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#![allow(dead_code)]
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#![allow(unused_variables)]
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#![allow(unused_mut)]
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extern crate cgmath;
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extern crate image;
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extern crate nalgebra as na;
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extern crate rand;
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extern crate sfml;
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extern crate time;
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use sfml::graphics::*;
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use sfml::graphics::{
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Color, RenderTarget, RenderWindow,
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};
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use sfml::system::*;
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use sfml::window::{Event, Key, Style};
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use sfml::window::mouse::*;
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use sfml::window::mouse;
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use vulkano::sync;
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use std::sync::Arc;
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use std::{fs, mem, iter, ptr};
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use std::path::PathBuf;
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use std::result;
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use crate::input::Input;
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use crate::slider::Slider;
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use crate::timer::Timer;
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use na::DimAdd;
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use std::time::{SystemTime, Duration};
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use shade_runner as sr;
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use std::ffi::CStr;
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use std::ptr::write;
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use vulkano::buffer::{BufferUsage, CpuAccessibleBuffer, DeviceLocalBuffer, ImmutableBuffer, BufferAccess};
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use vulkano::command_buffer::AutoCommandBufferBuilder;
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use vulkano::descriptor::descriptor_set::PersistentDescriptorSet;
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use vulkano::device::{Device, DeviceExtensions};
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use vulkano::instance::{Instance, InstanceExtensions, PhysicalDevice};
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use vulkano::pipeline::ComputePipeline;
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use vulkano::sync::GpuFuture;
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mod slider;
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mod timer;
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mod input;
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mod vkprocessor;
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fn main() {
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let instance = Instance::new(None, &InstanceExtensions::none(), None).unwrap();
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let mut processor = vkprocessor::VkProcessor::new(&instance);
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processor.compile_kernel(String::from("simple-edge.compute"));
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processor.load_buffers(String::from("test2.png"));
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processor.run_kernel();
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processor.read_image();
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processor.save_image();
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let mut window = RenderWindow::new(
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(900, 900),
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"Custom drawable",
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Style::CLOSE,
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&Default::default(),
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);
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let mut timer = Timer::new();
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let mut input = Input::new();
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let font = Font::from_file("resources/fonts/sansation.ttf").unwrap();
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let xy = processor.xy;
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let mut bg_texture = Texture::new(xy.0, xy.1).unwrap();
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bg_texture.update_from_pixels(processor.read_image().as_slice(), xy.0, xy.1, 0, 0);
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let mut background_sprite = Sprite::with_texture(&bg_texture);
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background_sprite.set_position((0., 0.));
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let mut slider = Slider::new(40.0, None);
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let mut selected_colors = Vec::new();
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selected_colors.push(RectangleShape::with_size(Vector2f::new(30.0, 30.0)));
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let step_size: f32 = 0.005;
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let mut elapsed_time: f32;
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let mut delta_time: f32;
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let mut accumulator_time: f32 = 0.0;
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let mut current_time: f32 = timer.elap_time();
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let mut mouse_xy = Vector2i::new(0,0);
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while window.is_open() {
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while let Some(event) = window.poll_event() {
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match event {
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Event::Closed => return,
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Event::KeyPressed { code, .. } => {
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if code == Key::Escape {
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return;
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}
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},
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Event::MouseButtonPressed { button, x, y } => {
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mouse_xy = mouse::desktop_position();
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},
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Event::MouseWheelScrolled { wheel, delta, x, y } => {
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if delta > 0.0 {
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background_sprite.set_scale(background_sprite.get_scale()*Vector2f::new(1.1,1.1));
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} else {
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background_sprite.set_scale(background_sprite.get_scale()*Vector2f::new(0.9,0.9));
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}
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},
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_ => {}
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}
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input.ingest(&event)
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}
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if input.is_mousebutton_held(Button::Left) {
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let delta = mouse_xy - mouse::desktop_position();
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mouse_xy = mouse::desktop_position();
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println!("{:?}", delta);
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background_sprite.set_position(
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background_sprite.position() - Vector2f::new(delta.x as f32, delta.y as f32)
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);
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}
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elapsed_time = timer.elap_time();
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delta_time = elapsed_time - current_time;
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current_time = elapsed_time;
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if delta_time > 0.02 {
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delta_time = 0.02;
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}
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accumulator_time += delta_time;
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while (accumulator_time - step_size) >= step_size {
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accumulator_time -= step_size;
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}
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window.clear(&Color::BLACK);
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window.draw(&background_sprite);
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window.draw(&slider);
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window.display();
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}
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}
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