forked from Minki/linux
8c47c0860b
drivers/gpu/drm/tinydrm/core/tinydrm-helpers.c:454:2-3: Unneeded semicolon Remove unneeded semicolon. Generated by: scripts/coccinelle/misc/semicolon.cocci Signed-off-by: Fengguang Wu <fengguang.wu@intel.com> Signed-off-by: Daniel Vetter <daniel.vetter@ffwll.ch> Link: http://patchwork.freedesktop.org/patch/msgid/20170223164647.GA2519@lkp-ws02
461 lines
11 KiB
C
461 lines
11 KiB
C
/*
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* Copyright (C) 2016 Noralf Trønnes
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*/
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#include <drm/tinydrm/tinydrm.h>
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#include <drm/tinydrm/tinydrm-helpers.h>
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#include <linux/backlight.h>
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#include <linux/pm.h>
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#include <linux/spi/spi.h>
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#include <linux/swab.h>
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static unsigned int spi_max;
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module_param(spi_max, uint, 0400);
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MODULE_PARM_DESC(spi_max, "Set a lower SPI max transfer size");
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/**
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* tinydrm_merge_clips - Merge clip rectangles
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* @dst: Destination clip rectangle
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* @src: Source clip rectangle(s)
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* @num_clips: Number of @src clip rectangles
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* @flags: Dirty fb ioctl flags
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* @max_width: Maximum width of @dst
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* @max_height: Maximum height of @dst
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*
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* This function merges @src clip rectangle(s) into @dst. If @src is NULL,
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* @max_width and @min_width is used to set a full @dst clip rectangle.
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*
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* Returns:
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* true if it's a full clip, false otherwise
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*/
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bool tinydrm_merge_clips(struct drm_clip_rect *dst,
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struct drm_clip_rect *src, unsigned int num_clips,
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unsigned int flags, u32 max_width, u32 max_height)
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{
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unsigned int i;
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if (!src || !num_clips) {
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dst->x1 = 0;
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dst->x2 = max_width;
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dst->y1 = 0;
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dst->y2 = max_height;
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return true;
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}
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dst->x1 = ~0;
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dst->y1 = ~0;
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dst->x2 = 0;
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dst->y2 = 0;
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for (i = 0; i < num_clips; i++) {
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if (flags & DRM_MODE_FB_DIRTY_ANNOTATE_COPY)
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i++;
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dst->x1 = min(dst->x1, src[i].x1);
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dst->x2 = max(dst->x2, src[i].x2);
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dst->y1 = min(dst->y1, src[i].y1);
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dst->y2 = max(dst->y2, src[i].y2);
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}
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if (dst->x2 > max_width || dst->y2 > max_height ||
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dst->x1 >= dst->x2 || dst->y1 >= dst->y2) {
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DRM_DEBUG_KMS("Illegal clip: x1=%u, x2=%u, y1=%u, y2=%u\n",
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dst->x1, dst->x2, dst->y1, dst->y2);
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dst->x1 = 0;
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dst->y1 = 0;
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dst->x2 = max_width;
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dst->y2 = max_height;
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}
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return (dst->x2 - dst->x1) == max_width &&
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(dst->y2 - dst->y1) == max_height;
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}
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EXPORT_SYMBOL(tinydrm_merge_clips);
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/**
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* tinydrm_memcpy - Copy clip buffer
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* @dst: Destination buffer
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* @vaddr: Source buffer
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* @fb: DRM framebuffer
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* @clip: Clip rectangle area to copy
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*/
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void tinydrm_memcpy(void *dst, void *vaddr, struct drm_framebuffer *fb,
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struct drm_clip_rect *clip)
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{
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unsigned int cpp = drm_format_plane_cpp(fb->format->format, 0);
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unsigned int pitch = fb->pitches[0];
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void *src = vaddr + (clip->y1 * pitch) + (clip->x1 * cpp);
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size_t len = (clip->x2 - clip->x1) * cpp;
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unsigned int y;
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for (y = clip->y1; y < clip->y2; y++) {
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memcpy(dst, src, len);
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src += pitch;
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dst += len;
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}
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}
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EXPORT_SYMBOL(tinydrm_memcpy);
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/**
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* tinydrm_swab16 - Swap bytes into clip buffer
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* @dst: RGB565 destination buffer
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* @vaddr: RGB565 source buffer
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* @fb: DRM framebuffer
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* @clip: Clip rectangle area to copy
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*/
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void tinydrm_swab16(u16 *dst, void *vaddr, struct drm_framebuffer *fb,
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struct drm_clip_rect *clip)
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{
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size_t len = (clip->x2 - clip->x1) * sizeof(u16);
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unsigned int x, y;
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u16 *src, *buf;
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/*
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* The cma memory is write-combined so reads are uncached.
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* Speed up by fetching one line at a time.
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*/
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buf = kmalloc(len, GFP_KERNEL);
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if (!buf)
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return;
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for (y = clip->y1; y < clip->y2; y++) {
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src = vaddr + (y * fb->pitches[0]);
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src += clip->x1;
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memcpy(buf, src, len);
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src = buf;
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for (x = clip->x1; x < clip->x2; x++)
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*dst++ = swab16(*src++);
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}
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kfree(buf);
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}
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EXPORT_SYMBOL(tinydrm_swab16);
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/**
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* tinydrm_xrgb8888_to_rgb565 - Convert XRGB8888 to RGB565 clip buffer
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* @dst: RGB565 destination buffer
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* @vaddr: XRGB8888 source buffer
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* @fb: DRM framebuffer
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* @clip: Clip rectangle area to copy
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* @swap: Swap bytes
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*
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* Drivers can use this function for RGB565 devices that don't natively
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* support XRGB8888.
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*/
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void tinydrm_xrgb8888_to_rgb565(u16 *dst, void *vaddr,
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struct drm_framebuffer *fb,
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struct drm_clip_rect *clip, bool swap)
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{
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size_t len = (clip->x2 - clip->x1) * sizeof(u32);
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unsigned int x, y;
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u32 *src, *buf;
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u16 val16;
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buf = kmalloc(len, GFP_KERNEL);
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if (!buf)
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return;
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for (y = clip->y1; y < clip->y2; y++) {
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src = vaddr + (y * fb->pitches[0]);
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src += clip->x1;
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memcpy(buf, src, len);
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src = buf;
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for (x = clip->x1; x < clip->x2; x++) {
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val16 = ((*src & 0x00F80000) >> 8) |
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((*src & 0x0000FC00) >> 5) |
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((*src & 0x000000F8) >> 3);
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src++;
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if (swap)
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*dst++ = swab16(val16);
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else
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*dst++ = val16;
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}
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}
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kfree(buf);
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}
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EXPORT_SYMBOL(tinydrm_xrgb8888_to_rgb565);
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/**
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* tinydrm_of_find_backlight - Find backlight device in device-tree
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* @dev: Device
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*
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* This function looks for a DT node pointed to by a property named 'backlight'
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* and uses of_find_backlight_by_node() to get the backlight device.
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* Additionally if the brightness property is zero, it is set to
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* max_brightness.
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*
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* Returns:
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* NULL if there's no backlight property.
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* Error pointer -EPROBE_DEFER if the DT node is found, but no backlight device
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* is found.
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* If the backlight device is found, a pointer to the structure is returned.
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*/
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struct backlight_device *tinydrm_of_find_backlight(struct device *dev)
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{
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struct backlight_device *backlight;
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struct device_node *np;
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np = of_parse_phandle(dev->of_node, "backlight", 0);
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if (!np)
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return NULL;
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backlight = of_find_backlight_by_node(np);
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of_node_put(np);
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if (!backlight)
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return ERR_PTR(-EPROBE_DEFER);
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if (!backlight->props.brightness) {
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backlight->props.brightness = backlight->props.max_brightness;
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DRM_DEBUG_KMS("Backlight brightness set to %d\n",
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backlight->props.brightness);
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}
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return backlight;
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}
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EXPORT_SYMBOL(tinydrm_of_find_backlight);
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/**
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* tinydrm_enable_backlight - Enable backlight helper
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* @backlight: Backlight device
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*
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* Returns:
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* Zero on success, negative error code on failure.
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*/
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int tinydrm_enable_backlight(struct backlight_device *backlight)
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{
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unsigned int old_state;
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int ret;
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if (!backlight)
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return 0;
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old_state = backlight->props.state;
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backlight->props.state &= ~BL_CORE_FBBLANK;
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DRM_DEBUG_KMS("Backlight state: 0x%x -> 0x%x\n", old_state,
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backlight->props.state);
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ret = backlight_update_status(backlight);
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if (ret)
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DRM_ERROR("Failed to enable backlight %d\n", ret);
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return ret;
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}
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EXPORT_SYMBOL(tinydrm_enable_backlight);
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/**
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* tinydrm_disable_backlight - Disable backlight helper
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* @backlight: Backlight device
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*
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* Returns:
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* Zero on success, negative error code on failure.
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*/
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int tinydrm_disable_backlight(struct backlight_device *backlight)
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{
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unsigned int old_state;
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int ret;
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if (!backlight)
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return 0;
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old_state = backlight->props.state;
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backlight->props.state |= BL_CORE_FBBLANK;
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DRM_DEBUG_KMS("Backlight state: 0x%x -> 0x%x\n", old_state,
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backlight->props.state);
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ret = backlight_update_status(backlight);
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if (ret)
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DRM_ERROR("Failed to disable backlight %d\n", ret);
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return ret;
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}
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EXPORT_SYMBOL(tinydrm_disable_backlight);
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#if IS_ENABLED(CONFIG_SPI)
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/**
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* tinydrm_spi_max_transfer_size - Determine max SPI transfer size
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* @spi: SPI device
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* @max_len: Maximum buffer size needed (optional)
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*
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* This function returns the maximum size to use for SPI transfers. It checks
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* the SPI master, the optional @max_len and the module parameter spi_max and
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* returns the smallest.
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*
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* Returns:
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* Maximum size for SPI transfers
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*/
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size_t tinydrm_spi_max_transfer_size(struct spi_device *spi, size_t max_len)
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{
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size_t ret;
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ret = min(spi_max_transfer_size(spi), spi->master->max_dma_len);
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if (max_len)
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ret = min(ret, max_len);
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if (spi_max)
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ret = min_t(size_t, ret, spi_max);
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ret &= ~0x3;
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if (ret < 4)
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ret = 4;
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return ret;
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}
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EXPORT_SYMBOL(tinydrm_spi_max_transfer_size);
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/**
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* tinydrm_spi_bpw_supported - Check if bits per word is supported
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* @spi: SPI device
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* @bpw: Bits per word
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*
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* This function checks to see if the SPI master driver supports @bpw.
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*
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* Returns:
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* True if @bpw is supported, false otherwise.
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*/
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bool tinydrm_spi_bpw_supported(struct spi_device *spi, u8 bpw)
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{
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u32 bpw_mask = spi->master->bits_per_word_mask;
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if (bpw == 8)
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return true;
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if (!bpw_mask) {
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dev_warn_once(&spi->dev,
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"bits_per_word_mask not set, assume 8-bit only\n");
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return false;
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}
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if (bpw_mask & SPI_BPW_MASK(bpw))
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return true;
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return false;
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}
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EXPORT_SYMBOL(tinydrm_spi_bpw_supported);
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static void
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tinydrm_dbg_spi_print(struct spi_device *spi, struct spi_transfer *tr,
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const void *buf, int idx, bool tx)
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{
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u32 speed_hz = tr->speed_hz ? tr->speed_hz : spi->max_speed_hz;
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char linebuf[3 * 32];
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hex_dump_to_buffer(buf, tr->len, 16,
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DIV_ROUND_UP(tr->bits_per_word, 8),
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linebuf, sizeof(linebuf), false);
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printk(KERN_DEBUG
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" tr(%i): speed=%u%s, bpw=%i, len=%u, %s_buf=[%s%s]\n", idx,
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speed_hz > 1000000 ? speed_hz / 1000000 : speed_hz / 1000,
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speed_hz > 1000000 ? "MHz" : "kHz", tr->bits_per_word, tr->len,
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tx ? "tx" : "rx", linebuf, tr->len > 16 ? " ..." : "");
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}
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/* called through tinydrm_dbg_spi_message() */
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void _tinydrm_dbg_spi_message(struct spi_device *spi, struct spi_message *m)
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{
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struct spi_transfer *tmp;
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struct list_head *pos;
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int i = 0;
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list_for_each(pos, &m->transfers) {
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tmp = list_entry(pos, struct spi_transfer, transfer_list);
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if (tmp->tx_buf)
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tinydrm_dbg_spi_print(spi, tmp, tmp->tx_buf, i, true);
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if (tmp->rx_buf)
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tinydrm_dbg_spi_print(spi, tmp, tmp->rx_buf, i, false);
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i++;
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}
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}
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EXPORT_SYMBOL(_tinydrm_dbg_spi_message);
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/**
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* tinydrm_spi_transfer - SPI transfer helper
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* @spi: SPI device
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* @speed_hz: Override speed (optional)
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* @header: Optional header transfer
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* @bpw: Bits per word
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* @buf: Buffer to transfer
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* @len: Buffer length
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*
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* This SPI transfer helper breaks up the transfer of @buf into chunks which
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* the SPI master driver can handle. If the machine is Little Endian and the
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* SPI master driver doesn't support 16 bits per word, it swaps the bytes and
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* does a 8-bit transfer.
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* If @header is set, it is prepended to each SPI message.
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*
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* Returns:
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* Zero on success, negative error code on failure.
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*/
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int tinydrm_spi_transfer(struct spi_device *spi, u32 speed_hz,
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struct spi_transfer *header, u8 bpw, const void *buf,
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size_t len)
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{
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struct spi_transfer tr = {
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.bits_per_word = bpw,
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.speed_hz = speed_hz,
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};
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struct spi_message m;
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u16 *swap_buf = NULL;
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size_t max_chunk;
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size_t chunk;
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int ret = 0;
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if (WARN_ON_ONCE(bpw != 8 && bpw != 16))
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return -EINVAL;
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max_chunk = tinydrm_spi_max_transfer_size(spi, 0);
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if (drm_debug & DRM_UT_DRIVER)
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pr_debug("[drm:%s] bpw=%u, max_chunk=%zu, transfers:\n",
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__func__, bpw, max_chunk);
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if (bpw == 16 && !tinydrm_spi_bpw_supported(spi, 16)) {
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tr.bits_per_word = 8;
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if (tinydrm_machine_little_endian()) {
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swap_buf = kmalloc(min(len, max_chunk), GFP_KERNEL);
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if (!swap_buf)
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return -ENOMEM;
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}
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}
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spi_message_init(&m);
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if (header)
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spi_message_add_tail(header, &m);
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spi_message_add_tail(&tr, &m);
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while (len) {
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chunk = min(len, max_chunk);
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tr.tx_buf = buf;
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tr.len = chunk;
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if (swap_buf) {
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const u16 *buf16 = buf;
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unsigned int i;
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for (i = 0; i < chunk / 2; i++)
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swap_buf[i] = swab16(buf16[i]);
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tr.tx_buf = swap_buf;
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}
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buf += chunk;
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len -= chunk;
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tinydrm_dbg_spi_message(spi, &m);
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ret = spi_sync(spi, &m);
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if (ret)
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return ret;
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}
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return 0;
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}
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EXPORT_SYMBOL(tinydrm_spi_transfer);
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#endif /* CONFIG_SPI */
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