Add utilities for managing output transforms
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507b76dfbd
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6b1dc2e6c3
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@ -0,0 +1,15 @@
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#pragma once
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#include <wayland-client.h>
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#include <pixman.h>
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void wv_region_transform(struct pixman_region16 *dst,
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struct pixman_region16 *src, enum wl_output_transform transform,
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int width, int height);
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void wv_pixman_transform_from_wl_output_transform(pixman_transform_t* dst,
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enum wl_output_transform src, int width, int height);
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enum wl_output_transform wv_output_transform_invert(enum wl_output_transform tr);
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enum wl_output_transform wv_output_transform_compose(
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enum wl_output_transform tr_a, enum wl_output_transform tr_b);
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@ -5,122 +5,7 @@
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#include "buffer.h"
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#include "pixels.h"
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void pixman_transform_from_wl_output_transform(pixman_transform_t* dst,
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enum wl_output_transform src, int width, int height)
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{
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#define F1 pixman_fixed_1
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switch (src) {
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case WL_OUTPUT_TRANSFORM_NORMAL:
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{
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pixman_transform_t t = {{
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{ F1, 0, 0 },
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{ 0, F1, 0 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_90:
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{
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pixman_transform_t t = {{
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{ 0, F1, 0 },
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{ -F1, 0, height * F1 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_180:
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{
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pixman_transform_t t = {{
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{ -F1, 0, width * F1 },
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{ 0, -F1, height * F1 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_270:
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{
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pixman_transform_t t = {{
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{ 0, -F1, width * F1 },
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{ F1, 0, 0 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_FLIPPED:
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{
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pixman_transform_t t = {{
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{ -F1, 0, width * F1 },
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{ 0, F1, 0 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_FLIPPED_90:
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{
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pixman_transform_t t = {{
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{ 0, F1, 0 },
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{ F1, 0, 0 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_FLIPPED_180:
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{
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pixman_transform_t t = {{
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{ F1, 0, 0 },
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{ 0, -F1, height * F1 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_FLIPPED_270:
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{
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pixman_transform_t t = {{
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{ 0, -F1, width * F1 },
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{ -F1, 0, height * F1 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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}
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#undef F1
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abort();
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}
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/* Borrowed these from wlroots */
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enum wl_output_transform wv_output_transform_invert(
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enum wl_output_transform tr) {
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if ((tr & WL_OUTPUT_TRANSFORM_90) && !(tr & WL_OUTPUT_TRANSFORM_FLIPPED)) {
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tr ^= WL_OUTPUT_TRANSFORM_180;
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}
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return tr;
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}
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enum wl_output_transform wv_output_transform_compose(
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enum wl_output_transform tr_a, enum wl_output_transform tr_b) {
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uint32_t flipped = (tr_a ^ tr_b) & WL_OUTPUT_TRANSFORM_FLIPPED;
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uint32_t rotation_mask = WL_OUTPUT_TRANSFORM_90 | WL_OUTPUT_TRANSFORM_180;
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uint32_t rotated;
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if (tr_b & WL_OUTPUT_TRANSFORM_FLIPPED) {
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// When a rotation of k degrees is followed by a flip, the
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// equivalent transform is a flip followed by a rotation of
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// -k degrees.
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rotated = (tr_b - tr_a) & rotation_mask;
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} else {
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rotated = (tr_a + tr_b) & rotation_mask;
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}
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return flipped | rotated;
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}
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#include "transform-util.h"
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void wv_pixman_render(struct nvnc_fb* dst, const struct wv_buffer* src,
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enum wl_output_transform transform,
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@ -139,13 +24,13 @@ void wv_pixman_render(struct nvnc_fb* dst, const struct wv_buffer* src,
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pixman_image_t* srcimg = pixman_image_create_bits_no_clear(
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src_fmt, width, height, src->pixels, src->stride);
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if (src->y_inverted)
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transform = wv_output_transform_compose(
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WL_OUTPUT_TRANSFORM_FLIPPED_180, transform);
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pixman_transform_t pxform;
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pixman_transform_from_wl_output_transform(&pxform, transform, width,
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wv_pixman_transform_from_wl_output_transform(&pxform, transform, width,
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height);
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pixman_image_set_transform(srcimg, &pxform);
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@ -0,0 +1,198 @@
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#include <stdlib.h>
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#include <wayland-client.h>
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#include <pixman.h>
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/* Note: This function yields the inverse pixman transform of the
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* wl_output_transform.
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*/
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void wv_pixman_transform_from_wl_output_transform(pixman_transform_t* dst,
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enum wl_output_transform src, int width, int height)
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{
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#define F1 pixman_fixed_1
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switch (src) {
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case WL_OUTPUT_TRANSFORM_NORMAL:
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{
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pixman_transform_t t = {{
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{ F1, 0, 0 },
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{ 0, F1, 0 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_90:
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{
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pixman_transform_t t = {{
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{ 0, F1, 0 },
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{ -F1, 0, height * F1 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_180:
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{
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pixman_transform_t t = {{
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{ -F1, 0, width * F1 },
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{ 0, -F1, height * F1 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_270:
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{
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pixman_transform_t t = {{
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{ 0, -F1, width * F1 },
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{ F1, 0, 0 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_FLIPPED:
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{
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pixman_transform_t t = {{
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{ -F1, 0, width * F1 },
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{ 0, F1, 0 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_FLIPPED_90:
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{
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pixman_transform_t t = {{
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{ 0, F1, 0 },
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{ F1, 0, 0 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_FLIPPED_180:
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{
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pixman_transform_t t = {{
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{ F1, 0, 0 },
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{ 0, -F1, height * F1 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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case WL_OUTPUT_TRANSFORM_FLIPPED_270:
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{
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pixman_transform_t t = {{
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{ 0, -F1, width * F1 },
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{ -F1, 0, height * F1 },
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{ 0, 0, F1 },
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}};
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*dst = t;
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}
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return;
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}
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#undef F1
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abort();
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}
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/* Borrowed these from wlroots */
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void wv_region_transform(struct pixman_region16* dst,
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struct pixman_region16* src, enum wl_output_transform transform,
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int width, int height)
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{
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if (transform == WL_OUTPUT_TRANSFORM_NORMAL) {
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pixman_region_copy(dst, src);
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return;
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}
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int nrects = 0;
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pixman_box16_t* src_rects = pixman_region_rectangles(src, &nrects);
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pixman_box16_t* dst_rects = malloc(nrects * sizeof(*dst_rects));
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if (dst_rects == NULL) {
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return;
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}
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for (int i = 0; i < nrects; ++i) {
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switch (transform) {
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case WL_OUTPUT_TRANSFORM_NORMAL:
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dst_rects[i].x1 = src_rects[i].x1;
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dst_rects[i].y1 = src_rects[i].y1;
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dst_rects[i].x2 = src_rects[i].x2;
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dst_rects[i].y2 = src_rects[i].y2;
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break;
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case WL_OUTPUT_TRANSFORM_90:
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dst_rects[i].x1 = height - src_rects[i].y2;
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dst_rects[i].y1 = src_rects[i].x1;
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dst_rects[i].x2 = height - src_rects[i].y1;
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dst_rects[i].y2 = src_rects[i].x2;
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break;
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case WL_OUTPUT_TRANSFORM_180:
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dst_rects[i].x1 = width - src_rects[i].x2;
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dst_rects[i].y1 = height - src_rects[i].y2;
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dst_rects[i].x2 = width - src_rects[i].x1;
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dst_rects[i].y2 = height - src_rects[i].y1;
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break;
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case WL_OUTPUT_TRANSFORM_270:
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dst_rects[i].x1 = src_rects[i].y1;
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dst_rects[i].y1 = width - src_rects[i].x2;
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dst_rects[i].x2 = src_rects[i].y2;
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dst_rects[i].y2 = width - src_rects[i].x1;
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break;
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case WL_OUTPUT_TRANSFORM_FLIPPED:
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dst_rects[i].x1 = width - src_rects[i].x2;
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dst_rects[i].y1 = src_rects[i].y1;
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dst_rects[i].x2 = width - src_rects[i].x1;
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dst_rects[i].y2 = src_rects[i].y2;
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break;
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case WL_OUTPUT_TRANSFORM_FLIPPED_90:
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dst_rects[i].x1 = src_rects[i].y1;
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dst_rects[i].y1 = src_rects[i].x1;
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dst_rects[i].x2 = src_rects[i].y2;
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dst_rects[i].y2 = src_rects[i].x2;
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break;
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case WL_OUTPUT_TRANSFORM_FLIPPED_180:
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dst_rects[i].x1 = src_rects[i].x1;
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dst_rects[i].y1 = height - src_rects[i].y2;
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dst_rects[i].x2 = src_rects[i].x2;
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dst_rects[i].y2 = height - src_rects[i].y1;
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break;
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case WL_OUTPUT_TRANSFORM_FLIPPED_270:
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dst_rects[i].x1 = height - src_rects[i].y2;
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dst_rects[i].y1 = width - src_rects[i].x2;
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dst_rects[i].x2 = height - src_rects[i].y1;
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dst_rects[i].y2 = width - src_rects[i].x1;
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break;
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}
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}
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pixman_region_fini(dst);
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pixman_region_init_rects(dst, dst_rects, nrects);
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free(dst_rects);
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}
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enum wl_output_transform wv_output_transform_invert(enum wl_output_transform tr)
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{
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if ((tr & WL_OUTPUT_TRANSFORM_90) && !(tr & WL_OUTPUT_TRANSFORM_FLIPPED)) {
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tr ^= WL_OUTPUT_TRANSFORM_180;
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}
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return tr;
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}
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enum wl_output_transform wv_output_transform_compose(
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enum wl_output_transform tr_a, enum wl_output_transform tr_b)
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{
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uint32_t flipped = (tr_a ^ tr_b) & WL_OUTPUT_TRANSFORM_FLIPPED;
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uint32_t rotation_mask = WL_OUTPUT_TRANSFORM_90 | WL_OUTPUT_TRANSFORM_180;
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uint32_t rotated;
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if (tr_b & WL_OUTPUT_TRANSFORM_FLIPPED) {
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// When a rotation of k degrees is followed by a flip, the
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// equivalent transform is a flip followed by a rotation of
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// -k degrees.
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rotated = (tr_b - tr_a) & rotation_mask;
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} else {
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rotated = (tr_a + tr_b) & rotation_mask;
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}
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return flipped | rotated;
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}
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