package main import rl "libraries/raylib" import "base:intrinsics" import "core:strings" import "core:fmt" import "core:math/linalg" import "core:mem" // Wraps os.read_entire_file and os.write_entire_file, but they also work with emscripten. @(require_results) read_entire_file :: proc(name: string, allocator := context.allocator, loc := #caller_location) -> (data: []byte, success: bool) { return _read_entire_file(name, allocator, loc) } write_entire_file :: proc(name: string, data: []byte, truncate := true) -> (success: bool) { return _write_entire_file(name, data, truncate) } v1 :: [1]f32 v2 :: [2]f32 v3 :: [3]f32 v4 :: [4]f32 iv2 :: [2]i32 iv3 :: [3]i32 iv4 :: [4]i32 mat2 :: matrix[2, 2]f32 mat3 :: matrix[3, 3]f32 mat4 :: matrix[4, 4]f32 rect2 :: rl.Rectangle irect2 :: struct {x, y, width, height: i32} tri2 :: [3]v2 Bezier :: [3]v2 /// ### MISCELANIOUS ### /// enum_to_raygui_options_string :: proc($T: typeid, allocator: mem.Allocator) -> cstring where intrinsics.type_is_enum(T) { b := strings.builder_make(allocator) for element, i in T { option := fmt.aprint(element, allocator = allocator) strings.write_string(&b, strings.to_ada_case(option, allocator)) strings.write_rune(&b, ';') } strings.builder_replace_all(&b, "_", " ") b.buf[len(b.buf) - 1] = 0 return cstring(raw_data(b.buf[:len(b.buf)])) } /// ### RECTANGLES ### /// rect_from :: proc { rect2_from_v2, irect2_from_iv2, } @(private="file") rect2_from_v2 :: proc "contextless" (position, size: v2) -> rect2 { return {position.x, position.y, size.x, size.y} } @(private="file") irect2_from_iv2 :: proc "contextless" (position, size: iv2) -> irect2 { return {position.x, position.y, size.x, size.y} } rect_scale :: proc{ rect2_scale, irect2_scale, } @(private="file") rect2_scale :: proc "contextless" (rect: rect2, scalar: f32) -> rect2 { return {rect.x * scalar, rect.y * scalar, rect.width * scalar, rect.height * scalar} } @(private="file") irect2_scale :: proc "contextless" (rect: irect2, scalar: i32) -> irect2 { return {rect.x * scalar, rect.y * scalar, rect.width * scalar, rect.height * scalar} } rect_grow :: proc { rect2_grow, rect2_grow_v2, irect2_grow, rect2_grow_iv2, } @(private="file") rect2_grow :: proc "contextless" (rect: rect2, grow: f32) -> rect2 { return {rect.x - grow, rect.y - grow, rect.width + grow * 2.0, rect.height + grow * 2.0} } @(private="file") rect2_grow_v2 :: proc "contextless" (rect: rect2, grow: v2) -> rect2 { return {rect.x - grow.x, rect.y - grow.y, rect.width + grow.x * 2.0, rect.height + grow.y * 2.0} } @(private="file") irect2_grow :: proc "contextless" (rect: irect2, grow: i32) -> irect2 { return {rect.x - grow, rect.y - grow, rect.width + grow * 2, rect.height + grow * 2} } @(private="file") rect2_grow_iv2 :: proc "contextless" (rect: irect2, grow: iv2) -> irect2 { return {rect.x - grow.x, rect.y - grow.y, rect.width + grow.x * 2.0, rect.height + grow.y * 2.0} } rect_from_area :: proc { rect_from_area_v2, rect_from_area_iv2, } @(private="file") rect_from_area_v2 :: proc "contextless" (start, end: v2) -> rect2 { tl := linalg.min(start, end) return {**tl, **(linalg.max(start, end) - tl)} } @(private="file") rect_from_area_iv2 :: proc "contextless" (start, end: iv2) -> irect2 { tl := linalg.min(start, end) return {**tl, **(linalg.max(start, end) - tl)} } rect_from_corners :: proc { rect2_from_corners, irect2_from_corners, } @(private="file") rect2_from_corners :: proc "contextless" (tl, tr, br, bl: v2) -> rect2 { top_left := linalg.min(linalg.min(tl, tr, br), bl) bottom_right := linalg.max(linalg.max(tl, tr, br), bl) return {**top_left, **(bottom_right - top_left)} } @(private="file") irect2_from_corners :: proc "contextless" (tl, tr, br, bl: iv2) -> irect2 { top_left := linalg.min(linalg.min(tl, tr, br), bl) bottom_right := linalg.max(linalg.max(tl, tr, br), bl) return {**top_left, **(bottom_right - top_left)} } rect_get_tl :: proc { rect2_get_tl, irect2_get_tl, } @(private="file") rect2_get_tl :: proc(rect: rect2) -> v2 { return {rect.x, rect.y} } @(private="file") irect2_get_tl :: proc(rect: irect2) -> iv2 { return {rect.x, rect.y} } rect_get_br :: proc { rect2_get_br, irect2_get_br, } @(private="file") rect2_get_br :: proc(rect: rect2) -> v2 { return {rect.x + rect.width, rect.y + rect.height} } @(private="file") irect2_get_br :: proc(rect: irect2) -> iv2 { return {rect.x + rect.width, rect.y + rect.height} } rect_get_size :: proc { rect2_get_size, irect2_get_size, } @(private="file") rect2_get_size :: proc(rect: rect2) -> v2 { return {rect.width, rect.height} } @(private="file") irect2_get_size :: proc(rect: irect2) -> iv2 { return {rect.width, rect.height} } /// ## LINEAR ALGEBRA ## /// matrix3_translate2 :: proc "contextless" (translation: v2) -> mat3 { return { 1.0, 0.0, translation.x, 0.0, 1.0, translation.y, 0.0, 0.0, 1.0, } } matrix3_transform_v2 :: proc(m: mat3, v: v2) -> v2 { return (m * v3{**v, 1.0}).xy } matrix3_transform_rect2 :: proc(m: mat3, r: rect2) -> rect2 { tl := m * v3{r.x, r.y, 1.0} br := m * v3{r.x + r.width, r.y + r.height, 1.0} return {**tl.xy, **(br - tl).xy} }