Reasonably clean 2018 Day 16
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225fe62540
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@ -6,46 +6,40 @@ import re
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numbers_pt1 = [[int(s) for s in re.findall(r'-?\d+', d)] for d in data if d]
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numbers_pt1 = [[int(s) for s in re.findall(r'-?\d+', d)] for d in data if d]
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numbers_pt2 = [[int(s) for s in re.findall(r'-?\d+', d)] for d in data2 if d]
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numbers_pt2 = [[int(s) for s in re.findall(r'-?\d+', d)] for d in data2 if d]
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def oper_prototype(operator, immediate_a, immediate_b, regs, opcodes):
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op, a, b, c = opcodes
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r = list(regs)
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r[c] = operator((a if immediate_a else regs[a]), (b if immediate_b else regs[b]))
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return r
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addr = lambda regs, opcodes: oper_prototype(int.__add__, False, False, regs, opcodes)
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class oper_factory:
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addi = lambda regs, opcodes: oper_prototype(int.__add__, False, True, regs, opcodes)
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def __init__(self, operator, immediate_a, immediate_b):
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mulr = lambda regs, opcodes: oper_prototype(int.__mul__, False, False, regs, opcodes)
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self.operator = operator
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muli = lambda regs, opcodes: oper_prototype(int.__mul__, False, True, regs, opcodes)
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self.immediate_a = immediate_a
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andr = lambda regs, opcodes: oper_prototype(int.__and__, False, False, regs, opcodes)
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self.immediate_b = immediate_b
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andi = lambda regs, opcodes: oper_prototype(int.__and__, False, True, regs, opcodes)
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orr = lambda regs, opcodes: oper_prototype(int.__or__, False, False, regs, opcodes)
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def __call__(self, regs, opcodes):
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ori = lambda regs, opcodes: oper_prototype(int.__or__, False, True, regs, opcodes)
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op, a, b, c = opcodes
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setr = lambda regs, opcodes: oper_prototype(lambda a, b: a, True, True, regs, opcodes)
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r = list(regs)
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seti = lambda regs, opcodes: oper_prototype(lambda a, b: a, False, True, regs, opcodes)
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r[c] = self.operator((a if self.immediate_a else regs[a]), (b if self.immediate_b else regs[b]))
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gtir = lambda regs, opcodes: oper_prototype(int.__gt__, True, False, regs, opcodes)
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return r
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gtri = lambda regs, opcodes: oper_prototype(int.__gt__, False, True, regs, opcodes)
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gtrr = lambda regs, opcodes: oper_prototype(int.__gt__, False, False, regs, opcodes)
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bin_ops = (int.__add__, int.__mul__, int.__and__, int.__or__)
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eqir = lambda regs, opcodes: oper_prototype(int.__eq__, True, False, regs, opcodes)
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set_op = lambda a, b: a # Just discard second operand
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eqri = lambda regs, opcodes: oper_prototype(int.__eq__, False, True, regs, opcodes)
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comp_ops = (int.__gt__, int.__eq__)
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eqrr = lambda regs, opcodes: oper_prototype(int.__eq__, False, False, regs, opcodes)
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comp_imms = ((True, False), (False, True), (False, False)) # ir, ri, rr
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instructions = [oper_factory(op, False, imm) for op in bin_ops for imm in (False, True)] \
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+ [oper_factory(set_op, imm, True) for imm in (False, True)] \
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+ [oper_factory(op, *imm) for op in comp_ops for imm in comp_imms]
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instructions = [addr, addi, mulr, muli, andr, andi, orr, ori, setr, seti, gtir, gtri, gtrr, eqir, eqri, eqrr]
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num_3_or_more = 0
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num_3_or_more = 0
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instruction_codes = {}
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instruction_codes = {}
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instruction_impossibilities = {}
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for before, opcodes, after in zip(numbers_pt1[::3], numbers_pt1[1::3], numbers_pt1[2::3]):
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for before, opcodes, after in zip(numbers_pt1[::3], numbers_pt1[1::3], numbers_pt1[2::3]):
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possibilities = set()
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possibilities = set()
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impossibilities = set()
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for op in instructions:
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for op in instructions:
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try:
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try:
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r2 = op(before, opcodes)
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r2 = op(before, opcodes)
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if r2 == after:
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if r2 == after:
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possibilities.add(op)
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possibilities.add(op)
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else:
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except Exception:
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impossibilities.add(op)
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pass
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except:
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impossibilities.add(op)
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if len(possibilities) >= 3:
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if len(possibilities) >= 3:
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num_3_or_more += 1
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num_3_or_more += 1
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@ -54,28 +48,20 @@ for before, opcodes, after in zip(numbers_pt1[::3], numbers_pt1[1::3], numbers_p
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else:
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else:
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instruction_codes[opcodes[0]] = set(possibilities)
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instruction_codes[opcodes[0]] = set(possibilities)
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if opcodes[0] in instruction_impossibilities:
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instruction_impossibilities[opcodes[0]] |= impossibilities
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else:
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instruction_impossibilities[opcodes[0]] = set(impossibilities)
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print(num_3_or_more) # Part 1
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print(num_3_or_more) # Part 1
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for k in instruction_codes:
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instruction_codes[k] -= instruction_impossibilities[k]
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while sum([len(i) for i in instruction_codes.values()]) > len(instructions):
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while sum([len(i) for i in instruction_codes.values()]) > len(instructions):
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for code, cands in instruction_codes.items():
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for code, candidates in instruction_codes.items():
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if len(cands) == 1:
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if len(candidates) == 1:
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for code2 in [c for c in instruction_codes if c != code]:
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for code2 in [c for c in instruction_codes if c != code]:
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instruction_codes[code2] -= cands
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instruction_codes[code2] -= candidates
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instruction_codes = {k: tuple(s)[0] for k, s in instruction_codes.items()}
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opcode_convert = {code: list(s)[0] for code, s in instruction_codes.items()}
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regs = [0, 0, 0, 0]
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regs = [0, 0, 0, 0]
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for i, opcodes in enumerate(numbers_pt2):
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for i, opcodes in enumerate(numbers_pt2):
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try:
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try:
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regs = opcode_convert[opcodes[0]](regs, opcodes)
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regs = instruction_codes[opcodes[0]](regs, opcodes)
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except:
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except Exception:
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print(f'Line {i}: {regs} {opcodes}')
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print(f'Line {i}: {regs} {opcodes}')
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raise
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raise
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