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2024 Day 16 Part 1

This commit is contained in:
Jeremy Kaplan 2024-12-15 21:57:25 -08:00
commit abd6bbcfd7

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2024/src/day16.zig Normal file
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const std = @import("std");
const aoc = @import("aoc.zig");
const Allocator = std.mem.Allocator;
const List = std.ArrayList;
const Map = std.AutoHashMap;
const Set = aoc.AutoHashSet;
const PriorityQueue = std.PriorityQueue;
pub fn main() !void {
var gpa: std.heap.GeneralPurposeAllocator(.{}) = .{};
defer _ = gpa.deinit();
const allocator = gpa.allocator();
const text = try aoc.readAll(allocator, "input/day16.txt");
defer allocator.free(text);
var blocks = std.mem.splitSequence(u8, text, "\n\n");
var grid = try Grid.parse(allocator, blocks.next().?);
defer grid.deinit();
var bw = std.io.bufferedWriter(std.io.getStdOut().writer());
const stdout = bw.writer();
try stdout.print("{d}\n", .{try part1(allocator, grid)});
try bw.flush();
}
fn part1(allocator: Allocator, grid: Grid) !u64 {
const start, const goal = v: {
var start: Pos = undefined;
var end: Pos = undefined;
var it = grid.iterator();
while (it.next()) |entry| {
switch (entry.value_ptr.*) {
'S' => start = entry.key_ptr.*,
'E' => end = entry.key_ptr.*,
else => continue,
}
}
break :v .{ start, end };
};
const State = struct {
pos: Pos,
dir: Direction,
};
const Entry = struct {
path: List(State),
cost: u64,
const Self = @This();
fn compare(_: void, a: Self, b: Self) std.math.Order {
return std.math.order(a.cost, b.cost);
}
};
var queue = PriorityQueue(Entry, void, comptime Entry.compare).init(allocator, {});
defer queue.deinit();
defer while (queue.removeOrNull()) |*entry| entry.path.deinit();
try queue.add(v: {
var path = List(State).init(allocator);
try path.append(State{
.pos = start,
.dir = Direction.e,
});
break :v Entry{
.path = path,
.cost = 0,
};
});
var expanded = Set(State).init(allocator);
defer expanded.deinit();
while (queue.removeOrNull()) |entry| {
const path, const cost = .{ entry.path, entry.cost };
defer path.deinit();
const state = path.getLast();
if (expanded.contains(state)) {
continue;
}
try expanded.put(state);
if (std.meta.eql(state.pos, goal)) {
return cost;
}
// Move once in the direction we're already going.
{
const move = state.pos.move(state.dir);
if (grid.get(move) != '#') {
var next = try path.clone();
try next.append(State{
.pos = move,
.dir = state.dir,
});
try queue.add(Entry{
.path = next,
.cost = cost + 1,
});
}
}
// There's never any reason to turn unless we're going to immediately
// move forward. This keeps the search from every trying to spin in a circle.
//
// As a consequence, there's never *ever* a reason to turn twice in a row
// and go back the way we came in.
for ([_]Direction{ state.dir.clockwise(), state.dir.counterclockwise() }) |dir| {
const move = state.pos.move(dir);
if (grid.get(move) == '#') {
continue;
}
var next = try path.clone();
try next.append(State{
.pos = move,
.dir = dir,
});
try queue.add(Entry{
.path = next,
.cost = cost + 1000 + 1,
});
}
}
return 0;
}
const Pos = struct {
r: i32,
c: i32,
fn new(r: i32, c: i32) Pos {
return Pos{ .r = r, .c = c };
}
fn add(self: Pos, d: Delta) Pos {
return .{
.r = self.r + d.dr,
.c = self.c + d.dc,
};
}
fn move(self: Pos, dir: Direction) Pos {
return self.add(dir.delta());
}
fn neighbors(self: Pos) [4]Pos {
return [4]Pos{
self.add(Direction.n.delta()),
self.add(Direction.e.delta()),
self.add(Direction.s.delta()),
self.add(Direction.w.delta()),
};
}
pub fn format(
self: Pos,
comptime _: []const u8,
_: std.fmt.FormatOptions,
writer: anytype,
) !void {
try writer.print("({d}, {d})", .{ self.r, self.c });
}
};
const Direction = enum {
n,
e,
s,
w,
fn delta(self: Direction) Delta {
return switch (self) {
.n => Delta.new(-1, 0),
.s => Delta.new(1, 0),
.w => Delta.new(0, -1),
.e => Delta.new(0, 1),
};
}
fn clockwise(self: Direction) Direction {
return switch (self) {
.n => .e,
.e => .s,
.s => .w,
.w => .n,
};
}
fn counterclockwise(self: Direction) Direction {
return switch (self) {
.n => .w,
.w => .s,
.s => .e,
.e => .n,
};
}
pub fn format(
self: Direction,
comptime _: []const u8,
_: std.fmt.FormatOptions,
writer: anytype,
) !void {
const c: u8 = switch (self) {
.n => 'N',
.e => 'E',
.s => 'S',
.w => 'W',
};
try writer.print("{c}", .{c});
}
};
const Delta = struct {
dr: i32,
dc: i32,
fn new(dr: i32, dc: i32) Delta {
return Delta{ .dr = dr, .dc = dc };
}
};
const Grid = struct {
allocator: Allocator,
map: Map(Pos, u8),
max: Pos,
fn parse(allocator: std.mem.Allocator, text: []const u8) !Grid {
var map = Map(Pos, u8).init(allocator);
var max = Pos{ .r = 0, .c = 0 };
var it = std.mem.tokenizeScalar(u8, text, '\n');
var r: i32 = 0;
while (it.next()) |row| : (r += 1) {
for (row, 0..) |char, c| {
const pos = Pos{
.r = @intCast(r),
.c = @intCast(c),
};
try map.put(pos, char);
max = pos;
}
}
return Grid{
.allocator = allocator,
.map = map,
.max = max,
};
}
fn deinit(self: *Grid) void {
self.map.deinit();
}
fn clone(self: Grid) !Grid {
return Grid{
.allocator = self.allocator,
.map = try self.map.clone(),
.max = self.max,
};
}
fn iterator(self: *const Grid) Map(Pos, u8).Iterator {
return self.map.iterator();
}
fn get(self: *const Grid, pos: Pos) ?u8 {
return self.map.get(pos);
}
fn inBounds(self: Grid, pos: Pos) bool {
return 0 <= pos.r and pos.r <= self.max.r and
0 <= pos.c and pos.c <= self.max.c;
}
pub fn format(
self: Grid,
comptime _: []const u8,
_: std.fmt.FormatOptions,
writer: anytype,
) !void {
var r: i32 = 0;
while (r <= self.max.r) : (r += 1) {
var c: i32 = 0;
while (c <= self.max.c) : (c += 1) {
try writer.print("{c}", .{self.get(Pos.new(r, c)).?});
}
try writer.print("\n", .{});
}
}
};