42aed6bde2
This was only ever a transitionary macro.
213 lines
5.7 KiB
Rust
213 lines
5.7 KiB
Rust
// Copyright 2012-2014 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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// no-pretty-expanded
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#![feature(phase)]
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#[phase(syntax)] extern crate green;
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use std::string::String;
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use std::fmt;
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green_start!(main)
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fn print_complements() {
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let all = [Blue, Red, Yellow];
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for aa in all.iter() {
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for bb in all.iter() {
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println!("{} + {} -> {}", *aa, *bb, transform(*aa, *bb));
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}
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}
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}
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enum Color { Red, Yellow, Blue }
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impl fmt::Show for Color {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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let str = match *self {
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Red => "red",
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Yellow => "yellow",
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Blue => "blue",
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};
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write!(f, "{}", str)
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}
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}
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struct CreatureInfo {
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name: uint,
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color: Color
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}
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fn show_color_list(set: Vec<Color>) -> String {
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let mut out = String::new();
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for col in set.iter() {
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out.push_char(' ');
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out.push_str(col.to_str().as_slice());
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}
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out
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}
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fn show_digit(nn: uint) -> &'static str {
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match nn {
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0 => {" zero"}
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1 => {" one"}
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2 => {" two"}
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3 => {" three"}
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4 => {" four"}
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5 => {" five"}
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6 => {" six"}
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7 => {" seven"}
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8 => {" eight"}
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9 => {" nine"}
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_ => {fail!("expected digits from 0 to 9...")}
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}
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}
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struct Number(uint);
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impl fmt::Show for Number {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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let mut out = vec![];
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let Number(mut num) = *self;
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if num == 0 { out.push(show_digit(0)) };
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while num != 0 {
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let dig = num % 10;
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num = num / 10;
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let s = show_digit(dig);
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out.push(s);
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}
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for s in out.iter().rev() {
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try!(write!(f, "{}", s))
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}
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Ok(())
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}
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}
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fn transform(aa: Color, bb: Color) -> Color {
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match (aa, bb) {
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(Red, Red ) => { Red }
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(Red, Yellow) => { Blue }
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(Red, Blue ) => { Yellow }
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(Yellow, Red ) => { Blue }
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(Yellow, Yellow) => { Yellow }
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(Yellow, Blue ) => { Red }
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(Blue, Red ) => { Yellow }
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(Blue, Yellow) => { Red }
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(Blue, Blue ) => { Blue }
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}
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}
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fn creature(
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name: uint,
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mut color: Color,
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from_rendezvous: Receiver<CreatureInfo>,
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to_rendezvous: Sender<CreatureInfo>,
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to_rendezvous_log: Sender<String>
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) {
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let mut creatures_met = 0;
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let mut evil_clones_met = 0;
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let mut rendezvous = from_rendezvous.iter();
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loop {
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// ask for a pairing
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to_rendezvous.send(CreatureInfo {name: name, color: color});
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// log and change, or quit
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match rendezvous.next() {
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Some(other_creature) => {
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color = transform(color, other_creature.color);
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// track some statistics
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creatures_met += 1;
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if other_creature.name == name {
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evil_clones_met += 1;
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}
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}
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None => break
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}
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}
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// log creatures met and evil clones of self
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let report = format!("{}{}", creatures_met, Number(evil_clones_met));
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to_rendezvous_log.send(report);
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}
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fn rendezvous(nn: uint, set: Vec<Color>) {
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// these ports will allow us to hear from the creatures
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let (to_rendezvous, from_creatures) = channel::<CreatureInfo>();
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// these channels will be passed to the creatures so they can talk to us
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let (to_rendezvous_log, from_creatures_log) = channel::<String>();
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// these channels will allow us to talk to each creature by 'name'/index
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let mut to_creature: Vec<Sender<CreatureInfo>> =
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set.iter().enumerate().map(|(ii, &col)| {
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// create each creature as a listener with a port, and
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// give us a channel to talk to each
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let to_rendezvous = to_rendezvous.clone();
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let to_rendezvous_log = to_rendezvous_log.clone();
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let (to_creature, from_rendezvous) = channel();
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spawn(proc() {
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creature(ii,
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col,
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from_rendezvous,
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to_rendezvous,
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to_rendezvous_log);
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});
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to_creature
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}).collect();
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let mut creatures_met = 0;
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// set up meetings...
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for _ in range(0, nn) {
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let fst_creature = from_creatures.recv();
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let snd_creature = from_creatures.recv();
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creatures_met += 2;
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to_creature.get_mut(fst_creature.name).send(snd_creature);
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to_creature.get_mut(snd_creature.name).send(fst_creature);
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}
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// tell each creature to stop
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drop(to_creature);
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// print each color in the set
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println!("{}", show_color_list(set));
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// print each creature's stats
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drop(to_rendezvous_log);
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for rep in from_creatures_log.iter() {
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println!("{}", rep);
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}
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// print the total number of creatures met
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println!("{}\n", Number(creatures_met));
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}
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fn main() {
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let nn = if std::os::getenv("RUST_BENCH").is_some() {
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200000
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} else {
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std::os::args().as_slice()
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.get(1)
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.and_then(|arg| from_str(arg.as_slice()))
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.unwrap_or(600)
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};
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print_complements();
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println!("");
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rendezvous(nn, vec!(Blue, Red, Yellow));
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rendezvous(nn,
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vec!(Blue, Red, Yellow, Red, Yellow, Blue, Red, Yellow, Red, Blue));
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}
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