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https://github.com/hyprwm/Hyprland
synced 2024-11-26 09:45:59 +01:00
Rendering textures
This commit is contained in:
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67343898ff
commit
19d9465042
7 changed files with 125 additions and 23 deletions
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@ -113,22 +113,18 @@ void Events::listener_monitorFrame(void* owner, void* data) {
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return;
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return;
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g_pHyprOpenGL->begin(PMONITOR);
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g_pHyprOpenGL->begin(PMONITOR);
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g_pHyprOpenGL->clear(CColor(11, 55, 11, 255));
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g_pHyprOpenGL->clear(CColor(11, 11, 11, 255));
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wlr_box box = {1,1,100,300};
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g_pHyprRenderer->renderAllClientsForMonitor(PMONITOR->ID, &now);
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g_pHyprOpenGL->renderRect(&box, CColor(255,0,255,255));
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wlr_renderer_begin(g_pCompositor->m_sWLRRenderer, PMONITOR->vecSize.x, PMONITOR->vecSize.y);
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wlr_output_render_software_cursors(PMONITOR->output, NULL);
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wlr_renderer_end(g_pCompositor->m_sWLRRenderer);
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g_pHyprOpenGL->end();
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g_pHyprOpenGL->end();
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// wlr_renderer_begin(g_pCompositor->m_sWLRRenderer, PMONITOR->vecSize.x, PMONITOR->vecSize.y);
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// wlr_renderer_clear(g_pCompositor->m_sWLRRenderer, bgcol);
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// g_pHyprRenderer->renderAllClientsForMonitor(PMONITOR->ID, &now);
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// wlr_output_render_software_cursors(PMONITOR->output, NULL);
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// wlr_renderer_end(g_pCompositor->m_sWLRRenderer);
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wlr_output_commit(PMONITOR->output);
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wlr_output_commit(PMONITOR->output);
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}
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}
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@ -84,5 +84,6 @@ extern "C" {
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#endif
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#endif
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#include <GLES3/gl32.h>
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#include <GLES3/gl32.h>
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#include <GLES2/gl2ext.h>
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#include "helpers/Vector2D.hpp"
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#include "helpers/Vector2D.hpp"
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@ -152,7 +152,7 @@ void CHyprOpenGLImpl::renderRect(wlr_box* box, const CColor& col) {
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glUseProgram(m_shQUAD.program);
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glUseProgram(m_shQUAD.program);
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glUniformMatrix3fv(m_shQUAD.proj, 1, GL_FALSE, glMatrix);
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glUniformMatrix3fv(m_shQUAD.proj, 1, GL_FALSE, glMatrix);
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glUniform4f(m_shQUAD.color, col.r / 255.f, col.g / 255.f, col.r / 255.f, col.a / 255.f);
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glUniform4f(m_shQUAD.color, col.r / 255.f, col.g / 255.f, col.b / 255.f, col.a / 255.f);
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glVertexAttribPointer(m_shQUAD.posAttrib, 2, GL_FLOAT, GL_FALSE, 0, fullVerts);
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glVertexAttribPointer(m_shQUAD.posAttrib, 2, GL_FLOAT, GL_FALSE, 0, fullVerts);
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@ -162,3 +162,64 @@ void CHyprOpenGLImpl::renderRect(wlr_box* box, const CColor& col) {
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glDisableVertexAttribArray(m_shQUAD.posAttrib);
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glDisableVertexAttribArray(m_shQUAD.posAttrib);
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}
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}
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void CHyprOpenGLImpl::renderTexture(wlr_texture* tex,float matrix[9], float alpha) {
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RASSERT(m_RenderData.pMonitor, "Tried to render texture without begin()!");
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renderTexture(CTexture(tex), matrix, alpha);
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}
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void CHyprOpenGLImpl::renderTexture(const CTexture& tex, float matrix[9], float alpha) {
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RASSERT(m_RenderData.pMonitor, "Tried to render texture without begin()!");
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RASSERT((tex.m_iTexID > 0), "Attempted to draw NULL texture!");
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float glMatrix[9];
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wlr_matrix_multiply(glMatrix, m_RenderData.projection, matrix);
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wlr_matrix_multiply(glMatrix, matrixFlip180, glMatrix);
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wlr_matrix_transpose(glMatrix, glMatrix);
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CShader* shader = nullptr;
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switch (tex.m_iType) {
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case TEXTURE_RGBA:
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shader = &m_shRGBA;
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glEnable(GL_BLEND);
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break;
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case TEXTURE_RGBX:
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shader = &m_shRGBX;
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if (alpha == 255.f)
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glDisable(GL_BLEND);
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break;
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case TEXTURE_EXTERNAL:
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shader = &m_shEXT;
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glEnable(GL_BLEND);
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break;
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default:
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RASSERT(false, "tex.m_iTarget unsupported!");
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}
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glActiveTexture(GL_TEXTURE0);
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glBindTexture(tex.m_iTarget, tex.m_iTexID);
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glTexParameteri(tex.m_iTarget, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
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glUseProgram(shader->program);
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glUniformMatrix3fv(shader->proj, 1, GL_FALSE, glMatrix);
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glUniform1i(shader->tex, 0);
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glUniform1f(shader->alpha, alpha / 255.f);
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glVertexAttribPointer(shader->posAttrib, 2, GL_FLOAT, GL_FALSE, 0, fullVerts);
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glVertexAttribPointer(shader->texAttrib, 2, GL_FLOAT, GL_FALSE, 0, fullVerts);
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glEnableVertexAttribArray(shader->posAttrib);
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glEnableVertexAttribArray(shader->texAttrib);
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glDrawArrays(GL_TRIANGLE_STRIP, 0, 4);
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glDisableVertexAttribArray(shader->posAttrib);
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glDisableVertexAttribArray(shader->texAttrib);
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glBindTexture(tex.m_iTarget, 0);
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}
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@ -8,6 +8,7 @@
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#include "Shaders.hpp"
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#include "Shaders.hpp"
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#include "Shader.hpp"
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#include "Shader.hpp"
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#include "Texture.hpp"
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inline const float matrixFlip180[] = {
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inline const float matrixFlip180[] = {
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1.0f, 0.0f, 0.0f,
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1.0f, 0.0f, 0.0f,
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@ -35,6 +36,8 @@ public:
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void end();
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void end();
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void renderRect(wlr_box*, const CColor&);
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void renderRect(wlr_box*, const CColor&);
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void renderTexture(wlr_texture*, float matrix[9], float a);
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void renderTexture(const CTexture&, float matrix[9], float a);
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void clear(const CColor&);
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void clear(const CColor&);
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void scissor(const wlr_box*);
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void scissor(const wlr_box*);
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@ -21,7 +21,7 @@ void renderSurface(struct wlr_surface* surface, int x, int y, void* data) {
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wlr_box windowBox;
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wlr_box windowBox;
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if (RDATA->surface && surface == RDATA->surface) {
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if (RDATA->surface && surface == RDATA->surface) {
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windowBox = {(int)outputX + RDATA->x + x, (int)outputY + RDATA->y + y, RDATA->w, RDATA->h};
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windowBox = {(int)outputX + RDATA->x + x, (int)outputY + RDATA->y + y, RDATA->w, RDATA->h};
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wlr_renderer_scissor(g_pCompositor->m_sWLRRenderer, &windowBox);
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g_pHyprOpenGL->scissor(&windowBox);
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} else {
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} else {
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windowBox = {(int)outputX + RDATA->x + x, (int)outputY + RDATA->y + y, surface->current.width, surface->current.height};
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windowBox = {(int)outputX + RDATA->x + x, (int)outputY + RDATA->y + y, surface->current.width, surface->current.height};
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}
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}
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@ -31,13 +31,13 @@ void renderSurface(struct wlr_surface* surface, int x, int y, void* data) {
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float matrix[9];
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float matrix[9];
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wlr_matrix_project_box(matrix, &windowBox, TRANSFORM, 0, RDATA->output->transform_matrix);
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wlr_matrix_project_box(matrix, &windowBox, TRANSFORM, 0, RDATA->output->transform_matrix);
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wlr_render_texture_with_matrix(g_pCompositor->m_sWLRRenderer, TEXTURE, matrix, 1); // TODO: fadein/out
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g_pHyprOpenGL->renderTexture(TEXTURE, matrix, 255.f); // TODO: fadeinout
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wlr_surface_send_frame_done(surface, RDATA->when);
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wlr_surface_send_frame_done(surface, RDATA->when);
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wlr_presentation_surface_sampled_on_output(g_pCompositor->m_sWLRPresentation, surface, RDATA->output);
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wlr_presentation_surface_sampled_on_output(g_pCompositor->m_sWLRPresentation, surface, RDATA->output);
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wlr_renderer_scissor(g_pCompositor->m_sWLRRenderer, nullptr);
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g_pHyprOpenGL->scissor(nullptr);
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}
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}
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bool shouldRenderWindow(CWindow* pWindow, SMonitor* pMonitor) {
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bool shouldRenderWindow(CWindow* pWindow, SMonitor* pMonitor) {
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@ -395,29 +395,27 @@ void CHyprRenderer::arrangeLayersForMonitor(const int& monitor) {
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void CHyprRenderer::drawBorderForWindow(CWindow* pWindow, SMonitor* pMonitor) {
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void CHyprRenderer::drawBorderForWindow(CWindow* pWindow, SMonitor* pMonitor) {
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const auto BORDERSIZE = g_pConfigManager->getInt("general:border_size");
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const auto BORDERSIZE = g_pConfigManager->getInt("general:border_size");
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const auto BORDERCOL = pWindow->m_cRealBorderColor.getAsHex();
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const auto BORDERCOL = pWindow->m_cRealBorderColor;
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const float BORDERWLRCOL[4] = {RED(BORDERCOL), GREEN(BORDERCOL), BLUE(BORDERCOL), ALPHA(BORDERCOL)};
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Vector2D correctPos = pWindow->m_vRealPosition - pMonitor->vecPosition;
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Vector2D correctPos = pWindow->m_vRealPosition - pMonitor->vecPosition;
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// top
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// top
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wlr_box border = {correctPos.x - BORDERSIZE, correctPos.y - BORDERSIZE, pWindow->m_vRealSize.x + 2 * BORDERSIZE, BORDERSIZE};
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wlr_box border = {correctPos.x - BORDERSIZE, correctPos.y - BORDERSIZE, pWindow->m_vRealSize.x + 2 * BORDERSIZE, BORDERSIZE};
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wlr_render_rect(g_pCompositor->m_sWLRRenderer, &border, BORDERWLRCOL, pMonitor->output->transform_matrix);
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g_pHyprOpenGL->renderRect(&border, BORDERCOL);
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// bottom
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// bottom
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border.y = correctPos.y + pWindow->m_vRealSize.y;
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border.y = correctPos.y + pWindow->m_vRealSize.y;
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wlr_render_rect(g_pCompositor->m_sWLRRenderer, &border, BORDERWLRCOL, pMonitor->output->transform_matrix);
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g_pHyprOpenGL->renderRect(&border, BORDERCOL);
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// left
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// left
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border.y = correctPos.y;
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border.y = correctPos.y;
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border.width = BORDERSIZE;
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border.width = BORDERSIZE;
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border.height = pWindow->m_vRealSize.y;
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border.height = pWindow->m_vRealSize.y;
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wlr_render_rect(g_pCompositor->m_sWLRRenderer, &border, BORDERWLRCOL, pMonitor->output->transform_matrix);
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g_pHyprOpenGL->renderRect(&border, BORDERCOL);
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// right
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// right
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border.x = correctPos.x + pWindow->m_vRealSize.x;
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border.x = correctPos.x + pWindow->m_vRealSize.x;
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wlr_render_rect(g_pCompositor->m_sWLRRenderer, &border, BORDERWLRCOL, pMonitor->output->transform_matrix);
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g_pHyprOpenGL->renderRect(&border, BORDERCOL);
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}
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}
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void damageSurfaceIter(struct wlr_surface* surface, int x, int y, void* data) {
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void damageSurfaceIter(struct wlr_surface* surface, int x, int y, void* data) {
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22
src/render/Texture.cpp
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22
src/render/Texture.cpp
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@ -0,0 +1,22 @@
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#include "Texture.hpp"
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CTexture::CTexture() {
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// naffin'
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}
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CTexture::CTexture(wlr_texture* tex) {
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RASSERT(wlr_texture_is_gles2(tex), "wlr_texture provided to CTexture that isn't GLES2!");
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wlr_gles2_texture_attribs attrs;
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wlr_gles2_texture_get_attribs(tex, &attrs);
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m_iTarget = attrs.target;
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m_iTexID = attrs.tex;
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if (m_iTarget == GL_TEXTURE_2D) {
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m_iType = attrs.has_alpha ? TEXTURE_RGBA : TEXTURE_RGBX;
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} else {
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m_iType = TEXTURE_EXTERNAL;
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}
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m_vSize = Vector2D(tex->width, tex->height);
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}
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21
src/render/Texture.hpp
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21
src/render/Texture.hpp
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@ -0,0 +1,21 @@
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#pragma once
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#include "../defines.hpp"
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enum TEXTURETYPE {
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TEXTURE_INVALID, // Invalid
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TEXTURE_RGBA, // 4 channels
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TEXTURE_RGBX, // discard A
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TEXTURE_EXTERNAL, // EGLImage
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};
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class CTexture {
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public:
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CTexture();
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CTexture(wlr_texture*);
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TEXTURETYPE m_iType = TEXTURE_RGBA;
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GLenum m_iTarget = GL_TEXTURE_2D;
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GLuint m_iTexID = 0;
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Vector2D m_vSize;
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};
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