chgk_ledb/src/main.rs

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extern crate serde;
extern crate serde_derive;
#[macro_use]
extern crate serde_json;
extern crate ledb;
extern crate ledb_types;
extern crate zip;
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use clap::{Parser, Subcommand};
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use rand::seq::IteratorRandom;
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use std::io::{Read, Write};
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use std::path::PathBuf;
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use std::time::Instant;
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use std::{fs, io, sync::mpsc, thread};
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use ledb::{Options, Storage};
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mod questions;
mod source;
use crate::questions::{Question, QuestionsConverter};
use crate::source::ReadSourceQuestionsBatches;
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const ZIP_FILENAME: &str = "json.zip";
const DB_DIR: &str = "db";
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#[derive(Subcommand, Debug)]
enum Command {
Write,
Compact,
Print {
#[clap(value_parser, default_value = "0")]
id: u32,
},
ZipPrint {
#[clap(value_parser, default_value = "0")]
file_num: usize,
#[clap(value_parser, default_value = "0")]
num: usize,
},
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Write2,
Print2 {
#[clap(value_parser, default_value = "0")]
id: u32,
},
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}
#[derive(Parser, Debug)]
#[clap(author, version, about, long_about = None)]
#[clap(propagate_version = true)]
struct Cli {
#[clap(subcommand)]
command: Command,
#[clap(short, long, action)]
measure: bool,
}
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fn reader_task(tx: mpsc::Sender<Question>) {
let zip_file = fs::File::open(ZIP_FILENAME).unwrap();
let zip_reader = io::BufReader::new(zip_file);
let archive = zip::ZipArchive::new(zip_reader).unwrap();
archive
.source_questions()
.convert()
.for_each(|question| tx.send(question).expect("send question"));
println!("read done");
}
fn db_writer_task(rx: mpsc::Receiver<Question>) {
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let out_file: PathBuf = [DB_DIR, "data.mdb"].into_iter().collect();
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match fs::metadata(&out_file) {
Ok(x) if x.is_file() => {
fs::remove_file(&out_file).unwrap();
println!(r#""{}" removed"#, out_file.to_str().unwrap());
}
_ => {}
};
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let options: Options = serde_json::from_value(json!({
"map_size": 900 * 1024 * 1024, // 900mb
"write_map": true,
"map_async": true,
"no_lock": true,
"no_meta_sync": true,
"no_sync": true,
}))
.unwrap();
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let storage = Storage::new(DB_DIR, options).unwrap();
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let collection = storage.collection("questions").unwrap();
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let mut count: usize = 0;
let count = &mut count;
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rx.into_iter().for_each(|question| {
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let result = collection.insert(&question);
if result.is_err() {
println!("-- {:#?}", question);
panic!("{:#?}", result);
} else {
*count += 1;
}
});
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println!("inserted {}\nwriting...", count);
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storage.sync(true).unwrap();
print!("stats: ");
let stats = storage.stat().unwrap();
println!("{:?}", stats);
drop(storage);
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println!("write done");
}
fn write_db() {
let (tx, rx) = mpsc::channel::<Question>();
[
thread::spawn(move || reader_task(tx)),
thread::spawn(move || db_writer_task(rx)),
]
.into_iter()
.for_each(|handle| handle.join().expect("thread panic"));
println!("all done");
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}
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fn print_question_from<F>(get_q: F)
where
F: FnOnce() -> Option<Question>,
{
let q = get_q().unwrap();
println!("{:#?}", q)
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}
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fn read_from_zip(file_num: usize, mut num: usize) -> Option<Question> {
let mut rng = rand::thread_rng();
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let zip_file = fs::File::open(ZIP_FILENAME).unwrap();
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let zip_reader = io::BufReader::new(zip_file);
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let archive = zip::ZipArchive::new(zip_reader).unwrap();
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let mut source_questions = archive.source_questions();
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let (filename, batch) = if file_num == 0 {
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source_questions.choose(&mut rng).unwrap()
} else {
source_questions.nth(file_num - 1).unwrap()
};
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let mut batch = batch.unwrap();
batch.filename = filename;
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let questions: Vec<Question> = batch.into();
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if num == 0 {
num = (1..=questions.len()).choose(&mut rng).unwrap();
}
Some(questions[num - 1].clone())
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}
fn compact_db() {
let options: Options = serde_json::from_value(json!({
"write_map": true,
"map_async": true,
"no_lock": true,
"no_meta_sync": true,
"no_sync": true,
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"compact": true,
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}))
.unwrap();
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let storage = Storage::new(DB_DIR, options).unwrap();
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storage.sync(true).unwrap();
let stats = storage.stat().unwrap();
println!("{:?}", stats);
drop(storage);
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}
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fn read_from_db(mut id: u32) -> Option<Question> {
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let options: Options = serde_json::from_value(json!({
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"read_only": true,
"map_async": true,
"no_lock": true,
}))
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.unwrap();
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let storage = Storage::new(DB_DIR, options).unwrap();
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let collection = storage.collection("questions").unwrap();
let mut rng = rand::thread_rng();
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if id == 0 {
let last_id = collection.last_id().unwrap();
id = (1..=last_id).choose(&mut rng).unwrap();
}
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collection.get::<Question>(id).unwrap()
}
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// measure and return time elapsed in `func` in seconds
pub fn measure<F: FnOnce()>(func: F) -> f64 {
let start = Instant::now();
func();
let elapsed = start.elapsed();
(elapsed.as_secs() as f64) + (elapsed.subsec_nanos() as f64 / 1_000_000_000.0)
}
pub fn measure_and_print<F: FnOnce()>(func: F) {
let m = measure(func);
eprintln!("{}", m);
}
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fn main() {
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let args = Cli::parse();
let mut action: Box<dyn FnOnce()> = match &args.command {
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Command::Write => Box::new(write_db),
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Command::Compact => Box::new(compact_db),
Command::Print { id } => {
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let get_question = Box::new(|| read_from_db(*id));
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Box::new(|| print_question_from(get_question))
}
Command::ZipPrint { file_num, num } => {
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let get_question = Box::new(|| read_from_zip(*file_num, *num));
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Box::new(|| print_question_from(get_question))
}
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Command::Write2 => Box::new(write_db2),
Command::Print2 { id } => {
let get_question = Box::new(|| read_from_db2(*id));
Box::new(|| print_question_from(get_question))
}
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};
if args.measure {
action = Box::new(|| measure_and_print(action));
}
action();
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}
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#[derive(bincode::Decode, bincode::Encode)]
struct VEntry {
pos: u32,
len: u16,
}
fn read_from_db2(id: u32) -> Option<Question> {
use std::io::Cursor;
const LEN_SIZE: usize = std::mem::size_of::<u64>();
let cfg = bincode::config::standard().with_fixed_int_encoding();
let input = fs::File::open("test.bin").expect("open input");
let mut input = std::io::BufReader::with_capacity(100 * 1024 * 1024, input);
let mut len_data: [u8; LEN_SIZE] = [0; LEN_SIZE];
input.read_exact(&mut len_data).expect("read len");
let len = u64::from_le_bytes(len_data) as usize;
//println!("read len done");
let mut zdata = vec![0u8; len];
input.read_exact(&mut zdata[..len]).expect("read ztab");
let tab_data = zstd::decode_all(Cursor::new(zdata)).expect("zstd decode table");
let tab: (Vec<VEntry>, usize) =
bincode::decode_from_slice(&tab_data, cfg).expect("bincode decode tab");
let tab = tab.0;
//println!("read tab done");
let choosen = tab.get(id as usize).expect("get by id");
input.seek_relative(choosen.pos as i64).expect("q seek");
let reader = input.take(choosen.len as u64);
let data = zstd::decode_all(reader).expect("zstd decode data");
let question: (Question, usize) =
bincode::decode_from_slice(&data, cfg).expect("bincode decode q");
let question = question.0;
//println!("read done");
Some(question)
}
fn write_db2() {
let (tx, rx) = mpsc::channel::<Question>();
[
thread::spawn(move || reader_task(tx)),
thread::spawn(move || db_writer2_task(rx)),
]
.into_iter()
.for_each(|handle| handle.join().expect("thread panic"));
println!("all done");
}
fn db_writer2_task(rx: mpsc::Receiver<Question>) {
const LEN_SIZE: usize = std::mem::size_of::<u64>();
let cfg = bincode::config::standard().with_fixed_int_encoding();
let mut table: Vec<VEntry> = vec![];
let buf_data: Vec<u8> = Vec::with_capacity(500 * 1024 * 1024);
use std::io::Cursor;
let mut buf = Cursor::new(buf_data);
let mut pos: u32 = 0;
rx.into_iter().for_each(|q| {
let data = bincode::encode_to_vec(q, cfg).expect("bincode q encode");
let data = zstd::encode_all(Cursor::new(data), 3).expect("zstd q encode");
let len = buf.write(&data).expect("write question");
table.push(VEntry {
pos,
len: len.try_into().expect("len try_into len"),
});
pos += len as u32;
});
buf.set_position(0);
println!("zbuf done");
let tab_data = bincode::encode_to_vec(&table, cfg).expect("encode table");
let zdata = zstd::encode_all(Cursor::new(tab_data), 3).expect("zstd enc table");
let zlen = zdata.len() as u64;
println!("z tab done");
let out = fs::File::create("test.bin").expect("out create");
let mut out = std::io::BufWriter::with_capacity(500 * 1024 * 1024, out);
let len_writed = out.write(&zlen.to_le_bytes()).expect("write zlen");
assert_eq!(len_writed, LEN_SIZE);
let ztab_writed = out.write(&zdata).expect("write tab zdata");
assert_eq!(ztab_writed, zdata.len());
drop(zdata);
std::io::copy(&mut buf, &mut out).expect("copy z buf");
drop(buf);
out.flush().expect("out flush");
println!("write done");
}