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2
.gitignore
vendored
2
.gitignore
vendored
@ -9,7 +9,7 @@ release.properties
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.project
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.classpath
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.settings/
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bin/
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./bin/
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# IntelliJ
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.idea
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@ -533,6 +533,7 @@ A list of external resources such as blog posts and videos, discussing 1BRC and
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* [1BRC - What a Journey](https://www.esolutions.tech/1brc-what-a-journey), by Marius Staicu (blog post)
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* [One Billion Rows Challenge in Golang](https://www.bytesizego.com/blog/one-billion-row-challenge-go), by Shraddha Agrawal (blog post)
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* [The Billion Row Challenge (1BRC) - Step-by-step from 71s to 1.7s](https://questdb.io/blog/billion-row-challenge-step-by-step/) by Marko Topolnik (blog post)
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* [Entering The One Billion Row Challenge With GitHub Copilot](https://devblogs.microsoft.com/java/entering-the-one-billion-row-challenge-with-github-copilot/) by Antonio Goncalves (blog post)
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## License
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1419
rust/Cargo.lock
generated
Normal file
1419
rust/Cargo.lock
generated
Normal file
File diff suppressed because it is too large
Load Diff
10
rust/Cargo.toml
Normal file
10
rust/Cargo.toml
Normal file
@ -0,0 +1,10 @@
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[package]
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name = "rust"
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version = "0.1.0"
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edition = "2021"
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# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
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[dependencies]
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hashbrown = "0.14.3"
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polars = { version = "0.36.2", features = ["csv", "lazy", "nightly", "streaming"]}
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105
rust/src/bin/multi_threaded.rs
Normal file
105
rust/src/bin/multi_threaded.rs
Normal file
@ -0,0 +1,105 @@
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use std::{
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fs::File,
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io::{BufRead, BufReader},
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sync::{Arc, Mutex},
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thread,
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};
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use hashbrown::HashMap;
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#[derive(Clone, Copy)]
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struct StationMeasurements {
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min: f64,
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max: f64,
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count: usize,
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sum: f64,
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}
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fn main() {
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let stations: Arc<Mutex<HashMap<String, StationMeasurements>>> =
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Arc::new(Mutex::new(HashMap::new()));
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let cores: usize = std::thread::available_parallelism().unwrap().into();
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let chunk_length = 1_000_000_000 / cores;
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let mut handles = vec![];
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for i in 0..cores {
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let file = File::open("../measurements.txt").expect("File measurements.txt not found");
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let reader = BufReader::new(file);
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let line_chunk = reader.lines().skip(chunk_length * i).take(chunk_length);
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let stations_clone = stations.clone();
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let handle = thread::spawn(move || {
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let mut t_stations: HashMap<String, StationMeasurements> = HashMap::new();
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let mut line_num = 0;
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for line in line_chunk {
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line_num += 1;
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let lineprint = chunk_length / 500;
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if line_num % lineprint == 0 {
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println!("Thread #{i}");
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let formatted_line_num = format_nums(line_num);
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println!("Calculated {formatted_line_num} stations");
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}
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let line = line.expect("could not read line");
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if line_num < 10 {
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println!("{}", line);
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}
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let (station, temp) = line.split_once(';').expect("Error while splitting");
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let temp = temp.parse().expect("Error while parsing temperature");
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let measurements_option = t_stations.get_mut(station);
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if let Some(measurements) = measurements_option {
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if temp < measurements.min {
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measurements.min = temp;
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} else if temp > measurements.max {
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measurements.max = temp;
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}
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measurements.count += 1;
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measurements.sum += temp;
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} else {
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let measurements = StationMeasurements {
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min: temp,
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max: temp,
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count: 1,
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sum: temp,
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};
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t_stations.insert(station.to_owned(), measurements);
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}
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}
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let mut stations_guard = stations_clone.lock().expect("Error while locking");
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for (station, measurements) in t_stations.iter() {
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let joined_measurements_options = stations_guard.get_mut(station.as_str());
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if let Some(joined_measurements) = joined_measurements_options {
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if measurements.min < joined_measurements.min {
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joined_measurements.min = measurements.min;
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} else if measurements.max > joined_measurements.max {
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joined_measurements.max = measurements.max;
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}
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joined_measurements.count += measurements.count;
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joined_measurements.sum += measurements.sum;
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} else {
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stations_guard.insert(station.to_owned(), *measurements);
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}
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}
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});
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handles.push(handle);
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}
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for handle in handles {
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handle.join().unwrap();
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}
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for (station, measurments) in stations.lock().unwrap().iter() {
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let min = measurments.min;
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let max = measurments.max;
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let avg = measurments.sum / measurments.count as f64;
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println!("{station}={min}/{max}/{avg:.2}");
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}
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}
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fn format_nums(num: usize) -> String {
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num.to_string()
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.as_bytes()
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.rchunks(3)
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.rev()
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.map(std::str::from_utf8)
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.collect::<Result<Vec<&str>, _>>()
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.unwrap()
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.join("_")
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}
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35
rust/src/bin/polars.rs
Normal file
35
rust/src/bin/polars.rs
Normal file
@ -0,0 +1,35 @@
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use polars::prelude::*;
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use std::time::Instant;
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use std::vec;
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fn run_polars() -> Result<DataFrame, PolarsError> {
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let now = Instant::now();
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let f1: Field = Field::new("station", DataType::String);
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let f2: Field = Field::new("measure", DataType::Float64);
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let sc: Schema = Schema::from_iter(vec![f1, f2]);
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let q = LazyCsvReader::new("../measurements.txt")
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.has_header(false)
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.with_schema(Some(Arc::new(sc)))
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.with_separator(b';')
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.finish()?
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.group_by(vec![col("station")])
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.agg(vec![
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col("measure").alias("min").min(),
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col("measure").alias("mean").mean(),
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col("measure").alias("max").max(),
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])
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.sort("station", Default::default())
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.with_streaming(true);
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let df = q.collect()?;
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println!("Time={} μs", now.elapsed().as_micros());
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Ok(df)
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}
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fn main() {
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run_polars();
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}
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69
rust/src/bin/single_thread.rs
Normal file
69
rust/src/bin/single_thread.rs
Normal file
@ -0,0 +1,69 @@
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use std::{
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fs::File,
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io::{BufRead, BufReader},
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};
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use hashbrown::HashMap;
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struct StationMeasurements {
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min: f64,
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max: f64,
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temps: Vec<f64>,
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}
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fn main() {
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let mut stations: HashMap<String, StationMeasurements> = HashMap::new();
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let file = File::open("../measurements.txt").expect("File measurements.txt not found");
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let reader = BufReader::new(file);
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let mut line_num = 0;
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for line_result in reader.lines() {
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line_num += 1;
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if line_num % 250000 == 0 {
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let formatted_line_num = format_nums(line_num);
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println!("Calculated {formatted_line_num} stations");
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}
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let line = line_result.expect("could not read line");
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let (station, temp) = line.split_once(';').unwrap();
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let temp = temp.parse().unwrap();
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let measurements_option = stations.get_mut(station);
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if let Some(measurements) = measurements_option {
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if temp < measurements.min {
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measurements.min = temp;
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} else if temp > measurements.max {
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measurements.max = temp;
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}
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measurements.temps.push(temp);
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} else {
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let measurements = StationMeasurements {
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min: temp,
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max: temp,
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temps: vec![temp],
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};
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stations.insert(station.to_owned(), measurements);
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}
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}
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for (station, measurments) in stations {
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let min = measurments.min;
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let max = measurments.max;
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let avg = avg(measurments.temps);
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println!("{station}={min}/{max}/{avg}");
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}
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}
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fn avg(temps: Vec<f64>) -> f64 {
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let num_temps = temps.len() as f64;
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let sum_temps: f64 = temps.iter().sum();
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sum_temps / num_temps
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}
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fn format_nums(num: usize) -> String {
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num.to_string()
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.as_bytes()
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.rchunks(3)
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.rev()
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.map(std::str::from_utf8)
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.collect::<Result<Vec<&str>, _>>()
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.unwrap()
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.join("_")
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}
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106
rust/src/main.rs
Normal file
106
rust/src/main.rs
Normal file
@ -0,0 +1,106 @@
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use std::{
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fs::File,
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io::{BufRead, BufReader},
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sync::{Arc, Mutex},
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thread,
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};
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use hashbrown::HashMap;
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#[derive(Clone, Copy)]
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struct StationMeasurements {
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min: f64,
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max: f64,
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count: usize,
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sum: f64,
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}
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fn main() {
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let stations: Arc<Mutex<HashMap<String, StationMeasurements>>> =
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Arc::new(Mutex::new(HashMap::new()));
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//let cores: usize = std::thread::available_parallelism().unwrap().into();
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let cores: usize = 4;
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let chunk_length = 1_000_000_000 / cores;
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let mut handles = vec![];
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for i in 0..cores {
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let file = File::open("../measurements.txt").expect("File measurements.txt not found");
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let reader = BufReader::new(file);
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let line_chunk = reader.lines().skip(chunk_length * i).take(chunk_length);
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let stations_clone = stations.clone();
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let handle = thread::spawn(move || {
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let mut t_stations: HashMap<String, StationMeasurements> = HashMap::new();
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let mut line_num = 0;
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for line in line_chunk {
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line_num += 1;
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let lineprint = chunk_length / 500;
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if line_num % lineprint == 0 {
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println!("Thread #{i}");
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let formatted_line_num = format_nums(line_num);
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println!("Calculated {formatted_line_num} stations");
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}
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let line = line.expect("could not read line");
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if line_num < 10 {
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println!("{}", line);
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}
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let (station, temp) = line.split_once(';').expect("Error while splitting");
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let temp = temp.parse().expect("Error while parsing temperature");
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let measurements_option = t_stations.get_mut(station);
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if let Some(measurements) = measurements_option {
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if temp < measurements.min {
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measurements.min = temp;
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} else if temp > measurements.max {
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measurements.max = temp;
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}
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measurements.count += 1;
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measurements.sum += temp;
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} else {
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let measurements = StationMeasurements {
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min: temp,
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max: temp,
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count: 1,
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sum: temp,
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};
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t_stations.insert(station.to_owned(), measurements);
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}
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}
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let mut stations_guard = stations_clone.lock().expect("Error while locking");
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for (station, measurements) in t_stations.iter() {
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let joined_measurements_options = stations_guard.get_mut(station.as_str());
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if let Some(joined_measurements) = joined_measurements_options {
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if measurements.min < joined_measurements.min {
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joined_measurements.min = measurements.min;
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} else if measurements.max > joined_measurements.max {
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joined_measurements.max = measurements.max;
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}
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joined_measurements.count += measurements.count;
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joined_measurements.sum += measurements.sum;
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} else {
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stations_guard.insert(station.to_owned(), *measurements);
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}
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}
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});
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handles.push(handle);
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}
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for handle in handles {
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handle.join().unwrap();
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}
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for (station, measurments) in stations.lock().unwrap().iter() {
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let min = measurments.min;
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let max = measurments.max;
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let avg = measurments.sum / measurments.count as f64;
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println!("{station}={min}/{max}/{avg:.2}");
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}
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}
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fn format_nums(num: usize) -> String {
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num.to_string()
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.as_bytes()
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.rchunks(3)
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.rev()
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.map(std::str::from_utf8)
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.collect::<Result<Vec<&str>, _>>()
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.unwrap()
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.join("_")
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}
|
@ -107,21 +107,23 @@ def build_test_data(weather_station_names, num_rows_to_create):
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hottest_temp = 99.9
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station_names_10k_max = random.choices(weather_station_names, k=10_000)
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batch_size = 10000 # instead of writing line by line to file, process a batch of stations and put it to disk
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progress_step = max(1, (num_rows_to_create // batch_size) // 100)
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chunks = num_rows_to_create // batch_size
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print('Building test data...')
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try:
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with open("../../../data/measurements.txt", 'w') as file:
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for s in range(0,num_rows_to_create // batch_size):
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progress = 0
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for chunk in range(chunks):
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batch = random.choices(station_names_10k_max, k=batch_size)
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prepped_deviated_batch = '\n'.join([f"{station};{random.uniform(coldest_temp, hottest_temp):.1f}" for station in batch]) # :.1f should quicker than round on a large scale, because round utilizes mathematical operation
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file.write(prepped_deviated_batch + '\n')
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# Update progress bar every 1%
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if s % progress_step == 0 or s == num_rows_to_create - 1:
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sys.stdout.write('\r')
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sys.stdout.write("[%-50s] %d%%" % ('=' * int((s + 1) / num_rows_to_create * 50), (s + 1) / num_rows_to_create * 100))
|
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if (chunk + 1) * 100 // chunks != progress:
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progress = (chunk + 1) * 100 // chunks
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bars = '=' * (progress // 2)
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sys.stdout.write(f"\r[{bars:<50}] {progress}%")
|
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sys.stdout.flush()
|
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sys.stdout.write('\n')
|
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except Exception as e:
|
||||
|
Loading…
Reference in New Issue
Block a user