2023-12-23 00:09:07 +03:00
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package main
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import (
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//"math/rand"
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2023-12-26 23:31:04 +03:00
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"fmt"
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2023-12-23 00:09:07 +03:00
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)
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2024-01-05 04:22:53 +03:00
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import "vultras.su/core/gg"
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2023-12-23 00:09:07 +03:00
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type Player struct {
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gg.Sprite
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MoveSpeed gg.Float
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ScaleSpeed gg.Float
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}
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func NewPlayer() *Player {
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ret := &Player{}
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ret.Transform = gg.T()
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2023-12-26 23:31:04 +03:00
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fmt.Println("transform:", ret.Transform)
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//ret.Parent = rect
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2023-12-28 02:31:43 +03:00
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ret.Scale = gg.V2(1)
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2023-12-23 00:09:07 +03:00
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// Around center.
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2023-12-26 23:31:04 +03:00
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ret.Around = gg.V2(.5)
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ret.MoveSpeed = 90.
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2023-12-23 00:09:07 +03:00
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ret.ScaleSpeed = .2
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ret.Visible = true
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ret.Images[0] = playerImg
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ret.Layer = PlayerL
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return ret
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}
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2023-12-25 23:41:12 +03:00
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func (p *Player) Start(c *Context) {
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}
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2023-12-23 00:09:07 +03:00
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// Custom drawing function.
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func (p *Player) Draw(c *Context) {
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p.Sprite.Draw(c)
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t := p.Transform
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t.Scale.X *= 4.
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t.Scale.Y *= 4.
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r := &gg.DrawableRectangle{}
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r.Color = gg.Rgba(0, 0, 1, 1)
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r.Rectangle = gg.Rectangle{
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Transform: t,
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}
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r.Draw(c)
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}
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func (p *Player) Update(c *Context) {
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dt := c.DT()
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cam := c.Camera
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keys := c.Keys()
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2023-12-28 14:34:52 +03:00
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shift := c.IsPressed(gg.KeyShift)
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2023-12-23 00:09:07 +03:00
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//p.Uniforms["Random"] = any(rand.Float32())
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for _, v := range keys {
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switch v {
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2024-01-04 17:05:51 +03:00
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case gg.KeyQ:
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p.Scale = p.Scale.Add(gg.V(p.ScaleSpeed*dt, 0))
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2023-12-23 00:09:07 +03:00
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case gg.KeyArrowUp:
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cam.Position.Y += p.MoveSpeed * dt
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case gg.KeyArrowLeft:
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cam.Position.X -= p.MoveSpeed * dt
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case gg.KeyArrowDown:
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cam.Position.Y -= p.MoveSpeed * dt
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case gg.KeyArrowRight:
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cam.Position.X += p.MoveSpeed * dt
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case gg.KeyW:
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p.Position.Y += p.MoveSpeed * dt
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case gg.KeyA:
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p.Position.X -= p.MoveSpeed * dt
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case gg.KeyS:
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p.Position.Y -= p.MoveSpeed * dt
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case gg.KeyD:
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p.Position.X += p.MoveSpeed * dt
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case gg.KeyR:
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cam.Rotation += gg.Pi * p.ScaleSpeed * dt
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case gg.KeyT:
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cam.Rotation -= gg.Pi * p.ScaleSpeed * dt
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case gg.KeyRightBracket:
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if shift {
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p.Rotation -= gg.Pi * 0.3 * dt
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} else {
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p.Rotation += gg.Pi * 0.3 * dt
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}
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case gg.KeyF:
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if shift {
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cam.Scale = cam.Scale.Add(gg.V2(p.ScaleSpeed * dt))
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} else {
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cam.Scale = cam.Scale.Add(gg.V2(-p.ScaleSpeed * dt))
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}
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case gg.KeyG:
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if shift {
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cam.Scale.Y -= gg.Pi * p.ScaleSpeed * dt
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} else {
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cam.Scale.Y += gg.Pi * p.ScaleSpeed * dt
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}
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case gg.KeyV:
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if shift {
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tri.Rotation -= gg.Pi * 0.3 * dt
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} else {
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tri.Rotation += gg.Pi * 0.3 * dt
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}
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case gg.KeyLeftBracket:
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if shift {
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rect.Rotation -= gg.Pi * 0.3 * dt
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} else {
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rect.Rotation += gg.Pi * 0.3 * dt
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}
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case gg.Key0:
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c.Del(p)
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case gg.KeyB:
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}
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}
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}
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func (p *Player) Event(c *gg.Context) {
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switch ec := c.Event.(type) {
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case *gg.KeyDown:
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switch {
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case ec.Key == gg.KeyB:
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if p.Layer != PlayerL {
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p.Layer = PlayerL
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} else {
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p.Layer = HighestL
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}
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}
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case *gg.MouseMove:
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if !c.IsButtoned(gg.MouseButtonRight) {
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break
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}
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pos := c.Camera.Position
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c.Camera.Position = pos.Sub(ec.Abs)
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case *gg.WheelChange:
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c.Camera.Scale = c.Camera.Scale.Add(gg.V2(
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ec.Offset.Y * c.DT() * p.ScaleSpeed * 40,
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))
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}
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2023-12-23 00:09:07 +03:00
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}
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