
};
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static const struct drm_plane_funcs vop_plane_funcs = {
822 823
	.update_plane	= drm_atomic_helper_update_plane,
	.disable_plane	= drm_atomic_helper_disable_plane,
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824
	.destroy = vop_plane_destroy,
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825 826 827
	.reset = drm_atomic_helper_plane_reset,
	.atomic_duplicate_state = drm_atomic_helper_plane_duplicate_state,
	.atomic_destroy_state = drm_atomic_helper_plane_destroy_state,
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828 829 830 831 832 833 834
};

static int vop_crtc_enable_vblank(struct drm_crtc *crtc)
{
	struct vop *vop = to_vop(crtc);
	unsigned long flags;

835
	if (WARN_ON(!vop->is_enabled))
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836 837 838 839
		return -EPERM;

	spin_lock_irqsave(&vop->irq_lock, flags);

840
	VOP_INTR_SET_TYPE(vop, clear, FS_INTR, 1);
841
	VOP_INTR_SET_TYPE(vop, enable, FS_INTR, 1);
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842 843 844 845 846 847 848 849 850 851 852

	spin_unlock_irqrestore(&vop->irq_lock, flags);

	return 0;
}

static void vop_crtc_disable_vblank(struct drm_crtc *crtc)
{
	struct vop *vop = to_vop(crtc);
	unsigned long flags;

853
	if (WARN_ON(!vop->is_enabled))
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854
		return;
855

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856
	spin_lock_irqsave(&vop->irq_lock, flags);
857 858 859

	VOP_INTR_SET_TYPE(vop, enable, FS_INTR, 0);

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860 861 862 863 864 865 866
	spin_unlock_irqrestore(&vop->irq_lock, flags);
}

static bool vop_crtc_mode_fixup(struct drm_crtc *crtc,
				const struct drm_display_mode *mode,
				struct drm_display_mode *adjusted_mode)
{
867 868 869 870 871
	struct vop *vop = to_vop(crtc);

	adjusted_mode->clock =
		clk_round_rate(vop->dclk, mode->clock * 1000) / 1000;

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872 873 874
	return true;
}

875
static void vop_crtc_enable(struct drm_crtc *crtc)
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876 877
{
	struct vop *vop = to_vop(crtc);
878
	struct rockchip_crtc_state *s = to_rockchip_crtc_state(crtc->state);
879
	struct drm_display_mode *adjusted_mode = &crtc->state->adjusted_mode;
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880 881 882 883 884 885 886 887 888 889
	u16 hsync_len = adjusted_mode->hsync_end - adjusted_mode->hsync_start;
	u16 hdisplay = adjusted_mode->hdisplay;
	u16 htotal = adjusted_mode->htotal;
	u16 hact_st = adjusted_mode->htotal - adjusted_mode->hsync_start;
	u16 hact_end = hact_st + hdisplay;
	u16 vdisplay = adjusted_mode->vdisplay;
	u16 vtotal = adjusted_mode->vtotal;
	u16 vsync_len = adjusted_mode->vsync_end - adjusted_mode->vsync_start;
	u16 vact_st = adjusted_mode->vtotal - adjusted_mode->vsync_start;
	u16 vact_end = vact_st + vdisplay;
890
	uint32_t pin_pol, val;
891
	int ret;
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892

893 894
	WARN_ON(vop->event);

895 896 897 898 899 900
	ret = vop_enable(crtc);
	if (ret) {
		DRM_DEV_ERROR(vop->dev, "Failed to enable vop (%d)\n", ret);
		return;
	}

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901
	/*
M
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902 903
	 * If dclk rate is zero, mean that scanout is stop,
	 * we don't need wait any more.
M
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904
	 */
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905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935
	if (clk_get_rate(vop->dclk)) {
		/*
		 * Rk3288 vop timing register is immediately, when configure
		 * display timing on display time, may cause tearing.
		 *
		 * Vop standby will take effect at end of current frame,
		 * if dsp hold valid irq happen, it means standby complete.
		 *
		 * mode set:
		 *    standby and wait complete --> |----
		 *                                  | display time
		 *                                  |----
		 *                                  |---> dsp hold irq
		 *     configure display timing --> |
		 *         standby exit             |
		 *                                  | new frame start.
		 */

		reinit_completion(&vop->dsp_hold_completion);
		vop_dsp_hold_valid_irq_enable(vop);

		spin_lock(&vop->reg_lock);

		VOP_CTRL_SET(vop, standby, 1);

		spin_unlock(&vop->reg_lock);

		wait_for_completion(&vop->dsp_hold_completion);

		vop_dsp_hold_valid_irq_disable(vop);
	}
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937
	pin_pol = BIT(DCLK_INVERT);
938 939 940 941
	pin_pol |= (adjusted_mode->flags & DRM_MODE_FLAG_PHSYNC) ?
		   BIT(HSYNC_POSITIVE) : 0;
	pin_pol |= (adjusted_mode->flags & DRM_MODE_FLAG_PVSYNC) ?
		   BIT(VSYNC_POSITIVE) : 0;
942 943
	VOP_CTRL_SET(vop, pin_pol, pin_pol);

944 945 946
	switch (s->output_type) {
	case DRM_MODE_CONNECTOR_LVDS:
		VOP_CTRL_SET(vop, rgb_en, 1);
947
		VOP_CTRL_SET(vop, rgb_pin_pol, pin_pol);
948 949
		break;
	case DRM_MODE_CONNECTOR_eDP:
950
		VOP_CTRL_SET(vop, edp_pin_pol, pin_pol);
951 952 953
		VOP_CTRL_SET(vop, edp_en, 1);
		break;
	case DRM_MODE_CONNECTOR_HDMIA:
954
		VOP_CTRL_SET(vop, hdmi_pin_pol, pin_pol);
955 956 957
		VOP_CTRL_SET(vop, hdmi_en, 1);
		break;
	case DRM_MODE_CONNECTOR_DSI:
958
		VOP_CTRL_SET(vop, mipi_pin_pol, pin_pol);
959 960
		VOP_CTRL_SET(vop, mipi_en, 1);
		break;
961 962 963 964 965
	case DRM_MODE_CONNECTOR_DisplayPort:
		pin_pol &= ~BIT(DCLK_INVERT);
		VOP_CTRL_SET(vop, dp_pin_pol, pin_pol);
		VOP_CTRL_SET(vop, dp_en, 1);
		break;
966
	default:
967 968
		DRM_DEV_ERROR(vop->dev, "unsupported connector_type [%d]\n",
			      s->output_type);
969 970
	}
	VOP_CTRL_SET(vop, out_mode, s->output_mode);
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	VOP_CTRL_SET(vop, htotal_pw, (htotal << 16) | hsync_len);
	val = hact_st << 16;
	val |= hact_end;
	VOP_CTRL_SET(vop, hact_st_end, val);
	VOP_CTRL_SET(vop, hpost_st_end, val);

	VOP_CTRL_SET(vop, vtotal_pw, (vtotal << 16) | vsync_len);
	val = vact_st << 16;
	val |= vact_end;
	VOP_CTRL_SET(vop, vact_st_end, val);
	VOP_CTRL_SET(vop, vpost_st_end, val);

	clk_set_rate(vop->dclk, adjusted_mode->clock * 1000);
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985 986

	VOP_CTRL_SET(vop, standby, 0);
987 988

	rockchip_drm_psr_activate(&vop->crtc);
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}

991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016
static bool vop_fs_irq_is_pending(struct vop *vop)
{
	return VOP_INTR_GET_TYPE(vop, status, FS_INTR);
}

static void vop_wait_for_irq_handler(struct vop *vop)
{
	bool pending;
	int ret;

	/*
	 * Spin until frame start interrupt status bit goes low, which means
	 * that interrupt handler was invoked and cleared it. The timeout of
	 * 10 msecs is really too long, but it is just a safety measure if
	 * something goes really wrong. The wait will only happen in the very
	 * unlikely case of a vblank happening exactly at the same time and
	 * shouldn't exceed microseconds range.
	 */
	ret = readx_poll_timeout_atomic(vop_fs_irq_is_pending, vop, pending,
					!pending, 0, 10 * 1000);
	if (ret)
		DRM_DEV_ERROR(vop->dev, "VOP vblank IRQ stuck for 10 ms\n");

	synchronize_irq(vop->irq);
}

1017 1018
static void vop_crtc_atomic_flush(struct drm_crtc *crtc,
				  struct drm_crtc_state *old_crtc_state)
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{
1020 1021
	struct drm_atomic_state *old_state = old_crtc_state->state;
	struct drm_plane_state *old_plane_state;
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1022
	struct vop *vop = to_vop(crtc);
1023 1024
	struct drm_plane *plane;
	int i;
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1025

1026 1027
	if (WARN_ON(!vop->is_enabled))
		return;
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1028

1029
	spin_lock(&vop->reg_lock);
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1030

1031
	vop_cfg_done(vop);
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1032

1033
	spin_unlock(&vop->reg_lock);
1034 1035 1036 1037 1038 1039 1040

	/*
	 * There is a (rather unlikely) possiblity that a vblank interrupt
	 * fired before we set the cfg_done bit. To avoid spuriously
	 * signalling flip completion we need to wait for it to finish.
	 */
	vop_wait_for_irq_handler(vop);
1041

1042 1043 1044 1045 1046 1047 1048 1049 1050 1051
	spin_lock_irq(&crtc->dev->event_lock);
	if (crtc->state->event) {
		WARN_ON(drm_crtc_vblank_get(crtc) != 0);
		WARN_ON(vop->event);

		vop->event = crtc->state->event;
		crtc->state->event = NULL;
	}
	spin_unlock_irq(&crtc->dev->event_lock);

1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063
	for_each_plane_in_state(old_state, plane, old_plane_state, i) {
		if (!old_plane_state->fb)
			continue;

		if (old_plane_state->fb == plane->state->fb)
			continue;

		drm_framebuffer_reference(old_plane_state->fb);
		drm_flip_work_queue(&vop->fb_unref_work, old_plane_state->fb);
		set_bit(VOP_PENDING_FB_UNREF, &vop->pending);
		WARN_ON(drm_crtc_vblank_get(crtc) != 0);
	}
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}

1066 1067
static void vop_crtc_atomic_begin(struct drm_crtc *crtc,
				  struct drm_crtc_state *old_crtc_state)
M
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1068
{
1069
	rockchip_drm_psr_flush(crtc);
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1070 1071
}

1072 1073 1074 1075 1076 1077 1078 1079
static const struct drm_crtc_helper_funcs vop_crtc_helper_funcs = {
	.enable = vop_crtc_enable,
	.disable = vop_crtc_disable,
	.mode_fixup = vop_crtc_mode_fixup,
	.atomic_flush = vop_crtc_atomic_flush,
	.atomic_begin = vop_crtc_atomic_begin,
};

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1080 1081 1082 1083 1084
static void vop_crtc_destroy(struct drm_crtc *crtc)
{
	drm_crtc_cleanup(crtc);
}

1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095
static void vop_crtc_reset(struct drm_crtc *crtc)
{
	if (crtc->state)
		__drm_atomic_helper_crtc_destroy_state(crtc->state);
	kfree(crtc->state);

	crtc->state = kzalloc(sizeof(struct rockchip_crtc_state), GFP_KERNEL);
	if (crtc->state)
		crtc->state->crtc = crtc;
}

1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112
static struct drm_crtc_state *vop_crtc_duplicate_state(struct drm_crtc *crtc)
{
	struct rockchip_crtc_state *rockchip_state;

	rockchip_state = kzalloc(sizeof(*rockchip_state), GFP_KERNEL);
	if (!rockchip_state)
		return NULL;

	__drm_atomic_helper_crtc_duplicate_state(crtc, &rockchip_state->base);
	return &rockchip_state->base;
}

static void vop_crtc_destroy_state(struct drm_crtc *crtc,
				   struct drm_crtc_state *state)
{
	struct rockchip_crtc_state *s = to_rockchip_crtc_state(state);

1113
	__drm_atomic_helper_crtc_destroy_state(&s->base);
1114 1115 1116
	kfree(s);
}

1117
#ifdef CONFIG_DRM_ANALOGIX_DP
1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155
static struct drm_connector *vop_get_edp_connector(struct vop *vop)
{
	struct drm_crtc *crtc = &vop->crtc;
	struct drm_connector *connector;

	mutex_lock(&crtc->dev->mode_config.mutex);
	drm_for_each_connector(connector, crtc->dev)
		if (connector->connector_type == DRM_MODE_CONNECTOR_eDP) {
			mutex_unlock(&crtc->dev->mode_config.mutex);
			return connector;
		}
	mutex_unlock(&crtc->dev->mode_config.mutex);

	return NULL;
}

static int vop_crtc_set_crc_source(struct drm_crtc *crtc,
				   const char *source_name, size_t *values_cnt)
{
	struct vop *vop = to_vop(crtc);
	struct drm_connector *connector;
	int ret;

	connector = vop_get_edp_connector(vop);
	if (!connector)
		return -EINVAL;

	*values_cnt = 3;

	if (source_name && strcmp(source_name, "auto") == 0)
		ret = analogix_dp_start_crc(connector);
	else if (!source_name)
		ret = analogix_dp_stop_crc(connector);
	else
		ret = -EINVAL;

	return ret;
}
1156 1157 1158 1159 1160 1161 1162
#else
static int vop_crtc_set_crc_source(struct drm_crtc *crtc,
				   const char *source_name, size_t *values_cnt)
{
	return -ENODEV;
}
#endif
1163

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1164
static const struct drm_crtc_funcs vop_crtc_funcs = {
1165 1166
	.set_config = drm_atomic_helper_set_config,
	.page_flip = drm_atomic_helper_page_flip,
M
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1167
	.destroy = vop_crtc_destroy,
1168
	.reset = vop_crtc_reset,
1169 1170
	.atomic_duplicate_state = vop_crtc_duplicate_state,
	.atomic_destroy_state = vop_crtc_destroy_state,
1171 1172
	.enable_vblank = vop_crtc_enable_vblank,
	.disable_vblank = vop_crtc_disable_vblank,
1173
	.set_crc_source = vop_crtc_set_crc_source,
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1174 1175
};

1176 1177 1178 1179 1180 1181 1182 1183 1184
static void vop_fb_unref_worker(struct drm_flip_work *work, void *val)
{
	struct vop *vop = container_of(work, struct vop, fb_unref_work);
	struct drm_framebuffer *fb = val;

	drm_crtc_vblank_put(&vop->crtc);
	drm_framebuffer_unreference(fb);
}

1185
static void vop_handle_vblank(struct vop *vop)
M
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1186
{
1187 1188 1189
	struct drm_device *drm = vop->drm_dev;
	struct drm_crtc *crtc = &vop->crtc;
	unsigned long flags;
M
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1190

1191
	spin_lock_irqsave(&drm->event_lock, flags);
1192 1193
	if (vop->event) {
		drm_crtc_send_vblank_event(crtc, vop->event);
1194
		drm_crtc_vblank_put(crtc);
1195
		vop->event = NULL;
1196
	}
1197 1198
	spin_unlock_irqrestore(&drm->event_lock, flags);

1199 1200
	if (test_and_clear_bit(VOP_PENDING_FB_UNREF, &vop->pending))
		drm_flip_work_commit(&vop->fb_unref_work, system_unbound_wq);
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1201 1202 1203 1204 1205
}

static irqreturn_t vop_isr(int irq, void *data)
{
	struct vop *vop = data;
1206
	struct drm_crtc *crtc = &vop->crtc;
1207
	uint32_t active_irqs;
M
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1208
	unsigned long flags;
1209
	int ret = IRQ_NONE;
M
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1210 1211

	/*
1212
	 * interrupt register has interrupt status, enable and clear bits, we
M
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1213 1214 1215
	 * must hold irq_lock to avoid a race with enable/disable_vblank().
	*/
	spin_lock_irqsave(&vop->irq_lock, flags);
1216 1217

	active_irqs = VOP_INTR_GET_TYPE(vop, status, INTR_MASK);
M
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1218 1219
	/* Clear all active interrupt sources */
	if (active_irqs)
1220 1221
		VOP_INTR_SET_TYPE(vop, clear, active_irqs, 1);

M
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1222 1223 1224 1225 1226 1227
	spin_unlock_irqrestore(&vop->irq_lock, flags);

	/* This is expected for vop iommu irqs, since the irq is shared */
	if (!active_irqs)
		return IRQ_NONE;

1228 1229 1230 1231
	if (active_irqs & DSP_HOLD_VALID_INTR) {
		complete(&vop->dsp_hold_completion);
		active_irqs &= ~DSP_HOLD_VALID_INTR;
		ret = IRQ_HANDLED;
M
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1232 1233
	}

1234 1235 1236 1237 1238 1239
	if (active_irqs & LINE_FLAG_INTR) {
		complete(&vop->line_flag_completion);
		active_irqs &= ~LINE_FLAG_INTR;
		ret = IRQ_HANDLED;
	}

1240
	if (active_irqs & FS_INTR) {
1241
		drm_crtc_handle_vblank(crtc);
1242
		vop_handle_vblank(vop);
1243
		active_irqs &= ~FS_INTR;
1244
		ret = IRQ_HANDLED;
1245
	}
M
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1246

1247 1248
	/* Unhandled irqs are spurious. */
	if (active_irqs)
1249 1250
		DRM_DEV_ERROR(vop->dev, "Unknown VOP IRQs: %#02x\n",
			      active_irqs);
1251 1252

	return ret;
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1253 1254 1255 1256 1257 1258 1259
}

static int vop_create_crtc(struct vop *vop)
{
	const struct vop_data *vop_data = vop->data;
	struct device *dev = vop->dev;
	struct drm_device *drm_dev = vop->drm_dev;
1260
	struct drm_plane *primary = NULL, *cursor = NULL, *plane, *tmp;
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1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282
	struct drm_crtc *crtc = &vop->crtc;
	struct device_node *port;
	int ret;
	int i;

	/*
	 * Create drm_plane for primary and cursor planes first, since we need
	 * to pass them to drm_crtc_init_with_planes, which sets the
	 * "possible_crtcs" to the newly initialized crtc.
	 */
	for (i = 0; i < vop_data->win_size; i++) {
		struct vop_win *vop_win = &vop->win[i];
		const struct vop_win_data *win_data = vop_win->data;

		if (win_data->type != DRM_PLANE_TYPE_PRIMARY &&
		    win_data->type != DRM_PLANE_TYPE_CURSOR)
			continue;

		ret = drm_universal_plane_init(vop->drm_dev, &vop_win->base,
					       0, &vop_plane_funcs,
					       win_data->phy->data_formats,
					       win_data->phy->nformats,
1283
					       win_data->type, NULL);
M
Mark Yao 已提交
1284
		if (ret) {
1285 1286
			DRM_DEV_ERROR(vop->dev, "failed to init plane %d\n",
				      ret);
M
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1287 1288 1289 1290
			goto err_cleanup_planes;
		}

		plane = &vop_win->base;
1291
		drm_plane_helper_add(plane, &plane_helper_funcs);
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1292 1293 1294 1295 1296 1297 1298
		if (plane->type == DRM_PLANE_TYPE_PRIMARY)
			primary = plane;
		else if (plane->type == DRM_PLANE_TYPE_CURSOR)
			cursor = plane;
	}

	ret = drm_crtc_init_with_planes(drm_dev, crtc, primary, cursor,
1299
					&vop_crtc_funcs, NULL);
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1300
	if (ret)
1301
		goto err_cleanup_planes;
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1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321

	drm_crtc_helper_add(crtc, &vop_crtc_helper_funcs);

	/*
	 * Create drm_planes for overlay windows with possible_crtcs restricted
	 * to the newly created crtc.
	 */
	for (i = 0; i < vop_data->win_size; i++) {
		struct vop_win *vop_win = &vop->win[i];
		const struct vop_win_data *win_data = vop_win->data;
		unsigned long possible_crtcs = 1 << drm_crtc_index(crtc);

		if (win_data->type != DRM_PLANE_TYPE_OVERLAY)
			continue;

		ret = drm_universal_plane_init(vop->drm_dev, &vop_win->base,
					       possible_crtcs,
					       &vop_plane_funcs,
					       win_data->phy->data_formats,
					       win_data->phy->nformats,
1322
					       win_data->type, NULL);
M
Mark Yao 已提交
1323
		if (ret) {
1324 1325
			DRM_DEV_ERROR(vop->dev, "failed to init overlay %d\n",
				      ret);
M
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1326 1327
			goto err_cleanup_crtc;
		}
1328
		drm_plane_helper_add(&vop_win->base, &plane_helper_funcs);
M
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1329 1330 1331 1332
	}

	port = of_get_child_by_name(dev->of_node, "port");
	if (!port) {
1333 1334
		DRM_DEV_ERROR(vop->dev, "no port node found in %s\n",
			      dev->of_node->full_name);
1335
		ret = -ENOENT;
M
Mark Yao 已提交
1336 1337 1338
		goto err_cleanup_crtc;
	}

1339 1340 1341
	drm_flip_work_init(&vop->fb_unref_work, "fb_unref",
			   vop_fb_unref_worker);

1342
	init_completion(&vop->dsp_hold_completion);
1343
	init_completion(&vop->line_flag_completion);
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1344 1345 1346 1347 1348 1349 1350
	crtc->port = port;

	return 0;

err_cleanup_crtc:
	drm_crtc_cleanup(crtc);
err_cleanup_planes:
1351 1352
	list_for_each_entry_safe(plane, tmp, &drm_dev->mode_config.plane_list,
				 head)
M
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1353 1354 1355 1356 1357 1358 1359
		drm_plane_cleanup(plane);
	return ret;
}

static void vop_destroy_crtc(struct vop *vop)
{
	struct drm_crtc *crtc = &vop->crtc;
1360 1361
	struct drm_device *drm_dev = vop->drm_dev;
	struct drm_plane *plane, *tmp;
M
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1362 1363

	of_node_put(crtc->port);
1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380

	/*
	 * We need to cleanup the planes now.  Why?
	 *
	 * The planes are "&vop->win[i].base".  That means the memory is
	 * all part of the big "struct vop" chunk of memory.  That memory
	 * was devm allocated and associated with this component.  We need to
	 * free it ourselves before vop_unbind() finishes.
	 */
	list_for_each_entry_safe(plane, tmp, &drm_dev->mode_config.plane_list,
				 head)
		vop_plane_destroy(plane);

	/*
	 * Destroy CRTC after vop_plane_destroy() since vop_disable_plane()
	 * references the CRTC.
	 */
M
Mark Yao 已提交
1381
	drm_crtc_cleanup(crtc);
1382
	drm_flip_work_cleanup(&vop->fb_unref_work);
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1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410
}

static int vop_initial(struct vop *vop)
{
	const struct vop_data *vop_data = vop->data;
	const struct vop_reg_data *init_table = vop_data->init_table;
	struct reset_control *ahb_rst;
	int i, ret;

	vop->hclk = devm_clk_get(vop->dev, "hclk_vop");
	if (IS_ERR(vop->hclk)) {
		dev_err(vop->dev, "failed to get hclk source\n");
		return PTR_ERR(vop->hclk);
	}
	vop->aclk = devm_clk_get(vop->dev, "aclk_vop");
	if (IS_ERR(vop->aclk)) {
		dev_err(vop->dev, "failed to get aclk source\n");
		return PTR_ERR(vop->aclk);
	}
	vop->dclk = devm_clk_get(vop->dev, "dclk_vop");
	if (IS_ERR(vop->dclk)) {
		dev_err(vop->dev, "failed to get dclk source\n");
		return PTR_ERR(vop->dclk);
	}

	ret = clk_prepare(vop->dclk);
	if (ret < 0) {
		dev_err(vop->dev, "failed to prepare dclk\n");
1411
		return ret;
M
Mark Yao 已提交
1412 1413
	}

1414 1415
	/* Enable both the hclk and aclk to setup the vop */
	ret = clk_prepare_enable(vop->hclk);
M
Mark Yao 已提交
1416
	if (ret < 0) {
1417
		dev_err(vop->dev, "failed to prepare/enable hclk\n");
M
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1418 1419 1420
		goto err_unprepare_dclk;
	}

1421
	ret = clk_prepare_enable(vop->aclk);
M
Mark Yao 已提交
1422
	if (ret < 0) {
1423 1424
		dev_err(vop->dev, "failed to prepare/enable aclk\n");
		goto err_disable_hclk;
M
Mark Yao 已提交
1425
	}
1426

M
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1427 1428 1429 1430 1431 1432 1433
	/*
	 * do hclk_reset, reset all vop registers.
	 */
	ahb_rst = devm_reset_control_get(vop->dev, "ahb");
	if (IS_ERR(ahb_rst)) {
		dev_err(vop->dev, "failed to get ahb reset\n");
		ret = PTR_ERR(ahb_rst);
1434
		goto err_disable_aclk;
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1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459
	}
	reset_control_assert(ahb_rst);
	usleep_range(10, 20);
	reset_control_deassert(ahb_rst);

	memcpy(vop->regsbak, vop->regs, vop->len);

	for (i = 0; i < vop_data->table_size; i++)
		vop_writel(vop, init_table[i].offset, init_table[i].value);

	for (i = 0; i < vop_data->win_size; i++) {
		const struct vop_win_data *win = &vop_data->win[i];

		VOP_WIN_SET(vop, win, enable, 0);
	}

	vop_cfg_done(vop);

	/*
	 * do dclk_reset, let all config take affect.
	 */
	vop->dclk_rst = devm_reset_control_get(vop->dev, "dclk");
	if (IS_ERR(vop->dclk_rst)) {
		dev_err(vop->dev, "failed to get dclk reset\n");
		ret = PTR_ERR(vop->dclk_rst);
1460
		goto err_disable_aclk;
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1461 1462 1463 1464 1465 1466
	}
	reset_control_assert(vop->dclk_rst);
	usleep_range(10, 20);
	reset_control_deassert(vop->dclk_rst);

	clk_disable(vop->hclk);
1467
	clk_disable(vop->aclk);
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1468

1469
	vop->is_enabled = false;
M
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1470 1471 1472

	return 0;

1473 1474
err_disable_aclk:
	clk_disable_unprepare(vop->aclk);
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1475
err_disable_hclk:
1476
	clk_disable_unprepare(vop->hclk);
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1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498
err_unprepare_dclk:
	clk_unprepare(vop->dclk);
	return ret;
}

/*
 * Initialize the vop->win array elements.
 */
static void vop_win_init(struct vop *vop)
{
	const struct vop_data *vop_data = vop->data;
	unsigned int i;

	for (i = 0; i < vop_data->win_size; i++) {
		struct vop_win *vop_win = &vop->win[i];
		const struct vop_win_data *win_data = &vop_data->win[i];

		vop_win->data = win_data;
		vop_win->vop = vop;
	}
}

1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541
/**
 * rockchip_drm_wait_line_flag - acqiure the give line flag event
 * @crtc: CRTC to enable line flag
 * @line_num: interested line number
 * @mstimeout: millisecond for timeout
 *
 * Driver would hold here until the interested line flag interrupt have
 * happened or timeout to wait.
 *
 * Returns:
 * Zero on success, negative errno on failure.
 */
int rockchip_drm_wait_line_flag(struct drm_crtc *crtc, unsigned int line_num,
				unsigned int mstimeout)
{
	struct vop *vop = to_vop(crtc);
	unsigned long jiffies_left;

	if (!crtc || !vop->is_enabled)
		return -ENODEV;

	if (line_num > crtc->mode.vtotal || mstimeout <= 0)
		return -EINVAL;

	if (vop_line_flag_irq_is_enabled(vop))
		return -EBUSY;

	reinit_completion(&vop->line_flag_completion);
	vop_line_flag_irq_enable(vop, line_num);

	jiffies_left = wait_for_completion_timeout(&vop->line_flag_completion,
						   msecs_to_jiffies(mstimeout));
	vop_line_flag_irq_disable(vop);

	if (jiffies_left == 0) {
		dev_err(vop->dev, "Timeout waiting for IRQ\n");
		return -ETIMEDOUT;
	}

	return 0;
}
EXPORT_SYMBOL(rockchip_drm_wait_line_flag);

M
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1542 1543 1544 1545 1546 1547 1548 1549
static int vop_bind(struct device *dev, struct device *master, void *data)
{
	struct platform_device *pdev = to_platform_device(dev);
	const struct vop_data *vop_data;
	struct drm_device *drm_dev = data;
	struct vop *vop;
	struct resource *res;
	size_t alloc_size;
1550
	int ret, irq;
M
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1551

1552
	vop_data = of_device_get_match_data(dev);
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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
	if (!vop_data)
		return -ENODEV;

	/* Allocate vop struct and its vop_win array */
	alloc_size = sizeof(*vop) + sizeof(*vop->win) * vop_data->win_size;
	vop = devm_kzalloc(dev, alloc_size, GFP_KERNEL);
	if (!vop)
		return -ENOMEM;

	vop->dev = dev;
	vop->data = vop_data;
	vop->drm_dev = drm_dev;
	dev_set_drvdata(dev, vop);

	vop_win_init(vop);

	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
	vop->len = resource_size(res);
	vop->regs = devm_ioremap_resource(dev, res);
	if (IS_ERR(vop->regs))
		return PTR_ERR(vop->regs);

	vop->regsbak = devm_kzalloc(dev, vop->len, GFP_KERNEL);
	if (!vop->regsbak)
		return -ENOMEM;

	ret = vop_initial(vop);
	if (ret < 0) {
		dev_err(&pdev->dev, "cannot initial vop dev - err %d\n", ret);
		return ret;
	}

1585 1586
	irq = platform_get_irq(pdev, 0);
	if (irq < 0) {
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		dev_err(dev, "cannot find irq for vop\n");
1588
		return irq;
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	}
1590
	vop->irq = (unsigned int)irq;
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	spin_lock_init(&vop->reg_lock);
	spin_lock_init(&vop->irq_lock);

	mutex_init(&vop->vsync_mutex);

1597 1598
	ret = devm_request_irq(dev, vop->irq, vop_isr,
			       IRQF_SHARED, dev_name(dev), vop);
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	if (ret)
		return ret;

	/* IRQ is initially disabled; it gets enabled in power_on */
	disable_irq(vop->irq);

	ret = vop_create_crtc(vop);
	if (ret)
1607
		goto err_enable_irq;
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	pm_runtime_enable(&pdev->dev);
1610

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	return 0;
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err_enable_irq:
	enable_irq(vop->irq); /* To balance out the disable_irq above */
	return ret;
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}

static void vop_unbind(struct device *dev, struct device *master, void *data)
{
	struct vop *vop = dev_get_drvdata(dev);

	pm_runtime_disable(dev);
	vop_destroy_crtc(vop);
}

1626
const struct component_ops vop_component_ops = {
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	.bind = vop_bind,
	.unbind = vop_unbind,
};
1630
EXPORT_SYMBOL_GPL(vop_component_ops);