some more upgrades. not exactly what I expected, but its fun.
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@@ -11,8 +11,8 @@
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#include "../util/timing_decorator.cpp"
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struct AnimationConfig {
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int width = 128;
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int height = 128;
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int width = 256;
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int height = 256;
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int totalFrames = 480;
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float fps = 30.0f;
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int numSeeds = 8;
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@@ -66,33 +66,53 @@ std::vector<std::tuple<size_t, Vec2, Vec4>> pickSeeds(Grid2 grid, AnimationConfi
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return seeds;
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}
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void expandPixel(Grid2& grid, AnimationConfig config, std::vector<std::tuple<size_t, Vec2, Vec4>>& seeds, std::unordered_set<size_t>& visited) {
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void expandPixel(Grid2& grid, AnimationConfig config, std::vector<std::tuple<size_t, Vec2, Vec4>>& seeds) {
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TIME_FUNCTION;
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std::vector<std::tuple<size_t, Vec2, Vec4>> newseeds;
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std::unordered_set<size_t> visitedThisFrame;
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for (const auto& seed : seeds) {
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visitedThisFrame.insert(std::get<0>(seed));
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}
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for (const std::tuple<size_t, Vec2, Vec4>& seed : seeds) {
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size_t id = std::get<0>(seed);
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Vec2 seedPOS = std::get<1>(seed);
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Vec4 seedColor = std::get<2>(seed);
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std::vector<size_t> neighbors = grid.getNeighbors(id);
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for (size_t neighbor : neighbors) {
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if (visited.find(neighbor) != visited.end()) {
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continue; // Skip already processed neighbors
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if (visitedThisFrame.count(neighbor)) {
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continue;
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}
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visited.insert(neighbor);
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visitedThisFrame.insert(neighbor);
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Vec2 neipos = grid.getPositionID(neighbor);
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Vec4 neighborColor = grid.getColor(neighbor);
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float distance = seedPOS.distance(neipos);
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float angle = seedPOS.angleTo(neipos);
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Vec4 newcolor = Vec4(neighborColor.r * ((1.1f + angle) * std::sin(seedColor.r)),
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neighborColor.g * ((1.1f + angle) * std::sin(seedColor.g)),
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neighborColor.b * ((1.1f + angle) * std::sin(seedColor.b)),
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float angle = seedPOS.directionTo(neipos);
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float normalizedAngle = (angle + M_PI) / (2.0f * M_PI);
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float blendFactor = 0.3f + 0.4f * std::sin(normalizedAngle * 2.0f * M_PI);
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blendFactor = std::clamp(blendFactor, 0.1f, 0.9f);
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Vec4 newcolor = Vec4(
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seedColor.r * blendFactor + neighborColor.r * (1.0f - blendFactor),
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seedColor.g * (1.0f - blendFactor) + neighborColor.g * blendFactor,
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seedColor.b * (0.5f + 0.5f * std::sin(normalizedAngle * 4.0f * M_PI)),
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1.0f
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);
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newcolor = newcolor.clamp(0.0f, 1.0f);
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grid.setColor(neighbor, newcolor);
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newseeds.push_back({neighbor, neipos,newcolor});
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newseeds.emplace_back(neighbor, neipos, newcolor);
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}
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}
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seeds = newseeds;
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seeds.clear();
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seeds = std::move(newseeds);
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}
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bool exportavi(std::vector<std::vector<uint8_t>> frames, AnimationConfig config) {
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@@ -134,12 +154,9 @@ int main() {
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std::vector<std::tuple<size_t, Vec2, Vec4>> seeds = pickSeeds(grid,config);
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std::vector<std::vector<uint8_t>> frames;
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//memory aid
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std::unordered_set<size_t> visited;
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for (int i = 0; i < config.totalFrames; ++i){
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std::cout << "Processing frame " << i + 1 << "/" << config.totalFrames << std::endl;
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expandPixel(grid,config,seeds, visited);
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expandPixel(grid,config,seeds);
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int width;
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int height;
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std::vector<uint8_t> frame;
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@@ -33,6 +33,10 @@ public:
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return *this;
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}
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Vec4 average(const Vec4& other) const {
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return Vec4((x+other.x)/2,(y+other.y)/2,(z+other.z)/2,(w+other.w)/2);
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}
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Vec4 operator+(const Vec4& other) const {
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return Vec4(x + other.x, y + other.y, z + other.z, w + other.w);
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}
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