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opengles2: Use client-side arrays on everything but Emscripten.
Turns out they're much faster! Fixes #5206.
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@ -28,6 +28,16 @@
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#include "../../video/SDL_blit.h"
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#include "SDL_shaders_gles2.h"
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/* WebGL doesn't offer client-side arrays, so use Vertex Buffer Objects
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on Emscripten, which converts GLES2 into WebGL calls.
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In all other cases, attempt to use client-side arrays, as they tend to
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be faster. */
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#if defined(__EMSCRIPTEN__)
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#define USE_VERTEX_BUFFER_OBJECTS 1
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#else
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#define USE_VERTEX_BUFFER_OBJECTS 0
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#endif
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/* To prevent unnecessary window recreation,
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* these should match the defaults selected in SDL_GL_ResetAttributes
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*/
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@ -151,9 +161,12 @@ typedef struct GLES2_RenderData
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GLES2_ProgramCache program_cache;
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Uint8 clear_r, clear_g, clear_b, clear_a;
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#if USE_VERTEX_BUFFER_OBJECTS
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GLuint vertex_buffers[8];
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size_t vertex_buffer_size[8];
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int current_vertex_buffer;
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#endif
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GLES2_DrawStateCache drawstate;
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} GLES2_RenderData;
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@ -844,7 +857,7 @@ GLES2_QueueGeometry(SDL_Renderer *renderer, SDL_RenderCommand *cmd, SDL_Texture
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}
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static int
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SetDrawState(GLES2_RenderData *data, const SDL_RenderCommand *cmd, const GLES2_ImageSource imgsrc)
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SetDrawState(GLES2_RenderData *data, const SDL_RenderCommand *cmd, const GLES2_ImageSource imgsrc, void *vertices)
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{
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SDL_Texture *texture = cmd->data.draw.texture;
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const SDL_BlendMode blend = cmd->data.draw.blend;
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@ -926,7 +939,7 @@ SetDrawState(GLES2_RenderData *data, const SDL_RenderCommand *cmd, const GLES2_I
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}
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if (texture) {
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SDL_Vertex *verts = (SDL_Vertex *) (cmd->data.draw.first);
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SDL_Vertex *verts = (SDL_Vertex *) (((Uint8 *) vertices) + cmd->data.draw.first);
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data->glVertexAttribPointer(GLES2_ATTRIBUTE_TEXCOORD, 2, GL_FLOAT, GL_FALSE, stride, (const GLvoid *)&verts->tex_coord);
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}
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@ -960,7 +973,7 @@ SetDrawState(GLES2_RenderData *data, const SDL_RenderCommand *cmd, const GLES2_I
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/* all drawing commands use this */
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{
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SDL_VertexSolid *verts = (SDL_VertexSolid *) (cmd->data.draw.first);
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SDL_VertexSolid *verts = (SDL_VertexSolid *) (((Uint8 *) vertices) + cmd->data.draw.first);
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data->glVertexAttribPointer(GLES2_ATTRIBUTE_POSITION, 2, GL_FLOAT, GL_FALSE, stride, (const GLvoid *) &verts->position);
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data->glVertexAttribPointer(GLES2_ATTRIBUTE_COLOR, 4, GL_UNSIGNED_BYTE, GL_TRUE /* Normalized */, stride, (const GLvoid *) &verts->color);
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}
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@ -969,7 +982,7 @@ SetDrawState(GLES2_RenderData *data, const SDL_RenderCommand *cmd, const GLES2_I
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}
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static int
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SetCopyState(SDL_Renderer *renderer, const SDL_RenderCommand *cmd)
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SetCopyState(SDL_Renderer *renderer, const SDL_RenderCommand *cmd, void *vertices)
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{
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GLES2_RenderData *data = (GLES2_RenderData *) renderer->driverdata;
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GLES2_ImageSource sourceType = GLES2_IMAGESOURCE_TEXTURE_ABGR;
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@ -1079,7 +1092,7 @@ SetCopyState(SDL_Renderer *renderer, const SDL_RenderCommand *cmd)
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}
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}
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return SetDrawState(data, cmd, sourceType);
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return SetDrawState(data, cmd, sourceType, vertices);
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}
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static int
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@ -1087,8 +1100,11 @@ GLES2_RunCommandQueue(SDL_Renderer * renderer, SDL_RenderCommand *cmd, void *ver
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{
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GLES2_RenderData *data = (GLES2_RenderData *) renderer->driverdata;
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const SDL_bool colorswap = (renderer->target && (renderer->target->format == SDL_PIXELFORMAT_ARGB8888 || renderer->target->format == SDL_PIXELFORMAT_RGB888));
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#if USE_VERTEX_BUFFER_OBJECTS
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const int vboidx = data->current_vertex_buffer;
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const GLuint vbo = data->vertex_buffers[vboidx];
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#endif
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if (GLES2_ActivateRenderer(renderer) < 0) {
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return -1;
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@ -1106,6 +1122,7 @@ GLES2_RunCommandQueue(SDL_Renderer * renderer, SDL_RenderCommand *cmd, void *ver
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}
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}
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#if USE_VERTEX_BUFFER_OBJECTS
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/* upload the new VBO data for this set of commands. */
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data->glBindBuffer(GL_ARRAY_BUFFER, vbo);
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if (data->vertex_buffer_size[vboidx] < vertsize) {
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@ -1120,6 +1137,8 @@ GLES2_RunCommandQueue(SDL_Renderer * renderer, SDL_RenderCommand *cmd, void *ver
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if (data->current_vertex_buffer >= SDL_arraysize(data->vertex_buffers)) {
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data->current_vertex_buffer = 0;
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}
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vertices = NULL; /* attrib pointers will be offsets into the VBO. */
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#endif
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while (cmd) {
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switch (cmd->command) {
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@ -1184,7 +1203,7 @@ GLES2_RunCommandQueue(SDL_Renderer * renderer, SDL_RenderCommand *cmd, void *ver
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break;
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case SDL_RENDERCMD_DRAW_LINES: {
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if (SetDrawState(data, cmd, GLES2_IMAGESOURCE_SOLID) == 0) {
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if (SetDrawState(data, cmd, GLES2_IMAGESOURCE_SOLID, vertices) == 0) {
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size_t count = cmd->data.draw.count;
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if (count > 2) {
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/* joined lines cannot be grouped */
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@ -1242,9 +1261,9 @@ GLES2_RunCommandQueue(SDL_Renderer * renderer, SDL_RenderCommand *cmd, void *ver
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}
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if (thistexture) {
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ret = SetCopyState(renderer, cmd);
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ret = SetCopyState(renderer, cmd, vertices);
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} else {
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ret = SetDrawState(data, cmd, GLES2_IMAGESOURCE_SOLID);
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ret = SetDrawState(data, cmd, GLES2_IMAGESOURCE_SOLID, vertices);
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}
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if (ret == 0) {
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@ -1308,8 +1327,10 @@ GLES2_DestroyRenderer(SDL_Renderer *renderer)
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data->framebuffers = nextnode;
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}
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#if USE_VERTEX_BUFFER_OBJECTS
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data->glDeleteBuffers(SDL_arraysize(data->vertex_buffers), data->vertex_buffers);
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GL_CheckError("", renderer);
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#endif
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SDL_GL_DeleteContext(data->context);
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}
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@ -2071,8 +2092,10 @@ GLES2_CreateRenderer(SDL_Window *window, Uint32 flags)
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data->glGetIntegerv(GL_MAX_TEXTURE_SIZE, &value);
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renderer->info.max_texture_height = value;
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#if USE_VERTEX_BUFFER_OBJECTS
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/* we keep a few of these and cycle through them, so data can live for a few frames. */
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data->glGenBuffers(SDL_arraysize(data->vertex_buffers), data->vertex_buffers);
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#endif
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data->framebuffers = NULL;
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data->glGetIntegerv(GL_FRAMEBUFFER_BINDING, &window_framebuffer);
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