forked from Bananymous/banan-os
192 lines
3.8 KiB
C++
192 lines
3.8 KiB
C++
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#include <BAN/HashSet.h>
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#include <BAN/Sort.h>
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#include <BAN/Vector.h>
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#include <ctype.h>
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#include <inttypes.h>
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#include <stdio.h>
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using i8 = int8_t;
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using i16 = int16_t;
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using i32 = int32_t;
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using i64 = int64_t;
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using u8 = uint8_t;
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using u16 = uint16_t;
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using u32 = uint32_t;
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using u64 = uint64_t;
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struct Position
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{
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i64 x, y, z;
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bool operator==(const Position& other) const
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{
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return x == other.x && y == other.y && z == other.z;
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}
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};
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static constexpr bool rectangle_contains(const Position& c1, const Position& c2, const Position& p)
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{
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ASSERT(c1.x <= c2.x);
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ASSERT(c1.y <= c2.y);
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return (c1.x <= p.x && p.x <= c2.x) && (c1.y <= p.y && p.y <= c2.y);
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}
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struct Brick
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{
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Position corners[2];
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BAN::HashSet<Brick*> supporting;
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BAN::HashSet<Brick*> supported_by;
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bool supports(const Brick& other) const
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{
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if (corners[1].z + 1 != other.corners[0].z)
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return false;
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for (i32 i = 0; i < 4; i++)
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if (rectangle_contains(corners[0], corners[1], { other.corners[i / 2].x, other.corners[i % 2].y, 0 }))
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return true;
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for (i32 i = 0; i < 4; i++)
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if (rectangle_contains(other.corners[0], other.corners[1], { corners[i / 2].x, corners[i % 2].y, 0 }))
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return true;
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return false;
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}
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};
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i64 parse_i64(BAN::StringView str)
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{
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i64 result = 0;
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for (char c : str)
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{
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ASSERT(isdigit(c));
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result = (result * 10) + (c - '0');
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}
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return result;
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}
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BAN::Vector<Brick> parse_bricks(FILE* fp)
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{
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BAN::Vector<Brick> bricks;
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char buffer[64];
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while (fgets(buffer, sizeof(buffer), fp))
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{
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BAN::StringView line(buffer);
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ASSERT(line.back() == '\n');
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line = line.substring(0, line.size() - 1);
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if (line.empty())
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break;
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auto corner_strs = MUST(line.split('~'));
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ASSERT(corner_strs.size() == 2);
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Brick brick;
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for (i32 i = 0; i < 2; i++)
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{
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auto coords = MUST(corner_strs[i].split(','));
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ASSERT(coords.size() == 3);
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brick.corners[i].x = parse_i64(coords[0]);
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brick.corners[i].y = parse_i64(coords[1]);
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brick.corners[i].z = parse_i64(coords[2]);
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}
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ASSERT(brick.corners[0].x <= brick.corners[1].x);
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ASSERT(brick.corners[0].y <= brick.corners[1].y);
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ASSERT(brick.corners[0].z <= brick.corners[1].z);
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MUST(bricks.push_back(brick));
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}
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return bricks;
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}
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i64 puzzle1(FILE* fp)
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{
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auto brick_comp = [](const Brick& b1, const Brick& b2) { return b1.corners[0].z < b2.corners[0].z; };
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auto bricks = parse_bricks(fp);
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BAN::sort::sort(bricks.begin(), bricks.end(), brick_comp);
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// Simulate brick falling
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for (size_t i = 0; i < bricks.size();)
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{
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bool can_fall = bricks[i].corners[0].z > 1;
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for (size_t j = 0; j < i && can_fall; j++)
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if (bricks[j].supports(bricks[i]))
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can_fall = false;
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if (!can_fall)
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i++;
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else
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{
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bricks[i].corners[0].z--;
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bricks[i].corners[1].z--;
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for (; i > 0; i--)
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{
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if (brick_comp(bricks[i - 1], bricks[i]))
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break;
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BAN::swap(bricks[i - 1], bricks[i]);
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}
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}
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}
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// Store brick supporting structures
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for (size_t i = 0; i < bricks.size(); i++)
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{
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for (size_t j = 0; j < bricks.size(); j++)
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{
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if (i == j)
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continue;
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if (bricks[i].supports(bricks[j]))
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{
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MUST(bricks[i].supporting.insert(&bricks[j]));
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MUST(bricks[j].supported_by.insert(&bricks[i]));
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}
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}
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}
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i64 result = 0;
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for (const auto& brick : bricks)
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{
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bool disintegratable = true;
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for (const auto* support : brick.supporting)
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if (support->supported_by.size() <= 1)
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disintegratable = false;
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result += disintegratable;
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}
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// OFF BY 7
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return result;
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}
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i64 puzzle2(FILE* fp)
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{
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(void)fp;
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return -1;
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}
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int main(int argc, char** argv)
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{
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const char* file_path = "/usr/share/aoc2023/day22_input.txt";
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if (argc >= 2)
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file_path = argv[1];
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FILE* fp = fopen(file_path, "r");
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if (fp == nullptr)
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{
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perror("fopen");
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return 1;
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}
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printf("puzzle1: %" PRId64 "\n", puzzle1(fp));
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fseek(fp, 0, SEEK_SET);
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printf("puzzle2: %" PRId64 "\n", puzzle2(fp));
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fclose(fp);
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}
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