parent
42b55ad2c1
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17a9896398
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const std = @import("std"); |
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|
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// Although this function looks imperative, note that its job is to |
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// declaratively construct a build graph that will be executed by an external |
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// runner. |
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pub fn build(b: *std.Build) void { |
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// Standard target options allows the person running `zig build` to choose |
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// what target to build for. Here we do not override the defaults, which |
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// means any target is allowed, and the default is native. Other options |
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// for restricting supported target set are available. |
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const target = b.standardTargetOptions(.{}); |
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|
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// Standard optimization options allow the person running `zig build` to select |
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// between Debug, ReleaseSafe, ReleaseFast, and ReleaseSmall. Here we do not |
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// set a preferred release mode, allowing the user to decide how to optimize. |
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const optimize = b.standardOptimizeOption(.{}); |
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|
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const exe = b.addExecutable(.{ |
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.name = "day08-hard", |
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// In this case the main source file is merely a path, however, in more |
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// complicated build scripts, this could be a generated file. |
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.root_source_file = .{ .path = "src/main.zig" }, |
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.target = target, |
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.optimize = optimize, |
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}); |
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|
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// This declares intent for the executable to be installed into the |
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// standard location when the user invokes the "install" step (the default |
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// step when running `zig build`). |
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b.installArtifact(exe); |
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|
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// This *creates* a Run step in the build graph, to be executed when another |
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// step is evaluated that depends on it. The next line below will establish |
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// such a dependency. |
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const run_cmd = b.addRunArtifact(exe); |
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|
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// By making the run step depend on the install step, it will be run from the |
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// installation directory rather than directly from within the cache directory. |
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// This is not necessary, however, if the application depends on other installed |
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// files, this ensures they will be present and in the expected location. |
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run_cmd.step.dependOn(b.getInstallStep()); |
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|
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// This allows the user to pass arguments to the application in the build |
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// command itself, like this: `zig build run -- arg1 arg2 etc` |
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if (b.args) |args| { |
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run_cmd.addArgs(args); |
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} |
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|
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// This creates a build step. It will be visible in the `zig build --help` menu, |
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// and can be selected like this: `zig build run` |
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// This will evaluate the `run` step rather than the default, which is "install". |
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const run_step = b.step("run", "Run the app"); |
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run_step.dependOn(&run_cmd.step); |
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|
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// Creates a step for unit testing. This only builds the test executable |
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// but does not run it. |
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const unit_tests = b.addTest(.{ |
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.root_source_file = .{ .path = "src/main.zig" }, |
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.target = target, |
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.optimize = optimize, |
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}); |
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const run_unit_tests = b.addRunArtifact(unit_tests); |
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|
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// Similar to creating the run step earlier, this exposes a `test` step to |
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// the `zig build --help` menu, providing a way for the user to request |
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// running the unit tests. |
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const test_step = b.step("test", "Run unit tests"); |
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test_step.dependOn(&run_unit_tests.step); |
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} |
@ -0,0 +1,10 @@ |
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LR |
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|
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PPA = (PPB, XXX) |
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PPB = (XXX, PPZ) |
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PPZ = (PPB, XXX) |
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QQA = (QQB, XXX) |
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QQB = (QQC, QQC) |
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QQC = (QQZ, QQZ) |
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QQZ = (QQB, QQB) |
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XXX = (XXX, XXX) |
@ -0,0 +1,154 @@ |
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const std = @import("std"); |
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|
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fn StackList(comptime T: type, comptime capacity_type: type, comptime capacity: capacity_type) type { |
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return struct { |
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const Self = @This(); |
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mem: [capacity]T, |
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length: capacity_type, |
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|
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fn add(self: *Self, value: T) void { |
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self.mem[self.length] = value; |
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self.length += 1; |
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} |
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|
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fn has(self: *const Self, needle: T) bool { |
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for (0..self.length) |i| { |
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if (self.mem[i] == needle) { |
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return true; |
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} |
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} |
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return false; |
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} |
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fn getMutableSlice(self: *Self) []T { |
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//var mem_full_slice = &self.mem; |
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//var mem_slice: []T = mem_full_slice[0..self.length]; |
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//return mem_slice; |
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return (&self.mem)[0..self.length]; |
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} |
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fn getLoopedValue(self: *const Self, index: usize) T { |
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return self.mem[index % self.length]; |
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} |
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fn reset(self: *Self) void { |
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self.length = 0; |
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} |
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fn init() Self { |
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return Self{ |
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.mem = undefined, |
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.length = 0, |
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}; |
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} |
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}; |
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} |
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const SIXTEEN_BITS = 65535; |
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const FIVE_BITS = 31; |
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const DEFAULT_NODE_VALUE = (SIXTEEN_BITS << 16) | SIXTEEN_BITS; |
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const Directions = StackList(usize, usize, 1000); |
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fn parseDirections(line: []const u8) Directions { |
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var result = Directions.init(); |
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const left: usize = SIXTEEN_BITS << 16; |
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const right: usize = SIXTEEN_BITS; |
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var index: usize = 0; |
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while (index < line.len) : (index += 1) { |
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result.add(switch (line[index]) { |
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'L' => left, |
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'R' => right, |
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else => unreachable, |
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}); |
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} |
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return result; |
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} |
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const Nodes = [32 * 32 * 32]usize; |
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fn parseNodeNumber(line: []const u8) usize { |
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var result: usize = 0; |
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for (line) |char| { |
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result = (result << 5) + (char - 'A'); |
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} |
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return result; |
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} |
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fn parseNodeLine(line: []const u8, state: *Nodes) void { |
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const current_node_number = parseNodeNumber(line[0..3]); |
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state[current_node_number] = (parseNodeNumber(line[7..10]) << 16) | parseNodeNumber(line[12..15]); |
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} |
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fn solve(nodes: Nodes, directions: Directions) usize { |
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var current = StackList(usize, usize, 1023).init(); |
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{ |
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var node_number: usize = 0; |
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while (node_number < nodes.len) : (node_number += 32) { |
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if (nodes[node_number] != DEFAULT_NODE_VALUE) { |
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current.add(node_number); |
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} |
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} |
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} |
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std.debug.print("Total number of starting points: {d}\n", .{current.length}); |
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var i: usize = 0; |
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while (true) : (i += 1) { |
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if (i & SIXTEEN_BITS == 0) { |
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var debug_string = StackList(u8, u8, 255).init(); |
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for (current.getMutableSlice()) |current_number| { |
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debug_string.add(@as(u8, @intCast((current_number >> 10) & FIVE_BITS)) + 'A'); |
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debug_string.add(@as(u8, @intCast((current_number >> 5) & FIVE_BITS)) + 'A'); |
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debug_string.add(@as(u8, @intCast((current_number >> 0) & FIVE_BITS)) + 'A'); |
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debug_string.add(' '); |
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} |
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std.debug.print("Points at step {d}: {s}\n", .{ i, debug_string.getMutableSlice() }); |
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} |
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var are_all_z = true; |
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for (current.getMutableSlice()) |*current_number| { |
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if (current_number.* & FIVE_BITS != 'Z' - 'A') { |
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are_all_z = false; |
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} |
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const mask = nodes[current_number.*] & directions.getLoopedValue(i); |
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current_number.* = (mask | (mask >> 16)) & SIXTEEN_BITS; |
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} |
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if (are_all_z) { |
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break; |
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} |
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} |
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return i; |
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} |
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pub fn main() !void { |
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const stdout = std.io.getStdOut().writer(); |
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const raw_in = std.io.getStdIn(); |
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var buffered_reader = std.io.bufferedReader(raw_in.reader()); |
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var reader = buffered_reader.reader(); |
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var line_buffer: [1000]u8 = undefined; |
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const first_line = (try reader.readUntilDelimiterOrEof(&line_buffer, '\n')).?; |
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var directions = parseDirections(first_line); |
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_ = try reader.readUntilDelimiterOrEof(&line_buffer, '\n'); |
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var nodes: Nodes = undefined; |
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for (&nodes) |*node| { |
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node.* = DEFAULT_NODE_VALUE; |
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} |
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while (try reader.readUntilDelimiterOrEof(&line_buffer, '\n')) |line| { |
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parseNodeLine(line, &nodes); |
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} |
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const result = solve(nodes, directions); |
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try stdout.print("{d}\n", .{result}); |
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} |
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