467 lines
14 KiB
C
467 lines
14 KiB
C
#include "iron_gpu.h"
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#include "iron_math.h"
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#include "iron_system.h"
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#include <string.h>
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static gpu_buffer_t constant_buffer;
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static bool gpu_thrown = false;
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static gpu_texture_t textures_to_destroy[128];
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static gpu_buffer_t buffers_to_destroy[128];
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static gpu_pipeline_t pipelines_to_destroy[128];
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static int textures_to_destroy_count = 0;
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static int buffers_to_destroy_count = 0;
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static int pipelines_to_destroy_count = 0;
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extern int draw_vb_index;
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uint32_t constant_buffer_index = 0;
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uint32_t draw_calls = 0;
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uint32_t draw_calls_last = 0;
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bool gpu_in_use = false;
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gpu_texture_t *current_textures[GPU_MAX_TEXTURES] = {NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL};
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gpu_texture_t *current_render_targets[8] = {NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL};
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uint32_t current_render_targets_count = 0;
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gpu_texture_t *current_depth_buffer = NULL;
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gpu_pipeline_t *current_pipeline = NULL;
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gpu_texture_t framebuffers[GPU_FRAMEBUFFER_COUNT];
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gpu_texture_t framebuffer_depth;
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uint32_t framebuffer_index = 0;
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void gpu_init(int depth_buffer_bits, bool vsync) {
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gpu_init_internal(depth_buffer_bits, vsync);
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gpu_constant_buffer_init(&constant_buffer, GPU_CONSTANT_BUFFER_SIZE * GPU_CONSTANT_BUFFER_MULTIPLE);
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gpu_constant_buffer_lock(&constant_buffer, 0, GPU_CONSTANT_BUFFER_SIZE);
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}
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void gpu_begin(gpu_texture_t **targets, int count, gpu_texture_t *depth_buffer, gpu_clear_t flags, unsigned color, float depth) {
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if (gpu_in_use && !gpu_thrown) {
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gpu_thrown = true;
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iron_log("End before you begin");
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}
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gpu_in_use = true;
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if (current_render_targets_count > 0 && current_render_targets[0] != &framebuffers[framebuffer_index]) {
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for (int i = 0; i < current_render_targets_count; ++i) {
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gpu_barrier(current_render_targets[i], GPU_TEXTURE_STATE_SHADER_RESOURCE);
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}
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}
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if (current_depth_buffer != NULL) {
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gpu_barrier(current_depth_buffer, GPU_TEXTURE_STATE_SHADER_RESOURCE);
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}
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if (targets == NULL) {
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current_render_targets[0] = &framebuffers[framebuffer_index];
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current_render_targets_count = 1;
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current_depth_buffer = framebuffer_depth.width > 0 ? &framebuffer_depth : NULL;
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}
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else {
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for (int i = 0; i < count; ++i) {
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current_render_targets[i] = targets[i];
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}
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current_render_targets_count = count;
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current_depth_buffer = depth_buffer;
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}
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for (int i = 0; i < current_render_targets_count; ++i) {
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gpu_barrier(current_render_targets[i], GPU_TEXTURE_STATE_RENDER_TARGET);
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}
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if (current_depth_buffer != NULL) {
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gpu_barrier(current_depth_buffer, GPU_TEXTURE_STATE_RENDER_TARGET_DEPTH);
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}
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gpu_begin_internal(flags, color, depth);
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}
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void gpu_draw() {
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if (current_pipeline == NULL || current_pipeline->impl.pipeline == NULL) {
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return;
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}
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gpu_constant_buffer_unlock(&constant_buffer);
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gpu_set_constant_buffer(&constant_buffer, constant_buffer_index * GPU_CONSTANT_BUFFER_SIZE, GPU_CONSTANT_BUFFER_SIZE);
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gpu_draw_internal();
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constant_buffer_index++;
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if (constant_buffer_index >= GPU_CONSTANT_BUFFER_MULTIPLE) {
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constant_buffer_index = 0;
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}
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draw_calls++;
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if (draw_calls + draw_calls_last >= GPU_CONSTANT_BUFFER_MULTIPLE) {
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draw_calls = draw_calls_last = constant_buffer_index = 0;
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gpu_execute_and_wait();
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}
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gpu_constant_buffer_lock(&constant_buffer, constant_buffer_index * GPU_CONSTANT_BUFFER_SIZE, GPU_CONSTANT_BUFFER_SIZE);
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}
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void gpu_end() {
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if (!gpu_in_use && !gpu_thrown) {
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gpu_thrown = true;
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iron_log("Begin before you end");
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}
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gpu_in_use = false;
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gpu_end_internal();
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}
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void gpu_cleanup() {
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while (textures_to_destroy_count > 0) {
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textures_to_destroy_count--;
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gpu_texture_destroy_internal(&textures_to_destroy[textures_to_destroy_count]);
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}
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while (buffers_to_destroy_count > 0) {
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buffers_to_destroy_count--;
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gpu_buffer_destroy_internal(&buffers_to_destroy[buffers_to_destroy_count]);
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}
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while (pipelines_to_destroy_count > 0) {
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pipelines_to_destroy_count--;
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gpu_pipeline_destroy_internal(&pipelines_to_destroy[pipelines_to_destroy_count]);
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}
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}
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bool gpu_cleanup_pending() {
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return textures_to_destroy_count > 0 || buffers_to_destroy_count > 0 || pipelines_to_destroy_count > 0;
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}
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void gpu_present() {
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gpu_present_internal();
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draw_calls_last = draw_calls;
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draw_calls = 0;
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draw_vb_index = 0;
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gpu_cleanup();
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}
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void gpu_resize(int width, int height) {
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if (width == 0 || height == 0) {
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return;
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}
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if (width == framebuffers[0].width && height == framebuffers[0].height) {
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return;
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}
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gpu_resize_internal(width, height);
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}
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void gpu_set_int(int location, int value) {
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int *ints = (int *)(&constant_buffer.data[location]);
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ints[0] = value;
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}
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void gpu_set_int2(int location, int value1, int value2) {
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int *ints = (int *)(&constant_buffer.data[location]);
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ints[0] = value1;
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ints[1] = value2;
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}
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void gpu_set_int3(int location, int value1, int value2, int value3) {
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int *ints = (int *)(&constant_buffer.data[location]);
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ints[0] = value1;
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ints[1] = value2;
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ints[2] = value3;
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}
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void gpu_set_int4(int location, int value1, int value2, int value3, int value4) {
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int *ints = (int *)(&constant_buffer.data[location]);
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ints[0] = value1;
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ints[1] = value2;
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ints[2] = value3;
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ints[3] = value4;
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}
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void gpu_set_ints(int location, int *values, int count) {
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int *ints = (int *)(&constant_buffer.data[location]);
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for (int i = 0; i < count; ++i) {
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ints[i] = values[i];
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}
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}
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void gpu_set_float(int location, float value) {
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float *floats = (float *)(&constant_buffer.data[location]);
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floats[0] = value;
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}
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void gpu_set_float2(int location, float value1, float value2) {
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float *floats = (float *)(&constant_buffer.data[location]);
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floats[0] = value1;
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floats[1] = value2;
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}
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void gpu_set_float3(int location, float value1, float value2, float value3) {
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float *floats = (float *)(&constant_buffer.data[location]);
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floats[0] = value1;
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floats[1] = value2;
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floats[2] = value3;
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}
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void gpu_set_float4(int location, float value1, float value2, float value3, float value4) {
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float *floats = (float *)(&constant_buffer.data[location]);
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floats[0] = value1;
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floats[1] = value2;
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floats[2] = value3;
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floats[3] = value4;
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}
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void gpu_set_floats(int location, f32_array_t *values) {
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float *floats = (float *)(&constant_buffer.data[location]);
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for (int i = 0; i < values->length; ++i) {
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floats[i] = values->buffer[i];
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}
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}
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void gpu_set_bool(int location, bool value) {
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int *ints = (int *)(&constant_buffer.data[location]);
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ints[0] = value ? 1 : 0;
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}
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void gpu_set_mat3(int location, mat3_t value) {
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float *floats = (float *)(&constant_buffer.data[location]);
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for (int y = 0; y < 3; ++y) {
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memcpy(&floats[y * 4], &value.m[y * 3], 3 * sizeof(float));
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}
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}
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void gpu_set_mat4(int location, mat4_t value) {
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memcpy(&constant_buffer.data[location], value.m, 16 * sizeof(float));
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}
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void gpu_vertex_structure_add(gpu_vertex_structure_t *structure, const char *name, gpu_vertex_data_t data) {
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structure->elements[structure->size].name = name;
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structure->elements[structure->size].data = data;
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structure->size++;
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}
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void gpu_pipeline_init(gpu_pipeline_t *pipe) {
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pipe->input_layout = NULL;
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pipe->vertex_shader = NULL;
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pipe->fragment_shader = NULL;
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pipe->cull_mode = GPU_CULL_MODE_NONE;
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pipe->depth_write = false;
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pipe->depth_mode = GPU_COMPARE_MODE_ALWAYS;
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pipe->blend_source = GPU_BLEND_ONE;
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pipe->blend_destination = GPU_BLEND_ZERO;
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pipe->alpha_blend_source = GPU_BLEND_ONE;
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pipe->alpha_blend_destination = GPU_BLEND_ZERO;
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for (int i = 0; i < 8; ++i) {
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pipe->color_write_mask_red[i] = true;
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pipe->color_write_mask_green[i] = true;
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pipe->color_write_mask_blue[i] = true;
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pipe->color_write_mask_alpha[i] = true;
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pipe->color_attachment[i] = GPU_TEXTURE_FORMAT_RGBA32;
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}
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pipe->color_attachment_count = 1;
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pipe->depth_attachment_bits = 0;
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memset(&pipe->impl, 0, sizeof(gpu_pipeline_impl_t));
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}
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void gpu_create_framebuffers(int depth_buffer_bits) {
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for (int i = 0; i < GPU_FRAMEBUFFER_COUNT; ++i) {
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gpu_render_target_init2(&framebuffers[i], iron_window_width(), iron_window_height(), GPU_TEXTURE_FORMAT_RGBA32, i);
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}
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if (depth_buffer_bits > 0) {
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gpu_render_target_init(&framebuffer_depth, iron_window_width(), iron_window_height(), GPU_TEXTURE_FORMAT_D32);
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}
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else {
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framebuffer_depth.width = framebuffer_depth.height = 0;
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}
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}
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void gpu_texture_destroy(gpu_texture_t *texture) {
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textures_to_destroy[textures_to_destroy_count] = *texture;
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textures_to_destroy_count++;
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if (textures_to_destroy_count >= 128) {
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gpu_execute_and_wait();
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gpu_cleanup();
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}
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}
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void gpu_set_pipeline(gpu_pipeline_t *pipeline) {
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current_pipeline = pipeline;
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for (int i = 0; i < GPU_MAX_TEXTURES; ++i) {
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current_textures[i] = NULL;
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}
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if (pipeline->impl.pipeline == NULL) {
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return;
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}
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gpu_set_pipeline_internal(pipeline);
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}
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void gpu_pipeline_destroy(gpu_pipeline_t *pipeline) {
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pipelines_to_destroy[pipelines_to_destroy_count] = *pipeline;
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pipelines_to_destroy_count++;
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if (pipelines_to_destroy_count >= 128) {
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gpu_execute_and_wait();
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gpu_cleanup();
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}
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}
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void gpu_buffer_destroy(gpu_buffer_t *buffer) {
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buffers_to_destroy[buffers_to_destroy_count] = *buffer;
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buffers_to_destroy_count++;
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if (buffers_to_destroy_count >= 128) {
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gpu_execute_and_wait();
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gpu_cleanup();
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}
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}
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uint32_t gpu_vertex_data_size(gpu_vertex_data_t data) {
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switch (data) {
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case GPU_VERTEX_DATA_F32_1X:
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return 1 * 4;
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case GPU_VERTEX_DATA_F32_2X:
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return 2 * 4;
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case GPU_VERTEX_DATA_F32_3X:
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return 3 * 4;
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case GPU_VERTEX_DATA_F32_4X:
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return 4 * 4;
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case GPU_VERTEX_DATA_I16_2X_NORM:
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return 2 * 2;
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case GPU_VERTEX_DATA_I16_4X_NORM:
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return 4 * 2;
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}
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}
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uint32_t gpu_vertex_struct_size(gpu_vertex_structure_t *s) {
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uint32_t size = 0;
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for (int i = 0; i < s->size; ++i) {
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size += gpu_vertex_data_size(s->elements[i].data);
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}
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return size;
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}
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uint32_t gpu_texture_format_size(gpu_texture_format_t format) {
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switch (format) {
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case GPU_TEXTURE_FORMAT_RGBA128:
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return 16;
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case GPU_TEXTURE_FORMAT_RGBA64:
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return 8;
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case GPU_TEXTURE_FORMAT_R16:
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return 2;
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case GPU_TEXTURE_FORMAT_R8:
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return 1;
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default:
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return 4;
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}
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}
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static gpu_buffer_t rt_constant_buffer;
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static gpu_raytrace_pipeline_t rt_pipeline;
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static gpu_acceleration_structure_t rt_accel;
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static bool rt_created = false;
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static bool rt_accel_created = false;
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static const int rt_constant_buffer_size = 24;
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void _gpu_raytrace_init(buffer_t *shader) {
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if (rt_created) {
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gpu_buffer_destroy(&rt_constant_buffer);
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gpu_raytrace_pipeline_destroy(&rt_pipeline);
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}
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rt_created = true;
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gpu_constant_buffer_init(&rt_constant_buffer, rt_constant_buffer_size * 4);
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gpu_raytrace_pipeline_init(&rt_pipeline, shader->buffer, (int)shader->length, &rt_constant_buffer);
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}
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void _gpu_raytrace_as_init() {
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if (rt_accel_created) {
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gpu_raytrace_acceleration_structure_destroy(&rt_accel);
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}
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rt_accel_created = true;
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gpu_raytrace_acceleration_structure_init(&rt_accel);
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}
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void _gpu_raytrace_as_add(struct gpu_buffer *vb, gpu_buffer_t *ib, mat4_t transform) {
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gpu_raytrace_acceleration_structure_add(&rt_accel, vb, ib, transform);
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}
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void _gpu_raytrace_as_build(struct gpu_buffer *vb_full, gpu_buffer_t *ib_full) {
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gpu_raytrace_acceleration_structure_build(&rt_accel, vb_full, ib_full);
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}
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void _gpu_raytrace_dispatch_rays(gpu_texture_t *render_target, buffer_t *buffer) {
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float *cb = (float *)buffer->buffer;
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gpu_constant_buffer_lock(&rt_constant_buffer, 0, rt_constant_buffer.count);
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for (int i = 0; i < rt_constant_buffer_size; ++i) {
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float *floats = (float *)(&rt_constant_buffer.data[i * 4]);
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floats[0] = cb[i];
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}
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gpu_constant_buffer_unlock(&rt_constant_buffer);
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gpu_raytrace_set_acceleration_structure(&rt_accel);
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gpu_raytrace_set_pipeline(&rt_pipeline);
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gpu_raytrace_set_target(render_target);
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gpu_raytrace_dispatch_rays();
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}
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#ifdef WITH_BC7
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#include <iron_thread.h>
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#include <libs/bc7enc.h>
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#define BC7_THREAD_COUNT 16
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typedef struct {
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uint8_t *src;
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uint8_t *dst;
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int width;
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int height;
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int blocks_x;
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int total_blocks;
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volatile int32_t *next_block;
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bc7enc_compress_block_params params;
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} bc7_thread_params_t;
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static void bc7_thread_func(void *arg) {
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bc7_thread_params_t *p = (bc7_thread_params_t *)arg;
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for (;;) {
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int bi = iron_atomic_increment(p->next_block);
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if (bi >= p->total_blocks)
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break;
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int bx = bi % p->blocks_x;
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int by = bi / p->blocks_x;
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uint8_t block[64];
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for (int py = 0; py < 4; py++) {
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for (int px = 0; px < 4; px++) {
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int sx = bx * 4 + px < p->width ? bx * 4 + px : p->width - 1;
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int sy = by * 4 + py < p->height ? by * 4 + py : p->height - 1;
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int src_idx = (sy * p->width + sx) * 4;
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int dst_idx = (py * 4 + px) * 4;
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block[dst_idx + 0] = p->src[src_idx + 0];
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block[dst_idx + 1] = p->src[src_idx + 1];
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block[dst_idx + 2] = p->src[src_idx + 2];
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block[dst_idx + 3] = p->src[src_idx + 3];
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}
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}
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bc7enc_compress_block(p->dst + (size_t)bi * BC7ENC_BLOCK_SIZE, block, &p->params);
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}
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}
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void *gpu_bc7_compress(void *data, int width, int height) {
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int blocks_x = (width + 3) / 4;
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int blocks_y = (height + 3) / 4;
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void *bc7_data = malloc(blocks_x * blocks_y * BC7ENC_BLOCK_SIZE);
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static bc7enc_bool bc7enc_ready = BC7ENC_FALSE;
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if (!bc7enc_ready) {
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bc7enc_compress_block_init();
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bc7enc_ready = BC7ENC_TRUE;
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}
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volatile int32_t next_block = 0;
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bc7_thread_params_t tp = {
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.src = (uint8_t *)data,
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.dst = (uint8_t *)bc7_data,
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.width = width,
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.height = height,
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.blocks_x = blocks_x,
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.total_blocks = blocks_x * blocks_y,
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.next_block = &next_block,
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};
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bc7enc_compress_block_params_init(&tp.params);
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tp.params.m_max_partitions_mode = 0;
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tp.params.m_try_least_squares = false;
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iron_thread_t threads[BC7_THREAD_COUNT];
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for (int i = 0; i < BC7_THREAD_COUNT; i++) {
|
|
iron_thread_init(&threads[i], bc7_thread_func, &tp);
|
|
}
|
|
for (int i = 0; i < BC7_THREAD_COUNT; i++) {
|
|
iron_thread_wait_and_destroy(&threads[i]);
|
|
}
|
|
return bc7_data;
|
|
}
|
|
|
|
#endif
|