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path: root/2018/src/day04.cpp
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#include <algorithm>
#include <filesystem>
#include <fstream>
#include <iostream>
#include <map>
#include <string>
#include <vector>

using namespace std;

namespace {

struct Record {
	int  guard_id;
	long start_sleep;
	long stop_sleep;
};

long
to_timestamp(const string& line)
{
	long year = stol(line.substr(1, 4));
	long mon  = stol(line.substr(6, 2));
	long day  = stol(line.substr(9, 2));
	long hour = stol(line.substr(12, 2));
	long min  = stol(line.substr(15, 2));

	auto timestamp = (year * 100'000'000) + (mon * 1'000'000) + (day * 10'000) + (hour * 100) + min; // NOLINT

	return timestamp;
}

vector<Record>
read_file(const filesystem::path& filename)
{
	ifstream       file{ filename };
	vector<string> lines;

	for ( string line; getline(file, line); ) {
		lines.emplace_back(line);
	}

	ranges::sort(lines);

	vector<Record> records;

	int  guard       = -1;
	long start_sleep = -1;
	long stop_sleep  = -1;
	for ( const auto& line: lines ) {
		if ( line.find(" Guard #") != string::npos ) {
			guard = stoi(line.substr(26));
		}
		else if ( line.find(" falls asleep") != string::npos ) {
			start_sleep = to_timestamp(line);
		}
		else if ( line.find(" wakes up") != string::npos ) {
			stop_sleep = to_timestamp(line);
			records.emplace_back(guard, start_sleep, stop_sleep);
		}
	}

	return records;
}

void
part1(const vector<Record>& records)
{
	map<int, long> sleep_amounts;

	for ( const auto& record: records ) {
		sleep_amounts[record.guard_id] += record.stop_sleep - record.start_sleep;
	}

	auto max_amount = ranges::max_element(sleep_amounts,
	                                      [](const auto& lhs, const auto& rhs) {
		                                      return lhs.second < rhs.second;
	                                      });

	map<long, unsigned> sleep_counts;

	for ( const auto& record: records ) {
		if ( record.guard_id != max_amount->first ) {
			continue;
		}

		for ( auto timestamp = record.start_sleep; timestamp != record.stop_sleep; ++timestamp ) {
			sleep_counts[timestamp % 10'000]++;
		}
	}

	auto max_count = ranges::max_element(sleep_counts,
	                                     [](const auto& lhs, const auto& rhs) {
		                                     return lhs.second < rhs.second;
	                                     });

	cout << "Part 1: " << max_amount->first * (max_count->first % 100) << '\n';
}

void
part2(const vector<Record>& records)
{
	map<int, map<long, unsigned>> sleep_counts;

	for ( const auto& record: records ) {
		for ( auto timestamp = record.start_sleep; timestamp != record.stop_sleep; ++timestamp ) {
			sleep_counts[record.guard_id][timestamp % 10'000]++;
		}
	}

	int      found_guard = -1;
	long     found_min   = -1;
	unsigned max_count   = 0;
	for ( const auto& [id, times]: sleep_counts ) {
		for ( const auto& [min, count]: times ) {
			if ( count > max_count ) {
				max_count   = count;
				found_guard = id;
				found_min   = min % 100;
			}
		}
	}

	cout << "Part 2: " << found_guard * found_min << '\n';
}

} // namespace

int
main()
{
	auto records = read_file("data/day04.txt");
	part1(records);
	part2(records);
}