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@ -35,6 +35,7 @@ use crate::util::load_raw;
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use crate::util::timer::Timer;
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use crate::util::timer::Timer;
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use crate::util::vertex::{TextureVertex3D, VertexTypes};
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use crate::util::vertex::{TextureVertex3D, VertexTypes};
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use crate::vkprocessor::VkProcessor;
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use crate::vkprocessor::VkProcessor;
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use std::path::Path;
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pub mod util;
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pub mod util;
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pub mod vkprocessor;
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pub mod vkprocessor;
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@ -87,15 +88,22 @@ pub fn main() {
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let mut current_time: f32 = timer.elap_time();
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let mut current_time: f32 = timer.elap_time();
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let image_data = load_raw(String::from("funky-bird.jpg"));
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let image_data = load_raw(String::from("funky-bird.jpg"));
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let image_dimensions_f: (f32, f32) = ((image_data.1).0 as f32, (image_data.1).1 as f32);
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let image_dimensions_f: (f32, f32) = ((image_data.1).clone().0 as f32, (image_data.1).clone().1 as f32);
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let image_dimensions_u: (u32, u32) = image_data.1;
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let image_dimensions_u: (u32, u32) = image_data.1;
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let compu_sprite1: CompuSprite =
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let compu_sprite1: CompuSprite =
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CompuSprite::new((0.0, -0.5), (0.4, 0.4), 0, image_dimensions_f,
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CompuSprite::new((0.0, -0.5), (1.0, 1.0), 0, image_dimensions_f,
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// Swap image to render the result to. Must match dimensions
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// Swap image to render the result to. Must match dimensions
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processor.new_swap_image(image_dimensions_u));
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processor.new_swap_image(image_dimensions_u));
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// Demo gpu toolpath generation
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// Need to
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let compute_buffer: Arc<CompuBufferHandle> =
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let compute_buffer: Arc<CompuBufferHandle> =
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processor.new_compute_buffer(image_data.0, image_data.1, 4);
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processor.new_compute_buffer(image_data.0.clone(), image_data.1, 4);
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let first_output_buffer: Arc<CompuBufferHandle> =
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processor.new_compute_buffer(image_data.0.clone(), image_data.1.clone(), 4);
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let compute_kernel: Arc<CompuKernelHandle> =
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let compute_kernel: Arc<CompuKernelHandle> =
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processor.get_kernel_handle(String::from("simple-edge.compute"))
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processor.get_kernel_handle(String::from("simple-edge.compute"))
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@ -123,10 +131,6 @@ pub fn main() {
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let l = hprof::enter("Loop");
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let l = hprof::enter("Loop");
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let mut exit = false;
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let mut count = 0;
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// while let true = processor.is_open() {
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// while let true = processor.is_open() {
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//
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//
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// // Take care of our timing
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// // Take care of our timing
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@ -164,6 +168,9 @@ pub fn main() {
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let mut compu_frame = CompuFrame::new();
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let mut compu_frame = CompuFrame::new();
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//compu_frame.add(compute_buffer.clone(), compute_kernel.clone());
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//compu_frame.add(compute_buffer.clone(), compute_kernel.clone());
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compu_frame.add_with_image_swap(compute_buffer.clone(), compute_kernel.clone(), &compu_sprite1);
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compu_frame.add_with_image_swap(compute_buffer.clone(), compute_kernel.clone(), &compu_sprite1);
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compu_frame.add(compute_buffer.clone(), compute_kernel.clone());
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canvas_frame.draw(&compu_sprite1);
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{
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{
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let g = hprof::enter("Run");
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let g = hprof::enter("Run");
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@ -171,6 +178,7 @@ pub fn main() {
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canvas_frame,
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canvas_frame,
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compu_frame);
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compu_frame);
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}
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}
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}
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}
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Event::DeviceEvent { event: DeviceEvent::Key(keyboard_input), .. } => {
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Event::DeviceEvent { event: DeviceEvent::Key(keyboard_input), .. } => {
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match keyboard_input.virtual_keycode.unwrap() {
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match keyboard_input.virtual_keycode.unwrap() {
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@ -178,6 +186,12 @@ pub fn main() {
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if keyboard_input.state == ElementState::Pressed {
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if keyboard_input.state == ElementState::Pressed {
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// processor.save_edges_image();
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// processor.save_edges_image();
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}
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}
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},
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VirtualKeyCode::P => {
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if keyboard_input.state == ElementState::Pressed {
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let data = processor.read_compute_buffer(compute_buffer.clone());
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image::save_buffer(&Path::new("image.png"), data.as_slice(), (image_data.1).0, (image_data.1).1, image::RGBA(8));
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}
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}
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}
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_ => ()
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_ => ()
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}
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}
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