cleanup and new grid
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parent
81de6728fc
commit
9a5db444a0
19
src/conf.rs
19
src/conf.rs
@ -36,7 +36,16 @@ pub enum TransformConf {
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#[serde(rename = "translate")]
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Translate(transformer::Translate),
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#[serde(rename = "replicate")]
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Replicate(transformer::Replicate)
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Replicate(transformer::Replicate),
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#[serde(rename = "rotate")]
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Rotate(transformer::Rotate),
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#[serde(rename = "flip_horizontal")]
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FlipH(transformer::FlipHorizontal),
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#[serde(rename = "flip_vertical")]
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FlipV(transformer::FlipVertical),
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#[serde(rename = "grid")]
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Grid(transformer::Grid)
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}
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@ -55,7 +64,11 @@ impl Conf {
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for t in &self.transformers {
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let t : Box<dyn transformer::Transformers> = match t {
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TransformConf::Translate(t) => Box::new(*t),
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TransformConf::Replicate(r) => Box::new(*r)
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TransformConf::Replicate(r) => Box::new(*r),
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TransformConf::Rotate(r) => Box::new(*r),
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TransformConf::FlipH(r) => Box::new(*r),
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TransformConf::FlipV(r) => Box::new(*r),
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TransformConf::Grid(r) => Box::new(*r)
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};
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v.push(t);
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}
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@ -69,7 +82,7 @@ impl Conf {
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redis_url: "redis://127.0.0.1:6379/".to_string(),
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dac: DacFamily::Helios(HeliosConf { id: 0 }),
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transformers: vec![
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TransformConf::Translate(transformer::Translate::new(2000.0,2000.0)),
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TransformConf::Translate(transformer::Translate { x: 2000.0, y: 2000.0 } ),
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TransformConf::Replicate(transformer::Replicate::Until(48))
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]
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};
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@ -73,7 +73,7 @@ fn run_all() -> LJResult<()> {
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let frame = get_next_frame(&config, &transformers,
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&mut rs, order == Order::Black)?;
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// For now, draw all the time
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tracer.draw(frame, 40_000)?;
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tracer.draw(frame, 2_000)?;
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}
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info!("Exiting, stoping device.");
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@ -102,8 +102,11 @@ fn get_next_frame(
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rs: &mut RedisCtrl,
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_black: bool,
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) -> LJResult<Vec<Point>> {
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let line = rs.get(&format!("/pl/{}/0", config.laser_id))?;
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//let line = rs.get(&format!("/pl/{}/0", config.laser_id))?;
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let line = vec![(300.0,200.0,0),(500.0,200.0,65280),(500.0,400.0,65280),(300.0,400.0,65280),(300.0,200.0,65280),(300.0,200.0,0),(200.0,100.0,0),(600.0,100.0,65280),(600.0,500.0,65280),(200.0,500.0,65280),(200.0,100.0,65280)];
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let mut line: Vec<Point> = line.into_iter().map(|tpl| tpl.into()).collect();
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for transformer in transformers {
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line = transformer.apply(&line);
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}
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@ -4,6 +4,7 @@ mod replicate;
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mod rotate;
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mod flip_horizontal;
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mod flip_vertical;
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mod grid;
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use crate::point::Point;
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@ -13,6 +14,7 @@ pub use replicate::Replicate;
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pub use rotate::Rotate;
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pub use flip_horizontal::FlipHorizontal;
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pub use flip_vertical::FlipVertical;
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pub use grid::Grid;
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pub trait Transformers {
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fn apply(&self, point_list: &[Point]) -> Vec<Point>;
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@ -9,12 +9,6 @@ pub struct FlipHorizontal {
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x: f32,
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}
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impl FlipHorizontal {
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pub fn new(x: f32) -> Self {
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Self {x}
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}
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}
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impl Transformers for FlipHorizontal {
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fn apply(&self, point_list: &[Point]) -> Vec<Point> {
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point_list.iter()
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@ -9,12 +9,6 @@ pub struct FlipVertical {
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y: f32,
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}
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impl FlipVertical {
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pub fn new(y: f32) -> Self {
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Self {y}
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}
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}
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impl Transformers for FlipVertical {
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fn apply(&self, point_list: &[Point]) -> Vec<Point> {
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point_list.iter()
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56
src/transformer/grid.rs
Normal file
56
src/transformer/grid.rs
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@ -0,0 +1,56 @@
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use crate::transformer::Transformers;
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use crate::point::Point;
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use serde::{Serialize,Deserialize};
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/// Translate
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#[derive(Serialize,Deserialize,Debug,Clone,Copy)]
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pub struct Grid {
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width: f32,
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height: f32
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}
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fn square_box(size: f32, color: u32) -> Vec<(f32, f32, u32)> {
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vec![
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(-size, -size, 0),
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(-size, -size, color),
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(0.0, -size, color),
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(0.0, -size, color),
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(size, -size, color),
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(size, -size, color),
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(size, 0.0, color),
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(size, 0.0, color),
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(size, size, color),
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(size, size, color),
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(0.0, size, color),
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(0.0, size, color),
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(-size, size, color),
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(-size, size, color),
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(-size, 0.0, color),
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(-size, 0.0, color),
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(-size, -size, color),
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(-size, -size, color),
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(-size, -size, 0)
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]
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}
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impl Transformers for Grid {
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fn apply(&self, _point_list: &[Point]) -> Vec<Point> {
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let mut sq1 = square_box(1000.0, 255 << 8);
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let mut line = square_box(2000.0, 255);
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line.append(&mut sq1);
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let line: Vec<Point> = line.into_iter()
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.map(|tpl| tpl.into()).collect();
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line
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}
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}
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@ -13,12 +13,6 @@ pub struct Rotate {
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}
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impl Rotate {
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pub fn new(cx: f32, cy: f32, angle: f32) -> Self {
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Self { cx, cy, angle: angle / 180. * PI}
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}
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}
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impl Transformers for Rotate {
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fn apply(&self, point_list: &[Point]) -> Vec<Point> {
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point_list.iter()
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@ -6,14 +6,8 @@ use serde::{Serialize,Deserialize};
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#[derive(Serialize,Deserialize,Debug,Clone,Copy)]
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pub struct Translate {
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x: f32,
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y: f32
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}
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impl Translate {
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pub fn new(x: f32, y: f32) -> Self {
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Self { x, y }
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}
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pub x: f32,
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pub y: f32
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}
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impl Transformers for Translate {
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