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www.mikescher.com/www/statics/aoc/2018/16_solution-2.linq

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2019-11-02 20:19:34 +01:00
<Query Kind="Program" />
class Command
{
public int OpCode, Arg1, Arg2, Dst;
public Command(int[] a) { OpCode = a[0]; Arg1 = a[1]; Arg2 = a[2]; Dst = a[3]; }
}
(string, Action<int[], Command>)[] Operations = new(string, Action<int[], Command>)[]
{
("addr", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] + reg[cmd.Arg2]; } ),
("addi", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] + cmd.Arg2; } ),
("mulr", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] * reg[cmd.Arg2]; } ),
("muli", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] * cmd.Arg2; } ),
("banr", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] & reg[cmd.Arg2]; } ),
("bani", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] & cmd.Arg2; } ),
("borr", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] | reg[cmd.Arg2]; } ),
("bori", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] | cmd.Arg2; } ),
("setr", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1]; } ),
("seti", (reg, cmd) => { reg[cmd.Dst] = cmd.Arg1; } ),
("gtir", (reg, cmd) => { reg[cmd.Dst] = cmd.Arg1 > reg[cmd.Arg2] ? 1:0; } ),
("gtri", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] > cmd.Arg2 ? 1:0; } ),
("gtrr", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] > reg[cmd.Arg2] ? 1:0; } ),
("eqir", (reg, cmd) => { reg[cmd.Dst] = cmd.Arg1 == reg[cmd.Arg2] ? 1:0; } ),
("eqri", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] == cmd.Arg2 ? 1:0; } ),
("eqrr", (reg, cmd) => { reg[cmd.Dst] = reg[cmd.Arg1] == reg[cmd.Arg2] ? 1:0; } ),
};
void Main()
{
(var input1, var input2) = Load(File.ReadAllLines(Path.Combine(Path.GetDirectoryName(Util.CurrentQueryPath), @"16_input.txt")));
var mapping = GenerateMapping(input1);
int[] data = new int[128];
foreach (var cmd in input2) mapping[cmd.OpCode].Item2(data, cmd);
data[0].Dump();
}
(List<(int[], Command, int[])>, List<Command>) Load(string[] lines)
{
var r1 = new List<(int[], Command, int[])>();
int i = 0;
for (; ; i += 4)
{
if (string.IsNullOrWhiteSpace(lines[i])) break;
var a = lines[i + 0].Substring(8).TrimStart('[').TrimEnd(']').Split(',').Select(p => int.Parse(p.Trim())).ToArray();
var b = new Command(lines[i + 1].Split(' ').Select(p => int.Parse(p.Trim())).ToArray());
var c = lines[i + 2].Substring(8).TrimStart('[').TrimEnd(']').Split(',').Select(p => int.Parse(p.Trim())).ToArray();
r1.Add((a, b, c));
}
for (; string.IsNullOrWhiteSpace(lines[i]); i++) ;
var r2 = new List<Command>();
for (; i < lines.Length; i++) r2.Add(new Command(lines[i].Split(' ').Select(p => int.Parse(p.Trim())).ToArray()));
return (r1, r2);
}
bool ArrayEquals(int[] a, int[] b)
{
if (a.Length != b.Length) return false;
for (int i = 0; i < a.Length; i++) if (a[i] != b[i]) return false;
return true;
}
bool Test(int[] before, Action<int[], Command> op, Command cmd, int[] after)
{
var register = before.ToArray();
op(register, cmd);
if (register.Length != after.Length) return false;
for (int i = 0; i < register.Length; i++) if (register[i] != after[i]) return false;
return true;
}
(string, Action<int[], Command>)[] GenerateMapping(List<(int[], Command,int[])> input)
{
var mapping = Enumerable
.Range(0,16)
.Select(p => Operations.ToList() )
.ToArray();
foreach (var test in input)
{
if (mapping[test.Item2.OpCode].Count == 1) { Assert(Test(test.Item1, mapping[test.Item2.OpCode][0].Item2, test.Item2, test.Item3)); continue;}
mapping[test.Item2.OpCode] = mapping[test.Item2.OpCode].Where(op => Test(test.Item1, op.Item2, test.Item2, test.Item3)).ToList();
Assert(mapping[test.Item2.OpCode].Any());
}
for (int i_ = 0; i_ < 16; i_++)
{
foreach (var rm in mapping.Select((m,i) => (m,i)).Where(m => m.m.Count==1).ToList())
{
for (int j = 0; j < 16; j++)
{
if (j==rm.i) continue;
mapping[j] = mapping[j].Where(m => m.Item1 != rm.m.Single().Item1).ToList();
}
}
}
Assert(mapping.Select(p => p.Single().Item1).Distinct().Count() == 16);
return mapping.Select(p => p.Single()).ToArray();
}
void Assert(bool b) { if (!b) throw new Exception(); }