mirror of
https://github.com/libretro/scenewalker-libretro.git
synced 2024-11-23 07:49:43 +00:00
409 lines
10 KiB
C++
409 lines
10 KiB
C++
#include "libretro.h"
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#include "gl.hpp"
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#include "mesh.hpp"
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#include "object.hpp"
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#include "util.hpp"
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#include <cstring>
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#include <string>
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#include <stdint.h>
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#include "shared.hpp"
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using namespace GL;
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using namespace glm;
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using namespace std;
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using namespace std1;
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#define BASE_WIDTH 320
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#define BASE_HEIGHT 240
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#ifdef GLES
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#define MAX_WIDTH 1024
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#define MAX_HEIGHT 1024
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#else
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#define MAX_WIDTH 1920
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#define MAX_HEIGHT 1600
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#endif
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static unsigned width = BASE_WIDTH;
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static unsigned height = BASE_HEIGHT;
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static struct retro_hw_render_callback hw_render;
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static string mesh_path;
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static vector<shared_ptr<Mesh> > meshes;
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void retro_init(void)
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{}
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void retro_deinit(void)
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{}
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unsigned retro_api_version(void)
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{
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return RETRO_API_VERSION;
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}
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void retro_set_controller_port_device(unsigned, unsigned)
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{}
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void retro_get_system_info(struct retro_system_info *info)
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{
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memset(info, 0, sizeof(*info));
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info->library_name = "ModelViewer";
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info->library_version = "v1";
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info->need_fullpath = true;
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info->valid_extensions = "obj";
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}
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void retro_get_system_av_info(struct retro_system_av_info *info)
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{
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memset(info, 0, sizeof(*info));
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info->timing.fps = 60.0;
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info->timing.sample_rate = 30000.0;
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info->geometry.base_width = BASE_WIDTH;
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info->geometry.base_height = BASE_HEIGHT;
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info->geometry.max_width = MAX_WIDTH;
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info->geometry.max_height = MAX_HEIGHT;
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}
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static retro_video_refresh_t video_cb;
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static retro_audio_sample_t audio_cb;
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static retro_audio_sample_batch_t audio_batch_cb;
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static retro_environment_t environ_cb;
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static retro_input_poll_t input_poll_cb;
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static retro_input_state_t input_state_cb;
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#ifdef ANDROID
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#include <android/log.h>
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#endif
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#include <stdarg.h>
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void retro_stderr(const char *str)
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{
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#if defined(_WIN32)
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OutputDebugStringA(str);
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#elif defined(ANDROID)
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__android_log_print(ANDROID_LOG_INFO, "ModelViewer: ", "%s", str);
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#else
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fputs(str, stderr);
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#endif
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}
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void retro_stderr_print(const char *fmt, ...)
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{
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char buf[1024];
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va_list list;
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va_start(list, fmt);
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vsprintf(buf, fmt, list); // Unsafe, but vsnprintf isn't in C++03 :(
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va_end(list);
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retro_stderr(buf);
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}
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void retro_set_environment(retro_environment_t cb)
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{
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environ_cb = cb;
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retro_variable variables[] = {
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{ "modelviewer_resolution",
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#ifdef GLES
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"Internal resolution; 320x240|360x480|480x272|512x384|512x512|640x240|640x448|640x480|720x576|800x600|960x720|1024x768" },
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#else
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"Internal resolution; 320x240|360x480|480x272|512x384|512x512|640x240|640x448|640x480|720x576|800x600|960x720|1024x768|1280x720|1280x960|1600x1200|1920x1080|1920x1440|1920x1600" },
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#endif
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{ NULL, NULL },
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};
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cb(RETRO_ENVIRONMENT_SET_VARIABLES, variables);
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}
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void retro_set_audio_sample(retro_audio_sample_t cb)
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{
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audio_cb = cb;
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}
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void retro_set_audio_sample_batch(retro_audio_sample_batch_t cb)
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{
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audio_batch_cb = cb;
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}
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void retro_set_input_poll(retro_input_poll_t cb)
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{
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input_poll_cb = cb;
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}
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void retro_set_input_state(retro_input_state_t cb)
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{
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input_state_cb = cb;
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}
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void retro_set_video_refresh(retro_video_refresh_t cb)
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{
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video_cb = cb;
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}
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static void handle_input()
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{
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static float model_rotate_y;
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static float model_rotate_x;
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static float model_scale = 1.0f;
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input_poll_cb();
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int analog_x = input_state_cb(0, RETRO_DEVICE_ANALOG,
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RETRO_DEVICE_INDEX_ANALOG_LEFT, RETRO_DEVICE_ID_ANALOG_X);
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int analog_y = input_state_cb(0, RETRO_DEVICE_ANALOG,
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RETRO_DEVICE_INDEX_ANALOG_LEFT, RETRO_DEVICE_ID_ANALOG_Y);
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int analog_ry = input_state_cb(0, RETRO_DEVICE_ANALOG,
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RETRO_DEVICE_INDEX_ANALOG_RIGHT, RETRO_DEVICE_ID_ANALOG_Y);
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if (abs(analog_x) < 10000)
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analog_x = 0;
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if (abs(analog_y) < 10000)
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analog_y = 0;
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if (abs(analog_ry) < 10000)
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analog_ry = 0;
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if (input_state_cb(0, RETRO_DEVICE_JOYPAD, 0, RETRO_DEVICE_ID_JOYPAD_LEFT))
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analog_x -= 30000;
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if (input_state_cb(0, RETRO_DEVICE_JOYPAD, 0, RETRO_DEVICE_ID_JOYPAD_RIGHT))
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analog_x += 30000;
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if (input_state_cb(0, RETRO_DEVICE_JOYPAD, 0, RETRO_DEVICE_ID_JOYPAD_UP))
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analog_y -= 30000;
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if (input_state_cb(0, RETRO_DEVICE_JOYPAD, 0, RETRO_DEVICE_ID_JOYPAD_DOWN))
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analog_y += 30000;
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if (input_state_cb(0, RETRO_DEVICE_JOYPAD, 0, RETRO_DEVICE_ID_JOYPAD_B))
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analog_ry -= 30000;
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if (input_state_cb(0, RETRO_DEVICE_JOYPAD, 0, RETRO_DEVICE_ID_JOYPAD_A))
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analog_ry += 30000;
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model_scale *= 1.0f - analog_ry * 0.000001f;
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model_scale = clamp(model_scale, 0.1f, 100.0f);
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model_rotate_x += analog_y * 0.0001f;
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model_rotate_x = clamp(model_rotate_x, -80.0f, 80.0f);
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model_rotate_y += analog_x * 0.00015f;
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mat4 translation = translate(mat4(1.0), vec3(0, 0, -40));
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mat4 scaler = scale(mat4(1.0), vec3(model_scale, model_scale, model_scale));
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mat4 rotate_x = rotate(mat4(1.0), model_rotate_x, vec3(1, 0, 0));
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mat4 rotate_y = rotate(mat4(1.0), model_rotate_y, vec3(0, 1, 0));
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mat4 model = translation * scaler * rotate_x * rotate_y;
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for (unsigned i = 0; i < meshes.size(); i++)
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meshes[i]->set_model(model);
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}
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static void update_variables()
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{
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retro_variable var;
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var.key = "modelviewer_resolution";
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var.value = NULL;
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if (!environ_cb(RETRO_ENVIRONMENT_GET_VARIABLE, &var) || !var.value)
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return;
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vector<string> list = String::split(var.value, "x");
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if (list.size() != 2)
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return;
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width = String::stoi(list[0]);
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height = String::stoi(list[1]);
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retro_stderr_print("Internal resolution: %u x %u\n", width, height);
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}
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void retro_run(void)
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{
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handle_input();
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bool updated = false;
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if (environ_cb(RETRO_ENVIRONMENT_GET_VARIABLE_UPDATE, &updated) && updated)
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update_variables();
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GLuint fb = hw_render.get_current_framebuffer();
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SYM(glBindFramebuffer)(GL_FRAMEBUFFER, fb);
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SYM(glViewport)(0, 0, width, height);
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SYM(glClearColor)(0.2f, 0.2f, 0.2f, 1.0f);
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SYM(glClear)(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
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SYM(glEnable)(GL_DEPTH_TEST);
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SYM(glFrontFace)(GL_CW); // When we flip vertically, orientation changes.
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SYM(glEnable)(GL_CULL_FACE);
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SYM(glEnable)(GL_BLEND);
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for (unsigned i = 0; i < meshes.size(); i++)
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meshes[i]->render();
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SYM(glDisable)(GL_BLEND);
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SYM(glDisable)(GL_DEPTH_TEST);
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SYM(glDisable)(GL_CULL_FACE);
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SYM(glBindFramebuffer)(GL_FRAMEBUFFER, 0);
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video_cb(RETRO_HW_FRAME_BUFFER_VALID, width, height, 0);
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}
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static void init_mesh(const string& path)
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{
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retro_stderr("Loading Mesh ...\n");
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static const string vertex_shader =
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"uniform mat4 uModel;\n"
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"uniform mat4 uMVP;\n"
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"attribute vec4 aVertex;\n"
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"attribute vec3 aNormal;\n"
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"attribute vec2 aTex;\n"
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"varying vec4 vNormal;\n"
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"varying vec2 vTex;\n"
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"varying vec4 vPos;\n"
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"void main() {\n"
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" gl_Position = uMVP * aVertex;\n"
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" vTex = vec2(aTex.x, 1.0 - aTex.y);\n"
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" vPos = uModel * aVertex;\n"
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" vNormal = uModel * vec4(aNormal, 0.0);\n"
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"}";
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static const string fragment_shader =
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"#ifdef GL_ES\n"
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"precision mediump float;\n"
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"#endif\n"
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"varying vec2 vTex;\n"
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"varying vec4 vNormal;\n"
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"varying vec4 vPos;\n"
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"uniform sampler2D sDiffuse;\n"
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"uniform sampler2D sAmbient;\n"
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"uniform vec3 uLightDir;\n"
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"uniform vec3 uLightAmbient;\n"
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"uniform vec3 uMTLAmbient;\n"
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"uniform float uMTLAlphaMod;\n"
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"uniform vec3 uMTLDiffuse;\n"
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"uniform vec3 uMTLSpecular;\n"
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"uniform float uMTLSpecularPower;\n"
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"void main() {\n"
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" vec4 colorDiffuseFull = texture2D(sDiffuse, vTex);\n"
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" vec4 colorAmbientFull = texture2D(sAmbient, vTex);\n"
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" if (colorDiffuseFull.a < 0.5)\n"
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" discard;\n"
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" vec3 colorDiffuse = mix(uMTLDiffuse, colorDiffuseFull.rgb, vec3(colorDiffuseFull.a));\n"
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" vec3 colorAmbient = mix(uMTLAmbient, colorAmbientFull.rgb, vec3(colorAmbientFull.a));\n"
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" vec3 normal = normalize(vNormal.xyz);\n"
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" float directivity = dot(uLightDir, -normal);\n"
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" vec3 diffuse = colorDiffuse * clamp(directivity, 0.0, 1.0);\n"
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" vec3 ambient = colorAmbient * uLightAmbient;\n"
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" vec3 modelToFace = normalize(-vPos.xyz);\n"
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" float specularity = pow(clamp(dot(modelToFace, reflect(uLightDir, normal)), 0.0, 1.0), uMTLSpecularPower);\n"
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" vec3 specular = uMTLSpecular * specularity;\n"
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" gl_FragColor = vec4(diffuse + ambient + specular, uMTLAlphaMod * colorDiffuseFull.a);\n"
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"}";
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shared_ptr<Shader> shader(new Shader(vertex_shader, fragment_shader));
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meshes = OBJ::load_from_file(path);
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mat4 projection = scale(mat4(1.0), vec3(1, -1, 1)) * perspective(45.0f, 640.0f / 480.0f, 1.0f, 100.0f);
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for (unsigned i = 0; i < meshes.size(); i++)
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{
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meshes[i]->set_projection(projection);
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meshes[i]->set_shader(shader);
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}
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}
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static void context_reset(void)
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{
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dead_state = true;
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meshes.clear();
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dead_state = false;
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GL::set_function_cb(hw_render.get_proc_address);
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GL::init_symbol_map();
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init_mesh(mesh_path);
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}
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bool retro_load_game(const struct retro_game_info *info)
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{
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enum retro_pixel_format fmt = RETRO_PIXEL_FORMAT_XRGB8888;
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if (!environ_cb(RETRO_ENVIRONMENT_SET_PIXEL_FORMAT, &fmt))
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{
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retro_stderr("XRGB8888 is not supported.");
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return false;
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}
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#ifdef GLES
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hw_render.context_type = RETRO_HW_CONTEXT_OPENGLES2;
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#else
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hw_render.context_type = RETRO_HW_CONTEXT_OPENGL;
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#endif
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hw_render.context_reset = context_reset;
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hw_render.depth = true;
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if (!environ_cb(RETRO_ENVIRONMENT_SET_HW_RENDER, &hw_render))
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return false;
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mesh_path = info->path;
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update_variables();
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return true;
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}
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void retro_unload_game(void)
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{
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dead_state = true;
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}
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unsigned retro_get_region(void)
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{
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return RETRO_REGION_NTSC;
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}
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bool retro_load_game_special(unsigned, const struct retro_game_info *, size_t)
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{
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return false;
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}
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size_t retro_serialize_size(void)
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{
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return 0;
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}
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bool retro_serialize(void *, size_t)
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{
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return false;
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}
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bool retro_unserialize(const void *, size_t)
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{
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return false;
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}
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void *retro_get_memory_data(unsigned)
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{
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return NULL;
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}
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size_t retro_get_memory_size(unsigned)
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{
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return 0;
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}
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void retro_reset(void)
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{}
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void retro_cheat_reset(void)
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{}
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void retro_cheat_set(unsigned, bool, const char *)
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{
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}
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