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6 Commits

Author SHA1 Message Date
Thraix 85f5de1be2 Add solution for 2016 Day 19 2026-08-31 22:21:13 +02:00
Thraix 8162a46091 Add solution for 2016 Day 18 2026-08-31 20:51:09 +02:00
Thraix ed11090cc2 Add solution for 2016 Day 17
- Fix Md5 algorithm
2026-08-30 22:52:01 +02:00
Thraix 7b2567a71e Add solution for 2016 Day 16 2026-08-27 21:41:22 +02:00
Thraix c669dedbb7 Move Helper functions into cpp file 2026-08-27 20:44:14 +02:00
Thraix 5111d633b7 Add solution for 2016 Day 15 2026-08-26 23:13:22 +02:00
13 changed files with 553 additions and 274 deletions
+3
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@@ -0,0 +1,3 @@
Disc #1 has 5 positions; at time=0, it is at position 4.
Disc #2 has 2 positions; at time=0, it is at position 1.
Disc #2 has 3 positions; at time=0, it is at position 2.
+1
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@@ -0,0 +1 @@
10000
+1
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@@ -0,0 +1 @@
ulqzkmiv
+1
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@@ -0,0 +1 @@
.^^.^.^^^^
+1
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@@ -0,0 +1 @@
5
+35 -8
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@@ -2,30 +2,57 @@
namespace y2016::day15
{
REGISTER_DAY(2016, Day15, std::vector<int>, int);
struct Disc
{
int positions;
int position;
};
REGISTER_TEST_EXAMPLE(2016, Day15, ExampleInput, 1, 0);
REGISTER_TEST(2016, Day15, Input, 1, 0);
REGISTER_TEST_EXAMPLE(2016, Day15, ExampleInput, 2, 0);
REGISTER_TEST(2016, Day15, Input, 2, 0);
REGISTER_DAY(2016, Day15, std::vector<Disc>, int64_t);
REGISTER_TEST_EXAMPLE(2016, Day15, ExampleInput, 1, 25);
REGISTER_TEST(2016, Day15, Input, 1, 400589);
REGISTER_TEST_EXAMPLE(2016, Day15, ExampleInput, 2, 205);
REGISTER_TEST(2016, Day15, Input, 2, 3045959);
READ_INPUT(input)
{
std::vector<int> vec;
std::vector<Disc> vec;
std::string str;
while (getline(input, str))
{
std::stringstream ss{str};
int i;
Disc disc;
ss >> "Disc #" >> i >> "has " >> disc.positions >> "positions; at time=" >> i >> ", it is at position " >>
disc.position;
vec.emplace_back(disc);
}
return vec;
}
int64_t Solve(const std::vector<Disc>& discs)
{
std::vector<int64_t> starts;
std::vector<int64_t> mods;
std::vector<int64_t> remainders(discs.size(), 0);
for (int j = 0; j < discs.size(); j++)
{
starts.emplace_back(discs[j].position + j + 1);
mods.emplace_back(discs[j].positions);
}
return Helper::ChineseRemainderTheorem(mods, remainders, starts);
}
OUTPUT1(input)
{
return 0;
return Solve(input);
}
OUTPUT2(input)
{
return 0;
auto discs = input;
discs.emplace_back(Disc{11, 0});
return Solve(discs);
}
}
+38 -11
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@@ -2,30 +2,57 @@
namespace y2016::day16
{
REGISTER_DAY(2016, Day16, std::vector<int>, int);
REGISTER_DAY(2016, Day16, std::string, std::string);
REGISTER_TEST_EXAMPLE(2016, Day16, ExampleInput, 1, 0);
REGISTER_TEST(2016, Day16, Input, 1, 0);
REGISTER_TEST_EXAMPLE(2016, Day16, ExampleInput, 2, 0);
REGISTER_TEST(2016, Day16, Input, 2, 0);
REGISTER_TEST_EXAMPLE(2016, Day16, ExampleInput, 1, "01100");
REGISTER_TEST(2016, Day16, Input, 1, "10100011010101011");
REGISTER_TEST(2016, Day16, Input, 2, "01010001101011001");
READ_INPUT(input)
{
std::vector<int> vec;
std::string str;
while (getline(input, str))
{
getline(input, str);
return str;
}
return vec;
std::string ReverseFlip(const std::string& str)
{
std::string reverse;
for (int i = str.size() - 1; i >= 0; i--)
{
reverse.push_back(str[i] == '1' ? '0' : '1');
}
return reverse;
}
std::string Solve(std::string str, int length)
{
while (str.size() < length)
{
str = str + "0" + ReverseFlip(str);
}
str = str.substr(0, length);
std::string checksum;
while (str.size() % 2 == 0)
{
for (int i = 0; i < str.size(); i += 2)
{
checksum.push_back(str[i] == str[i + 1] ? '1' : '0');
}
str = checksum;
checksum.clear();
}
return str;
}
OUTPUT1(input)
{
return 0;
return Solve(input, isExample ? 20 : 272);
}
OUTPUT2(input)
{
return 0;
return Solve(input, 35651584);
}
}
+64 -10
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@@ -2,30 +2,84 @@
namespace y2016::day17
{
REGISTER_DAY(2016, Day17, std::vector<int>, int);
REGISTER_DAY(2016, Day17, std::string, std::string);
REGISTER_TEST_EXAMPLE(2016, Day17, ExampleInput, 1, 0);
REGISTER_TEST(2016, Day17, Input, 1, 0);
REGISTER_TEST_EXAMPLE(2016, Day17, ExampleInput, 2, 0);
REGISTER_TEST(2016, Day17, Input, 2, 0);
REGISTER_TEST_EXAMPLE(2016, Day17, ExampleInput, 1, "DRURDRUDDLLDLUURRDULRLDUUDDDRR");
REGISTER_TEST(2016, Day17, Input, 1, "DUDDRLRRRD");
REGISTER_TEST_EXAMPLE(2016, Day17, ExampleInput, 2, "830");
REGISTER_TEST(2016, Day17, Input, 2, "578");
READ_INPUT(input)
{
std::vector<int> vec;
std::string str;
while (getline(input, str))
{
getline(input, str);
return str;
}
return vec;
struct State
{
std::string str{""};
int x{0};
int y{0};
};
bool IsOpen(char c)
{
return c >= 'b' && c <= 'f';
}
void Branch(const State& state, std::queue<State>& queue)
{
std::string hash = Md5::Hash(state.str);
if (state.y > 0 && IsOpen(hash[0]))
queue.emplace(State{state.str + "U", state.x, state.y - 1});
if (state.y < 3 && IsOpen(hash[1]))
queue.emplace(State{state.str + "D", state.x, state.y + 1});
if (state.x > 0 && IsOpen(hash[2]))
queue.emplace(State{state.str + "L", state.x - 1, state.y});
if (state.x < 3 && IsOpen(hash[3]))
queue.emplace(State{state.str + "R", state.x + 1, state.y});
}
bool IsGoal(const State& state)
{
return state.x == 3 && state.y == 3;
}
OUTPUT1(input)
{
return 0;
std::queue<State> queue;
queue.emplace(State{input, 0, 0});
while (!queue.empty())
{
State state = queue.front();
queue.pop();
if (IsGoal(state))
return state.str.substr(input.size());
Branch(state, queue);
}
return "";
}
OUTPUT2(input)
{
return 0;
std::queue<State> queue;
queue.emplace(State{input, 0, 0});
int longest = 0;
while (!queue.empty())
{
State state = queue.front();
queue.pop();
if (IsGoal(state))
{
longest = state.str.size() - input.size();
continue;
}
Branch(state, queue);
}
return std::to_string(longest);
}
}
+37 -11
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@@ -2,30 +2,56 @@
namespace y2016::day18
{
REGISTER_DAY(2016, Day18, std::vector<int>, int);
REGISTER_DAY(2016, Day18, std::string, int);
REGISTER_TEST_EXAMPLE(2016, Day18, ExampleInput, 1, 0);
REGISTER_TEST(2016, Day18, Input, 1, 0);
REGISTER_TEST_EXAMPLE(2016, Day18, ExampleInput, 2, 0);
REGISTER_TEST(2016, Day18, Input, 2, 0);
REGISTER_TEST_EXAMPLE(2016, Day18, ExampleInput, 1, 38);
REGISTER_TEST(2016, Day18, Input, 1, 1913);
REGISTER_TEST_EXAMPLE(2016, Day18, ExampleInput, 2, 1935478);
REGISTER_TEST(2016, Day18, Input, 2, 19993564);
READ_INPUT(input)
{
std::vector<int> vec;
std::string str;
while (getline(input, str))
{
getline(input, str);
return str;
}
return vec;
int Solve(const std::string& str, int rows)
{
int safes = std::count(str.begin(), str.end(), '.');
std::vector<char> row(str.size() + 2, false);
for (int i = 0; i < str.size(); i++)
row[i + 1] = str[i] == '^';
for (int i = 1; i < rows; i++)
{
std::vector<char> newRow(row.size(), false);
for (int j = 1; j < newRow.size() - 1; j++)
{
bool isTrap = false;
if (row[j - 1] && row[j] && !row[j + 1])
newRow[j] = true;
else if (!row[j - 1] && row[j] && row[j + 1])
newRow[j] = true;
else if (row[j - 1] && !row[j] && !row[j + 1])
newRow[j] = true;
else if (!row[j - 1] && !row[j] && row[j + 1])
newRow[j] = true;
else
safes++;
}
row = newRow;
}
return safes;
}
OUTPUT1(input)
{
return 0;
return Solve(input, isExample ? 10 : 40);
}
OUTPUT2(input)
{
return 0;
return Solve(input, 400000);
}
}
+51 -13
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@@ -2,30 +2,68 @@
namespace y2016::day19
{
REGISTER_DAY(2016, Day19, std::vector<int>, int);
REGISTER_DAY(2016, Day19, int, int);
REGISTER_TEST_EXAMPLE(2016, Day19, ExampleInput, 1, 0);
REGISTER_TEST(2016, Day19, Input, 1, 0);
REGISTER_TEST_EXAMPLE(2016, Day19, ExampleInput, 2, 0);
REGISTER_TEST(2016, Day19, Input, 2, 0);
REGISTER_TEST_EXAMPLE(2016, Day19, ExampleInput, 1, 3);
REGISTER_TEST(2016, Day19, Input, 1, 1842613);
REGISTER_TEST_EXAMPLE(2016, Day19, ExampleInput, 2, 2);
REGISTER_TEST(2016, Day19, Input, 2, 1424135);
READ_INPUT(input)
{
std::vector<int> vec;
std::string str;
while (getline(input, str))
{
}
return vec;
int i;
input >> i;
return i;
}
OUTPUT1(input)
{
return 0;
std::vector<int> elves(input, 0);
for (int i = 0; i < input; i++)
{
elves[i] = i + 1;
}
int offset = 0;
while (elves.size() > 1)
{
std::vector<int> newElves;
for (int i = offset; i < elves.size(); i += 2)
{
newElves.emplace_back(elves[i]);
}
offset = (offset + (elves.size() % 2)) % 2;
elves = newElves;
}
return elves[0];
}
OUTPUT2(input)
{
return 0;
std::deque<int> start;
std::deque<int> end;
for (int i = 0; i < input / 2; i++)
{
start.push_back(i + 1);
}
for (int i = input / 2; i < input; i++)
{
end.push_back(i + 1);
}
while (!start.empty())
{
end.pop_front();
end.push_back(start.front());
start.pop_front();
if (end.size() - start.size() == 2)
{
start.push_back(end.front());
end.pop_front();
}
}
return end.front();
}
}
+249
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@@ -0,0 +1,249 @@
#include "Helper.h"
#include <regex>
inline bool Helper::traceErrors = true;
Helper::ScopedTraceErrorDisabler::ScopedTraceErrorDisabler()
{
DisableTraceErrors();
}
Helper::ScopedTraceErrorDisabler::~ScopedTraceErrorDisabler()
{
ResetTraceErrors();
}
std::vector<std::string_view> Helper::Split(const std::string& str, const std::string& delim)
{
std::vector<std::string_view> split;
size_t pos = str.find(delim);
size_t lastPos = 0;
while (pos != std::string::npos)
{
split.emplace_back(std::string_view{str.c_str() + lastPos, pos - lastPos});
lastPos = pos + delim.size();
pos = str.find(delim, pos + delim.size());
}
split.emplace_back(std::string_view{str.c_str() + lastPos, str.size() - lastPos});
return split;
}
bool Helper::StartsWith(const std::string_view& str, const std::string& prefix, size_t offset)
{
return str.substr(offset, prefix.size()) == prefix;
}
bool Helper::EndsWith(const std::string_view& str, const std::string& prefix)
{
return str.substr(str.size() - prefix.size(), prefix.size()) == prefix;
}
void Helper::Replace(std::string& str, size_t size, const std::string& other, size_t pos)
{
str.replace(pos, size, other);
}
bool Helper::IsDigit(char c)
{
return c >= '0' && c <= '9';
}
int Helper::GetNumberOfDigits(int n)
{
assert(n > 0);
// clang-format off
if (n < 10) return 1;
if (n < 100) return 2;
if (n < 1'000) return 3;
if (n < 10'000) return 4;
if (n < 100'000) return 5;
if (n < 1'000'000) return 6;
if (n < 10'000'000) return 7;
if (n < 100'000'000) return 8;
if (n < 1'000'000'000) return 9;
// clang-format on
return 10;
}
int Helper::GetNumberOfDigits(int64_t n)
{
assert(n > 0);
// clang-format off
if (n < 10) return 1;
if (n < 100) return 2;
if (n < 1'000) return 3;
if (n < 10'000) return 4;
if (n < 100'000) return 5;
if (n < 1'000'000) return 6;
if (n < 10'000'000) return 7;
if (n < 100'000'000) return 8;
if (n < 1'000'000'000) return 9;
if (n < 10'000'000'000) return 10;
if (n < 100'000'000'000) return 11;
if (n < 1'000'000'000'000) return 12;
if (n < 10'000'000'000'000) return 13;
if (n < 100'000'000'000'000) return 14;
if (n < 1'000'000'000'000'000) return 15;
if (n < 10'000'000'000'000'000) return 16;
if (n < 100'000'000'000'000'000) return 17;
if (n < 1'000'000'000'000'000'000) return 18;
// clang-format on
return 19;
}
int64_t Helper::Pow10(int pow)
{
int64_t p = 10;
for (int i = 1; i < pow; i++)
{
p *= 10;
}
return p;
}
int Helper::BinStrToInt(const std::string& str)
{
if (str.size() >= 32)
{
std::cout << "BinStrToInt: Too big string, use BinStrToInt64 instead" << std::endl;
return 0;
}
int val = 0;
for (size_t i = 0; i < str.size(); i++)
{
if (str[i] == '1')
val |= (1 << (str.size() - i - 1));
}
return val;
}
int64_t Helper::BinStrToInt64(const std::string& str)
{
if (str.size() >= 64)
{
std::cout << "BinStrToInt64: Too big string" << std::endl;
return 0;
}
int64_t val = 0;
for (size_t i = 0; i < str.size(); i++)
{
if (str[i] == '1')
val |= (1ll << (str.size() - i - 1));
}
return val;
}
std::string Helper::Repeat(const std::string& str, int count)
{
std::string s;
for (int i = 0; i < count; i++)
{
s += str;
}
return s;
}
std::vector<std::string> Helper::GetAllRegexMatches(const std::string& str, const std::string& regex)
{
std::vector<std::string> matches;
std::regex reg{regex};
auto it = std::sregex_iterator(str.begin(), str.end(), reg);
auto end = std::sregex_iterator();
for (; it != end; it++)
{
matches.emplace_back(it->str());
}
return matches;
}
std::vector<Index2D> Helper::GetNeighborDirections()
{
return std::vector<Index2D>{Index2D{1, 0}, Index2D{0, 1}, Index2D{-1, 0}, Index2D{0, -1}};
}
Index2D Helper::GetDirection(char c)
{
if (c == 'v' || c == 'V')
return Index2D{0, 1};
if (c == '^')
return Index2D{0, -1};
if (c == '>')
return Index2D{1, 0};
if (c == '<')
return Index2D{-1, 0};
std::cerr << "GetDirection: Invalid char: " << c << std::endl;
return Index2D{-1, -1};
}
int64_t Helper::ChineseRemainderTheoremTwo(int64_t mod1, int64_t mod2, int64_t remainder1, int64_t remainder2)
{
int64_t i = remainder1;
while (true)
{
if (i % mod2 == remainder2)
return i;
i += mod1;
}
return 0;
}
int64_t Helper::ChineseRemainderTheorem(const std::vector<int64_t>& mods, const std::vector<int64_t>& remainders)
{
int64_t currentMod = mods.front();
int64_t currentRem = remainders.front();
for (int i = 1; i < mods.size(); i++)
{
int64_t result = ChineseRemainderTheoremTwo(currentMod, mods[i], currentRem, remainders[i]);
currentRem = result;
currentMod = currentMod * mods[i];
}
return currentRem;
}
int64_t Helper::ChineseRemainderTheorem(const std::vector<int64_t>& mods,
std::vector<int64_t> remainders,
const std::vector<int64_t>& starts)
{
for (int i = 0; i < mods.size(); i++)
{
remainders[i] = ((remainders[i] - starts[i]) % mods[i] + mods[i]) % mods[i];
}
return ChineseRemainderTheorem(mods, remainders);
}
uint64_t Helper::FastExponentiation(uint64_t start, uint64_t multiplication, uint64_t power, uint64_t mod)
{
while (power > 0)
{
if (power % 2 == 0)
{
multiplication = (multiplication * multiplication) % mod;
power /= 2;
}
else
{
start = (start * multiplication) % mod;
power--;
}
}
return start;
}
int64_t Helper::ManhattanDistance(const Index2D& from, const Index2D& to)
{
return std::abs(from.x - to.x) + std::abs(from.y - to.y);
}
void Helper::DisableTraceErrors()
{
traceErrors = false;
}
void Helper::ResetTraceErrors()
{
traceErrors = true;
}
+42 -221
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@@ -4,12 +4,12 @@
#include <algorithm>
#include <array>
#include <deque>
#include <functional>
#include <iostream>
#include <limits>
#include <map>
#include <numeric>
#include <regex>
#include <set>
#include <vector>
@@ -21,6 +21,9 @@
template <typename... Args>
static std::ostream& operator<<(std::ostream& stream, const std::vector<Args...>& container);
template <typename... Args>
static std::ostream& operator<<(std::ostream& stream, const std::deque<Args...>& container);
template <typename... Args>
static std::ostream& operator<<(std::ostream& stream, const std::set<Args...>& container);
@@ -34,15 +37,8 @@ struct Helper
{
struct ScopedTraceErrorDisabler
{
ScopedTraceErrorDisabler()
{
DisableTraceErrors();
}
~ScopedTraceErrorDisabler()
{
ResetTraceErrors();
}
ScopedTraceErrorDisabler();
~ScopedTraceErrorDisabler();
};
template <typename T, typename S>
@@ -51,129 +47,21 @@ struct Helper
t.erase(std::remove_if(t.begin(), t.end(), func), t.end());
}
static std::vector<std::string_view> Split(const std::string& str, const std::string& delim)
{
std::vector<std::string_view> split;
size_t pos = str.find(delim);
size_t lastPos = 0;
while (pos != std::string::npos)
{
split.emplace_back(std::string_view{str.c_str() + lastPos, pos - lastPos});
lastPos = pos + delim.size();
pos = str.find(delim, pos + delim.size());
}
split.emplace_back(std::string_view{str.c_str() + lastPos, str.size() - lastPos});
return split;
}
static std::vector<std::string_view> Split(const std::string& str, const std::string& delim);
static bool StartsWith(const std::string_view& str, const std::string& prefix, size_t offset = 0);
static bool EndsWith(const std::string_view& str, const std::string& prefix);
static void Replace(std::string& str, size_t size, const std::string& other, size_t pos);
static bool StartsWith(const std::string_view& str, const std::string& prefix, size_t offset = 0)
{
return str.substr(offset, prefix.size()) == prefix;
}
static bool EndsWith(const std::string_view& str, const std::string& prefix)
{
return str.substr(str.size() - prefix.size(), prefix.size()) == prefix;
}
static void Replace(std::string& str, size_t size, const std::string& other, size_t pos)
{
str.replace(pos, size, other);
}
static bool IsDigit(char c)
{
return c >= '0' && c <= '9';
}
static int GetNumberOfDigits(int n)
{
assert(n > 0);
// clang-format off
if (n < 10) return 1;
if (n < 100) return 2;
if (n < 1'000) return 3;
if (n < 10'000) return 4;
if (n < 100'000) return 5;
if (n < 1'000'000) return 6;
if (n < 10'000'000) return 7;
if (n < 100'000'000) return 8;
if (n < 1'000'000'000) return 9;
// clang-format on
return 10;
}
static int GetNumberOfDigits(int64_t n)
{
assert(n > 0);
// clang-format off
if (n < 10) return 1;
if (n < 100) return 2;
if (n < 1'000) return 3;
if (n < 10'000) return 4;
if (n < 100'000) return 5;
if (n < 1'000'000) return 6;
if (n < 10'000'000) return 7;
if (n < 100'000'000) return 8;
if (n < 1'000'000'000) return 9;
if (n < 10'000'000'000) return 10;
if (n < 100'000'000'000) return 11;
if (n < 1'000'000'000'000) return 12;
if (n < 10'000'000'000'000) return 13;
if (n < 100'000'000'000'000) return 14;
if (n < 1'000'000'000'000'000) return 15;
if (n < 10'000'000'000'000'000) return 16;
if (n < 100'000'000'000'000'000) return 17;
if (n < 1'000'000'000'000'000'000) return 18;
// clang-format on
return 19;
}
static int64_t Pow10(int pow)
{
int64_t p = 10;
for (int i = 1; i < pow; i++)
{
p *= 10;
}
return p;
}
static bool IsDigit(char c);
static int GetNumberOfDigits(int n);
static int GetNumberOfDigits(int64_t n);
static int64_t Pow10(int pow);
// Converts a binary string to an int32_t ie "10100111001" to 1337
static int BinStrToInt(const std::string& str)
{
if (str.size() >= 32)
{
std::cout << "BinStrToInt: Too big string, use BinStrToInt64 instead" << std::endl;
return 0;
}
int val = 0;
for (size_t i = 0; i < str.size(); i++)
{
if (str[i] == '1')
val |= (1 << (str.size() - i - 1));
}
return val;
}
static int BinStrToInt(const std::string& str);
// Converts a binary string to an int64_t ie "10100111001" to 1337
static int64_t BinStrToInt64(const std::string& str)
{
if (str.size() >= 64)
{
std::cout << "BinStrToInt64: Too big string" << std::endl;
return 0;
}
int64_t val = 0;
for (size_t i = 0; i < str.size(); i++)
{
if (str[i] == '1')
val |= (1ll << (str.size() - i - 1));
}
return val;
}
static int64_t BinStrToInt64(const std::string& str);
template <typename T, typename S>
static T Sum(const S& container)
@@ -544,15 +432,7 @@ struct Helper
return stream;
}
static std::string Repeat(const std::string& str, int count)
{
std::string s;
for (int i = 0; i < count; i++)
{
s += str;
}
return s;
}
static std::string Repeat(const std::string& str, int count);
template <typename T>
static std::vector<T> Repeat(const std::vector<T>& vec, int count)
@@ -568,81 +448,27 @@ struct Helper
return ret;
}
static std::vector<std::string> GetAllRegexMatches(const std::string& str, const std::string& regex)
{
std::vector<std::string> matches;
std::regex reg{regex};
auto it = std::sregex_iterator(str.begin(), str.end(), reg);
auto end = std::sregex_iterator();
for (; it != end; it++)
{
matches.emplace_back(it->str());
}
return matches;
}
static std::vector<std::string> GetAllRegexMatches(const std::string& str, const std::string& regex);
static std::vector<Index2D> GetNeighborDirections()
{
return std::vector<Index2D>{Index2D{1, 0}, Index2D{0, 1}, Index2D{-1, 0}, Index2D{0, -1}};
}
static std::vector<Index2D> GetNeighborDirections();
static Index2D GetDirection(char c);
static Index2D GetDirection(char c)
{
if (c == 'v' || c == 'V')
return Index2D{0, 1};
if (c == '^')
return Index2D{0, -1};
if (c == '>')
return Index2D{1, 0};
if (c == '<')
return Index2D{-1, 0};
std::cerr << "GetDirection: Invalid char: " << c << std::endl;
return Index2D{-1, -1};
}
// Solve for N:
// remainder1 = N % mod1
// remainder2 = N % mod2
static int64_t ChineseRemainderTheoremTwo(int64_t mod1, int64_t mod2, int64_t remainder1, int64_t remainder2);
static int64_t ChineseRemainderTheoremTwo(int64_t mod1, int64_t mod2, int64_t res1, int64_t res2)
{
int64_t i = res1;
while (true)
{
if (i % mod2 == res2)
return i;
// Solve for N:
// remainders = N % mods
static int64_t ChineseRemainderTheorem(const std::vector<int64_t>& mods, const std::vector<int64_t>& remainders);
i += mod1;
}
return 0;
}
// Solve for N:
// remainders = (start + N) % mods
static int64_t ChineseRemainderTheorem(const std::vector<int64_t>& mods,
std::vector<int64_t> remainders,
const std::vector<int64_t>& starts);
static int64_t ChineseRemainderTheorem(const std::vector<int64_t>& mods, const std::vector<int64_t>& results)
{
int64_t currentMod = mods.front();
int64_t currentRes = results.front();
for (int i = 1; i < mods.size(); i++)
{
int64_t result = ChineseRemainderTheoremTwo(currentMod, mods[i], currentRes, results[i]);
currentRes = result;
currentMod = currentMod * mods[i];
}
return currentRes;
}
static uint64_t FastExponentiation(uint64_t start, uint64_t multiplication, uint64_t power, uint64_t mod)
{
while (power > 0)
{
if (power % 2 == 0)
{
multiplication = (multiplication * multiplication) % mod;
power /= 2;
}
else
{
start = (start * multiplication) % mod;
power--;
}
}
return start;
}
static uint64_t FastExponentiation(uint64_t start, uint64_t multiplication, uint64_t power, uint64_t mod);
// Input - Puzzle input
// Function - bool(int64_t);
@@ -669,20 +495,11 @@ struct Helper
return BinarySearch(input, min, i - 1, func);
}
static int64_t ManhattanDistance(const Index2D& from, const Index2D& to)
{
return std::abs(from.x - to.x) + std::abs(from.y - to.y);
}
static int64_t ManhattanDistance(const Index2D& from, const Index2D& to);
static void DisableTraceErrors()
{
traceErrors = false;
}
static void DisableTraceErrors();
static void ResetTraceErrors()
{
traceErrors = true;
}
static void ResetTraceErrors();
private:
template <typename Key, typename Value, typename Compare, typename Eval>
@@ -745,14 +562,18 @@ public:
static bool traceErrors;
};
inline bool Helper::traceErrors = true;
template <typename... Args>
static std::ostream& operator<<(std::ostream& stream, const std::vector<Args...>& container)
{
return Helper::Print(stream, container);
}
template <typename... Args>
static std::ostream& operator<<(std::ostream& stream, const std::deque<Args...>& container)
{
return Helper::Print(stream, container);
}
template <typename... Args>
static std::ostream& operator<<(std::ostream& stream, const std::set<Args...>& container)
{
+31 -1
View File
@@ -5,6 +5,30 @@
#include <iomanip>
#include <iostream>
#undef AOC_MD5_TESTING
void PrintData(uint8_t* data)
{
for (int i = 0; i < 8; i++)
{
for (int j = 0; j < 8; j++)
{
std::cout << std::hex << std::setw(2) << std::setfill('0') << (int)data[i * 8 + j];
}
std::cout << " ";
for (int j = 0; j < 8; j++)
{
if (data[i * 8 + j] >= 32 && data[i * 8 + j] < 126)
std::cout << data[i * 8 + j];
else
std::cout << "?";
}
std::cout << std::endl;
}
std::cout << std::dec << std::endl;
}
uint32_t Md5::BytesToUint32(uint8_t* data)
{
return ((uint32_t)data[3] << 24) | ((uint32_t)data[2] << 16) | ((uint32_t)data[1] << 8) | (uint32_t)data[0];
@@ -17,6 +41,9 @@ uint32_t Md5::LeftRotate(uint32_t x, uint32_t n)
void Md5::Transform(uint8_t* data, uint32_t& a0, uint32_t& b0, uint32_t& c0, uint32_t& d0)
{
#ifdef AOC_MD5_TESTING
PrintData(data);
#endif
// clang-format off
const static std::array<uint32_t, 64> K
{
@@ -116,7 +143,10 @@ std::string Md5::Hash(std::string str)
uint64_t offset = 0;
for (int i = 0; i < loops - 1; i++)
{
Transform((uint8_t*)(str.c_str() + offset), a0, b0, c0, d0);
uint8_t data[64];
std::memset(data, 0x0, 64);
std::memcpy(data, str.c_str() + offset, std::min<int>(str.size() - offset, 64));
Transform(data, a0, b0, c0, d0);
offset += 64;
}