#include "app.hpp" #include "src/world.hpp" #include "src/tile-atlas.hpp" #include "main/clickable.hpp" #include "floormat/events.hpp" #include "floormat/main.hpp" namespace floormat { //#define FM_NO_BINDINGS void app::maybe_initialize_chunk_(const chunk_coords& pos, chunk& c) { (void)pos; (void)c; constexpr auto N = TILE_MAX_DIM; for (auto [x, k, pt] : c) { #if defined FM_NO_BINDINGS const auto& atlas = floor1; #else const auto& atlas = pt.x == N/2 || pt.y == N/2 ? _floor2 : _floor1; #endif x.ground() = { atlas, variant_t(k % atlas->num_tiles()) }; } #ifdef FM_NO_BINDINGS const auto& wall1 = floor1, wall2 = floor1; #endif constexpr auto K = N/2; c[{K, K }].wall_north() = { _wall1, 0 }; c[{K, K }].wall_west() = { _wall2, 0 }; c[{K, K+1}].wall_north() = { _wall1, 0 }; c[{K+1, K }].wall_west() = { _wall2, 0 }; c[{K+3, K+1}].scenery() = { scenery::door, rotation::N, _door, false }; c.mark_modified(); } void app::maybe_initialize_chunk([[maybe_unused]] const chunk_coords& pos, [[maybe_unused]] chunk& c) { //maybe_initialize_chunk_(pos, c); } void app::do_mouse_move(int mods) { if (cursor.tile && !cursor.in_imgui) _editor.on_mouse_move(M->world(), *cursor.tile, mods); } void app::do_mouse_up_down(std::uint8_t button, bool is_down, int mods) { update_cursor_tile(cursor.pixel); if (!_editor.current_tile_editor()) { if (cursor.tile) if (auto* s = find_clickable_scenery(*cursor.pixel)) s->item.activate(s->atlas); } else if (cursor.tile && !cursor.in_imgui && is_down) { auto& w = M->world(); auto pos = *cursor.tile; switch (button) { case mouse_button_left: return _editor.on_click(w, pos, mods, editor::button::place); case mouse_button_middle: return _editor.on_click(w, pos, mods, editor::button::remove); default: break; } } _editor.on_release(); } void app::do_key(key k, int mods) { (void)mods; switch (k) { default: fm_warn("unhandled key: '%zu'", std::size_t(k)); return; case key_rotate_tile: if (auto* ed = _editor.current_tile_editor(); ed) ed->toggle_rotation(); return; case key_mode_none: return _editor.set_mode(editor_mode::none); case key_mode_floor: return _editor.set_mode(editor_mode::floor); case key_mode_walls: return _editor.set_mode(editor_mode::walls); case key_quicksave: return do_quicksave(); case key_quickload: return do_quickload(); case key_quit: return M->quit(0); } } void app::apply_commands(const key_set& keys) { using value_type = key_set::value_type; for (value_type i = key_NO_REPEAT; i < key_COUNT; i++) if (const auto k = key(i); keys[k]) do_key(k, key_modifiers[i]); } void app::update_world(float dt) { auto& world = M->world(); auto [minx, maxx, miny, maxy] = M->get_draw_bounds(); minx--; miny--; maxx++; maxy++; for (std::int16_t y = miny; y <= maxy; y++) for (std::int16_t x = minx; x <= maxx; x++) for (chunk_coords c{x, y}; auto [x, k, pt] : world[c]) if (auto [atlas, scenery] = x.scenery(); atlas != nullptr) scenery.update(dt, *atlas); } void app::update(float dt) { update_world(dt); apply_commands(keys); do_camera(dt, keys, get_key_modifiers()); clear_non_repeated_keys(); if (!_editor.current_tile_editor() && cursor.tile && find_clickable_scenery(*cursor.pixel)) M->set_cursor(std::uint32_t(Cursor::Hand)); else M->set_cursor(std::uint32_t(Cursor::Arrow)); } } // namespace floormat