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wip/new-sy
Author | SHA1 | Date |
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copygirl | 1dda16fa01 | 7 months ago |
7 changed files with 392 additions and 91 deletions
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const std = @import("std"); |
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const os_api = @import("./os_api.zig"); |
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const c = @import("./c.zig"); |
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const errors = @import("./errors.zig"); |
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const meta = @import("./meta.zig"); |
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const EntityError = @import("./entity.zig").EntityError; |
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const flecszigble = @import("./main.zig"); |
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const flecs = @import("./builtin/flecs.zig"); |
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const DependsOn = flecs.core.DependsOn; |
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const OnUpdate = flecs.pipeline.OnUpdate; |
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pub fn System(comptime ctx: anytype) type { |
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return struct { |
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const Context = @import("./context.zig").Context(ctx); |
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const World = Context.World; |
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const Entity = Context.Entity; |
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const Iter = Context.Iter; |
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/// Registers a system with the `World`, that is associated with a |
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/// specific query matching certain entities, calling a function for |
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/// said matched entities. |
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/// |
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/// Returns the `Entity` of the newly created system. |
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/// |
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/// Example: |
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/// ``` |
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/// const PositionUpdate = struct { |
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/// // The name of the system and resulting entity. |
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/// // (Optional for pre-defined, named structs.) |
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/// pub const name = "PositionUpdate"; |
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/// // When to invoke the system. (Defaults to `OnUpdate`) |
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/// pub const phase = flecs.pipeline.OnUpdate; |
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/// // Query expression. (Required) |
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/// pub const expr = "[inout] Position, [in] Velocity"; |
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/// |
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/// // Callback invoked for every matched archtable. (Required) |
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/// pub fn callback(it: Iter) void { |
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/// const pos_col = it.field(Position, 1); |
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/// const vel_col = it.field(Velocity, 2); |
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/// |
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/// // We know the columns to be the same |
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/// // size, we can iterate them together. |
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/// for (pos_col, vel_col) |*pos, vel| { |
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/// pos.x += vel.x; |
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/// pos.y += vel.y; |
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/// } |
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/// } |
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/// }; |
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/// |
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/// world.system(PositionUpdate) |
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/// // or |
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/// world.system(.{ |
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/// .name = "PositionUpdate", |
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/// .phase = flecs.pipeline.OnUpdate, |
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/// .expr = "[inout] Position, [in] Velocity", |
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/// .callback = PositionUpdate.callback, |
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/// }) |
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/// ``` |
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pub fn init(world: *World, config: anytype) !Entity { |
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// TODO: const isComponent = @typeInfo(T).Struct.fields.len > 0; |
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const name: [:0]const u8 = if (@TypeOf(config) == type) meta.flecsTypeName(config) else @field(config, "name"); |
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const expr: ?[:0]const u8 = fieldOr(config, "expr", null); |
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// If `phase` is not specified, it defaults to `OnUpdate`. |
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// If a literal `null` is specified, no phase is added to the system. |
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const phase = fieldOr(config, "phase", OnUpdate); |
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const entity = try world.entity( |
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.{ .name = name }, |
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if (@TypeOf(phase) == @TypeOf(null)) .{} else blk: { |
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const phase_entity = Context.anyToEntity(phase); |
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if (phase_entity == 0) return EntityError.IsNotAlive; |
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break :blk .{ .{ DependsOn, phase_entity }, phase_entity }; |
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}, |
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); |
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const isEach = !has(config, "callback") and has(config, "each"); |
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const callback = @field(config, if (isEach) "each" else "callback"); |
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const return_type = @typeInfo(@typeInfo(@TypeOf(callback)).Fn.return_type.?); |
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const returns_error = switch (return_type) { |
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.Void => false, |
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.ErrorUnion => |e| if (e.payload == void) true else @compileError("Function return must be 'void' or '!void'"), |
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else => @compileError("Function return must be 'void' or '!void'"), |
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}; |
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const SystemCallback = struct { |
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// FIXME: Dependency loop. |
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// Currently needs manual changing of the generated C code. |
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// fn invoke(it: ?*c.ecs_iter_t) callconv(.C) void { |
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fn invoke(any_it: *anyopaque) callconv(.C) void { |
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const ecs_iter: ?*c.ecs_iter_t = @alignCast(@ptrCast(any_it)); |
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const world_: *World = @alignCast(@ptrCast(ecs_iter.?.binding_ctx)); |
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const it = Iter.fromRawPtr(world_, ecs_iter.?); |
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const Args = std.meta.ArgsTuple(@TypeOf(callback)); |
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var args: Args = undefined; |
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comptime var field_index = 0; |
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inline for (std.meta.fields(Args), 0..) |field, i| |
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switch (field.type) { |
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Iter => args[i] = it, |
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*World => args[i] = it.world, |
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f32 => args[i] = it.deltaTime(), |
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Entity => if (comptime !isEach) |
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@compileError("Entitiy variables only supported with 'each'"), |
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else => { |
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field_index += 1; |
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switch (@typeInfo(field.type)) { |
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.Struct => if (comptime !isEach) { |
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args[i] = it.field(field.type, field_index)[0]; |
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}, |
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.Pointer => |p| if (comptime !isEach) { |
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switch (comptime p.size) { |
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.One => args[i] = &it.field(p.child, field_index)[0], |
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.Slice => args[i] = it.field(p.child, field_index), |
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else => {}, |
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} |
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} else if (comptime p.size == .One and p.is_const == true and @typeInfo(p.child) == .Pointer) { |
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const pInner = @typeInfo(p.child).Pointer; |
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if (pInner.size == .One) |
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args[i] = &it.field(pInner.child, field_index)[0] |
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else |
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@compileError("Unsupported type '" ++ @typeName(field.type) ++ "'"); |
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} else @compileError("Unsupported type '" ++ @typeName(field.type) ++ "'"), |
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else => @compileError("Unsupported type '" ++ @typeName(field.type) ++ "'"), |
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} |
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}, |
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}; |
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// if (comptime std.mem.eql(u8, field.name, "this")) |
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// it.entity() |
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// else |
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// @compileError("Entity variables other than 'this' not supported yet"), |
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if (comptime isEach) { |
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for (0..count) |i| { |
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const err = @call(.auto, callback, args); |
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if (comptime returns_error) err catch |e| handleError(it, e); |
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} |
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} else { |
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const err = @call(.auto, callback, args); |
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if (comptime returns_error) err catch |e| handleError(it, e); |
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} |
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} |
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}; |
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const result = c.ecs_system_init(world.raw, &.{ |
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.entity = entity.raw, |
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.binding_ctx = world, |
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.callback = SystemCallback.invoke, |
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.query = .{ .filter = .{ .expr = if (expr) |e| e else null } }, |
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}); |
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if (result == 0) return errors.getLastErrorOrUnknown(); |
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if (comptime has(config, "interval")) |
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_ = c.ecs_set_interval(world.raw, result, @field(config, "interval")); |
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return Entity.fromRaw(world, result); |
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} |
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inline fn handleFields(args: anytype, it: Iter, comptime isEach: bool) void { |
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comptime var field_index = 0; |
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inline for (std.meta.fields(@TypeOf(args)), 0..) |field, i| |
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switch (field.type) { |
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Iter => if (comptime !isEach) { |
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args[i] = it; |
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}, |
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*World => args[i] = it.world, |
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f32 => args[i] = it.deltaTime(), |
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Entity => if (comptime !isEach) |
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@compileError("Entitiy variables only supported with 'each'"), |
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else => { |
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field_index += 1; |
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switch (@typeInfo(field.type)) { |
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.Struct => if (comptime !isEach) { |
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args[i] = it.field(field.type, field_index)[0]; |
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}, |
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.Pointer => |p| if (comptime !isEach) { |
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switch (comptime p.size) { |
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.One => args[i] = &it.field(p.child, field_index)[0], |
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.Slice => args[i] = it.field(p.child, field_index), |
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else => {}, |
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} |
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} else if (comptime p.size == .One and p.is_const == true and @typeInfo(p.child) == .Pointer) { |
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const pInner = @typeInfo(p.child).Pointer; |
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if (pInner.size == .One) |
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args[i] = &it.field(pInner.child, field_index)[0] |
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else |
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@compileError("Unsupported type '" ++ @typeName(field.type) ++ "'"); |
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} else @compileError("Unsupported type '" ++ @typeName(field.type) ++ "'"), |
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else => @compileError("Unsupported type '" ++ @typeName(field.type) ++ "'"), |
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} |
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}, |
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}; |
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} |
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/// Called when a Zig error is returned from a system's callback function. |
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fn handleError(it: Iter, err: anyerror) void { |
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const system_name = if (it.system()) |s| s.name() orelse "<unknown>" else "<unknown>"; |
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std.debug.print("Error in system '{s}': {}\n", .{ system_name, err }); |
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} |
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}; |
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} |
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fn has(container: anytype, comptime name: []const u8) bool { |
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return comptime switch (@typeInfo(@TypeOf(container))) { |
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.Type => @hasDecl(container, name), |
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.Struct => @hasField(@TypeOf(container), name), |
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else => @compileError("Expected type or struct"), |
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}; |
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} |
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fn fieldOr( |
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container: anytype, |
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comptime name: []const u8, |
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comptime default: anytype, |
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) @TypeOf(if (comptime has(container, name)) @field(container, name) else default) { |
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return if (comptime has(container, name)) @field(container, name) else default; |
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} |
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const expect = @import("./test/expect.zig"); |
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test "System with struct type" { |
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flecszigble.init(std.testing.allocator); |
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var world = try flecszigble.World(void).init(); |
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defer world.deinit(); |
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const Position = struct { x: i32, y: i32 }; |
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const Velocity = struct { x: i32, y: i32 }; |
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_ = try world.component(Position); |
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_ = try world.component(Velocity); |
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const entity = try world.entity(.{}, .{ Position, Velocity }); |
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entity.set(Position, .{ .x = 10, .y = 20 }); |
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entity.set(Velocity, .{ .x = 1, .y = 2 }); |
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const PositionUpdate = struct { |
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pub const expr = "[inout] Position, [in] Velocity"; |
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pub fn callback(pos_col: []Position, vel_col: []Velocity) void { |
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for (pos_col, vel_col) |*pos, vel| { |
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pos.x += vel.x; |
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pos.y += vel.y; |
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} |
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} |
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}; |
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const system = try world.system(PositionUpdate); |
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try expect.equal("PositionUpdate", system.name()); |
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// TODO: Test more things. |
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try expect.equal(.{ .x = 10, .y = 20 }, entity.get(Position)); |
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_ = world.progress(0.0); |
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try expect.equal(.{ .x = 11, .y = 22 }, entity.get(Position)); |
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_ = world.progress(0.0); |
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try expect.equal(.{ .x = 12, .y = 24 }, entity.get(Position)); |
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} |
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test "System with anonymous struct" { |
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flecszigble.init(std.testing.allocator); |
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var world = try flecszigble.World(void).init(); |
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defer world.deinit(); |
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const Position = struct { x: i32, y: i32 }; |
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const Velocity = struct { x: i32, y: i32 }; |
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_ = try world.component(Position); |
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_ = try world.component(Velocity); |
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const entity = try world.entity(.{}, .{ Position, Velocity }); |
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entity.set(Position, .{ .x = 10, .y = 20 }); |
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entity.set(Velocity, .{ .x = 1, .y = 2 }); |
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const positionUpdateFn = struct { |
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fn callback(pos_col: []Position, vel_col: []Velocity) void { |
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for (pos_col, vel_col) |*pos, vel| { |
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pos.x += vel.x; |
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pos.y += vel.y; |
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} |
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} |
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}.callback; |
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const system = try world.system(.{ |
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.name = "PositionUpdate", |
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.expr = "[inout] Position, [in] Velocity", |
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.callback = positionUpdateFn, |
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}); |
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try expect.equal("PositionUpdate", system.name()); |
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// TODO: Test more things. |
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try expect.equal(.{ .x = 10, .y = 20 }, entity.get(Position)); |
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_ = world.progress(0.0); |
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try expect.equal(.{ .x = 11, .y = 22 }, entity.get(Position)); |
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_ = world.progress(0.0); |
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try expect.equal(.{ .x = 12, .y = 24 }, entity.get(Position)); |
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} |
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test "System built-in parameters" { |
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const World = flecszigble.World(void); |
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const Iter = flecszigble.Iter(void); |
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flecszigble.init(std.testing.allocator); |
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var world = try World.init(); |
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defer world.deinit(); |
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const Test = struct { |
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var times_called: usize = 0; |
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var captured_world: ?*World = null; |
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pub fn callback(it: Iter, world_: *World, delta: f32) !void { |
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times_called += 1; |
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captured_world = world_; |
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try expect.equal(12.34, delta); |
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try expect.equal(0, it.count()); |
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} |
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}; |
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_ = try world.system(Test); |
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_ = world.progress(12.34); |
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try expect.equal(1, Test.times_called); |
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try expect.equal(world, Test.captured_world); |
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} |
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