#ifndef INCLUDED_C_BORUVKAMST_H #define INCLUDED_C_BORUVKAMST_H #ifndef INCLUDED_C_EDGEWEIGHTEDGRAPH_H #include #endif /*INCLUDED_C_EDGEWEIGHTEDGRAPH_H*/ #ifndef INCLUDED_C_VERTEXIDLIST_H #include #endif /*INCLUDED_C_VERTEXIDLIST_H*/ /* ------------------------------------------------------------------------------------------------------------------ */ /* */ typedef struct { c_VertexIdList_t mst_edges; /* Final optimized list of edge_ids inside the tree */ double weight; /* Total minimum weight summation of the MST */ c_Allocator_t allocator; /* Deep copy of the user-provided allocator */ } c_BoruvkaMST_t; /* ------------------------------------------------------------------------------------------------------------------ */ /* */ /** * @brief Computes a minimum spanning tree of an edge-weighted graph using Boruvka's algorithm. * @param allocator Explicit allocator context used to configure internal tracking state memory */ c_err_t c_BoruvkaMST_Init(c_BoruvkaMST_t* self, c_EdgeWeightedGraph_t* graph, c_Allocator_t* allocator); /** * @brief Releases internal tracking buffers */ void c_BoruvkaMST_Destroy(c_BoruvkaMST_t* self); /** * @brief Gets a copy of the edge ids included in the Minimum Spanning Tree. */ c_err_t c_BoruvkaMST_GetEdges(c_BoruvkaMST_t* self, c_VertexIdList_t* out_edges); /** * @brief Returns the total weight summation of the MST. */ C_STATIC_FORCE_INLINE double c_BoruvkaMST_Weight(c_BoruvkaMST_t* self) { return self ? self->weight : 0.0; } #endif /*INCLUDED_C_BORUVKAMST_H*/