167 lines
4.0 KiB
C
167 lines
4.0 KiB
C
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#define _SIZE_T_DEFINED_
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typedef unsigned int size_t;
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#include <stdio.h>
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#include <stdlib.h>
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#include <EGL/egl.h>
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#include <EGL/eglext.h>
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#include <GLES/gl.h>
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#include <GLES/glext.h>
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#include <utils/threads.h>
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#include <pthread.h>
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#include <cutils/log.h>
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#include <assert.h>
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#ifdef __arm__
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#ifndef __location__
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#define __HIERALLOC_STRING_0__(s) #s
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#define __HIERALLOC_STRING_1__(s) __HIERALLOC_STRING_0__(s)
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#define __HIERALLOC_STRING_2__ __HIERALLOC_STRING_1__(__LINE__)
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#define __location__ __FILE__ ":" __HIERALLOC_STRING_2__
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#endif
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#undef assert
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#define assert(EXPR) { do { if (!(EXPR)) {LOGD("\n*\n*\n*\n* assert fail: '"#EXPR"' at "__location__"\n*\n*\n*\n*"); exit(EXIT_FAILURE); } } while (false); }
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//#define printf LOGD
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#else // #ifdef __arm__
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//#define LOGD printf
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#endif // #ifdef __arm__
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#include <pixelflinger2/pixelflinger2_format.h>
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#include <pixelflinger2/pixelflinger2.h>
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#include <map>
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typedef uint8_t GGLubyte; // ub
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#define ggl_likely(x) __builtin_expect(!!(x), 1)
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#define ggl_unlikely(x) __builtin_expect(!!(x), 0)
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#undef NELEM
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#define NELEM(x) (sizeof(x)/sizeof(*(x)))
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template<typename T>
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inline T max(T a, T b)
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{
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return a<b ? b : a;
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}
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template<typename T>
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inline T min(T a, T b)
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{
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return a<b ? a : b;
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}
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struct egl_context_t {
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enum {
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IS_CURRENT = 0x00010000,
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NEVER_CURRENT = 0x00020000
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};
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uint32_t flags;
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EGLDisplay dpy;
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EGLConfig config;
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EGLSurface read;
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EGLSurface draw;
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unsigned frame;
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clock_t lastSwapTime;
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float accumulateSeconds;
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static inline egl_context_t* context(EGLContext ctx);
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};
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struct GLES2Context;
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#ifdef HAVE_ANDROID_OS
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#include <bionic_tls.h>
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// We have a dedicated TLS slot in bionic
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inline void setGlThreadSpecific(GLES2Context *value)
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{
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((uint32_t *)__get_tls())[TLS_SLOT_OPENGL] = (uint32_t)value;
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}
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inline GLES2Context* getGlThreadSpecific()
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{
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return (GLES2Context *)(((unsigned *)__get_tls())[TLS_SLOT_OPENGL]);
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}
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#else
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extern pthread_key_t gGLKey;
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inline void setGlThreadSpecific(GLES2Context *value)
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{
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pthread_setspecific(gGLKey, value);
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}
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inline GLES2Context* getGlThreadSpecific()
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{
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return static_cast<GLES2Context*>(pthread_getspecific(gGLKey));
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}
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#endif
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struct VBO {
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unsigned size;
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GLenum usage;
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void * data;
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};
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struct GLES2Context {
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GGLContext rasterizer;
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egl_context_t egl;
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GGLInterface * iface; // shortcut to &rasterizer.interface
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struct VertexState {
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struct VertAttribPointer {
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unsigned size; // number of values per vertex
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GLenum type; // data type
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unsigned stride; // bytes
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const void * ptr;
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bool normalized :
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1;
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bool enabled :
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1;
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} attribs [GGL_MAXVERTEXATTRIBS];
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VBO * vbo, * indices;
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std::map<GLuint, VBO *> vbos;
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GLuint free;
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Vector4 defaultAttribs [GGL_MAXVERTEXATTRIBS];
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} vert;
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struct TextureState {
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GGLTexture * tmus[GGL_MAXCOMBINEDTEXTUREIMAGEUNITS];
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int sampler2tmu[GGL_MAXCOMBINEDTEXTUREIMAGEUNITS]; // sampler2tmu[sampler] is index of tmu, -1 means not used
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unsigned active;
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std::map<GLuint, GGLTexture *> textures;
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GLuint free; // first possible free name
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GGLTexture * tex2D, * texCube; // default textures
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unsigned unpack;
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void UpdateSampler(GGLInterface * iface, unsigned tmu);
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} tex;
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GLES2Context();
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void InitializeTextures();
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void InitializeVertices();
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~GLES2Context();
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void UninitializeTextures();
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void UninitializeVertices();
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static inline GLES2Context* get() {
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return getGlThreadSpecific();
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}
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};
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inline egl_context_t* egl_context_t::context(EGLContext ctx)
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{
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GLES2Context* const gl = static_cast<GLES2Context*>(ctx);
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return static_cast<egl_context_t*>(&gl->egl);
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}
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#define GLES2_GET_CONTEXT(ctx) GLES2Context * ctx = GLES2Context::get(); \
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/*puts(__FUNCTION__);*/
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#define GLES2_GET_CONST_CONTEXT(ctx) GLES2Context * ctx = GLES2Context::get(); \
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/*puts(__FUNCTION__);*/
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