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45 changed files with 2514 additions and 7135 deletions

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@ -27,7 +27,7 @@ addons:
- libxrandr-dev
before_install:
- if [[ "$TRAVIS_OS_NAME" == "osx" ]]; then rvm --default use 2.3; brew update; brew install scons ; fi
- if [[ "$TRAVIS_OS_NAME" == "osx" ]]; then brew install scons ; fi
install:
- if [[ "$TRAVIS_OS_NAME" == "osx" ]]; then export GODOT_PLATFORM=osx; else export GODOT_PLATFORM=x11; fi
@ -49,5 +49,6 @@ script:
- set -e
- mkdir godotapi
- nim c -d:release -r godot/godotapigen.nim "$GODOT_BIN" godotapi
- nim c -d:useRealtimeGc --path:godot -c godotapi/godotall.nim
- nimble install -y
- nim c -c godotapi/godotall.nim
- nim c -d:release -r docs/docpublish.nim

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@ -9,7 +9,7 @@
"godot/godotapigen.nim"],
"nim.buildOnSave": false,
"nim.lintOnSave": true,
"nim.licenseString": "# Copyright 2018 Xored Software, Inc.\n\n",
"nim.licenseString": "# Copyright 2017 Xored Software, Inc.\n\n",
"files.exclude": {
"**/nimcache/**": true
}

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@ -2,7 +2,7 @@ godot-nim - Nim bindings for Godot Engine
The MIT License
Copyright (c) 2018 Xored Software Inc.
Copyright (c) 2017 Xored Software Inc.
Permission is hereby granted, free of charge, to any person obtaining a copy of this software and
associated documentation files (the "Software"), to deal in the Software without restriction,

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@ -1,8 +1,8 @@
# Nim bindings for Godot Engine
Nim bindings for Godot 3 based on [GDNative](https://godotengine.org/article/dlscript-here).
Nim bindings for Godot 3.0 based on [GDNative](https://godotengine.org/article/dlscript-here).
Documentation: https://pragmagic.github.io/godot-nim/
Documentation is coming. You can learn from the [project stub](https://github.com/pragmagic/godot-nim-stub) in the meantime.
## Links
@ -13,4 +13,4 @@ Documentation: https://pragmagic.github.io/godot-nim/
This project is licensed under the MIT license. Read [LICENSE](LICENSE) file for details.
Copyright (c) 2018 Xored Software, Inc.
Copyright (c) 2017 Xored Software, Inc.

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@ -1,4 +1,4 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import threadpool, os, osproc, strutils, sequtils, pegs
@ -71,7 +71,7 @@ proc fixupHrefs(file: string) =
proc getGitHash(): string =
result = execProcess("git rev-parse HEAD")
if result.len > 0:
if not result.isNil and result.len > 0:
result = result.replace("\L", "").replace("\r", "")
proc buildDocs*(outDir, godotNimDir, godotBin: string) =
@ -94,8 +94,7 @@ proc buildDocs*(outDir, godotNimDir, godotBin: string) =
allNimFiles.add(file)
for file in allNimFiles:
spawn execOrFail(
"nim doc -d:useRealtimeGc --path:godot -o:" &
quoted(outName(outDirAbs, file)) &
"nim doc -o:" & quoted(outName(outDirAbs, file)) &
" --git.url:" & quoted(gitHubUrl) &
" --git.commit:" & quoted(gitCommit) &
' ' & quoted(file))
@ -104,15 +103,14 @@ proc buildDocs*(outDir, godotNimDir, godotBin: string) =
createDir(godotApiFolder)
genApiFiles(godotApiFolder, godotBinAbs)
for file in walkDirRec(godotApiFolder, {pcFile, pcDir}, [".nim"]):
spawn execOrFail("nim doc -d:useRealtimeGc --path:godot -o:" &
quoted(outName(godotApiFolder, file)) & ' ' & quoted(file))
spawn execOrFail("nim doc " & quoted(file))
sync()
var gitHash: string
withDir(godotBinAbs.parentDir()):
gitHash = getGitHash()
if gitHash.len == 0:
if gitHash.isNil or gitHash.len == 0:
raise newException(Exception,
"Godot executable is not under Git repository")

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@ -1,4 +1,4 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import os, pegs, strutils
import docbuild
@ -69,9 +69,7 @@ when isMainModule:
echo "Expected environment variable: " & key
quit(1)
let pr = getEnv("TRAVIS_PULL_REQUEST")
if pr.len > 0 and pr != "false":
echo "This is a PR build. Skipping."
if getEnv("TRAVIS_PULL_REQUEST").len > 0:
quit(0)
let repoSlug = getEnvOrQuit("TRAVIS_REPO_SLUG")
@ -87,7 +85,6 @@ when isMainModule:
let gitHubToken = getEnvOrQuit("GITHUB_TOKEN")
if branch != "master" and not (tag =~ peg"^ 'v' \d+ '.' \d+ '.' \d+ $"):
echo "This is not master or tagged changeset. Skipping."
quit(0)
let godotBin = getEnvOrQuit("GODOT_BIN")

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@ -5,7 +5,6 @@ Nim bindings for Godot Engine
:Author: Ruslan Mustakov
:Version: |godotnimversion|
:GitHub: `$GODOTNIM_GITHUB_URL <$GODOTNIM_GITHUB_URL>`_
:License: MIT
.. contents::
@ -33,24 +32,41 @@ which adds features for editing GDScript and Godot resource files.
Getting Started
===============
Getting Godot
Building Godot
--------------
The library requires Godot version 3.0, which you can get here:
https://godotengine.org/download
The library requires a not yet released Godot version 3.0, which you can
build yourself by running the commands below (requires
`Git <https://git-scm.com/downloads>`_,
`Python 2.7 <https://www.python.org/downloads/>`_,
`SCons <http://www.scons.org/>`_):
Installing Nim
.. code-block:: bash
git clone https://github.com/godotengine/godot.git
cd godot
scons platform=<your_platform>
where ``<your_platform>`` can be ``windows``, ``osx``, ``x11``. After build
is finished, Godot binaries will be under the ``bin`` folder. More details
about compiling Godot can be found in `Godot documentation
<https://godot.readthedocs.io/en/stable/development/compiling/index.html>`_.
Building Nim
-------------
The library requires Nim version 0.18.0 or newer, which you can get here:
https://nim-lang.org/install.html
The library requires a not yet released Nim version 0.17.1, which you can
build yourself by following instructions in the
`Nim repository <https://github.com/nim-lang/Nim>`_. Make sure to also run
``./koch tools -d:release`` after the steps described there to build ``nimble``
(package manager) and ``nimsuggest`` (IDE helper tool,
used by VSCode Nim plugin)
Make sure you also have ``nimble`` (Nim's package manager) installed.
Creating Project
----------------
The fastest way to set up a Godot-Nim project is to use the existing stub:
The fastest way to set up a Godot-Nim project is to use an existing stub:
.. code-block:: bash
git clone --depth=1 https://github.com/pragmagic/godot-nim-stub.git myproject
@ -75,10 +91,19 @@ If you would like to use Nim in an existing project:
build scripts (``nakefile.nim``, ``src/stub.nimble``) according to your
own project structure.
2. Copy ``nimlib.gdnlib`` to your Godot project folder. It is a
2. Copy ``project/nimlib.tres`` to your Godot project folder. It is a
GDNative library resource that contains paths to dynamic libraries
compiled by Nim.
3. Add ``NimRuntime`` as an `AutoLoad singleton <https://godot.readthedocs.io/en/stable/learning/step_by_step/singletons_autoload.html>`_
to your project. To do this, copy ``project/scripts/NimRuntime.gdns`` into
your project and add these lines to ``project.godot``, adjusting path to
``NimRuntime.gdns`` as necessary:
.. code-block:: cfg
[autoload]
NimRuntime="*res://scripts/NimRuntime.gdns"
Next Steps
----------
@ -139,7 +164,7 @@ exported and you don't have to import any of them directly.
* `quats <quats.html>`_ Defines ``Quat`` (quaternion) describing object
rotation in 3D space.
* `rect2 <rect2.html>`_ Defines ``Rect2`` - a 2D rectangle.
* `aabb <aabb.html>`_ Defines ``AABB`` - a 3D box.
* `rect3 <rect3.html>`_ Defines ``Rect3`` - a 3D box.
* `rids <rids.html>`_ Defines ``RID`` - a resource identifier.
* `transform2d <transform2d.html>`_ Defines ``Transform2D``.
* `transforms <transforms.html>`_ Defines ``Transform``.

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@ -1,7 +1,7 @@
version = "0.8.2"
version = "0.4.0"
author = "Xored Software, Inc."
description = "Godot Engine bindings"
license = "MIT"
srcDir = "godot"
requires "nim >= 0.17.3", "compiler >= 0.17.3"
requires "nim >= 0.17.0", "compiler >= 0.17.0"

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@ -1,79 +0,0 @@
# Copyright (c) 2018 Xored Software, Inc.
import hashes
import vector3
import internal/godotinternaltypes, internal/godotstrings
import godotcoretypes, gdnativeapi
proc initAABB*(pos, size: Vector3): AABB {.inline.} =
AABB(position: pos, size: size)
proc `$`*(self: AABB): string {.inline.} =
$getGDNativeAPI().aabbAsString(self)
proc hash*(self: AABB): Hash {.inline.} =
!$(self.position.hash() !& self.size.hash())
proc area*(self: AABB): float32 {.inline.} =
getGDNativeAPI().aabbGetArea(self)
proc hasNoArea*(self: AABB): bool {.inline.} =
getGDNativeAPI().aabbHasNoArea(self)
proc hasNoSurface*(self: AABB): bool {.inline.} =
getGDNativeAPI().aabbHasNoSurface(self)
proc intersects*(self, other: AABB): bool {.inline.} =
getGDNativeAPI().aabbIntersects(self, other)
proc encloses*(self, other: AABB): bool {.inline.} =
getGDNativeAPI().aabbEncloses(self, other)
proc merge*(self, other: AABB): AABB {.inline.} =
getGDNativeAPI().aabbMerge(self, other).toAABB()
proc intersection*(self, other: AABB): AABB {.inline.} =
getGDNativeAPI().aabbIntersection(self, other).toAABB()
proc intersectsPlane*(self: AABB; plane: Plane): bool {.inline.} =
getGDNativeAPI().aabbIntersectsPlane(self, plane)
proc intersectsSegment*(self: AABB; start, to: Vector3): bool {.inline.} =
getGDNativeAPI().aabbIntersectsSegment(self, start, to)
proc contains*(self: AABB; point: Vector3): bool {.inline.} =
getGDNativeAPI().aabbHasPoint(self, point)
proc getSupport*(self: AABB; dir: Vector3): Vector3 {.inline.} =
getGDNativeAPI().aabbGetSupport(self, dir).toVector3()
proc getLongestAxis*(self: AABB): Vector3 {.inline.} =
getGDNativeAPI().aabbGetLongestAxis(self).toVector3()
proc getLongestAxisIndex*(self: AABB): cint {.inline.} =
getGDNativeAPI().aabbGetLongestAxisIndex(self)
proc getLongestAxisSize*(self: AABB): float32 {.inline.} =
getGDNativeAPI().aabbGetLongestAxisSize(self)
proc getShortestAxis*(self: AABB): Vector3 {.inline.} =
getGDNativeAPI().aabbGetShortestAxis(self).toVector3()
proc getShortestAxisIndex*(self: AABB): cint {.inline.} =
getGDNativeAPI().aabbGetShortestAxisIndex(self)
proc getShortestAxisSize*(self: AABB): float32 {.inline.} =
getGDNativeAPI().aabbGetShortestAxisSize(self)
proc expand*(self: AABB; toPoint: Vector3): AABB {.inline.} =
getGDNativeAPI().aabbExpand(self, toPoint).toAABB()
proc grow*(self: AABB; by: float32): AABB {.inline.} =
getGDNativeAPI().aabbGrow(self, by).toAABB()
proc getEndpoint*(self: AABB; idx: cint): Vector3 {.inline.} =
getGDNativeAPI().aabbGetEndpoint(self, idx).toVector3()
proc `==`*(a, b: AABB): bool {.inline.} =
getGDNativeAPI().aabbOperatorEqual(a, b)

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@ -1,7 +1,7 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import hashes
import internal/godotinternaltypes, internal/godotarrays
import internal.godotarrays
type
Array* = ref object
@ -15,23 +15,14 @@ proc godotArray*(arr: Array): ptr GodotArray {.inline.} =
proc arrayFinalizer(arr: Array) =
arr.godotArray.deinit()
proc newArray*(): Array {.inline.} =
new(result, arrayFinalizer)
initGodotArray(result.godotArray)
proc newArray*(arr: GodotArray): Array {.inline.} =
new(result, arrayFinalizer)
result.godotArray = arr
import variants
proc newArray*(s: varargs[Variant]): Array =
new(result, arrayFinalizer)
initGodotArray(result.godotArray)
for v in s:
result.godotArray.add(v.godotVariant[])
proc newArray*(s: openarray[Variant]): Array =
result = newArray()
for v in s:
result.godotArray.add(v.godotVariant[])
import poolarrays
proc newArray*(pca: PoolColorArray): Array {.inline.} =
@ -62,16 +53,18 @@ proc newArray*(pba: PoolByteArray): Array {.inline.} =
new(result, arrayFinalizer)
initGodotArray(result.godotArray, pba.godotPoolByteArray[])
proc `[]=`*(self: Array; idx: int; value: Variant) {.inline.} =
import variants
proc `[]=`*(self: var Array; idx: int; value: Variant) {.inline.} =
self.godotArray[idx.cint] = value.godotVariant[]
proc `[]`*(self: Array; idx: int): Variant {.inline.} =
newVariant(self.godotArray[idx.cint])
proc add*(self: Array; value: Variant) {.inline.} =
proc add*(self: var Array; value: Variant) {.inline.} =
self.godotArray.add(value.godotVariant[])
proc clear*(self: Array) {.inline.} =
proc clear*(self: var Array) {.inline.} =
self.godotArray.clear()
proc count*(self: Array; value: Variant): int {.inline.} =
@ -80,7 +73,7 @@ proc count*(self: Array; value: Variant): int {.inline.} =
proc isEmpty*(self: Array): bool {.inline.} =
self.godotArray.isEmpty()
proc erase*(self: Array; value: Variant) {.inline.} =
proc erase*(self: var Array; value: Variant) {.inline.} =
self.godotArray.erase(value.godotVariant[])
proc first*(self: Array): Variant {.inline.} =
@ -101,46 +94,43 @@ proc contains*(self: Array; value: Variant): bool {.inline.} =
proc hash*(self: Array): Hash {.inline.} =
hash(self.godotArray.godotHash())
proc insert*(self: Array; pos: int; value: Variant) {.inline.} =
proc insert*(self: var Array; pos: int; value: Variant) {.inline.} =
self.godotArray.insert(pos.cint, value.godotVariant[])
proc reverse*(self: Array) {.inline.} =
proc reverse*(self: var Array) {.inline.} =
self.godotArray.reverse()
proc popLast*(self: Array): Variant {.inline.} =
proc popLast*(self: var Array): Variant {.inline.} =
newVariant(self.godotArray.popLast())
proc popFirst*(self: Array): Variant {.inline.} =
proc popFirst*(self: var Array): Variant {.inline.} =
newVariant(self.godotArray.popFirst())
proc addLast*(self: Array; value: Variant) {.inline.} =
proc addLast*(self: var Array; value: Variant) {.inline.} =
self.godotArray.addLast(value.godotVariant[])
proc addFirst*(self: Array; value: Variant) {.inline.} =
proc addFirst*(self: var Array; value: Variant) {.inline.} =
self.godotArray.addFirst(value.godotVariant[])
proc delete*(self: Array; idx: int) {.inline.} =
proc delete*(self: var Array; idx: int) {.inline.} =
self.godotArray.delete(idx.cint)
proc setLen*(self: Array; size: int) {.inline.} =
proc setLen*(self: var Array; size: int) {.inline.} =
self.godotArray.setLen(size.cint)
proc rfind*(self: Array; what: Variant; fromIdx: int): int {.inline.} =
self.godotArray.rfind(what.godotVariant[], fromIdx.cint).int
proc rfind*(self: Array; what: Variant; f: int): int {.inline.} =
self.godotArray.rfind(what.godotVariant[], f.cint).int
proc len*(self: Array): int {.inline.} =
self.godotArray.len.int
proc sort*(self: Array) {.inline.} =
proc sort*(self: var Array) {.inline.} =
self.godotArray.sort()
iterator items*(self: Array): Variant =
for i in 0..<self.len:
yield self[i]
iterator items*(arr: Array): Variant =
for i in 0..<arr.len:
yield arr[i]
iterator pairs*(self: Array): tuple[key: int, val: Variant] =
for i in 0..<self.len:
yield (i, self[i])
proc `$`*(self: Array): string =
$self.godotArray
iterator pairs*(arr: Array): tuple[key: int, val: Variant] =
for i in 0..<arr.len:
yield (i, arr[i])

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@ -1,11 +1,11 @@
# Copyright (c) 2018 Xored Software, Inc.
import math, hashes
# Copyright (c) 2017 Xored Software, Inc.
import math
import godotbase, vector3, quats
import godotcoretypes
{.push stackTrace: off.}
type
Basis* {.byref.} = object
elements*: array[3, Vector3]
proc setCells*(basis: var Basis, xx, xy, xz, yx, yy, yz, zx, zy, zz: float32) =
basis.elements[0].x = xx
@ -202,9 +202,6 @@ proc `$`*(self: Basis): string {.inline.} =
result.add(", ")
result.add($self[i][j])
proc hash*(self: Basis): Hash {.inline.} =
!$(self.elements[0].hash() !& self.elements[1].hash() !& self.elements[2].hash())
template cofac(row1, col1, row2, col2: int): float32 =
self.elements[row1][col1] * self.elements[row2][col2] -
self.elements[row1][col2] * self.elements[row2][col1]
@ -455,5 +452,3 @@ proc rotate*(self: var Vector3; axis: Vector3; phi: float32) =
proc rotated*(self: Vector3; axis: Vector3; phi: float32): Vector3 =
result = self
result.rotate(axis, phi)
{.pop.} # stackTrace: off

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@ -1,8 +1,11 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import hashes
import godotcoretypes, gdnativeapi
type
Color* {.byref.} = object
r*: float32
g*: float32
b*: float32
a*: float32
proc initColor*(r, g, b: float32; a: float32 = 1.0'f32): Color {.inline.} =
Color(
@ -16,14 +19,12 @@ proc initColor*(): Color {.inline.} =
## Initializes black color with 1.0 alpha
initColor(0, 0, 0)
proc h*(self: Color): float32 {.inline.} =
getGDNativeAPI().colorGetH(self)
proc s*(self: Color): float32 {.inline.} =
getGDNativeAPI().colorGetS(self)
proc v*(self: Color): float32 {.inline.} =
getGDNativeAPI().colorGetV(self)
proc h*(self: Color): float32 {.
importc: "godot_color_get_h".}
proc s*(self: Color): float32 {.
importc: "godot_color_get_s".}
proc v*(self: Color): float32 {.
importc: "godot_color_get_v".}
proc `$`*(self: Color): string {.inline.} =
result = newStringOfCap(50)
@ -35,9 +36,6 @@ proc `$`*(self: Color): string {.inline.} =
result.add(", ")
result.add($self.a)
proc hash*(self: Color): Hash {.inline.} =
!$(self.r.hash() !& self.g.hash() !& self.b.hash() !& self.a.hash())
proc toHex(val: float32, target: var string, targetIdx: int) =
let val = clamp(int(val * 255), 0, 255)
let nums = [(val and 0xF0) shr 4, val and 0xF]
@ -60,20 +58,16 @@ proc toARGB32*(self: Color): uint32 {.inline.} =
result = (result shl 8) or uint8(self.g * 255)
result = (result shl 8) or uint8(self.b * 255)
proc gray*(self: Color): float32 {.inline.} =
getGDNativeAPI().colorGray(self)
proc inverted*(self: Color): Color {.inline.} =
getGDNativeAPI().colorInverted(self).toColor()
proc contrasted*(self: Color): Color {.inline.} =
getGDNativeAPI().colorContrasted(self).toColor()
proc lerp*(self: Color; b: Color; t: float32): Color {.inline.} =
getGDNativeAPI().colorLinearInterpolate(self, b, t).toColor()
proc blend*(self: Color; over: Color): Color {.inline.} =
getGDNativeAPI().colorBlend(self, over).toColor()
proc gray*(self: Color): float32 {.
importc: "godot_color_gray".}
proc inverted*(self: Color): Color {.
importc: "godot_color_inverted".}
proc contrasted*(self: Color): Color {.
importc: "godot_color_contrasted".}
proc lerp*(self: Color; b: Color; t: float32): Color {.
importc: "godot_color_linear_interpolate".}
proc blend*(self: Color; over: Color): Color {.
importc: "godot_color_blend".}
proc `==`*(a, b: Color): bool {.inline.} =
a.r == b.r and a.g == b.g and a.b == b.b and a.a == b.a

View file

@ -1,8 +1,8 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import hashes
import internal/godotinternaltypes, internal/godotdictionaries,
internal/godotvariants, internal/godotstrings
import internal.godotstrings, internal.godotdictionaries,
internal.godotvariants
type
Dictionary* = ref object
@ -30,12 +30,9 @@ proc len*(self: Dictionary): int {.inline.} =
proc isEmpty*(self: Dictionary): bool {.inline.} =
self.godotDictionary.isEmpty()
proc clear*(self: Dictionary) {.inline.} =
proc clear*(self: var Dictionary) {.inline.} =
self.godotDictionary.clear()
proc hash*(self: Dictionary): Hash {.inline.} =
hash(self.godotDictionary.godotHash())
import variants, arrays
proc newVariant*(dict: Dictionary): Variant {.inline.} =
@ -43,7 +40,7 @@ proc newVariant*(dict: Dictionary): Variant {.inline.} =
initGodotVariant(result.godotVariant[], dict.godotDictionary)
proc asDictionary*(self: Variant): Dictionary {.inline.} =
newDictionary(self.godotVariant[].asGodotDictionary())
newDictionary(self.godotVariant[].asGodotDictionary)
proc contains*(self: Dictionary; key: Variant): bool {.inline.}=
self.godotDictionary.contains(key.godotVariant[])
@ -51,9 +48,12 @@ proc contains*(self: Dictionary; key: Variant): bool {.inline.}=
proc contains*(self: Dictionary; keys: Array): bool {.inline.} =
self.godotDictionary.contains(keys.godotArray[])
proc del*(self: Dictionary; key: Variant) {.inline.} =
proc del*(self: var Dictionary; key: Variant) {.inline.} =
self.godotDictionary.del(key.godotVariant[])
proc hash*(self: Dictionary): Hash {.inline.} =
hash(self.godotDictionary.godotHash())
proc keys*(self: Dictionary): Array {.inline.} =
newArray(self.godotDictionary.keys())
@ -71,7 +71,7 @@ proc `[]`*(self: Dictionary; keyStr: string): Variant {.inline.} =
godotStr.deinit()
godotVariant.deinit()
proc `[]=`*(self: Dictionary; key, value: Variant) {.inline.} =
proc `[]=`*(self: var Dictionary; key, value: Variant) {.inline.} =
self.godotDictionary[key.godotVariant[]] = value.godotVariant[]
proc `==`*(self, other: Dictionary): bool {.inline.} =
@ -97,14 +97,3 @@ iterator values*(dict: Dictionary): Variant =
iterator pairs*(dict: Dictionary): tuple[key, val: Variant] =
for key in keys(dict):
yield (key, dict[key])
proc `$`*(self: Dictionary): string =
result = newStringOfCap(32)
result.add('{')
for k, v in self:
if result.len > 1:
result.add(", ")
result.add($k)
result.add(": ")
result.add($v)
result.add('}')

View file

@ -1,64 +1,85 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import math, godotinternal
import math
type
Error* {.size: sizeof(cint), pure.} = enum
OK,
Failed, ## Generic fail error
Unavailable, ## What is requested is unsupported/unavailable
Unconfigured, ## The object being used hasnt been properly set up yet
Unauthorized, ## Missing credentials for requested resource
ParameterRangeError, ## Parameter given out of range (5)
OutOfMemory, ## Out of memory
FileNotFound,
FileBadDrive,
FileBadPath,
FileNoPermission, ## (10)
FileAlreadyInUse,
FileCantOpen,
FileCantWrite,
FileCantRead,
FileUnrecognized, ## (15)
FileCorrupt,
FileMissingDependencies,
FileEOF,
CantOpen, ## Can't open a resource/socket/file
CantCreate, ## (20)
QueryFailed,
AlreadyInUse,
Locked, ## resource is locked
Timeout,
CantConnect, ## (25)
CantResolve,
ConnectionError,
CantAquireResource,
CantFork,
InvalidData, ## Data passed is invalid (30)
InvalidParameter, ## Parameter passed is invalid
AlreadyExists, ## When adding, item already exists
DoesNotExist, ## When retrieving/erasing, it item does not exist
DatabaseCantRead, ## Database is full
DatabaseCantWrite, ## Database is full (35)
CompilationFailed,
MethodNotFound,
LinkFailed,
ScriptFailed,
CyclicLink, ## (40)
InvalidDeclaration,
DuplicateSymbol,
PauseError,
Busy,
Skip, ## (45)
Help, ## user requested help!!
Bug,
## a bug in the software certainly happened, due to a double
## check failing or unexpected behavior.
PrinterOnFire, ## the parallel port printer is engulfed in flames
WTF ## shit happens, has never been used, though
# math helpers
{.push stackTrace: off.}
const EPSILON = 0.00001'f32
proc isEqualApprox*(a, b: float32): bool {.inline, noinit.} =
proc isEqualApprox*(a, b: float32): bool {.inline.} =
abs(a - b) < EPSILON
proc isEqualApprox*(a, b: float64): bool {.inline, noinit.} =
proc isEqualApprox*(a, b: float64): bool {.inline.} =
abs(a - b) < EPSILON
proc sign*(a: float32): float32 {.inline, noinit.} =
proc sign*(a: float32): float32 {.inline.} =
if a < 0: -1.0'f32 else: 1.0'f32
proc sign*(a: float64): float64 {.inline, noinit.} =
proc sign*(a: float64): float64 {.inline.} =
if a < 0: -1.0'f64 else: 1.0'f64
proc stepify*(value, step: float64): float64 {.inline, noinit.} =
proc stepify*(value, step: float64): float64 =
if step != 0'f64:
floor(value / step + 0.5'f64) * step
else:
value
proc stepify*(value, step: float32): float32 {.inline, noinit.} =
proc stepify*(value, step: float32): float32 =
if step != 0'f32:
floor(value / step + 0.5'f32) * step
else:
value
when (NimMajor, NimMinor, NimPatch) < (0, 20, 4):
# Newer Nim has these procs in system module
proc min*(x, y: float32): float32 {.inline, noinit.} =
if x <= y: x else: y
proc abs*(x: float32): float32 {.inline, noinit.} =
if x < 0.0: -x else: x
proc max*(x, y: float32): float32 {.inline, noinit.} =
if y <= x: x else: y
{.pop.} # stackTrace: off
template printWarning*(warning: typed) =
## Prints ``warning`` to Godot log, adding filename and line information.
let instInfo = instantiationInfo()
godotPrintWarning(cstring($warning), cstring"", cstring(instInfo.filename), instInfo.line.cint)
template printError*(error: typed) =
## Prints ``error`` to Godot log, adding filename and line information.
let instInfo = instantiationInfo()
godotPrintError(cstring($error), cstring"", cstring(instInfo.filename), instInfo.line.cint)
proc print*(parts: varargs[string, `$`]) =
## Prints concatenated ``parts`` to Godot log.
var combined = ""
for v in parts:
combined.add(v)
var s = combined.toGodotString()
godotPrint(s)
s.deinit()

View file

@ -1,102 +0,0 @@
# Copyright 2018 Xored Software, Inc.
type
Color* {.byref.} = object
r*: float32
g*: float32
b*: float32
a*: float32
Vector3* {.byref.} = object
x*: float32
y*: float32
z*: float32
Vector2* {.byref.} = object
x*: float32
y*: float32
Plane* {.byref.} = object
normal*: Vector3
d*: float32
Basis* {.byref.} = object
elements*: array[3, Vector3]
Quat* {.byref.} = object
x*: float32
y*: float32
z*: float32
w*: float32
AABB* {.byref.} = object
position*: Vector3
size*: Vector3
Rect2* {.byref.} = object
position*: Vector2
size*: Vector2
Transform2D* {.byref.} = object
elements*: array[3, Vector2]
Transform* {.byref.} = object
basis*: Basis
origin*: Vector3
RID* {.byref.} = object
data: array[sizeof(int), byte]
Error* {.size: sizeof(cint), pure.} = enum
OK,
Failed, ## Generic fail error
Unavailable, ## What is requested is unsupported/unavailable
Unconfigured, ## The object being used hasnt been properly set up yet
Unauthorized, ## Missing credentials for requested resource
ParameterRangeError, ## Parameter given out of range (5)
OutOfMemory, ## Out of memory
FileNotFound,
FileBadDrive,
FileBadPath,
FileNoPermission, ## (10)
FileAlreadyInUse,
FileCantOpen,
FileCantWrite,
FileCantRead,
FileUnrecognized, ## (15)
FileCorrupt,
FileMissingDependencies,
FileEOF,
CantOpen, ## Can't open a resource/socket/file
CantCreate, ## (20)
QueryFailed,
AlreadyInUse,
Locked, ## resource is locked
Timeout,
CantConnect, ## (25)
CantResolve,
ConnectionError,
CantAquireResource,
CantFork,
InvalidData, ## Data passed is invalid (30)
InvalidParameter, ## Parameter passed is invalid
AlreadyExists, ## When adding, item already exists
DoesNotExist, ## When retrieving/erasing, it item does not exist
DatabaseCantRead, ## Database is full
DatabaseCantWrite, ## Database is full (35)
CompilationFailed,
MethodNotFound,
LinkFailed,
ScriptFailed,
CyclicLink, ## (40)
InvalidDeclaration,
DuplicateSymbol,
PauseError,
Busy,
Skip, ## (45)
Help, ## user requested help!!
Bug,
## a bug in the software certainly happened, due to a double
## check failing or unexpected behavior.
PrinterOnFire, ## the parallel port printer is engulfed in flames
WTF ## shit happens, has never been used, though

View file

@ -1,9 +1,6 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import hashes
import internal/godotinternaltypes, internal/godotnodepaths,
internal/godotstrings
import internal.godotnodepaths, internal.godotstrings
type
NodePath* = ref object
@ -34,9 +31,6 @@ proc `$`*(self: NodePath): string {.inline.} =
result = $s
s.deinit()
proc hash*(self: NodePath): Hash {.inline.} =
($self).hash()
proc isAbsolute*(self: NodePath): bool {.inline.} =
self.path.isAbsolute()
@ -56,8 +50,8 @@ proc getSubname*(self: NodePath; idx: int): string {.inline.} =
result = $s
s.deinit()
proc getConcatenatedSubnames*(self: NodePath): string {.inline.} =
var s = self.path.getConcatenatedSubnames()
proc property*(self: NodePath): string {.inline.} =
var s = self.path.property()
result = $s
s.deinit()

View file

@ -1,66 +1,73 @@
# Copyright (c) 2018 Xored Software, Inc.
import hashes
# Copyright (c) 2017 Xored Software, Inc.
import vector3
import internal/godotinternaltypes, internal/godotstrings
import godotcoretypes, gdnativeapi
import internal.godotstrings
proc initPlane*(a, b, c, d: float32): Plane {.inline.} =
getGDNativeAPI().planeNewWithReals(result, a, b, c, d)
type
Plane* {.byref.} = object
normal*: Vector3
d*: float32
proc initPlane*(v1, v2, v3: Vector3): Plane {.inline.} =
getGDNativeAPI().planeNewWithVectors(result, v1, v2, v3)
proc initPlane(dest: var Plane; a, b, c, d: float32) {.
importc: "godot_plane_new_with_reals".}
proc initPlane(dest: var Plane; v1, v2, v3: Vector3) {.
importc: "godot_plane_new_with_vectors".}
proc initPlane(dest: var Plane; normal: Vector3; d: float32) {.
importc: "godot_plane_new_with_normal".}
proc initPlane*(normal: Vector3; d: float32): Plane {.inline.} =
result = Plane(
normal: normal,
d: d
)
proc initPlane*(a, b, c, d: float32): Plane =
initPlane(result, a, b, c, d)
proc initPlane*(v1, v2, v3: Vector3): Plane =
initPlane(result, v1, v2, v3)
proc initPlane*(normal: Vector3; d: float32): Plane =
initPlane(result, normal, d)
proc toGodotString(self: Plane): GodotString {.
noSideEffect,
importc: "godot_plane_as_string".}
proc `$`*(self: Plane): string {.inline.} =
$getGDNativeAPI().planeAsString(self)
proc hash*(self: Plane): Hash {.inline, noinit.} =
!$(self.normal.hash() !& self.d.hash())
proc normalized*(self: Plane): Plane {.inline.} =
getGDNativeAPI().planeNormalized(self).toPlane()
proc center*(self: Plane): Vector3 {.inline.} =
getGDNativeAPI().planeCenter(self).toVector3()
proc getAnyPoint*(self: Plane): Vector3 {.inline.} =
getGDNativeAPI().planeGetAnyPoint(self).toVector3()
proc isPointOver*(self: Plane; point: Vector3): bool {.inline.} =
getGDNativeAPI().planeIsPointOver(self, point)
proc distanceTo*(self: Plane; point: Vector3): float32 {.inline.} =
getGDNativeAPI().planeDistanceTo(self, point)
$self.toGodotString()
proc normalized*(self: Plane): Plane {.
noSideEffect,
importc: "godot_plane_normalized".}
proc center*(self: Plane): Vector3 {.
noSideEffect,
importc: "godot_plane_center".}
proc getAnyPoint*(self: Plane): Vector3 {.
noSideEffect,
importc: "godot_plane_get_any_point".}
proc isPointOver*(self: Plane; point: Vector3): bool {.
noSideEffect,
importc: "godot_plane_is_point_over".}
proc distanceTo*(self: Plane; point: Vector3): float32 {.
noSideEffect,
importc: "godot_plane_distance_to".}
proc contains*(self: Plane; point: Vector3;
epsilon: float32): bool {.inline.} =
getGDNativeAPI().planeHasPoint(self, point, epsilon)
proc project*(self: Plane; point: Vector3): Vector3 {.inline.} =
getGDNativeAPI().planeProject(self, point).toVector3()
epsilon: float32): bool {.
noSideEffect,
importc: "godot_plane_has_point".}
proc project*(self: Plane; point: Vector3): Vector3 {.
noSideEffect,
importc: "godot_plane_project".}
proc intersect3*(self: Plane; dest: var Vector3;
b, c: Plane): bool {.inline.} =
getGDNativeAPI().planeIntersect3(self, dest, b, c)
b, c: Plane): bool {.
noSideEffect,
importc: "godot_plane_intersect_3".}
proc intersectsRay*(self: Plane; dest: var Vector3;
v, dir: Vector3): bool {.inline.} =
getGDNativeAPI().planeIntersectsRay(self, dest, v, dir)
v, dir: Vector3): bool {.
noSideEffect,
importc: "godot_plane_intersects_ray".}
proc intersectsSegment*(self: Plane; dest: var Vector3;
segmentBegin, segmentEnd: Vector3): bool {.inline.} =
getGDNativeAPI().planeIntersectsSegment(self, dest, segmentBegin, segmentEnd)
proc `-`*(self: Plane): Plane {.inline.} =
getGDNativeAPI().planeOperatorNeg(self).toPlane()
proc `==`*(a, b: Plane): bool {.inline.} =
getGDNativeAPI().planeOperatorEqual(a, b)
segmentBegin, segmentEnd: Vector3): bool {.
noSideEffect, importc: "godot_plane_intersects_segment".}
proc `-`*(self: Plane): Plane {.
noSideEffect,
importc: "godot_plane_operator_neg".}
proc `==`*(a, b: Plane): bool {.
noSideEffect,
importc: "godot_plane_operator_equal".}

View file

@ -1,11 +1,65 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import hashes
import godotcoretypes
import internal/godotinternaltypes, internal/godotpoolarrays,
internal/godotstrings
import vector2, vector3, colors
import internal.godotpoolarrays, internal.godotstrings
# type
# PoolByteArray* = ref object
# godotPoolByteArray: GodotPoolByteArray
# PoolIntArray* = ref object
# godotPoolIntArray: GodotPoolIntArray
# PoolRealArray* = ref object
# godotPoolRealArray: GodotPoolRealArray
# PoolVector2Array* = ref object
# godotPoolVector2Array: GodotPoolVector2Array
# PoolVector3Array* = ref object
# godotPoolVector3Array: GodotPoolVector3Array
# PoolColorArray* = ref object
# godotPoolColorArray: GodotPoolColorArray
# PoolStringArray* = ref object
# godotPoolStringArray: GodotPoolStringArray
# proc godotPoolByteArray*(self: PoolByteArray):
# ptr GodotPoolByteArray {.inline.} =
# ## WARNING: do not keep the returned value for longer than the lifetime of
# ## the array.
# addr self.godotPoolByteArray
# proc godotPoolIntArray*(self: PoolIntArray):
# ptr GodotPoolIntArray {.inline.} =
# ## WARNING: do not keep the returned value for longer than the lifetime of
# ## the array.
# addr self.godotPoolIntArray
# proc godotPoolRealArray*(self: PoolRealArray):
# ptr GodotPoolRealArray {.inline.} =
# ## WARNING: do not keep the returned value for longer than the lifetime of
# ## the array.
# addr self.godotPoolRealArray
# proc godotPoolVector2Array*(self: PoolVector2Array):
# ptr GodotPoolVector2Array {.inline.} =
# ## WARNING: do not keep the returned value for longer than the lifetime of
# ## the array.
# addr self.godotPoolVector2Array
# proc godotPoolVector3Array*(self: PoolVector3Array):
# ptr GodotPoolVector3Array {.inline.} =
# ## WARNING: do not keep the returned value for longer than the lifetime of
# ## the array.
# addr self.godotPoolVector3Array
# proc godotPoolColorArray*(self: PoolColorArray):
# ptr GodotPoolColorArray {.inline.} =
# ## WARNING: do not keep the returned value for longer than the lifetime of
# ## the array.
# addr self.godotPoolColorArray
# proc godotPoolStringArray*(self: PoolStringArray):
# ptr GodotPoolStringArray {.inline.} =
# ## WARNING: do not keep the returned value for longer than the lifetime of
# ## the array.
# addr self.godotPoolStringArray
template definePoolArrayBase(T, GodotT, DataT, fieldName, newProcName,
initProcName) =
@ -29,11 +83,51 @@ template definePoolArrayBase(T, GodotT, DataT, fieldName, newProcName,
new(result, poolArrayFinalizer)
result.fieldName = arr
proc hash*(arr: T): Hash =
for item in arr.fieldName.items():
result = result !&
(when type(item) is GodotString: ($item).hash() else: item.hash())
result = !$result
template definePoolArray(T, GodotT, DataT, fieldName, newProcName, initProcName;
noData = false) =
proc newProcName*(arr: Array): T {.inline.} =
new(result, poolArrayFinalizer)
initProcName(result.fieldName, arr.godotArray[])
proc add*(self: var T; arr: T) {.inline.} =
self.fieldName.add(arr.fieldName)
proc delete*(self: var T; idx: int) {.inline.} =
self.fieldName.delete(idx.cint)
proc reverse*(self: var T) {.inline.} =
self.fieldName.reverse()
proc setLen*(self: var T; size: int) {.inline.} =
self.fieldName.setLen(size.cint)
proc len*(self: T): int {.inline.} =
self.fieldName.len.int
when not noData:
proc add*(self: var T; data: DataT) {.inline.} =
self.fieldName.add(data)
proc addFirst*(self: var T, data: DataT) {.inline.} =
self.fieldName.addFirst(data)
proc insert*(self: var T; idx: int; data: DataT): Error {.inline.} =
self.fieldName.insert(idx.cint, data)
proc `[]=`*(self: var T; idx: int; data: DataT) {.inline.} =
self.fieldName[idx.cint] = data
proc `[]`*(self: T; idx: int): DataT {.inline.} =
self.fieldName[idx.cint]
iterator items*(arr: T): DataT =
for i in 0..<arr.len:
yield arr[i]
iterator pairs*(arr: T): tuple[key: int, val: DataT] =
for i in 0..<arr.len:
yield (i, arr[i])
definePoolArrayBase(PoolByteArray, GodotPoolByteArray, uint8,
godotPoolByteArray, newPoolByteArray,
@ -41,7 +135,7 @@ definePoolArrayBase(PoolByteArray, GodotPoolByteArray, uint8,
definePoolArrayBase(PoolIntArray, GodotPoolIntArray, cint,
godotPoolIntArray, newPoolIntArray,
initGodotPoolIntArray)
definePoolArrayBase(PoolRealArray, GodotPoolRealArray, float32,
definePoolArrayBase(PoolRealArray, GodotPoolRealArray, float64,
godotPoolRealArray, newPoolRealArray,
initGodotPoolRealArray)
definePoolArrayBase(PoolVector2Array, GodotPoolVector2Array, Vector2,
@ -57,64 +151,7 @@ definePoolArrayBase(PoolStringArray, GodotPoolStringArray, string,
godotPoolStringArray, newPoolStringArray,
initGodotPoolStringArray)
import arrays
template definePoolArray(T, GodotT, DataT, fieldName, newProcName, initProcName;
noData = false) =
proc newProcName*(arr: Array): T {.inline.} =
new(result, poolArrayFinalizer)
initProcName(result.fieldName, arr.godotArray[])
proc add*(self: T; arr: T) {.inline.} =
self.fieldName.add(arr.fieldName)
proc delete*(self: T; idx: int) {.inline.} =
self.fieldName.delete(idx.cint)
proc reverse*(self: T) {.inline.} =
self.fieldName.reverse()
proc setLen*(self: T; size: int) {.inline.} =
self.fieldName.setLen(size.cint)
proc len*(self: T): int {.inline.} =
self.fieldName.len.int
proc subarray*(self: T, idxFrom, idxTo: int): T {.inline.} =
## Indexes are inclusive, negative values count from the end of the array.
assert(idxFrom >= low(cint) and idxFrom <= high(cint) and
idxTo >= low(cint) and idxTo <= high(cint))
newProcName(self.fieldName.subarray(idxFrom.cint, idxTo.cint))
when not noData:
proc add*(self: T; data: DataT) {.inline.} =
self.fieldName.add(data)
proc insert*(self: T; idx: int; data: DataT): Error {.inline.} =
self.fieldName.insert(idx.cint, data)
proc `[]=`*(self: T; idx: int; data: DataT) {.inline.} =
self.fieldName[idx.cint] = data
proc `[]`*(self: T; idx: int): DataT {.inline.} =
self.fieldName[idx.cint]
iterator items*(arr: T): DataT =
for item in arr.fieldName.items:
yield item
iterator pairs*(arr: T): tuple[key: int, val: DataT] =
for pair in arr.fieldName.pairs:
yield (pair[0].int, pair[1])
iterator mitems*(arr: T): var DataT =
for item in arr.fieldName.mitems:
yield item
iterator mpairs*(arr: T): tuple[key: int, val: var DataT] =
for pair in arr.fieldName.mpairs:
yield (pair[0].int, pair[1])
import godotbase, arrays
definePoolArray(PoolByteArray, GodotPoolByteArray, uint8,
godotPoolByteArray, newPoolByteArray,
@ -122,7 +159,7 @@ definePoolArray(PoolByteArray, GodotPoolByteArray, uint8,
definePoolArray(PoolIntArray, GodotPoolIntArray, cint,
godotPoolIntArray, newPoolIntArray,
initGodotPoolIntArray)
definePoolArray(PoolRealArray, GodotPoolRealArray, float32,
definePoolArray(PoolRealArray, GodotPoolRealArray, float64,
godotPoolRealArray, newPoolRealArray,
initGodotPoolRealArray)
definePoolArray(PoolVector2Array, GodotPoolVector2Array, Vector2,
@ -138,17 +175,22 @@ definePoolArray(PoolStringArray, GodotPoolStringArray, string,
godotPoolStringArray, newPoolStringArray,
initGodotPoolStringArray, true)
proc add*(self: PoolStringArray; data: string) =
proc add*(self: var PoolStringArray; data: string) =
var s = data.toGodotString()
self.godotPoolStringArray.add(s)
s.deinit()
proc insert*(self: PoolStringArray; idx: int; data: string): Error =
proc addFirst*(self: var PoolStringArray, data: string) =
var s = data.toGodotString()
self.godotPoolStringArray.addFirst(s)
s.deinit()
proc insert*(self: var PoolStringArray; idx: int; data: string): Error =
var s = data.toGodotString()
result = self.godotPoolStringArray.insert(idx.cint, s)
s.deinit()
proc `[]=`*(self: PoolStringArray; idx: int; data: string) =
proc `[]=`*(self: var PoolStringArray; idx: int; data: string) =
var s = data.toGodotString()
self.godotPoolStringArray[idx.cint] = s
s.deinit()

View file

@ -1,84 +1,91 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import hashes
import vector3
import internal.godotstrings
import internal/godotinternaltypes, internal/godotstrings
import godotcoretypes, gdnativeapi
type
Quat* {.byref.} = object
x*: float32
y*: float32
z*: float32
w*: float32
proc initQuat(dest: var Quat; x, y, z, w: float32) {.
importc: "godot_quat_new".}
proc initQuat(dest: var Quat; axis: Vector3; angle: float32) {.
importc: "godot_quat_new_with_axis_angle".}
proc initQuat*(x, y, z, w: float32): Quat {.inline.} =
result = Quat(
x: x,
y: y,
z: z,
w: w
)
initQuat(result, x, y, z, w)
proc initQuat*(axis: Vector3; angle: float32): Quat {.inline.} =
getGDNativeAPI().quatNewWithAxisAngle(result, axis, angle)
initQuat(result, axis, angle)
proc toGodotString(self: Quat): GodotString {.
noSideEffect,
importc: "godot_quat_as_string".}
proc `$`*(self: Quat): string {.inline.} =
$getGDNativeAPI().quatAsString(self)
proc hash*(self: Quat): Hash {.inline.} =
!$(self.x.hash() !& self.y.hash() !& self.z.hash() !& self.w.hash())
proc length*(self: Quat): float32 {.inline.} =
getGDNativeAPI().quatLength(self)
proc lengthSquared*(self: Quat): float32 {.inline.} =
getGDNativeAPI().quatLengthSquared(self)
proc normalized*(self: Quat): Quat {.inline.} =
getGDNativeAPI().quatNormalized(self).toQuat()
proc isNormalized*(self: Quat): bool {.inline.} =
getGDNativeAPI().quatIsNormalized(self)
proc inverse*(self: Quat): Quat {.inline.} =
getGDNativeAPI().quatInverse(self).toQuat()
proc dot*(a, b: Quat): float32 {.inline.} =
getGDNativeAPI().quatDot(a, b)
proc xform*(self: Quat; v: Vector3): Vector3 {.inline.} =
getGDNativeAPI().quatXform(self, v).toVector3()
proc slerp*(self: Quat; b: Quat; t: float32): Quat {.inline.} =
getGDNativeAPI().quatSlerp(self, b, t).toQuat()
proc slerpni*(self: Quat; b: Quat; t: float32): Quat {.inline.} =
getGDNativeAPI().quatSlerpni(self, b, t).toQuat()
proc cubicSlerp*(self, b, preA, postB: Quat;
t: float32): Quat {.inline.} =
getGDNativeAPI().quatCubicSlerp(self, b, preA, postB, t).toQuat()
proc `*`*(a: Quat, b: float32): Quat {.inline.} =
getGDNativeAPI().quatOperatorMultiply(a, b).toQuat()
$self.toGodotString()
proc length*(self: Quat): float32 {.
noSideEffect,
importc: "godot_quat_length".}
proc lengthSquared*(self: Quat): float32 {.
noSideEffect,
importc: "godot_quat_length_squared".}
proc normalized*(self: Quat): Quat {.
noSideEffect,
importc: "godot_quat_normalized".}
proc isNormalized*(self: Quat): bool {.
noSideEffect,
importc: "godot_quat_is_normalized".}
proc inverse*(self: Quat): Quat {.
noSideEffect,
importc: "godot_quat_inverse".}
proc dot*(a, b: Quat): float32 {.
noSideEffect,
importc: "godot_quat_dot".}
proc xform*(self: Quat; v: Vector3): Vector3 {.
noSideEffect,
importc: "godot_quat_xform".}
proc slerp*(self: Quat; b: Quat; t: float32): Quat {.
noSideEffect,
importc: "godot_quat_slerp".}
proc slerpni*(self: Quat; b: Quat; t: float32): Quat {.
noSideEffect,
importc: "godot_quat_slerpni".}
proc cubicSlerp*(self, b, pre_a, post_b: Quat;
t: float32): Quat {.
noSideEffect,
importc: "godot_quat_cubic_slerp".}
proc `*`*(a: Quat, b: float32): Quat {.
noSideEffect,
importc: "godot_quat_operator_multiply".}
proc `*=`*(a: var Quat, b: float32) {.inline.} =
a = a * b
proc `+`*(a, b: Quat): Quat {.inline.} =
getGDNativeAPI().quatOperatorAdd(a, b).toQuat()
proc `+`*(a, b: Quat): Quat {.
noSideEffect,
importc: "godot_quat_operator_add".}
proc `+=`*(a: var Quat, b: Quat) {.inline.} =
a = a + b
proc `-`*(a, b: Quat): Quat {.inline.} =
getGDNativeAPI().quatOperatorSubtract(a, b).toQuat()
proc `-`*(a, b: Quat): Quat {.
noSideEffect,
importc: "godot_quat_operator_substract".}
proc `-=`* (a: var Quat, b: Quat) {.inline.} =
a = a - b
proc `/`*(self: Quat; b: float32): Quat {.inline.} =
getGDNativeAPI().quatOperatorDivide(self, b).toQuat()
proc `/`*(self: Quat; b: float32): Quat {.
noSideEffect,
importc: "godot_quat_operator_divide".}
proc `/=`*(self: var Quat, b: float32) {.inline.} =
self = self / b
proc `==`*(a, b: Quat): bool {.inline.} =
getGDNativeAPI().quatOperatorEqual(a, b)
proc `-`*(self: Quat): Quat {.inline.} =
getGDNativeAPI().quatOperatorNeg(self).toQuat()
proc `==`*(a, b: Quat): bool {.
noSideEffect,
importc: "godot_quat_operator_equal".}
proc `-`*(self: Quat): Quat {.
noSideEffect,
importc: "godot_quat_operator_neg".}

View file

@ -1,153 +1,54 @@
# Copyright (c) 2018 Xored Software, Inc.
import hashes
# Copyright (c) 2017 Xored Software, Inc.
import vector2
import internal/godotinternaltypes, internal/godotstrings
import godotcoretypes, gdnativeapi
{.push stackTrace: off.}
import internal.godotstrings
proc initRect2*(): Rect2 {.inline, noinit.} =
Rect2()
type
Rect2* {.byref.} = object
position*: Vector2
size*: Vector2
proc initRect2*(pos, size: Vector2): Rect2 {.inline, noinit.} =
proc initRect2*(pos, size: Vector2): Rect2 {.inline.} =
Rect2(position: pos, size: size)
proc initRect2*(x, y, sizeX, sizeY: float32): Rect2 {.inline, noinit.} =
proc initRect2*(x, y, sizeX, sizeY: float32): Rect2 {.inline.} =
Rect2(position: vec2(x, y), size: vec2(sizeX, sizeY))
proc `$`*(self: Rect2): string {.inline, noinit.} =
$getGDNativeAPI().rect2AsString(self)
proc toGodotString(self: Rect2): GodotString {.
noSideEffect,
importc: "godot_rect2_as_string".}
proc hash*(self: Rect2): Hash {.inline, noinit.} =
!$(self.position.hash() !& self.size.hash())
proc `$`*(self: Rect2): string {.inline.} =
$self.toGodotString()
proc area*(self: Rect2): float32 {.inline, noinit.} =
self.size.x * self.size.y
proc intersects*(a, b: Rect2): bool {.inline, noinit.} =
if a.position.x >= (b.position.x + b.size.x):
return false
if a.position.x + a.size.x <= b.position.x:
return false
if a.position.y >= (b.position.y + b.size.y):
return false
if a.position.y + a.size.y <= b.position.y:
return false
result = true
proc distanceTo*(self: Rect2, p: Vector2): float32 {.noinit.} =
var inside = true
if p.x < self.position.x:
let d = self.position.x - p.x
result = d
inside = false
if p.y < self.position.y:
let d = self.position.y - p.y
result = if inside: d else: min(result, d)
inside = false
if p.x >= (self.position.x + self.size.x):
let d = p.x - (self.position.x + self.size.x)
result = if inside: d else: min(result, d)
inside = false
if p.y >= (self.position.y + self.size.y):
let d = p.y - (self.position.y + self.size.y)
result = if inside: d else: min(result, d)
inside = false
if inside:
result = 0'f32
proc encloses*(a, b: Rect2): bool {.inline, noinit.} =
b.position.x >= a.position.x and b.position.y >= a.position.y and
(b.position.x + b.size.x) < (a.position.x + a.size.x) and
(b.position.y + b.size.y) < (a.position.y + a.size.y)
proc hasNoArea*(self: Rect2): bool {.inline, noinit.} =
self.size.x <= 0 or self.size.y <= 0
proc clip*(self, b: Rect2): Rect2 {.inline, noinit.} =
if not self.intersects(b):
return initRect2()
result = self
result.position.x = max(b.position.x, self.position.x)
result.position.y = max(b.position.y, self.position.y)
let bEnd = b.position + b.size
let selfEnd = self.position + self.size
result.size.x = min(bEnd.x, selfEnd.x) - result.position.x
result.size.y = min(bEnd.y, selfEnd.y) - result.position.y
proc merge*(self, b: Rect2): Rect2 {.inline, noinit.} =
result.position.x = min(b.position.x, self.position.x)
result.position.y = min(b.position.y, self.position.y)
result.size.x = max(b.position.x + b.size.x, self.position.x + self.size.x)
result.size.y = max(b.position.y + b.size.y, self.position.y + self.size.y)
result.size -= result.position
proc contains*(self: Rect2; point: Vector2): bool {.inline, noinit.} =
if point.x < self.position.x:
return false
if point.y < self.position.y:
return false
if point.x >= self.position.x + self.size.x:
return false
if point.y >= self.position.y + self.size.y:
return false
result = true
proc grow*(self: Rect2; by: float32): Rect2 {.inline, noinit.} =
## Returns Rect2 enlarged by the specified size in every direction.
result = self
result.position.x -= by
result.position.y -= by
result.size.x += by * 2
result.size.y += by * 2
proc growIndividual*(self: Rect2, left, top: float32,
right, bottom: float32): Rect2 {.inline, noinit.} =
result = self
result.position.x -= left
result.position.y -= top
result.size.x += left + right
result.size.y += top + bottom
proc expandTo*(self: var Rect2, to: Vector2) {.inline.} =
var startPoint = self.position
var endPoint = self.position + self.size
if to.x < startPoint.x:
startPoint.x = to.x
if to.y < startPoint.y:
startPoint.y = to.y
if to.x > endPoint.x:
endPoint.x = to.x
if to.y > endPoint.y:
endPoint.y = to.y
self.position = startPoint
self.size = endPoint - startPoint
proc expand*(self: Rect2; to: Vector2): Rect2 {.inline, noinit.} =
result = self
result.expandTo(to)
proc abs*(self: Rect2): Rect2 {.inline, noinit.} =
Rect2(position: vec2(self.position.x + min(self.size.x, 0'f32),
self.position.y + min(self.size.y, 0'f32)),
size: abs(self.size))
proc `==`*(a, b: Rect2): bool {.inline, noinit.} =
a.position == b.position and a.size == b.size
{.pop.} # stackTrace: off
proc area*(self: Rect2): float32 {.
noSideEffect,
importc: "godot_rect2_get_area".}
proc intersects*(a, b: Rect2): bool {.
noSideEffect,
importc: "godot_rect2_intersects".}
proc encloses*(a, b: Rect2): bool {.
noSideEffect,
importc: "godot_rect2_encloses".}
proc hasNoArea*(self: Rect2): bool {.
noSideEffect,
importc: "godot_rect2_has_no_area".}
proc clip*(a, b: Rect2): Rect2 {.
noSideEffect,
importc: "godot_rect2_clip".}
proc merge*(a, b: Rect2): Rect2 {.
noSideEffect,
importc: "godot_rect2_merge".}
proc contains*(self: Rect2; point: Vector2): bool {.
noSideEffect,
importc: "godot_rect2_has_point".}
proc grow*(self: Rect2; by: float32): Rect2 {.
noSideEffect,
importc: "godot_rect2_grow".}
proc expand*(self: Rect2; to: Vector2): Rect2 {.
noSideEffect,
importc: "godot_rect2_expand".}
proc `==`*(a, b: Rect2): bool {.
noSideEffect,
importc: "godot_rect2_operator_equal".}

84
godot/core/rect3.nim Normal file
View file

@ -0,0 +1,84 @@
# Copyright (c) 2017 Xored Software, Inc.
import planes, vector3
import internal.godotstrings
type
Rect3* {.byref.} = object
position*: Vector3
size*: Vector3
proc initRect3*(pos, size: Vector3): Rect3 {.inline.} =
Rect3(position: pos, size: size)
proc toGodotString(self: Rect3): GodotString {.
noSideEffect,
importc: "godot_rect3_as_string".}
proc `$`*(self: Rect3): string {.inline.} =
$self.toGodotString()
proc area*(self: Rect3): float32 {.
noSideEffect,
importc: "godot_rect3_get_area".}
proc hasNoArea*(self: Rect3): bool {.
noSideEffect,
importc: "godot_rect3_has_no_area".}
proc hasNoSurface*(self: Rect3): bool {.
noSideEffect,
importc: "godot_rect3_has_no_surface".}
proc intersects*(a, b: Rect3): bool {.
noSideEffect,
importc: "godot_rect3_intersects".}
proc encloses*(self, other: Rect3): bool {.
noSideEffect,
importc: "godot_rect3_encloses".}
proc merge*(self, other: Rect3): Rect3 {.
noSideEffect,
importc: "godot_rect3_merge".}
proc intersection*(self, other: Rect3): Rect3 {.
noSideEffect,
importc: "godot_rect3_intersection".}
proc intersectsPlane*(self: Rect3; plane: Plane): bool {.
noSideEffect,
importc: "godot_rect3_intersects_plane".}
proc intersectsSegment*(self: Rect3; start, to: Vector3): bool {.
noSideEffect,
importc: "godot_rect3_intersects_segment".}
proc contains*(self: Rect3; point: Vector3): bool {.
noSideEffect,
importc: "godot_rect3_has_point".}
proc getSupport*(self: Rect3; dir: Vector3): Vector3 {.
noSideEffect,
importc: "godot_rect3_get_support".}
proc getLongestAxis*(self: Rect3): Vector3 {.
noSideEffect,
importc: "godot_rect3_get_longest_axis".}
proc getLongestAxisIndex*(self: Rect3): cint {.
noSideEffect,
importc: "godot_rect3_get_longest_axis_index".}
proc getLongestAxisSize*(self: Rect3): float32 {.
noSideEffect,
importc: "godot_rect3_get_longest_axis_size".}
proc getShortestAxis*(self: Rect3): Vector3 {.
noSideEffect,
importc: "godot_rect3_get_shortest_axis".}
proc getShortestAxisIndex*(self: Rect3): cint {.
noSideEffect,
importc: "godot_rect3_get_shortest_axis_index".}
proc getShortestAxisSize*(self: Rect3): float32 {.
noSideEffect,
importc: "godot_rect3_get_shortest_axis_size".}
proc expand*(self: Rect3; toPoint: Vector3): Rect3 {.
noSideEffect,
importc: "godot_rect3_expand".}
proc grow*(self: Rect3; by: float32): Rect3 {.
noSideEffect,
importc: "godot_rect3_grow".}
proc getEndpoint*(self: Rect3; idx: cint): Vector3 {.
noSideEffect,
importc: "godot_rect3_get_endpoint".}
proc `==`*(a, b: Rect3): bool {.
noSideEffect,
importc: "godot_rect3_operator_equal".}

View file

@ -1,26 +1,28 @@
# Copyright (c) 2018 Xored Software, Inc.
import internal.godotobjects
import hashes
type
RID* {.byref.} = object
data: array[sizeof(int), byte]
import godotcoretypes, internal/godotinternaltypes, gdnativeapi
proc initRID(dest: var RID) {.
importc: "godot_rid_new".}
proc initRID(dest: var RID; obj: ptr GodotObject) {.
importc: "godot_rid_new_with_resource".}
proc initRID*(): RID {.inline.} =
getGDNativeAPI().ridNew(result)
initRID(result)
proc initRID*(obj: ptr GodotObject): RID {.inline.} =
getGDNativeAPI().ridNewWithResource(result, obj)
initRID(result, obj)
proc idCInt(self: RID): cint {.
noSideEffect,
importc: "godot_rid_get_id".}
proc id*(self: RID): uint32 {.inline.} =
cast[uint32](getGDNativeAPI().ridGetId(self))
cast[uint32](self.idCInt())
proc `$`*(self: RID): string {.inline.} =
$self.id
proc hash*(self: RID): Hash {.inline.} =
self.id.hash()
proc `==`*(a, b: RID): bool {.inline.} =
getGDNativeAPI().ridOperatorEqual(a, b)
proc `<`*(a, b: RID): bool {.inline.} =
getGDNativeAPI().ridOperatorLess(a, b)
proc `==`*(a, b: RID): bool {.
importc: "godot_rid_operator_equal".}
proc `<`*(a, b: RID): bool {.
importc: "godot_rid_operator_less".}

View file

@ -1,79 +1,76 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import hashes, vector2
import vector2, rect2
import internal/godotinternaltypes, internal/godotstrings
import godotcoretypes, gdnativeapi
import internal.godotstrings
type
Transform2D* {.byref.} = object
elements*: array[3, Vector2]
proc initTransform2D(dest: var Transform2D) {.
importc: "godot_transform2d_new_identity".}
proc initTransform2D(dest: var Transform2D; rot: float32; pos: Vector2) {.
importc: "godot_transform2d_new".}
proc initTransform2D(dest: var Transform2D; xAxis, yAxis, origin: Vector2) {.
importc: "godot_transform2d_new_axis_origin".}
proc initTransform2D*(): Transform2D {.inline.} =
getGDNativeAPI().transform2DNewIdentity(result)
initTransform2D(result)
proc initTransform2D*(rot: float32; pos: Vector2): Transform2D {.inline.} =
getGDNativeAPI().transform2DNew(result, rot, pos)
initTransform2D(result, rot, pos)
proc initTransform2D*(xAxis, yAxis, origin: Vector2): Transform2D {.inline.} =
getGDNativeAPI().transform2DNewAxisOrigin(result, xAxis, yAxis, origin)
initTransform2D(result, xAxis, yAxis, origin)
proc toGodotString(self: Transform2D): GodotString {.
importc: "godot_transform2d_as_string".}
proc `$`*(self: Transform2D): string {.inline.} =
$getGDNativeAPI().transform2DAsString(self)
$self.toGodotString()
proc hash*(self: Transform2D): Hash {.inline, noinit.} =
!$(self.elements[0].hash() !& self.elements[1].hash() !& self.elements[2].hash())
proc inverse*(self: Transform2D): Transform2D {.inline.} =
getGDNativeAPI().transform2DInverse(self).toTransform2D()
proc affineInverse*(self: Transform2D): Transform2D {.inline.} =
getGDNativeAPI().transform2DAffineInverse(self).toTransform2D()
proc rotation*(self: Transform2D): float32 {.inline.} =
getGDNativeAPI().transform2DGetRotation(self)
proc origin*(self: Transform2D): Vector2 {.inline.} =
getGDNativeAPI().transform2DGetOrigin(self).toVector2()
proc scale*(self: Transform2D): Vector2 {.inline.} =
getGDNativeAPI().transform2DGetScale(self).toVector2()
proc orthonormalized*(self: Transform2D): Transform2D {.inline.} =
getGDNativeAPI().transform2DOrthonormalized(self).toTransform2D()
proc rotated*(self: Transform2D; phi: float32): Transform2D {.inline.} =
getGDNativeAPI().transform2DRotated(self, phi).toTransform2D()
proc scaled*(self: Transform2D; scale: Vector2): Transform2D {.inline.} =
getGDNativeAPI().transform2DScaled(self, scale).toTransform2D()
proc translated*(self: Transform2D; offset: Vector2): Transform2D {.inline.} =
getGDNativeAPI().transform2DTranslated(self, offset).toTransform2D()
proc xformVector2*(self: Transform2D; v: Vector2): Vector2 {.inline.} =
getGDNativeAPI().transform2DXformVector2(self, v).toVector2()
proc xformInvVector2*(self: Transform2D; v: Vector2): Vector2 {.inline.} =
getGDNativeAPI().transform2DXformInvVector2(self, v).toVector2()
proc basisXformVector2*(self: Transform2D; v: Vector2): Vector2 {.inline.} =
getGDNativeAPI().transform2DBasisXformVector2(self, v).toVector2()
proc basisXformInvVector2*(self: Transform2D; v: Vector2): Vector2 {.inline.} =
getGDNativeAPI().transform2DBasisXformInvVector2(self, v).toVector2()
proc xformRect2*(self: Transform2D; rect: Rect2): Rect2 {.inline.} =
getGDNativeAPI().transform2DXformRect2(self, rect).toRect2()
proc xformInvRect2*(self: Transform2D; rect: Rect2): Rect2 {.inline.} =
getGDNativeAPI().transform2DXformInvRect2(self, rect).toRect2()
proc inverse*(self: Transform2D): Transform2D {.
importc: "godot_transform2d_inverse".}
proc affineInverse*(self: Transform2D): Transform2D {.
importc: "godot_transform2d_affine_inverse".}
proc rotation*(self: Transform2D): float32 {.
importc: "godot_transform2d_get_rotation".}
proc origin*(self: Transform2D): Vector2 {.
importc: "godot_transform2d_get_origin".}
proc scale*(self: Transform2D): Vector2 {.
importc: "godot_transform2d_get_scale".}
proc orthonormalized*(self: Transform2D): Transform2D {.
importc: "godot_transform2d_orthonormalized".}
proc rotated*(self: Transform2D; phi: float32): Transform2D {.
importc: "godot_transform2d_rotated".}
proc scaled*(self: Transform2D; scale: Vector2): Transform2D {.
importc: "godot_transform2d_scaled".}
proc translated*(self: Transform2D;
offset: Vector2): Transform2D {.
importc: "godot_transform2d_translated".}
proc xformVector2*(self: Transform2D; v: Vector2): Vector2 {.
importc: "godot_transform2d_xform_vector2".}
proc xformInvVector2*(self: Transform2D; v: Vector2): Vector2 {.
importc: "godot_transform2d_xform_inv_vector2".}
proc basisXformVector2*(self: Transform2D;
v: Vector2): Vector2 {.
importc: "godot_transform2d_basis_xform_vector2".}
proc basisXformInvVector2*(self: Transform2D;
v: Vector2): Vector2 {.
importc: "godot_transform2d_basis_xform_inv_vector2".}
proc xformRect2*(self: Transform2D; v: Rect2): Rect2 {.
importc: "godot_transform2d_xform_rect2".}
proc xformInvRect2*(self: Transform2D; v: Rect2): Rect2 {.
importc: "godot_transform2d_xform_inv_rect2".}
proc interpolateWith*(self, m: Transform2D;
c: float32): Transform2D {.inline.} =
getGDNativeAPI().transform2DInterpolateWith(self, m, c).toTransform2D()
proc `==`*(a, b: Transform2D): bool {.inline.} =
getGDNativeAPI().transform2DOperatorEqual(a, b)
proc `*`*(a, b: Transform2D): Transform2D {.inline.} =
getGDNativeAPI().transform2DOperatorMultiply(a, b).toTransform2D()
c: float32): Transform2D {.
importc: "godot_transform2d_interpolate_with".}
proc `==`*(a, b: Transform2D): bool {.
importc: "godot_transform2d_operator_equal".}
proc `*`*(a, b: Transform2D): Transform2D {.
importc: "godot_transform2d_operator_multiply".}
proc `*=`*(a: var Transform2D, b: Transform2D) {.inline.} =
a = a * b

View file

@ -1,13 +1,16 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import hashes
import basis, vector3, planes, rect3
import internal/godotinternaltypes, internal/godotstrings
import godotcoretypes, gdnativeapi
import basis, vector3
import internal.godotstrings
type
Transform* {.byref.} = object
basis*: Basis
origin*: Vector3
proc initTransform*(): Transform {.inline.} =
result.basis = initBasis()
discard
proc initTransform*(xAxis, yAxis, zAxis,
origin: Vector3): Transform {.inline.} =
@ -20,57 +23,45 @@ proc initTransform*(xAxis, yAxis, zAxis,
proc initTransform*(basis: Basis, origin: Vector3): Transform {.inline.} =
Transform(basis: basis, origin: origin)
proc toGodotString(self: Transform): GodotString {.
importc: "godot_transform_as_string".}
proc `$`*(self: Transform): string {.inline.} =
$getGDNativeAPI().transformAsString(self)
proc hash*(self: Transform): Hash {.inline.} =
!$(self.basis.hash() !& self.origin.hash())
proc inverse*(self: Transform): Transform {.inline.} =
getGDNativeAPI().transformInverse(self).toTransform()
proc affineInverse*(self: Transform): Transform {.inline.} =
getGDNativeAPI().transformAffineInverse(self).toTransform()
proc orthonormalized*(self: Transform): Transform {.inline.} =
getGDNativeAPI().transformOrthonormalized(self).toTransform()
$self.toGodotString()
proc inverse*(self: Transform): Transform {.
importc: "godot_transform_inverse".}
proc affineInverse*(self: Transform): Transform {.
importc: "godot_transform_affine_inverse".}
proc orthonormalized*(self: Transform): Transform {.
importc: "godot_transform_orthonormalized".}
proc rotated*(self: Transform; axis: Vector3;
phi: float32): Transform {.inline.} =
getGDNativeAPI().transformRotated(self, axis, phi).toTransform()
phi: float32): Transform {.
importc: "godot_transform_rotated".}
proc scaled*(self: Transform; scale: Vector3): Transform {.
importc: "godot_transform_scaled".}
proc translated*(self: Transform; offset: Vector3): Transform {.
importc: "godot_transform_translated".}
proc lookingAt*(self: Transform;
target, up: Vector3): Transform {.
importc: "godot_transform_looking_at".}
proc scaled*(self: Transform; scale: Vector3): Transform {.inline.} =
getGDNativeAPI().transformScaled(self, scale).toTransform()
proc xformPlane*(self: Transform; v: Plane): Plane {.
importc: "godot_transform_xform_plane".}
proc xformInvPlane*(self: Transform; v: Plane): Plane {.
importc: "godot_transform_xform_inv_plane".}
proc xformVector3*(self: Transform; v: Vector3): Vector3 {.
importc: "godot_transform_xform_vector3".}
proc xformInvVector3*(self: Transform; v: Vector3): Vector3 {.
importc: "godot_transform_xform_inv_vector3".}
proc xformRect3*(self: Transform; v: Vector3): Rect3 {.
importc: "godot_transform_xform_rect3".}
proc xformInvRect3*(self: Transform; v: Vector3): Vector3 {.
importc: "godot_transform_xform_inv_rect3".}
proc translated*(self: Transform; offset: Vector3): Transform {.inline.} =
getGDNativeAPI().transformTranslated(self, offset).toTransform()
proc lookingAt*(self: Transform; target, up: Vector3): Transform {.inline.} =
getGDNativeAPI().transformLookingAt(self, target, up).toTransform()
proc xformPlane*(self: Transform; plane: Plane): Plane {.inline.} =
getGDNativeAPI().transformXformPlane(self, plane).toPlane()
proc xformInvPlane*(self: Transform; plane: Plane): Plane {.inline.} =
getGDNativeAPI().transformXformInvPlane(self, plane).toPlane()
proc xformVector3*(self: Transform; v: Vector3): Vector3 {.inline.} =
getGDNativeAPI().transformXformVector3(self, v).toVector3()
proc xformInvVector3*(self: Transform; v: Vector3): Vector3 {.inline.} =
getGDNativeAPI().transformXformInvVector3(self, v).toVector3()
proc xformAABB*(self: Transform; rect: AABB): AABB {.inline.} =
getGDNativeAPI().transformXformAABB(self, rect).toAABB()
proc xformInvAABB*(self: Transform; rect: AABB): AABB {.inline.} =
getGDNativeAPI().transformXformInvAABB(self, rect).toAABB()
proc `==`*(self: Transform; b: Transform): bool {.inline.} =
getGDNativeAPI().transformOperatorEqual(self, b)
proc `*`*(self, other: Transform): Transform {.inline.} =
getGDNativeAPI().transformOperatorMultiply(self, other).toTransform()
proc `*=`*(self: var Transform, other: Transform) {.inline.} =
self = self * other
proc `==`*(self: Transform; b: Transform): bool {.
importc: "godot_transform_operator_equal".}
proc `*`*(a, b: Transform): Transform {.
importc: "godot_transform_operator_multiply".}
proc `*=`*(a: var Transform, b: Transform) {.inline.} =
a = a * b

View file

@ -1,9 +1,7 @@
import tables, hashes
import tables
import godotcoretypes
import internal/godotinternaltypes, internal/godotvariants,
internal/godotstrings, internal/godotdictionaries,
internal/godotarrays
import internal.godotobjects, internal.godotvariants, internal.godotpoolarrays,
internal.godotstrings, internal.godotnodepaths
type
Variant* = ref object
@ -29,9 +27,6 @@ proc variantFinalizer*(v: Variant) =
if not v.noDeinit:
v.godotVariant.deinit()
proc `$`*(self: Variant): string {.inline.} =
$self.godotVariant
proc newVariant*(): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant)
@ -73,16 +68,12 @@ proc newVariant*(r: cdouble): Variant {.inline.} =
proc newVariant*(s: string): Variant {.inline.} =
new(result, variantFinalizer)
when (NimMajor, NimMinor, NimPatch) < (0, 19, 0):
if s.isNil:
initGodotVariant(result.godotVariant)
return
var godotStr = s.toGodotString()
initGodotVariant(result.godotVariant, godotStr)
godotStr.deinit()
import basis, nodepaths
import planes, quats, rect2, aabb, rids
import planes, quats, rect2, rect3, rids
import transforms, transform2d, vector2
import vector3, colors
@ -110,9 +101,9 @@ proc newVariant*(quat: Quat): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, quat)
proc newVariant*(aabb: AABB): Variant {.inline.} =
proc newVariant*(rect3: Rect3): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, aabb)
initGodotVariant(result.godotVariant, rect3)
proc newVariant*(basis: Basis): Variant {.inline.} =
new(result, variantFinalizer)
@ -142,152 +133,114 @@ proc newVariant*(obj: ptr GodotObject): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, obj)
import poolarrays
import arrays, poolarrays
proc newVariant*(arr: Array): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, arr.godotArray[])
proc newVariant*(pba: PoolByteArray): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, pba.godotPoolByteArray[])
proc newVariant*(pia: PoolIntArray): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, pia.godotPoolIntArray[])
proc newVariant*(pra: PoolRealArray): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, pra.godotPoolRealArray[])
proc newVariant*(psa: PoolStringArray): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, psa.godotPoolStringArray[])
proc newVariant*(pv2a: PoolVector2Array): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, pv2a.godotPoolVector2Array[])
proc newVariant*(pv3a: PoolVector3Array): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, pv3a.godotPoolVector3Array[])
proc newVariant*(pca: PoolColorArray): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, pca.godotPoolColorArray[])
proc asBool*(self: Variant): bool {.inline.} =
self.godotVariant.asBool()
proc asUInt*(self: Variant): uint64 {.inline.} =
proc asUInt*(self: Variant): uint64 =
self.godotVariant.asUInt()
proc asInt*(self: Variant): int64 {.inline.} =
proc asInt*(self: Variant): int64 =
self.godotVariant.asInt()
proc asReal*(self: Variant): cdouble {.inline.} =
proc asReal*(self: Variant): cdouble =
self.godotVariant.asReal()
proc asString*(self: Variant): string {.inline.} =
$self
proc asString*(self: Variant): string =
var s = self.godotVariant.asGodotString()
result = $s
s.deinit()
proc asVector2*(self: Variant): Vector2 {.inline.} =
proc asVector2*(self: Variant): Vector2 =
self.godotVariant.asVector2()
proc asRect2*(self: Variant): Rect2 {.inline.} =
proc asRect2*(self: Variant): Rect2 =
self.godotVariant.asRect2()
proc asVector3*(self: Variant): Vector3 {.inline.} =
proc asVector3*(self: Variant): Vector3 =
self.godotVariant.asVector3()
proc asTransform2D*(self: Variant): Transform2D {.inline.} =
proc asTransform2D*(self: Variant): Transform2D =
self.godotVariant.asTransform2D()
proc asPlane*(self: Variant): Plane {.inline.} =
proc asPlane*(self: Variant): Plane =
self.godotVariant.asPlane()
proc asQuat*(self: Variant): Quat {.inline.} =
proc asQuat*(self: Variant): Quat =
self.godotVariant.asQuat()
proc asAABB*(self: Variant): AABB {.inline.} =
self.godotVariant.asAABB()
proc asRect3*(self: Variant): Rect3 =
self.godotVariant.asRect3()
proc asBasis*(self: Variant): Basis {.inline.} =
proc asBasis*(self: Variant): Basis =
self.godotVariant.asBasis()
proc asTransform*(self: Variant): Transform {.inline.} =
proc asTransform*(self: Variant): Transform =
self.godotVariant.asTransform()
proc asColor*(self: Variant): Color {.inline.} =
proc asColor*(self: Variant): Color =
self.godotVariant.asColor()
proc asNodePath*(self: Variant): NodePath {.inline.} =
proc asNodePath*(self: Variant): NodePath =
result = newNodePath(self.godotVariant.asNodePath())
proc asRID*(self: Variant): RID {.inline.} =
proc asRID*(self: Variant): RID =
self.godotVariant.asRID()
proc asGodotObject*(self: Variant): ptr GodotObject {.inline.} =
proc asGodotObject*(self: Variant): ptr GodotObject =
self.godotVariant.asGodotObject()
proc asPoolByteArray*(self: Variant): PoolByteArray {.inline.} =
proc asArray*(self: Variant): Array =
newArray(self.godotVariant.asGodotArray())
proc asPoolByteArray*(self: Variant): PoolByteArray =
newPoolByteArray(self.godotVariant.asGodotPoolByteArray())
proc asPoolIntArray*(self: Variant): PoolIntArray {.inline.} =
proc asPoolIntArray*(self: Variant): PoolIntArray =
newPoolIntArray(self.godotVariant.asGodotPoolIntArray())
proc asPoolRealArray*(self: Variant): PoolRealArray {.inline.} =
proc asPoolRealArray*(self: Variant): PoolRealArray =
newPoolRealArray(self.godotVariant.asGodotPoolRealArray())
proc asPoolStringArray*(self: Variant): PoolStringArray {.inline.} =
proc asPoolStringArray*(self: Variant): PoolStringArray =
newPoolStringArray(self.godotVariant.asGodotPoolStringArray())
proc asPoolVector2Array*(self: Variant): PoolVector2Array {.inline.} =
proc asPoolVector2Array*(self: Variant): PoolVector2Array =
newPoolVector2Array(self.godotVariant.asGodotPoolVector2Array())
proc asPoolVector3Array*(self: Variant): PoolVector3Array {.inline.} =
proc asPoolVector3Array*(self: Variant): PoolVector3Array =
newPoolVector3Array(self.godotVariant.asGodotPoolVector3Array())
proc asPoolColorArray*(self: Variant): PoolColorArray {.inline.} =
proc asPoolColorArray*(self: Variant): PoolColorArray =
newPoolColorArray(self.godotVariant.asGodotPoolColorArray())
proc hash*(self: Variant): Hash =
proc objectHash(obj: ptr GodotObject): Hash =
if not obj.isNil: cast[int](obj).hash() else: 0.hash()
result = case self.getType():
of VariantType.Nil: Hash(0)
of VariantType.Bool: self.asBool().hash()
of VariantType.Int: self.asInt().hash()
of VariantType.Real: self.asReal().hash()
of VariantType.String: self.asString().hash()
of VariantType.Vector2: self.asVector2().hash()
of VariantType.Rect2: self.asRect2().hash()
of VariantType.Vector3: self.asVector3().hash()
of VariantType.Transform2D: self.asTransform2D().hash()
of VariantType.Plane: self.asPlane().hash()
of VariantType.Quat: self.asQuat().hash()
of VariantType.AABB: self.asAABB().hash()
of VariantType.Basis: self.asBasis().hash()
of VariantType.Transform: self.asTransform().hash()
of VariantType.Color: self.asColor().hash()
of VariantType.NodePath: self.asNodePath().hash()
of VariantType.RID: self.asRID().hash()
of VariantType.Object: self.asGodotObject().objectHash()
of VariantType.Dictionary: hash(self.godotVariant.asGodotDictionary().godotHash())
of VariantType.Array: hash(self.godotVariant.asGodotArray().godotHash())
of VariantType.PoolByteArray: self.asPoolByteArray().hash()
of VariantType.PoolIntArray: self.asPoolIntArray().hash()
of VariantType.PoolRealArray: self.asPoolRealArray().hash()
of VariantType.PoolStringArray: self.asPoolStringArray().hash()
of VariantType.PoolVector2Array: self.asPoolVector2Array().hash()
of VariantType.PoolVector3Array: self.asPoolVector3Array().hash()
of VariantType.PoolColorArray: self.asPoolColorArray().hash()
import arrays
proc newVariant*(arr: Array): Variant {.inline.} =
new(result, variantFinalizer)
initGodotVariant(result.godotVariant, arr.godotArray[])
proc asArray*(self: Variant): Array {.inline.} =
newArray(self.godotVariant.asGodotArray())
proc hasMethod*(self: Variant; meth: string): bool =
var s = meth.toGodotString()
result = self.godotVariant.hasMethod(s)
@ -304,5 +257,5 @@ proc `<`*(self, other: Variant): bool =
proc hashCompare*(self, other: Variant): bool =
self.godotVariant.hashCompare(other.godotVariant)
proc booleanize*(self: Variant): bool =
self.godotVariant.booleanize()
proc booleanize*(self: Variant; isValid: var bool): bool =
self.godotVariant.booleanize(isValid)

View file

@ -1,214 +1,109 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import math, godotbase, hashes
import internal.godotstrings
import internal/godotinternaltypes, internal/godotstrings
import godotcoretypes, gdnativeapi
type
Vector2* {.byref.} = object
x*: float32
y*: float32
const EPSILON = 0.00001'f32
{.push stackTrace: off.}
proc vec2*(): Vector2 {.inline, noinit.} =
Vector2()
proc vec2*(x, y: float32): Vector2 {.inline, noinit.} =
proc vec2*(x, y: float32): Vector2 {.inline.} =
Vector2(x: x, y: y)
proc `$`*(self: Vector2): string {.inline, noinit.} =
$getGDNativeAPI().vector2AsString(self)
proc toGodotString(self: Vector2): GodotString {.
importc: "godot_vector2_as_string".}
proc hash*(self: Vector2): Hash {.inline, noinit.} =
!$(self.x.hash() !& self.y.hash())
proc `$`*(self: Vector2): string {.inline.} =
$self.toGodotString()
proc `+`*(self, other: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: self.x + other.x, y: self.y + other.y)
proc normalized*(self: Vector2): Vector2 {.
importc: "godot_vector2_normalized".}
proc length*(self: Vector2): float32 {.
importc: "godot_vector2_length".}
proc angle*(self: Vector2): float32 {.
importc: "godot_vector2_angle".}
proc lengthSquared*(self: Vector2): float32 {.
importc: "godot_vector2_length_squared".}
proc isNormalized*(self: Vector2): bool {.
importc: "godot_vector2_is_normalized".}
proc distanceTo*(self, to: Vector2): float32 {.
importc: "godot_vector2_distance_to".}
proc distanceSquaredTo*(self, to: Vector2): float32 {.
importc: "godot_vector2_distance_squared_to".}
proc angleTo*(self, to: Vector2): float32 {.
importc: "godot_vector2_angle_to".}
proc angleToPoint*(self, to: Vector2): float32 {.
importc: "godot_vector2_angle_to_point".}
proc lerp*(self, b: Vector2; t: float32): Vector2 {.
importc: "godot_vector2_linear_interpolate".}
proc cubicInterpolate*(self, b, pre_a, post_b: Vector2; t: float32): Vector2 {.
importc: "godot_vector2_cubic_interpolate".}
proc rotated*(self: Vector2; phi: float32): Vector2 {.
importc: "godot_vector2_rotated".}
proc tangent*(self: Vector2): Vector2 {.
importc: "godot_vector2_tangent".}
proc floor*(self: Vector2): Vector2 {.
importc: "godot_vector2_floor".}
proc snapped*(self: Vector2; by: Vector2): Vector2 {.
importc: "godot_vector2_snapped".}
proc aspect*(self: Vector2): float32 {.
importc: "godot_vector2_aspect".}
proc dot*(a, b: Vector2): float32 {.
importc: "godot_vector2_dot".}
proc slide*(self, n: Vector2): Vector2 {.
importc: "godot_vector2_slide".}
proc bounce*(self, n: Vector2): Vector2 {.
importc: "godot_vector2_bounce".}
proc reflect*(self, n: Vector2): Vector2 {.
importc: "godot_vector2_reflect".}
proc abs*(self: Vector2): Vector2 {.
importc: "godot_vector2_abs".}
proc clamped*(self: Vector2; length: float32): Vector2 {.
importc: "godot_vector2_clamped".}
proc `+=`*(self: var Vector2, other: Vector2) {.inline, noinit.} =
self.x += other.x
self.y += other.y
proc `+`*(a, b: Vector2): Vector2 {.
importc: "godot_vector2_operator_add".}
proc `+=`*(a: var Vector2, b: Vector2) {.inline.} =
a += b
proc `-`*(self, other: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: self.x - other.x, y: self.y - other.y)
proc `-`*(a, b: Vector2): Vector2 {.
importc: "godot_vector2_operator_substract".}
proc `-=`*(a: var Vector2, b: Vector2) {.inline.} =
a = a - b
proc `-=`*(self: var Vector2, other: Vector2) {.inline, noinit.} =
self.x -= other.x
self.y -= other.y
proc `*`*(a, b: Vector2): Vector2 {.
importc: "godot_vector2_operator_multiply_vector".}
proc `*`*(self, other: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: self.x * other.x, y: self.y * other.y)
proc `*=`*(a: var Vector2, b: Vector2) {.inline.} =
a = a * b
proc `*=`*(self: var Vector2, other: Vector2) {.inline, noinit.} =
self.x *= other.x
self.y *= other.y
proc `*`*(self: Vector2, scalar: float32): Vector2 {.
importc: "godot_vector2_operator_multiply_scalar".}
proc `*=`*(self: var Vector2, scalar: float32) {.inline.} =
self = self * scalar
proc `*`*(self: Vector2, scalar: float32): Vector2 {.inline, noinit.} =
Vector2(x: self.x * scalar, y: self.y * scalar)
proc `/`*(a, b: Vector2): Vector2 {.
importc: "godot_vector2_operator_divide_vector".}
proc `/=`*(a: var Vector2, b: Vector2) {.inline.} =
a = a / b
proc `*`*(scalar: float32, v: Vector2): Vector2 {.inline, noinit.} =
v * scalar
proc `*=`*(self: var Vector2, scalar: float32) {.inline, noinit.} =
self.x *= scalar
self.y *= scalar
proc `/`*(self, other: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: self.x / other.x, y: self.y / other.y)
proc `/=`*(self: var Vector2, other: Vector2) {.inline, noinit.} =
self.x /= other.x
self.y /= other.y
proc `/`*(self: Vector2; scalar: float32): Vector2 {.inline, noinit.} =
Vector2(x: self.x / scalar, y: self.y / scalar)
proc `/=`*(self: var Vector2; scalar: float32) {.inline, noinit.} =
proc `/`*(self: Vector2; scalar: float32): Vector2 {.
importc: "godot_vector2_operator_divide_scalar".}
proc `/=`*(self: var Vector2; scalar: float32) {.inline.} =
self = self / scalar
proc `==`*(self, other: Vector2): bool {.inline, noinit.} =
self.x == other.x and self.y == other.y
proc `==`*(a, b: Vector2): bool {.
importc: "godot_vector2_operator_equal".}
proc `<`*(a, b: Vector2): bool {.
importc: "godot_vector2_operator_less".}
proc `-`*(self: Vector2): Vector2 {.
importc: "godot_vector2_operator_neg".}
proc `<`*(self, other: Vector2): bool {.inline, noinit.} =
if self.x == other.x:
self.y < other.y
else:
self.x < other.x
proc `>`*(self, other: Vector2): bool {.inline, noinit.} =
if self.x == other.x:
self.y > other.y
else:
self.x > other.x
proc `-`*(self: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: -self.x, y: -self.y)
proc length*(self: Vector2): float32 {.inline, noinit.} =
sqrt(self.x * self.x + self.y * self.y)
proc lengthSquared*(self: Vector2): float32 {.inline, noinit.} =
self.x * self.x + self.y * self.y
proc normalize*(self: var Vector2) {.inline.} =
var len = self.x * self.x + self.y * self.y
if len != 0:
len = sqrt(len)
self.x /= len
self.y /= len
proc normalized*(self: Vector2): Vector2 {.inline, noinit.} =
result = self
result.normalize()
proc angle*(self: Vector2): float32 {.inline, noinit.} =
arctan2(self.y, self.x)
proc isNormalized*(self: Vector2): bool {.inline, noinit.} =
isEqualApprox(self.lengthSquared(), 1.0)
proc distanceTo*(self, to: Vector2): float32 {.inline, noinit.} =
sqrt((self.x - to.x) * (self.x - to.x) + (self.y - to.y) * (self.y - to.y))
proc distanceSquaredTo*(self, to: Vector2): float32 {.inline, noinit.} =
(self.x - to.x) * (self.x - to.x) + (self.y - to.y) * (self.y - to.y)
proc dot*(a, b: Vector2): float32 {.inline, noinit.} =
a.x * b.x + a.y * b.y
proc cross*(a, b: Vector2): float32 {.inline, noinit.} =
a.x * b.y - a.y * b.x
proc cross*(self: Vector2, scalar: float32): Vector2 {.inline, noinit.} =
Vector2(x: scalar * self.y, y: -scalar * self.x)
proc angleTo*(self, to: Vector2): float32 {.noinit.} =
arctan2(cross(self, to), dot(self, to))
proc angleToPoint*(self, to: Vector2): float32 {.inline, noinit.} =
arctan2(self.y - to.y, self.x - to.x)
proc floor*(self: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: floor(self.x), y: floor(self.y))
proc planeProject*(self: Vector2, d: float32,
vec: Vector2): Vector2 {.noinit.} =
vec - self * (self.dot(vec) - d)
proc project*(self, other: Vector2): Vector2 {.noinit.} =
self * (other.dot(self) / self.dot(self))
proc lerp*(self, b: Vector2; t: float32): Vector2 {.inline, noinit.} =
result = self
result.x += t * (b.x - self.x)
result.y += t * (b.y - self.y)
proc cubicInterpolate*(self, b, preA, postB: Vector2;
t: float32): Vector2 {.noinit.} =
let p0 = preA
let p1 = self
let p2 = b
let p3 = postB
let t2 = t * t
let t3 = t2 * t
result = 0.5'f32 * ((p1 * 2.0'f32)) +
(-p0 + p2) * t +
(2.0 * p0 - 5.0 * p1 + 4 * p2 - p3) * t2 +
(-p0 + 3.0 * p1 - 3.0 * p2 + p3) * t3
proc setRotation*(self: var Vector2, radians: float32) {.inline, noinit.} =
self.x = cos(radians)
self.y = sin(radians)
proc rotated*(self: Vector2; phi: float32): Vector2 {.inline, noinit.} =
result.setRotation(phi)
result *= self.length()
proc tangent*(self: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: self.y, y: -self.x)
proc snapped*(self: Vector2; by: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: stepify(self.x, by.x), y: stepify(self.y, by.y))
proc aspect*(self: Vector2): float32 {.inline, noinit.} =
self.x / self.y
proc slide*(self, n: Vector2): Vector2 {.noinit.} =
when not defined(release):
if not n.isNormalized():
printError("Normal not normalized in slide. " & getStackTrace())
return vec2()
result = self - n * self.dot(n)
proc reflect*(self, n: Vector2): Vector2 {.noinit.} =
when not defined(release):
if not n.isNormalized():
printError("Normal not normalized in bounce. " & getStackTrace())
return vec2()
result = 2.0 * n * self.dot(n) - self
proc bounce*(self, n: Vector2): Vector2 {.inline, noinit.} =
-self.reflect(n)
proc abs*(self: Vector2): Vector2 {.inline, noinit.} =
Vector2(x: abs(self.x), y: abs(self.y))
proc clamped*(self: Vector2; length: float32): Vector2 {.noinit.} =
let len = self.length()
result = self
if len > 0 and length < len:
result /= len
result *= length
proc moveToward*(vFrom, to: Vector2, delta: float32): Vector2 =
let
vd = to - vFrom
vLen = vd.length
if vLen <= delta or vLen < EPSILON:
result = to
else:
result = vFrom + (vd / vLen) * delta
{.pop.} # stackTrace: off
proc `x=`*(self: var Vector2; x: float32) {.
importc: "godot_vector2_set_x".}
proc `y=`*(self: var Vector2; y: float32) {.
importc: "godot_vector2_set_y".}
proc x*(self: Vector2): float32 {.
importc: "godot_vector2_get_x".}
proc y*(self: Vector2): float32 {.
importc: "godot_vector2_get_y".}

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@ -1,11 +1,13 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import math, hashes
import godotbase, godotcoretypes
import math
import godotbase
const EPSILON = 0.00001'f32
{.push stackTrace: off.}
type
Vector3* {.byref.} = object
x*: float32
y*: float32
z*: float32
proc vec3*(): Vector3 {.inline.} =
Vector3()
@ -23,9 +25,6 @@ proc `$`*(self: Vector3): string {.inline.} =
result.add($self.z)
result.add(')')
proc hash*(self: Vector3): Hash {.inline, noinit.} =
!$(self.x.hash() !& self.y.hash() !& self.z.hash())
proc `+`*(a, b: Vector3): Vector3 {.inline.} =
result.x = a.x + b.x
result.y = a.y + b.y
@ -240,15 +239,3 @@ proc cubicInterpolate*(self, b, preA, postB: Vector3;
(-p0 + p2) * t +
(2.0 * p0 - 5.0 * p1 + 4 * p2 - p3) * t2 +
(-p0 + 3.0 * p1 - 3.0 * p2 + p3) * t3)
proc moveToward*(vFrom, to: Vector3, delta: float32): Vector3 =
let
vd = to - vFrom
vLen = vd.length
if vLen <= delta or vLen < EPSILON:
result = to
else:
result = vFrom + (vd / vLen) * delta
{.pop.} # stackTrace: off

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@ -1,18 +1,17 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import core/godotbase, godotinternal
import core/godotcoretypes
import core/vector2, core/rect2, core/vector3, core/transform2d, core/planes,
core/quats
import core/aabb, core/basis, core/transforms, core/colors, core/nodepaths,
core/rids
import core/dictionaries, core/arrays, core/poolarrays, core/variants
import core.godotbase, godotinternal
import core.vector2, core.rect2, core.vector3, core.transform2d, core.planes,
core.quats
import core.rect3, core.basis, core.transforms, core.colors, core.nodepaths,
core.rids
import core.dictionaries, core.arrays, core.poolarrays, core.variants
import nim/godotmacros, nim/godotnim
import nim.godotmacros, nim.godotnim
export godotbase, godotcoretypes, vector2, rect2, vector3, transform2d, planes,
quats, aabb, basis, transforms, colors, nodepaths, rids, dictionaries,
arrays, poolarrays, variants
export godotbase, vector2, rect2, vector3, transform2d, planes, quats,
rect3, basis, transforms, colors, nodepaths, rids, dictionaries, arrays,
poolarrays, variants
export godotmacros, godotnim
export GodotPropertyHint, GodotPropertyUsage
export GodotPropertyHint, GodotPropertyUsageFlags

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@ -1,2 +1 @@
--path:"$projectdir"
-d:useRealtimeGc

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@ -1,85 +1,262 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import internal/godotinternaltypes, internal/godotarrays,
internal/godotnodepaths, internal/godotpoolarrays, internal/godotstrings,
internal/godotvariants, internal/godotdictionaries
import internal.godotobjects, internal.godotarrays, internal.godotnodepaths,
internal.godotpoolarrays, internal.godotstrings, internal.godotvariants,
internal.godotdictionaries
import gdnativeapi
export godotinternaltypes, godotarrays, godotnodepaths, godotpoolarrays,
export godotobjects, godotarrays, godotnodepaths, godotpoolarrays,
godotstrings, godotvariants, godotdictionaries
proc getMethod*(className: cstring;
methodName: cstring): ptr GodotMethodBind {.inline.} =
getGDNativeAPI().methodBindGetMethod(className, methodName)
const MAX_ARG_COUNT* = 128
# MethodBind API
type GodotMethodBind* = object
proc getMethod*(className: cstring; methodName: cstring): ptr GodotMethodBind {.
importc: "godot_method_bind_get_method".}
proc ptrCall*(methodBind: ptr GodotMethodBind;
instance: ptr GodotObject;
args: ptr array[MAX_ARG_COUNT, pointer];
ret: pointer) {.inline.} =
getGDNativeAPI().methodBindPtrCall(methodBind, instance, args, ret)
ret: pointer) {.
importc: "godot_method_bind_ptrcall".}
proc call*(methodBind: ptr GodotMethodBind;
instance: ptr GodotObject;
args: ptr array[MAX_ARG_COUNT, ptr GodotVariant]; argCount: cint;
callError: var VariantCallError): GodotVariant {.inline.} =
getGDNativeAPI().methodBindCall(
methodBind, instance, args, argCount, callError)
callError: var VariantCallError): GodotVariant {.
importc: "godot_method_bind_call".}
proc nativeScriptRegisterClass*(libHandle: pointer; name, base: cstring;
createFunc: GodotInstanceCreateFunc;
destroyFunc: GodotInstanceDestroyFunc)
{.inline.} =
getGDNativeAPI().nativeScriptRegisterClass(
libHandle, name, base, createFunc, destroyFunc)
# Script API
proc nativeScriptRegisterToolClass*(libHandle: pointer; name, base: cstring;
createFunc: GodotInstanceCreateFunc;
destroyFunc: GodotInstanceDestroyFunc)
{.inline.} =
getGDNativeAPI().nativeScriptRegisterToolClass(
libHandle, name, base, createFunc, destroyFunc)
type
GodotNativeInitOptions* = object
inEditor*: bool
coreApiHash*: uint64
editorApiHash*: uint64
noApiHash*: uint64
gdNativeLibrary*: ptr GodotObject
proc nativeScriptRegisterMethod*(libHandle: pointer;
name: cstring; function_name: cstring;
attr: GodotMethodAttributes;
meth: GodotInstanceMethod) {.inline.} =
getGDNativeAPI().nativeScriptRegisterMethod(
libHandle, name, functionName, attr, meth)
GodotNativeTerminateOptions* = object
inEditor*: bool
proc nativeScriptRegisterProperty*(libHandle: pointer;
name, path: cstring;
attr: ptr GodotPropertyAttributes;
setFunc: GodotPropertySetFunc;
getFunc: GodotPropertyGetFunc) {.inline.} =
getGDNativeAPI().nativeScriptRegisterProperty(
libHandle, name, path, attr, setFunc, getFunc)
GodotMethodRPCMode* {.size: sizeof(cint), pure.} = enum
Disabled,
Remote,
Sync,
Master,
Slave
proc nativeScriptRegisterSignal*(libHandle: pointer; name: cstring;
signal: GodotSignal) {.inline.} =
getGDNativeAPI().nativeScriptRegisterSignal(libHandle, name, signal)
GodotMethodAttributes* = object
rpcMode*: GodotMethodRPCMode
proc getUserdata*(instance: ptr GodotObject): pointer {.inline.} =
getGDNativeAPI().nativeScriptGetUserdata(instance)
GodotPropertyHint* {.size: sizeof(cint), pure.} = enum
None, ## no hint provided.
Range, ## hint_text = "min,max,step,slider; // slider is optional"
ExpRange, ## hint_text = "min,max,step", exponential edit
Enum, ## hint_text= "val1,val2,val3,etc"
ExpEasing, ## exponential easing funciton (Math::ease)
Length, ## hint_text= "length" (as integer)
SpriteFrame,
KeyAccel, ## hint_text= "length" (as integer)
Flags, ## hint_text= "flag1,flag2,etc" (as bit flags)
Layers2DRender,
Layers2DPhysics,
Layers3DRender,
Layers3DPhysics,
File, ## a file path must be passed, hint_text (optionally)
## is a filter "*.png,*.wav,*.doc,"
Dir, ## a directort path must be passed
GlobalFile, ## a file path must be passed, hint_text (optionally) is a
## filter "*.png,*.wav,*.doc,"
GlobalDir, ## a directort path must be passed
ResourceType, ## a resource object type
MultilineText, ## used for string properties that can contain multiple lines
ColorNoAlpha, ## used for ignoring alpha component when editing a color
ImageCompressLossy,
ImageCompressLossless,
ObjectId,
TypeString, ## a type string, the hint is the base type to choose
NodePathToEditedNode, ## so something else can provide this
## (used in scripts)
MethodOfVariantType, ## a method of a type
MethodOfBaseType, ## a method of a base type
MethodOfInstance, ## a method of an instance
MethodOfScript, ## a method of a script & base
PropertyOfVariantType, ## a property of a type
PropertyOfBaseType, ## a property of a base type
PropertyOfInstance, ## a property of an instance
PropertyOfScript, ## a property of a script & base
PropertyHintMax
proc getClassConstructor*(className: cstring): GodotClassConstructor
{.inline.} =
getGDNativeAPI().getClassConstructor(className)
const
GODOT_PROPERTY_USAGE_STORAGE_VALUE = 1.cint
GODOT_PROPERTY_USAGE_EDITOR_VALUE = 2.cint
GODOT_PROPERTY_USAGE_NETWORK_VALUE = 4.cint
GODOT_PROPERTY_USAGE_EDITOR_HELPER_VALUE = 8.cint
GODOT_PROPERTY_USAGE_CHECKABLE_VALUE = 16.cint
GODOT_PROPERTY_USAGE_CHECKED_VALUE = 32.cint
GODOT_PROPERTY_USAGE_INTERNATIONALIZED_VALUE = 64.cint
GODOT_PROPERTY_USAGE_GROUP_VALUE = 128.cint
GODOT_PROPERTY_USAGE_CATEGORY_VALUE = 256.cint
GODOT_PROPERTY_USAGE_STORE_IF_NONZERO_VALUE = 512.cint
GODOT_PROPERTY_USAGE_STORE_IF_NONONE_VALUE = 1024.cint
GODOT_PROPERTY_USAGE_NO_INSTANCE_STATE_VALUE = 2048.cint
GODOT_PROPERTY_USAGE_RESTART_IF_CHANGED_VALUE = 4096.cint
GODOT_PROPERTY_USAGE_SCRIPT_VARIABLE_VALUE = 8192.cint
GODOT_PROPERTY_USAGE_STORE_IF_NULL_VALUE = 16384.cint
GODOT_PROPERTY_USAGE_ANIMATE_AS_TRIGGER_VALUE = 32768.cint
GODOT_PROPERTY_USAGE_UPDATE_ALL_IF_MODIFIED_VALUE = 65536.cint
proc deinit*(o: ptr GodotObject) {.inline.} =
getGDNativeAPI().objectDestroy(o)
GODOT_PROPERTY_USAGE_DEFAULT_VALUE: cint =
GODOT_PROPERTY_USAGE_STORAGE_VALUE or GODOT_PROPERTY_USAGE_EDITOR_VALUE or
GODOT_PROPERTY_USAGE_NETWORK_VALUE
GODOT_PROPERTY_USAGE_DEFAULT_INTL_VALUE: cint =
GODOT_PROPERTY_USAGE_STORAGE_VALUE or
GODOT_PROPERTY_USAGE_EDITOR_VALUE or GODOT_PROPERTY_USAGE_NETWORK_VALUE or
GODOT_PROPERTY_USAGE_INTERNATIONALIZED_VALUE
GODOT_PROPERTY_USAGE_NOEDITOR_VALUE: cint =
GODOT_PROPERTY_USAGE_STORAGE_VALUE or GODOT_PROPERTY_USAGE_NETWORK_VALUE
type
GodotPropertyUsageFlags* {.size: sizeof(cint), pure.} = enum
Storage = GODOT_PROPERTY_USAGE_STORAGE_VALUE
Editor = GODOT_PROPERTY_USAGE_EDITOR_VALUE
Network = GODOT_PROPERTY_USAGE_NETWORK_VALUE
NoEditor = GODOT_PROPERTY_USAGE_NOEDITOR_VALUE
Default = GODOT_PROPERTY_USAGE_DEFAULT_VALUE
EditorHelper = GODOT_PROPERTY_USAGE_EDITOR_HELPER_VALUE
Checkable = GODOT_PROPERTY_USAGE_CHECKABLE_VALUE
## used for editing global variables
Checked = GODOT_PROPERTY_USAGE_CHECKED_VALUE
## used for editing global variables
Internationalized = GODOT_PROPERTY_USAGE_INTERNATIONALIZED_VALUE
## hint for internationalized strings
DefaultIntl = GODOT_PROPERTY_USAGE_DEFAULT_INTL_VALUE
Group = GODOT_PROPERTY_USAGE_GROUP_VALUE
## used for grouping props in the editor
Category = GODOT_PROPERTY_USAGE_CATEGORY_VALUE
NonZero = GODOT_PROPERTY_USAGE_STORE_IF_NONZERO_VALUE
## only store if nonzero
NonOne = GODOT_PROPERTY_USAGE_STORE_IF_NONONE_VALUE
## only store if false
NoInstanceState = GODOT_PROPERTY_USAGE_NO_INSTANCE_STATE_VALUE
RestartIfChanged = GODOT_PROPERTY_USAGE_RESTART_IF_CHANGED_VALUE
ScriptVariable = GODOT_PROPERTY_USAGE_SCRIPT_VARIABLE_VALUE
StoreIfNull = GODOT_PROPERTY_USAGE_STORE_IF_NULL_VALUE
AnimateAsTrigger = GODOT_PROPERTY_USAGE_ANIMATE_AS_TRIGGER_VALUE
UpdateAllIfModified = GODOT_PROPERTY_USAGE_UPDATE_ALL_IF_MODIFIED_VALUE
GodotPropertyAttributes* {.bycopy.} = object
rsetType*: GodotMethodRPCMode
typ*: cint
hint*: GodotPropertyHint
hintString*: GodotString
usage*: GodotPropertyUsageFlags
defaultValue*: GodotVariant
GodotInstanceCreateFunc* {.bycopy.} = object
createFunc*:
proc (obj: ptr GodotObject; methodData: pointer): pointer {.noconv.}
## returns user data
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
GodotInstanceDestroyFunc* {.bycopy.} = object
destroyFunc*:
proc (obj: ptr GodotObject; methodData: pointer;
userData: pointer) {.noconv.}
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
proc godotScriptRegisterClass*(libHandle: pointer; name, base: cstring;
create_func: GodotInstanceCreateFunc;
destroy_func: GodotInstanceDestroyFunc) {.
importc: "godot_nativescript_register_class".}
proc godotScriptRegisterToolClass*(libHandle: pointer; name, base: cstring;
createFunc: GodotInstanceCreateFunc;
destroyFunc: GodotInstanceDestroyFunc) {.
importc: "godot_nativescript_register_tool_class".}
type
GodotInstanceMethod* {.bycopy.} = object
meth*:
proc (obj: ptr GodotObject; methodData: pointer;
userData: pointer; numArgs: cint;
args: var array[MAX_ARG_COUNT, ptr GodotVariant]):
GodotVariant {.noconv.}
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
proc godotScriptRegisterMethod*(libHandle: pointer;
name: cstring; function_name: cstring;
attr: GodotMethodAttributes;
meth: GodotInstanceMethod) {.
importc: "godot_nativescript_register_method".}
type
GodotPropertySetFunc* {.bycopy.} = object
setFunc*: proc (obj: ptr GodotObject; methodData: pointer;
userData: pointer; value: GodotVariant) {.noconv.}
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
GodotPropertyGetFunc* {.bycopy.} = object
getFunc*: proc (obj: ptr GodotObject; methodData: pointer;
userData: pointer): GodotVariant {.noconv.}
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
proc godotScriptRegisterProperty*(libHandle: pointer;
name: cstring; path: cstring;
attr: ptr GodotPropertyAttributes;
setFunc: GodotPropertySetFunc;
getFunc: GodotPropertyGetFunc) {.
importc: "godot_nativescript_register_property".}
type
GodotSignalArgument* {.bycopy.} = object
name*: GodotString
typ*: cint
hint*: GodotPropertyHint
hintString*: GodotString
usage*: GodotPropertyUsageFlags
defaultValue*: GodotVariant
GodotSignal* = object
name*: GodotString
numArgs*: cint
args*: ptr GodotSignalArgument
numDefaultArgs*: cint
defaultArgs*: ptr GodotVariant
proc godotScriptRegisterSignal*(libHandle: pointer; name: cstring;
signal: GodotSignal) {.
importc: "godot_nativescript_register_signal".}
proc getUserdata*(instance: ptr GodotObject): pointer {.
importc: "godot_nativescript_get_userdata".}
type ClassConstructor = proc (): ptr GodotObject {.noconv.}
proc getClassConstructor*(className: cstring): ClassConstructor {.
importc: "godot_get_class_constructor".}
proc godotStackBottom*(): pointer {.
importc: "godot_get_stack_bottom".}
proc deinit*(o: ptr GodotObject) {.
importc: "godot_object_destroy".}
# print using Godot's error handler list
proc godotPrintError*(description, function, file: cstring;
line: cint) {.inline.} =
getGDNativeAPI().printError(description, function, file, line)
proc godotPrintError*(description: cstring; function: cstring; file: cstring;
line: cint) {.
importc: "godot_print_error".}
proc godotPrintWarning*(description, function, file: cstring;
line: cint) {.inline.} =
getGDNativeAPI().printWarning(description, function, file, line)
proc godotPrintWarning*(description: cstring; function: cstring;
file: cstring; line: cint) {.
importc: "godot_print_warning".}
proc godotPrint*(message: GodotString) {.inline.} =
getGDNativeAPI().print(message)
proc godotPrint*(message: GodotString) {.
importc: "godot_print".}
var getClassMethodBind: ptr GodotMethodBind
proc getClassName*(o: ptr GodotObject): string =
@ -93,30 +270,22 @@ proc getClassName*(o: ptr GodotObject): string =
# There are physics type not known by ClassDB
result = result[0..result.len-3]
proc getClassNameRaw*(o: ptr GodotObject): GodotString =
if getClassMethodBind.isNil:
getClassMethodBind = getMethod(cstring"Object", cstring"get_class")
getClassMethodBind.ptrCall(o, nil, addr result)
proc getGodotSingleton*(name: cstring): ptr GodotObject {.inline.} =
getGDNativeAPI().globalGetSingleton(name)
proc getGodotSingleton*(name: cstring): ptr GodotObject {.
importc: "godot_global_get_singleton".}
# System Functions
proc godotAlloc*(bytes: cint): pointer {.inline.} =
proc godotAlloc*(bytes: cint): pointer {.
importc: "godot_alloc".}
## Allocates the specified number of bytes.
## Using this instead of stdlib proc will help Godot track how much memory
## is in use in debug mode.
getGDNativeAPI().alloc(bytes)
proc godotRealloc*(p: pointer; bytes: cint): pointer {.inline.} =
proc godotRealloc*(p: pointer; bytes: cint): pointer {.
importc: "godot_realloc".}
## Reallocates the pointer for the specified number of bytes.
## Using this instead of stdlib proc will help Godot track how much memory
## is in use in debug mode.
getGDNativeAPI().realloc(p, bytes)
proc godotFree*(p: pointer) {.inline.} =
proc godotFree*(p: pointer) {.importc: "godot_free".}
## Frees the memory pointed to by the pointer.
## Using this instead of stdlib proc will help Godot track how much memory
## is in use in debug mode.
getGDNativeAPI().free(p)

View file

@ -1,19 +0,0 @@
# Copyright 2019 Xored Software, Inc.
when (NimMajor, NimMinor, NimPatch) < (0, 19, 0):
import macros, sets
proc strVal(n: NimNode): string {.used.} =
case n.kind
of nnkIdent:
$n.ident
of nnkSym:
$n.symbol
else:
macros.strVal(n)
proc toHashSet[A](keys: openArray[A]): HashSet[A] {.inline, used.} =
toSet(keys)
proc initHashSet[A](): HashSet[A] {.inline, used.} =
initSet[A]()

View file

@ -1,162 +1,119 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import godotinternaltypes, gdnativeapi, core/godotcoretypes
proc len*(self: GodotArray): cint {.inline.} =
getGDNativeAPI().arraySize(self)
type
GodotArray* {.byref.} = object
data: array[sizeof(int), byte]
import hashes
import godotobjects, godotpoolarrays, godotvariants, godotstrings
proc initGodotArray*(dest: var GodotArray) {.inline.} =
getGDNativeAPI().arrayNew(dest)
proc initGodotArray*(dest: var GodotArray) {.
importc: "godot_array_new".}
proc initGodotArray*(dest: var GodotArray; pca: GodotPoolColorArray) {.
importc: "godot_array_new_pool_coloarray".}
proc initGodotArray*(dest: var GodotArray; pv3a: GodotPoolVector3Array) {.
importc: "godot_array_new_pool_vector3_array".}
proc initGodotArray*(dest: var GodotArray; pv2a: GodotPoolVector2Array) {.
importc: "godot_array_new_pool_vector2_array".}
proc initGodotArray*(dest: var GodotArray; psa: GodotPoolStringArray) {.
importc: "godot_array_new_pool_string_array".}
proc initGodotArray*(dest: var GodotArray; pra: GodotPoolRealArray) {.
importc: "godot_array_new_pool_real_array".}
proc initGodotArray*(dest: var GodotArray; pia: GodotPoolIntArray) {.
importc: "godot_array_new_pool_int_array".}
proc initGodotArray*(dest: var GodotArray; pba: GodotPoolByteArray) {.
importc: "godot_array_new_pool_byte_array".}
proc iniGodotArray*(dest: var GodotArray; src: GodotArray) {.
importc: "godot_array_new_copy".}
proc initGodotArray*(dest: var GodotArray;
pca: GodotPoolColorArray) {.inline.} =
getGDNativeAPI().arrayNewPoolColorArray(dest, pca)
proc deinit*(self: var GodotArray) {.importc: "godot_array_destroy".}
proc initGodotArray*(dest: var GodotArray;
pv3a: GodotPoolVector3Array) {.inline.} =
getGDNativeAPI().arrayNewPoolVector3Array(dest, pv3a)
proc initGodotArray*(dest: var GodotArray;
pv2a: GodotPoolVector2Array) {.inline.} =
getGDNativeAPI().arrayNewPoolVector2Array(dest, pv2a)
proc initGodotArray*(dest: var GodotArray;
psa: GodotPoolStringArray) {.inline.} =
getGDNativeAPI().arrayNewPoolStringArray(dest, psa)
proc initGodotArray*(dest: var GodotArray;
pra: GodotPoolRealArray) {.inline.} =
getGDNativeAPI().arrayNewPoolRealArray(dest, pra)
proc initGodotArray*(dest: var GodotArray;
pia: GodotPoolIntArray) {.inline.} =
getGDNativeAPI().arrayNewPoolIntArray(dest, pia)
proc initGodotArray*(dest: var GodotArray;
pba: GodotPoolByteArray) {.inline.} =
getGDNativeAPI().arrayNewPoolByteArray(dest, pba)
proc initGodotArray*(dest: var GodotArray; src: GodotArray) {.inline.} =
getGDNativeAPI().arrayNewCopy(dest, src)
proc deinit*(self: var GodotArray) {.inline.} =
getGDNativeAPI().arrayDestroy(self)
proc `[]=`*(self: var GodotArray; idx: cint; value: GodotVariant) {.inline.} =
getGDNativeAPI().arraySet(self, idx, value)
proc `[]`*(self: GodotArray; idx: cint): GodotVariant {.inline.} =
getGDNativeAPI().arrayGet(self, idx)
proc mget*(self: var GodotArray; idx: cint): ptr GodotVariant {.inline.} =
getGDNativeAPI().arrayOperatorIndex(self, idx)
proc add*(self: var GodotArray; value: GodotVariant) {.inline.} =
getGDNativeAPI().arrayPushBack(self, value)
proc clear*(self: var GodotArray) {.inline.} =
getGDNativeAPI().arrayClear(self)
proc count*(self: GodotArray; value: GodotVariant): cint {.inline.} =
getGDNativeAPI().arrayCount(self, value)
proc isEmpty*(self: GodotArray): bool {.inline.} =
getGDNativeAPI().arrayEmpty(self)
proc erase*(self: var GodotArray; value: GodotVariant) {.inline.} =
getGDNativeAPI().arrayErase(self, value)
proc first*(self: GodotArray): GodotVariant {.inline.} =
getGDNativeAPI().arrayFront(self)
proc last*(self: GodotArray): GodotVariant {.inline.} =
getGDNativeAPI().arrayBack(self)
proc `[]=`*(self: var GodotArray; idx: cint;
value: GodotVariant) {.
noSideEffect,
importc: "godot_array_set".}
proc `[]`*(self: GodotArray; idx: cint): GodotVariant {.
noSideEffect,
importc: "godot_array_get".}
proc mget*(self: var GodotArray; idx: cint): ptr GodotVariant {.
importc: "godot_array_operator_index".}
proc add*(self: var GodotArray; value: GodotVariant) {.
noSideEffect,
importc: "godot_array_append".}
proc clear*(self: var GodotArray) {.importc: "godot_array_clear".}
proc count*(self: GodotArray; value: GodotVariant): cint {.
noSideEffect,
importc: "godot_array_count".}
proc isEmpty*(self: GodotArray): bool {.
noSideEffect,
importc: "godot_array_empty".}
proc erase*(self: var GodotArray; value: GodotVariant) {.
importc: "godot_array_erase".}
proc first*(self: GodotArray): GodotVariant {.
noSideEffect,
importc: "godot_array_front".}
proc last*(self: GodotArray): GodotVariant {.
noSideEffect,
importc: "godot_array_back".}
proc find*(self: GodotArray; what: GodotVariant;
fromIdx: cint): cint {.inline.} =
getGDNativeAPI().arrayFind(self, what, fromIdx)
proc findLast*(self: GodotArray; what: GodotVariant): cint {.inline.} =
getGDNativeAPI().arrayFindLast(self, what)
proc contains*(self: GodotArray; value: GodotVariant): bool {.inline.} =
getGDNativeAPI().arrayHas(self, value)
proc godotHash*(self: GodotArray): cint {.inline.} =
getGDNativeAPI().arrayHash(self)
f: cint): cint {.
noSideEffect,
importc: "godot_array_find".}
proc findLast*(self: GodotArray; what: GodotVariant): cint {.
noSideEffect,
importc: "godot_array_find_last".}
proc contains*(self: GodotArray; value: GodotVariant): bool {.
noSideEffect,
importc: "godot_array_has".}
proc godotHash*(self: GodotArray): cint {.
noSideEffect,
importc: "godot_array_hash".}
proc hash*(self: GodotArray): Hash {.inline.} =
hash(godotHash(self))
proc insert*(self: var GodotArray; pos: cint;
value: GodotVariant): Error {.discardable, inline.} =
getGDNativeAPI().arrayInsert(self, pos, value)
proc reverse*(self: var GodotArray) {.inline.} =
getGDNativeAPI().arrayInvert(self)
proc popLast*(self: var GodotArray): GodotVariant {.inline.} =
getGDNativeAPI().arrayPopBack(self)
proc popFirst*(self: var GodotArray): GodotVariant {.inline.} =
getGDNativeAPI().arrayPopFront(self)
proc addLast*(self: var GodotArray; value: GodotVariant) {.inline.} =
getGDNativeAPI().arrayPushBack(self, value)
proc addFirst*(self: var GodotArray; value: GodotVariant) {.inline.} =
getGDNativeAPI().arrayPushFront(self, value)
proc delete*(self: var GodotArray; idx: cint) {.inline.} =
getGDNativeAPI().arrayRemove(self, idx)
proc setLen*(self: var GodotArray; size: cint) {.inline.} =
getGDNativeAPI().arrayResize(self, size)
value: GodotVariant) {.
importc: "godot_array_insert".}
proc reverse*(self: var GodotArray) {.importc: "godot_array_invert".}
proc popLast*(self: var GodotArray): GodotVariant {.
importc: "godot_array_pop_back".}
proc popFirst*(self: var GodotArray): GodotVariant {.
importc: "godot_array_pop_front".}
proc addLast*(self: var GodotArray; value: GodotVariant) {.
importc: "godot_array_push_back".}
proc addFirst*(self: var GodotArray; value: GodotVariant) {.
importc: "godot_array_push_front".}
proc delete*(self: var GodotArray; idx: cint) {.
importc: "godot_array_remove".}
proc setLen*(self: var GodotArray; size: cint) {.
importc: "godot_array_resize".}
proc rfind*(self: GodotArray; what: GodotVariant;
fromIdx: cint): cint {.inline.} =
getGDNativeAPI().arrayRFind(self, what, fromIdx)
f: cint): cint {.
noSideEffect,
importc: "godot_array_rfind".}
proc len*(self: GodotArray): cint {.
noSideEffect,
importc: "godot_array_size".}
proc sort*(self: var GodotArray) {.importc: "godot_array_sort".}
proc sortCustom*(self: var GodotArray; obj: var GodotObject;
funcName: GodotString) {.
importc: "godot_array_sort_custom".}
proc sort*(self: var GodotArray) {.inline.} =
getGDNativeAPI().arraySort(self)
iterator items*(arr: GodotArray): GodotVariant =
for i in 0..<arr.len:
yield arr[i]
proc sortCustom*(self: var GodotArray; obj: ptr GodotObject;
funcName: GodotString) {.inline.} =
getGDNativeAPI().arraySortCustom(self, obj, funcName)
iterator mitems*(arr: var GodotArray): var GodotVariant =
for i in 0..<arr.len:
yield arr.mget(i)[]
proc binarySearch*(self: var GodotArray, val: ptr GodotVariant,
before: bool) {.inline.} =
getGDNativeAPI().arrayBSearch(self, val, before)
iterator pairs*(arr: GodotArray): tuple[key: cint, val: GodotVariant] =
for i in 0..<arr.len:
yield (i, arr[i])
proc binarySearchCustom*(self: var GodotArray, val: ptr GodotVariant,
obj: ptr GodotObject, funcName: GodotString,
before: bool) {.inline.} =
getGDNativeAPI().arrayBSearchCustom(self, val, obj, funcName, before)
iterator items*(self: GodotArray): GodotVariant =
for i in 0.cint..<self.len:
yield self[i]
iterator mitems*(self: var GodotArray): var GodotVariant =
for i in 0.cint..<self.len:
yield self.mget(i)[]
iterator pairs*(self: GodotArray): tuple[key: cint, val: GodotVariant] =
for i in 0.cint..<self.len:
yield (i, self[i])
iterator mpairs*(self: var GodotArray): tuple[key: cint,
val: var GodotVariant] =
for i in 0.cint..<self.len:
yield (i, self.mget(i)[])
proc `$`*(self: GodotArray): string =
result = newStringOfCap(32)
result.add('[')
for item in self:
if result.len > 1:
result.add(", ")
result.add($item)
result.add(']')
iterator mpairs*(arr: var GodotArray): tuple[key: cint, val: var GodotVariant] =
for i in 0..<arr.len:
yield (i, arr.mget(i)[])

View file

@ -1,56 +1,48 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import godotinternaltypes, gdnativeapi
type
GodotDictionary* {.byref.} = object
data: array[sizeof(int), byte]
proc initGodotDictionary*(dest: var GodotDictionary) {.inline.} =
getGDNativeAPI().dictionaryNew(dest)
import godotarrays, godotvariants, godotstrings
proc initGodotDictionary*(dest: var GodotDictionary;
src: GodotDictionary) {.inline.} =
getGDNativeAPI().dictionaryNewCopy(dest, src)
proc initGodotDictionary*(dest: var GodotDictionary; src: GodotDictionary) {.
importc: "godot_dictionary_new_copy".}
proc deinit*(self: var GodotDictionary) {.inline.} =
getGDNativeAPI().dictionaryDestroy(self)
proc deinit*(self: var GodotDictionary) {.
importc: "godot_dictionary_destroy".}
proc len*(self: GodotDictionary): cint {.inline.} =
getGDNativeAPI().dictionarySize(self)
proc initGodotDictionary*(dest: var GodotDictionary) {.
importc: "godot_dictionary_new".}
proc isEmpty*(self: GodotDictionary): bool {.inline.} =
getGDNativeAPI().dictionaryEmpty(self)
proc len*(self: GodotDictionary): cint {.
importc: "godot_dictionary_size".}
proc isEmpty*(self: GodotDictionary): bool {.
importc: "godot_dictionary_empty".}
proc clear*(self: var GodotDictionary) {.
importc: "godot_dictionary_clear".}
proc contains*(self: GodotDictionary; key: GodotVariant): bool {.
importc: "godot_dictionary_has".}
proc contains*(self: GodotDictionary; keys: GodotArray): bool {.
importc: "godot_dictionary_has_all".}
proc del*(self: var GodotDictionary; key: GodotVariant) {.
importc: "godot_dictionary_erase".}
proc clear*(self: var GodotDictionary) {.inline.} =
getGDNativeAPI().dictionaryClear(self)
proc godotHash*(self: GodotDictionary): cint {.
importc: "godot_dictionary_hash".}
proc keys*(self: GodotDictionary): GodotArray {.
importc: "godot_dictionary_keys".}
proc values*(self: GodotDictionary): GodotArray {.
importc: "godot_dictionary_values".}
proc `[]`*(self: GodotDictionary; key: GodotVariant): GodotVariant {.
importc: "godot_dictionary_get".}
proc `[]=`*(self: var GodotDictionary; key, value: GodotVariant) {.
importc: "godot_dictionary_set".}
proc mget*(self: var GodotDictionary; key: GodotVariant): ptr GodotVariant {.
importc: "godot_dictionary_operator_index".}
proc contains*(self: GodotDictionary; key: GodotVariant): bool {.inline.} =
getGDNativeAPI().dictionaryHas(self, key)
proc `==`*(self, other: GodotDictionary): bool {.
importc: "godot_dictionary_operator_equal".}
proc contains*(self: GodotDictionary; keys: GodotArray): bool {.inline.} =
getGDNativeAPI().dictionaryHasAll(self, keys)
proc del*(self: var GodotDictionary; key: GodotVariant) {.inline.} =
getGDNativeAPI().dictionaryErase(self, key)
proc godotHash*(self: GodotDictionary): cint {.inline.} =
getGDNativeAPI().dictionaryHash(self, )
proc keys*(self: GodotDictionary): GodotArray {.inline.} =
getGDNativeAPI().dictionaryKeys(self)
proc values*(self: GodotDictionary): GodotArray {.inline.} =
getGDNativeAPI().dictionaryValues(self)
proc `[]`*(self: GodotDictionary; key: GodotVariant): GodotVariant {.inline.} =
getGDNativeAPI().dictionaryGet(self, key)
proc `[]=`*(self: var GodotDictionary; key, value: GodotVariant) {.inline.} =
getGDNativeAPI().dictionarySet(self, key, value)
proc mget*(self: var GodotDictionary;
key: GodotVariant): ptr GodotVariant {.inline.} =
getGDNativeAPI().dictionaryOperatorIndex(self, key)
proc `==`*(self, other: GodotDictionary): bool {.inline.} =
getGDNativeAPI().dictionaryOperatorEqual(self, other)
proc toJson*(self: GodotDictionary): GodotString {.inline.} =
getGDNativeAPI().dictionaryToJson(self)
proc toJson*(self: GodotDictionary): GodotString {.
importc: "godot_dictionary_to_json".}

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# Copyright 2018 Xored Software, Inc.
const MAX_ARG_COUNT* = 256
type
GodotArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotDictionary* {.byref.} = object
data: array[sizeof(int), byte]
GodotNodePath* {.byref.} = object
data: array[sizeof(int), byte]
GodotObject* = object
GodotPoolByteArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolByteArrayReadAccess* {.byref.} = object
data: array[1, byte]
GodotPoolByteArrayWriteAccess* {.byref.} = object
data: array[1, byte]
GodotPoolIntArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolIntArrayReadAccess* {.byref.} = object
data: array[1, byte]
GodotPoolIntArrayWriteAccess* {.byref.} = object
data: array[1, byte]
GodotPoolRealArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolRealArrayReadAccess* {.byref.} = object
data: array[1, byte]
GodotPoolRealArrayWriteAccess* {.byref.} = object
data: array[1, byte]
GodotPoolStringArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolStringArrayReadAccess* {.byref.} = object
data: array[1, byte]
GodotPoolStringArrayWriteAccess* {.byref.} = object
data: array[1, byte]
GodotPoolVector2Array* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolVector2ArrayReadAccess* {.byref.} = object
data: array[1, byte]
GodotPoolVector2ArrayWriteAccess* {.byref.} = object
data: array[1, byte]
GodotPoolVector3Array* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolVector3ArrayReadAccess* {.byref.} = object
data: array[1, byte]
GodotPoolVector3ArrayWriteAccess* {.byref.} = object
data: array[1, byte]
GodotPoolColorArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolColorArrayReadAccess* {.byref.} = object
data: array[1, byte]
GodotPoolColorArrayWriteAccess* {.byref.} = object
data: array[1, byte]
GodotString* {.byref.} = object
data: array[sizeof(int), byte]
cwchar_t* {.importc: "wchar_t", nodecl.} = object
GodotCharString* {.byref.} = object
data: array[sizeof(int), byte]
VariantType* {.size: sizeof(cint), pure.} = enum
Nil, ## atomic types
Bool,
Int,
Real,
String,
# math types
Vector2, ## 5
Rect2,
Vector3,
Transform2D,
Plane,
Quat, ## 10
AABB,
Basis,
Transform, ## misc types
Color,
NodePath, ## 15
RID,
Object,
Dictionary,
Array, ## 20
# arrays
PoolByteArray,
PoolIntArray,
PoolRealArray,
PoolStringArray,
PoolVector2Array, ## 25
PoolVector3Array,
PoolColorArray
VariantCallErrorType* {.size: sizeof(cint), pure.} = enum
OK,
InvalidMethod,
InvalidArgument,
TooManyArguments,
TooFewArguments,
InstanceIsNull
VariantCallError* = object
error*: VariantCallErrorType
argument*: cint
expected*: VariantType
GodotVariant* {.byref.} = object
data: array[2, int64]
data2: int
type GodotMethodBind* = object
type
GDNativeAPIVersion* = object
major*: cuint
minor*: cuint
GDNativeInitOptions* = object
inEditor*: bool
coreApiHash*: uint64
editorApiHash*: uint64
noApiHash*: uint64
reportVersionMismatch*: proc (library: ptr GodotObject, extension: cstring,
want: GDNativeAPIVersion, have: GDNativeAPIVersion) {.noconv.}
reportLoadingError*: proc (library: ptr GodotObject, what: cstring) {.noconv.}
gdNativeLibrary*: ptr GodotObject
gdNativeAPIStruct*: pointer
activeLibraryPath*: ptr GodotString
GDNativeTerminateOptions* = object
inEditor*: bool
GodotMethodRPCMode* {.size: sizeof(cint), pure.} = enum
Disabled,
Remote,
Sync,
Master,
Slave
GodotMethodAttributes* = object
rpcMode*: GodotMethodRPCMode
GodotPropertyHint* {.size: sizeof(cint), pure.} = enum
None, ## no hint provided.
Range, ## hint_text = "min,max,step,slider; // slider is optional"
ExpRange, ## hint_text = "min,max,step", exponential edit
Enum, ## hint_text= "val1,val2,val3,etc"
ExpEasing, ## exponential easing funciton (Math::ease)
Length, ## hint_text= "length" (as integer)
SpriteFrame,
KeyAccel, ## hint_text= "length" (as integer)
Flags, ## hint_text= "flag1,flag2,etc" (as bit flags)
Layers2DRender,
Layers2DPhysics,
Layers3DRender,
Layers3DPhysics,
File, ## a file path must be passed, hint_text (optionally)
## is a filter "*.png,*.wav,*.doc,"
Dir, ## a directort path must be passed
GlobalFile, ## a file path must be passed, hint_text (optionally) is a
## filter "*.png,*.wav,*.doc,"
GlobalDir, ## a directort path must be passed
ResourceType, ## a resource object type
MultilineText, ## used for string properties that can contain multiple lines
ColorNoAlpha, ## used for ignoring alpha component when editing a color
ImageCompressLossy,
ImageCompressLossless,
ObjectId,
TypeString, ## a type string, the hint is the base type to choose
NodePathToEditedNode, ## so something else can provide this
## (used in scripts)
MethodOfVariantType, ## a method of a type
MethodOfBaseType, ## a method of a base type
MethodOfInstance, ## a method of an instance
MethodOfScript, ## a method of a script & base
PropertyOfVariantType, ## a property of a type
PropertyOfBaseType, ## a property of a base type
PropertyOfInstance, ## a property of an instance
PropertyOfScript, ## a property of a script & base
PropertyHintMax
const
GODOT_PROPERTY_USAGE_STORAGE_VALUE = 1.cint
GODOT_PROPERTY_USAGE_EDITOR_VALUE = 2.cint
GODOT_PROPERTY_USAGE_NETWORK_VALUE = 4.cint
GODOT_PROPERTY_USAGE_EDITOR_HELPER_VALUE = 8.cint
GODOT_PROPERTY_USAGE_CHECKABLE_VALUE = 16.cint
GODOT_PROPERTY_USAGE_CHECKED_VALUE = 32.cint
GODOT_PROPERTY_USAGE_INTERNATIONALIZED_VALUE = 64.cint
GODOT_PROPERTY_USAGE_GROUP_VALUE = 128.cint
GODOT_PROPERTY_USAGE_CATEGORY_VALUE = 256.cint
GODOT_PROPERTY_USAGE_STORE_IF_NONZERO_VALUE = 512.cint
GODOT_PROPERTY_USAGE_STORE_IF_NONONE_VALUE = 1024.cint
GODOT_PROPERTY_USAGE_NO_INSTANCE_STATE_VALUE = 2048.cint
GODOT_PROPERTY_USAGE_RESTART_IF_CHANGED_VALUE = 4096.cint
GODOT_PROPERTY_USAGE_SCRIPT_VARIABLE_VALUE = 8192.cint
GODOT_PROPERTY_USAGE_STORE_IF_NULL_VALUE = 16384.cint
GODOT_PROPERTY_USAGE_ANIMATE_AS_TRIGGER_VALUE = 32768.cint
GODOT_PROPERTY_USAGE_UPDATE_ALL_IF_MODIFIED_VALUE = 65536.cint
GODOT_PROPERTY_USAGE_DEFAULT_VALUE: cint =
GODOT_PROPERTY_USAGE_STORAGE_VALUE or GODOT_PROPERTY_USAGE_EDITOR_VALUE or
GODOT_PROPERTY_USAGE_NETWORK_VALUE
GODOT_PROPERTY_USAGE_DEFAULT_INTL_VALUE: cint =
GODOT_PROPERTY_USAGE_STORAGE_VALUE or
GODOT_PROPERTY_USAGE_EDITOR_VALUE or GODOT_PROPERTY_USAGE_NETWORK_VALUE or
GODOT_PROPERTY_USAGE_INTERNATIONALIZED_VALUE
GODOT_PROPERTY_USAGE_NOEDITOR_VALUE: cint =
GODOT_PROPERTY_USAGE_STORAGE_VALUE or GODOT_PROPERTY_USAGE_NETWORK_VALUE
type
GodotPropertyUsage* {.size: sizeof(cint), pure.} = enum
Storage = GODOT_PROPERTY_USAGE_STORAGE_VALUE
Editor = GODOT_PROPERTY_USAGE_EDITOR_VALUE
Network = GODOT_PROPERTY_USAGE_NETWORK_VALUE
NoEditor = GODOT_PROPERTY_USAGE_NOEDITOR_VALUE
Default = GODOT_PROPERTY_USAGE_DEFAULT_VALUE
EditorHelper = GODOT_PROPERTY_USAGE_EDITOR_HELPER_VALUE
Checkable = GODOT_PROPERTY_USAGE_CHECKABLE_VALUE
## used for editing global variables
Checked = GODOT_PROPERTY_USAGE_CHECKED_VALUE
## used for editing global variables
Internationalized = GODOT_PROPERTY_USAGE_INTERNATIONALIZED_VALUE
## hint for internationalized strings
DefaultIntl = GODOT_PROPERTY_USAGE_DEFAULT_INTL_VALUE
Group = GODOT_PROPERTY_USAGE_GROUP_VALUE
## used for grouping props in the editor
Category = GODOT_PROPERTY_USAGE_CATEGORY_VALUE
NonZero = GODOT_PROPERTY_USAGE_STORE_IF_NONZERO_VALUE
## only store if nonzero
NonOne = GODOT_PROPERTY_USAGE_STORE_IF_NONONE_VALUE
## only store if false
NoInstanceState = GODOT_PROPERTY_USAGE_NO_INSTANCE_STATE_VALUE
RestartIfChanged = GODOT_PROPERTY_USAGE_RESTART_IF_CHANGED_VALUE
ScriptVariable = GODOT_PROPERTY_USAGE_SCRIPT_VARIABLE_VALUE
StoreIfNull = GODOT_PROPERTY_USAGE_STORE_IF_NULL_VALUE
AnimateAsTrigger = GODOT_PROPERTY_USAGE_ANIMATE_AS_TRIGGER_VALUE
UpdateAllIfModified = GODOT_PROPERTY_USAGE_UPDATE_ALL_IF_MODIFIED_VALUE
GodotPropertyAttributes* {.bycopy.} = object
rsetType*: GodotMethodRPCMode
typ*: cint
hint*: GodotPropertyHint
hintString*: GodotString
usage*: cint
defaultValue*: GodotVariant
GodotInstanceCreateFunc* {.bycopy.} = object
createFunc*:
proc (obj: ptr GodotObject; methodData: pointer): pointer {.noconv.}
## returns user data
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
GodotInstanceDestroyFunc* {.bycopy.} = object
destroyFunc*:
proc (obj: ptr GodotObject; methodData: pointer;
userData: pointer) {.noconv.}
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
GodotInstanceMethod* {.bycopy.} = object
meth*:
proc (obj: ptr GodotObject; methodData: pointer;
userData: pointer; numArgs: cint;
args: var array[MAX_ARG_COUNT, ptr GodotVariant]):
GodotVariant {.noconv.}
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
GodotPropertySetFunc* {.bycopy.} = object
setFunc*: proc (obj: ptr GodotObject; methodData: pointer;
userData: pointer; value: GodotVariant) {.noconv.}
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
GodotPropertyGetFunc* {.bycopy.} = object
getFunc*: proc (obj: ptr GodotObject; methodData: pointer;
userData: pointer): GodotVariant {.noconv.}
methodData*: pointer
freeFunc*: proc (a2: pointer) {.noconv.}
GodotSignalArgument* {.bycopy.} = object
name*: GodotString
typ*: cint
hint*: GodotPropertyHint
hintString*: GodotString
usage*: cint
defaultValue*: GodotVariant
GodotSignal* = object
name*: GodotString
numArgs*: cint
args*: ptr GodotSignalArgument
numDefaultArgs*: cint
defaultArgs*: ptr GodotVariant
GodotClassConstructor* = proc (): ptr GodotObject {.
noconv, gcsafe, locks: 0, raises: [], tags: [].}
template offset*[T](p: ptr T, offset: int): ptr T =
cast[ptr T](cast[ByteAddress](p) +% (offset * sizeof(T)))

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# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import godotinternaltypes, gdnativeapi
import godotstrings
proc initGodotNodePath*(dest: var GodotNodePath; s: GodotString) {.inline.} =
getGDNativeAPI().nodePathNew(dest, s)
type
GodotNodePath* {.byref.} = object
data: array[sizeof(int), byte]
proc initGodotNodePath*(dest: var GodotNodePath;
src: GodotNodePath) {.inline.} =
getGDNativeAPI().nodePathNewCopy(dest, src)
proc initGodotNodePath*(dest: var GodotNodePath; s: GodotString) {.
importc: "godot_node_path_new".}
proc deinit*(self: var GodotNodePath) {.
importc: "godot_node_path_destroy".}
proc toGodotString*(self: GodotNodePath): GodotString {.
importc: "godot_node_path_as_string".}
proc deinit*(self: var GodotNodePath) {.inline.} =
getGDNativeAPI().nodePathDestroy(self)
proc isAbsolute*(self: GodotNodePath): bool {.
noSideEffect, importc: "godot_node_path_is_absolute".}
proc nameCount*(self: GodotNodePath): cint {.
noSideEffect, importc: "godot_node_path_get_name_count".}
proc getName*(self: GodotNodePath; idx: cint): GodotString {.
noSideEffect, importc: "godot_node_path_get_name".}
proc subnameCount*(self: GodotNodePath): cint {.
noSideEffect, importc: "godot_node_path_get_subname_count".}
proc getSubname*(self: GodotNodePath; idx: cint): GodotString {.
noSideEffect, importc: "godot_node_path_get_subname".}
proc property*(self: GodotNodePath): GodotString {.
noSideEffect, importc: "godot_node_path_get_property".}
proc isEmpty*(self: GodotNodePath): bool {.
noSideEffect, importc: "godot_node_path_is_empty".}
proc toGodotString*(self: GodotNodePath): GodotString {.inline.} =
getGDNativeAPI().nodePathAsString(self)
proc isAbsolute*(self: GodotNodePath): bool {.inline.} =
getGDNativeAPI().nodePathIsAbsolute(self)
proc nameCount*(self: GodotNodePath): cint {.inline.} =
getGDNativeAPI().nodePathGetNameCount(self)
proc getName*(self: GodotNodePath; idx: cint): GodotString {.inline.} =
getGDNativeAPI().nodePathGetName(self, idx)
proc subnameCount*(self: GodotNodePath): cint {.inline.} =
getGDNativeAPI().nodePathGetSubnameCount(self)
proc getSubname*(self: GodotNodePath; idx: cint): GodotString {.inline.} =
getGDNativeAPI().nodePathGetSubname(self, idx)
proc getConcatenatedSubnames*(self: GodotNodePath): GodotString {.inline.} =
getGDNativeAPI().nodePathGetConcatenatedSubnames(self)
proc isEmpty*(self: GodotNodePath): bool {.inline.} =
getGDNativeAPI().nodePathIsEmpty(self)
proc `==`*(a, b: GodotNodePath): bool {.inline.} =
getGDNativeAPI().nodePathOperatorEqual(a, b)
proc `==`*(a, b: GodotNodePath): bool {.
noSideEffect, importc: "godot_node_path_operator_equal".}

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# Copyright 2017 Xored Software, Inc.
type
GodotObject* = object

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# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import godotinternaltypes, gdnativeapi
import core/godotcoretypes
type
GodotPoolByteArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolIntArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolRealArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolStringArray* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolVector2Array* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolVector3Array* {.byref.} = object
data: array[sizeof(int), byte]
GodotPoolColorArray* {.byref.} = object
data: array[sizeof(int), byte]
template genPoolArrayAPI(ArrayT, initIdent, DataT,
newProc, newCopyProc, newWithArrayProc, appendProc,
appendArrayProc, insertProc, invertProc, pushBackProc,
removeProc, resizeProc, setProc, getProc, sizeProc,
destroyProc, readProc, writeProc,
readAccessPtrProc, writeAccessPtrProc,
readAccessDestroyProc, writeAccessDestroyProc) =
proc initIdent*(dest: var ArrayT) {.inline.} =
getGDNativeAPI().newProc(dest)
import godotstrings, godotarrays
import core.godotbase, core.colors, core.vector2, core.vector3
proc initIdent*(dest: var ArrayT; src: ArrayT) {.inline.} =
getGDNativeAPI().newCopyProc(dest, src)
# byte
proc initIdent*(dest: var ArrayT; arr: GodotArray) {.inline.} =
getGDNativeAPI().newWithArrayProc(dest, arr)
proc initGodotPoolByteArray*(dest: var GodotPoolByteArray) {.
importc: "godot_pool_byte_array_new".}
proc initGodotPoolByteArray*(dest: var GodotPoolByteArray;
src: GodotPoolByteArray) {.
importc: "godot_pool_byte_array_new_copy".}
proc initGodotPoolByteArray*(dest: var GodotPoolByteArray; arr: GodotArray) {.
importc: "godot_pool_byte_array_new_with_array".}
proc deinit*(self: var ArrayT) {.inline.} =
getGDNativeAPI().destroyProc(self)
proc deinit*(self: var GodotPoolByteArray) {.
importc: "godot_pool_byte_array_destroy".}
proc add*(self: var ArrayT; data: DataT) {.inline.} =
getGDNativeAPI().pushBackProc(self, data)
proc add*(self: var GodotPoolByteArray;
data: uint8) {.
importc: "godot_pool_byte_array_append".}
proc addFirst*(self: var GodotPoolByteArray, data: uint8) {.
importc: "godot_pool_byte_array_push_back".}
proc add*(self: var GodotPoolByteArray;
arr: GodotPoolByteArray) {.
importc: "godot_pool_byte_array_append_array".}
proc insert*(self: var GodotPoolByteArray; idx: cint;
data: uint8): Error {.
importc: "godot_pool_byte_array_insert".}
proc delete*(self: var GodotPoolByteArray; idx: cint) {.
importc: "godot_pool_byte_array_remove".}
proc add*(self: var ArrayT; arr: ArrayT) {.inline.} =
getGDNativeAPI().appendArrayProc(self, arr)
proc reverse*(self: var GodotPoolByteArray) {.
importc: "godot_pool_byte_array_invert".}
proc setLen*(self: var GodotPoolByteArray; size: cint) {.
importc: "godot_pool_byte_array_resize".}
proc insert*(self: var ArrayT; idx: cint;
data: DataT): Error {.inline.} =
getGDNativeAPI().insertProc(self, idx, data)
proc `[]=`*(self: var GodotPoolByteArray; idx: cint; data: uint8) {.
importc: "godot_pool_byte_array_set".}
proc `[]`*(self: GodotPoolByteArray; idx: cint): uint8 {.
noSideEffect,
importc: "godot_pool_byte_array_get".}
proc len*(self: GodotPoolByteArray): cint {.
noSideEffect,
importc: "godot_pool_byte_array_size".}
proc delete*(self: var ArrayT; idx: cint) {.inline.} =
getGDNativeAPI().removeProc(self, idx)
iterator items*(arr: GodotPoolByteArray): byte =
for i in 0..<arr.len:
yield arr[i]
proc reverse*(self: var ArrayT) {.inline.} =
getGDNativeAPI().invertProc(self)
iterator pairs*(arr: GodotPoolByteArray): tuple[key: cint, val: byte] =
for i in 0..<arr.len:
yield (i, arr[i])
proc setLen*(self: var ArrayT; size: cint) {.inline.} =
getGDNativeAPI().resizeProc(self, size)
proc initGodotPoolIntArray*(dest: var GodotPoolIntArray) {.
importc: "godot_pool_int_array_new".}
proc initGodotPoolIntArray*(dest: var GodotPoolIntArray;
src: GodotPoolIntArray) {.
importc: "godot_pool_int_array_new_copy".}
proc initGodotPoolIntArray*(dest: var GodotPoolIntArray;
arr: GodotArray) {.
importc: "godot_pool_int_array_new_with_array".}
proc deinit*(self: var GodotPoolIntArray) {.
importc: "godot_pool_int_array_destroy".}
proc `[]=`*(self: var ArrayT; idx: cint; data: DataT) {.inline.} =
getGDNativeAPI().setProc(self, idx, data)
proc add*(self: var GodotPoolIntArray; data: cint) {.
importc: "godot_pool_int_array_append".}
proc addFirst*(self: var GodotPoolIntArray; data: cint) {.
importc: "godot_pool_int_array_push_back".}
proc add*(self: var GodotPoolIntArray; arr: GodotPoolIntArray) {.
importc: "godot_pool_int_array_append_array".}
proc insert*(self: var GodotPoolIntArray; idx: cint;
data: cint): Error {.
importc: "godot_pool_int_array_insert".}
proc delete*(self: var GodotPoolIntArray; idx: cint) {.
importc: "godot_pool_int_array_remove".}
proc reverse*(self: var GodotPoolIntArray) {.
importc: "godot_pool_int_array_invert".}
proc `[]`*(self: ArrayT; idx: cint): DataT {.inline.} =
let data = getGDNativeAPI().getProc(self, idx)
when DataT is Color:
data.toColor()
elif DataT is Vector2:
data.toVector2()
elif DataT is Vector3:
data.toVector3()
else:
data
proc setLen*(self: var GodotPoolIntArray; size: cint) {.
importc: "godot_pool_int_array_resize".}
proc `[]=`*(self: var GodotPoolIntArray; idx: cint; data: cint) {.
importc: "godot_pool_int_array_set".}
proc `[]`*(self: GodotPoolIntArray; idx: cint): cint {.
noSideEffect,
importc: "godot_pool_int_array_get".}
proc len*(self: GodotPoolIntArray): cint {.
noSideEffect,
importc: "godot_pool_int_array_size".}
proc len*(self: ArrayT): cint {.inline.} =
getGDNativeAPI().sizeProc(self)
iterator items*(arr: GodotPoolIntArray): cint =
for i in 0..<arr.len:
yield arr[i]
iterator items*(self: ArrayT): DataT =
let readAccess = getGDNativeAPI().readProc(self)
let readPtr = getGDNativeAPI().readAccessPtrProc(readAccess)
for i in 0.cint..<self.len:
yield readPtr.offset(i)[]
getGDNativeAPI().readAccessDestroyProc(readAccess)
iterator pairs*(arr: GodotPoolIntArray): tuple[key: cint, val: cint] =
for i in 0..<arr.len:
yield (i, arr[i])
iterator mitems*(self: var ArrayT): var DataT =
let writeAccess = getGDNativeAPI().writeProc(self)
let writePtr = getGDNativeAPI().writeAccessPtrProc(writeAccess)
for i in 0.cint..<self.len:
yield writePtr.offset(i)[]
getGDNativeAPI().writeAccessDestroyProc(writeAccess)
# Real
iterator pairs*(self: ArrayT): tuple[key: cint, val: DataT] =
let readAccess = getGDNativeAPI().readProc(self)
let readPtr = getGDNativeAPI().readAccessPtrProc(readAccess)
for i in 0.cint..<self.len:
yield (i, readPtr.offset(i)[])
getGDNativeAPI().readAccessDestroyProc(readAccess)
proc initGodotPoolRealArray*(dest: var GodotPoolRealArray) {.
importc: "godot_pool_real_array_new".}
proc initGodotPoolRealArray*(dest: var GodotPoolRealArray;
src: GodotPoolRealArray) {.
importc: "godot_pool_real_array_new_copy".}
proc initGodotPoolRealArray*(dest: var GodotPoolRealArray; arr: GodotArray) {.
importc: "godot_pool_real_array_new_with_array".}
iterator mpairs*(self: var ArrayT): tuple[key: cint, val: var DataT] =
let writeAccess = getGDNativeAPI().writeProc(self)
let writePtr = getGDNativeAPI().writeAccessPtrProc(writeAccess)
for i in 0.cint..<self.len:
yield (i, writePtr.offset(i)[])
getGDNativeAPI().writeAccessDestroyProc(writeAccess)
proc deinit*(self: var GodotPoolRealArray) {.
importc: "godot_pool_real_array_destroy".}
proc subarray*(self: ArrayT, idxFrom, idxTo: cint): ArrayT =
## Indexes are inclusive, negative values count from the end of the array.
let ownLen = self.len
var actualIdxFrom = if idxFrom < 0: idxFrom + ownLen
else: idxFrom
var actualIdxTo = if idxTo < 0: idxTo + ownLen
else: idxTo
proc add*(self: var GodotPoolRealArray; data: float32) {.
importc: "godot_pool_real_array_append".}
proc addFirst*(self: var GodotPoolRealArray; data: float32) {.
importc: "godot_pool_real_array_push_back".}
proc add*(self: var GodotPoolRealArray; arr: GodotPoolRealArray) {.
importc: "godot_pool_real_array_append_array".}
proc insert*(self: var GodotPoolRealArray;
idx: cint; data: float32): Error {.
importc: "godot_pool_real_array_insert".}
proc delete*(self: var GodotPoolRealArray; idx: cint) {.
importc: "godot_pool_real_array_remove".}
proc reverse*(self: var GodotPoolRealArray) {.
importc: "godot_pool_real_array_invert".}
proc setLen*(self: var GodotPoolRealArray; size: cint) {.
importc: "godot_pool_real_array_resize".}
proc `[]=`*(self: var GodotPoolRealArray; idx: cint; data: float32) {.
importc: "godot_pool_real_array_set".}
proc `[]`*(self: GodotPoolRealArray; idx: cint): float32 {.
noSideEffect,
importc: "godot_pool_real_array_get".}
proc len*(self: GodotPoolRealArray): cint {.
noSideEffect,
importc: "godot_pool_real_array_size".}
initIdent(result)
if actualIdxFrom < 0 or actualIdxFrom >= ownLen:
let instInfo = instantiationInfo()
getGDNativeAPI().printError(
cstring"Invalid subarray begin index", cstring"subarray", instInfo.filename, instInfo.line.cint)
return
if actualIdxTo < 0 or actualIdxTo >= ownLen:
let instInfo = instantiationInfo()
getGDNativeAPI().printError(
cstring"Invalid subarray end index", cstring"subarray", instInfo.filename, instInfo.line.cint)
return
let span = actualIdxTo - actualIdxFrom + 1
result.setLen(span)
let readAccess = getGDNativeAPI().readProc(self)
let writeAccess = getGDNativeAPI().writeProc(result)
let readPtr = getGDNativeAPI().readAccessPtrProc(readAccess).offset(actualIdxFrom)
copyMem(getGDNativeAPI().writeAccessPtrProc(writeAccess), readPtr, span)
getGDNativeAPI().readAccessDestroyProc(readAccess)
getGDNativeAPI().writeAccessDestroyProc(writeAccess)
iterator items*(arr: GodotPoolRealArray): float32 =
for i in 0..<arr.len:
yield arr[i]
genPoolArrayAPI(GodotPoolByteArray, initGodotPoolByteArray, byte,
poolByteArrayNew,
poolByteArrayNewCopy,
poolByteArrayNewWithArray,
poolByteArrayAppend,
poolByteArrayAppendArray,
poolByteArrayInsert,
poolByteArrayInvert,
poolByteArrayPushBack,
poolByteArrayRemove,
poolByteArrayResize,
poolByteArraySet,
poolByteArrayGet,
poolByteArraySize,
poolByteArrayDestroy,
poolByteArrayRead,
poolByteArrayWrite,
poolByteArrayReadAccessPtr,
poolByteArrayWriteAccessPtr,
poolByteArrayReadAccessDestroy,
poolByteArrayWriteAccessDestroy)
iterator pairs*(arr: GodotPoolRealArray): tuple[key: cint, val: float32] =
for i in 0..<arr.len:
yield (i, arr[i])
genPoolArrayAPI(GodotPoolIntArray, initGodotPoolIntArray, cint,
poolIntArrayNew,
poolIntArrayNewCopy,
poolIntArrayNewWithArray,
poolIntArrayAppend,
poolIntArrayAppendArray,
poolIntArrayInsert,
poolIntArrayInvert,
poolIntArrayPushBack,
poolIntArrayRemove,
poolIntArrayResize,
poolIntArraySet,
poolIntArrayGet,
poolIntArraySize,
poolIntArrayDestroy,
poolIntArrayRead,
poolIntArrayWrite,
poolIntArrayReadAccessPtr,
poolIntArrayWriteAccessPtr,
poolIntArrayReadAccessDestroy,
poolIntArrayWriteAccessDestroy)
# String
genPoolArrayAPI(GodotPoolRealArray, initGodotPoolRealArray, float32,
poolRealArrayNew,
poolRealArrayNewCopy,
poolRealArrayNewWithArray,
poolRealArrayAppend,
poolRealArrayAppendArray,
poolRealArrayInsert,
poolRealArrayInvert,
poolRealArrayPushBack,
poolRealArrayRemove,
poolRealArrayResize,
poolRealArraySet,
poolRealArrayGet,
poolRealArraySize,
poolRealArrayDestroy,
poolRealArrayRead,
poolRealArrayWrite,
poolRealArrayReadAccessPtr,
poolRealArrayWriteAccessPtr,
poolRealArrayReadAccessDestroy,
poolRealArrayWriteAccessDestroy)
proc initGodotPoolStringArray*(dest: var GodotPoolStringArray) {.
importc: "godot_pool_string_array_new".}
proc initGodotPoolStringArray*(dest: var GodotPoolStringArray;
src: GodotPoolStringArray) {.
importc: "godot_pool_string_array_new_copy".}
proc initGodotPoolStringArray*(dest: var GodotPoolStringArray; arr: GodotArray) {.
importc: "godot_pool_string_array_new_with_array".}
genPoolArrayAPI(GodotPoolStringArray, initGodotPoolStringArray, GodotString,
poolStringArrayNew,
poolStringArrayNewCopy,
poolStringArrayNewWithArray,
poolStringArrayAppend,
poolStringArrayAppendArray,
poolStringArrayInsert,
poolStringArrayInvert,
poolStringArrayPushBack,
poolStringArrayRemove,
poolStringArrayResize,
poolStringArraySet,
poolStringArrayGet,
poolStringArraySize,
poolStringArrayDestroy,
poolStringArrayRead,
poolStringArrayWrite,
poolStringArrayReadAccessPtr,
poolStringArrayWriteAccessPtr,
poolStringArrayReadAccessDestroy,
poolStringArrayWriteAccessDestroy)
proc deinit*(self: var GodotPoolStringArray) {.
importc: "godot_pool_string_array_destroy".}
genPoolArrayAPI(GodotPoolVector2Array, initGodotPoolVector2Array, Vector2,
poolVector2ArrayNew,
poolVector2ArrayNewCopy,
poolVector2ArrayNewWithArray,
poolVector2ArrayAppend,
poolVector2ArrayAppendArray,
poolVector2ArrayInsert,
poolVector2ArrayInvert,
poolVector2ArrayPushBack,
poolVector2ArrayRemove,
poolVector2ArrayResize,
poolVector2ArraySet,
poolVector2ArrayGet,
poolVector2ArraySize,
poolVector2ArrayDestroy,
poolVector2ArrayRead,
poolVector2ArrayWrite,
poolVector2ArrayReadAccessPtr,
poolVector2ArrayWriteAccessPtr,
poolVector2ArrayReadAccessDestroy,
poolVector2ArrayWriteAccessDestroy)
proc initGodotPoolStringArray*(): GodotPoolStringArray {.inline.} =
initGodotPoolStringArray(result)
genPoolArrayAPI(GodotPoolVector3Array, initGodotPoolVector3Array, Vector3,
poolVector3ArrayNew,
poolVector3ArrayNewCopy,
poolVector3ArrayNewWithArray,
poolVector3ArrayAppend,
poolVector3ArrayAppendArray,
poolVector3ArrayInsert,
poolVector3ArrayInvert,
poolVector3ArrayPushBack,
poolVector3ArrayRemove,
poolVector3ArrayResize,
poolVector3ArraySet,
poolVector3ArrayGet,
poolVector3ArraySize,
poolVector3ArrayDestroy,
poolVector3ArrayRead,
poolVector3ArrayWrite,
poolVector3ArrayReadAccessPtr,
poolVector3ArrayWriteAccessPtr,
poolVector3ArrayReadAccessDestroy,
poolVector3ArrayWriteAccessDestroy)
proc initGodotPoolStringArray*(arr: GodotArray): GodotPoolStringArray {.inline.} =
initGodotPoolStringArray(result, arr)
genPoolArrayAPI(GodotPoolColorArray, initGodotPoolColorArray, Color,
poolColorArrayNew,
poolColorArrayNewCopy,
poolColorArrayNewWithArray,
poolColorArrayAppend,
poolColorArrayAppendArray,
poolColorArrayInsert,
poolColorArrayInvert,
poolColorArrayPushBack,
poolColorArrayRemove,
poolColorArrayResize,
poolColorArraySet,
poolColorArrayGet,
poolColorArraySize,
poolColorArrayDestroy,
poolColorArrayRead,
poolColorArrayWrite,
poolColorArrayReadAccessPtr,
poolColorArrayWriteAccessPtr,
poolColorArrayReadAccessDestroy,
poolColorArrayWriteAccessDestroy)
proc add*(self: var GodotPoolStringArray; data: GodotString) {.
importc: "godot_pool_string_array_append".}
proc addFirst*(self: var GodotPoolStringArray; data: GodotString) {.
importc: "godot_pool_string_array_push_back".}
proc add*(self: var GodotPoolStringArray; arr: GodotPoolStringArray) {.
importc: "godot_pool_string_array_append_array".}
proc insert*(self: var GodotPoolStringArray;
idx: cint; data: GodotString): Error {.
importc: "godot_pool_string_array_insert".}
proc delete*(self: var GodotPoolStringArray; idx: cint) {.
importc: "godot_pool_string_array_remove".}
proc reverse*(self: var GodotPoolStringArray) {.
importc: "godot_pool_string_array_invert".}
proc setLen*(self: var GodotPoolStringArray; size: cint) {.
importc: "godot_pool_string_array_resize".}
proc `[]=`*(self: var GodotPoolStringArray; idx: cint;
data: GodotString) {.
importc: "godot_pool_string_array_set".}
proc `[]`*(self: GodotPoolStringArray; idx: cint): GodotString {.
noSideEffect,
importc: "godot_pool_string_array_get".}
proc len*(self: GodotPoolStringArray): cint {.
noSideEffect,
importc: "godot_pool_string_array_size".}
iterator items*(arr: GodotPoolStringArray): GodotString =
for i in 0..<arr.len:
yield arr[i]
iterator pairs*(arr: GodotPoolStringArray): tuple[key: cint, val: GodotString] =
for i in 0..<arr.len:
yield (i, arr[i])
# Vector2
proc initGodotPoolVector2Array*(dest: var GodotPoolVector2Array) {.
importc: "godot_pool_vector2_array_new".}
proc initGodotPoolVector2Array*(dest: var GodotPoolVector2Array;
src: GodotPoolVector2Array) {.
importc: "godot_pool_vector2_array_new_copy".}
proc initGodotPoolVector2Array*(dest: var GodotPoolVector2Array;
arr: GodotArray) {.
importc: "godot_pool_vector2_array_new_with_array".}
proc deinit*(self: var GodotPoolVector2Array) {.
importc: "godot_pool_vector2_array_destroy".}
proc initGodotPoolVector2Array*(): GodotPoolVector2Array {.inline.} =
initGodotPoolVector2Array(result)
proc initGodotPoolVector2Array*(arr: GodotArray): GodotPoolVector2Array {.inline.} =
initGodotPoolVector2Array(result, arr)
proc add*(self: var GodotPoolVector2Array; data: Vector2) {.
importc: "godot_pool_vector2_array_append".}
proc addFirst*(self: var GodotPoolVector2Array; data: Vector2) {.
importc: "godot_pool_vector2_array_push_back".}
proc add*(self: var GodotPoolVector2Array;
arr: GodotPoolVector2Array) {.
importc: "godot_pool_vector2_array_append_array".}
proc insert*(self: var GodotPoolVector2Array;
idx: cint; data: Vector2): Error {.
importc: "godot_pool_vector2_array_insert".}
proc delete*(self: var GodotPoolVector2Array; idx: cint) {.
importc: "godot_pool_vector2_array_remove".}
proc reverse*(self: var GodotPoolVector2Array) {.
importc: "godot_pool_vector2_array_invert".}
proc setLen*(self: var GodotPoolVector2Array; size: cint) {.
importc: "godot_pool_vector2_array_resize".}
proc `[]=`*(self: var GodotPoolVector2Array; idx: cint;
data: Vector2) {.
importc: "godot_pool_vector2_array_set".}
proc `[]`*(self: GodotPoolVector2Array; idx: cint): Vector2 {.
noSideEffect,
importc: "godot_pool_vector2_array_get".}
proc len*(self: GodotPoolVector2Array): cint {.
noSideEffect,
importc: "godot_pool_vector2_array_size".}
iterator items*(arr: GodotPoolVector2Array): Vector2 =
for i in 0..<arr.len:
yield arr[i]
iterator pairs*(arr: GodotPoolVector2Array): tuple[key: cint, val: Vector2] =
for i in 0..<arr.len:
yield (i, arr[i])
# Vector3
proc initGodotPoolVector3Array*(dest: var GodotPoolVector3Array) {.
importc: "godot_pool_vector3_array_new".}
proc initGodotPoolVector3Array*(dest: var GodotPoolVector3Array;
src: GodotPoolVector3Array) {.
importc: "godot_pool_vector3_array_new_copy".}
proc initGodotPoolVector3Array*(dest: var GodotPoolVector3Array;
arr: GodotArray) {.
importc: "godot_pool_vector3_array_new_with_array".}
proc deinit*(self: var GodotPoolVector3Array) {.
importc: "godot_pool_vector3_array_destroy".}
proc initGodotPoolVector3Array*(): GodotPoolVector3Array {.inline.} =
initGodotPoolVector3Array(result)
proc initGodotPoolVector3Array*(arr: GodotArray):
GodotPoolVector3Array {.inline.} =
initGodotPoolVector3Array(result, arr)
proc add*(self: var GodotPoolVector3Array;
data: Vector3) {.
importc: "godot_pool_vector3_array_append".}
proc addFirst*(self: var GodotPoolVector3Array;
data: Vector3) {.
importc: "godot_pool_vector3_array_push_back".}
proc add*(self: var GodotPoolVector3Array;
arr: GodotPoolVector3Array) {.
importc: "godot_pool_vector3_array_append_array".}
proc insert*(self: var GodotPoolVector3Array;
idx: cint; data: Vector3): Error {.
importc: "godot_pool_vector3_array_insert".}
proc delete*(self: var GodotPoolVector3Array; idx: cint) {.
importc: "godot_pool_vector3_array_remove".}
proc reverse*(self: var GodotPoolVector3Array) {.
importc: "godot_pool_vector3_array_invert".}
proc setLen*(self: var GodotPoolVector3Array; size: cint) {.
importc: "godot_pool_vector3_array_resize".}
proc `[]=`*(self: var GodotPoolVector3Array;
idx: cint; data: Vector3) {.
importc: "godot_pool_vector3_array_set".}
proc `[]`*(self: GodotPoolVector3Array;
idx: cint): Vector3 {.
noSideEffect,
importc: "godot_pool_vector3_array_get".}
proc len*(self: GodotPoolVector3Array): cint {.
noSideEffect,
importc: "godot_pool_vector3_array_size".}
iterator items*(arr: GodotPoolVector3Array): Vector3 =
for i in 0..<arr.len:
yield arr[i]
iterator pairs*(arr: GodotPoolVector3Array): tuple[key: cint, val: Vector3] =
for i in 0..<arr.len:
yield (i, arr[i])
# Color
proc initGodotPoolColorArray*(dest: var GodotPoolColorArray) {.
importc: "godot_pool_color_array_new".}
proc initGodotPoolColorArray*(dest: var GodotPoolColorArray;
src: GodotPoolColorArray) {.
importc: "godot_pool_color_array_new_copy".}
proc initGodotPoolColorArray*(dest: var GodotPoolColorArray; arr: GodotArray) {.
importc: "godot_pool_color_array_new_with_array".}
proc deinit*(self: var GodotPoolColorArray) {.
importc: "godot_pool_color_array_destroy".}
proc initGodotPoolColorArray*(): GodotPoolColorArray {.inline.} =
initGodotPoolColorArray(result)
proc initGodotPoolColorArray*(arr: GodotArray): GodotPoolColorArray {.inline.} =
initGodotPoolColorArray(result, arr)
proc add*(self: var GodotPoolColorArray; data: Color) {.
importc: "godot_pool_color_array_append".}
proc addFirst*(self: var GodotPoolColorArray; data: Color) {.
importc: "godot_pool_color_array_push_back".}
proc add*(self: var GodotPoolColorArray; arr: GodotPoolColorArray) {.
importc: "godot_pool_color_array_append_array".}
proc insert*(self: var GodotPoolColorArray;
idx: cint; data: Color): Error {.
importc: "godot_pool_color_array_insert".}
proc delete*(self: var GodotPoolColorArray; idx: cint) {.
importc: "godot_pool_color_array_remove".}
proc reverse*(self: var GodotPoolColorArray) {.
importc: "godot_pool_color_array_invert".}
proc setLen*(self: var GodotPoolColorArray; size: cint) {.
importc: "godot_pool_color_array_resize".}
proc `[]=`*(self: var GodotPoolColorArray; idx: cint;
data: Color) {.
importc: "godot_pool_color_array_set".}
proc `[]`*(self: GodotPoolColorArray; idx: cint): Color {.
noSideEffect,
importc: "godot_pool_color_array_get".}
proc len*(self: GodotPoolColorArray): cint {.
noSideEffect,
importc: "godot_pool_color_array_size".}
iterator items*(arr: GodotPoolColorArray): Color =
for i in 0..<arr.len:
yield arr[i]
iterator pairs*(arr: GodotPoolColorArray): tuple[key: cint, val: Color] =
for i in 0..<arr.len:
yield (i, arr[i])

View file

@ -1,50 +1,50 @@
# Copyright (c) 2018 Xored Software, Inc.
# Copyright (c) 2017 Xored Software, Inc.
import godotinternaltypes, gdnativeapi
proc initGodotString(dest: var GodotString) {.inline, raises: [].} =
getGDNativeAPI().stringNew(dest)
type
GodotString* {.byref.} = object
data: array[sizeof(int), byte]
proc initGodotString(dest: var GodotString) {.
importc: "godot_string_new".}
proc initGodotString(dest: var GodotString; contents: cstring;
size: cint) {.inline.} =
size: cint) {.
importc: "godot_string_new_data".}
## Initializes ``dest`` from UTF-8 ``contents``
dest = getGDNativeAPI().stringCharsToUtf8WithLen(contents, size)
proc `==`*(self, b: GodotString): bool {.inline.} =
getGDNativeAPI().stringOperatorEqual(self, b)
proc `<`*(self, b: GodotString): bool {.inline.} =
getGDNativeAPI().stringOperatorLess(self, b)
proc `&`*(self, b: GodotString): GodotString {.inline.} =
getGDNativeAPI().stringOperatorPlus(self, b)
proc deinit*(self: var GodotString) {.inline.} =
getGDNativeAPI().stringDestroy(self)
proc getData(self: GodotString; dest: cstring;
size: var cint) {.
noSideEffect
importc: "godot_string_get_data".}
## Converts ``self`` into UTF-8 encoding, putting the result into ``dest``.
proc len*(self: GodotString): cint {.inline.} =
getGDNativeAPI().stringLength(self)
## Returns the length of string in bytes if it is represented as UTF-8.
getData(self, nil, result)
proc dataPtr*(self: GodotString): ptr cwchar_t {.inline.} =
getGDNativeAPI().stringWideStr(self)
proc cstring*(self: GodotString): cstring {.
importc: "godot_string_c_str".}
proc `==`*(self, b: GodotString): bool {.
importc: "godot_string_operator_equal".}
proc `<`*(self, b: GodotString): bool {.
importc: "godot_string_operator_less".}
proc `&`*(self, b: GodotString): GodotString {.
importc: "godot_string_operator_plus".}
proc deinit*(self: var GodotString) {.importc: "godot_string_destroy".}
proc `$`*(self: GodotString): string =
## Converts the ``GodotString`` into Nim string
var charStr = getGDNativeAPI().stringUtf8(self)
let length = getGDNativeAPI().charStringLength(charStr)
result = newString(length)
copyMem(addr result[0], getGDNativeAPI().charStringGetData(charStr), length)
getGDNativeAPI().charStringDestroy(charStr)
var length = self.len
result = newStringOfCap(length)
getData(self, addr result[0], length)
result.setLen(length)
assert(result[length] == '\0')
proc toGodotString*(s: string): GodotString {.inline.} =
## Converts the Nim string into ``GodotString``
when (NimMajor, NimMinor, NimPatch) < (0, 19, 0):
if s.isNil:
initGodotString(result)
else:
initGodotString(result, cstring(s), cint(s.len + 1))
if s.isNil:
initGodotString(result)
else:
initGodotString(result, cstring(s), cint(s.len + 1))
initGodotString(result, unsafeAddr s[0], cint(s.len + 1))
proc toGodotString*(s: cstring): GodotString {.inline.} =
## Converts the cstring into ``GodotString``

View file

@ -1,217 +1,193 @@
# Copyright 2018 Xored Software, Inc.
import core/godotcoretypes, godotinternaltypes, gdnativeapi
proc getType*(p: GodotVariant): VariantType {.inline.} =
getGDNativeAPI().variantGetType(p)
proc initGodotVariant*(dest: var GodotVariant) {.inline.} =
getGDNativeAPI().variantNewNil(dest)
proc initGodotVariant*(dest: var GodotVariant, src: GodotVariant) {.inline.} =
getGDNativeAPI().variantNewCopy(dest, src)
proc initGodotVariant*(dest: var GodotVariant; b: bool) {.inline.} =
getGDNativeAPI().variantNewBool(dest, b)
proc initGodotVariant*(dest: var GodotVariant; i: uint64) {.inline.} =
getGDNativeAPI().variantNewUInt(dest, i)
proc initGodotVariant*(dest: var GodotVariant; i: int64) {.inline.} =
getGDNativeAPI().variantNewInt(dest, i)
proc initGodotVariant*(dest: var GodotVariant; r: cdouble) {.inline.} =
getGDNativeAPI().variantNewReal(dest, r)
proc initGodotVariant*(dest: var GodotVariant; s: GodotString) {.inline.} =
getGDNativeAPI().variantNewString(dest, s)
proc initGodotVariant*(dest: var GodotVariant; v2: Vector2) {.inline.} =
getGDNativeAPI().variantNewVector2(dest, v2)
proc initGodotVariant*(dest: var GodotVariant; rect2: Rect2) {.inline.} =
getGDNativeAPI().variantNewRect2(dest, rect2)
proc initGodotVariant*(dest: var GodotVariant; v3: Vector3) {.inline.} =
getGDNativeAPI().variantNewVector3(dest, v3)
proc initGodotVariant*(dest: var GodotVariant; t2d: Transform2D) {.inline.} =
getGDNativeAPI().variantNewTransform2D(dest, t2d)
proc initGodotVariant*(dest: var GodotVariant; plane: Plane) {.inline.} =
getGDNativeAPI().variantNewPlane(dest, plane)
proc initGodotVariant*(dest: var GodotVariant; quat: Quat) {.inline.} =
getGDNativeAPI().variantNewQuat(dest, quat)
proc initGodotVariant*(dest: var GodotVariant; aabb: AABB) {.inline.} =
getGDNativeAPI().variantNewAABB(dest, aabb)
proc initGodotVariant*(dest: var GodotVariant; basis: Basis) {.inline.} =
getGDNativeAPI().variantNewBasis(dest, basis)
proc initGodotVariant*(dest: var GodotVariant; trans: Transform) {.inline.} =
getGDNativeAPI().variantNewTransform(dest, trans)
proc initGodotVariant*(dest: var GodotVariant; color: Color) {.inline.} =
getGDNativeAPI().variantNewColor(dest, color)
proc initGodotVariant*(dest: var GodotVariant;
nodePath: GodotNodePath) {.inline.} =
getGDNativeAPI().variantNewNodePath(dest, nodePath)
proc initGodotVariant*(dest: var GodotVariant; rid: RID) {.inline.} =
getGDNativeAPI().variantNewRID(dest, rid)
proc initGodotVariant*(dest: var GodotVariant;
obj: ptr GodotObject) {.inline.} =
getGDNativeAPI().variantNewObject(dest, obj)
proc initGodotVariant*(dest: var GodotVariant; arr: GodotArray) {.inline.} =
getGDNativeAPI().variantNewArray(dest, arr)
proc initGodotVariant*(dest: var GodotVariant;
pba: GodotPoolByteArray) {.inline.} =
getGDNativeAPI().variantNewPoolByteArray(dest, pba)
proc initGodotVariant*(dest: var GodotVariant;
pia: GodotPoolIntArray) {.inline.} =
getGDNativeAPI().variantNewPoolIntArray(dest, pia)
proc initGodotVariant*(dest: var GodotVariant;
pra: GodotPoolRealArray) {.inline.} =
getGDNativeAPI().variantNewPoolRealArray(dest, pra)
proc initGodotVariant*(dest: var GodotVariant;
psa: GodotPoolStringArray) {.inline.} =
getGDNativeAPI().variantNewPoolStringArray(dest, psa)
proc initGodotVariant*(dest: var GodotVariant;
pv2a: GodotPoolVector2Array) {.inline.} =
getGDNativeAPI().variantNewPoolVector2Array(dest, pv2a)
proc initGodotVariant*(dest: var GodotVariant;
pv3a: GodotPoolVector3Array) {.inline.} =
getGDNativeAPI().variantNewPoolVector3Array(dest, pv3a)
proc initGodotVariant*(dest: var GodotVariant;
pca: GodotPoolColorArray) {.inline.} =
getGDNativeAPI().variantNewPoolColorArray(dest, pca)
proc initGodotVariant*(dest: var GodotVariant;
dict: GodotDictionary) {.inline.} =
getGDNativeAPI().variantNewDictionary(dest, dict)
proc deinit*(v: var GodotVariant) {.inline.} =
getGDNativeAPI().variantDestroy(v)
proc asBool*(self: GodotVariant): bool {.inline.} =
getGDNativeAPI().variantAsBool(self)
proc asUInt*(self: GodotVariant): uint64 {.inline.} =
getGDNativeAPI().variantAsUInt(self)
proc asInt*(self: GodotVariant): int64 {.inline.} =
getGDNativeAPI().variantAsInt(self)
proc asReal*(self: GodotVariant): cdouble {.inline.} =
getGDNativeAPI().variantAsReal(self)
proc asGodotString*(self: GodotVariant): GodotString {.inline.} =
getGDNativeAPI().variantAsString(self)
proc asVector2*(self: GodotVariant): Vector2 {.inline.} =
getGDNativeAPI().variantAsVector2(self).toVector2()
proc asRect2*(self: GodotVariant): Rect2 {.inline.} =
getGDNativeAPI().variantAsRect2(self).toRect2()
proc asVector3*(self: GodotVariant): Vector3 {.inline.} =
getGDNativeAPI().variantAsVector3(self).toVector3()
proc asTransform2D*(self: GodotVariant): Transform2D {.inline.} =
getGDNativeAPI().variantAsTransform2D(self).toTransform2D()
proc asPlane*(self: GodotVariant): Plane {.inline.} =
getGDNativeAPI().variantAsPlane(self).toPlane()
proc asQuat*(self: GodotVariant): Quat {.inline.} =
getGDNativeAPI().variantAsQuat(self).toQuat()
proc asAABB*(self: GodotVariant): AABB {.inline.} =
getGDNativeAPI().variantAsAABB(self).toAABB()
proc asBasis*(self: GodotVariant): Basis {.inline.} =
getGDNativeAPI().variantAsBasis(self).toBasis()
proc asTransform*(self: GodotVariant): Transform {.inline.} =
getGDNativeAPI().variantAsTransform(self).toTransform()
proc asColor*(self: GodotVariant): Color {.inline.} =
getGDNativeAPI().variantAsColor(self).toColor()
proc asNodePath*(self: GodotVariant): GodotNodePath {.inline.} =
getGDNativeAPI().variantAsNodePath(self)
proc asRID*(self: GodotVariant): RID {.inline.} =
getGDNativeAPI().variantAsRID(self)
proc asGodotObject*(self: GodotVariant): ptr GodotObject {.inline.} =
getGDNativeAPI().variantAsObject(self)
proc asGodotArray*(self: GodotVariant): GodotArray {.inline.} =
getGDNativeAPI().variantAsArray(self)
proc asGodotPoolByteArray*(self: GodotVariant): GodotPoolByteArray {.inline.} =
getGDNativeAPI().variantAsPoolByteArray(self)
proc asGodotPoolIntArray*(self: GodotVariant): GodotPoolIntArray {.inline.} =
getGDNativeAPI().variantAsPoolIntArray(self)
proc asGodotPoolRealArray*(self: GodotVariant): GodotPoolRealArray {.inline.} =
getGDNativeAPI().variantAsPoolRealArray(self)
proc asGodotPoolStringArray*(self: GodotVariant): GodotPoolStringArray
{.inline.} =
getGDNativeAPI().variantAsPoolStringArray(self)
proc asGodotPoolVector2Array*(self: GodotVariant): GodotPoolVector2Array
{.inline.} =
getGDNativeAPI().variantAsPoolVector2Array(self)
proc asGodotPoolVector3Array*(self: GodotVariant): GodotPoolVector3Array
{.inline.} =
getGDNativeAPI().variantAsPoolVector3Array(self)
proc asGodotPoolColorArray*(self: GodotVariant): GodotPoolColorArray
{.inline.} =
getGDNativeAPI().variantAsPoolColorArray(self)
proc asGodotDictionary*(self: GodotVariant): GodotDictionary {.inline.} =
getGDNativeAPI().variantAsDictionary(self)
proc call*(self: var GodotVariant; meth: GodotString;
args: ptr array[256, ptr GodotVariant]; argCount: cint;
error: var VariantCallError): GodotVariant {.inline.} =
getGDNativeAPI().variantCall(self, meth, args, argCount, error)
proc hasMethod*(self: GodotVariant; meth: GodotString): bool {.inline.} =
getGDNativeAPI().variantHasMethod(self, meth)
proc `==`*(self, other: GodotVariant): bool {.inline.} =
getGDNativeAPI().variantOperatorEqual(self, other)
proc `<`*(self, other: GodotVariant): bool {.inline.} =
getGDNativeAPI().variantOperatorLess(self, other)
proc hashCompare*(self, other: GodotVariant): bool {.inline.} =
getGDNativeAPI().variantHashCompare(self, other)
proc booleanize*(self: GodotVariant): bool {.inline.} =
getGDNativeAPI().variantBooleanize(self)
import godotstrings
proc `$`*(self: GodotVariant): string =
var s = self.asGodotString()
result = $s
s.deinit()
# Copyright 2017 Xored Software, Inc.
type
VariantType* {.size: sizeof(cint), pure.} = enum
Nil, ## atomic types
Bool,
Int,
Real,
String,
# math types
Vector2, ## 5
Rect2,
Vector3,
Transform2D,
Plane,
Quat, ## 10
Rect3,
Basis,
Transform, ## misc types
Color,
NodePath, ## 15
RID,
Object,
Dictionary,
Array, ## 20
# arrays
PoolByteArray,
PoolIntArray,
PoolRealArray,
PoolStringArray,
PoolVector2Array, ## 25
PoolVector3Array,
PoolColorArray
VariantCallErrorType* {.size: sizeof(cint), pure.} = enum
OK,
InvalidMethod,
InvalidArgument,
TooManyArguments,
TooFewArguments,
InstanceIsNull
VariantCallError* = object
error*: VariantCallErrorType
argument*: cint
expected*: VariantType
GodotVariant* {.byref.} = object
data: array[4 + sizeof(int) div 4, float32]
import godotobjects, godotarrays, godotpoolarrays,
godotstrings, godotnodepaths, godotdictionaries
import core.vector2, core.rect2,
core.vector3, core.transform2d, core.planes,
core.quats, core.rect3, core.basis,
core.transforms, core.colors, core.rids,
core.rect2
proc getType*(p: GodotVariant): VariantType {.
importc: "godot_variant_get_type".}
proc initGodotVariant*(dest: var GodotVariant) {.
importc: "godot_variant_new_nil".}
proc initGodotVariant*(dest: var GodotVariant, src: GodotVariant) {.
importc: "godot_variant_new_copy".}
proc initGodotVariant*(dest: var GodotVariant; b: bool) {.
importc: "godot_variant_new_bool".}
proc initGodotVariant*(dest: var GodotVariant; i: uint64) {.
importc: "godot_variant_new_uint".}
proc initGodotVariant*(dest: var GodotVariant; i: int64) {.
importc: "godot_variant_new_int".}
proc initGodotVariant*(dest: var GodotVariant; r: cdouble) {.
importc: "godot_variant_new_real".}
proc initGodotVariant*(dest: var GodotVariant; s: GodotString) {.
importc: "godot_variant_new_string".}
proc initGodotVariant*(dest: var GodotVariant; v2: Vector2) {.
importc: "godot_variant_new_vector2".}
proc initGodotVariant*(dest: var GodotVariant; rect2: Rect2) {.
importc: "godot_variant_new_rect2".}
proc initGodotVariant*(dest: var GodotVariant; v3: Vector3) {.
importc: "godot_variant_new_vector3".}
proc initGodotVariant*(dest: var GodotVariant; t2d: Transform2D) {.
importc: "godot_variant_new_transform2d".}
proc initGodotVariant*(dest: var GodotVariant; plane: Plane) {.
importc: "godot_variant_new_plane".}
proc initGodotVariant*(dest: var GodotVariant; quat: Quat) {.
importc: "godot_variant_new_quat".}
proc initGodotVariant*(dest: var GodotVariant; rect3: Rect3) {.
importc: "godot_variant_new_rect3".}
proc initGodotVariant*(dest: var GodotVariant; basis: Basis) {.
importc: "godot_variant_new_basis".}
proc initGodotVariant*(dest: var GodotVariant; trans: Transform) {.
importc: "godot_variant_new_transform".}
proc initGodotVariant*(dest: var GodotVariant; color: Color) {.
importc: "godot_variant_new_color".}
proc initGodotVariant*(dest: var GodotVariant; nodePath: GodotNodePath) {.
importc: "godot_variant_new_node_path".}
proc initGodotVariant*(dest: var GodotVariant; rid: RID) {.
importc: "godot_variant_new_rid".}
proc initGodotVariant*(dest: var GodotVariant; obj: ptr GodotObject) {.
importc: "godot_variant_new_object".}
proc initGodotVariant*(dest: var GodotVariant; arr: GodotArray) {.
importc: "godot_variant_new_array".}
proc initGodotVariant*(dest: var GodotVariant; pba: GodotPoolByteArray) {.
importc: "godot_variant_new_pool_byte_array".}
proc initGodotVariant*(dest: var GodotVariant; pia: GodotPoolIntArray) {.
importc: "godot_variant_new_pool_int_array".}
proc initGodotVariant*(dest: var GodotVariant; pra: GodotPoolRealArray) {.
importc: "godot_variant_new_pool_real_array".}
proc initGodotVariant*(dest: var GodotVariant; psa: GodotPoolStringArray) {.
importc: "godot_variant_new_pool_string_array".}
proc initGodotVariant*(dest: var GodotVariant; pv2a: GodotPoolVector2Array) {.
importc: "godot_variant_new_pool_vector2_array".}
proc initGodotVariant*(dest: var GodotVariant; pv3a: GodotPoolVector3Array) {.
importc: "godot_variant_new_pool_vector3_array".}
proc initGodotVariant*(dest: var GodotVariant; pca: GodotPoolColorArray) {.
importc: "godot_variant_new_pool_color_array".}
proc initGodotVariant*(dest: var GodotVariant; dict: GodotDictionary) {.
importc: "godot_variant_new_dictionary".}
proc deinit*(v: var GodotVariant) {.importc: "godot_variant_destroy".}
proc asBool*(self: GodotVariant): bool {.
importc: "godot_variant_as_bool".}
proc asUInt*(self: GodotVariant): uint64 {.
importc: "godot_variant_as_uint".}
proc asInt*(self: GodotVariant): int64 {.
importc: "godot_variant_as_int".}
proc asReal*(self: GodotVariant): cdouble {.
importc: "godot_variant_as_real".}
proc asGodotString*(self: GodotVariant): GodotString {.
importc: "godot_variant_as_string".}
proc asVector2*(self: GodotVariant): Vector2 {.
importc: "godot_variant_as_vector2".}
proc asRect2*(self: GodotVariant): Rect2 {.
importc: "godot_variant_as_rect2".}
proc asVector3*(self: GodotVariant): Vector3 {.
importc: "godot_variant_as_vector3".}
proc asTransform2D*(self: GodotVariant): Transform2D {.
importc: "godot_variant_as_transform2d".}
proc asPlane*(self: GodotVariant): Plane {.
importc: "godot_variant_as_plane".}
proc asQuat*(self: GodotVariant): Quat {.
importc: "godot_variant_as_quat".}
proc asRect3*(self: GodotVariant): Rect3 {.
importc: "godot_variant_as_rect3".}
proc asBasis*(self: GodotVariant): Basis {.
importc: "godot_variant_as_basis".}
proc asTransform*(self: GodotVariant): Transform {.
importc: "godot_variant_as_transform".}
proc asColor*(self: GodotVariant): Color {.
importc: "godot_variant_as_color".}
proc asNodePath*(self: GodotVariant): GodotNodePath {.
importc: "godot_variant_as_node_path".}
proc asRID*(self: GodotVariant): RID {.
importc: "godot_variant_as_rid".}
proc asGodotObject*(self: GodotVariant): ptr GodotObject {.
importc: "godot_variant_as_object".}
proc asGodotArray*(self: GodotVariant): GodotArray {.
importc: "godot_variant_as_array".}
proc asGodotPoolByteArray*(self: GodotVariant): GodotPoolByteArray {.
importc: "godot_variant_as_pool_byte_array".}
proc asGodotPoolIntArray*(self: GodotVariant): GodotPoolIntArray {.
importc: "godot_variant_as_pool_int_array".}
proc asGodotPoolRealArray*(self: GodotVariant): GodotPoolRealArray {.
importc: "godot_variant_as_pool_real_array".}
proc asGodotPoolStringArray*(self: GodotVariant): GodotPoolStringArray {.
importc: "godot_variant_as_pool_string_array".}
proc asGodotPoolVector2Array*(self: GodotVariant): GodotPoolVector2Array {.
importc: "godot_variant_as_pool_vector2_array".}
proc asGodotPoolVector3Array*(self: GodotVariant): GodotPoolVector3Array {.
importc: "godot_variant_as_pool_vector3_array".}
proc asGodotPoolColorArray*(self: GodotVariant): GodotPoolColorArray {.
importc: "godot_variant_as_pool_color_array".}
proc asGodotDictionary*(self: GodotVariant): GodotDictionary {.
importc: "godot_variant_as_dictionary".}
proc call*(self: GodotVariant; meth: GodotString;
args: var array[128, GodotVariant]; argCount: cint;
error: var VariantCallError): GodotVariant {.
importc: "godot_variant_call".}
proc hasMethod*(self: GodotVariant; meth: GodotString): bool {.
importc: "godot_variant_has_method".}
proc `==`*(self, other: GodotVariant): bool {.
importc: "godot_variant_operator_equal".}
proc `<`*(self, other: GodotVariant): bool {.
importc: "godot_variant_operator_less".}
proc hashCompare*(self, other: GodotVariant): bool {.
importc: "godot_variant_hash_compare".}
proc booleanize*(self: GodotVariant; isValid: var bool): bool {.
importc: "godot_variant_booleanize".}

View file

@ -1,8 +1,8 @@
# Copyright 2018 Xored Software, Inc.
# Copyright 2017 Xored Software, Inc.
import macros, tables, typetraits, strutils, sets, sequtils, options, algorithm
import godotinternal, internal/godotvariants
import godotnim, core/variants
import macros, tables, typetraits
import godotinternal, internal.godotvariants
import godotnim, core.variants
type
VarDecl = ref object
@ -10,9 +10,9 @@ type
typ: NimNode
defaultValue: NimNode
isNoGodot: bool
hint: Option[string]
hintStr: Option[string]
usage: NimNode
hint: string
hintTip: string
usage: string
isExported: bool
MethodDecl = ref object
@ -32,8 +32,6 @@ type
ParseError = object of Exception
include "internal/backwardcompat.inc.nim"
proc godotToNim[T](val: Variant): (T, ConversionResult) =
mixin fromVariant
result[1] = fromVariant(result[0], val)
@ -43,9 +41,9 @@ proc nimToGodot[T](val: T): Variant =
when compiles(toVariant(val)):
result = toVariant(val)
else:
const err = "Cannot convert Nim value of type " & T.name &
" into Variant"
{.error: err.}
printError("Failed to convert Nim value of type " & T.name &
" into Variant")
initNilVariant(result)
template parseError(node: NimNode, msg: string) =
raise newException(ParseError, lineinfo(node) & ": " & msg)
@ -53,37 +51,49 @@ template parseError(node: NimNode, msg: string) =
proc extractNames(definition: NimNode):
tuple[name, parentName: string] =
if definition.kind == nnkIdent:
result.name = definition.strVal
result.name = $(definition.ident)
else:
if not (definition.kind == nnkInfix and
definition[0].strVal == "of"):
if not (definition.kind == nnkInfix and definition[0].ident == !"of"):
parseError(definition, "invalid type definition")
result.name = definition[1].strVal
result.name = $(definition[1].ident)
case definition[2].kind:
of nnkIdent:
result.parentName = definition[2].strVal
result.parentName = $definition[2].ident
else:
parseError(definition[2], "parent type expected")
when not declared(newRStrLit):
proc newRStrLit(s: string): NimNode {.compileTime.} =
result = newNimNode(nnkRStrLit)
result.strVal = s
proc newRStrLit(s: string): NimNode {.compileTime.} =
result = newNimNode(nnkRStrLit)
result.strVal = s
proc newCStringLit(s: string): NimNode {.compileTime.} =
newNimNode(nnkCallStrLit).add(ident("cstring"), newRStrLit(s))
iterator pragmas(node: NimNode):
tuple[key: string, value: NimNode, index: int] =
tuple[key: NimIdent, value: string, index: int] =
assert node.kind in {nnkPragma, nnkEmpty}
for index in countdown(node.len - 1, 0):
if node[index].kind == nnkExprColonExpr:
yield (node[index][0].strVal, node[index][1], index)
let val = $(node[index][1])
yield (node[index][0].ident, val, index)
elif node[index].kind == nnkIdent:
yield (node[index].strVal, nil, index)
yield (node[index].ident, nil, index)
proc removePragmaNode(statement: NimNode,
pname: string): NimNode {.compileTime.} =
proc removePragma(statement: NimNode, pname: string): bool =
## Removes the pragma from the node and returns whether pragma was removed
if not (RoutineNodes.contains(statement.kind) or
statement.kind == nnkPragmaExpr):
return false
var pragmas = if RoutineNodes.contains(statement.kind): statement.pragma()
else: statement[1]
let pnameIdent = !pname
for ident, val, i in pragmas(pragmas):
if ident == pnameIdent:
pragmas.del(i)
return true
proc removeStrPragma(statement: NimNode,
pname: string): string {.compileTime.} =
## Removes the pragma from the node and returns value of the pragma
## Works for routine nodes or nnkPragmaExpr
if not (RoutineNodes.contains(statement.kind) or
@ -93,30 +103,11 @@ proc removePragmaNode(statement: NimNode,
result = nil
var pragmas = if RoutineNodes.contains(statement.kind): statement.pragma()
else: statement[1]
let pnameIdent = !pname
for ident, val, i in pragmas(pragmas):
if ident.eqIdent(pname):
if ident == pnameIdent:
pragmas.del(i)
return val
proc removePragma(statement: NimNode, pname: string): bool =
## Removes the pragma from the node and returns whether pragma was removed
if not (RoutineNodes.contains(statement.kind) or
statement.kind == nnkPragmaExpr):
return false
var pragmas = if RoutineNodes.contains(statement.kind): statement.pragma()
else: statement[1]
for ident, val, i in pragmas(pragmas):
if ident.eqIdent(pname):
pragmas.del(i)
return true
proc removeStrPragma(statement: NimNode,
pname: string): Option[string] {.compileTime.} =
## Removes the pragma from the node and returns value of the pragma
## Works for routine nodes or nnkPragmaExpr
let node = removePragmaNode(statement, pname)
result = if node.isNil: none(string)
else: some($node)
return (if val.isNil: "" else: val)
proc isExported(node: NimNode): bool {.compileTime.} =
if node.kind == nnkPragmaExpr:
@ -128,36 +119,39 @@ proc identDefsToVarDecls(identDefs: NimNode): seq[VarDecl] =
assert(identDefs.kind == nnkIdentDefs)
result = newSeqOfCap[VarDecl](identDefs.len - 2)
var typ = identDefs[identDefs.len - 2]
if typ.kind == nnkEmpty:
let defaultValue = identDefs[identDefs.len - 1]
if defaultValue.kind != nnkEmpty:
typ = newCall("type", defaultValue)
for i in 0..<(identDefs.len - 2):
let nameNode = identDefs[i].copyNimTree()
let hint = removeStrPragma(nameNode, "hint")
let hintStr = removeStrPragma(nameNode, "hintStr")
let usage = removePragmaNode(nameNode, "usage")
let hintTip = removeStrPragma(nameNode, "tip")
let usage = removeStrPragma(nameNode, "usage")
let isGdExport = removePragma(nameNode, "gdExport")
if not nameNode.isExported() and isGdExport:
parseError(nameNode, "gdExport is not applicable for private fields")
let isNoGodot = not nameNode.isExported() or not isGdExport
result.add(VarDecl(
name: if nameNode.kind == nnkPragmaExpr: nameNode[0].basename()
else: nameNode.basename(),
typ: typ,
typ: identDefs[identDefs.len - 2],
defaultValue: identDefs[identDefs.len - 1],
hint: hint,
hintStr: hintStr,
isNoGodot: not isGdExport,
hintTip: hintTip,
isNoGodot: isNoGodot,
usage: usage,
isExported: nameNode.isExported()
))
proc parseMethod(meth: NimNode): MethodDecl =
assert(meth.kind in {nnkProcDef, nnkMethodDef})
let methName = meth[0]
let isGdExport = removePragma(meth, "gdExport")
let isNoGodot = (meth.kind != nnkMethodDef and not isGdExport) or
removePragma(meth, "noGdExport")
if not methName.isExported() and isGdExport:
parseError(meth, "gdExport is not applicable for private procs/methods")
let isNoGodot = meth.kind != nnkMethodDef and (
not methName.isExported() or
not isGdExport
) or removePragma(meth, "noExport")
result = MethodDecl(
name: $meth[0].basename,
args: newSeq[VarDecl](),
@ -172,15 +166,10 @@ proc parseMethod(meth: NimNode): MethodDecl =
proc parseVarSection(decl: NimNode): seq[VarDecl] =
assert(decl.kind == nnkVarSection)
for i in 0..<decl.len:
if i == 0:
result = identDefsToVarDecls(decl[i])
else:
result.add(identDefsToVarDecls(decl[i]))
result = identDefsToVarDecls(decl[0])
proc parseType(ast: NimNode): ObjectDecl =
let definition = ast[0]
let body = ast[^1]
proc parseType(definition, callSite: NimNode): ObjectDecl =
let body = callSite[^1]
result = ObjectDecl(
fields: newSeq[VarDecl](),
methods: newSeq[MethodDecl]()
@ -188,17 +177,17 @@ proc parseType(ast: NimNode): ObjectDecl =
(result.name, result.parentName) = extractNames(definition)
var isTool = false
for i in 1..(ast.len - 2):
let option = ast[i]
for i in 2..(callSite.len - 2):
let option = callSite[i]
if option.kind != nnkIdent:
parseError(option, "type specifier expected")
if option.strVal == "tool":
if option.ident == !"tool":
isTool = true
else:
parseError(option, "valid type specifier expected")
result.isTool = isTool
if result.parentName.len == 0: result.parentName = "Object"
if result.parentName.isNil: result.parentName = "Object"
for statement in body:
case statement.kind:
of nnkVarSection:
@ -215,7 +204,7 @@ proc parseType(ast: NimNode): ObjectDecl =
macro invokeVarArgs(procIdent, objIdent;
minArgs, maxArgs: static[int], numArgsIdent,
argSeqIdent; argTypes: seq[NimNode],
hasReturnValue, isStaticCall: static[bool]): untyped =
hasReturnValue, isStaticCall: static[bool]): typed =
## Produces statement in form:
##
## .. code-block:: nim
@ -272,12 +261,8 @@ macro invokeVarArgs(procIdent, objIdent;
invocation = newNimNode(nnkCall).add(ident("procCall"), invocation)
if hasReturnValue:
let resultVariant = genSym(nskLet, "ret")
branchBody.add(
newNimNode(nnkLetSection).add(
newIdentDefs(resultVariant, ident("Variant"), newCall("toVariant", invocation))))
let theCall = newNimNode(nnkBracketExpr).add(newNimNode(nnkDotExpr).add(
resultVariant, ident("godotVariant")))
newCall("toVariant", invocation), ident("godotVariant")))
branchBody.add(getAst(initGodotVariantCall(ident("result"), theCall)))
else:
branchBody.add(invocation)
@ -292,18 +277,18 @@ macro invokeVarArgs(procIdent, objIdent;
" arguments, but got " & $numArgs)
result.add(newNimNode(nnkElse).add(getAst(
printInvokeErr(procIdent.strVal, minArgs, maxArgs, numArgsIdent))))
printInvokeErr($procIdent.ident, minArgs, maxArgs, numArgsIdent))))
proc typeError(nimType: string, value: string, godotType: VariantType,
proc typeError(nimType: cstring, value: string, godotType: VariantType,
className: cstring, propertyName: cstring): string =
result = "Tried to assign incompatible value " & value & " (" & $godotType &
") to field \"" & $propertyName & ": " & $nimType & "\" of " &
") to field \"" & $propertyName & "\" (" & $nimType & ") of " &
$className
proc rangeError(nimType: string, value: string, className: cstring,
proc rangeError(nimType: cstring, value: string, className: cstring,
propertyName: cstring): string =
result = "Tried to assign the out-of-range value " & value &
" to field \"" & $propertyName & ": " & $nimType & "\" of " &
" to field \"" & $propertyName & "\" (" & $nimType & ") of " &
$className
@ -323,29 +308,22 @@ proc refcountIncremented(obj: ptr GodotObject, methodData: pointer,
userData: pointer, numArgs: cint,
args: var array[MAX_ARG_COUNT, ptr GodotVariant]):
GodotVariant {.noconv.} =
let nimObj = cast[NimGodotObject](userData)
if not nimObj.isFinalized:
GC_ref(nimObj)
GC_ref(cast[NimGodotObject](userData))
proc refcountDecremented(obj: ptr GodotObject, methodData: pointer,
userData: pointer, numArgs: cint,
args: var array[MAX_ARG_COUNT, ptr GodotVariant]):
GodotVariant {.noconv.} =
let nimObj = cast[NimGodotObject](userData)
if not nimObj.isFinalized:
GC_unref(nimObj)
initGodotVariant(result, nimObj.isFinalized)
GC_unref(cast[NimGodotObject](userData))
initGodotVariant(result, false) # destroy when Nim decides
template registerGodotClass(classNameIdent, classNameLit; isRefClass: bool;
template registerGodotClass(classNameIdent, classNameLit, isRef,
baseNameLit, createFuncIdent; isTool: bool) =
proc createFuncIdent(obj: ptr GodotObject,
methData: pointer): pointer {.noconv.} =
var nimObj: classNameIdent
new(nimObj, nimGodotObjectFinalizer[classNameIdent])
let nimObj = new(classNameIdent)
nimObj.setOwn()
nimObj.setGodotObject(obj)
nimObj.isRef = when isRefClass: true else: false
nimObj.setNativeObject(asNimGodotObject[NimGodotObject](
obj, forceNativeObject = true))
GC_ref(nimObj)
result = cast[pointer](nimObj)
when compiles(nimObj.init()):
@ -355,20 +333,20 @@ template registerGodotClass(classNameIdent, classNameLit; isRefClass: bool;
createFunc: createFuncIdent
)
let destroyFuncObj = GodotInstanceDestroyFunc(
destroyFunc: when isRefClass: nimDestroyRefFunc else: nimDestroyFunc
destroyFunc: when isRef: nimDestroyRefFunc else: nimDestroyFunc
)
registerClass(classNameIdent, classNameLit, false)
when isTool:
nativeScriptRegisterToolClass(getNativeLibHandle(), classNameLit,
baseNameLit, createFuncObj, destroyFuncObj)
godotScriptRegisterToolClass(getNativeLibHandle(), classNameLit, baseNameLit,
createFuncObj, destroyFuncObj)
else:
nativeScriptRegisterClass(getNativeLibHandle(), classNameLit,
baseNameLit, createFuncObj, destroyFuncObj)
godotScriptRegisterClass(getNativeLibHandle(), classNameLit, baseNameLit,
createFuncObj, destroyFuncObj)
template registerGodotField(classNameLit, classNameIdent, propNameLit,
propNameIdent, propTypeLit, propTypeIdent,
setFuncIdent, getFuncIdent, hintStrLit,
hintIdent, usageExpr, hasDefaultValue,
setFuncIdent, getFuncIdent, hintTipLit,
hintIdent, usageIdent, hasDefaultValue,
defaultValueNode) =
proc setFuncIdent(obj: ptr GodotObject, methData: pointer,
nimPtr: pointer, val: GodotVariant) {.noconv.} =
@ -399,34 +377,23 @@ template registerGodotField(classNameLit, classNameIdent, propNameLit,
let getFunc = GodotPropertyGetFunc(
getFunc: getFuncIdent
)
mixin godotTypeInfo
const typeInfo = when compiles(godotTypeInfo(propTypeIdent)):
godotTypeInfo(propTypeIdent)
else: GodotTypeInfo()
const hintStr = when hintStrLit != "NIM":
hintStrLit
else:
typeInfo.hintStr
const hint = when astToStr(hintIdent) != "NIM":
GodotPropertyHint.hintIdent
else:
typeInfo.hint
const variantType = typeInfo.variantType
var hintStrGodot = hintStr.toGodotString()
{.push warning[ProveInit]: off.} # false warning, Nim bug
var attr = GodotPropertyAttributes(
typ: ord(variantType),
hint: hint,
hintString: hintStrGodot,
usage: usageExpr
var hintStr = hintTipLit.toGodotString()
let attr = GodotPropertyAttributes(
typ: ord(variantType(propTypeIdent)),
hintString: hintStr,
hint: GodotPropertyHint.hintIdent,
usage: GodotPropertyUsageFlags.usageIdent
)
{.push warning[ProveInit]: on.}
when hasDefaultValue:
attr.defaultValue = (defaultValueNode).toVariant().godotVariant[]
nativeScriptRegisterProperty(getNativeLibHandle(), classNameLit, propNameLit,
unsafeAddr attr, setFunc, getFunc)
hintStrGodot.deinit()
godotScriptRegisterProperty(getNativeLibHandle(), classNameLit, propNameLit,
unsafeAddr attr, setFunc, getFunc)
hintStr.deinit()
static:
import strutils, sets, sequtils
proc toGodotStyle(s: string): string {.compileTime.} =
result = newStringOfCap(s.len + 10)
@ -440,7 +407,7 @@ proc toGodotStyle(s: string): string {.compileTime.} =
proc genType(obj: ObjectDecl): NimNode {.compileTime.} =
result = newNimNode(nnkStmtList)
# Nim type definition
# 1. Nim type definition
let typeDef = newNimNode(nnkTypeDef)
result.add(newNimNode(nnkTypeSection).add(typeDef))
typeDef.add(postfix(ident(obj.name), "*"))
@ -448,50 +415,27 @@ proc genType(obj: ObjectDecl): NimNode {.compileTime.} =
let objTy = newNimNode(nnkObjectTy)
typeDef.add(newNimNode(nnkRefTy).add(objTy))
objTy.add(newEmptyNode())
if obj.parentName.len == 0:
if obj.parentName.isNil:
objTy.add(newEmptyNode())
else:
objTy.add(newNimNode(nnkOfInherit).add(ident(obj.parentName)))
let recList = newNimNode(nnkRecList)
objTy.add(recList)
let initBody = newStmtList()
for decl in obj.fields:
if not decl.defaultValue.isNil and decl.defaultValue.kind != nnkEmpty:
initBody.add(newNimNode(nnkAsgn).add(newDotExpr(ident("self"), decl.name),
decl.defaultValue))
parseError(decl.defaultValue,
"Default values are not supported for fields for now.")
let name = if not decl.isExported: decl.name
else: postfix(decl.name, "*")
recList.add(newIdentDefs(name, decl.typ))
# Add default values and/or super call to init method
initBody.insert(0, newNimNode(nnkCommand).add(ident("procCall"),
newCall("init", newCall(obj.parentName, ident("self")))))
var initMethod: NimNode
for meth in obj.methods:
if meth.name == "init" and meth.nimNode[3].len == 1:
initMethod = meth.nimNode
break
if initMethod.isNil:
obj.methods.add(MethodDecl(
name: "init",
args: newSeq[VarDecl](),
returnType: newEmptyNode(),
isVirtual: true,
isNoGodot: false,
nimNode: newProc(postfix(ident("init"), "*"), body = initBody,
procType = nnkMethodDef)
))
else:
initMethod.body.insert(0, initBody)
# 2. {.this: self.} for convenience
result.add(newNimNode(nnkPragma).add(newNimNode(nnkExprColonExpr).add(
ident("this"), ident("self")
)))
when (NimMajor, NimMinor, NimPatch) < (0, 19, 0):
# {.this: self.} for convenience
result.add(newNimNode(nnkPragma).add(newNimNode(nnkExprColonExpr).add(
ident("this"), ident("self")
)))
# Nim proc defintions
# 3. Nim proc defintions
var decls = newSeqOfCap[NimNode](obj.methods.len)
for meth in obj.methods:
let selfArg = newIdentDefs(ident("self"), ident(obj.name))
@ -508,69 +452,49 @@ proc genType(obj: ObjectDecl): NimNode {.compileTime.} =
for meth in obj.methods:
result.add(meth.nimNode)
# Register Godot object
let parentName = if obj.parentName.len == 0: newStrLitNode("Object")
# 4. Register Godot object
let parentName = if obj.parentName.isNil: newStrLitNode("Object")
else: newStrLitNode(obj.parentName)
let classNameLit = newStrLitNode(obj.name)
let classNameLit = newCStringLit(obj.name)
let classNameIdent = ident(obj.name)
let isRef: bool = if obj.parentName.len == 0: false
let isRef: bool = if obj.parentName.isNil: false
else: obj.parentName in refClasses
# Wrapping bools with a newLit is required as a temporary workaround for
# https://github.com/nim-lang/Nim/issues/7375
result.add(getAst(
registerGodotClass(classNameIdent, classNameLit, newLit(isRef), parentName,
genSym(nskProc, "createFunc"), newLit(obj.isTool))))
registerGodotClass(classNameIdent, classNameLit, isRef, parentName,
genSym(nskProc, "createFunc"), obj.isTool)))
# Register fields (properties)
# 5. Register fields (properties)
for field in obj.fields:
if field.isNoGodot: continue
let hintStr = if field.hintStr.isNone: "NIM"
else: field.hintStr.get
let hint = if field.hint.isNone: "NIM"
else: field.hint.get
let usage =
if field.usage.isNil:
newLit(ord(GodotPropertyUsage.Default) or
ord(GodotPropertyUsage.ScriptVariable))
else: field.usage
let hintTip = if field.hintTip.isNil: ""
else: field.hintTip
let hint = if field.hint.isNil: "None"
else: field.hint
let usage = if field.usage.isNil: "Default"
else: field.usage
let hasDefaultValue = not field.defaultValue.isNil and
field.defaultValue.kind != nnkEmpty
let hintIdent = ident(hint)
let nimType = repr field.typ
let usageIdent = ident(usage)
result.add(getAst(
registerGodotField(classNameLit, classNameIdent,
newCStringLit(toGodotStyle($field.name.basename())),
ident(field.name), nimType,
ident(field.name), newCStringLit($field.typ),
field.typ, genSym(nskProc, "setFunc"),
genSym(nskProc, "getFunc"),
newStrLitNode(hintStr), hintIdent, usage,
newStrLitNode(hintTip), hintIdent, usageIdent,
ident($hasDefaultValue), field.defaultValue)))
# Register methods
# 6. Register methods
template registerGodotMethod(classNameLit, classNameIdent, methodNameIdent,
methodNameLit, minArgs, maxArgs,
argTypes, methFuncIdent, hasReturnValue) =
when (NimMajor, NimMinor, NimPatch) < (0, 19, 0):
{.emit: """/*TYPESECTION*/
N_NOINLINE(void, setStackBottom)(void* thestackbottom);
""".}
proc methFuncIdent(obj: ptr GodotObject, methodData: pointer,
userData: pointer, numArgs: cint,
args: var array[MAX_ARG_COUNT, ptr GodotVariant]):
GodotVariant {.noconv.} =
var stackBottom {.volatile.}: pointer
stackBottom = addr(stackBottom)
when (NimMajor, NimMinor, NimPatch) < (0, 19, 0):
{.emit: """
setStackBottom((void*)(&`stackBottom`));
""".}
else:
nimGC_setStackBottom(stackBottom)
let self = cast[classNameIdent](userData)
const isStaticCall = methodNameLit == cstring"_ready" or
methodNameLit == cstring"_process" or
methodNameLit == cstring"_fixed_process" or
methodNameLit == cstring"_enter_tree" or
methodNameLit == cstring"_exit_tree" or
methodNameLit == cstring"_enter_world" or
@ -591,8 +515,8 @@ N_NOINLINE(void, setStackBottom)(void* thestackbottom);
let meth = GodotInstanceMethod(
meth: methFuncIdent
)
nativeScriptRegisterMethod(getNativeLibHandle(), classNameLit,
methodNameLit, GodotMethodAttributes(), meth)
godotScriptRegisterMethod(getNativeLibHandle(), classNameLit, methodNameLit,
GodotMethodAttributes(), meth)
for meth in obj.methods:
if meth.isNoGodot: continue
@ -609,8 +533,8 @@ N_NOINLINE(void, setStackBottom)(void* thestackbottom);
else: toGodotStyle(meth.name)
let hasReturnValueBool = not (meth.returnType.isNil or
meth.returnType.kind == nnkEmpty or
(meth.returnType.kind == nnkIdent and
meth.returnType.strVal == "void"))
(meth.returnType.kind == nnkIdent and
meth.returnType.ident == !"void"))
let hasReturnValue = if hasReturnValueBool: ident("true")
else: ident("false")
result.add(getAst(
@ -628,15 +552,19 @@ N_NOINLINE(void, setStackBottom)(void* thestackbottom);
let refDec = GodotInstanceMethod(
meth: refcountDecremented
)
nativeScriptRegisterMethod(getNativeLibHandle(), classNameLit,
cstring"_refcount_incremented",
GodotMethodAttributes(), refInc)
nativeScriptRegisterMethod(getNativeLibHandle(), classNameLit,
cstring"_refcount_decremented",
GodotMethodAttributes(), refDec)
godotScriptRegisterMethod(getNativeLibHandle(), classNameLit,
cstring"_refcount_incremented",
GodotMethodAttributes(), refInc)
godotScriptRegisterMethod(getNativeLibHandle(), classNameLit,
cstring"_refcount_decremented",
GodotMethodAttributes(), refDec)
result.add(getAst(registerRefIncDec(classNameLit)))
macro gdobj*(ast: varargs[untyped]): untyped =
{.push warning[Deprecated]: off.}
# immediate macros are deprecated, but `untyped` doesn't make it immediate,
# as the warning and the documentation claim.
macro gdobj*(definition: untyped, body: typed): typed {.immediate.} =
## Generates Godot type. Self-documenting example:
##
## .. code-block:: nim
@ -644,25 +572,25 @@ macro gdobj*(ast: varargs[untyped]): untyped =
##
## gdobj MyObj of Node:
## var myField: int
## ## Not exported to Godot (i.e. editor and scripts will not see this field).
## ## Not exported to Godot (i.e. editor will not see this field).
##
## var myString* {.gdExport, hint: Length, hintStr: "20".}: string
## var myString* {.gdExport, hint: Length, tip: "20".}: string
## ## Exported to Godot as ``my_string``.
## ## Editor will limit this string to length 20.
## ## ``hint` is a value of ``GodotPropertyHint`` enum.
## ## ``hintStr`` depends on the value of ``hint``, its format is
## ## described in ``GodotPropertyHint`` documentation.
## ## ``tip`` depends on the value of ``hint``, its format is described
## ## in ``GodotPropertyHint`` documentation.
##
## method ready*() =
## ## Exported methods are exported to Godot by default,
## ## and their Godot names are prefixed with ``_``
## ## (in this case ``_ready``)
## print("I am ready! myString is: " & self.myString)
## print("I am ready! myString is: " & myString)
##
## proc myProc*() {.gdExport.} =
## ## Exported to Godot as ``my_proc``
## print("myProc is called! Incrementing myField.")
## inc self.myField
## inc myField
##
## If parent type is omitted, the type is inherited from ``Object``.
##
@ -680,5 +608,7 @@ macro gdobj*(ast: varargs[untyped]): untyped =
## `gdnew <godotnim.html#gdnew>`_ or by using
## `load <godotapi/resource_loader.html#load,string,string,bool>`_ or any other way
## that you can find in `Godot API <index.html#modules-godot-api>`_.
let typeDef = parseType(ast)
let typeDef = parseType(definition, callsite())
result = genType(typeDef)
{.push warning[Deprecated]: on.}

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@ -1,2 +1 @@
--path:"$projectdir/../"
-d:useRealtimeGc

20
godot/nimruntime.nim Normal file
View file

@ -0,0 +1,20 @@
# Copyright 2017 Xored Software, Inc.
import asyncdispatch
import godot, node
gdobj NimRuntime of Node:
method enterTree*() =
discard getTree().connect("idle_frame", self, "idle", newArray())
method exitTree*() =
getTree().disconnect("idle_frame", self, "idle")
proc idle*() {.gdExport.} =
if asyncdispatch.hasPendingOperations():
poll(0)
GC_step(2000, false, 0)
when not defined(release):
onUnhandledException = proc(errorMsg: string) =
printError("Unhandled Nim exception: " & errorMsg)