mirror of
https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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b6e075c3cb
This beats the heuristic that the connector is involved in what format should be output for cases where this fails. E.g. if there is a bridge that changes format between the encoder and the connector, or if some of the RGB pins between the lcd controller and the encoder are not routed on the PCB. This is critical for the devices that have the "conflicting output formats" issue (SAM9N12, SAM9X5, SAMA5D3), since the most significant RGB bits move around depending on the selected output mode. For devices that do not have the "conflicting output formats" issue (SAMA5D2, SAMA5D4), this is completely irrelevant. Acked-by: Boris Brezillon <boris.brezillon@bootlin.com> Reviewed-by: Jacopo Mondi <jacopo+renesas@jmondi.org> Signed-off-by: Peter Rosin <peda@axentia.se> Signed-off-by: Boris Brezillon <boris.brezillon@bootlin.com> Link: https://patchwork.freedesktop.org/patch/msgid/20180825085620.10566-5-peda@axentia.se
447 lines
14 KiB
C
447 lines
14 KiB
C
/*
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* Copyright (C) 2014 Traphandler
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* Copyright (C) 2014 Free Electrons
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* Copyright (C) 2014 Atmel
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*
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* Author: Jean-Jacques Hiblot <jjhiblot@traphandler.com>
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* Author: Boris BREZILLON <boris.brezillon@free-electrons.com>
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 as published by
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* the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License along with
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* this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef DRM_ATMEL_HLCDC_H
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#define DRM_ATMEL_HLCDC_H
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#include <linux/clk.h>
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#include <linux/dmapool.h>
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#include <linux/irqdomain.h>
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#include <linux/mfd/atmel-hlcdc.h>
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#include <linux/pwm.h>
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#include <drm/drm_atomic.h>
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#include <drm/drm_atomic_helper.h>
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#include <drm/drm_crtc.h>
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#include <drm/drm_crtc_helper.h>
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#include <drm/drm_fb_helper.h>
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#include <drm/drm_fb_cma_helper.h>
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#include <drm/drm_gem_cma_helper.h>
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#include <drm/drm_gem_framebuffer_helper.h>
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#include <drm/drm_panel.h>
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#include <drm/drm_plane_helper.h>
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#include <drm/drmP.h>
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#define ATMEL_HLCDC_LAYER_CHER 0x0
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#define ATMEL_HLCDC_LAYER_CHDR 0x4
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#define ATMEL_HLCDC_LAYER_CHSR 0x8
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#define ATMEL_HLCDC_LAYER_EN BIT(0)
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#define ATMEL_HLCDC_LAYER_UPDATE BIT(1)
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#define ATMEL_HLCDC_LAYER_A2Q BIT(2)
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#define ATMEL_HLCDC_LAYER_RST BIT(8)
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#define ATMEL_HLCDC_LAYER_IER 0xc
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#define ATMEL_HLCDC_LAYER_IDR 0x10
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#define ATMEL_HLCDC_LAYER_IMR 0x14
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#define ATMEL_HLCDC_LAYER_ISR 0x18
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#define ATMEL_HLCDC_LAYER_DFETCH BIT(0)
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#define ATMEL_HLCDC_LAYER_LFETCH BIT(1)
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#define ATMEL_HLCDC_LAYER_DMA_IRQ(p) BIT(2 + (8 * (p)))
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#define ATMEL_HLCDC_LAYER_DSCR_IRQ(p) BIT(3 + (8 * (p)))
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#define ATMEL_HLCDC_LAYER_ADD_IRQ(p) BIT(4 + (8 * (p)))
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#define ATMEL_HLCDC_LAYER_DONE_IRQ(p) BIT(5 + (8 * (p)))
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#define ATMEL_HLCDC_LAYER_OVR_IRQ(p) BIT(6 + (8 * (p)))
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#define ATMEL_HLCDC_LAYER_PLANE_HEAD(p) (((p) * 0x10) + 0x1c)
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#define ATMEL_HLCDC_LAYER_PLANE_ADDR(p) (((p) * 0x10) + 0x20)
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#define ATMEL_HLCDC_LAYER_PLANE_CTRL(p) (((p) * 0x10) + 0x24)
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#define ATMEL_HLCDC_LAYER_PLANE_NEXT(p) (((p) * 0x10) + 0x28)
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#define ATMEL_HLCDC_LAYER_DMA_CFG 0
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#define ATMEL_HLCDC_LAYER_DMA_SIF BIT(0)
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#define ATMEL_HLCDC_LAYER_DMA_BLEN_MASK GENMASK(5, 4)
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#define ATMEL_HLCDC_LAYER_DMA_BLEN_SINGLE (0 << 4)
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#define ATMEL_HLCDC_LAYER_DMA_BLEN_INCR4 (1 << 4)
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#define ATMEL_HLCDC_LAYER_DMA_BLEN_INCR8 (2 << 4)
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#define ATMEL_HLCDC_LAYER_DMA_BLEN_INCR16 (3 << 4)
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#define ATMEL_HLCDC_LAYER_DMA_DLBO BIT(8)
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#define ATMEL_HLCDC_LAYER_DMA_ROTDIS BIT(12)
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#define ATMEL_HLCDC_LAYER_DMA_LOCKDIS BIT(13)
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#define ATMEL_HLCDC_LAYER_FORMAT_CFG 1
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#define ATMEL_HLCDC_LAYER_RGB (0 << 0)
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#define ATMEL_HLCDC_LAYER_CLUT (1 << 0)
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#define ATMEL_HLCDC_LAYER_YUV (2 << 0)
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#define ATMEL_HLCDC_RGB_MODE(m) \
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(ATMEL_HLCDC_LAYER_RGB | (((m) & 0xf) << 4))
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#define ATMEL_HLCDC_CLUT_MODE(m) \
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(ATMEL_HLCDC_LAYER_CLUT | (((m) & 0x3) << 8))
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#define ATMEL_HLCDC_YUV_MODE(m) \
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(ATMEL_HLCDC_LAYER_YUV | (((m) & 0xf) << 12))
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#define ATMEL_HLCDC_YUV422ROT BIT(16)
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#define ATMEL_HLCDC_YUV422SWP BIT(17)
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#define ATMEL_HLCDC_DSCALEOPT BIT(20)
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#define ATMEL_HLCDC_C1_MODE ATMEL_HLCDC_CLUT_MODE(0)
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#define ATMEL_HLCDC_C2_MODE ATMEL_HLCDC_CLUT_MODE(1)
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#define ATMEL_HLCDC_C4_MODE ATMEL_HLCDC_CLUT_MODE(2)
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#define ATMEL_HLCDC_C8_MODE ATMEL_HLCDC_CLUT_MODE(3)
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#define ATMEL_HLCDC_XRGB4444_MODE ATMEL_HLCDC_RGB_MODE(0)
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#define ATMEL_HLCDC_ARGB4444_MODE ATMEL_HLCDC_RGB_MODE(1)
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#define ATMEL_HLCDC_RGBA4444_MODE ATMEL_HLCDC_RGB_MODE(2)
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#define ATMEL_HLCDC_RGB565_MODE ATMEL_HLCDC_RGB_MODE(3)
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#define ATMEL_HLCDC_ARGB1555_MODE ATMEL_HLCDC_RGB_MODE(4)
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#define ATMEL_HLCDC_XRGB8888_MODE ATMEL_HLCDC_RGB_MODE(9)
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#define ATMEL_HLCDC_RGB888_MODE ATMEL_HLCDC_RGB_MODE(10)
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#define ATMEL_HLCDC_ARGB8888_MODE ATMEL_HLCDC_RGB_MODE(12)
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#define ATMEL_HLCDC_RGBA8888_MODE ATMEL_HLCDC_RGB_MODE(13)
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#define ATMEL_HLCDC_AYUV_MODE ATMEL_HLCDC_YUV_MODE(0)
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#define ATMEL_HLCDC_YUYV_MODE ATMEL_HLCDC_YUV_MODE(1)
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#define ATMEL_HLCDC_UYVY_MODE ATMEL_HLCDC_YUV_MODE(2)
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#define ATMEL_HLCDC_YVYU_MODE ATMEL_HLCDC_YUV_MODE(3)
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#define ATMEL_HLCDC_VYUY_MODE ATMEL_HLCDC_YUV_MODE(4)
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#define ATMEL_HLCDC_NV61_MODE ATMEL_HLCDC_YUV_MODE(5)
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#define ATMEL_HLCDC_YUV422_MODE ATMEL_HLCDC_YUV_MODE(6)
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#define ATMEL_HLCDC_NV21_MODE ATMEL_HLCDC_YUV_MODE(7)
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#define ATMEL_HLCDC_YUV420_MODE ATMEL_HLCDC_YUV_MODE(8)
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#define ATMEL_HLCDC_LAYER_POS(x, y) ((x) | ((y) << 16))
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#define ATMEL_HLCDC_LAYER_SIZE(w, h) (((w) - 1) | (((h) - 1) << 16))
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#define ATMEL_HLCDC_LAYER_CRKEY BIT(0)
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#define ATMEL_HLCDC_LAYER_INV BIT(1)
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#define ATMEL_HLCDC_LAYER_ITER2BL BIT(2)
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#define ATMEL_HLCDC_LAYER_ITER BIT(3)
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#define ATMEL_HLCDC_LAYER_REVALPHA BIT(4)
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#define ATMEL_HLCDC_LAYER_GAEN BIT(5)
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#define ATMEL_HLCDC_LAYER_LAEN BIT(6)
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#define ATMEL_HLCDC_LAYER_OVR BIT(7)
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#define ATMEL_HLCDC_LAYER_DMA BIT(8)
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#define ATMEL_HLCDC_LAYER_REP BIT(9)
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#define ATMEL_HLCDC_LAYER_DSTKEY BIT(10)
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#define ATMEL_HLCDC_LAYER_DISCEN BIT(11)
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#define ATMEL_HLCDC_LAYER_GA_SHIFT 16
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#define ATMEL_HLCDC_LAYER_GA_MASK \
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GENMASK(23, ATMEL_HLCDC_LAYER_GA_SHIFT)
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#define ATMEL_HLCDC_LAYER_GA(x) \
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((x) << ATMEL_HLCDC_LAYER_GA_SHIFT)
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#define ATMEL_HLCDC_LAYER_DISC_POS(x, y) ((x) | ((y) << 16))
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#define ATMEL_HLCDC_LAYER_DISC_SIZE(w, h) (((w) - 1) | (((h) - 1) << 16))
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#define ATMEL_HLCDC_LAYER_SCALER_FACTORS(x, y) ((x) | ((y) << 16))
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#define ATMEL_HLCDC_LAYER_SCALER_ENABLE BIT(31)
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#define ATMEL_HLCDC_LAYER_MAX_PLANES 3
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#define ATMEL_HLCDC_DMA_CHANNEL_DSCR_RESERVED BIT(0)
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#define ATMEL_HLCDC_DMA_CHANNEL_DSCR_LOADED BIT(1)
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#define ATMEL_HLCDC_DMA_CHANNEL_DSCR_DONE BIT(2)
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#define ATMEL_HLCDC_DMA_CHANNEL_DSCR_OVERRUN BIT(3)
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#define ATMEL_HLCDC_CLUT_SIZE 256
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#define ATMEL_HLCDC_MAX_LAYERS 6
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/**
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* Atmel HLCDC Layer registers layout structure
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*
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* Each HLCDC layer has its own register organization and a given register
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* can be placed differently on 2 different layers depending on its
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* capabilities.
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* This structure stores common registers layout for a given layer and is
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* used by HLCDC layer code to choose the appropriate register to write to
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* or to read from.
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*
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* For all fields, a value of zero means "unsupported".
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*
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* See Atmel's datasheet for a detailled description of these registers.
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*
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* @xstride: xstride registers
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* @pstride: pstride registers
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* @pos: position register
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* @size: displayed size register
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* @memsize: memory size register
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* @default_color: default color register
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* @chroma_key: chroma key register
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* @chroma_key_mask: chroma key mask register
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* @general_config: general layer config register
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* @sacler_config: scaler factors register
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* @phicoeffs: X/Y PHI coefficient registers
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* @disc_pos: discard area position register
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* @disc_size: discard area size register
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* @csc: color space conversion register
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*/
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struct atmel_hlcdc_layer_cfg_layout {
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int xstride[ATMEL_HLCDC_LAYER_MAX_PLANES];
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int pstride[ATMEL_HLCDC_LAYER_MAX_PLANES];
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int pos;
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int size;
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int memsize;
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int default_color;
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int chroma_key;
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int chroma_key_mask;
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int general_config;
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int scaler_config;
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struct {
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int x;
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int y;
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} phicoeffs;
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int disc_pos;
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int disc_size;
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int csc;
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};
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/**
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* Atmel HLCDC DMA descriptor structure
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*
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* This structure is used by the HLCDC DMA engine to schedule a DMA transfer.
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*
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* The structure fields must remain in this specific order, because they're
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* used by the HLCDC DMA engine, which expect them in this order.
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* HLCDC DMA descriptors must be aligned on 64 bits.
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*
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* @addr: buffer DMA address
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* @ctrl: DMA transfer options
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* @next: next DMA descriptor to fetch
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* @self: descriptor DMA address
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*/
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struct atmel_hlcdc_dma_channel_dscr {
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dma_addr_t addr;
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u32 ctrl;
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dma_addr_t next;
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dma_addr_t self;
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} __aligned(sizeof(u64));
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/**
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* Atmel HLCDC layer types
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*/
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enum atmel_hlcdc_layer_type {
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ATMEL_HLCDC_NO_LAYER,
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ATMEL_HLCDC_BASE_LAYER,
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ATMEL_HLCDC_OVERLAY_LAYER,
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ATMEL_HLCDC_CURSOR_LAYER,
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ATMEL_HLCDC_PP_LAYER,
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};
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/**
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* Atmel HLCDC Supported formats structure
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*
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* This structure list all the formats supported by a given layer.
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*
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* @nformats: number of supported formats
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* @formats: supported formats
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*/
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struct atmel_hlcdc_formats {
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int nformats;
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u32 *formats;
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};
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/**
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* Atmel HLCDC Layer description structure
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*
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* This structure describes the capabilities provided by a given layer.
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*
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* @name: layer name
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* @type: layer type
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* @id: layer id
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* @regs_offset: offset of the layer registers from the HLCDC registers base
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* @cfgs_offset: CFGX registers offset from the layer registers base
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* @formats: supported formats
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* @layout: config registers layout
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* @max_width: maximum width supported by this layer (0 means unlimited)
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* @max_height: maximum height supported by this layer (0 means unlimited)
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*/
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struct atmel_hlcdc_layer_desc {
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const char *name;
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enum atmel_hlcdc_layer_type type;
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int id;
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int regs_offset;
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int cfgs_offset;
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int clut_offset;
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struct atmel_hlcdc_formats *formats;
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struct atmel_hlcdc_layer_cfg_layout layout;
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int max_width;
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int max_height;
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};
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/**
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* Atmel HLCDC Layer.
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*
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* A layer can be a DRM plane of a post processing layer used to render
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* HLCDC composition into memory.
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*
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* @desc: layer description
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* @regmap: pointer to the HLCDC regmap
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*/
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struct atmel_hlcdc_layer {
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const struct atmel_hlcdc_layer_desc *desc;
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struct regmap *regmap;
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};
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/**
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* Atmel HLCDC Plane.
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*
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* @base: base DRM plane structure
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* @layer: HLCDC layer structure
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* @properties: pointer to the property definitions structure
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*/
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struct atmel_hlcdc_plane {
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struct drm_plane base;
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struct atmel_hlcdc_layer layer;
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};
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static inline struct atmel_hlcdc_plane *
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drm_plane_to_atmel_hlcdc_plane(struct drm_plane *p)
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{
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return container_of(p, struct atmel_hlcdc_plane, base);
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}
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static inline struct atmel_hlcdc_plane *
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atmel_hlcdc_layer_to_plane(struct atmel_hlcdc_layer *layer)
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{
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return container_of(layer, struct atmel_hlcdc_plane, layer);
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}
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/**
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* Atmel HLCDC Display Controller description structure.
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*
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* This structure describes the HLCDC IP capabilities and depends on the
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* HLCDC IP version (or Atmel SoC family).
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*
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* @min_width: minimum width supported by the Display Controller
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* @min_height: minimum height supported by the Display Controller
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* @max_width: maximum width supported by the Display Controller
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* @max_height: maximum height supported by the Display Controller
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* @max_spw: maximum vertical/horizontal pulse width
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* @max_vpw: maximum vertical back/front porch width
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* @max_hpw: maximum horizontal back/front porch width
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* @conflicting_output_formats: true if RGBXXX output formats conflict with
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* each other.
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* @layers: a layer description table describing available layers
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* @nlayers: layer description table size
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*/
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struct atmel_hlcdc_dc_desc {
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int min_width;
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int min_height;
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int max_width;
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int max_height;
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int max_spw;
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int max_vpw;
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int max_hpw;
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bool conflicting_output_formats;
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const struct atmel_hlcdc_layer_desc *layers;
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int nlayers;
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};
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/**
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* Atmel HLCDC Display Controller.
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*
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* @desc: HLCDC Display Controller description
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* @dscrpool: DMA coherent pool used to allocate DMA descriptors
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* @hlcdc: pointer to the atmel_hlcdc structure provided by the MFD device
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* @fbdev: framebuffer device attached to the Display Controller
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* @crtc: CRTC provided by the display controller
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* @planes: instantiated planes
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* @layers: active HLCDC layers
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* @wq: display controller workqueue
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* @suspend: used to store the HLCDC state when entering suspend
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* @commit: used for async commit handling
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*/
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struct atmel_hlcdc_dc {
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const struct atmel_hlcdc_dc_desc *desc;
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struct dma_pool *dscrpool;
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struct atmel_hlcdc *hlcdc;
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struct drm_crtc *crtc;
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struct atmel_hlcdc_layer *layers[ATMEL_HLCDC_MAX_LAYERS];
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struct workqueue_struct *wq;
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struct {
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u32 imr;
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struct drm_atomic_state *state;
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} suspend;
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struct {
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wait_queue_head_t wait;
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bool pending;
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} commit;
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};
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extern struct atmel_hlcdc_formats atmel_hlcdc_plane_rgb_formats;
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extern struct atmel_hlcdc_formats atmel_hlcdc_plane_rgb_and_yuv_formats;
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static inline void atmel_hlcdc_layer_write_reg(struct atmel_hlcdc_layer *layer,
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unsigned int reg, u32 val)
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{
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regmap_write(layer->regmap, layer->desc->regs_offset + reg, val);
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}
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static inline u32 atmel_hlcdc_layer_read_reg(struct atmel_hlcdc_layer *layer,
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unsigned int reg)
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{
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u32 val;
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regmap_read(layer->regmap, layer->desc->regs_offset + reg, &val);
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return val;
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}
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static inline void atmel_hlcdc_layer_write_cfg(struct atmel_hlcdc_layer *layer,
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unsigned int cfgid, u32 val)
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{
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atmel_hlcdc_layer_write_reg(layer,
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layer->desc->cfgs_offset +
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(cfgid * sizeof(u32)), val);
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}
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static inline u32 atmel_hlcdc_layer_read_cfg(struct atmel_hlcdc_layer *layer,
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unsigned int cfgid)
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{
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return atmel_hlcdc_layer_read_reg(layer,
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layer->desc->cfgs_offset +
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(cfgid * sizeof(u32)));
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}
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static inline void atmel_hlcdc_layer_write_clut(struct atmel_hlcdc_layer *layer,
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unsigned int c, u32 val)
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{
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regmap_write(layer->regmap,
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layer->desc->clut_offset + c * sizeof(u32),
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val);
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}
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static inline void atmel_hlcdc_layer_init(struct atmel_hlcdc_layer *layer,
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const struct atmel_hlcdc_layer_desc *desc,
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struct regmap *regmap)
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{
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layer->desc = desc;
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layer->regmap = regmap;
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}
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enum drm_mode_status
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atmel_hlcdc_dc_mode_valid(struct atmel_hlcdc_dc *dc,
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const struct drm_display_mode *mode);
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int atmel_hlcdc_create_planes(struct drm_device *dev);
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void atmel_hlcdc_plane_irq(struct atmel_hlcdc_plane *plane);
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int atmel_hlcdc_plane_prepare_disc_area(struct drm_crtc_state *c_state);
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int atmel_hlcdc_plane_prepare_ahb_routing(struct drm_crtc_state *c_state);
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void atmel_hlcdc_crtc_irq(struct drm_crtc *c);
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int atmel_hlcdc_crtc_create(struct drm_device *dev);
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int atmel_hlcdc_create_outputs(struct drm_device *dev);
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int atmel_hlcdc_encoder_get_bus_fmt(struct drm_encoder *encoder);
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#endif /* DRM_ATMEL_HLCDC_H */
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