use std::io::Write;
#[cfg(feature = "blasphemy")]
use rand::distr::Distribution;
#[cfg(feature = "blasphemy")]
use std::io::Read;
use crate::{enneagram::Enneagram, enneatype::Enneatype};
moddef::moddef!(
mod {
artwork for cfg(feature = "artwork"),
wireframe,
enneatype,
line,
enneagram,
domain,
triad,
personality,
pivot,
path
}
);
fn main()
{
let mut args = std::env::args();
let _executeable = args.next()
.unwrap_or_else(|| "enneagram".to_string());
#[cfg(feature = "pivot")]
let mut enable_pivot = true;
#[cfg(feature = "artwork")]
let mut enable_artwork = false;
let mut enneagram = Enneagram {
edges: Vec::new(),
show_path_lines: true,
show_boundary_lines: true,
show_pivot_lines: true,
show_triad_lines: true
};
loop
{
let argument = match args.next()
{
Some(number) => number,
None => {
#[cfg(feature = "artwork")]
if enable_artwork
{
let mut terminal = ratatui::init();
use crate::artwork::Artwork;
Artwork {
enneagram: &enneagram
}.draw(&mut terminal);
return
}
if enneagram.edges.is_empty()
{
let domain = domain::select();
let mut edge = domain.edge();
let edge_info = core::fmt::from_fn(|f| edge.info(f));
println!("\n{edge_info}");
#[cfg(feature = "pivot")]
if enable_pivot
{
loop
{
println!();
let pivot = edge.pivot();
let origin = core::mem::replace(&mut edge, pivot.select());
if edge == origin
{
break
}
let edge_info = core::fmt::from_fn(|f| edge.info(f));
println!("\n{edge_info}");
}
}
return
}
else
{
let mut sep = "";
for edges in enneagram.edges
{
let edge_info = core::fmt::from_fn(|f| Enneatype::common_info(&edges, f));
println!("{sep}{edge_info}");
sep = "\n"
}
return
}
}
};
enum Flag
{
#[cfg(feature = "pivot")]
Pivot,
#[cfg(feature = "artwork")]
Artwork
}
let mut take_flag = |flag, invert| {
match flag
{
#[cfg(feature = "pivot")]
Flag::Pivot => match (enable_pivot, invert)
{
(true, true) => enable_pivot = false,
(true, false) => panic!("Pivot is already enabled"),
(false, true) => panic!("Pivot is already disabled"),
(false, false) => enable_pivot = true
},
#[cfg(feature = "artwork")]
Flag::Artwork => match (enable_artwork, invert)
{
(true, true) => enable_artwork = false,
(true, false) => panic!("Artwork is already enabled"),
(false, true) => panic!("Artwork is already disabled"),
(false, false) => enable_artwork = true
}
}
};
let mut invert = false;
if argument.starts_with("--")
{
let mut flag_str = &argument["--".len()..];
while flag_str.starts_with("!")
{
flag_str = &flag_str["!".len()..];
invert = !invert
}
if flag_str.is_empty()
{
panic!("Invalid argument: Expected flag")
}
let flag = match flag_str
{
#[cfg(feature = "pivot")]
"pivot" => Flag::Pivot,
#[cfg(feature = "artwork")]
"artwork" => Flag::Artwork,
_ => panic!("Invalid argument: Unrecognized flag '{flag_str}'")
};
take_flag(
flag,
std::mem::replace(&mut invert, false)
);
continue
}
else if argument.starts_with("-")
{
for flag_char in argument["-".len()..].chars()
{
let flag = match flag_char
{
'!' => {
invert = !invert;
continue
}
#[cfg(feature = "pivot")]
'p' => Flag::Pivot,
#[cfg(feature = "artwork")]
'a' => Flag::Artwork,
_ => panic!("Invalid argument: Unrecognized single-character flag '{flag_char}'")
};
take_flag(
flag,
std::mem::replace(&mut invert, false)
);
}
if invert
{
panic!("Invalid argument: Expected flag")
}
continue
}
else if let Ok(mut number) = argument.parse::<u128>().map(Some)
{
enneagram.edges.push(
core::iter::repeat(())
.map_while(|()| {
let n = number.take()?;
let digit = (n % 10) as u8;
if n >= 10
{
number = Some(n/10)
}
Some(digit)
})
.map(|digit| Enneatype::new(digit))
.collect::<Vec<_>>()
.into_iter()
.rev()
.collect()
);
continue
}
panic!("Invalid arguments.")
}
}
#[derive(Clone, Copy, Debug, PartialEq, Eq)]
enum Clause<'a>
{
Question,
Answer(&'a str),
Continuation(&'a str)
}
fn select<T>(
clause: Clause<'_>,
options: &[(&str, &dyn Fn() -> T)]
) -> T
{
assert!(options.len() > 0, "No options have been provided. Why ask a question when you provide only the illusion of choice. That's not allowed.");
let numer_of_options = u8::try_from(options.len())
.expect("Amount of options cannot exceed 255, due to technical limitations. Because we store the keys of each choice as a byte.");
match clause
{
Clause::Question => print!("\x1b[s"),
Clause::Answer(question) => println!("Q: {question}\x1b[s"),
Clause::Continuation(conjunction) => println!("\x1b[u\x1b[0J{conjunction}\x1b[s")
}
println!("(pick one)");
for (n, (choice, _)) in options.iter()
.enumerate()
.map(|(m, option)| m.checked_add(1)
.and_then(|n| u8::try_from(n).ok())
.map(|n: u8| (n, option))
.expect("Choice-numbers cannot exceed 255, due to technical limitations. Because we store the keys of each choice as a byte.")
)
{
println!("\t{n}. {choice}")
}
let mut choice_string = String::new();
std::io::stdout()
.flush()
.expect("Failed to flush stdout");
std::io::stdin()
.read_line(&mut choice_string)
.expect("We failed to read the input because of an input-output error from your operating-system.");
let choice_str = choice_string.trim();
let choice = if choice_str.is_empty()
{
#[cfg(feature = "blasphemy")]
{
use std::io::Write;
println!("~ You don't seem to have entered anything at all! Due to your indecisiveness, a choice will be made for you...");
println!("~ Your computer's random number generator will be used to generate a random number. What comes from it, i cannot guarantee.");
println!("~ Whether the elfs that reside in your machine are working for a righteous master, i don't know. It is out of my control.");
println!("~ If you want to disable this feature, you can compile this computer program without the `blasphemy` feature.");
println!("~ Your fate is now in the hands of forces beyond.");
print!("\n[ Press enter to continue... ]");
std::io::stdout()
.flush()
.expect("Failed to flush stdout");
let _ = std::io::stdin()
.read(&mut [0])
.expect("Failed to wait for any-key");
let mut divine_intellect = rand::rng(); let god_dice = rand::distr::Uniform::try_from(0..options.len() as u8) .expect("Did you not present a nonzero amount of choices to begin with? Regardless, not even God can roll his dice when the range of possibilities is unsound. Make up your mind.");
let choice_number = god_dice.sample(&mut divine_intellect);
options.get(choice_number as usize)
.expect("Due to unforseen events, it seems the number was out of range.")
}
#[cfg(not(feature = "blasphemy"))]
{
panic!("You are running the blasphemy-free version of the enneagram software. You must make the decision yourself. Machine elves are not enabled due to the risk of blasphemy.")
}
}
else
{
assert_eq!(choice_str.len(), 1, "There must have been a mistake. More bytes were read than expected. We only expect one byte to be read here.");
let choice_number = choice_str.parse::<u8>()
.expect("What you wrote could not be parsed. Please write a number corresponding to one of the choices presented to you.");
assert!(choice_number <= numer_of_options, "You tried to select an option that doesn't exist. Your number is out of range. Please write a number corresponding to one of the choices presented to you.");
let choice_index = choice_number.checked_sub(1)
.expect("Your number is out of range. Please write a number corresponding to one of the choices presented to you. It cannot be 0.");
options.get(choice_index as usize)
.expect("Your number is out of range. Please write a number corresponding to one of the choices presented to you.")
};
print!("\x1b[u\x1b[0J"); let (expression, result) = choice;
match clause
{
Clause::Question => println!("\nQ: {expression}\x1b[s"),
Clause::Answer(_) => println!("\nA: {expression}\x1b[s"),
Clause::Continuation(_) => println!("{expression}\x1b[s")
}
result()
}