2024-02-17 14:43:46 -06:00
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use std::rc::Rc;
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use glam::Vec2;
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use glium::{
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Surface, DrawParameters, Blend,
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Program, VertexBuffer, IndexBuffer,
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backend::{Facade, Context},
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texture::{SrgbTexture2d, RawImage2d},
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index::PrimitiveType,
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implement_vertex,
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uniform, uniforms::{Sampler, SamplerBehavior, SamplerWrapFunction},
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};
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use hui::{
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draw::{TextureAtlasMeta, UiDrawCall, UiVertex}, UiInstance
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};
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const VERTEX_SHADER: &str = include_str!("../shaders/vertex.vert");
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const FRAGMENT_SHADER: &str = include_str!("../shaders/fragment.frag");
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#[derive(Clone, Copy)]
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#[repr(C)]
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struct Vertex {
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position: [f32; 2],
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color: [f32; 4],
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uv: [f32; 2],
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}
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impl From<UiVertex> for Vertex {
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fn from(v: UiVertex) -> Self {
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Self {
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position: v.position.to_array(),
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color: v.color.to_array(),
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uv: v.uv.to_array(),
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}
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}
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}
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implement_vertex!(Vertex, position, color, uv);
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struct BufferPair {
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pub vertex_buffer: glium::VertexBuffer<Vertex>,
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pub index_buffer: glium::IndexBuffer<u32>,
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pub vertex_count: usize,
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pub index_count: usize,
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}
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impl BufferPair {
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pub fn new<F: Facade>(facade: &F) -> Self {
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log::debug!("init ui buffers (empty)...");
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Self {
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vertex_buffer: VertexBuffer::empty_dynamic(facade, 1024).unwrap(),
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index_buffer: IndexBuffer::empty_dynamic(facade, PrimitiveType::TrianglesList, 1024).unwrap(),
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vertex_count: 0,
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index_count: 0,
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}
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}
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pub fn new_with_data<F: Facade>(facade: &F, vtx: &[Vertex], idx: &[u32]) -> Self {
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log::debug!("init ui buffers (data)...");
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Self {
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vertex_buffer: VertexBuffer::dynamic(facade, vtx).unwrap(),
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index_buffer: IndexBuffer::dynamic(facade, PrimitiveType::TrianglesList, idx).unwrap(),
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vertex_count: vtx.len(),
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index_count: idx.len(),
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}
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}
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pub fn ensure_buffer_size(&mut self, need_vtx: usize, need_idx: usize) {
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let current_vtx_size = self.vertex_buffer.get_size() / std::mem::size_of::<Vertex>();
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let current_idx_size = self.index_buffer.get_size() / std::mem::size_of::<u32>();
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//log::debug!("current vtx size: {}, current idx size: {}", current_vtx_size, current_idx_size);
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if current_vtx_size >= need_vtx && current_idx_size >= need_idx {
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return
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}
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let new_vtx_size = (need_vtx + 1).next_power_of_two();
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let new_idx_size = (need_idx + 1).next_power_of_two();
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log::debug!("resizing buffers: vtx {} -> {}, idx {} -> {}", current_vtx_size, new_vtx_size, current_idx_size, new_idx_size);
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if current_vtx_size != new_vtx_size {
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self.vertex_buffer = VertexBuffer::empty_dynamic(
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self.vertex_buffer.get_context(),
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new_vtx_size
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).unwrap();
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}
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if current_idx_size != new_idx_size {
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self.index_buffer = IndexBuffer::empty_dynamic(
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self.index_buffer.get_context(),
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PrimitiveType::TrianglesList,
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new_idx_size
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).unwrap();
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}
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}
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pub fn write_data(&mut self, vtx: &[Vertex], idx: &[u32]) {
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//log::trace!("uploading {} vertices and {} indices", vtx.len(), idx.len());
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self.vertex_count = vtx.len();
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self.index_count = idx.len();
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if self.vertex_count == 0 || self.index_count == 0 {
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self.vertex_buffer.invalidate();
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self.index_buffer.invalidate();
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return
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}
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self.ensure_buffer_size(self.vertex_count, self.index_count);
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self.vertex_buffer.slice_mut(0..self.vertex_count).unwrap().write(vtx);
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self.index_buffer.slice_mut(0..self.index_count).unwrap().write(idx);
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}
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pub fn is_empty(&self) -> bool {
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self.vertex_count == 0 || self.index_count == 0
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}
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}
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pub struct GliumUiRenderer {
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context: Rc<Context>,
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program: glium::Program,
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ui_texture: Option<SrgbTexture2d>,
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buffer_pair: Option<BufferPair>,
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}
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impl GliumUiRenderer {
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pub fn new<F: Facade>(facade: &F) -> Self {
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log::info!("initializing hui-glium");
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Self {
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program: Program::from_source(facade, VERTEX_SHADER, FRAGMENT_SHADER, None).unwrap(),
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context: Rc::clone(facade.get_context()),
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ui_texture: None,
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buffer_pair: None,
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}
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}
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fn update_buffers(&mut self, call: &UiDrawCall) {
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log::trace!("updating ui buffers (tris: {})", call.indices.len() / 3);
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let data_vtx = &call.vertices.iter().copied().map(Vertex::from).collect::<Vec<_>>()[..];
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let data_idx = &call.indices[..];
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if let Some(buffer) = &mut self.buffer_pair {
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buffer.write_data(data_vtx, data_idx);
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} else if !call.indices.is_empty() {
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self.buffer_pair = Some(BufferPair::new_with_data(&self.context, data_vtx, data_idx));
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}
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}
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fn update_texture_atlas(&mut self, atlas: &TextureAtlasMeta) {
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log::trace!("updating ui atlas texture");
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self.ui_texture = Some(SrgbTexture2d::new(
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&self.context,
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RawImage2d::from_raw_rgba(
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atlas.data.to_owned(),
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(atlas.size.x, atlas.size.y)
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)
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).unwrap());
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}
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pub fn update(&mut self, instance: &UiInstance) {
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if self.ui_texture.is_none() || instance.atlas().modified {
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self.update_texture_atlas(&instance.atlas());
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}
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if self.buffer_pair.is_none() || instance.draw_call().0 {
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self.update_buffers(instance.draw_call().1);
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}
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}
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pub fn draw(&self, frame: &mut glium::Frame, resolution: Vec2) {
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let params = DrawParameters {
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blend: Blend::alpha_blending(),
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..Default::default()
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};
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if let Some(buffer) = &self.buffer_pair {
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if buffer.is_empty() {
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return
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}
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2024-02-21 13:13:58 -06:00
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let vtx_buffer = buffer.vertex_buffer.slice(0..buffer.vertex_count).unwrap();
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let idx_buffer = buffer.index_buffer.slice(0..buffer.index_count).unwrap();
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frame.draw(
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vtx_buffer,
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idx_buffer,
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&self.program,
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&uniform! {
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resolution: resolution.to_array(),
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tex: Sampler(self.ui_texture.as_ref().unwrap(), SamplerBehavior {
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wrap_function: (SamplerWrapFunction::Clamp, SamplerWrapFunction::Clamp, SamplerWrapFunction::Clamp),
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..Default::default()
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}),
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},
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¶ms,
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).unwrap();
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}
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}
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}
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