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-rw-r--r--srchr/src/config.rs47
-rw-r--r--srchr/src/corpus.rs123
-rw-r--r--srchr/src/evaluation.rs172
-rw-r--r--srchr/src/layout.rs156
-rw-r--r--srchr/src/main.rs23
-rw-r--r--srchr/src/output.rs51
6 files changed, 298 insertions, 274 deletions
diff --git a/srchr/src/config.rs b/srchr/src/config.rs
new file mode 100644
index 0000000..99afa4c
--- /dev/null
+++ b/srchr/src/config.rs
@@ -0,0 +1,47 @@
+// Search parameters
+pub const CORPUS_FILE_NAME: &str = "corpus.txt";
+
+pub const STARTING_LAYOUT_STRING: &str = "
+Q W E R T Y U I O P
+A S D F G H J K L '
+Z X C V B N M , . /
+";
+
+pub const NUM_CONTESTANTS: usize = 128;
+pub const NUM_PERSIST: usize = 8;
+
+pub const DESIRED_INDEX_USAGE_PERCENT: f32 = 0.15;
+pub const fn index_usage_fitness(index_threshold: u32, index_count: u32) -> u32 {
+ (index_threshold as i64 - index_count as i64).abs() as u32 / 64
+}
+
+// Do not change, code makes assumptions about these
+pub const NUM_KEYS: usize = 30;
+pub const ROW_LENGTH: usize = 10;
+
+pub const KEY_CHARS: [char; NUM_KEYS] = [
+ 'A', 'B', 'C', 'D', 'E', 'F', 'G', 'H', 'I', 'J', 'K', 'L', 'M', 'N', 'O', 'P', 'Q', 'R', 'S',
+ 'T', 'U', 'V', 'W', 'X', 'Y', 'Z', '/', '.', ',', '\'',
+];
+
+pub const KEY_TO_FINGER: [usize; NUM_KEYS] = [
+ 0, 1, 2, 3, 3, 4, 4, 5, 6, 7, 0, 1, 2, 3, 3, 4, 4, 5, 6, 7, 0, 1, 2, 3, 3, 4, 4, 5, 6, 7,
+];
+
+pub fn canonicalise(inp: char) -> Option<char> {
+ if inp.is_ascii_alphabetic() {
+ return Some(inp.to_ascii_uppercase());
+ } else {
+ match inp {
+ '.' => Some('.'),
+ '>' => Some('.'),
+ ',' => Some(','),
+ '<' => Some(','),
+ '/' => Some('/'),
+ '?' => Some('/'),
+ '\'' => Some('\''),
+ '"' => Some('\''),
+ _ => None,
+ }
+ }
+}
diff --git a/srchr/src/corpus.rs b/srchr/src/corpus.rs
index 8e4b437..eecb122 100644
--- a/srchr/src/corpus.rs
+++ b/srchr/src/corpus.rs
@@ -1,7 +1,7 @@
use std::fmt;
use std::fs;
-use crate::layout::*;
+use crate::config::*;
const fn build_lookup_table() -> [usize; 128] {
let mut result = [0; 128];
@@ -34,6 +34,18 @@ impl Corpus {
self.character_count[c as usize]
}
+ pub fn get_bigram_count(&self, x: char, y: char) -> u32 {
+ self.bigram_count[pair_to_index(x, y)]
+ }
+
+ pub fn get_index_threshold(&self) -> u32 {
+ self.index_threshold
+ }
+
+ pub fn get_total_count(&self) -> u32 {
+ self.total_count
+ }
+
pub fn load(path: &str) -> Result<Corpus, std::io::Error> {
let contents = fs::read_to_string(path)?;
@@ -59,7 +71,7 @@ impl Corpus {
}
}
- let index_threshold = (total_count as f32 * 0.15) as u32;
+ let index_threshold = (total_count as f32 * DESIRED_INDEX_USAGE_PERCENT) as u32;
return Ok(Corpus {
bigram_count,
@@ -68,113 +80,6 @@ impl Corpus {
index_threshold,
});
}
-
- pub fn prelayout_fitness(&self, layout: &Prelayout) -> u32 {
- let mut score: u32 = 0;
-
- for i in 0..6 {
- let keys = layout.get_standard_column(i);
- let k1 = keys[0];
- let k2 = keys[1];
- let k3 = keys[2];
-
- score += self.bigram_count[pair_to_index(k1, k2)]
- + self.bigram_count[pair_to_index(k1, k3)]
- + self.bigram_count[pair_to_index(k2, k3)];
- }
-
- for i in 0..2 {
- let keys = layout.get_index_column(i);
- let k1 = keys[0];
- let k2 = keys[1];
- let k3 = keys[2];
- let k4 = keys[3];
- let k5 = keys[4];
- let k6 = keys[5];
-
- // We want index usage!
- let index_count: u32 = keys.iter().map(|&k| self.character_count[k as usize]).sum();
- score += (self.index_threshold as i64 - index_count as i64).abs() as u32 / 64;
-
- score += self.bigram_count[pair_to_index(k1, k2)]
- + self.bigram_count[pair_to_index(k1, k3)]
- + self.bigram_count[pair_to_index(k2, k3)]
- + self.bigram_count[pair_to_index(k4, k5)]
- + self.bigram_count[pair_to_index(k4, k6)]
- + self.bigram_count[pair_to_index(k5, k6)]
- + self.bigram_count[pair_to_index(k1, k4)]
- + self.bigram_count[pair_to_index(k1, k5)]
- + self.bigram_count[pair_to_index(k1, k6)]
- + self.bigram_count[pair_to_index(k2, k4)]
- + self.bigram_count[pair_to_index(k2, k5)]
- + self.bigram_count[pair_to_index(k2, k6)]
- + self.bigram_count[pair_to_index(k3, k4)]
- + self.bigram_count[pair_to_index(k3, k5)]
- + self.bigram_count[pair_to_index(k3, k6)];
- }
-
- score
- }
-
- pub fn evaluate_layout(&self, layout: &Layout) -> Evaluation {
- let mut keypress: [u32; NUM_KEYS] = [0; NUM_KEYS];
- let mut sfb: [u32; 8] = [0; 8];
-
- for (i, &c) in self.character_count.iter().enumerate() {
- if c > 0 {
- keypress[layout.get_index((i as u8) as char)] = c;
- }
- }
-
- // TODO: We make assumptions about NUM_KEYS here
- for i in 0..8 {
- let ind = if i < 4 { i } else { i + 2 };
-
- let k1 = layout.get_key(ind + 10 * 0);
- let k2 = layout.get_key(ind + 10 * 1);
- let k3 = layout.get_key(ind + 10 * 2);
-
- sfb[i] = self.bigram_count[pair_to_index(k1, k2)]
- + self.bigram_count[pair_to_index(k1, k3)]
- + self.bigram_count[pair_to_index(k2, k3)];
-
- if i == 3 {
- let k4 = layout.get_key(4 + 10 * 0);
- let k5 = layout.get_key(4 + 10 * 1);
- let k6 = layout.get_key(4 + 10 * 2);
- sfb[i] += self.bigram_count[pair_to_index(k4, k5)]
- + self.bigram_count[pair_to_index(k4, k6)]
- + self.bigram_count[pair_to_index(k5, k6)]
- + self.bigram_count[pair_to_index(k1, k4)]
- + self.bigram_count[pair_to_index(k1, k5)]
- + self.bigram_count[pair_to_index(k1, k6)]
- + self.bigram_count[pair_to_index(k2, k4)]
- + self.bigram_count[pair_to_index(k2, k5)]
- + self.bigram_count[pair_to_index(k2, k6)]
- + self.bigram_count[pair_to_index(k3, k4)]
- + self.bigram_count[pair_to_index(k3, k5)]
- + self.bigram_count[pair_to_index(k3, k6)];
- } else if i == 4 {
- let k4 = layout.get_key(5 + 10 * 0);
- let k5 = layout.get_key(5 + 10 * 1);
- let k6 = layout.get_key(5 + 10 * 2);
- sfb[i] += self.bigram_count[pair_to_index(k4, k5)]
- + self.bigram_count[pair_to_index(k5, k6)]
- + self.bigram_count[pair_to_index(k4, k6)]
- + self.bigram_count[pair_to_index(k1, k4)]
- + self.bigram_count[pair_to_index(k1, k5)]
- + self.bigram_count[pair_to_index(k1, k6)]
- + self.bigram_count[pair_to_index(k2, k4)]
- + self.bigram_count[pair_to_index(k2, k5)]
- + self.bigram_count[pair_to_index(k2, k6)]
- + self.bigram_count[pair_to_index(k3, k4)]
- + self.bigram_count[pair_to_index(k3, k5)]
- + self.bigram_count[pair_to_index(k3, k6)];
- }
- }
-
- return Evaluation::new(keypress, self.total_count, sfb);
- }
}
fn dump_bigrams(corpus: &Corpus) -> Vec<(String, u32)> {
diff --git a/srchr/src/evaluation.rs b/srchr/src/evaluation.rs
new file mode 100644
index 0000000..9faeb88
--- /dev/null
+++ b/srchr/src/evaluation.rs
@@ -0,0 +1,172 @@
+use crate::config::*;
+use crate::corpus::*;
+use crate::layout::*;
+use crate::output::*;
+
+use std::fmt;
+
+pub fn prelayout_fitness(corpus: &Corpus, layout: &Prelayout) -> u32 {
+ let mut score: u32 = 0;
+
+ for i in 0..6 {
+ let keys = layout.get_standard_column(i);
+ let k1 = keys[0];
+ let k2 = keys[1];
+ let k3 = keys[2];
+
+ score += corpus.get_bigram_count(k1, k2)
+ + corpus.get_bigram_count(k1, k3)
+ + corpus.get_bigram_count(k2, k3);
+ }
+
+ for i in 0..2 {
+ let keys = layout.get_index_column(i);
+ let k1 = keys[0];
+ let k2 = keys[1];
+ let k3 = keys[2];
+ let k4 = keys[3];
+ let k5 = keys[4];
+ let k6 = keys[5];
+
+ // We want index usage!
+ let index_count: u32 = keys.iter().map(|&k| corpus.get_character_count(k)).sum();
+ score += index_usage_fitness(corpus.get_index_threshold(), index_count);
+
+ score += corpus.get_bigram_count(k1, k2)
+ + corpus.get_bigram_count(k1, k3)
+ + corpus.get_bigram_count(k2, k3)
+ + corpus.get_bigram_count(k4, k5)
+ + corpus.get_bigram_count(k4, k6)
+ + corpus.get_bigram_count(k5, k6)
+ + corpus.get_bigram_count(k1, k4)
+ + corpus.get_bigram_count(k1, k5)
+ + corpus.get_bigram_count(k1, k6)
+ + corpus.get_bigram_count(k2, k4)
+ + corpus.get_bigram_count(k2, k5)
+ + corpus.get_bigram_count(k2, k6)
+ + corpus.get_bigram_count(k3, k4)
+ + corpus.get_bigram_count(k3, k5)
+ + corpus.get_bigram_count(k3, k6);
+ }
+
+ score
+}
+
+#[derive(Copy, Clone)]
+pub struct Evaluation {
+ keypress: [u32; NUM_KEYS],
+ total_keypress: u32,
+ sfb: [u32; 8],
+}
+
+impl Evaluation {
+ pub fn evaluate_layout(corpus: &Corpus, layout: &Layout) -> Evaluation {
+ let mut keypress: [u32; NUM_KEYS] = [0; NUM_KEYS];
+ let mut sfb: [u32; 8] = [0; 8];
+
+ for (i, &c) in layout.get_keys().iter().enumerate() {
+ keypress[i] = corpus.get_character_count(c);
+ }
+
+ // TODO: We make assumptions about NUM_KEYS here
+ for i in 0..8 {
+ let ind = if i < 4 { i } else { i + 2 };
+
+ let k1 = layout.get_key(ind + 10 * 0);
+ let k2 = layout.get_key(ind + 10 * 1);
+ let k3 = layout.get_key(ind + 10 * 2);
+
+ sfb[i] = corpus.get_bigram_count(k1, k2)
+ + corpus.get_bigram_count(k1, k3)
+ + corpus.get_bigram_count(k2, k3);
+
+ if i == 3 {
+ let k4 = layout.get_key(4 + 10 * 0);
+ let k5 = layout.get_key(4 + 10 * 1);
+ let k6 = layout.get_key(4 + 10 * 2);
+ sfb[i] += corpus.get_bigram_count(k4, k5)
+ + corpus.get_bigram_count(k4, k6)
+ + corpus.get_bigram_count(k5, k6)
+ + corpus.get_bigram_count(k1, k4)
+ + corpus.get_bigram_count(k1, k5)
+ + corpus.get_bigram_count(k1, k6)
+ + corpus.get_bigram_count(k2, k4)
+ + corpus.get_bigram_count(k2, k5)
+ + corpus.get_bigram_count(k2, k6)
+ + corpus.get_bigram_count(k3, k4)
+ + corpus.get_bigram_count(k3, k5)
+ + corpus.get_bigram_count(k3, k6);
+ } else if i == 4 {
+ let k4 = layout.get_key(5 + 10 * 0);
+ let k5 = layout.get_key(5 + 10 * 1);
+ let k6 = layout.get_key(5 + 10 * 2);
+ sfb[i] += corpus.get_bigram_count(k4, k5)
+ + corpus.get_bigram_count(k5, k6)
+ + corpus.get_bigram_count(k4, k6)
+ + corpus.get_bigram_count(k1, k4)
+ + corpus.get_bigram_count(k1, k5)
+ + corpus.get_bigram_count(k1, k6)
+ + corpus.get_bigram_count(k2, k4)
+ + corpus.get_bigram_count(k2, k5)
+ + corpus.get_bigram_count(k2, k6)
+ + corpus.get_bigram_count(k3, k4)
+ + corpus.get_bigram_count(k3, k5)
+ + corpus.get_bigram_count(k3, k6);
+ }
+ }
+
+ return Evaluation {
+ keypress,
+ total_keypress: corpus.get_total_count(),
+ sfb,
+ };
+ }
+
+ fn output_eval(&self) -> String {
+ let mut result = String::new();
+ let tot = self.total_keypress as f32;
+
+ result += &"Percent per key:\n";
+ result += &format_block_output(self.keypress.into_iter().map(|k| 100.0 * k as f32 / tot));
+
+ let mut finger_usages = [0; 8];
+ for (i, &c) in self.keypress.iter().enumerate() {
+ finger_usages[KEY_TO_FINGER[i]] += c;
+ }
+
+ result += "\nFinger usage: ";
+ let mut lh: f32 = 0.0;
+ let mut rh: f32 = 0.0;
+ for (i, &u) in finger_usages.iter().enumerate() {
+ let f = u as f32 / tot * 100.0;
+ result += &format!("{:>5.2}%{}", f, if i < 7 { ", " } else { "" });
+ if i % 10 < 4 {
+ lh += f;
+ } else {
+ rh += f;
+ }
+ }
+
+ result += &format!("\nHand usage: {:.2}% vs {:.2}%", lh, rh);
+
+ result += "\nSame finger bigrams: ";
+ for (i, &u) in self.sfb.iter().enumerate() {
+ result += &format!(
+ "{:>6.3}%{}",
+ u as f32 / tot * 100.0,
+ if i < 7 { ", " } else { "" }
+ );
+ }
+
+ let sfb = self.sfb.iter().sum::<u32>();
+ result += &format!("\nTotal sfb: {:.2}% ({})", sfb as f32 / tot * 100.0, sfb);
+
+ return result;
+ }
+}
+
+impl fmt::Display for Evaluation {
+ fn fmt(&self, formatter: &mut fmt::Formatter) -> fmt::Result {
+ formatter.write_str(&self.output_eval())
+ }
+}
diff --git a/srchr/src/layout.rs b/srchr/src/layout.rs
index 9662b84..d30e38b 100644
--- a/srchr/src/layout.rs
+++ b/srchr/src/layout.rs
@@ -1,34 +1,9 @@
+use crate::config::*;
use crate::corpus::*;
-
+use crate::output::*;
use rand::prelude::*;
use std::fmt;
-pub const NUM_KEYS: usize = 30;
-pub const ROW_LENGTH: usize = 10;
-
-pub const KEY_CHARS: [char; NUM_KEYS] = [
- 'A', 'B', 'C', 'D', 'E', 'F', 'G', 'H', 'I', 'J', 'K', 'L', 'M', 'N', 'O', 'P', 'Q', 'R', 'S',
- 'T', 'U', 'V', 'W', 'X', 'Y', 'Z', '/', '.', ',', '\'',
-];
-
-pub fn canonicalise(inp: char) -> Option<char> {
- if inp.is_ascii_alphabetic() {
- return Some(inp.to_ascii_uppercase());
- } else {
- match inp {
- '.' => Some('.'),
- '>' => Some('.'),
- ',' => Some(','),
- '<' => Some(','),
- '/' => Some('/'),
- '?' => Some('/'),
- '\'' => Some('\''),
- '"' => Some('\''),
- _ => None,
- }
- }
-}
-
#[derive(Copy, Clone)]
pub struct Prelayout {
standard_columns: [[char; 3]; 6],
@@ -123,10 +98,6 @@ impl Prelayout {
}
}
-const KEY_TO_FINGER: [usize; NUM_KEYS] = [
- 0, 1, 2, 3, 3, 4, 4, 5, 6, 7, 0, 1, 2, 3, 3, 4, 4, 5, 6, 7, 0, 1, 2, 3, 3, 4, 4, 5, 6, 7,
-];
-
#[derive(Copy, Clone)]
pub struct Layout {
keys: [char; NUM_KEYS],
@@ -202,12 +173,8 @@ impl Layout {
Layout { keys }
}
- pub fn get_index(&self, c: char) -> usize {
- let mut found_key = 0;
- while self.keys[found_key] != c {
- found_key += 1
- }
- found_key
+ pub fn get_keys(&self) -> &[char] {
+ &self.keys
}
fn char_array_to_layout(keys: [char; NUM_KEYS]) -> Layout {
@@ -246,118 +213,3 @@ impl fmt::Display for Layout {
formatter.write_str(&format_block_output(self.keys.into_iter()))
}
}
-
-#[derive(Copy, Clone)]
-pub struct Evaluation {
- keypress: [u32; NUM_KEYS],
- total_keypress: u32,
- sfb: [u32; 8],
-}
-
-impl Evaluation {
- pub fn new(keypress: [u32; NUM_KEYS], total_keypress: u32, sfb: [u32; 8]) -> Evaluation {
- Evaluation {
- keypress,
- sfb,
- total_keypress,
- }
- }
-
- fn output_eval(&self) -> String {
- let mut result = String::new();
- let tot = self.total_keypress as f32;
-
- result += &"Percent per key:\n";
- result += &format_block_output(self.keypress.into_iter().map(|k| 100.0 * k as f32 / tot));
-
- let mut finger_usages = [0; 8];
- for (i, &c) in self.keypress.iter().enumerate() {
- finger_usages[KEY_TO_FINGER[i]] += c;
- }
-
- result += "\nFinger usage: ";
- let mut lh: f32 = 0.0;
- let mut rh: f32 = 0.0;
- for (i, &u) in finger_usages.iter().enumerate() {
- let f = u as f32 / tot * 100.0;
- result += &format!("{:>5.2}%{}", f, if i < 7 { ", " } else { "" });
- if i % 10 < 4 {
- lh += f;
- } else {
- rh += f;
- }
- }
-
- result += &format!("\nHand usage: {:.2}% vs {:.2}%", lh, rh);
-
- result += "\nSame finger bigrams: ";
- for (i, &u) in self.sfb.iter().enumerate() {
- result += &format!(
- "{:>6.3}%{}",
- u as f32 / tot * 100.0,
- if i < 7 { ", " } else { "" }
- );
- }
-
- let sfb = self.sfb.iter().sum::<u32>();
- result += &format!("\nTotal sfb: {:.2}% ({})", sfb as f32 / tot * 100.0, sfb);
-
- return result;
- }
-}
-
-impl fmt::Display for Evaluation {
- fn fmt(&self, formatter: &mut fmt::Formatter) -> fmt::Result {
- formatter.write_str(&self.output_eval())
- }
-}
-
-// This is a silly amount of work to genericise the below...
-trait ToMyString {
- const BLANK_STRING: &'static str;
- fn to_my_string(&self) -> String;
-}
-
-impl ToMyString for char {
- const BLANK_STRING: &'static str = " ";
- fn to_my_string(&self) -> String {
- self.to_string()
- }
-}
-
-impl ToMyString for u32 {
- const BLANK_STRING: &'static str = " ";
- fn to_my_string(&self) -> String {
- format!("{:5}", *self)
- }
-}
-
-impl ToMyString for f32 {
- const BLANK_STRING: &'static str = " ";
- fn to_my_string(&self) -> String {
- format!("{:>4.1}", *self)
- }
-}
-
-fn format_block_output<T: Iterator<Item = S>, S: ToMyString>(things: T) -> String {
- let mut result = String::new();
- for (i, t) in things.enumerate() {
- result += &t.to_my_string();
- if i < NUM_KEYS - 1 {
- result.push(' ');
- }
- if (i + 1) % 10 == 0 {
- result.push('\n');
- if NUM_KEYS < 30 && i == 19 {
- result += S::BLANK_STRING;
- result.push(' ')
- }
- } else if (i < 20 && (i + 1) % 5 == 0) || (i == (NUM_KEYS - 20) / 2 + 19) {
- result.push(' ');
- }
- if i + 1 >= NUM_KEYS {
- break;
- }
- }
- return result;
-}
diff --git a/srchr/src/main.rs b/srchr/src/main.rs
index 2762646..46ec5d6 100644
--- a/srchr/src/main.rs
+++ b/srchr/src/main.rs
@@ -1,24 +1,21 @@
+mod config;
mod corpus;
+mod evaluation;
mod layout;
+mod output;
use rayon::prelude::*;
use rand::prelude::*;
use rand_pcg::*;
+use config::*;
use corpus::*;
+use evaluation::*;
use layout::*;
use std::time::Instant;
-const NUM_CONTESTANTS: usize = 128;
-const NUM_PERSIST: usize = 8;
-
-// TODO: command line arguments to start at a given layout string, maybe read
-// from file? Might as well make num_contestants and survive_threshold
-// configurable, and number of swaps when generating new layout, and index
-// finger threshold.
-
struct Tournament<'a> {
rngs: Vec<Pcg64>,
top_prelayouts: Vec<(Prelayout, u32)>,
@@ -33,7 +30,7 @@ impl<'a> Tournament<'a> {
}
let mut top_prelayouts: Vec<(Prelayout, u32)> = Vec::new();
- let score = corpus.prelayout_fitness(&seed_prelayout);
+ let score = prelayout_fitness(&corpus, &seed_prelayout);
for _ in 0..NUM_PERSIST {
top_prelayouts.push((seed_prelayout.clone(), score));
}
@@ -55,7 +52,7 @@ impl<'a> Tournament<'a> {
&self.top_prelayouts[rng.gen_range(0..NUM_PERSIST)].0,
&mut rng,
);
- return (layout, self.corpus.prelayout_fitness(&layout));
+ return (layout, prelayout_fitness(&self.corpus, &layout));
})
.collect::<Vec<(Prelayout, u32)>>();
@@ -79,10 +76,10 @@ impl<'a> Tournament<'a> {
}
fn main() {
- let corpus = Corpus::load("books.txt").unwrap();
+ let corpus = Corpus::load(CORPUS_FILE_NAME).unwrap();
println!("{}", corpus);
- let seed_prelayout = Layout::from_verbose("QWERTYUIOPASDFGHJKL'ZXCVBNM,./")
+ let seed_prelayout = Layout::from_verbose(STARTING_LAYOUT_STRING)
.unwrap()
.as_prelayout();
@@ -95,7 +92,7 @@ fn main() {
if let Some(prelayout) = improvement {
let layout = Layout::from_prelayout(&prelayout, &corpus);
- let evl = corpus.evaluate_layout(&layout);
+ let evl = Evaluation::evaluate_layout(&corpus, &layout);
println!("");
println!("================================================================================\n\n{}",
layout
diff --git a/srchr/src/output.rs b/srchr/src/output.rs
new file mode 100644
index 0000000..b5af9e7
--- /dev/null
+++ b/srchr/src/output.rs
@@ -0,0 +1,51 @@
+use crate::config::*;
+
+// This is a silly amount of work to genericise the below...
+pub trait ToMyString {
+ const BLANK_STRING: &'static str;
+ fn to_my_string(&self) -> String;
+}
+
+impl ToMyString for char {
+ const BLANK_STRING: &'static str = " ";
+ fn to_my_string(&self) -> String {
+ self.to_string()
+ }
+}
+
+impl ToMyString for u32 {
+ const BLANK_STRING: &'static str = " ";
+ fn to_my_string(&self) -> String {
+ format!("{:5}", *self)
+ }
+}
+
+impl ToMyString for f32 {
+ const BLANK_STRING: &'static str = " ";
+ fn to_my_string(&self) -> String {
+ format!("{:>4.1}", *self)
+ }
+}
+
+pub fn format_block_output<T: Iterator<Item = S>, S: ToMyString>(things: T) -> String {
+ let mut result = String::new();
+ for (i, t) in things.enumerate() {
+ result += &t.to_my_string();
+ if i < NUM_KEYS - 1 {
+ result.push(' ');
+ }
+ if (i + 1) % 10 == 0 {
+ result.push('\n');
+ if NUM_KEYS < 30 && i == 19 {
+ result += S::BLANK_STRING;
+ result.push(' ')
+ }
+ } else if (i < 20 && (i + 1) % 5 == 0) || (i == (NUM_KEYS - 20) / 2 + 19) {
+ result.push(' ');
+ }
+ if i + 1 >= NUM_KEYS {
+ break;
+ }
+ }
+ return result;
+}