5c992cbdca
DrawMode was a 1:1 mirror of klondike::DrawStockConfig (DrawOne/DrawThree). Delete it and use the upstream type everywhere; re-export DrawStockConfig from solitaire_core. config_for assigns draw_stock directly and draw_mode() returns session.config().inner.draw_stock. Serde is unchanged — DrawStockConfig serialises to the same "DrawOne"/"DrawThree" named variants, so persisted game_state.json / replay JSON stay byte-compatible (no migration). Field/method/variable names containing draw_mode are unchanged. 35 files, mechanical type swap across all crates. Implemented via a multi-agent workflow (core → per-crate consumers → verify). cargo test --workspace and clippy --workspace --all-targets -- -D warnings green. Closes #82 Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
186 lines
5.4 KiB
Rust
186 lines
5.4 KiB
Rust
//! Generate provably-winnable Klondike seeds for `CHALLENGE_SEEDS`.
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//!
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//! Walks seeds incrementally from `--start`, calls the solver on each, and
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//! collects only those proven winnable (`Ok(Some(_))`; inconclusive is
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//! rejected — the curated list wants proof). Prints Rust source suitable for
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//! pasting into `solitaire_data/src/challenge.rs`.
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//!
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//! # Usage
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//!
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//! ```bash
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//! cargo run -p solitaire_assetgen --bin gen_seeds --release -- \
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//! --start 0xCAFE_BABE_0000_0000 --count 75
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//! ```
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//!
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//! Flags:
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//! --start Starting seed (decimal or 0x-prefixed hex, default 0xCAFEBABE00000000)
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//! --count Number of Winnable seeds to emit (default 75)
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//! --help Print this message
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use solitaire_core::DrawStockConfig;
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use solitaire_core::game_state::GameState;
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use solitaire_core::{DEFAULT_SOLVE_MOVES_BUDGET, DEFAULT_SOLVE_STATES_BUDGET};
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fn main() {
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let mut args = std::env::args().skip(1).peekable();
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let mut start: u64 = 0xCAFE_BABE_0000_0000;
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let mut count: usize = 75;
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while let Some(arg) = args.next() {
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match arg.as_str() {
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"--start" => {
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let val = args.next().unwrap_or_else(|| {
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eprintln!("error: --start requires a value");
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std::process::exit(1);
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});
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start = parse_u64(&val);
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}
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"--count" => {
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let val = args.next().unwrap_or_else(|| {
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eprintln!("error: --count requires a value");
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std::process::exit(1);
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});
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count = val.parse().unwrap_or_else(|_| {
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eprintln!("error: --count must be a positive integer");
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std::process::exit(1);
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});
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}
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"--help" | "-h" => {
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eprintln!(
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"{}",
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include_str!(concat!(env!("CARGO_MANIFEST_DIR"), "/src/bin/gen_seeds.rs"))
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.lines()
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.take(20)
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.collect::<Vec<_>>()
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.join("\n")
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);
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return;
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}
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other => {
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eprintln!("error: unknown argument: {other}");
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std::process::exit(1);
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}
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}
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}
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if count == 0 {
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eprintln!("error: --count must be > 0");
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std::process::exit(1);
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}
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let draw_mode = DrawStockConfig::DrawOne;
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let mut found: Vec<u64> = Vec::with_capacity(count);
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let mut tried: u64 = 0;
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let mut seed = start;
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eprintln!("gen_seeds: finding {count} Winnable seeds from 0x{start:016X} (DrawOne) …");
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while found.len() < count {
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tried += 1;
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if matches!(
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GameState::solve_fresh_deal(
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seed,
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draw_mode,
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DEFAULT_SOLVE_MOVES_BUDGET,
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DEFAULT_SOLVE_STATES_BUDGET
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),
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Ok(Some(_))
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) {
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found.push(seed);
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eprintln!(
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" [{:>3}/{}] 0x{:016X} ({} tried so far)",
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found.len(),
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count,
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seed,
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tried
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);
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}
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seed = seed.wrapping_add(1);
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}
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eprintln!(
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"\nDone. Paste the block below into CHALLENGE_SEEDS in solitaire_data/src/challenge.rs:\n"
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);
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println!(
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" // Generated by solitaire_assetgen::gen_seeds \
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(start=0x{start:016X}, count={count}, date={date})",
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date = current_date()
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);
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for chunk in found.chunks(5) {
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for s in chunk {
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println!(
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" 0x{:04X}_{:04X}_{:04X}_{:04X},",
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(s >> 48) & 0xFFFF,
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(s >> 32) & 0xFFFF,
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(s >> 16) & 0xFFFF,
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s & 0xFFFF,
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);
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}
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println!();
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}
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}
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fn parse_u64(s: &str) -> u64 {
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let cleaned = s.replace('_', "");
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if let Some(hex) = cleaned
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.strip_prefix("0x")
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.or_else(|| cleaned.strip_prefix("0X"))
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{
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u64::from_str_radix(hex, 16).unwrap_or_else(|_| {
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eprintln!("error: could not parse '{s}' as a hex u64");
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std::process::exit(1);
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})
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} else {
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cleaned.parse().unwrap_or_else(|_| {
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eprintln!("error: could not parse '{s}' as a decimal u64");
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std::process::exit(1);
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})
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}
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}
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fn current_date() -> String {
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use std::time::{SystemTime, UNIX_EPOCH};
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let secs = SystemTime::now()
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.duration_since(UNIX_EPOCH)
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.map(|d| d.as_secs())
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.unwrap_or(0);
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let days = secs / 86400;
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// Gregorian calendar computation (Tomohiko Sakamoto's algorithm variant)
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let mut y = 1970u64;
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let mut d = days;
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loop {
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let leap = (y.is_multiple_of(4) && !y.is_multiple_of(100)) || y.is_multiple_of(400);
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let days_in_year = if leap { 366 } else { 365 };
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if d < days_in_year {
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break;
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}
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d -= days_in_year;
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y += 1;
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}
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let leap = (y.is_multiple_of(4) && !y.is_multiple_of(100)) || y.is_multiple_of(400);
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let month_days: [u64; 12] = [
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31,
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if leap { 29 } else { 28 },
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31,
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30,
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31,
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30,
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31,
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31,
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30,
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31,
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30,
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31,
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];
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let mut m = 0usize;
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for &md in &month_days {
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if d < md {
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break;
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}
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d -= md;
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m += 1;
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}
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format!("{y}-{:02}-{:02}", m + 1, d + 1)
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}
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