6 Commits

Author SHA1 Message Date
Neal Finger
1c68beb77a player animation
-all points for root animation are kept
-rendering lines will only render lines that are in the camera
2023-02-12 20:42:07 -07:00
Neal Finger
09870bfa81 Update player.py
bug fix
2023-02-12 13:29:38 -07:00
Neal Finger
f34883b84f smooth root render
-root will always draw a line to the player position.  This makes the root growing animation look smoother and show the exact player position.
-dpad up toggles this
-button b toggles the debug render
2023-02-12 13:21:21 -07:00
Neal Finger
00f03652eb player movement
-input class rough draft
-use of time per frame for x movement
-y speed needed to be halved for some reason
-animation line drawing starts from player then moves outward to prepare for storing more points than can fit on the screen (scrolling up after complete stage)
2023-02-12 12:24:06 -07:00
Neal Finger
81bce7fe63 Update player.py
player root animation grows based on distance not just the y value

refactor the PlayerAnimation class
2023-02-11 14:10:35 -07:00
Neal Finger
5d3f661411 Merge pull request #12 from Markil3/title_screen
Title screen
2023-02-05 16:16:17 -07:00

213
player.py
View File

@@ -2,19 +2,26 @@ import time
import thumby import thumby
import math import math
import random import random
from collections import namedtuple
from Games.Throot.constants import CONST_FPS from Games.Throot.constants import CONST_FPS
# didplay width 72 # didplay width 72
# display height 40 # display height 40
# constants class Input:
CONST_PL_SCREEN_Y = int((0.5) * thumby.display.height) def move_right(self):
return (
thumby.buttonA.pressed() or
thumby.buttonR.pressed()
)
def move_left(self):
return thumby.buttonL.pressed()
inp = Input()
CONST_INP_MOVE_LEFT = thumby.buttonL ### classes
CONST_INP_MOVE_RIGHT = thumby.buttonA
# classes
class Player: class Player:
def __init__(self): def __init__(self):
self.prev_x = 0 self.prev_x = 0
@@ -24,61 +31,74 @@ class Player:
self.x = int(self.xsub) self.x = int(self.xsub)
self.y = int(self.ysub) self.y = int(self.ysub)
self.movespeed = 32 / CONST_FPS
self.isdecend = 1 self.isdecend = 1
self.xspeed = 32 / CONST_FPS self.input_x = float(0)
self.yspeed = 32
self.accx = 1 / (CONST_FPS * 4) # constants
self.accaccx = self.accx self.speed_x_start = 32
self.speed_x_max = 200
self.acc_x_start = 64
self.jerk_x = 128
self.speed_x = self.speed_x_start
self.acc_x = self.acc_x_start
# y speed is constant
self.speed_y = 16
self.anim = PlayerAnimation(self)
self.anim = PlayerAnimation(self.x, self.y)
self.debugvisible = False
def update_phys(self, tpf, camera: Camera): def update_phys(self, tpf, camera: Camera):
# prevoius sub pixel position
self.prev_x = self.xsub self.prev_x = self.xsub
self.prev_y = self.ysub self.prev_y = self.ysub
inp = int(0)
if CONST_INP_MOVE_LEFT.pressed():
inp -= 1
if CONST_INP_MOVE_RIGHT.pressed():
inp += 1
# debug visible
if thumby.buttonU.pressed():
self.debugvisible = not self.debugvisible
### x movement ### x movement
self.xspeed += self.accx
self.accx += self.accaccx
if (inp == 0) and (self.xspeed > self.movespeed): # x input
self.xspeed = self.movespeed if inp.move_left() and (not inp.move_right()):
self.accx = self.accaccx self.input_x = -1
if inp.move_right() and (not inp.move_left()):
self.input_x = 1
if (not inp.move_left()) and (not inp.move_right()):
self.input_x = 0
xx = self.xsub + inp * self.xspeed # acceleration and jerk
self.speed_x += self.acc_x * tpf
self.acc_x += self.jerk_x * tpf
# clamp to screen # limit speed
self.xsub = max(min(xx, thumby.display.width - 1), 0) self.speed_x = min(self.speed_x_max, self.speed_x)
# reset speed and acceleration if no input
if (self.input_x == 0) and (self.speed_x != self.speed_x_start):
self.speed_x = self.speed_x_start
self.acc_x = self.acc_x_start
# set x sub pixel position
self.xsub += self.speed_x * tpf * self.input_x
### y movement ### y movement
self.ysub += self.yspeed * tpf # set y sub pixel position
self.ysub += self.speed_y * tpf
### stay in world bounds
self.xsub = max(min(self.xsub, thumby.display.width - 1), 0)
### pixel positions ### pixel positions
self.x = int(self.xsub) self.x = int(self.xsub)
self.y = int(self.ysub) self.y = int(self.ysub)
# animation ### animation physics
self.anim.update_phys(self.x, self.y, camera) self.anim.update_phys(camera)
def update_draw(self, camera): def update_draw(self, camera):
# debug draw ### animation render
if self.debugvisible:
pix_x, pix_y = camera.relative_to_camera(self.x, self.y)
thumby.display.setPixel(int(pix_x), int(pix_y), self.isdecend)
# animation
self.anim.update_draw(camera, self.isdecend) self.anim.update_draw(camera, self.isdecend)
@@ -101,46 +121,101 @@ class Camera:
# position player # position player
self.y = self.target.y + self.offset self.y = self.target.y + self.offset
class PlayerAnimation: class PlayerAnimation:
# width and height of range bounding box must be odd MAX_ROOT_OFFSET = int(4)
RANDOM_RANGE = int(5)
POS_RANGE = int(3)
POS_X = int(0)
POS_Y = int(1)
def __init__(self, plworldx, plworldy): MAX_GROW_DISTANCE = int(6)#int(3)
self.poslist = [(plworldx, plworldy)] MIN_GROW_DISTANCE = int(2)
self.debugrandomrange = self.RANDOM_RANGE
self.debugposrange = self.POS_RANGE
def update_phys(self, plworldx, plworldy, camera): Point = namedtuple("Point", ["x", "y"])
def __init__(self, player):
self.player = player
self.root_offset = self.MAX_ROOT_OFFSET
self.grow_distance = self.MAX_GROW_DISTANCE
self.points = []
self.add_point()
self.debug_visible = False
self.debug_exact = True
def add_point(self):
self.points.append(self.Point(self.player.x, self.player.y))
def update_phys(self, camera):
# debug visible
if thumby.buttonB.justPressed():
self.debug_visible = not self.debug_visible
if plworldy < self.poslist[-1][self.POS_Y] + self.POS_RANGE: # debug exact
return if thumby.buttonU.justPressed():
self.debug_exact = not self.debug_exact
### get new position
rad = self.RANDOM_RANGE // 2 # exit if distance from player to last root point is less than gorw distance
dist_sqr = (
# move last pos (self.player.x - self.points[-1].x) ** 2 +
self.poslist[-1] = ( (self.player.y - self.points[-1].y) ** 2
plworldx + random.randrange(-rad, rad),
plworldy + random.randrange(-rad, rad)
) )
# new pos is perfectly on player if dist_sqr < self.grow_distance ** 2:
self.poslist.append((plworldx, plworldy)) return
### remove the fist item in the list if its full line is off screen # set new grow distance
if not camera.entity_in_camera(self.poslist[1][self.POS_X], self.poslist[1][self.POS_Y]): self.grow_distance = random.randint(self.MIN_GROW_DISTANCE, self.MAX_GROW_DISTANCE)
self.poslist.pop(0)
# offset last root point to look random
self.points[-1] = self.Point(
self.points[-1].x + random.randrange(-self.root_offset, self.root_offset),
self.points[-1].y + random.randrange(-self.root_offset, self.root_offset)
)
# new root point created exactly on player
self.add_point()
# points are not removed so the camera can pan back up
# # remove points in list that would render lines off the camera
# for point in self.points[1:]:
# if camera.entity_in_camera(point.x, point.y):
# break
# self.points.pop(0)
def update_draw(self, camera, isdecend=1): def update_draw(self, camera, isdecend=1):
### draw line from first position to next # debug render
if self.debug_visible:
pix_x, pix_y = camera.relative_to_camera(self.player.x, self.player.y)
thumby.display.setPixel(int(pix_x), int(pix_y), isdecend)
return
for i in range(len(self.poslist) - 1): # draw line from last point to player
x1, y1 = camera.relative_to_camera(self.poslist[i][self.POS_X], self.poslist[i][self.POS_Y]) if self.debug_exact:
x2, y2 = camera.relative_to_camera(self.poslist[i + 1][self.POS_X], self.poslist[i + 1][self.POS_Y]) x1, y1 = camera.relative_to_camera(self.player.x, self.player.y)
x2, y2 = camera.relative_to_camera(self.points[-1].x, self.points[-1].y)
thumby.display.drawLine(
int(x1),
int(y1),
int(x2),
int(y2),
isdecend
)
# draw line from last point to previous
point_off_camera_count = 2
point_prev = self.points[-1]
for point in self.points[-2::-1]:
# break if entire line is off camera
if not camera.entity_in_camera(point.x, point.y):
point_off_camera_count -= 1
if point_off_camera_count <= 0:
break
x1, y1 = camera.relative_to_camera(point_prev.x, point_prev.y)
x2, y2 = camera.relative_to_camera(point.x, point.y)
point_prev = point
thumby.display.drawLine( thumby.display.drawLine(
int(x1), int(x1),
int(y1), int(y1),