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45 Commits

Author SHA1 Message Date
Savanni D'Gerinel 5d04c84437 Update to rust 1.81 2024-10-14 18:04:10 -04:00
Savanni D'Gerinel 791f2be3c5 Largely design the control panel case 2024-09-27 02:18:09 +00:00
Savanni D'Gerinel 74b7f1c6f7 Add gaps to allow access to the voltage converter 2024-09-27 02:18:09 +00:00
Savanni D'Gerinel 9c490a84a4 add the slot to hold the power converter 2024-09-27 02:18:09 +00:00
Savanni D'Gerinel 724cc1a3f0 Add a channel for running wires 2024-09-27 02:18:09 +00:00
Savanni D'Gerinel 8f71760604 Apply bevels to everything 2024-09-27 02:18:09 +00:00
Savanni D'Gerinel 11abde345e First draft of the battery enclosure. 2024-09-27 02:18:09 +00:00
Savanni D'Gerinel a5b76c8171 Add the enclosure 2024-09-27 02:18:09 +00:00
Savanni D'Gerinel 9b23dd5acd Update the Dashboard distribution 2024-09-23 23:19:24 -04:00
Savanni D'Gerinel 54225ca729 Bump the version number 2024-09-24 03:04:57 +00:00
Savanni D'Gerinel 95b46de7fc Set up a header bar 2024-09-24 03:04:57 +00:00
Savanni D'Gerinel caaf9c57c6 Remove IFC from the dashboard app 2024-09-24 03:04:57 +00:00
Savanni D'Gerinel 81d452694d Reverse the blinker pins 2024-09-15 23:57:06 -04:00
Savanni D'Gerinel 88cf32047b Enable the brake light 2024-09-08 12:53:35 -04:00
Savanni D'Gerinel 6cae7dbb0e Set up a basic server with a device listing endpoint 2024-08-26 10:41:17 -04:00
Savanni D'Gerinel 80776c65d8 Write a program that enumerates audio sinks on the device 2024-08-21 09:40:58 -04:00
Savanni D'Gerinel 1c54e0832b Make a design system page. Build up CSS. 2024-08-20 17:01:36 +00:00
Savanni D'Gerinel aee4528fb3 Rename the Dashboard 2024-08-20 17:01:36 +00:00
Savanni D'Gerinel 0535b6da5a Rename Launcher components 2024-08-20 17:01:36 +00:00
Savanni D'Gerinel b55324feab Add Activator groups 2024-08-20 17:01:36 +00:00
Savanni D'Gerinel 50d8a9670e Start creating some UI components 2024-08-20 17:01:36 +00:00
Savanni D'Gerinel 9cda35e766 UI placeholder 2024-08-20 17:01:36 +00:00
Savanni D'Gerinel d0f461a5eb Create the dashboard placeholder 2024-08-20 17:01:36 +00:00
Savanni D'Gerinel 70c013218a Update pins for the realities of the board layout 2024-07-30 14:50:14 -04:00
Savanni D'Gerinel 37c7e04820 Turn on the built-in LED when software starts up 2024-07-20 11:21:16 -04:00
Savanni D'Gerinel 291663d4a3 Re-add the armv6 toolchain 2024-07-08 09:35:44 -04:00
Savanni D'Gerinel 2b0fc7639e Debounce buttons, fix colors, and add a new water pattern 2024-07-08 09:29:34 -04:00
Savanni D'Gerinel 80d8dedbaf Adjust colors and the blinker patterns 2024-07-08 09:29:34 -04:00
Savanni D'Gerinel d7a70119c8 Send out the full set of lights 2024-07-08 09:29:34 -04:00
Savanni D'Gerinel 54c4b99ab6 Improve the blinker animations and state transitions when switching blinkers 2024-07-08 09:29:34 -04:00
Savanni D'Gerinel ef5415303b Start monitoring events 2024-07-08 09:29:34 -04:00
Savanni D'Gerinel 8d183d6d8c Build some of the framework for the bike application
This now sends a set of lights to the dashboard from a pico. I had to
adjust some of the colors as they do not look nearly as good in lights
as they do in the screen. There is no real application loop yet, no the
ability to get feedback from external controls.
2024-07-08 09:29:32 -04:00
Savanni D'Gerinel 0b949111d2 Switch to a fixed point arithmatic library 2024-07-08 09:28:40 -04:00
Savanni D'Gerinel 6164cb3b39 Refactor the bike library until it compiles with no_std
Theoretically, this is the first step to getting to running on the pico
2024-07-08 09:28:40 -04:00
Savanni D'Gerinel 22f0f9061c Rotate the right side
The actual bike is going to be a long loop which folds from the end of
the left side to the back end of the right side. This requires that the
colors get moved around for proper mirroring.
2024-07-08 09:28:40 -04:00
Savanni D'Gerinel 0bb5e62f96 Set up a bunch of animations and some state transitions! 2024-07-08 09:28:40 -04:00
Savanni D'Gerinel 06aedc34bb Now I'm able to send messages from the UI to the core 2024-07-08 09:28:40 -04:00
Savanni D'Gerinel 84b077e20c Build the core of the application. 2024-07-08 09:28:40 -04:00
Savanni D'Gerinel fc2e88add2 Set up a GTK simulator for the bike lights engine 2024-07-08 09:28:38 -04:00
Savanni D'Gerinel 15c4ae9bad Update the review tree when navigating 2024-05-07 08:49:49 -04:00
Savanni D'Gerinel 7dd531b493 It is now possible to move backwards and forwards on the mainline of a tree 2024-05-07 07:53:15 -04:00
Savanni D'Gerinel cbfb3f2e37 Clean up tests 2024-05-01 09:36:48 -04:00
Savanni D'Gerinel 9540a2c5bb Highlight the current node and make all nodes a bit larger 2024-04-30 23:34:16 -04:00
Savanni D'Gerinel 6165d65977 Make the review tree scrollable 2024-04-30 23:28:12 -04:00
Savanni D'Gerinel 4f8a1636c1 Set up a view model for the game review and highlight current node 2024-04-30 23:27:05 -04:00
83 changed files with 24438 additions and 25287 deletions

2466
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@ -2,13 +2,15 @@
resolver = "2"
members = [
"authdb",
"bike-lights/bike",
"bike-lights/core",
"bike-lights/simulator",
"changeset",
"config",
"config-derive",
"coordinates",
"cyberpunk-splash",
"dashboard",
"editor-challenge",
"emseries",
"file-service",
"fitnesstrax/core",
@ -28,5 +30,5 @@ members = [
"sgf",
"timezone-testing",
"tree",
"visions/server",
"visions/server", "gm-dash/server",
]

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@ -19,6 +19,8 @@ clap = { version = "4", features = [ "derive" ] }
serde = { version = "1.0", features = ["derive"] }
sha2 = { version = "0.10" }
sqlx = { version = "0.7", features = [ "runtime-tokio", "sqlite" ] }
# sqlformat introduced a mistaken breaking change in 0.2.7
sqlformat = { version = "=0.2.6" }
thiserror = { version = "1" }
tokio = { version = "1", features = [ "full" ] }
uuid = { version = "0.4", features = [ "serde", "v4" ] }

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@ -0,0 +1,12 @@
[build]
target = "thumbv6m-none-eabi"
[target.thumbv6m-none-eabi]
rustflags = [
"-C", "link-arg=--nmagic",
"-C", "link-arg=-Tlink.x",
"-C", "inline-threshold=5",
"-C", "no-vectorize-loops",
]
runner = "elf2uf2-rs -d"

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@ -0,0 +1,18 @@
[package]
name = "bike"
version = "0.1.0"
edition = "2021"
# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
[dependencies]
az = { version = "1" }
cortex-m-rt = { version = "0.7.3" }
cortex-m = { version = "0.7.7" }
embedded-alloc = { version = "0.5.1" }
embedded-hal = { version = "0.2.7" }
fixed = { version = "1" }
fugit = { version = "0.3.7" }
lights-core = { path = "../core" }
panic-halt = { version = "0.2.0" }
rp-pico = { version = "0.8.0" }

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@ -0,0 +1,241 @@
#![no_main]
#![no_std]
extern crate alloc;
use alloc::boxed::Box;
use az::*;
use core::cell::RefCell;
use cortex_m::delay::Delay;
use embedded_alloc::Heap;
use embedded_hal::{blocking::spi::Write, digital::v2::InputPin, digital::v2::OutputPin};
use fixed::types::I16F16;
use fugit::RateExtU32;
use lights_core::{App, BodyPattern, DashboardPattern, Event, Instant, FPS, UI};
use panic_halt as _;
use rp_pico::{
entry,
hal::{
clocks::init_clocks_and_plls,
gpio::{FunctionSio, Pin, PinId, PullDown, PullUp, SioInput, SioOutput},
pac::{CorePeripherals, Peripherals},
spi::{Enabled, Spi, SpiDevice, ValidSpiPinout},
watchdog::Watchdog,
Clock, Sio,
},
Pins,
};
#[global_allocator]
static HEAP: Heap = Heap::empty();
const LIGHT_SCALE: I16F16 = I16F16::lit("256.0");
const DASHBOARD_BRIGHTESS: u8 = 1;
const BODY_BRIGHTNESS: u8 = 8;
struct DebouncedButton<P: PinId> {
debounce: Instant,
pin: Pin<P, FunctionSio<SioInput>, PullUp>,
}
impl<P: PinId> DebouncedButton<P> {
fn new(pin: Pin<P, FunctionSio<SioInput>, PullUp>) -> Self {
Self {
debounce: Instant((0 as u32).into()),
pin,
}
}
fn is_low(&self, time: Instant) -> bool {
if time <= self.debounce {
return false;
}
self.pin.is_low().unwrap_or(false)
}
fn set_debounce(&mut self, time: Instant) {
self.debounce = time + Instant((250 as u32).into());
}
}
struct BikeUI<
D: SpiDevice,
P: ValidSpiPinout<D>,
LeftId: PinId,
RightId: PinId,
PreviousId: PinId,
NextId: PinId,
BrakeId: PinId,
> {
spi: RefCell<Spi<Enabled, D, P, 8>>,
left_blinker_button: DebouncedButton<LeftId>,
right_blinker_button: DebouncedButton<RightId>,
previous_animation_button: DebouncedButton<PreviousId>,
next_animation_button: DebouncedButton<NextId>,
brake_sensor: Pin<BrakeId, FunctionSio<SioInput>, PullUp>,
brake_enabled: bool,
}
impl<
D: SpiDevice,
P: ValidSpiPinout<D>,
LeftId: PinId,
RightId: PinId,
PreviousId: PinId,
NextId: PinId,
BrakeId: PinId,
> BikeUI<D, P, LeftId, RightId, PreviousId, NextId, BrakeId>
{
fn new(
spi: Spi<Enabled, D, P, 8>,
left_blinker_button: Pin<LeftId, FunctionSio<SioInput>, PullUp>,
right_blinker_button: Pin<RightId, FunctionSio<SioInput>, PullUp>,
previous_animation_button: Pin<PreviousId, FunctionSio<SioInput>, PullUp>,
next_animation_button: Pin<NextId, FunctionSio<SioInput>, PullUp>,
brake_sensor: Pin<BrakeId, FunctionSio<SioInput>, PullUp>,
) -> Self {
Self {
spi: RefCell::new(spi),
left_blinker_button: DebouncedButton::new(left_blinker_button),
right_blinker_button: DebouncedButton::new(right_blinker_button),
previous_animation_button: DebouncedButton::new(previous_animation_button),
next_animation_button: DebouncedButton::new(next_animation_button),
brake_sensor,
brake_enabled: false,
}
}
}
impl<
D: SpiDevice,
P: ValidSpiPinout<D>,
LeftId: PinId,
RightId: PinId,
PreviousId: PinId,
NextId: PinId,
BrakeId: PinId,
> UI for BikeUI<D, P, LeftId, RightId, PreviousId, NextId, BrakeId>
{
fn check_event(&mut self, current_time: Instant) -> Option<Event> {
if self.brake_sensor.is_high().unwrap_or(true) && !self.brake_enabled {
self.brake_enabled = true;
Some(Event::Brake)
} else if self.brake_sensor.is_low().unwrap_or(false) && self.brake_enabled {
self.brake_enabled = false;
Some(Event::BrakeRelease)
} else if self.left_blinker_button.is_low(current_time) {
self.left_blinker_button.set_debounce(current_time);
Some(Event::LeftBlinker)
} else if self.right_blinker_button.is_low(current_time) {
self.right_blinker_button.set_debounce(current_time);
Some(Event::RightBlinker)
} else if self.previous_animation_button.is_low(current_time) {
self.previous_animation_button.set_debounce(current_time);
Some(Event::PreviousPattern)
} else if self.next_animation_button.is_low(current_time) {
self.next_animation_button.set_debounce(current_time);
Some(Event::NextPattern)
} else {
None
}
}
fn update_lights(&self, dashboard_lights: DashboardPattern, body_lights: BodyPattern) {
let mut lights: [u8; 260] = [0; 260];
lights[256] = 0xff;
lights[257] = 0xff;
lights[258] = 0xff;
lights[259] = 0xff;
for (idx, rgb) in dashboard_lights.iter().enumerate() {
lights[(idx + 1) * 4 + 0] = 0xe0 + DASHBOARD_BRIGHTESS;
lights[(idx + 1) * 4 + 1] = (I16F16::from(rgb.r) * LIGHT_SCALE).saturating_as();
lights[(idx + 1) * 4 + 2] = (I16F16::from(rgb.b) * LIGHT_SCALE).saturating_as();
lights[(idx + 1) * 4 + 3] = (I16F16::from(rgb.g) * LIGHT_SCALE).saturating_as();
}
for (idx, rgb) in body_lights.iter().enumerate() {
lights[(idx + 4) * 4 + 0] = 0xe0 + BODY_BRIGHTNESS;
lights[(idx + 4) * 4 + 1] = (I16F16::from(rgb.b) * LIGHT_SCALE).saturating_as();
lights[(idx + 4) * 4 + 2] = (I16F16::from(rgb.g) * LIGHT_SCALE).saturating_as();
lights[(idx + 4) * 4 + 3] = (I16F16::from(rgb.r) * LIGHT_SCALE).saturating_as();
}
let mut spi = self.spi.borrow_mut();
spi.write(lights.as_slice());
}
}
#[entry]
fn main() -> ! {
{
use core::mem::MaybeUninit;
const HEAP_SIZE: usize = 8096;
static mut HEAP_MEM: [MaybeUninit<u8>; HEAP_SIZE] = [MaybeUninit::uninit(); HEAP_SIZE];
unsafe { HEAP.init(HEAP_MEM.as_ptr() as usize, HEAP_SIZE) }
}
let mut pac = Peripherals::take().unwrap();
let core = CorePeripherals::take().unwrap();
let sio = Sio::new(pac.SIO);
let mut watchdog = Watchdog::new(pac.WATCHDOG);
let pins = Pins::new(
pac.IO_BANK0,
pac.PADS_BANK0,
sio.gpio_bank0,
&mut pac.RESETS,
);
let clocks = init_clocks_and_plls(
12_000_000u32,
pac.XOSC,
pac.CLOCKS,
pac.PLL_SYS,
pac.PLL_USB,
&mut pac.RESETS,
&mut watchdog,
)
.ok()
.unwrap();
let mut delay = Delay::new(core.SYST, clocks.system_clock.freq().to_Hz());
let mut spi_clk = pins.gpio10.into_function();
let mut spi_sdo = pins.gpio11.into_function();
let spi = Spi::<_, _, _, 8>::new(pac.SPI1, (spi_sdo, spi_clk));
let mut spi = spi.init(
&mut pac.RESETS,
clocks.peripheral_clock.freq(),
1_u32.MHz(),
embedded_hal::spi::MODE_1,
);
let left_blinker_button = pins.gpio16.into_pull_up_input();
let right_blinker_button = pins.gpio17.into_pull_up_input();
let previous_animation_button = pins.gpio27.into_pull_up_input();
let next_animation_button = pins.gpio26.into_pull_up_input();
let brake_sensor = pins.gpio18.into_pull_up_input();
let mut led_pin = pins.led.into_push_pull_output();
let ui = BikeUI::new(
spi,
left_blinker_button,
right_blinker_button,
previous_animation_button,
next_animation_button,
brake_sensor,
);
let mut app = App::new(Box::new(ui));
led_pin.set_high();
let mut time = Instant::default();
let delay_ms = 1000 / (FPS as u32);
loop {
app.tick(time);
delay.delay_ms(delay_ms);
time = time + Instant(delay_ms.into());
}
}

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@ -0,0 +1,158 @@
$fn = 50;
threshold = 0.1;
half_threshold = threshold / 2;
bevel = 0.5;
wire_radius = 1;
wall_thickness = 2;
cutout_threshold = 1;
battery_length = 71;
battery_width = 18.75;
cell_holder_length = battery_length + wall_thickness * 2;
cell_holder_width = battery_width + wall_thickness * 2;
cell_holder_height = battery_width + wall_thickness;
battery_contact_thickness = .6;
// battery_contact_thickness = 1;
battery_contact_width = 11;
battery_contact_length = 12.8;
battery_contact_spring_height = 10.5;
battery_contact_flange_height = 1.9;
converter_width = 11.25;
converter_length = 22.25;
converter_height = 5;
include <./common.scad>;
// box(20, 10, 10);
// color("blue", 0.5) cube([10, 20, 10], center = true);
module cell_cradle(width, height) {
difference() {
translate([0, 0, -height / 2]) cube([width,
wall_thickness,
height],
center = true);
color("red", 1) translate([0, 0, 0])
rotate([90, 0, 0])
cylinder(h = wall_thickness + cutout_threshold,
r = width / 2,
center = true);
}
}
module cell_box() {
union() {
channel(cell_holder_length, cell_holder_width, cell_holder_height);
translate([0, -battery_length / 6, wall_thickness]) cell_cradle(cell_holder_width, cell_holder_height / 2);
translate([0, battery_length / 6, wall_thickness]) cell_cradle(cell_holder_width, cell_holder_height / 2);
}
}
module contact_box() {
contact_thickness = battery_contact_flange_height * .75;
cutout_width = battery_contact_width * .8;
// box_thickness = contact_thickness_ + wall_thickness * 2;
// box_height = width + wall_thickness;
difference() {
box(wall_thickness * 2 + contact_thickness, cell_holder_width, cell_holder_height);
translate([0, contact_thickness, wall_thickness * 2])
cube([battery_contact_width,
wall_thickness * 2,
battery_contact_length + threshold],
center = true);
color("red", 1) translate([0,
-(wall_thickness + contact_thickness + threshold) / 2,
cell_holder_height / 2])
cube([5, wall_thickness + threshold * 2, cell_holder_height], center = true);
translate([0,
-(wall_thickness + contact_thickness + threshold) / 2 - wire_radius,
0])
rotate([0, 90, 0])
cylinder(h = cell_holder_width, r = wire_radius, center = true);
color("green", 1) translate([-cell_holder_width / 2, 0, cell_holder_height / 2])
rotate([0, 90, 0])
cylinder(h = 5, r = contact_thickness / 2, center = true);
color("green", 1) translate([cell_holder_width / 2, 0, cell_holder_height / 2])
rotate([0, 90, 0])
cylinder(h = 5, r = contact_thickness / 2, center = true);
}
}
module battery_slot() {
difference() {
union() {
translate([0, -cell_holder_length / 2, 0]) contact_box();
translate([0, wall_thickness, 0]) cell_box();
translate([0, cell_holder_length / 2 + wall_thickness * 2, 0])
rotate([0, 0, 180])
contact_box();
}
translate([cell_holder_width / 2, 1, 0]) rotate([90, 0, 0]) cylinder(h = cell_holder_length + wall_thickness * 4 + battery_contact_flange_height * 2, r = wire_radius, center = true);
translate([-cell_holder_width / 2, 1, 0]) rotate([90, 0, 0]) cylinder(h = cell_holder_length + wall_thickness * 4 + battery_contact_flange_height * 2, r = wire_radius, center = true);
}
}
module converter_box() {
box_length = wall_thickness * 2 + converter_height;
box_width = cell_holder_width * 2 - wall_thickness;
difference() {
box(box_length, box_width, cell_holder_height);
translate([cell_holder_width - wire_radius, 0, 0])
rotate([90, 0, 0])
cylinder(h = box_length, r = wire_radius, center = true);
translate([cell_holder_width - wire_radius * 2, 0, 0])
rotate([0, 90, 0])
cylinder(h = wall_thickness + threshold, r = wire_radius, center = true);
translate([-cell_holder_width + wire_radius, 0, 0])
rotate([90, 0, 0])
cylinder(h = box_length, r = wire_radius, center = true);
translate([-cell_holder_width + wire_radius * 2, 0, 0])
rotate([0, 90, 0])
cylinder(h = wall_thickness + threshold, r = wire_radius, center = true);
translate([0, -box_length / 2, 0])
rotate([0, 90, 0])
cylinder(h = cell_holder_width * 2 + wall_thickness, r = wire_radius, center = true);
translate([-cell_holder_width * .75, (-box_length + wall_thickness) / 2, 0])
rotate([90, 0, 0])
cylinder(h = wall_thickness * 2, r = wire_radius, center = true);
translate([cell_holder_width * .75, (-box_length + wall_thickness) / 2, 0])
rotate([90, 0, 0])
cylinder(h = wall_thickness * 2, r = wire_radius, center = true);
color("red", 1) translate([-box_width / 4, -(converter_height + wall_thickness) / 2, cell_holder_height / 2])
cube([5, wall_thickness + threshold * 2, cell_holder_height], center = true);
color("red", 1) translate([box_width / 4, -(converter_height + wall_thickness) / 2, cell_holder_height / 2])
cube([5, wall_thickness + threshold * 2, cell_holder_height], center = true);
}
}
module battery_case() {
union() {
translate([-cell_holder_width / 2, 0, 0]) battery_slot();
translate([cell_holder_width / 2 - wall_thickness, 0, 0]) battery_slot();
translate([-wall_thickness / 2,
cell_holder_length / 2 + wall_thickness * 2 + battery_contact_flange_height + wall_thickness * 2 + wall_thickness / 2,
0])
converter_box();
}
}
battery_case();

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@ -0,0 +1,57 @@
module pill(length, bevel) {
hull() {
translate([0, 0, (-length / 2) + bevel]) sphere(r = bevel);
translate([0, 0, (length / 2) - bevel]) sphere(r = bevel);
}
}
module box_face(dimensions, bevel = 0) {
x = dimensions[0];
y = dimensions[1];
z = dimensions[2];
if (bevel > 0) {
translate([0, 0, z / 2])
hull() {
pill(z, bevel);
translate([x, 0, 0])
pill(z, bevel);
translate([x, y, 0])
pill(z, bevel);
translate([0, y, 0])
pill(z, bevel);
}
} else {
cube(dimensions);
}
}
module channel(length, width, height, bevel) {
union() {
box_face([length, width, wall_thickness], bevel);
translate([0, wall_thickness - bevel, bevel])
rotate([90, 0, 0])
box_face([length, height, wall_thickness], bevel);
translate([0, width + bevel, bevel])
rotate([90, 0, 0])
box_face([length, height, wall_thickness], bevel);
}
}
module box(length, width, height, bevel = 0) {
union() {
channel(length, width, height, bevel);
translate([-bevel, 0, bevel])
rotate([90, 0, 0])
rotate([0, 90, 0])
box_face([width, height, wall_thickness], bevel);
translate([length - wall_thickness + bevel, 0, bevel])
rotate([90, 0, 0])
rotate([0, 90, 0])
box_face([width, height, wall_thickness], bevel);
}
}

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@ -0,0 +1,95 @@
$fn = 50;
threshold = 0.1;
board_length = 92;
board_width = 72;
board_height = 21.5;
wall_thickness = 2;
bevel = 0.5;
hinge_radius = 2.5;
case_width = board_width + wall_thickness * 2;
case_length = board_length + wall_thickness * 2;
case_height = board_height + wall_thickness;
include <./common.scad>;
module hinge(length) {
difference() {
union() {
cylinder(h = length, r = hinge_radius);
translate([0, -hinge_radius, 0])
cube([hinge_radius, hinge_radius * 2, length]);
}
translate([0, 0, -threshold / 2]) cylinder(h = length + threshold, r = 1);
}
}
module main_case() {
hinge_length = board_length / 4;
hinge_y_offset = board_width + wall_thickness + hinge_radius;
hinge_z_offset = board_height;
difference() {
union() {
box(case_length,
case_width,
case_height,
bevel);
translate([0, -hinge_radius - bevel + threshold, hinge_z_offset + bevel])
rotate([90, 0, 0])
rotate([0, 90, 0])
hinge(case_length / 4);
translate([case_length - hinge_length, -hinge_radius - bevel + threshold, hinge_z_offset + bevel])
rotate([90, 0, 0])
rotate([0, 90, 0])
hinge(case_length / 4);
translate([43, case_width, wall_thickness + 8])
rotate([90, 0, 0])
rotate([0, 180, 0])
linear_extrude(1)
text("lights", size = 3);
translate([67, case_width, wall_thickness + 8])
rotate([90, 0, 0])
rotate([0, 180, 0])
linear_extrude(1)
text("left", size = 3);
translate([55, case_width, wall_thickness + 8])
rotate([90, 0, 0])
rotate([0, 180, 0])
linear_extrude(1)
text("right", size = 3);
}
color("green", 1) translate([8.5 + wall_thickness, case_width - wall_thickness - threshold, wall_thickness])
cube([60, wall_thickness * 2, 7]);
}
}
module lid() {
lid_width = case_width + hinge_radius * 2 + wall_thickness;
union() {
difference() {
box_face([case_length,
lid_width,
wall_thickness],
bevel);
translate([(case_length - 60) / 2, 14 + hinge_radius * 2, -threshold / 2])
cube([60, 16, wall_thickness + threshold]);
}
translate([case_length / 4 + 1, hinge_radius - 0.4, -hinge_radius])
rotate([180, 0, 0])
rotate([0, 90, 0]) hinge(case_length / 2 - 2);
}
}
// main_case();
// color("red", 1) translate([0, 0, case_height + wall_thickness / 2]) lid();
// color("red", 1) translate([0, 0, 40]) lid();

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include <./control_panel.scad>
main_case();

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include <./control_panel.scad>
lid();

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[package]
name = "lights-core"
version = "0.1.0"
edition = "2021"
# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
[dependencies]
az = { version = "1" }
fixed = { version = "1" }

481
bike-lights/core/src/lib.rs Normal file
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#![no_std]
extern crate alloc;
use alloc::boxed::Box;
use az::*;
use core::{
clone::Clone,
cmp::PartialEq,
default::Default,
ops::{Add, Sub},
option::Option,
};
use fixed::types::{I48F16, I8F8, U128F0, U16F0};
mod patterns;
pub use patterns::*;
mod types;
pub use types::{BodyPattern, DashboardPattern, RGB};
fn calculate_frames(starting_time: U128F0, now: U128F0) -> U16F0 {
let frames_128 = (now - starting_time) / U128F0::from(FPS);
(frames_128 % U128F0::from(U16F0::MAX)).cast()
}
fn calculate_slope(start: I8F8, end: I8F8, frames: U16F0) -> I8F8 {
let slope_i16f16 = (I48F16::from(end) - I48F16::from(start)) / I48F16::from(frames);
slope_i16f16.saturating_as()
}
fn linear_ease(value: I8F8, frames: U16F0, slope: I8F8) -> I8F8 {
let value_i16f16 = I48F16::from(value) + I48F16::from(frames) * I48F16::from(slope);
value_i16f16.saturating_as()
}
#[derive(Clone, Copy, PartialOrd, Ord, PartialEq, Eq)]
pub struct Instant(pub U128F0);
impl Default for Instant {
fn default() -> Self {
Self(U128F0::from(0 as u8))
}
}
impl Add for Instant {
type Output = Self;
fn add(self, r: Self) -> Self::Output {
Self(self.0 + r.0)
}
}
impl Sub for Instant {
type Output = Self;
fn sub(self, r: Self) -> Self::Output {
Self(self.0 - r.0)
}
}
pub const FPS: u8 = 30;
pub trait UI {
fn check_event(&mut self, current_time: Instant) -> Option<Event>;
fn update_lights(&self, dashboard_lights: DashboardPattern, body_lights: BodyPattern);
}
pub trait Animation {
fn tick(&mut self, time: Instant) -> (DashboardPattern, BodyPattern);
}
/*
pub struct DefaultAnimation {}
impl Animation for DefaultAnimation {
fn tick(&mut self, _: Instant) -> (DashboardPattern, BodyPattern) {
(WATER_DASHBOARD, WATER_BODY)
}
}
*/
pub struct Fade {
starting_dashboard: DashboardPattern,
starting_lights: BodyPattern,
start_time: Instant,
dashboard_slope: [RGB<I8F8>; 3],
body_slope: [RGB<I8F8>; 60],
frames: U16F0,
}
impl Fade {
fn new(
dashboard: DashboardPattern,
lights: BodyPattern,
ending_dashboard: DashboardPattern,
ending_lights: BodyPattern,
frames: U16F0,
time: Instant,
) -> Self {
let mut dashboard_slope = [Default::default(); 3];
let mut body_slope = [Default::default(); 60];
for i in 0..3 {
let slope = RGB {
r: calculate_slope(dashboard[i].r, ending_dashboard[i].r, frames),
g: calculate_slope(dashboard[i].g, ending_dashboard[i].g, frames),
b: calculate_slope(dashboard[i].b, ending_dashboard[i].b, frames),
};
dashboard_slope[i] = slope;
}
for i in 0..60 {
let slope = RGB {
r: calculate_slope(lights[i].r, ending_lights[i].r, frames),
g: calculate_slope(lights[i].g, ending_lights[i].g, frames),
b: calculate_slope(lights[i].b, ending_lights[i].b, frames),
};
body_slope[i] = slope;
}
Self {
starting_dashboard: dashboard,
starting_lights: lights,
start_time: time,
dashboard_slope,
body_slope,
frames,
}
}
}
impl Animation for Fade {
fn tick(&mut self, time: Instant) -> (DashboardPattern, BodyPattern) {
let mut frames = calculate_frames(self.start_time.0, time.0);
if frames > self.frames {
frames = self.frames
}
let mut dashboard_pattern: DashboardPattern = OFF_DASHBOARD;
let mut body_pattern: BodyPattern = OFF_BODY;
for i in 0..3 {
dashboard_pattern[i].r = linear_ease(
self.starting_dashboard[i].r,
frames,
self.dashboard_slope[i].r,
);
dashboard_pattern[i].g = linear_ease(
self.starting_dashboard[i].g,
frames,
self.dashboard_slope[i].g,
);
dashboard_pattern[i].b = linear_ease(
self.starting_dashboard[i].b,
frames,
self.dashboard_slope[i].b,
);
}
for i in 0..60 {
body_pattern[i].r =
linear_ease(self.starting_lights[i].r, frames, self.body_slope[i].r);
body_pattern[i].g =
linear_ease(self.starting_lights[i].g, frames, self.body_slope[i].g);
body_pattern[i].b =
linear_ease(self.starting_lights[i].b, frames, self.body_slope[i].b);
}
(dashboard_pattern, body_pattern)
}
}
#[derive(Debug)]
pub enum FadeDirection {
Transition,
FadeIn,
FadeOut,
}
pub enum BlinkerDirection {
Left,
Right,
}
pub struct Blinker {
transition: Fade,
fade_in: Fade,
fade_out: Fade,
direction: FadeDirection,
start_time: Instant,
frames: U16F0,
}
impl Blinker {
fn new(
starting_dashboard: DashboardPattern,
starting_body: BodyPattern,
direction: BlinkerDirection,
time: Instant,
) -> Self {
let mut ending_dashboard = OFF_DASHBOARD.clone();
match direction {
BlinkerDirection::Left => {
ending_dashboard[0].r = LEFT_BLINKER_DASHBOARD[0].r;
ending_dashboard[0].g = LEFT_BLINKER_DASHBOARD[0].g;
ending_dashboard[0].b = LEFT_BLINKER_DASHBOARD[0].b;
}
BlinkerDirection::Right => {
ending_dashboard[2].r = RIGHT_BLINKER_DASHBOARD[2].r;
ending_dashboard[2].g = RIGHT_BLINKER_DASHBOARD[2].g;
ending_dashboard[2].b = RIGHT_BLINKER_DASHBOARD[2].b;
}
}
let mut ending_body = OFF_BODY.clone();
match direction {
BlinkerDirection::Left => {
for i in 0..30 {
ending_body[i].r = LEFT_BLINKER_BODY[i].r;
ending_body[i].g = LEFT_BLINKER_BODY[i].g;
ending_body[i].b = LEFT_BLINKER_BODY[i].b;
}
}
BlinkerDirection::Right => {
for i in 30..60 {
ending_body[i].r = RIGHT_BLINKER_BODY[i].r;
ending_body[i].g = RIGHT_BLINKER_BODY[i].g;
ending_body[i].b = RIGHT_BLINKER_BODY[i].b;
}
}
}
Blinker {
transition: Fade::new(
starting_dashboard.clone(),
starting_body.clone(),
ending_dashboard.clone(),
ending_body.clone(),
BLINKER_FRAMES,
time,
),
fade_in: Fade::new(
OFF_DASHBOARD.clone(),
OFF_BODY.clone(),
ending_dashboard.clone(),
ending_body.clone(),
BLINKER_FRAMES,
time,
),
fade_out: Fade::new(
ending_dashboard.clone(),
ending_body.clone(),
OFF_DASHBOARD.clone(),
OFF_BODY.clone(),
BLINKER_FRAMES,
time,
),
direction: FadeDirection::Transition,
start_time: time,
frames: BLINKER_FRAMES,
}
}
}
impl Animation for Blinker {
fn tick(&mut self, time: Instant) -> (DashboardPattern, BodyPattern) {
let frames = calculate_frames(self.start_time.0, time.0);
if frames > self.frames {
match self.direction {
FadeDirection::Transition => {
self.direction = FadeDirection::FadeOut;
self.fade_out.start_time = time;
}
FadeDirection::FadeIn => {
self.direction = FadeDirection::FadeOut;
self.fade_out.start_time = time;
}
FadeDirection::FadeOut => {
self.direction = FadeDirection::FadeIn;
self.fade_in.start_time = time;
}
}
self.start_time = time;
}
match self.direction {
FadeDirection::Transition => self.transition.tick(time),
FadeDirection::FadeIn => self.fade_in.tick(time),
FadeDirection::FadeOut => self.fade_out.tick(time),
}
}
}
#[derive(Clone, Debug)]
pub enum Event {
Brake,
BrakeRelease,
LeftBlinker,
NextPattern,
PreviousPattern,
RightBlinker,
}
#[derive(Clone, Copy, Debug, PartialEq)]
pub enum Pattern {
Water,
GayPride,
TransPride,
}
impl Pattern {
fn previous(&self) -> Pattern {
match self {
Pattern::Water => Pattern::TransPride,
Pattern::GayPride => Pattern::Water,
Pattern::TransPride => Pattern::GayPride,
}
}
fn next(&self) -> Pattern {
match self {
Pattern::Water => Pattern::GayPride,
Pattern::GayPride => Pattern::TransPride,
Pattern::TransPride => Pattern::Water,
}
}
fn dashboard(&self) -> DashboardPattern {
match self {
Pattern::Water => WATER_DASHBOARD,
Pattern::GayPride => PRIDE_DASHBOARD,
Pattern::TransPride => TRANS_PRIDE_DASHBOARD,
}
}
fn body(&self) -> BodyPattern {
match self {
Pattern::Water => OFF_BODY,
Pattern::GayPride => PRIDE_BODY,
Pattern::TransPride => TRANS_PRIDE_BODY,
}
}
}
#[derive(Clone, Debug, PartialEq)]
pub enum State {
Pattern(Pattern),
Brake,
LeftBlinker,
RightBlinker,
BrakeLeftBlinker,
BrakeRightBlinker,
}
pub struct App {
ui: Box<dyn UI>,
state: State,
home_pattern: Pattern,
current_animation: Box<dyn Animation>,
dashboard_lights: DashboardPattern,
lights: BodyPattern,
}
impl App {
pub fn new(ui: Box<dyn UI>) -> Self {
let pattern = Pattern::Water;
Self {
ui,
state: State::Pattern(pattern),
home_pattern: pattern,
current_animation: Box::new(Fade::new(
OFF_DASHBOARD,
OFF_BODY,
pattern.dashboard(),
pattern.body(),
DEFAULT_FRAMES,
Instant((0 as u32).into()),
)),
dashboard_lights: OFF_DASHBOARD,
lights: OFF_BODY,
}
}
fn update_animation(&mut self, time: Instant) {
match self.state {
State::Pattern(ref pattern) => {
self.current_animation = Box::new(Fade::new(
self.dashboard_lights.clone(),
self.lights.clone(),
pattern.dashboard(),
pattern.body(),
DEFAULT_FRAMES,
time,
))
}
State::Brake => {
self.current_animation = Box::new(Fade::new(
self.dashboard_lights.clone(),
self.lights.clone(),
BRAKES_DASHBOARD,
BRAKES_BODY,
BRAKES_FRAMES,
time,
));
}
State::LeftBlinker => {
self.current_animation = Box::new(Blinker::new(
self.dashboard_lights.clone(),
self.lights.clone(),
BlinkerDirection::Left,
time,
));
}
State::RightBlinker => {
self.current_animation = Box::new(Blinker::new(
self.dashboard_lights.clone(),
self.lights.clone(),
BlinkerDirection::Right,
time,
));
}
State::BrakeLeftBlinker => (),
State::BrakeRightBlinker => (),
}
}
fn update_state(&mut self, event: Event) {
match event {
Event::Brake => {
if self.state == State::Brake {
self.state = State::Pattern(self.home_pattern);
} else {
self.state = State::Brake;
}
}
Event::BrakeRelease => self.state = State::Pattern(self.home_pattern),
Event::LeftBlinker => match self.state {
State::Brake => self.state = State::BrakeLeftBlinker,
State::BrakeLeftBlinker => self.state = State::Brake,
State::LeftBlinker => self.state = State::Pattern(self.home_pattern),
_ => self.state = State::LeftBlinker,
},
Event::NextPattern => match self.state {
State::Pattern(ref pattern) => {
self.home_pattern = pattern.next();
self.state = State::Pattern(self.home_pattern);
}
_ => (),
},
Event::PreviousPattern => match self.state {
State::Pattern(ref pattern) => {
self.home_pattern = pattern.previous();
self.state = State::Pattern(self.home_pattern);
}
_ => (),
},
Event::RightBlinker => match self.state {
State::Brake => self.state = State::BrakeRightBlinker,
State::BrakeRightBlinker => self.state = State::Brake,
State::RightBlinker => self.state = State::Pattern(self.home_pattern),
_ => self.state = State::RightBlinker,
},
}
}
pub fn tick(&mut self, time: Instant) {
match self.ui.check_event(time) {
Some(event) => {
self.update_state(event);
self.update_animation(time);
}
None => {}
};
let (dashboard, lights) = self.current_animation.tick(time);
self.dashboard_lights = dashboard.clone();
self.lights = lights.clone();
self.ui.update_lights(dashboard, lights);
}
}

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use crate::{BodyPattern, DashboardPattern, RGB};
use fixed::types::{I8F8, U16F0};
pub const RGB_OFF: RGB<I8F8> = RGB {
r: I8F8::lit("0"),
g: I8F8::lit("0"),
b: I8F8::lit("0"),
};
pub const RGB_WHITE: RGB<I8F8> = RGB {
r: I8F8::lit("1"),
g: I8F8::lit("1"),
b: I8F8::lit("1"),
};
pub const BRAKES_RED: RGB<I8F8> = RGB {
r: I8F8::lit("1"),
g: I8F8::lit("0"),
b: I8F8::lit("0"),
};
pub const BLINKER_AMBER: RGB<I8F8> = RGB {
r: I8F8::lit("1"),
g: I8F8::lit("0.15"),
b: I8F8::lit("0"),
};
pub const PRIDE_RED: RGB<I8F8> = RGB {
r: I8F8::lit("0.95"),
g: I8F8::lit("0.00"),
b: I8F8::lit("0.00"),
};
pub const PRIDE_ORANGE: RGB<I8F8> = RGB {
r: I8F8::lit("1.0"),
g: I8F8::lit("0.25"),
b: I8F8::lit("0"),
};
pub const PRIDE_YELLOW: RGB<I8F8> = RGB {
r: I8F8::lit("1.0"),
g: I8F8::lit("0.85"),
b: I8F8::lit("0"),
};
pub const PRIDE_GREEN: RGB<I8F8> = RGB {
r: I8F8::lit("0"),
g: I8F8::lit("0.95"),
b: I8F8::lit("0.05"),
};
pub const PRIDE_INDIGO: RGB<I8F8> = RGB {
r: I8F8::lit("0.04"),
g: I8F8::lit("0.15"),
b: I8F8::lit("0.55"),
};
pub const PRIDE_VIOLET: RGB<I8F8> = RGB {
r: I8F8::lit("0.75"),
g: I8F8::lit("0.0"),
b: I8F8::lit("0.80"),
};
pub const TRANS_BLUE: RGB<I8F8> = RGB {
r: I8F8::lit("0.06"),
g: I8F8::lit("0.41"),
b: I8F8::lit("0.98"),
};
pub const TRANS_PINK: RGB<I8F8> = RGB {
r: I8F8::lit("0.96"),
g: I8F8::lit("0.16"),
b: I8F8::lit("0.32"),
};
pub const WATER_1: RGB<I8F8> = RGB {
r: I8F8::lit("0.0"),
g: I8F8::lit("0.0"),
b: I8F8::lit("0.75"),
};
pub const WATER_2: RGB<I8F8> = RGB {
r: I8F8::lit("0.8"),
g: I8F8::lit("0.8"),
b: I8F8::lit("0.8"),
};
pub const WATER_3: RGB<I8F8> = RGB {
r: I8F8::lit("0.00"),
g: I8F8::lit("0.75"),
b: I8F8::lit("0.75"),
};
pub const OFF_DASHBOARD: DashboardPattern = [RGB_OFF; 3];
pub const OFF_BODY: BodyPattern = [RGB_OFF; 60];
pub const DEFAULT_FRAMES: U16F0 = U16F0::lit("30");
pub const WATER_DASHBOARD: DashboardPattern = [WATER_1, WATER_2, WATER_3];
pub const WATER_BODY: BodyPattern = [RGB_OFF; 60];
pub const PRIDE_DASHBOARD: DashboardPattern = [PRIDE_RED, PRIDE_GREEN, PRIDE_INDIGO];
pub const PRIDE_BODY: BodyPattern = [
// Left Side
// Red
PRIDE_RED,
PRIDE_RED,
PRIDE_RED,
PRIDE_RED,
PRIDE_RED,
// Orange
PRIDE_ORANGE,
PRIDE_ORANGE,
PRIDE_ORANGE,
PRIDE_ORANGE,
PRIDE_ORANGE,
// Yellow
PRIDE_YELLOW,
PRIDE_YELLOW,
PRIDE_YELLOW,
PRIDE_YELLOW,
PRIDE_YELLOW,
// Green
PRIDE_GREEN,
PRIDE_GREEN,
PRIDE_GREEN,
PRIDE_GREEN,
PRIDE_GREEN,
// Indigo
PRIDE_INDIGO,
PRIDE_INDIGO,
PRIDE_INDIGO,
PRIDE_INDIGO,
PRIDE_INDIGO,
// Violet
PRIDE_VIOLET,
PRIDE_VIOLET,
PRIDE_VIOLET,
PRIDE_VIOLET,
PRIDE_VIOLET,
// Right Side
// Violet
PRIDE_VIOLET,
PRIDE_VIOLET,
PRIDE_VIOLET,
PRIDE_VIOLET,
PRIDE_VIOLET,
// Indigo
PRIDE_INDIGO,
PRIDE_INDIGO,
PRIDE_INDIGO,
PRIDE_INDIGO,
PRIDE_INDIGO,
// Green
PRIDE_GREEN,
PRIDE_GREEN,
PRIDE_GREEN,
PRIDE_GREEN,
PRIDE_GREEN,
// Yellow
PRIDE_YELLOW,
PRIDE_YELLOW,
PRIDE_YELLOW,
PRIDE_YELLOW,
PRIDE_YELLOW,
// Orange
PRIDE_ORANGE,
PRIDE_ORANGE,
PRIDE_ORANGE,
PRIDE_ORANGE,
PRIDE_ORANGE,
// Red
PRIDE_RED,
PRIDE_RED,
PRIDE_RED,
PRIDE_RED,
PRIDE_RED,
];
pub const TRANS_PRIDE_DASHBOARD: DashboardPattern = [TRANS_BLUE, RGB_WHITE, TRANS_PINK];
pub const TRANS_PRIDE_BODY: BodyPattern = [
// Left Side
TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_PINK, TRANS_PINK,
TRANS_PINK, TRANS_PINK, TRANS_PINK, TRANS_PINK, RGB_WHITE, RGB_WHITE, RGB_WHITE, RGB_WHITE,
RGB_WHITE, RGB_WHITE, TRANS_PINK, TRANS_PINK, TRANS_PINK, TRANS_PINK, TRANS_PINK, TRANS_PINK,
TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE,
// Right side
TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_PINK, TRANS_PINK,
TRANS_PINK, TRANS_PINK, TRANS_PINK, TRANS_PINK, RGB_WHITE, RGB_WHITE, RGB_WHITE, RGB_WHITE,
RGB_WHITE, RGB_WHITE, TRANS_PINK, TRANS_PINK, TRANS_PINK, TRANS_PINK, TRANS_PINK, TRANS_PINK,
TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE, TRANS_BLUE,
];
pub const BRAKES_FRAMES: U16F0 = U16F0::lit("15");
pub const BRAKES_DASHBOARD: DashboardPattern = [BRAKES_RED; 3];
pub const BRAKES_BODY: BodyPattern = [BRAKES_RED; 60];
pub const BLINKER_FRAMES: U16F0 = U16F0::lit("10");
pub const LEFT_BLINKER_DASHBOARD: DashboardPattern = [BLINKER_AMBER, RGB_OFF, RGB_OFF];
pub const LEFT_BLINKER_BODY: BodyPattern = [
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
];
pub const RIGHT_BLINKER_DASHBOARD: DashboardPattern = [RGB_OFF, RGB_OFF, BLINKER_AMBER];
pub const RIGHT_BLINKER_BODY: BodyPattern = [
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
RGB_OFF,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
BLINKER_AMBER,
];

View File

@ -0,0 +1,17 @@
use core::default::Default;
use fixed::types::I8F8;
#[derive(Clone, Copy, Default, Debug)]
pub struct RGB<T> {
pub r: T,
pub g: T,
pub b: T,
}
const DASHBOARD_LIGHT_COUNT: usize = 3;
pub type DashboardPattern = [RGB<I8F8>; DASHBOARD_LIGHT_COUNT];
const BODY_LIGHT_COUNT: usize = 60;
pub type BodyPattern = [RGB<I8F8>; BODY_LIGHT_COUNT];

View File

@ -0,0 +1,16 @@
[package]
name = "simulator"
version = "0.1.0"
edition = "2021"
# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
[dependencies]
adw = { version = "0.5", package = "libadwaita", features = [ "v1_2" ] }
cairo-rs = { version = "0.18" }
fixed = { version = "1" }
gio = { version = "0.18" }
glib = { version = "0.18" }
gtk = { version = "0.7", package = "gtk4", features = [ "v4_8" ] }
lights-core = { path = "../core" }
pango = { version = "*" }

View File

@ -0,0 +1,288 @@
use adw::prelude::*;
use fixed::types::{I8F8, U128F0};
use glib::{Object, Sender};
use gtk::subclass::prelude::*;
use lights_core::{
App, BodyPattern, DashboardPattern, Event, Instant, FPS, OFF_BODY, OFF_DASHBOARD, RGB, UI,
};
use std::{
cell::RefCell,
env,
rc::Rc,
sync::mpsc::{Receiver, TryRecvError},
};
const WIDTH: i32 = 640;
const HEIGHT: i32 = 480;
pub struct Update {
dashboard: DashboardPattern,
lights: BodyPattern,
}
pub struct DashboardLightsPrivate {
lights: Rc<RefCell<DashboardPattern>>,
}
#[glib::object_subclass]
impl ObjectSubclass for DashboardLightsPrivate {
const NAME: &'static str = "DashboardLights";
type Type = DashboardLights;
type ParentType = gtk::DrawingArea;
fn new() -> Self {
Self {
lights: Rc::new(RefCell::new(OFF_DASHBOARD)),
}
}
}
impl ObjectImpl for DashboardLightsPrivate {}
impl WidgetImpl for DashboardLightsPrivate {}
impl DrawingAreaImpl for DashboardLightsPrivate {}
glib::wrapper! {
pub struct DashboardLights(ObjectSubclass<DashboardLightsPrivate>) @extends gtk::DrawingArea, gtk::Widget;
}
impl DashboardLights {
pub fn new() -> Self {
let s: Self = Object::builder().build();
s.set_width_request(WIDTH);
s.set_height_request(100);
s.set_draw_func({
let s = s.clone();
move |_, context, width, _| {
let start = width as f64 / 2. - 150.;
let lights = s.imp().lights.borrow();
for i in 0..3 {
context.set_source_rgb(
lights[i].r.into(),
lights[i].g.into(),
lights[i].b.into(),
);
context.rectangle(start + 100. * i as f64, 10., 80., 80.);
let _ = context.fill();
}
}
});
s
}
pub fn set_lights(&self, lights: DashboardPattern) {
*self.imp().lights.borrow_mut() = lights;
self.queue_draw();
}
}
pub struct BikeLightsPrivate {
lights: Rc<RefCell<BodyPattern>>,
}
#[glib::object_subclass]
impl ObjectSubclass for BikeLightsPrivate {
const NAME: &'static str = "BikeLights";
type Type = BikeLights;
type ParentType = gtk::DrawingArea;
fn new() -> Self {
Self {
lights: Rc::new(RefCell::new(OFF_BODY)),
}
}
}
impl ObjectImpl for BikeLightsPrivate {}
impl WidgetImpl for BikeLightsPrivate {}
impl DrawingAreaImpl for BikeLightsPrivate {}
glib::wrapper! {
pub struct BikeLights(ObjectSubclass<BikeLightsPrivate>) @extends gtk::DrawingArea, gtk::Widget;
}
impl BikeLights {
pub fn new() -> Self {
let s: Self = Object::builder().build();
s.set_width_request(WIDTH);
s.set_height_request(640);
let center = WIDTH as f64 / 2.;
s.set_draw_func({
let s = s.clone();
move |_, context, _, _| {
let lights = s.imp().lights.borrow();
for i in 0..30 {
context.set_source_rgb(
lights[i].r.into(),
lights[i].g.into(),
lights[i].b.into(),
);
context.rectangle(center - 45., 5. + 20. * i as f64, 15., 15.);
let _ = context.fill();
}
for i in 0..30 {
context.set_source_rgb(
lights[i + 30].r.into(),
lights[i + 30].g.into(),
lights[i + 30].b.into(),
);
context.rectangle(center + 15., 5. + 20. * (30. - (i + 1) as f64), 15., 15.);
let _ = context.fill();
}
}
});
s
}
pub fn set_lights(&self, lights: [RGB<I8F8>; 60]) {
*self.imp().lights.borrow_mut() = lights;
self.queue_draw();
}
}
struct GTKUI {
tx: Sender<Update>,
rx: Receiver<Event>,
}
impl UI for GTKUI {
fn check_event(&mut self, _: Instant) -> Option<Event> {
match self.rx.try_recv() {
Ok(event) => Some(event),
Err(TryRecvError::Empty) => None,
Err(TryRecvError::Disconnected) => None,
}
}
fn update_lights(&self, dashboard_lights: DashboardPattern, lights: BodyPattern) {
self.tx
.send(Update {
dashboard: dashboard_lights,
lights,
})
.unwrap();
}
}
fn main() {
let adw_app = adw::Application::builder()
.application_id("com.luminescent-dreams.bike-light-simulator")
.build();
adw_app.connect_activate(move |adw_app| {
let (update_tx, update_rx) =
gtk::glib::MainContext::channel::<Update>(gtk::glib::Priority::DEFAULT);
let (event_tx, event_rx) = std::sync::mpsc::channel();
std::thread::spawn(move || {
let mut bike_app = App::new(Box::new(GTKUI {
tx: update_tx,
rx: event_rx,
}));
loop {
bike_app.tick(Instant(U128F0::from(
std::time::SystemTime::now()
.duration_since(std::time::UNIX_EPOCH)
.unwrap()
.as_millis(),
)));
std::thread::sleep(std::time::Duration::from_millis(1000 / (FPS as u64)));
}
});
let window = adw::ApplicationWindow::builder()
.application(adw_app)
.default_width(WIDTH)
.default_height(HEIGHT)
.build();
let layout = gtk::Box::builder()
.orientation(gtk::Orientation::Vertical)
.build();
let controls = gtk::Box::builder()
.orientation(gtk::Orientation::Horizontal)
.build();
let dashboard_lights = DashboardLights::new();
let bike_lights = BikeLights::new();
let left_button = gtk::Button::builder().label("L").build();
let brake_button = gtk::Button::builder().label("Brakes").build();
let right_button = gtk::Button::builder().label("R").build();
left_button.connect_clicked({
let event_tx = event_tx.clone();
move |_| {
let _ = event_tx.send(Event::LeftBlinker);
}
});
brake_button.connect_clicked({
let event_tx = event_tx.clone();
move |_| {
let _ = event_tx.send(Event::Brake);
}
});
right_button.connect_clicked({
let event_tx = event_tx.clone();
move |_| {
let _ = event_tx.send(Event::RightBlinker);
}
});
controls.append(&left_button);
controls.append(&brake_button);
controls.append(&right_button);
layout.append(&controls);
let pattern_controls = gtk::Box::builder()
.orientation(gtk::Orientation::Horizontal)
.build();
let previous_pattern = gtk::Button::builder().label("Previous").build();
let next_pattern = gtk::Button::builder().label("Next").build();
previous_pattern.connect_clicked({
let event_tx = event_tx.clone();
move |_| {
let _ = event_tx.send(Event::PreviousPattern);
}
});
next_pattern.connect_clicked({
let event_tx = event_tx.clone();
move |_| {
let _ = event_tx.send(Event::NextPattern);
}
});
pattern_controls.append(&previous_pattern);
pattern_controls.append(&next_pattern);
layout.append(&pattern_controls);
layout.append(&dashboard_lights);
layout.append(&bike_lights);
update_rx.attach(None, {
let dashboard_lights = dashboard_lights.clone();
let bike_lights = bike_lights.clone();
move |Update { dashboard, lights }| {
dashboard_lights.set_lights(dashboard);
bike_lights.set_lights(lights);
glib::ControlFlow::Continue
}
});
window.set_content(Some(&layout));
window.present();
});
let args: Vec<String> = env::args().collect();
ApplicationExtManual::run_with_args(&adw_app, &args);
}

View File

@ -7,21 +7,21 @@
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@ -29,13 +29,17 @@
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@ -412,25 +452,29 @@
"registry+https://github.com/rust-lang/crates.io-index#unicode-ident@1.0.12": "0jzf1znfpb2gx8nr8mvmyqs1crnv79l57nxnbiszc7xf7ynbjm1k",
"registry+https://github.com/rust-lang/crates.io-index#unicode-normalization@0.1.22": "08d95g7b1irc578b2iyhzv4xhsa4pfvwsqxcl9lbcpabzkq16msw",
"registry+https://github.com/rust-lang/crates.io-index#unicode-segmentation@1.10.1": "0dky2hm5k51xy11hc3nk85p533rvghd462b6i0c532b7hl4j9mhx",
"registry+https://github.com/rust-lang/crates.io-index#unicode-width@0.1.13": "0p92vl8n7qc8mxz45xn6qbgi0259z96n32a158l6vj5bywwdadh3",
"registry+https://github.com/rust-lang/crates.io-index#unicode_categories@0.1.1": "0kp1d7fryxxm7hqywbk88yb9d1avsam9sg76xh36k5qx2arj9v1r",
"registry+https://github.com/rust-lang/crates.io-index#unsafe-any@0.4.2": "0zwwphsqkw5qaiqmjwngnfpv9ym85qcsyj7adip9qplzjzbn00zk",
"registry+https://github.com/rust-lang/crates.io-index#url@1.7.2": "0nim1c90mxpi9wgdw2xh8dqd72vlklwlzam436akcrhjac6pqknx",
"registry+https://github.com/rust-lang/crates.io-index#url@2.5.0": "0cs65961miawncdg2z20171w0vqrmraswv2ihdpd8lxp7cp31rii",
"registry+https://github.com/rust-lang/crates.io-index#urlencoding@2.1.3": "1nj99jp37k47n0hvaz5fvz7z6jd0sb4ppvfy3nphr1zbnyixpy6s",
"registry+https://github.com/rust-lang/crates.io-index#usb-device@0.2.9": "0205a850jhw9gb96scwfx1k4iwpjvighvz3m80mjkda9r2nw6v0z",
"registry+https://github.com/rust-lang/crates.io-index#utf-8@0.7.6": "1a9ns3fvgird0snjkd3wbdhwd3zdpc2h5gpyybrfr6ra5pkqxk09",
"registry+https://github.com/rust-lang/crates.io-index#utf8parse@0.2.1": "02ip1a0az0qmc2786vxk2nqwsgcwf17d3a38fkf0q7hrmwh9c6vi",
"registry+https://github.com/rust-lang/crates.io-index#uuid@0.4.0": "0cdj2v6v2yy3zyisij69waksd17cyir1n58kwyk1n622105wbzkw",
"registry+https://github.com/rust-lang/crates.io-index#uuid@0.8.2": "1dy4ldcp7rnzjy56dxh7d2sgrcvn4q77y0a8r0a48946h66zjp5w",
"registry+https://github.com/rust-lang/crates.io-index#uuid@1.6.1": "0q45jxahvysldn3iy04m8xmr8hgig80855y9gq9di8x72v7myfay",
"registry+https://github.com/rust-lang/crates.io-index#value-bag@1.7.0": "02r8wccrzi3bzlkrslkcfw9pwp8kwif9szif2i9arn9dzqx44vhj",
"registry+https://github.com/rust-lang/crates.io-index#vcell@0.1.3": "00n0ss2z3rh0ihig6d4w7xp72g58f7g1m6s5v4h3nc6jacdrqhvp",
"registry+https://github.com/rust-lang/crates.io-index#vcpkg@0.2.15": "09i4nf5y8lig6xgj3f7fyrvzd3nlaw4znrihw8psidvv5yk4xkdc",
"registry+https://github.com/rust-lang/crates.io-index#version-compare@0.1.1": "0acg4pmjdbmclg0m7yhijn979mdy66z3k8qrcnvn634f1gy456jp",
"registry+https://github.com/rust-lang/crates.io-index#version_check@0.1.5": "1pf91pvj8n6akh7w6j5ypka6aqz08b3qpzgs0ak2kjf4frkiljwi",
"registry+https://github.com/rust-lang/crates.io-index#version_check@0.9.4": "0gs8grwdlgh0xq660d7wr80x14vxbizmd8dbp29p2pdncx8lp1s9",
"registry+https://github.com/rust-lang/crates.io-index#void@1.0.2": "0zc8f0ksxvmhvgx4fdg0zyn6vdnbxd2xv9hfx4nhzg6kbs4f80ka",
"registry+https://github.com/rust-lang/crates.io-index#volatile-register@0.2.2": "1k0rkm81qyhn4r8f03z0sch2kyikkgjjfalpaami9c08c8m7whyy",
"registry+https://github.com/rust-lang/crates.io-index#wait-timeout@0.2.0": "1xpkk0j5l9pfmjfh1pi0i89invlavfrd9av5xp0zhxgb29dhy84z",
"registry+https://github.com/rust-lang/crates.io-index#waker-fn@1.1.1": "142n74wlmpwcazfb5v7vhnzj3lb3r97qy8mzpjdpg345aizm3i7k",
"registry+https://github.com/rust-lang/crates.io-index#want@0.3.1": "03hbfrnvqqdchb5kgxyavb9jabwza0dmh2vw5kg0dq8rxl57d9xz",
"registry+https://github.com/rust-lang/crates.io-index#warp@0.3.6": "0sfimrpxkyka1mavfhg5wa4x977qs8vyxa510c627w9zw0i2xsf1",
"registry+https://github.com/rust-lang/crates.io-index#warp@0.3.7": "07137zd13lchy5hxpspd0hs6sl19b0fv2zc1chf02nwnzw1d4y23",
"registry+https://github.com/rust-lang/crates.io-index#wasi@0.10.0+wasi-snapshot-preview1": "07y3l8mzfzzz4cj09c8y90yak4hpsi9g7pllyzpr6xvwrabka50s",
"registry+https://github.com/rust-lang/crates.io-index#wasi@0.11.0+wasi-snapshot-preview1": "08z4hxwkpdpalxjps1ai9y7ihin26y9f476i53dv98v45gkqg3cw",
"registry+https://github.com/rust-lang/crates.io-index#wasm-bindgen-backend@0.2.89": "09l8lyylsdssz993h4fzja69zpvpykaw84fivs210fjgwqjzcmhv",
@ -467,6 +511,7 @@
"registry+https://github.com/rust-lang/crates.io-index#windows_x86_64_msvc@0.52.0": "012wfq37f18c09ij5m6rniw7xxn5fcvrxbqd0wd8vgnl3hfn9yfz",
"registry+https://github.com/rust-lang/crates.io-index#winnow@0.5.30": "1ifj9vnqna5qp0d7nb9mrinzf8j7zi1m0gv75870vm91jyw3sp4v",
"registry+https://github.com/rust-lang/crates.io-index#winreg@0.50.0": "1cddmp929k882mdh6i9f2as848f13qqna6czwsqzkh1pqnr5fkjj",
"registry+https://github.com/rust-lang/crates.io-index#yansi-term@0.1.2": "1w8vjlvxba6yvidqdvxddx3crl6z66h39qxj8xi6aqayw2nk0p7y",
"registry+https://github.com/rust-lang/crates.io-index#zerocopy-derive@0.7.31": "06k0zk4x4n9s1blgxmxqb1g81y8q334aayx61gyy6v9y1dajkhdk",
"registry+https://github.com/rust-lang/crates.io-index#zerocopy@0.7.31": "0gcfyrmlrhmsz16qxjp2qzr6vixyaw1p04zl28f08lxkvfz62h0w",
"registry+https://github.com/rust-lang/crates.io-index#zeroize@1.7.0": "0bfvby7k9pdp6623p98yz2irqnamcyzpn7zh20nqmdn68b0lwnsj",

View File

@ -1,12 +1,13 @@
[package]
name = "dashboard"
version = "0.1.2"
version = "0.1.3"
edition = "2018"
# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
[dependencies]
adw = { version = "0.5", package = "libadwaita", features = [ "v1_2" ] }
async-std = { version = "1.13" }
cairo-rs = { version = "0.18" }
chrono = { version = "0.4", features = ["serde"] }
fluent-ergonomics = { path = "../fluent-ergonomics/" }
@ -17,13 +18,11 @@ gio = { version = "0.18" }
glib = { version = "0.18" }
gdk = { version = "0.7", package = "gdk4" }
gtk = { version = "0.7", package = "gtk4" }
ifc = { path = "../ifc/" }
lazy_static = { version = "1.4" }
memorycache = { path = "../memorycache/" }
reqwest = { version = "0.11", features = ["json"] }
serde_derive = { version = "1" }
serde_json = { version = "1" }
serde = { version = "1" }
serde = { version = "1", features = [ "derive" ] }
tokio = { version = "1", features = ["full"] }
unic-langid = { version = "0.9" }

View File

@ -41,7 +41,10 @@ impl ApplicationWindow {
.build();
let date_label = Date::default();
layout.append(&date_label);
let header = adw::HeaderBar::builder()
.title_widget(&date_label)
.build();
layout.append(&header);
let events = Events::default();
layout.append(&events);

View File

@ -1,21 +1,19 @@
use chrono::Datelike;
use glib::Object;
use gtk::{prelude::*, subclass::prelude::*};
use ifc::IFC;
use std::{cell::RefCell, rc::Rc};
use chrono::NaiveDate;
use glib::Object;
use gtk::{prelude::*, subclass::prelude::*};
pub struct DatePrivate {
date: Rc<RefCell<IFC>>,
date: Rc<RefCell<NaiveDate>>,
label: Rc<RefCell<gtk::Label>>,
}
impl Default for DatePrivate {
fn default() -> Self {
let date = chrono::Local::now().date_naive();
let year = date.year();
let date = date.with_year(year + 10000).unwrap();
Self {
date: Rc::new(RefCell::new(IFC::from(date))),
date: Rc::new(RefCell::new(date)),
label: Rc::new(RefCell::new(gtk::Label::new(None))),
}
}
@ -52,19 +50,16 @@ impl Default for Date {
}
impl Date {
pub fn update_date(&self, date: IFC) {
pub fn update_date(&self, date: NaiveDate) {
*self.imp().date.borrow_mut() = date;
self.redraw();
}
fn redraw(&self) {
let date = self.imp().date.borrow().clone();
self.imp().label.borrow_mut().set_text(&format!(
"{:?}, {:?} {}, {}",
date.weekday(),
date.month(),
date.day(),
date.year()
));
let date = self.imp().date.borrow();
self.imp()
.label
.borrow_mut()
.set_text(&date.format("%Y %B %d").to_string());
}
}

View File

@ -4,7 +4,6 @@ use crate::{
};
use glib::Object;
use gtk::{prelude::*, subclass::prelude::*};
use ifc::IFC;
/*
#[derive(PartialEq)]
@ -59,19 +58,19 @@ impl Events {
pub fn set_events(&self, events: YearlyEvents, next_event: solstices::Event) {
self.imp()
.spring_equinox
.update_date(IFC::from(events.spring_equinox.date_naive()));
.update_date(events.spring_equinox.date_naive());
self.imp()
.summer_solstice
.update_date(IFC::from(events.summer_solstice.date_naive()));
.update_date(events.summer_solstice.date_naive());
self.imp()
.autumn_equinox
.update_date(IFC::from(events.autumn_equinox.date_naive()));
.update_date(events.autumn_equinox.date_naive());
self.imp()
.winter_solstice
.update_date(IFC::from(events.winter_solstice.date_naive()));
.update_date(events.winter_solstice.date_naive());
self.imp().spring_equinox.remove_css_class("highlight");
self.imp().summer_solstice.remove_css_class("highlight");

View File

@ -1,13 +1,13 @@
use chrono::{Datelike, Local, Utc};
use geo_types::{Latitude, Longitude};
use glib::Sender;
use gtk::prelude::*;
use ifc::IFC;
use std::{
env,
sync::{Arc, RwLock},
};
use async_std::channel::Sender;
use chrono::{Datelike, Local, Utc};
use geo_types::{Latitude, Longitude};
use gtk::prelude::*;
mod app_window;
use app_window::ApplicationWindow;
@ -102,14 +102,17 @@ pub fn main() {
let now = Local::now();
let state = State {
date: IFC::from(now.date_naive().with_year(now.year() + 10000).unwrap()),
date: now.date_naive(),
next_event: EVENTS.next_event(now.with_timezone(&Utc)).unwrap(),
events: EVENTS.yearly_events(now.year()).unwrap(),
transit: Some(transit),
};
if let Some(ref gtk_tx) = *core.tx.read().unwrap() {
let _ = gtk_tx.send(Message::Refresh(state.clone()));
let gtk_tx = core.tx.read().unwrap().clone();
if let Some(gtk_tx) = gtk_tx {
let state = state.clone();
let _ = gtk_tx.send(Message::Refresh(state)).await;
std::thread::sleep(std::time::Duration::from_secs(60));
} else {
std::thread::sleep(std::time::Duration::from_secs(1));
@ -119,21 +122,17 @@ pub fn main() {
});
app.connect_activate(move |app| {
let (gtk_tx, gtk_rx) =
gtk::glib::MainContext::channel::<Message>(gtk::glib::Priority::DEFAULT);
let (gtk_tx, gtk_rx) = async_std::channel::unbounded();
*core.tx.write().unwrap() = Some(gtk_tx);
let window = ApplicationWindow::new(app);
window.window.present();
gtk_rx.attach(None, {
let window = window.clone();
move |msg| {
let Message::Refresh(state) = msg;
ApplicationWindow::update_state(&window, state);
glib::ControlFlow::Continue
glib::spawn_future_local(async move {
loop {
let Message::Refresh(state) = gtk_rx.recv().await.unwrap();
window.update_state(state);
}
});
});

View File

@ -1,7 +1,8 @@
use std::collections::HashMap;
use chrono::prelude::*;
use lazy_static::lazy_static;
use serde_derive::{Deserialize, Serialize};
use std::collections::HashMap;
use serde::{Deserialize, Serialize};
// http://astropixels.com/ephemeris/soleq2001.html
const SOLSTICE_TEXT: &str = "

View File

@ -2,11 +2,11 @@ use crate::{
solstices::{Event, YearlyEvents},
soluna_client::SunMoon,
};
use ifc::IFC;
use chrono::NaiveDate;
#[derive(Clone, Debug)]
pub struct State {
pub date: IFC,
pub date: NaiveDate,
pub next_event: Event,
pub events: YearlyEvents,
pub transit: Option<SunMoon>,

View File

@ -1,19 +0,0 @@
[package]
name = "editor-challenge"
version = "0.1.0"
edition = "2021"
# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
[dependencies]
anyhow = { version = "1" }
crossterm = { version = "0.19", features = [ "serde" ] }
serde = { version = "1", features = [ "derive" ] }
serde_yml = { version = "*" }
thiserror = { version = "1" }
tui = { version = "0.19", default-features = false, features = [ "crossterm", "serde" ] }
[[bin]]
name = "bench"
# main = "bin/bench.rs"
# features = [ "bench" ]

File diff suppressed because it is too large Load Diff

View File

@ -1,5 +0,0 @@
use editor_challenge::types::bench::*;
fn main() {
bench_insert_lines();
}

View File

@ -1,269 +0,0 @@
use std::{mem, ops::Deref};
const CHUNK_SIZE: usize = 10;
#[derive(Clone, Copy, Debug)]
struct NodeId(usize);
impl Deref for NodeId {
type Target = usize;
fn deref(&self) -> &Self::Target {
&self.0
}
}
#[derive(Debug)]
enum Node {
Interior {
// the number of characters to the left of this node
// the number of lines to the left of this node
char_count: usize,
left: Option<NodeId>,
right: Option<NodeId>,
},
Leaf(LeafNode),
}
impl Node {
fn len(&self) -> usize {
match self {
Node::Interior { char_count, .. } => 0,
Node::Leaf(ln) => ln.len(),
}
}
}
#[derive(Debug)]
struct LeafNode(String);
impl LeafNode {
fn len(&self) -> usize {
self.0.len()
}
fn take(&mut self) -> String {
let content = mem::replace(&mut self.0, "".to_owned());
content
}
fn as_str(&self) -> &str {
&self.0
}
}
impl From<String> for LeafNode {
fn from(s: String) -> Self {
Self(s)
}
}
/// A Rope is a regular tree which adds on some extra behavior for dealing with a continuous data
/// structure. In this case, the nodes all contain strings, and the rope is arranged such that a
/// depth-first traversal will yield the entire contents of the rope in proper order.
#[derive(Debug)]
pub struct Rope {
node_count: usize,
contents: Vec<Option<Node>>,
}
impl Rope {
/// Insert text at an index within the document. loc is the number of characters from the
/// beginning.
pub fn insert_at(&mut self, loc: usize, text: String) {
match self.find_insertion_node_id(loc) {
None => {
let node = Node::Leaf(LeafNode::from(text));
self.node_count += 1;
self.contents.push(Some(node));
}
Some(id) => {
self.insert_at_node(id, text);
}
}
}
/// Append text to the end of the document.
pub fn append(&mut self, text: String) {
self.insert_at(self.len(), text);
}
/// Convert the entire rope back to a continuous String.
pub fn to_string(&self) -> String {
if self.contents.is_empty() {
return "".to_owned();
}
let mut r = String::new();
let mut stack = vec![NodeId(0)];
while let Some(current_id) = stack.pop() {
let node = &self.contents[*current_id];
match node {
Some(Node::Interior { left, right, .. }) => {
if let Some(right_id) = *right {
stack.push(right_id);
}
if let Some(left_id) = *left {
stack.push(left_id);
}
}
Some(Node::Leaf(ln)) => r.push_str(ln.as_str()),
None => panic!("Should never leave an empty space in the node list"),
}
}
r
}
/// Calculate the length of the stored string.
pub fn len(&self) -> usize {
// This can be optimized later. Do a traversal of each right node. We already have
// character counts of each left tree. Only count the length of the final right leaf.
self.contents.iter().fold(0, |acc, node| {
if let Some(Node::Leaf(s)) = node {
acc + s.len()
} else {
acc
}
})
}
#[cfg(test)]
fn max_depth(&self) -> usize {
unimplemented!();
}
#[cfg(test)]
fn node_count(&self) -> usize {
self.node_count
}
// Find the node ID of the insertion point. This is not fully implemented, in that this
// function ignores the offset from the beginning. Because of that, it is also always inserting
// onto the right side, and never traversing down the left.
fn find_insertion_node_id(&self, _loc: usize) -> Option<NodeId> {
let mut current_id = NodeId(0);
loop {
match self.contents.get(*current_id) {
Some(Some(Node::Interior { ref right, .. })) => match right {
Some(id) => current_id = *id,
None => return Some(current_id),
},
Some(Some(Node::Leaf(_))) => return Some(current_id),
Some(None) => panic!("There should never be an empty node in the tree"),
// This only happens when the list is empty. Otherwise, we're detecting the None in
// advance.
None => return None,
}
}
}
// Insert text at a particular node location.
//
// This is not a self-balancing operation (yet). Once we know where text needs to be inserted,
// based on the offset from the beginning, we can grab that node and either replace it (if it
// is a Leaf node) or update it (if it is an Interior node).
//
// This function is currently naive, in that it will always assume that text needs to be added
// to the right side, which may not be correct.
fn insert_at_node(&mut self, id: NodeId, text: String) {
match self.contents[*id] {
Some(Node::Interior { ref mut right, .. }) => {
let new_node = Node::Leaf(LeafNode::from(text));
let new_node_id = NodeId(self.node_count + 1);
*right = Some(new_node_id);
self.contents.push(Some(new_node));
self.node_count += 1;
}
Some(Node::Leaf(_)) => {
let Some(Node::Leaf(mut ln)) = mem::replace(&mut self.contents[*id], None) else {
panic!("Should never leave an empty space in the node list")
};
let contents = ln.take();
let lnode = Node::Leaf(LeafNode::from(contents));
let rnode = Node::Leaf(LeafNode::from(text));
let lnode_id = self.node_count;
let rnode_id = self.node_count + 1;
let interior_node = Node::Interior {
char_count: lnode.len(),
left: Some(NodeId(lnode_id)),
right: Some(NodeId(rnode_id)),
};
let _ = mem::replace(&mut self.contents[*id], Some(interior_node));
self.node_count += 2;
self.contents.push(Some(lnode));
self.contents.push(Some(rnode));
}
None => panic!("Should never leave an empty space in the node list"),
}
}
}
impl Default for Rope {
fn default() -> Self {
Self {
node_count: 0,
contents: vec![],
}
}
}
// Populate the initial rope. The simplest way is to split along lines and turn each line into its
// own leaf node.
impl From<String> for Rope {
fn from(s: String) -> Self {
let mut rope = Rope::default();
#[allow(unused_assignments)]
let mut first = s.as_str();
let mut lst = s.as_str();
while lst.len() > CHUNK_SIZE {
(first, lst) = lst.split_at(CHUNK_SIZE);
rope.append(first.to_owned());
}
rope.append(lst.to_owned());
rope
}
}
#[cfg(test)]
mod test {
use super::*;
struct TestCase {
content: String,
}
#[test]
fn it_creates_a_rope_from_a_string() {
let test_cases = vec![
TestCase{ content: "".to_owned() },
TestCase{ content: "This".to_owned() },
TestCase{ content: "This is some basic".to_owned() },
TestCase{ content: "This is some basic context which is much smaller".to_owned() },
TestCase{ content:
"This is some basic context which is much smaller than the rope is designed for."
.to_owned()
},
];
for case in test_cases {
let rope = Rope::from(case.content.clone());
for (idx, node) in rope.contents.iter().enumerate() {
}
assert_eq!(rope.len(), case.content.len(), "{}", case.content);
assert_eq!(rope.to_string(), case.content, "{:?}", case.content);
}
}
}

View File

@ -1,6 +0,0 @@
pub mod doc_rope;
pub mod ui;
pub mod state;
pub mod types;

View File

@ -1,95 +0,0 @@
use crossterm::event::{self, KeyCode, KeyEvent, KeyModifiers};
use editor_challenge::*;
use state::AppState;
use std::{
env, io,
sync::mpsc,
thread,
time::{Duration, Instant},
};
use tui::{backend::CrosstermBackend, Terminal};
use ui::Canvas;
// const TITLE: &str = "Text Editor Challenge";
// const COPYRIGHT: &str = "(c) Savanni D'Gerinel - all rights reserved";
const TICK_RATE_MS: u64 = 200;
#[derive(Debug)]
enum Event<I> {
Input(I),
Tick,
}
fn handle_input(tx: mpsc::Sender<Event<KeyEvent>>, tick_rate: Duration) {
let mut last_tick = Instant::now();
loop {
let timeout = tick_rate
.checked_sub(last_tick.elapsed())
.unwrap_or_else(|| Duration::from_secs(0));
if event::poll(timeout).expect("poll works") {
if let event::Event::Key(key) = event::read().expect("can read events") {
tx.send(Event::Input(key)).expect("can send events");
}
}
if last_tick.elapsed() >= tick_rate && tx.send(Event::Tick).is_ok() {
last_tick = Instant::now();
}
}
}
fn app_loop<T>(
mut app_state: AppState,
mut screen: Canvas<T>,
rx: mpsc::Receiver<Event<KeyEvent>>,
) -> Result<(), anyhow::Error>
where
T: tui::backend::Backend,
{
loop {
screen.render(&app_state)?;
match rx.recv()? {
Event::Input(event)
if event.code == KeyCode::Char('x') && event.modifiers == KeyModifiers::CONTROL =>
{
break;
}
Event::Input(event) => app_state.handle_event(event),
_ => {}
}
}
Ok(())
}
fn main() -> Result<(), anyhow::Error> {
let args = env::args().collect::<Vec<String>>();
let file_name = if args.len() > 1 { Some(&args[1]) } else { None };
let app_state = match file_name {
Some(name) => AppState::open(name.into()),
None => Default::default(),
};
let (tx, rx) = mpsc::channel();
let tick_rate = Duration::from_millis(TICK_RATE_MS);
thread::spawn(move || {
handle_input(tx, tick_rate);
});
let stdout = io::stdout();
let backend = CrosstermBackend::new(stdout);
let mut terminal = Terminal::new(backend)?;
terminal.clear()?;
let screen = Canvas::new(terminal);
let result = app_loop(app_state, screen, rx);
result?;
Ok(())
}

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@ -1,75 +0,0 @@
use crossterm::event::{KeyCode, KeyEvent};
use crate::types::{Cursor, Document};
use std::{fs::File, io::{BufRead, BufReader}, path::PathBuf};
#[derive(Default)]
pub struct AppState {
pub path: Option<PathBuf>,
pub cursor: Cursor,
pub contents: Document, // Obviously this is bad, but it's also only temporary.
}
impl AppState {
pub fn open(path: PathBuf) -> Self {
let file = File::open(path.clone()).unwrap();
let reader = BufReader::new(file);
let contents = reader
.lines()
.collect::<Result<Vec<String>, std::io::Error>>()
.unwrap();
Self {
path: Some(path),
cursor: Default::default(),
contents: Document::new(contents),
}
}
pub fn cursor_up(&mut self) {
self.cursor.cursor_up(&self.contents);
}
pub fn cursor_down(&mut self) {
self.cursor.cursor_down(&self.contents);
}
pub fn cursor_right(&mut self) {
self.cursor.cursor_right(&self.contents);
}
pub fn cursor_left(&mut self) {
self.cursor.cursor_left();
}
pub fn handle_event(&mut self, event: KeyEvent) {
let KeyEvent { code, .. }: KeyEvent = event;
match code {
KeyCode::Down => {
self.cursor_down();
}
KeyCode::Up => {
self.cursor_up();
}
KeyCode::Right => {
self.cursor_right();
}
KeyCode::Left => {
self.cursor_left();
}
KeyCode::Backspace => {
self.contents.backspace(&mut self.cursor);
}
KeyCode::Delete => {
self.contents.delete_at(&mut self.cursor);
}
KeyCode::Enter => {
self.contents.new_line(&mut self.cursor);
}
KeyCode::Char(c) => {
self.contents.insert_at(&mut self.cursor, c);
}
_ => {}
};
}
}

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@ -1,202 +0,0 @@
// TODO: I'm increasingly feeling that cursors are per-document, not per-application. So I think I
// want to move the cursor into here, and then rendering requires asking for the cursor for the
// current document.
#[derive(Clone, Default)]
pub struct Document {
rows: Vec<String>,
}
impl Document {
pub fn new(contents: Vec<String>) -> Self {
if contents.len() > (u16::MAX.into()) {
panic!("Document row count exceeds u16::MAX. The current scrolling code cannot handle that.");
}
Self { rows: contents }
}
pub fn line(&self, id: usize) -> Option<&str> {
self.rows.get(id).map(|x| x.as_str())
}
pub fn contents(&self) -> String {
self.rows.join("\n")
}
pub fn row_length(&self, idx: usize) -> usize {
self.rows[idx].len()
}
pub fn row_count(&self) -> usize {
self.rows.len()
}
pub fn insert_at(&mut self, cursor: &mut Cursor, c: char) {
let (row, column) = cursor.addr();
self.rows[row].insert(column, c);
cursor.cursor_right(self);
}
pub fn backspace(&mut self, cursor: &mut Cursor) {
let (row, column) = cursor.addr();
if cursor.column > 0 {
let _ = self.rows[row].remove(column - 1);
cursor.cursor_left();
}
}
pub fn delete_at(&mut self, cursor: &mut Cursor) {
let (row, column) = cursor.addr();
if cursor.column < self.rows[row].len() {
self.rows[row].remove(column);
cursor.correct_columns(self);
}
}
pub fn new_line(&mut self, cursor: &mut Cursor) {
// when doing a newline, take everything to the right of the cursor from the current line
// and move it to the next line.
let (row, _) = cursor.addr();
self.rows.insert(row, String::new());
cursor.cursor_down(&self);
}
}
#[derive(Default)]
pub struct Cursor {
row: usize,
column: usize,
desired_column: usize,
}
impl Cursor {
pub fn addr(&self) -> (usize, usize) {
(self.row, self.column)
}
pub fn cursor_up(&mut self, doc: &Document) {
if self.row > 0 {
self.row -= 1;
}
self.correct_columns(doc);
}
pub fn cursor_down(&mut self, doc: &Document) {
if self.row < doc.row_count() - 1 {
self.row += 1;
}
self.correct_columns(doc);
}
pub fn correct_columns(&mut self, doc: &Document) {
let row_len = doc.row_length(self.row);
if self.desired_column < row_len {
self.column = self.desired_column;
} else {
self.column = row_len;
}
}
pub fn cursor_right(&mut self, doc: &Document) {
if self.column < doc.row_length(self.row) {
self.column += 1;
}
self.desired_column = self.column;
}
pub fn cursor_left(&mut self) {
if self.column > 0 {
self.column -= 1;
}
self.desired_column = self.column;
}
}
mod test_utils {
use super::*;
use std::{
fs::File,
io::{BufRead, BufReader},
time::{Duration, Instant},
};
pub fn with_moby_dick<F>(test: F)
where
F: FnOnce(Document),
{
let f = File::open("fixtures/moby-dick.txt").unwrap();
let reader = BufReader::new(f);
let contents = reader
.lines()
.collect::<Result<Vec<String>, std::io::Error>>()
.unwrap();
let doc = Document::new(contents);
test(doc);
}
pub fn measure<F>(test: F) -> Duration
where
F: FnOnce(),
{
let start = Instant::now();
test();
let end = Instant::now();
end - start
}
pub fn benchmark<A>(
num_iterations: usize,
setup: impl Fn() -> A,
test: impl FnOnce(A) + Copy,
) -> Duration {
let mut measurements: Duration = Duration::from_millis(0);
for _i in 0..num_iterations {
let data = setup();
measurements += measure(move || test(data))
}
measurements / (num_iterations as u32)
}
}
#[cfg(test)]
mod test {
use super::{test_utils::*, *};
#[test]
fn it_inserts_a_line() {
with_moby_dick(|mut doc| {
let mut cursor = Cursor::default();
let num_lines = doc.row_count();
assert_eq!(
doc.line(num_lines - 3),
Some("subscribe to our email newsletter to hear about new eBooks.")
);
doc.new_line(&mut cursor);
assert_eq!(doc.row_count(), num_lines + 1);
assert_eq!(doc.line(0), Some(""));
});
}
}
pub mod bench {
use super::{test_utils::*, *};
pub fn bench_insert_lines() {
with_moby_dick(|doc| {
let performance = benchmark(
1000,
|| doc.clone(),
|mut doc| {
let mut cursor = Cursor::default();
doc.new_line(&mut cursor);
},
);
println!("[bench_insert_lines] {:?}", performance);
});
}
}

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@ -1,91 +0,0 @@
use crossterm::terminal::{disable_raw_mode, enable_raw_mode};
use tui::{layout::{Alignment, Constraint, Direction, Layout}, style::{Color, Style}, widgets::{Block, BorderType, Borders, Paragraph}, Terminal};
use crate::state::AppState;
pub struct Canvas<T: tui::backend::Backend> {
top_row: usize,
terminal: Terminal<T>,
}
impl<T: tui::backend::Backend> Canvas<T> {
pub fn new(terminal: Terminal<T>) -> Self {
enable_raw_mode().unwrap();
Self {
top_row: 0,
terminal
}
}
pub fn render(&mut self, app_state: &AppState) -> Result<(), anyhow::Error>
{
self.terminal.draw(|rect| {
let size = rect.size();
let chunks = Layout::default()
.direction(Direction::Vertical)
.margin(2)
.constraints(
[
Constraint::Min(2),
Constraint::Length(3),
// Constraint::Length(3),
]
.as_ref(),
)
.split(size);
let title = Paragraph::new(
app_state
.path
.clone()
.map(|path| path.to_string_lossy().into_owned())
.unwrap_or("No file opened".to_owned()),
)
.style(Style::default().fg(Color::LightCyan))
.alignment(Alignment::Center)
.block(
Block::default()
.borders(Borders::ALL)
.style(Style::default().fg(Color::White))
.border_type(BorderType::Plain),
);
rect.render_widget(title, chunks[1]);
/*
let cp = Paragraph::new(COPYRIGHT)
.style(Style::default().fg(Color::LightCyan))
.alignment(Alignment::Center)
.block(
Block::default()
.borders(Borders::ALL)
.style(Style::default().fg(Color::White))
.title("Copyright")
.border_type(BorderType::Plain),
);
rect.render_widget(cp, chunks[2]);
*/
let (row, column) = app_state.cursor.addr();
if row == self.top_row && row >= 1 {
self.top_row -= 1;
} else if row - self.top_row == (chunks[0].height - 1).into() {
self.top_row += 1;
}
let contents = Paragraph::new(app_state.contents.contents()).scroll((self.top_row as u16, 0));
rect.render_widget(contents, chunks[0]);
rect.set_cursor(chunks[0].x + column as u16, chunks[0].y + (row - self.top_row) as u16);
})?;
Ok(())
}
}
impl<T: tui::backend::Backend> Drop for Canvas<T> {
fn drop(&mut self) {
let _ = disable_raw_mode();
let _ = self.terminal.show_cursor();
}
}

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@ -45,6 +45,7 @@
pkgs.udev
pkgs.wasm-pack
typeshare.packages."x86_64-linux".default
pkgs.nodePackages_latest.typescript-language-server
];
LIBCLANG_PATH="${pkgs.llvmPackages.libclang.lib}/lib";
ENV = "dev";

13
gm-dash/server/Cargo.toml Normal file
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@ -0,0 +1,13 @@
[package]
name = "gm-dash"
version = "0.1.0"
edition = "2021"
# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
[dependencies]
pipewire = "0.8.0"
serde = { version = "1.0.209", features = ["alloc", "derive"] }
serde_json = "1.0.127"
tokio = { version = "1.39.3", features = ["full"] }
warp = "0.3.7"

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@ -0,0 +1,25 @@
use pipewire::{context::Context, main_loop::MainLoop};
fn main() -> Result<(), Box<dyn std::error::Error>> {
let mainloop = MainLoop::new(None)?;
let context = Context::new(&mainloop)?;
let core = context.connect(None)?;
let registry = core.get_registry()?;
let _listener = registry
.add_listener_local()
.global(|global| {
if global.props.and_then(|p| p.get("media.class")) == Some("Audio/Sink"){
println!(
"\t{:?} {:?}",
global.props.and_then(|p| p.get("node.description")),
global.props.and_then(|p| p.get("media.class"))
);
}
})
.register();
mainloop.run();
Ok(())
}

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gm-dash/server/src/main.rs Normal file
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use pipewire::{context::Context, main_loop::MainLoop};
use std::{
net::{Ipv6Addr, SocketAddrV6},
sync::{Arc, RwLock},
};
use tokio::task::spawn_blocking;
use warp::{serve, Filter};
struct State_ {
device_list: Vec<String>,
}
#[derive(Clone)]
struct State {
internal: Arc<RwLock<State_>>,
}
impl State {
fn new() -> State {
let internal = State_ {
device_list: vec![],
};
State {
internal: Arc::new(RwLock::new(internal)),
}
}
fn add_audio(&self, device: String) {
let mut st = self.internal.write().unwrap();
(*st).device_list.push(device);
}
fn audio_devices(&self) -> Vec<String> {
let st = self.internal.read().unwrap();
(*st).device_list.clone()
}
}
impl Default for State {
fn default() -> State {
State::new()
}
}
async fn server_main(state: State) {
let localhost: Ipv6Addr = "::1".parse().unwrap();
let server_addr = SocketAddrV6::new(localhost, 3001, 0, 0);
let root = warp::path!().map(|| "ok".to_string());
let list_output_devices = warp::path!("output_devices").map({
let state = state.clone();
move || {
let devices = state.audio_devices();
serde_json::to_string(&devices).unwrap()
}
});
let routes = root.or(list_output_devices);
serve(routes).run(server_addr).await;
}
fn handle_add_audio_device(state: State, props: &pipewire::spa::utils::dict::DictRef)
{
if props.get("media.class") == Some("Audio/Sink") {
if let Some(device_name) = props.get("node.description") {
state.add_audio(device_name.to_owned());
}
}
}
fn pipewire_loop(state: State) -> Result<(), Box<dyn std::error::Error>> {
let mainloop = MainLoop::new(None)?;
let context = Context::new(&mainloop)?;
let core = context.connect(None)?;
let registry = core.get_registry()?;
let _listener = registry
.add_listener_local()
.global({
let state = state.clone();
move |global_data| {
if let Some(props) = global_data.props {
handle_add_audio_device(state.clone(), props);
}
}
})
.register();
mainloop.run();
Ok(())
}
fn pipewire_main(state: State) {
pipewire_loop(state).expect("pipewire should not error");
}
#[tokio::main]
async fn main() {
let state = State::default();
spawn_blocking({
let state = state.clone();
move || pipewire_main(state)
});
server_main(state.clone()).await;
}

23
gm-dash/ui/.gitignore vendored Normal file
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# See https://help.github.com/articles/ignoring-files/ for more about ignoring files.
# dependencies
/node_modules
/.pnp
.pnp.js
# testing
/coverage
# production
/build
# misc
.DS_Store
.env.local
.env.development.local
.env.test.local
.env.production.local
npm-debug.log*
yarn-debug.log*
yarn-error.log*

46
gm-dash/ui/README.md Normal file
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@ -0,0 +1,46 @@
# Getting Started with Create React App
This project was bootstrapped with [Create React App](https://github.com/facebook/create-react-app).
## Available Scripts
In the project directory, you can run:
### `npm start`
Runs the app in the development mode.\
Open [http://localhost:3000](http://localhost:3000) to view it in the browser.
The page will reload if you make edits.\
You will also see any lint errors in the console.
### `npm test`
Launches the test runner in the interactive watch mode.\
See the section about [running tests](https://facebook.github.io/create-react-app/docs/running-tests) for more information.
### `npm run build`
Builds the app for production to the `build` folder.\
It correctly bundles React in production mode and optimizes the build for the best performance.
The build is minified and the filenames include the hashes.\
Your app is ready to be deployed!
See the section about [deployment](https://facebook.github.io/create-react-app/docs/deployment) for more information.
### `npm run eject`
**Note: this is a one-way operation. Once you `eject`, you cant go back!**
If you arent satisfied with the build tool and configuration choices, you can `eject` at any time. This command will remove the single build dependency from your project.
Instead, it will copy all the configuration files and the transitive dependencies (webpack, Babel, ESLint, etc) right into your project so you have full control over them. All of the commands except `eject` will still work, but they will point to the copied scripts so you can tweak them. At this point youre on your own.
You dont have to ever use `eject`. The curated feature set is suitable for small and middle deployments, and you shouldnt feel obligated to use this feature. However we understand that this tool wouldnt be useful if you couldnt customize it when you are ready for it.
## Learn More
You can learn more in the [Create React App documentation](https://facebook.github.io/create-react-app/docs/getting-started).
To learn React, check out the [React documentation](https://reactjs.org/).

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gm-dash/ui/package.json Normal file
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{
"name": "ui",
"version": "0.1.0",
"private": true,
"dependencies": {
"@testing-library/jest-dom": "^5.17.0",
"@testing-library/react": "^13.4.0",
"@testing-library/user-event": "^13.5.0",
"@types/jest": "^27.5.2",
"@types/node": "^16.18.105",
"@types/react": "^18.3.3",
"@types/react-dom": "^18.3.0",
"classnames": "^2.5.1",
"react": "^18.3.1",
"react-dom": "^18.3.1",
"react-router-dom": "^6.26.1",
"react-scripts": "5.0.1",
"typescript": "^4.9.5",
"web-vitals": "^2.1.4"
},
"scripts": {
"start": "react-scripts start",
"build": "react-scripts build",
"test": "react-scripts test",
"eject": "react-scripts eject"
},
"eslintConfig": {
"extends": [
"react-app",
"react-app/jest"
]
},
"browserslist": {
"production": [
">0.2%",
"not dead",
"not op_mini all"
],
"development": [
"last 1 chrome version",
"last 1 firefox version",
"last 1 safari version"
]
}
}

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<!DOCTYPE html>
<html lang="en">
<head>
<meta charset="utf-8" />
<link rel="icon" href="%PUBLIC_URL%/favicon.ico" />
<meta name="viewport" content="width=device-width, initial-scale=1" />
<meta name="theme-color" content="#000000" />
<meta
name="description"
content="Web site created using create-react-app"
/>
<link rel="apple-touch-icon" href="%PUBLIC_URL%/logo192.png" />
<!--
manifest.json provides metadata used when your web app is installed on a
user's mobile device or desktop. See https://developers.google.com/web/fundamentals/web-app-manifest/
-->
<link rel="manifest" href="%PUBLIC_URL%/manifest.json" />
<!--
Notice the use of %PUBLIC_URL% in the tags above.
It will be replaced with the URL of the `public` folder during the build.
Only files inside the `public` folder can be referenced from the HTML.
Unlike "/favicon.ico" or "favicon.ico", "%PUBLIC_URL%/favicon.ico" will
work correctly both with client-side routing and a non-root public URL.
Learn how to configure a non-root public URL by running `npm run build`.
-->
<title>React App</title>
</head>
<body>
<noscript>You need to enable JavaScript to run this app.</noscript>
<div id="root"></div>
<!--
This HTML file is a template.
If you open it directly in the browser, you will see an empty page.
You can add webfonts, meta tags, or analytics to this file.
The build step will place the bundled scripts into the <body> tag.
To begin the development, run `npm start` or `yarn start`.
To create a production bundle, use `npm run build` or `yarn build`.
-->
</body>
</html>

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{
"short_name": "React App",
"name": "Create React App Sample",
"icons": [
{
"src": "favicon.ico",
"sizes": "64x64 32x32 24x24 16x16",
"type": "image/x-icon"
},
{
"src": "logo192.png",
"type": "image/png",
"sizes": "192x192"
},
{
"src": "logo512.png",
"type": "image/png",
"sizes": "512x512"
}
],
"start_url": ".",
"display": "standalone",
"theme_color": "#000000",
"background_color": "#ffffff"
}

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# https://www.robotstxt.org/robotstxt.html
User-agent: *
Disallow:

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@ -0,0 +1,5 @@
.layout {
display: flex;
justify-content: space-between;
width: 100%;
}

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@ -0,0 +1,9 @@
import React from 'react';
import { render, screen } from '@testing-library/react';
import Dashboard from './Dashboard';
test('renders learn react link', () => {
render(<Dashboard />);
const linkElement = screen.getByText(/learn react/i);
expect(linkElement).toBeInTheDocument();
});

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@ -0,0 +1,77 @@
import './Dashboard.css';
import Card from './components/Card/Card';
import Launcher from './components/Launcher/Launcher';
import Launchpad from './components/Launchpad/Launchpad';
const LightThemes = () => <Card name="Light Themes">
<Launchpad
exclusive={true}
options={[
{ title: "Dark reds" },
{ title: "Watery" },
{ title: "Sunset" },
{ title: "Darkness" },
]}
/>
</Card>
const LightSetup = () => <div> </div>
interface LightProps {
name: string,
}
const Light = ({ name }: LightProps) => <div> <p> {name} </p> </div>
const Tracks = () => <Card name="Tracks">
<Launchpad
exclusive={false}
options={[
{ title: "City BGM" },
{ title: "Chat on the streets" },
{ title: "Abandoned structure" },
{ title: "Water dripping" },
]}
/>
</Card>
interface TrackProps {
name: string,
}
const Track = ({ name }: TrackProps) => <Launcher title={name} />
const Presets = () => <Card name="Presets">
<Launchpad
exclusive={true}
options={[
{ title: "Gilcrest Falls day" },
{ title: "Gilcrest Falls night" },
{ title: "Empty colony" },
{ title: "Surk colony" },
]}
/>
</Card>
interface PresetProps {
name: string
}
// const Scene = ({ name }: PresetProps) => <Launcher title={name} activated={false} />
const SceneEditor = () => <div> </div>
const Dashboard = () => {
return (
<div className="app">
<div className="layout">
<Presets />
<div>
<LightThemes />
<Tracks />
</div>
</div>
</div>
);
}
export default Dashboard;

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gm-dash/ui/src/Design.css Normal file
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.palette {
display: flex;
}
.palette div {
width: 50px;
height: 50px;
border: 1px solid black;
border-radius: 5px;
margin: 1em;
padding: 0;
}
.palette-purple div.item-1 {
background-color: var(--purple-1);
}
.palette-purple div.item-2 {
background-color: var(--purple-2);
}
.palette-purple div.item-3 {
background-color: var(--purple-3);
}
.palette-purple div.item-4 {
background-color: var(--purple-4);
}
.palette-purple div.item-5 {
background-color: var(--purple-5);
}
.palette-blue div.item-1 {
background-color: var(--blue-1);
}
.palette-blue div.item-2 {
background-color: var(--blue-2);
}
.palette-blue div.item-3 {
background-color: var(--blue-3);
}
.palette-blue div.item-4 {
background-color: var(--blue-4);
}
.palette-blue div.item-5 {
background-color: var(--blue-5);
}
.palette-grey div.item-1 {
background-color: var(--grey-1);
}
.palette-grey div.item-2 {
background-color: var(--grey-2);
}
.palette-grey div.item-3 {
background-color: var(--grey-3);
}
.palette-grey div.item-4 {
background-color: var(--grey-4);
}
.palette-grey div.item-5 {
background-color: var(--grey-5);
}
.design_horizontal {
display: flex;
flex-flow: row;
}

57
gm-dash/ui/src/Design.tsx Normal file
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@ -0,0 +1,57 @@
import './Design.css'
import Launchpad from './components/Launchpad/Launchpad'
const PaletteGrey = () => <div className="palette palette-grey">
<div className="item-1" />
<div className="item-2" />
<div className="item-3" />
<div className="item-4" />
<div className="item-5" />
</div>
const PalettePurple = () => <div className="palette palette-purple">
<div className="item-1" />
<div className="item-2" />
<div className="item-3" />
<div className="item-4" />
<div className="item-5" />
</div>
const PaletteBlue = () => <div className="palette palette-blue">
<div className="item-1" />
<div className="item-2" />
<div className="item-3" />
<div className="item-4" />
<div className="item-5" />
</div>
const Launchpads = () => <div className="design_horizontal">
<Launchpad
exclusive={true}
options={[
{ title: "Grey" },
{ title: "Purple" },
{ title: "Blue" },
]}
/>
<Launchpad
exclusive={false}
flow={"vertical"}
options={[
{ title: "Grey" },
{ title: "Purple" },
{ title: "Blue" },
]}
/>
</div>
const Design = () => <div>
<PaletteGrey />
<PalettePurple />
<PaletteBlue />
<Launchpads />
</div>
export default Design;

View File

@ -0,0 +1,15 @@
.card {
border: 1px solid black;
border-radius: 5px;
margin: var(--spacer-l);
box-shadow: 4px 4px 4px 0px var(--shadow-1),
8px 8px 8px 0px var(--shadow-2);
}
.card__title {
color: var(--title-color);
}
.card__body {
}

View File

@ -0,0 +1,17 @@
import { PropsWithChildren } from 'react';
import './Card.css';
interface CardProps {
name: string,
}
const Card = ({ name, children }: PropsWithChildren<CardProps>) => (
<div className="card">
<h1 className="card__title"> {name} </h1>
<div className="card__body">
{children}
</div>
</div>
)
export default Card;

View File

@ -0,0 +1,11 @@
.activator {
border: 1px solid black;
border-radius: 5px;
margin: var(--spacer-m);
padding: var(--spacer-s);
box-shadow: var(--shadow-deep);
}
.activator_enabled {
box-shadow: var(--activator-ring);
}

View File

@ -0,0 +1,20 @@
import './Launcher.css';
import React from 'react';
export interface LauncherProps {
title: string,
icon?: string,
activated?: boolean,
onSelected?: (key: string) => void,
}
const Launcher = ({ title, activated = false, onSelected = (key) => {} }: LauncherProps) => {
const classnames = activated ? "activator activator_enabled" : "activator";
console.log("classnames ", activated, classnames);
return (
<div className={classnames} onClick={() => onSelected(title)}>
<p> {title} </p>
</div>)
}
export default Launcher;

View File

@ -0,0 +1,18 @@
.launchpad {
display: flex;
border: var(--border);
border-radius: var(--border-radius);
box-shadow: var(--shadow-depression);
margin: var(--spacer-l);
}
.launchpad_horizontal-flow {
display: flex;
flex-direction: row;
}
.launchpad_vertical-flow {
display: flex;
flex-direction: column;
}

View File

@ -0,0 +1,49 @@
import React from 'react';
import './Launchpad.css';
import Launcher, { LauncherProps } from '../Launcher/Launcher';
import classnames from 'classnames';
export interface Selectable {
onSelected?: (key: string) => void;
}
export type Flow = "horizontal" | "vertical";
interface LaunchpadProps {
exclusive: boolean;
flow?: Flow;
options: Array<LauncherProps>;
}
const exclusiveSelect = (state: { [key: string]: boolean }, targetId: string) => {
console.log("running exclusiveSelect on ", targetId);
return { [targetId]: true };
}
const multiSelect = (state: { [key: string]: boolean }, targetId: string) => {
if (state[targetId]) {
return { ...state, [targetId]: false };
} else {
return { ...state, [targetId]: true };
}
}
const Launchpad = ({ flow = "horizontal", options, exclusive }: LaunchpadProps) => {
const [selected, dispatch] = React.useReducer(exclusive ? exclusiveSelect : multiSelect, {});
let classOptions = [ "launchpad" ];
if (flow === "horizontal") {
classOptions.push("launchpad_horizontal-flow");
} else {
classOptions.push("launchpad_vertical-flow");
}
let tiedOptions = options.map(option =>
<Launcher key={option.title} title={option.title} onSelected={(key: string) => dispatch(key)} activated={selected[option.title]} />
);
return (<div className={classnames(classOptions)}> {tiedOptions} </div>)
}
export default Launchpad;

50
gm-dash/ui/src/index.css Normal file
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@ -0,0 +1,50 @@
:root {
--purple-1: hsl(265, 50%, 25%);
--purple-2: hsl(265, 60%, 35%);
--purple-3: hsl(265, 70%, 45%);
--purple-4: hsl(265, 80%, 55%);
--purple-5: hsl(265, 90%, 60%);
--blue-1: hsl(210, 50%, 25%);
--blue-2: hsl(210, 60%, 35%);
--blue-3: hsl(210, 70%, 45%);
--blue-4: hsl(210, 80%, 55%);
--blue-5: hsl(210, 90%, 65%);
--grey-1: hsl(210, 0%, 25%);
--grey-2: hsl(210, 0%, 40%);
--grey-3: hsl(210, 0%, 55%);
--grey-4: hsl(210, 0%, 70%);
--grey-5: hsl(210, 0%, 85%);
--title-color: var(--grey-1);
--border: 1px solid var(--purple-1);
--activator-ring: 0px 0px 8px 4px var(--blue-4);
--shadow-depression: inset 1px 1px 2px 0px var(--purple-1);
--shadow-shallow: 1px 1px 2px 0px var(--purple-1);
--shadow-deep: 2px 2px 4px 0px var(--purple-1),
4px 4px 8px 0px var(--purple-2);
--border-radius: 8px;
--spacer-xs: 2px;
--spacer-s: 4px;
--spacer-m: 8px;
--spacer-l: 12px;
}
body {
margin: 0;
font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', 'Roboto', 'Oxygen',
'Ubuntu', 'Cantarell', 'Fira Sans', 'Droid Sans', 'Helvetica Neue',
sans-serif;
-webkit-font-smoothing: antialiased;
-moz-osx-font-smoothing: grayscale;
background-color: var(--grey-5);
}
code {
font-family: source-code-pro, Menlo, Monaco, Consolas, 'Courier New',
monospace;
}

31
gm-dash/ui/src/index.tsx Normal file
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@ -0,0 +1,31 @@
import React from 'react';
import ReactDOM from 'react-dom/client';
import './index.css';
import Dashboard from './Dashboard';
import Design from './Design';
import reportWebVitals from './reportWebVitals';
import { createBrowserRouter, RouterProvider } from 'react-router-dom';
const root = ReactDOM.createRoot(
document.getElementById('root') as HTMLElement
);
const router = createBrowserRouter([
{
path: "/",
element: <Dashboard />,
},
{
path: "/design",
element: <Design />,
},
]);
root.render(
<React.StrictMode>
<RouterProvider router={router} />
</React.StrictMode>
);
// If you want to start measuring performance in your app, pass a function
// to log results (for example: reportWebVitals(console.log))
// or send to an analytics endpoint. Learn more: https://bit.ly/CRA-vitals
reportWebVitals();

1
gm-dash/ui/src/logo.svg Normal file
View File

@ -0,0 +1 @@
<svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 841.9 595.3"><g fill="#61DAFB"><path d="M666.3 296.5c0-32.5-40.7-63.3-103.1-82.4 14.4-63.6 8-114.2-20.2-130.4-6.5-3.8-14.1-5.6-22.4-5.6v22.3c4.6 0 8.3.9 11.4 2.6 13.6 7.8 19.5 37.5 14.9 75.7-1.1 9.4-2.9 19.3-5.1 29.4-19.6-4.8-41-8.5-63.5-10.9-13.5-18.5-27.5-35.3-41.6-50 32.6-30.3 63.2-46.9 84-46.9V78c-27.5 0-63.5 19.6-99.9 53.6-36.4-33.8-72.4-53.2-99.9-53.2v22.3c20.7 0 51.4 16.5 84 46.6-14 14.7-28 31.4-41.3 49.9-22.6 2.4-44 6.1-63.6 11-2.3-10-4-19.7-5.2-29-4.7-38.2 1.1-67.9 14.6-75.8 3-1.8 6.9-2.6 11.5-2.6V78.5c-8.4 0-16 1.8-22.6 5.6-28.1 16.2-34.4 66.7-19.9 130.1-62.2 19.2-102.7 49.9-102.7 82.3 0 32.5 40.7 63.3 103.1 82.4-14.4 63.6-8 114.2 20.2 130.4 6.5 3.8 14.1 5.6 22.5 5.6 27.5 0 63.5-19.6 99.9-53.6 36.4 33.8 72.4 53.2 99.9 53.2 8.4 0 16-1.8 22.6-5.6 28.1-16.2 34.4-66.7 19.9-130.1 62-19.1 102.5-49.9 102.5-82.3zm-130.2-66.7c-3.7 12.9-8.3 26.2-13.5 39.5-4.1-8-8.4-16-13.1-24-4.6-8-9.5-15.8-14.4-23.4 14.2 2.1 27.9 4.7 41 7.9zm-45.8 106.5c-7.8 13.5-15.8 26.3-24.1 38.2-14.9 1.3-30 2-45.2 2-15.1 0-30.2-.7-45-1.9-8.3-11.9-16.4-24.6-24.2-38-7.6-13.1-14.5-26.4-20.8-39.8 6.2-13.4 13.2-26.8 20.7-39.9 7.8-13.5 15.8-26.3 24.1-38.2 14.9-1.3 30-2 45.2-2 15.1 0 30.2.7 45 1.9 8.3 11.9 16.4 24.6 24.2 38 7.6 13.1 14.5 26.4 20.8 39.8-6.3 13.4-13.2 26.8-20.7 39.9zm32.3-13c5.4 13.4 10 26.8 13.8 39.8-13.1 3.2-26.9 5.9-41.2 8 4.9-7.7 9.8-15.6 14.4-23.7 4.6-8 8.9-16.1 13-24.1zM421.2 430c-9.3-9.6-18.6-20.3-27.8-32 9 .4 18.2.7 27.5.7 9.4 0 18.7-.2 27.8-.7-9 11.7-18.3 22.4-27.5 32zm-74.4-58.9c-14.2-2.1-27.9-4.7-41-7.9 3.7-12.9 8.3-26.2 13.5-39.5 4.1 8 8.4 16 13.1 24 4.7 8 9.5 15.8 14.4 23.4zM420.7 163c9.3 9.6 18.6 20.3 27.8 32-9-.4-18.2-.7-27.5-.7-9.4 0-18.7.2-27.8.7 9-11.7 18.3-22.4 27.5-32zm-74 58.9c-4.9 7.7-9.8 15.6-14.4 23.7-4.6 8-8.9 16-13 24-5.4-13.4-10-26.8-13.8-39.8 13.1-3.1 26.9-5.8 41.2-7.9zm-90.5 125.2c-35.4-15.1-58.3-34.9-58.3-50.6 0-15.7 22.9-35.6 58.3-50.6 8.6-3.7 18-7 27.7-10.1 5.7 19.6 13.2 40 22.5 60.9-9.2 20.8-16.6 41.1-22.2 60.6-9.9-3.1-19.3-6.5-28-10.2zM310 490c-13.6-7.8-19.5-37.5-14.9-75.7 1.1-9.4 2.9-19.3 5.1-29.4 19.6 4.8 41 8.5 63.5 10.9 13.5 18.5 27.5 35.3 41.6 50-32.6 30.3-63.2 46.9-84 46.9-4.5-.1-8.3-1-11.3-2.7zm237.2-76.2c4.7 38.2-1.1 67.9-14.6 75.8-3 1.8-6.9 2.6-11.5 2.6-20.7 0-51.4-16.5-84-46.6 14-14.7 28-31.4 41.3-49.9 22.6-2.4 44-6.1 63.6-11 2.3 10.1 4.1 19.8 5.2 29.1zm38.5-66.7c-8.6 3.7-18 7-27.7 10.1-5.7-19.6-13.2-40-22.5-60.9 9.2-20.8 16.6-41.1 22.2-60.6 9.9 3.1 19.3 6.5 28.1 10.2 35.4 15.1 58.3 34.9 58.3 50.6-.1 15.7-23 35.6-58.4 50.6zM320.8 78.4z"/><circle cx="420.9" cy="296.5" r="45.7"/><path d="M520.5 78.1z"/></g></svg>

After

Width:  |  Height:  |  Size: 2.6 KiB

1
gm-dash/ui/src/react-app-env.d.ts vendored Normal file
View File

@ -0,0 +1 @@
/// <reference types="react-scripts" />

View File

@ -0,0 +1,15 @@
import { ReportHandler } from 'web-vitals';
const reportWebVitals = (onPerfEntry?: ReportHandler) => {
if (onPerfEntry && onPerfEntry instanceof Function) {
import('web-vitals').then(({ getCLS, getFID, getFCP, getLCP, getTTFB }) => {
getCLS(onPerfEntry);
getFID(onPerfEntry);
getFCP(onPerfEntry);
getLCP(onPerfEntry);
getTTFB(onPerfEntry);
});
}
};
export default reportWebVitals;

View File

@ -0,0 +1,5 @@
// jest-dom adds custom jest matchers for asserting on DOM nodes.
// allows you to do things like:
// expect(element).toHaveTextContent(/react/i)
// learn more: https://github.com/testing-library/jest-dom
import '@testing-library/jest-dom';

26
gm-dash/ui/tsconfig.json Normal file
View File

@ -0,0 +1,26 @@
{
"compilerOptions": {
"target": "es5",
"lib": [
"dom",
"dom.iterable",
"esnext"
],
"allowJs": true,
"skipLibCheck": true,
"esModuleInterop": true,
"allowSyntheticDefaultImports": true,
"strict": true,
"forceConsistentCasingInFileNames": true,
"noFallthroughCasesInSwitch": true,
"module": "esnext",
"moduleResolution": "node",
"resolveJsonModule": true,
"isolatedModules": true,
"noEmit": true,
"jsx": "react-jsx"
},
"include": [
"src"
]
}

View File

@ -115,8 +115,6 @@ pub struct Core {
impl Core {
pub fn new(config: Config) -> Self {
println!("config: {:?}", config);
let library = match config.get::<LibraryPath>() {
Some(ref path) if path.to_path_buf().exists() => {
Some(Database::open_path(path.to_path_buf()).unwrap())

View File

@ -213,7 +213,7 @@ impl Goban {
///
/// assert_eq!(goban.stone(&Coordinate{ row: 3, column: 3 }), Some(Color::Black));
/// assert_eq!(goban.stone(&Coordinate{ row: 15, column: 15 }), Some(Color::White));
/// assert_eq!(goban.stone(&Coordinate{ row: 3, column: 15 }), Some(Color::Black));
/// assert_eq!(goban.stone(&Coordinate{ row: 15, column: 3 }), Some(Color::Black));
/// ```
pub fn apply_moves<'a>(
self,
@ -611,7 +611,6 @@ mod test {
),
];
println!("{}", board);
for (board, coordinate, group, liberties) in test_cases {
assert_eq!(board.group(&coordinate), group.as_ref());
assert_eq!(

View File

@ -32,3 +32,6 @@ mod types;
pub use types::{
BoardError, Color, Config, ConfigOption, DepthTree, LibraryPath, Player, Rank, Size,
};
mod view_models;
pub use view_models::GameReviewViewModel;

View File

@ -1,6 +1,7 @@
use crate::goban::{Coordinate, Goban};
use config::define_config;
use config_derive::ConfigOption;
use nary_tree::NodeRef;
use serde::{Deserialize, Serialize};
use sgf::GameTree;
use std::{
@ -242,6 +243,39 @@ pub struct Tree<T> {
}
*/
// https://llimllib.github.io/pymag-trees/
// I want to take advantage of the Wetherell Shannon algorithm, but I want some variations. In
// their diagram, they got a tree that looks like this.
//
// O
// |\
// O O
// |\ \ \
// O O O O
// |\ |\
// O O O O
//
// In the same circumstance, what I want is this:
//
// O--
// | \
// O O
// |\ |\
// O O O O
// |\
// O O
//
// In order to keep things from being overly smooshed, I want to ensure that if a branch overlaps
// with another branch, there is some extra drawing space. This might actually be similar to adding
// the principal that "A parent should be centered over its children".
//
// So, given a tree, I need to know how many children exist at each level. Then I build parents
// atop the children. At level 3, I have four children, and that happens to be the maximum width of
// the graph.
//
// A bottom-up traversal:
// - Figure out the number of nodes at each depth
pub struct DepthTree(nary_tree::Tree<SizeNode>);
impl Deref for DepthTree {
@ -252,12 +286,17 @@ impl Deref for DepthTree {
}
}
impl Default for DepthTree {
fn default() -> Self {
Self(nary_tree::Tree::new())
}
}
#[derive(Debug)]
pub struct SizeNode {
/// Use this to map back to the node in the original game tree. This way we know how to
/// correspond from a node in the review tree back to there.
#[allow(dead_code)]
game_node_id: nary_tree::NodeId,
pub game_node_id: nary_tree::NodeId,
/// How deep into the tree is this node?
depth: usize,
@ -273,32 +312,17 @@ impl SizeNode {
}
impl DepthTree {
// My previous work to convert from a node tree to this tree-with-width dependend on the node tree
// being a recursive data structure. Now I need to find a way to convert a slab tree to this width
// tree.
//
// It all feels like a lot of custom weirdness. I shouldn't need a bunch of custom data structures,
// so I want to eliminate the "Tree" above and keep using the slab tree. I think I should be able
// to build these Node objects without needing a custom data structure.
fn new() -> Self {
Self(nary_tree::Tree::new())
/*
Tree {
nodes: vec![Node {
id: 0,
node: root,
parent: None,
depth: 0,
width: RefCell::new(None),
children: vec![],
}],
}
*/
}
/*
pub fn node(&self, idx: usize) -> &T {
&self.nodes[idx].node
&self.nodes[idx].content
}
pub fn parent(&self, node: &Node<T>) -> Option<&Node<T>> {
if let Some(parent_idx) = node.parent {
self.nodes.get(parent_idx)
} else {
None
}
}
// Add a node to the parent specified by parent_idx. Return the new index. This cannot be used
@ -309,7 +333,7 @@ impl DepthTree {
self.nodes.push(Node {
id: next_idx,
node,
content: node,
parent: Some(parent_idx),
depth: parent.depth + 1,
width: RefCell::new(None),
@ -328,7 +352,6 @@ impl DepthTree {
.unwrap()
.traverse_pre_order()
.fold(0, |max, node| {
println!("node depth: {}", node.data().depth);
if node.data().depth > max {
node.data().depth
} else {
@ -487,7 +510,7 @@ impl<'a> From<&'a GameTree> for DepthTree {
Self(tree)
}
None => Self::new(),
None => Self::default(),
}
}
}
@ -529,7 +552,7 @@ pub struct BFSIter<'a, T> {
}
impl<'a, T> Iterator for BFSIter<'a, T> {
type Item = &'a T;
type Item = NodeRef<'a, T>;
fn next(&mut self) -> Option<Self::Item> {
let retval = self.queue.pop_front();
@ -538,7 +561,7 @@ impl<'a, T> Iterator for BFSIter<'a, T> {
.children()
.for_each(|noderef| self.queue.push_back(noderef));
}
retval.map(|retval| retval.data())
retval
}
}
@ -630,7 +653,7 @@ mod test {
)))
.node_id();
let node_d = game_tree
let _node_d = game_tree
.get_mut(node_c)
.unwrap()
.append(GameNode::MoveNode(MoveNode::new(
@ -639,7 +662,7 @@ mod test {
)))
.node_id();
let node_e = game_tree
let _node_e = game_tree
.get_mut(node_c)
.unwrap()
.append(GameNode::MoveNode(MoveNode::new(
@ -648,7 +671,7 @@ mod test {
)))
.node_id();
let node_f = game_tree
let _node_f = game_tree
.get_mut(node_c)
.unwrap()
.append(GameNode::MoveNode(MoveNode::new(
@ -657,7 +680,7 @@ mod test {
)))
.node_id();
let node_g = game_tree
let _node_g = game_tree
.get_mut(node_a)
.unwrap()
.append(GameNode::MoveNode(MoveNode::new(
@ -732,66 +755,4 @@ mod test {
assert_eq!(tree.position(test_tree.node_g), (1, 4));
*/
}
#[ignore]
#[test]
fn breadth_first_iter() {
/*
let mut node_a = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let mut node_b = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let mut node_c = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let node_d = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let node_e = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let node_f = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let node_g = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let mut node_h = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let node_i = MoveNode::new(sgf::Color::Black, Move::Move("dp".to_owned()));
let game = GameRecord::new(
GameType::Go,
Size {
width: 19,
height: 19,
},
Player {
name: Some("Black".to_owned()),
rank: None,
team: None,
},
Player {
name: Some("White".to_owned()),
rank: None,
team: None,
},
);
node_c.children.push(GameNode::MoveNode(node_d.clone()));
node_c.children.push(GameNode::MoveNode(node_e.clone()));
node_c.children.push(GameNode::MoveNode(node_f.clone()));
node_b.children.push(GameNode::MoveNode(node_c.clone()));
node_h.children.push(GameNode::MoveNode(node_i.clone()));
node_a.children.push(GameNode::MoveNode(node_b.clone()));
node_a.children.push(GameNode::MoveNode(node_g.clone()));
node_a.children.push(GameNode::MoveNode(node_h.clone()));
let game_tree = GameNode::MoveNode(node_a.clone());
let tree = Tree::from(&game_tree);
let mut iter = tree.bfs_iter();
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_a.id));
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_b.id));
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_g.id));
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_h.id));
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_c.id));
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_i.id));
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_d.id));
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_e.id));
assert_matches!(iter.next(), Some(Node { node: uuid, .. }) => assert_eq!(*uuid, node_f.id));
*/
}
}

View File

@ -0,0 +1,281 @@
/*
Copyright 2024, Savanni D'Gerinel <savanni@luminescent-dreams.com>
This file is part of On the Grid.
On the Grid is free software: you can redistribute it and/or modify it under the terms of
the GNU General Public License as published by the Free Software Foundation, either version 3 of
the License, or (at your option) any later version.
On the Grid is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License along with On the Grid. If not, see <https://www.gnu.org/licenses/>.
*/
// Currenty my game review is able to show the current game and its tree. Now, I want to start
// tracking where in the tree that I am. This should be a combination of the abstract Tree and the
// gameTree. Chances are, if I just keep track of where I am in the abstract tree, I can find the
// relevant node in the game tree and then reproduce the line to get to that node.
//
// Moving through the game review tree shouldn't require a full invocatian. This object, and most
// other view models, should be exported to the UI.
use crate::{types::SizeNode, DepthTree, Goban};
use nary_tree::{NodeId, NodeRef};
use sgf::{GameRecord, Player};
use std::sync::{Arc, RwLock};
struct GameReviewViewModelPrivate {
// This is the ID of the current position in the game. The ID is specific to the GameRecord,
// not the ReviewTree.
current_position: Option<NodeId>,
game: GameRecord,
review_tree: DepthTree,
}
#[derive(Clone)]
pub struct GameReviewViewModel {
inner: Arc<RwLock<GameReviewViewModelPrivate>>,
}
impl GameReviewViewModel {
pub fn new(game: GameRecord) -> Self {
let (review_tree, current_position) = if !game.trees.is_empty() {
let review_tree = DepthTree::from(&game.trees[0]);
let current_position = game.mainline().unwrap().last().map(|nr| nr.node_id());
(review_tree, current_position)
} else {
(DepthTree::default(), None)
};
Self {
inner: Arc::new(RwLock::new(GameReviewViewModelPrivate {
current_position,
game,
review_tree,
})),
}
}
pub fn black_player(&self) -> Player {
self.inner.read().unwrap().game.black_player.clone()
}
pub fn white_player(&self) -> Player {
self.inner.read().unwrap().game.white_player.clone()
}
pub fn game_view(&self) -> Goban {
let inner = self.inner.read().unwrap();
let mut path: Vec<NodeId> = vec![];
let mut current_id = inner.current_position;
while current_id.is_some() {
let current = current_id.unwrap();
path.push(current);
current_id = inner.game.trees[0]
.get(current)
.unwrap()
.parent()
.map(|parent| parent.node_id());
}
path.reverse();
Goban::default()
.apply_moves(
path.into_iter()
.map(|node_id| inner.game.trees[0].get(node_id).unwrap().data()),
)
.unwrap()
/*
if let Some(start) = inner.current_position {
let mut current_id = start;
let mut path = vec![current_id.clone()];
while let
/*
let mut current_node = inner.game.trees[0].get(current_position).unwrap();
let mut path = vec![current_node.data()];
while let Some(parent) = current_node.parent() {
path.push(parent.data());
current_node = parent;
}
*/
path.reverse();
Goban::default().apply_moves(path).unwrap()
} else {
Goban::default()
}
*/
}
pub fn map_tree<F>(&self, f: F)
where
F: Fn(NodeRef<'_, SizeNode>, Option<NodeId>),
{
let inner = self.inner.read().unwrap();
for node in inner.review_tree.bfs_iter() {
f(node, inner.current_position);
}
}
pub fn tree_max_depth(&self) -> usize {
self.inner.read().unwrap().review_tree.max_depth()
}
// When moving forward on the tree, I grab the first child by default. I can then just advance
// the board state by applying the child.
pub fn next_move(&self) {
let mut inner = self.inner.write().unwrap();
let current_position = inner.current_position.clone();
match current_position {
Some(current_position) => {
let current_id = current_position.clone();
let node = inner.game.trees[0].get(current_id).unwrap();
if let Some(next_id) = node.first_child().map(|child| child.node_id()) {
inner.current_position = Some(next_id);
}
}
None => {
inner.current_position = inner.game.trees[0].root().map(|node| node.node_id());
}
}
}
// When moving backwards, I jump up to the parent. I'll then rebuild the board state from the
// root.
pub fn previous_move(&mut self) {
let mut inner = self.inner.write().unwrap();
if let Some(current_position) = inner.current_position {
let current_node = inner.game.trees[0]
.get(current_position)
.expect("current_position should always correspond to a node in the tree");
if let Some(parent_node) = current_node.parent() {
inner.current_position = Some(parent_node.node_id());
}
}
}
pub fn next_variant(&self) {
println!("move to the next variant amongst the options available");
}
pub fn previous_variant(&self) {
println!("move to the previous variant amongst the options available");
}
}
#[cfg(test)]
mod test {
use super::*;
use crate::{Color, Coordinate};
use std::path::Path;
fn with_game_record<F>(test: F)
where
F: FnOnce(GameReviewViewModel),
{
let records = sgf::parse_sgf_file(&Path::new("../../sgf/test_data/branch_test.sgf"))
.expect("to successfully load the test file");
let record = records[0]
.as_ref()
.expect("to have successfully loaded the test record");
let view_model = GameReviewViewModel::new(record.clone());
test(view_model);
}
#[test]
fn it_generates_a_mainline_board() {
with_game_record(|view| {
let goban = view.game_view();
for row in 0..18 {
for column in 0..18 {
if row == 3 && column == 3 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::White));
} else if row == 15 && column == 3 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::White));
} else if row == 3 && column == 15 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::Black));
} else if row == 15 && column == 14 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::Black));
} else {
assert_eq!(
goban.stone(&Coordinate { row, column }),
None,
"{} {}",
row,
column
);
}
}
}
});
}
#[test]
fn it_moves_to_the_previous_mainline_move() {
with_game_record(|mut view| {
view.previous_move();
let goban = view.game_view();
for row in 0..18 {
for column in 0..18 {
if row == 3 && column == 3 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::White));
} else if row == 3 && column == 15 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::Black));
} else if row == 15 && column == 14 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::Black));
} else {
assert_eq!(
goban.stone(&Coordinate { row, column }),
None,
"{} {}",
row,
column
);
}
}
}
});
}
#[test]
fn it_moves_to_the_next_node() {
with_game_record(|mut view| {
view.previous_move();
view.next_move();
let goban = view.game_view();
for row in 0..18 {
for column in 0..18 {
if row == 3 && column == 3 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::White));
} else if row == 15 && column == 3 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::White));
} else if row == 3 && column == 15 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::Black));
} else if row == 15 && column == 14 {
assert_eq!(goban.stone(&Coordinate { row, column }), Some(Color::Black));
} else {
assert_eq!(
goban.stone(&Coordinate { row, column }),
None,
"{} {}",
row,
column
);
}
}
}
});
}
}

View File

@ -0,0 +1,20 @@
/*
Copyright 2024, Savanni D'Gerinel <savanni@luminescent-dreams.com>
This file is part of On the Grid.
On the Grid is free software: you can redistribute it and/or modify it under the terms of
the GNU General Public License as published by the Free Software Foundation, either version 3 of
the License, or (at your option) any later version.
On the Grid is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License along with On the Grid. If not, see <https://www.gnu.org/licenses/>.
*/
mod game_review;
pub use game_review::GameReviewViewModel;

View File

@ -17,12 +17,14 @@ You should have received a copy of the GNU General Public License along with On
use crate::{CoreApi, ResourceManager};
use adw::prelude::*;
use glib::Propagation;
use gtk::{gdk::Key, EventControllerKey};
use otg_core::{
settings::{SettingsRequest, SettingsResponse},
CoreRequest, CoreResponse,
CoreRequest, CoreResponse, GameReviewViewModel,
};
use sgf::GameRecord;
use std::{rc::Rc, sync::{Arc, RwLock}};
use std::sync::{Arc, RwLock};
use crate::views::{GameReview, HomeView, SettingsView};
@ -91,13 +93,32 @@ impl AppWindow {
pub fn open_game_review(&self, game_record: GameRecord) {
let header = adw::HeaderBar::new();
let game_review = GameReview::new(self.core.clone(), game_record, self.resources.clone());
let game_review = GameReview::new(
GameReviewViewModel::new(game_record),
self.resources.clone(),
);
let layout = gtk::Box::builder()
.orientation(gtk::Orientation::Vertical)
.build();
layout.append(&header);
layout.append(&game_review);
layout.append(&game_review.widget());
// This controller ensures that navigational keypresses get sent to the game review so that
// they're not changing the cursor focus in the app.
let keypress_controller = EventControllerKey::new();
keypress_controller.connect_key_pressed({
move |s, key, _, _| {
println!("layout keypress: {}", key);
if s.forward(&game_review.widget()) {
Propagation::Stop
} else {
Propagation::Proceed
}
}
});
layout.add_controller(keypress_controller);
let page = adw::NavigationPage::builder()
.can_pop(true)

View File

@ -37,16 +37,10 @@ You should have received a copy of the GNU General Public License along with On
use crate::{perftrace, Resource, ResourceManager};
use gio::resources_lookup_data;
use glib::Object;
use gtk::{
gdk_pixbuf::{Colorspace, InterpType, Pixbuf},
prelude::*,
subclass::prelude::*,
};
use image::{io::Reader as ImageReader, ImageError};
use gtk::{gdk_pixbuf::Pixbuf, prelude::*, subclass::prelude::*};
use otg_core::{Color, Coordinate};
use std::{cell::RefCell, io::Cursor, rc::Rc};
use std::{cell::RefCell, rc::Rc};
const WIDTH: i32 = 800;
const HEIGHT: i32 = 800;
@ -107,17 +101,12 @@ impl Goban {
s
}
fn redraw(&self, ctx: &cairo::Context, width: i32, height: i32) {
println!("{} x {}", width, height);
/*
let background = load_pixbuf(
"/com/luminescent-dreams/otg-gtk/wood_texture.jpg",
false,
WIDTH + 40,
HEIGHT + 40,
);
*/
pub fn set_board_state(&mut self, board_state: otg_core::Goban) {
*self.imp().board_state.borrow_mut() = board_state;
self.queue_draw();
}
fn redraw(&self, ctx: &cairo::Context, width: i32, height: i32) {
let background = self
.imp()
.resource_manager
@ -257,11 +246,11 @@ impl Pen {
let (x_loc, y_loc) = self.stone_location(row, col);
match color {
Color::White => match self.white_stone {
Some(ref white_stone) => ctx.set_source_pixbuf(&white_stone, x_loc, y_loc),
Some(ref white_stone) => ctx.set_source_pixbuf(white_stone, x_loc, y_loc),
None => ctx.set_source_rgb(0.9, 0.9, 0.9),
},
Color::Black => match self.black_stone {
Some(ref black_stone) => ctx.set_source_pixbuf(&black_stone, x_loc, y_loc),
Some(ref black_stone) => ctx.set_source_pixbuf(black_stone, x_loc, y_loc),
None => ctx.set_source_rgb(0.0, 0.0, 0.0),
},
}
@ -309,34 +298,3 @@ impl Pen {
)
}
}
fn load_pixbuf(
path: &str,
transparency: bool,
width: i32,
height: i32,
) -> Result<Option<Pixbuf>, ImageError> {
let image_bytes = resources_lookup_data(path, gio::ResourceLookupFlags::NONE).unwrap();
let image = ImageReader::new(Cursor::new(image_bytes))
.with_guessed_format()
.unwrap()
.decode();
image.map(|image| {
let stride = if transparency {
image.to_rgba8().sample_layout().height_stride
} else {
image.to_rgb8().sample_layout().height_stride
};
Pixbuf::from_bytes(
&glib::Bytes::from(image.as_bytes()),
Colorspace::Rgb,
transparency,
8,
image.width() as i32,
image.height() as i32,
stride as i32,
)
.scale_simple(width, height, InterpType::Nearest)
})
}

View File

@ -15,50 +15,42 @@ You should have received a copy of the GNU General Public License along with On
*/
use cairo::Context;
use glib::Object;
use gtk::{prelude::*, subclass::prelude::*};
use otg_core::DepthTree;
use sgf::GameRecord;
use std::{cell::RefCell, rc::Rc};
use uuid::Uuid;
use gtk::prelude::*;
use otg_core::GameReviewViewModel;
const WIDTH: i32 = 200;
const HEIGHT: i32 = 800;
#[derive(Default)]
pub struct ReviewTreePrivate {
record: Rc<RefCell<Option<GameRecord>>>,
tree: Rc<RefCell<Option<DepthTree>>>,
}
const RADIUS: f64 = 7.5;
const HIGHLIGHT_WIDTH: f64 = 4.;
const SPACING: f64 = 30.;
#[glib::object_subclass]
impl ObjectSubclass for ReviewTreePrivate {
const NAME: &'static str = "ReviewTree";
type Type = ReviewTree;
type ParentType = gtk::DrawingArea;
}
#[derive(Clone)]
pub struct ReviewTree {
widget: gtk::ScrolledWindow,
drawing_area: gtk::DrawingArea,
impl ObjectImpl for ReviewTreePrivate {}
impl WidgetImpl for ReviewTreePrivate {}
impl DrawingAreaImpl for ReviewTreePrivate {}
glib::wrapper! {
pub struct ReviewTree(ObjectSubclass<ReviewTreePrivate>) @extends gtk::Widget, gtk::DrawingArea;
view: GameReviewViewModel,
}
impl ReviewTree {
pub fn new(record: GameRecord) -> Self {
let s: Self = Object::new();
pub fn new(view: GameReviewViewModel) -> ReviewTree {
let drawing_area = gtk::DrawingArea::new();
let widget = gtk::ScrolledWindow::builder().child(&drawing_area).build();
// TODO: there can be more than one tree, especially in instructional files. Either unify
// them into a single tree in the GameTree, or draw all of them here.
*s.imp().tree.borrow_mut() = Some(DepthTree::from(&record.trees[0]));
*s.imp().record.borrow_mut() = Some(record);
widget.set_width_request(WIDTH);
widget.set_height_request(HEIGHT);
s.set_width_request(WIDTH);
s.set_height_request(HEIGHT);
// TODO: figure out the maximum width of the tree so that we can also set a width request
drawing_area.set_height_request(view.tree_max_depth() as i32 * SPACING as i32);
s.set_draw_func({
let s = Self {
widget,
drawing_area,
view,
};
s.drawing_area.set_draw_func({
let s = s.clone();
move |_, ctx, width, height| {
s.redraw(ctx, width, height);
@ -68,168 +60,63 @@ impl ReviewTree {
s
}
pub fn redraw(&self, ctx: &Context, _width: i32, _height: i32) {
let tree: &Option<DepthTree> = &self.imp().tree.borrow();
match tree {
Some(ref tree) => {
for node in tree.bfs_iter() {
// draw a circle given the coordinates of the nodes
// I don't know the indent. How do I keep track of that? Do I track the position of
// the parent? do I need to just make it more intrinsically a part of the position
// code?
ctx.set_source_rgb(0.7, 0.7, 0.7);
let (row, column) = node.position();
let y = (row as f64) * 20. + 10.;
let x = (column as f64) * 20. + 10.;
ctx.arc(x, y, 5., 0., 2. * std::f64::consts::PI);
pub fn queue_draw(&self) {
self.drawing_area.queue_draw();
}
fn redraw(&self, ctx: &Context, _width: i32, _height: i32) {
#[allow(deprecated)]
let context = WidgetExt::style_context(&self.widget);
#[allow(deprecated)]
let foreground_color = context.lookup_color("sidebar_fg_color").unwrap();
#[allow(deprecated)]
let accent_color = context.lookup_color("accent_color").unwrap();
self.view.map_tree(move |node, current| {
let parent = node.parent();
ctx.set_source_rgb(
foreground_color.red().into(),
foreground_color.green().into(),
foreground_color.blue().into(),
);
let (row, column) = node.data().position();
let y = (row as f64) * SPACING + RADIUS * 2.;
let x = (column as f64) * SPACING + RADIUS * 2.;
ctx.arc(x, y, RADIUS, 0., 2. * std::f64::consts::PI);
let _ = ctx.fill();
if let Some(parent) = parent {
ctx.set_line_width(1.);
let (row, column) = parent.data().position();
let py = (row as f64) * SPACING + RADIUS * 2.;
let px = (column as f64) * SPACING + RADIUS * 2.;
ctx.move_to(px, py);
ctx.line_to(x, y);
let _ = ctx.stroke();
}
}
None => {
// if there is no tree present, then there's nothing to draw!
}
}
}
}
// https://llimllib.github.io/pymag-trees/
// I want to take advantage of the Wetherell Shannon algorithm, but I want some variations. In
// their diagram, they got a tree that looks like this.
//
// O
// |\
// O O
// |\ \ \
// O O O O
// |\ |\
// O O O O
//
// In the same circumstance, what I want is this:
//
// O--
// | \
// O O
// |\ |\
// O O O O
// |\
// O O
//
// In order to keep things from being overly smooshed, I want to ensure that if a branch overlaps
// with another branch, there is some extra drawing space. This might actually be similar to adding
// the principal that "A parent should be centered over its children".
//
// So, given a tree, I need to know how many children exist at each level. Then I build parents
// atop the children. At level 3, I have four children, and that happens to be the maximum width of
// the graph.
//
// A bottom-up traversal:
// - Figure out the number of nodes at each depth
/*
struct Tree {
width: Vec<usize>, // the total width of the tree at each depth
}
*/
#[cfg(test)]
mod test {
use super::*;
use sgf::{Color, GameNode, Move, MoveNode};
#[test]
fn it_calculates_width_for_single_node() {
let node = GameNode::MoveNode(MoveNode::new(Color::Black, Move::Move("dp".to_owned())));
assert_eq!(node_width(&node), 1);
}
#[test]
fn it_calculates_width_for_node_with_children() {
let mut node_a = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_b = GameNode::MoveNode(MoveNode::new(Color::Black, Move::Move("dp".to_owned())));
let node_c = GameNode::MoveNode(MoveNode::new(Color::Black, Move::Move("dp".to_owned())));
let node_d = GameNode::MoveNode(MoveNode::new(Color::Black, Move::Move("dp".to_owned())));
node_a.children.push(node_b);
node_a.children.push(node_c);
node_a.children.push(node_d);
assert_eq!(node_width(&GameNode::MoveNode(node_a)), 3);
}
// A
// B E
// C D
#[test]
fn it_calculates_width_with_one_deep_child() {
let mut node_a = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let mut node_b = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_c = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_d = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_e = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
node_b.children.push(GameNode::MoveNode(node_c));
node_b.children.push(GameNode::MoveNode(node_d));
assert_eq!(node_width(&GameNode::MoveNode(node_b.clone())), 2);
node_a.children.push(GameNode::MoveNode(node_b));
node_a.children.push(GameNode::MoveNode(node_e));
assert_eq!(node_width(&GameNode::MoveNode(node_a)), 3);
}
// A
// B G H
// C I
// D E F
#[test]
fn it_calculates_a_complex_tree() {
let mut node_a = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let mut node_b = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let mut node_c = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_d = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_e = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_f = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_g = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let mut node_h = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_i = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
node_c.children.push(GameNode::MoveNode(node_d));
node_c.children.push(GameNode::MoveNode(node_e));
node_c.children.push(GameNode::MoveNode(node_f));
assert_eq!(node_width(&GameNode::MoveNode(node_c.clone())), 3);
node_b.children.push(GameNode::MoveNode(node_c));
assert_eq!(node_width(&GameNode::MoveNode(node_b.clone())), 3);
node_h.children.push(GameNode::MoveNode(node_i));
node_a.children.push(GameNode::MoveNode(node_b));
node_a.children.push(GameNode::MoveNode(node_g));
node_a.children.push(GameNode::MoveNode(node_h));
// This should be 4 if I were collapsing levels correctly, but it is 5 until I return to
// figure that step out.
assert_eq!(node_width(&GameNode::MoveNode(node_a.clone())), 5);
}
#[test]
fn a_nodes_children_get_separate_columns() {
let mut node_a = MoveNode::new(Color::Black, Move::Move("dp".to_owned()));
let node_b = GameNode::MoveNode(MoveNode::new(Color::Black, Move::Move("dp".to_owned())));
let node_c = GameNode::MoveNode(MoveNode::new(Color::Black, Move::Move("dp".to_owned())));
let node_d = GameNode::MoveNode(MoveNode::new(Color::Black, Move::Move("dp".to_owned())));
node_a.children.push(node_b.clone());
node_a.children.push(node_c.clone());
node_a.children.push(node_d.clone());
assert_eq!(
node_children_columns(&GameNode::MoveNode(node_a)),
vec![0, 1, 2]
if current == Some(node.data().game_node_id) {
ctx.set_line_width(HIGHLIGHT_WIDTH);
ctx.set_source_rgb(
accent_color.red().into(),
accent_color.green().into(),
accent_color.blue().into(),
);
ctx.arc(
x,
y,
RADIUS + HIGHLIGHT_WIDTH / 2.,
0.,
2. * std::f64::consts::PI,
);
let _ = ctx.stroke();
ctx.set_line_width(2.);
}
});
}
#[test]
fn text_renderer() {
assert!(false);
pub fn widget(&self) -> gtk::Widget {
self.widget.clone().upcast::<gtk::Widget>()
}
}

View File

@ -49,8 +49,8 @@ pub struct ResourceManager {
resources: Rc<RefCell<HashMap<String, Resource>>>,
}
impl ResourceManager {
pub fn new() -> Self {
impl Default for ResourceManager {
fn default() -> Self {
let mut resources = HashMap::new();
for (path, xres, yres, transparency) in [
@ -88,7 +88,9 @@ impl ResourceManager {
resources: Rc::new(RefCell::new(resources)),
}
}
}
impl ResourceManager {
pub fn resource(&self, path: &str) -> Option<Resource> {
self.resources.borrow().get(path).cloned()
}
@ -123,7 +125,6 @@ impl ResourceManager {
.scale_simple(width, height, InterpType::Nearest)
})
}
}
pub fn perftrace<F, A>(trace_name: &str, f: F) -> A

View File

@ -122,7 +122,7 @@ fn main() {
app.connect_activate({
move |app| {
let resources = ResourceManager::new();
let resources = ResourceManager::default();
let core_api = CoreApi { core: core.clone() };
let app_window = AppWindow::new(app, core_api, resources);

View File

@ -22,16 +22,21 @@ You should have received a copy of the GNU General Public License along with On
// I'll get all of the information about the game from the core, and then render everything in the
// UI. So this will be a heavy lift on the UI side.
use crate::{
components::{Goban, PlayerCard, ReviewTree}, CoreApi, ResourceManager
};
use glib::Object;
use gtk::{prelude::*, subclass::prelude::*};
use otg_core::Color;
use sgf::GameRecord;
use std::{cell::RefCell, rc::Rc};
use crate::{
components::{Goban, PlayerCard, ReviewTree},
ResourceManager,
};
use glib::Propagation;
use gtk::{gdk::Key, prelude::*, EventControllerKey};
use otg_core::{Color, GameReviewViewModel};
/*
#[derive(Default)]
pub struct GameReviewPrivate {}
pub struct GameReviewPrivate {
model: Rc<RefCell<Option<GameReviewViewModel>>>,
}
#[glib::object_subclass]
impl ObjectSubclass for GameReviewPrivate {
@ -52,14 +57,76 @@ impl GameReview {
pub fn new(_api: CoreApi, record: GameRecord, resources: ResourceManager) -> Self {
let s: Self = Object::builder().build();
s
}
}
*/
#[derive(Clone)]
pub struct GameReview {
widget: gtk::Box,
goban: Rc<RefCell<Option<Goban>>>,
review_tree: Rc<RefCell<Option<ReviewTree>>>,
resources: ResourceManager,
view: Rc<RefCell<GameReviewViewModel>>,
}
impl GameReview {
pub fn new(view: GameReviewViewModel, resources: ResourceManager) -> Self {
let widget = gtk::Box::builder().build();
let view = Rc::new(RefCell::new(view));
let s = Self {
widget,
goban: Default::default(),
review_tree: Default::default(),
resources,
view,
};
let keypress_controller = EventControllerKey::new();
keypress_controller.connect_key_pressed({
let s = s.clone();
move |_, key, _, _| {
let mut view = s.view.borrow_mut();
match key {
Key::Down => view.next_move(),
Key::Up => view.previous_move(),
Key::Left => view.previous_variant(),
Key::Right => view.next_variant(),
_ => {
return Propagation::Proceed;
}
}
match *s.goban.borrow_mut() {
Some(ref mut goban) => goban.set_board_state(view.game_view()),
None => {}
};
match *s.review_tree.borrow() {
Some(ref tree) => tree.queue_draw(),
None => {}
}
Propagation::Stop
}
});
s.widget.add_controller(keypress_controller);
s.render();
s
}
fn render(&self) {
// It's actually really bad to be just throwing away errors. Panics make everyone unhappy.
// This is not a fatal error, so I'll replace this `unwrap` call with something that
// renders the board and notifies the user of a problem that cannot be resolved.
let board_repr = match record.mainline() {
Some(iter) => otg_core::Goban::default().apply_moves(iter).unwrap(),
None => otg_core::Goban::default(),
};
let board = Goban::new(board_repr, resources);
let board_repr = self.view.borrow().game_view();
let board = Goban::new(board_repr, self.resources.clone());
/*
s.attach(&board, 0, 0, 2, 2);
@ -76,7 +143,7 @@ impl GameReview {
// The review tree needs to know the record for being able to render all of the nodes. Once
// keyboard input is being handled, the tree will have to be updated on each keystroke in
// order to show the user where they are within the game record.
let review_tree = ReviewTree::new(record.clone());
let review_tree = ReviewTree::new(self.view.borrow().clone());
// I think most keyboard focus is going to end up being handled here in GameReview, as
// keystrokes need to affect both the goban and the review tree simultanesouly. Possibly
@ -88,14 +155,24 @@ impl GameReview {
.spacing(4)
.build();
player_information_section.append(&PlayerCard::new(Color::Black, &record.black_player));
player_information_section.append(&PlayerCard::new(Color::White, &record.white_player));
player_information_section
.append(&PlayerCard::new(Color::Black, &self.view.borrow().black_player()));
player_information_section
.append(&PlayerCard::new(Color::White, &self.view.borrow().white_player()));
s.append(&board);
self.widget.append(&board);
sidebar.append(&player_information_section);
sidebar.append(&review_tree);
s.append(&sidebar);
sidebar.append(&review_tree.widget());
self.widget.append(&sidebar);
s
*self.goban.borrow_mut() = Some(board);
*self.review_tree.borrow_mut() = Some(review_tree);
}
fn redraw(&self) {
}
pub fn widget(&self) -> gtk::Widget {
self.widget.clone().upcast::<gtk::Widget>()
}
}

View File

@ -1,3 +1,3 @@
[toolchain]
channel = "1.77.0"
targets = [ "wasm32-unknown-unknown" ]
channel = "1.81.0"
targets = [ "wasm32-unknown-unknown", "thumbv6m-none-eabi" ]

View File

@ -2,8 +2,8 @@ use crate::{
parser::{self, Annotation, Evaluation, Move, SetupInstr, Size, UnknownProperty},
Color, Date, GameResult, GameType,
};
use serde::{Deserialize, Serialize};
use nary_tree::{NodeId, NodeMut, NodeRef, Tree};
use serde::{Deserialize, Serialize};
use std::{
collections::{HashMap, HashSet, VecDeque},
fmt,
@ -136,7 +136,7 @@ impl GameRecord {
/// Generate a list of moves which constitute the main line of the game. This is the game as it
/// was actually played out, and by convention consists of the first node in each list of
/// children.
pub fn mainline(&self) -> Option<impl Iterator<Item = &'_ GameNode>> {
pub fn mainline(&self) -> Option<impl Iterator<Item = NodeRef<'_, GameNode>>> {
if !self.trees.is_empty() {
Some(MainlineIter {
next: self.trees[0].root(),
@ -405,7 +405,7 @@ pub struct MainlineIter<'a> {
}
impl<'a> Iterator for MainlineIter<'a> {
type Item = &'a GameNode;
type Item = NodeRef<'a, GameNode>;
fn next(&mut self) -> Option<Self::Item> {
if let Some(next) = self.next.take() {
@ -413,7 +413,7 @@ impl<'a> Iterator for MainlineIter<'a> {
self.next = next
.first_child()
.and_then(|child| self.tree.get(child.node_id()));
Some(ret.data())
Some(ret)
} else {
None
}
@ -634,6 +634,7 @@ mod test {
assert_eq!(tree.nodes().len(), 0);
}
/*
#[test]
fn it_can_add_moves_to_a_game() {
let mut game = GameRecord::new(
@ -660,6 +661,7 @@ mod test {
assert_eq!(nodes[1].id(), second_move.id);
*/
}
*/
#[ignore]
#[test]
@ -820,6 +822,7 @@ mod path_test {
let moves = game
.mainline()
.expect("there should be a mainline in this file")
.map(|nr| nr.data())
.collect::<Vec<&GameNode>>();
assert_matches!(moves[0], GameNode::MoveNode(node) => {
assert_eq!(node.color, Color::Black);
@ -845,6 +848,7 @@ mod path_test {
let moves = game
.mainline()
.expect("there should be a mainline in this file")
.map(|nr| nr.data())
.collect::<Vec<&GameNode>>();
assert_matches!(moves[1], GameNode::MoveNode(node) => {
assert_eq!(node.color, Color::White);

View File

@ -4,7 +4,7 @@ mod game;
pub use game::{GameNode, GameRecord, GameTree, MoveNode, Player};
mod parser;
pub use parser::{parse_collection, Move};
pub use parser::{parse_collection, Move, Size};
mod types;
pub use types::*;

View File

@ -302,10 +302,10 @@ impl Move {
Move::Move(s) => {
if s.len() == 2 {
let mut parts = s.chars();
let row_char = parts.next().unwrap();
let row = row_char as u8 - b'a';
let column_char = parts.next().unwrap();
let column = column_char as u8 - b'a';
let row_char = parts.next().unwrap();
let row = row_char as u8 - b'a';
Some((row, column))
} else {
unimplemented!("moves must contain exactly two characters");