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@ -406,34 +406,43 @@ INTERNAL void test_generate_walls(struct sim_snapshot *world)
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struct temp_arena scratch = scratch_begin_no_conflict();
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struct sim_ent *root = sim_ent_from_id(world, SIM_ENT_ROOT_ID);
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/* Release existing walls */
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for (u64 ent_index = 0; ent_index < world->num_ents_reserved; ++ent_index) {
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struct sim_ent *ent = &world->ents[ent_index];
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if (!ent->valid) continue;
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if (sim_ent_has_prop(ent, SEPROP_WALL)) {
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sim_ent_enable_prop(ent, SEPROP_RELEASE);
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}
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}
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/* Sort tile chunks */
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/* NOTE: We sort tile chunks from left-right and top-bottom so that cross
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* chunk tile checks only have to happen in one direction (because we
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* know the left & top chunks have already been processed) */
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struct sim_ent **x_sorted_tile_chunks = arena_dry_push(scratch.arena, struct sim_ent *);
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/* Gather tile chunks and release existing walls.
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* NOTE: We sort tile chunks before iterating so that chunk-edge tiles only
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* need to check for adjacent walls to merge with in one direction */
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struct sim_ent **x_sorted_tile_chunks = NULL;
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struct sim_ent **y_sorted_tile_chunks = NULL;
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u64 sorted_tile_chunks_count = 0;
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for (u64 ent_index = 0; ent_index < world->num_ents_reserved; ++ent_index) {
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struct sim_ent *ent = &world->ents[ent_index];
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if (!ent->valid) continue;
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if (sim_ent_has_prop(ent, SEPROP_TILE_CHUNK)) {
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*arena_push_no_zero(scratch.arena, struct sim_ent *) = ent;
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++sorted_tile_chunks_count;
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{
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/* NOTE: We sort x & y separately because of the possibility for diagonal
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* tile chunks to depend on each other.
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*
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* For example: In a horizontal iteration, if 2 chunks exist diagonally
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* with one to the bottom-left and one to the top-right and the top-right
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* chunk has no chunk below it, then the processing of the top-right chunk
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* will have to iterate an extra row at the bottom to create bottom walls (since
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* walls are created at the tops of tiles). When creating a wall at the bottom-left
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* tile of the top-right chunk, it needs to know whether any walls exist at
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* the left of that tile that it may need to merge with. If it was iterating
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* an array sorted with top-bottom priority, then the bottom-left chunk will not
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* have been processed yet, meaning no walls will have been generated to merge with. */
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x_sorted_tile_chunks = arena_dry_push(scratch.arena, struct sim_ent *);
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for (u64 ent_index = 0; ent_index < world->num_ents_reserved; ++ent_index) {
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struct sim_ent *ent = &world->ents[ent_index];
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if (!ent->valid) continue;
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if (sim_ent_has_prop(ent, SEPROP_TILE_CHUNK)) {
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/* Append chunk to array */
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*arena_push_no_zero(scratch.arena, struct sim_ent *) = ent;
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++sorted_tile_chunks_count;
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} else if (sim_ent_has_prop(ent, SEPROP_WALL)) {
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sim_ent_enable_prop(ent, SEPROP_RELEASE);
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}
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}
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}
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struct sim_ent **y_sorted_tile_chunks = arena_push_array_no_zero(scratch.arena, struct sim_ent *, sorted_tile_chunks_count);
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MEMCPY(y_sorted_tile_chunks, x_sorted_tile_chunks, sizeof(*x_sorted_tile_chunks) * sorted_tile_chunks_count);
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y_sorted_tile_chunks = arena_push_array_no_zero(scratch.arena, struct sim_ent *, sorted_tile_chunks_count);
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MEMCPY(y_sorted_tile_chunks, x_sorted_tile_chunks, sizeof(*x_sorted_tile_chunks) * sorted_tile_chunks_count);
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merge_sort(x_sorted_tile_chunks, sorted_tile_chunks_count, sizeof(*x_sorted_tile_chunks), tile_chunk_sort_x, NULL);
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merge_sort(y_sorted_tile_chunks, sorted_tile_chunks_count, sizeof(*y_sorted_tile_chunks), tile_chunk_sort_y, NULL);
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merge_sort(x_sorted_tile_chunks, sorted_tile_chunks_count, sizeof(*x_sorted_tile_chunks), tile_chunk_sort_x, NULL);
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merge_sort(y_sorted_tile_chunks, sorted_tile_chunks_count, sizeof(*y_sorted_tile_chunks), tile_chunk_sort_y, NULL);
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}
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struct wall_node {
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struct v2i32 start;
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@ -443,7 +452,7 @@ INTERNAL void test_generate_walls(struct sim_snapshot *world)
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};
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/* Dicts containing walls that end on edge of tile chunk, keyed by tile end index.
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* Used to expand walls accross tile chunks. */
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* Used to merge walls accross tile chunks. */
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struct dict horizontal_ends_dict = dict_init(scratch.arena, 1024);
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struct dict vertical_ends_dict = dict_init(scratch.arena, 1024);
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