Files
MobileGL/MG/MG_GL/State/Framebuffer/FramebufferState.cpp
T

183 lines
6.6 KiB
C++

//
// Created by BZLZHH on 2025/5/3.
//
// TODO: Add more gl error check for framebuffer state manager.
// TODO: Check if the state machine really meets up to OpenGL 3 standard.
#include "FramebufferState.h"
// Re-Include Includes.h, cuz of the absence of GLState.h
#undef MOBILEGL_GLSTATE_H
#include "../../../Includes.h"
GLenum FramebufferState::Create(GLuint* framebuffer) {
if (!framebuffer) return GL_INVALID_VALUE;
GLuint id = freeIds_.empty() ? ++lastId_ : *freeIds_.begin();
if (!freeIds_.empty()) freeIds_.erase(freeIds_.begin());
*framebuffer = id;
framebuffers_[id].generated = true;
return GL_NO_ERROR;
}
GLenum FramebufferState::CreateN(GLsizei n, GLuint* framebuffers) {
if (n < 0) return GL_INVALID_VALUE;
for (GLsizei i = 0; i < n; ++i) {
if (GLenum err = Create(&framebuffers[i])) return err;
}
return GL_NO_ERROR;
}
GLenum FramebufferState::Delete(GLuint framebuffer) {
if (framebuffer == 0) return GL_INVALID_VALUE;
if (framebuffers_.erase(framebuffer)) {
// TODO: Prevent the object that uses a freeId from conflicting with legacy object in the backend.
//freeIds_.insert(framebuffer);
for (auto& [target, id] : currentBindings_) {
if (id == framebuffer) id = 0;
}
}
return GL_NO_ERROR;
}
GLenum FramebufferState::Bind(GLenum target, GLuint framebuffer) {
if (MG_Constants::Framebuffer::VALID_TARGETS.find(target) == MG_Constants::Framebuffer::VALID_TARGETS.end())
return GL_INVALID_ENUM;
if (framebuffer != 0 && !ValidateHandle(framebuffer))
return GL_INVALID_OPERATION;
if (target == GL_FRAMEBUFFER) {
currentBindings_[GL_READ_FRAMEBUFFER] = framebuffer;
currentBindings_[GL_DRAW_FRAMEBUFFER] = framebuffer;
} else {
currentBindings_[target] = framebuffer;
}
return GL_NO_ERROR;
}
GLenum FramebufferState::AttachTexture2D(GLenum target, GLenum attachment,
GLenum textarget, GLuint texture, GLint level) {
if (MG_Constants::Framebuffer::VALID_ATTACHMENTS.find(attachment) == MG_Constants::Framebuffer::VALID_ATTACHMENTS.end() ||
MG_Constants::Texture::VALID_TARGETS.find(textarget) == MG_Constants::Texture::VALID_TARGETS.end())
return GL_INVALID_ENUM;
if (target == GL_FRAMEBUFFER) {
target = GL_DRAW_FRAMEBUFFER;
// if (currentBindings_[GL_READ_FRAMEBUFFER] == currentBindings_[GL_DRAW_FRAMEBUFFER]) {
// target = GL_DRAW_FRAMEBUFFER;
// } else {
// if (currentBindings_[GL_READ_FRAMEBUFFER] != 0) {
// GLenum err = AttachTexture2D(GL_READ_FRAMEBUFFER, attachment, textarget, texture, level);
// if (err != GL_NO_ERROR)
// return err;
// }
// if (currentBindings_[GL_DRAW_FRAMEBUFFER] != 0) {
// GLenum err = AttachTexture2D(GL_DRAW_FRAMEBUFFER, attachment, textarget, texture, level);
// if (err != GL_NO_ERROR)
// return err;
// }
// return GL_NO_ERROR;
// }
}
FramebufferObject* fbo = GetCurrentFBO(target);
if (!fbo) return GL_INVALID_OPERATION;
if (texture != 0 && !MG_State_T::textureState->IsTexture(texture))
return GL_INVALID_VALUE;
FramebufferAttachment att;
att.type = GL_TEXTURE_2D;
att.handle = texture;
att.mipLevel = level;
fbo->attachments[attachment] = att;
if (texture != 0) {
GLint params = 0;
MG_State_T::textureState->QueryLevelPropertyIntVector(
textarget, level, GL_TEXTURE_WIDTH, &params);
fbo->width = params;
MG_State_T::textureState->QueryLevelPropertyIntVector(
textarget, level, GL_TEXTURE_HEIGHT, &params);
fbo->height = params;
}
UpdateCompleteness(*fbo);
return GL_NO_ERROR;
}
GLenum FramebufferState::ValidateCompleteness(GLenum target) {
if (target == GL_FRAMEBUFFER) target = GL_DRAW_FRAMEBUFFER;
FramebufferObject* fbo = GetCurrentFBO(target);
if (!fbo) return GL_INVALID_OPERATION;
return fbo->status;
}
void FramebufferState::UpdateCompleteness(FramebufferObject& fbo) {
if (fbo.attachments.empty()) {
fbo.status = GL_FRAMEBUFFER_INCOMPLETE_MISSING_ATTACHMENT;
return;
}
bool hasColor = false;
bool hasDepth = false;
bool hasStencil = false;
GLsizei width = 0, height = 0;
for (const auto& [attach, att] : fbo.attachments) {
GLsizei attWidth = 0, attHeight = 0;
if (att.handle != 0) {
GLint params = 0;
MG_State_T::textureState->QueryLevelPropertyIntVector(
GL_TEXTURE_2D, att.mipLevel, GL_TEXTURE_WIDTH, &params);
attWidth = params;
MG_State_T::textureState->QueryLevelPropertyIntVector(
GL_TEXTURE_2D, att.mipLevel, GL_TEXTURE_HEIGHT, &params);
attHeight = params;
}
if (width == 0) {
width = attWidth;
height = attHeight;
} else if (attWidth != width || attHeight != height) {
fbo.status = GL_FRAMEBUFFER_INCOMPLETE_DIMENSIONS;
return;
}
if (attach == GL_DEPTH_ATTACHMENT) hasDepth = true;
if (attach == GL_STENCIL_ATTACHMENT) hasStencil = true;
if (attach >= GL_COLOR_ATTACHMENT0 &&
attach <= GL_COLOR_ATTACHMENT31) hasColor = true;
}
if (!ValidateAttachmentCombination(fbo)) {
fbo.status = GL_FRAMEBUFFER_UNSUPPORTED;
return;
}
fbo.status = GL_FRAMEBUFFER_COMPLETE;
}
bool FramebufferState::ValidateAttachmentCombination(const FramebufferObject& fbo) {
bool depthStencilConflict = false;
for (const auto& [attach, att] : fbo.attachments) {
if (attach == GL_DEPTH_STENCIL_ATTACHMENT) {
GLint internalFormat = 0;
MG_State_T::textureState->QueryLevelPropertyIntVector(
GL_TEXTURE_2D, att.mipLevel, GL_TEXTURE_INTERNAL_FORMAT, &internalFormat);
if (internalFormat != GL_DEPTH24_STENCIL8 &&
internalFormat != GL_DEPTH32F_STENCIL8) {
return false;
}
}
}
return true;
}
FramebufferObject* FramebufferState::GetCurrentFBO(GLenum target) {
auto it = currentBindings_.find(target);
if (it == currentBindings_.end()) return nullptr;
GLuint id = it->second;
if (id == 0) return nullptr;
auto fboIt = framebuffers_.find(id);
return (fboIt != framebuffers_.end()) ? &fboIt->second : nullptr;
}
bool FramebufferState::ValidateHandle(GLuint framebuffer) {
return framebuffers_.count(framebuffer) &&
framebuffers_[framebuffer].generated;
}