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* Use 2024 style edition Signed-off-by: Simon Wülker <simon.wuelker@arcor.de> * Reformat all code Signed-off-by: Simon Wülker <simon.wuelker@arcor.de> --------- Signed-off-by: Simon Wülker <simon.wuelker@arcor.de>
620 lines
20 KiB
Rust
620 lines
20 KiB
Rust
/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at https://mozilla.org/MPL/2.0/. */
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#![allow(unused_imports)]
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// https://www.khronos.org/registry/webgl/specs/latest/1.0/webgl.idl
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use std::cell::Cell;
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use std::cmp;
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use canvas_traits::webgl::{
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TexDataType, TexFormat, TexParameter, TexParameterBool, TexParameterInt, WebGLCommand,
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WebGLError, WebGLResult, WebGLTextureId, webgl_channel,
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};
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use dom_struct::dom_struct;
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use crate::dom::bindings::cell::DomRefCell;
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use crate::dom::bindings::codegen::Bindings::EXTTextureFilterAnisotropicBinding::EXTTextureFilterAnisotropicConstants;
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use crate::dom::bindings::codegen::Bindings::WebGL2RenderingContextBinding::WebGL2RenderingContextConstants as constants;
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use crate::dom::bindings::inheritance::Castable;
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use crate::dom::bindings::reflector::{DomGlobal, reflect_dom_object};
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use crate::dom::bindings::root::{Dom, DomRoot, MutNullableDom};
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use crate::dom::webgl_validations::types::TexImageTarget;
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use crate::dom::webglframebuffer::WebGLFramebuffer;
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use crate::dom::webglobject::WebGLObject;
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use crate::dom::webglrenderingcontext::{Operation, WebGLRenderingContext};
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#[cfg(feature = "webxr")]
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use crate::dom::xrsession::XRSession;
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use crate::script_runtime::CanGc;
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pub(crate) enum TexParameterValue {
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Float(f32),
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Int(i32),
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Bool(bool),
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}
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// Textures generated for WebXR are owned by the WebXR device, not by the WebGL thread
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// so the GL texture should not be deleted when the texture is garbage collected.
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#[cfg_attr(crown, crown::unrooted_must_root_lint::must_root)]
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#[derive(JSTraceable, MallocSizeOf)]
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enum WebGLTextureOwner {
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WebGL,
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#[cfg(feature = "webxr")]
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WebXR(Dom<XRSession>),
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}
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const MAX_LEVEL_COUNT: usize = 31;
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const MAX_FACE_COUNT: usize = 6;
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#[dom_struct]
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pub(crate) struct WebGLTexture {
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webgl_object: WebGLObject,
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#[no_trace]
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id: WebGLTextureId,
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/// The target to which this texture was bound the first time
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target: Cell<Option<u32>>,
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is_deleted: Cell<bool>,
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owner: WebGLTextureOwner,
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/// Stores information about mipmap levels and cubemap faces.
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#[ignore_malloc_size_of = "Arrays are cumbersome"]
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image_info_array: DomRefCell<[Option<ImageInfo>; MAX_LEVEL_COUNT * MAX_FACE_COUNT]>,
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/// Face count can only be 1 or 6
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face_count: Cell<u8>,
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base_mipmap_level: u32,
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// Store information for min and mag filters
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min_filter: Cell<u32>,
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mag_filter: Cell<u32>,
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/// Framebuffer that this texture is attached to.
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attached_framebuffer: MutNullableDom<WebGLFramebuffer>,
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/// Number of immutable levels.
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immutable_levels: Cell<Option<u32>>,
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}
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impl WebGLTexture {
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fn new_inherited(
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context: &WebGLRenderingContext,
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id: WebGLTextureId,
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#[cfg(feature = "webxr")] owner: Option<&XRSession>,
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) -> Self {
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Self {
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webgl_object: WebGLObject::new_inherited(context),
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id,
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target: Cell::new(None),
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is_deleted: Cell::new(false),
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#[cfg(feature = "webxr")]
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owner: owner
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.map(|session| WebGLTextureOwner::WebXR(Dom::from_ref(session)))
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.unwrap_or(WebGLTextureOwner::WebGL),
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#[cfg(not(feature = "webxr"))]
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owner: WebGLTextureOwner::WebGL,
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immutable_levels: Cell::new(None),
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face_count: Cell::new(0),
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base_mipmap_level: 0,
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min_filter: Cell::new(constants::NEAREST_MIPMAP_LINEAR),
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mag_filter: Cell::new(constants::LINEAR),
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image_info_array: DomRefCell::new([None; MAX_LEVEL_COUNT * MAX_FACE_COUNT]),
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attached_framebuffer: Default::default(),
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}
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}
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pub(crate) fn maybe_new(context: &WebGLRenderingContext) -> Option<DomRoot<Self>> {
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let (sender, receiver) = webgl_channel().unwrap();
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context.send_command(WebGLCommand::CreateTexture(sender));
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receiver
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.recv()
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.unwrap()
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.map(|id| WebGLTexture::new(context, id, CanGc::note()))
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}
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pub(crate) fn new(
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context: &WebGLRenderingContext,
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id: WebGLTextureId,
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can_gc: CanGc,
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) -> DomRoot<Self> {
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reflect_dom_object(
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Box::new(WebGLTexture::new_inherited(
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context,
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id,
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#[cfg(feature = "webxr")]
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None,
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)),
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&*context.global(),
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can_gc,
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)
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}
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#[cfg(feature = "webxr")]
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pub(crate) fn new_webxr(
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context: &WebGLRenderingContext,
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id: WebGLTextureId,
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session: &XRSession,
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can_gc: CanGc,
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) -> DomRoot<Self> {
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reflect_dom_object(
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Box::new(WebGLTexture::new_inherited(context, id, Some(session))),
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&*context.global(),
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can_gc,
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)
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}
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}
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impl WebGLTexture {
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pub(crate) fn id(&self) -> WebGLTextureId {
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self.id
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}
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// NB: Only valid texture targets come here
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pub(crate) fn bind(&self, target: u32) -> WebGLResult<()> {
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if self.is_invalid() {
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return Err(WebGLError::InvalidOperation);
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}
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if let Some(previous_target) = self.target.get() {
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if target != previous_target {
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return Err(WebGLError::InvalidOperation);
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}
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} else {
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// This is the first time binding
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let face_count = match target {
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constants::TEXTURE_2D => 1,
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constants::TEXTURE_CUBE_MAP => 6,
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_ => return Err(WebGLError::InvalidEnum),
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};
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self.face_count.set(face_count);
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self.target.set(Some(target));
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}
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self.upcast::<WebGLObject>()
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.context()
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.send_command(WebGLCommand::BindTexture(target, Some(self.id)));
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Ok(())
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}
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#[allow(clippy::too_many_arguments)]
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pub(crate) fn initialize(
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&self,
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target: TexImageTarget,
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width: u32,
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height: u32,
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depth: u32,
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internal_format: TexFormat,
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level: u32,
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data_type: Option<TexDataType>,
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) -> WebGLResult<()> {
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let image_info = ImageInfo {
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width,
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height,
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depth,
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internal_format,
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data_type,
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};
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let face_index = self.face_index_for_target(&target);
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self.set_image_infos_at_level_and_face(level, face_index, image_info);
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if let Some(fb) = self.attached_framebuffer.get() {
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fb.update_status();
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}
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Ok(())
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}
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pub(crate) fn generate_mipmap(&self) -> WebGLResult<()> {
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let target = match self.target.get() {
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Some(target) => target,
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None => {
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error!("Cannot generate mipmap on texture that has no target!");
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return Err(WebGLError::InvalidOperation);
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},
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};
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let base_image_info = self.base_image_info().ok_or(WebGLError::InvalidOperation)?;
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let is_cubic = target == constants::TEXTURE_CUBE_MAP;
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if is_cubic && !self.is_cube_complete() {
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return Err(WebGLError::InvalidOperation);
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}
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if !base_image_info.is_power_of_two() {
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return Err(WebGLError::InvalidOperation);
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}
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if base_image_info.is_compressed_format() {
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return Err(WebGLError::InvalidOperation);
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}
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self.upcast::<WebGLObject>()
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.context()
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.send_command(WebGLCommand::GenerateMipmap(target));
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if self.base_mipmap_level + base_image_info.get_max_mimap_levels() == 0 {
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return Err(WebGLError::InvalidOperation);
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}
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let last_level = self.base_mipmap_level + base_image_info.get_max_mimap_levels() - 1;
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self.populate_mip_chain(self.base_mipmap_level, last_level)
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}
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pub(crate) fn delete(&self, operation_fallibility: Operation) {
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if !self.is_deleted.get() {
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self.is_deleted.set(true);
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let context = self.upcast::<WebGLObject>().context();
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/*
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If a texture object is deleted while its image is attached to one or more attachment
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points in a currently bound framebuffer, then it is as if FramebufferTexture had been
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called, with a texture of zero, for each attachment point to which this im-age was
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attached in that framebuffer. In other words, this texture image is firstdetached from
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all attachment points in a currently bound framebuffer.
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- GLES 3.0, 4.4.2.3, "Attaching Texture Images to a Framebuffer"
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*/
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if let Some(fb) = context.get_draw_framebuffer_slot().get() {
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let _ = fb.detach_texture(self);
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}
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if let Some(fb) = context.get_read_framebuffer_slot().get() {
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let _ = fb.detach_texture(self);
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}
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// We don't delete textures owned by WebXR
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#[cfg(feature = "webxr")]
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if let WebGLTextureOwner::WebXR(_) = self.owner {
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return;
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}
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let cmd = WebGLCommand::DeleteTexture(self.id);
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match operation_fallibility {
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Operation::Fallible => context.send_command_ignored(cmd),
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Operation::Infallible => context.send_command(cmd),
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}
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}
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}
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pub(crate) fn is_invalid(&self) -> bool {
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// https://immersive-web.github.io/layers/#xrwebglsubimagetype
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#[cfg(feature = "webxr")]
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if let WebGLTextureOwner::WebXR(ref session) = self.owner {
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if session.is_outside_raf() {
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return true;
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}
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}
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self.is_deleted.get()
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}
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pub(crate) fn is_immutable(&self) -> bool {
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self.immutable_levels.get().is_some()
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}
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pub(crate) fn target(&self) -> Option<u32> {
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self.target.get()
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}
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pub(crate) fn maybe_get_tex_parameter(&self, param: TexParameter) -> Option<TexParameterValue> {
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match param {
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TexParameter::Int(TexParameterInt::TextureImmutableLevels) => Some(
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TexParameterValue::Int(self.immutable_levels.get().unwrap_or(0) as i32),
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),
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TexParameter::Bool(TexParameterBool::TextureImmutableFormat) => {
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Some(TexParameterValue::Bool(self.is_immutable()))
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},
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_ => None,
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}
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}
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/// We have to follow the conversion rules for GLES 2.0. See:
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/// <https://www.khronos.org/webgl/public-mailing-list/archives/1008/msg00014.html>
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pub(crate) fn tex_parameter(&self, param: u32, value: TexParameterValue) -> WebGLResult<()> {
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let target = self.target().unwrap();
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let (int_value, float_value) = match value {
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TexParameterValue::Int(int_value) => (int_value, int_value as f32),
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TexParameterValue::Float(float_value) => (float_value as i32, float_value),
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TexParameterValue::Bool(_) => unreachable!("no settable tex params should be booleans"),
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};
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let update_filter = |filter: &Cell<u32>| {
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if filter.get() == int_value as u32 {
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return Ok(());
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}
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filter.set(int_value as u32);
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self.upcast::<WebGLObject>()
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.context()
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.send_command(WebGLCommand::TexParameteri(target, param, int_value));
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Ok(())
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};
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match param {
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constants::TEXTURE_MIN_FILTER => match int_value as u32 {
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constants::NEAREST |
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constants::LINEAR |
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constants::NEAREST_MIPMAP_NEAREST |
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constants::LINEAR_MIPMAP_NEAREST |
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constants::NEAREST_MIPMAP_LINEAR |
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constants::LINEAR_MIPMAP_LINEAR => update_filter(&self.min_filter),
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_ => Err(WebGLError::InvalidEnum),
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},
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constants::TEXTURE_MAG_FILTER => match int_value as u32 {
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constants::NEAREST | constants::LINEAR => update_filter(&self.mag_filter),
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_ => Err(WebGLError::InvalidEnum),
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},
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constants::TEXTURE_WRAP_S | constants::TEXTURE_WRAP_T => match int_value as u32 {
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constants::CLAMP_TO_EDGE | constants::MIRRORED_REPEAT | constants::REPEAT => {
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self.upcast::<WebGLObject>()
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.context()
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.send_command(WebGLCommand::TexParameteri(target, param, int_value));
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Ok(())
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},
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_ => Err(WebGLError::InvalidEnum),
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},
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EXTTextureFilterAnisotropicConstants::TEXTURE_MAX_ANISOTROPY_EXT => {
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// NaN is not less than 1., what a time to be alive.
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if float_value < 1. || !float_value.is_normal() {
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return Err(WebGLError::InvalidValue);
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}
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self.upcast::<WebGLObject>()
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.context()
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.send_command(WebGLCommand::TexParameterf(target, param, float_value));
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Ok(())
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},
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_ => Err(WebGLError::InvalidEnum),
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}
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}
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pub(crate) fn min_filter(&self) -> u32 {
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self.min_filter.get()
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}
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pub(crate) fn mag_filter(&self) -> u32 {
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self.mag_filter.get()
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}
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pub(crate) fn is_using_linear_filtering(&self) -> bool {
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let filters = [self.min_filter.get(), self.mag_filter.get()];
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filters.iter().any(|filter| {
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matches!(
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*filter,
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constants::LINEAR |
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constants::NEAREST_MIPMAP_LINEAR |
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constants::LINEAR_MIPMAP_NEAREST |
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constants::LINEAR_MIPMAP_LINEAR
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)
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})
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}
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pub(crate) fn populate_mip_chain(&self, first_level: u32, last_level: u32) -> WebGLResult<()> {
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let base_image_info = self
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.image_info_at_face(0, first_level)
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.ok_or(WebGLError::InvalidOperation)?;
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let mut ref_width = base_image_info.width;
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let mut ref_height = base_image_info.height;
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if ref_width == 0 || ref_height == 0 {
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return Err(WebGLError::InvalidOperation);
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}
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for level in (first_level + 1)..last_level {
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if ref_width == 1 && ref_height == 1 {
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break;
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}
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ref_width = cmp::max(1, ref_width / 2);
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ref_height = cmp::max(1, ref_height / 2);
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let image_info = ImageInfo {
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width: ref_width,
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height: ref_height,
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depth: 0,
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internal_format: base_image_info.internal_format,
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data_type: base_image_info.data_type,
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};
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self.set_image_infos_at_level(level, image_info);
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}
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Ok(())
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}
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fn is_cube_complete(&self) -> bool {
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debug_assert_eq!(self.face_count.get(), 6);
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let image_info = match self.base_image_info() {
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Some(info) => info,
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None => return false,
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};
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let ref_width = image_info.width;
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let ref_format = image_info.internal_format;
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for face in 0..self.face_count.get() {
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let current_image_info = match self.image_info_at_face(face, self.base_mipmap_level) {
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Some(info) => info,
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None => return false,
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};
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// Compares height with width to enforce square dimensions
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if current_image_info.internal_format != ref_format ||
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current_image_info.width != ref_width ||
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current_image_info.height != ref_width
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{
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return false;
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}
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}
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true
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}
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fn face_index_for_target(&self, target: &TexImageTarget) -> u8 {
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match *target {
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TexImageTarget::CubeMapPositiveX => 0,
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TexImageTarget::CubeMapNegativeX => 1,
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TexImageTarget::CubeMapPositiveY => 2,
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TexImageTarget::CubeMapNegativeY => 3,
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TexImageTarget::CubeMapPositiveZ => 4,
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TexImageTarget::CubeMapNegativeZ => 5,
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_ => 0,
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}
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}
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pub(crate) fn image_info_for_target(
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&self,
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target: &TexImageTarget,
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level: u32,
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) -> Option<ImageInfo> {
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let face_index = self.face_index_for_target(target);
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self.image_info_at_face(face_index, level)
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}
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pub(crate) fn image_info_at_face(&self, face: u8, level: u32) -> Option<ImageInfo> {
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let pos = (level * self.face_count.get() as u32) + face as u32;
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self.image_info_array.borrow()[pos as usize]
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}
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fn set_image_infos_at_level(&self, level: u32, image_info: ImageInfo) {
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for face in 0..self.face_count.get() {
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self.set_image_infos_at_level_and_face(level, face, image_info);
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}
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}
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fn set_image_infos_at_level_and_face(&self, level: u32, face: u8, image_info: ImageInfo) {
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debug_assert!(face < self.face_count.get());
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let pos = (level * self.face_count.get() as u32) + face as u32;
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self.image_info_array.borrow_mut()[pos as usize] = Some(image_info);
|
|
}
|
|
|
|
fn base_image_info(&self) -> Option<ImageInfo> {
|
|
assert!((self.base_mipmap_level as usize) < MAX_LEVEL_COUNT);
|
|
|
|
self.image_info_at_face(0, self.base_mipmap_level)
|
|
}
|
|
|
|
pub(crate) fn attach_to_framebuffer(&self, fb: &WebGLFramebuffer) {
|
|
self.attached_framebuffer.set(Some(fb));
|
|
}
|
|
|
|
pub(crate) fn detach_from_framebuffer(&self) {
|
|
self.attached_framebuffer.set(None);
|
|
}
|
|
|
|
pub(crate) fn storage(
|
|
&self,
|
|
target: TexImageTarget,
|
|
levels: u32,
|
|
internal_format: TexFormat,
|
|
width: u32,
|
|
height: u32,
|
|
depth: u32,
|
|
) -> WebGLResult<()> {
|
|
// Handled by the caller
|
|
assert!(!self.is_immutable());
|
|
assert!(self.target().is_some());
|
|
|
|
let target_id = target.as_gl_constant();
|
|
let command = match target {
|
|
TexImageTarget::Texture2D | TexImageTarget::CubeMap => {
|
|
WebGLCommand::TexStorage2D(target_id, levels, internal_format, width, height)
|
|
},
|
|
TexImageTarget::Texture3D | TexImageTarget::Texture2DArray => {
|
|
WebGLCommand::TexStorage3D(target_id, levels, internal_format, width, height, depth)
|
|
},
|
|
_ => unreachable!(), // handled by the caller
|
|
};
|
|
self.upcast::<WebGLObject>().context().send_command(command);
|
|
|
|
let mut width = width;
|
|
let mut height = height;
|
|
let mut depth = depth;
|
|
for level in 0..levels {
|
|
let image_info = ImageInfo {
|
|
width,
|
|
height,
|
|
depth,
|
|
internal_format,
|
|
data_type: None,
|
|
};
|
|
self.set_image_infos_at_level(level, image_info);
|
|
|
|
width = cmp::max(1, width / 2);
|
|
height = cmp::max(1, height / 2);
|
|
depth = cmp::max(1, depth / 2);
|
|
}
|
|
|
|
self.immutable_levels.set(Some(levels));
|
|
|
|
if let Some(fb) = self.attached_framebuffer.get() {
|
|
fb.update_status();
|
|
}
|
|
|
|
Ok(())
|
|
}
|
|
}
|
|
|
|
impl Drop for WebGLTexture {
|
|
fn drop(&mut self) {
|
|
self.delete(Operation::Fallible);
|
|
}
|
|
}
|
|
|
|
#[derive(Clone, Copy, Debug, JSTraceable, MallocSizeOf, PartialEq)]
|
|
pub(crate) struct ImageInfo {
|
|
width: u32,
|
|
height: u32,
|
|
depth: u32,
|
|
#[no_trace]
|
|
internal_format: TexFormat,
|
|
#[no_trace]
|
|
data_type: Option<TexDataType>,
|
|
}
|
|
|
|
impl ImageInfo {
|
|
pub(crate) fn width(&self) -> u32 {
|
|
self.width
|
|
}
|
|
|
|
pub(crate) fn height(&self) -> u32 {
|
|
self.height
|
|
}
|
|
|
|
pub(crate) fn internal_format(&self) -> TexFormat {
|
|
self.internal_format
|
|
}
|
|
|
|
pub(crate) fn data_type(&self) -> Option<TexDataType> {
|
|
self.data_type
|
|
}
|
|
|
|
fn is_power_of_two(&self) -> bool {
|
|
self.width.is_power_of_two() &&
|
|
self.height.is_power_of_two() &&
|
|
self.depth.is_power_of_two()
|
|
}
|
|
|
|
fn get_max_mimap_levels(&self) -> u32 {
|
|
let largest = cmp::max(cmp::max(self.width, self.height), self.depth);
|
|
if largest == 0 {
|
|
return 0;
|
|
}
|
|
// FloorLog2(largest) + 1
|
|
(largest as f64).log2() as u32 + 1
|
|
}
|
|
|
|
fn is_compressed_format(&self) -> bool {
|
|
self.internal_format.is_compressed()
|
|
}
|
|
}
|
|
|
|
#[derive(Clone, Copy, Debug, JSTraceable, MallocSizeOf)]
|
|
pub(crate) enum TexCompressionValidation {
|
|
None,
|
|
S3TC,
|
|
}
|
|
|
|
#[derive(Clone, Copy, Debug, JSTraceable, MallocSizeOf)]
|
|
pub(crate) struct TexCompression {
|
|
#[no_trace]
|
|
pub(crate) format: TexFormat,
|
|
pub(crate) bytes_per_block: u8,
|
|
pub(crate) block_width: u8,
|
|
pub(crate) block_height: u8,
|
|
pub(crate) validation: TexCompressionValidation,
|
|
}
|