11 Commits

Author SHA1 Message Date
William Hubbard
8aab7d94f1 Adds a sky. 2023-02-05 16:10:11 -07:00
William Hubbard
3afe5322b3 Adds a seed entity.
Graphics!
2023-02-05 15:57:11 -07:00
William Hubbard
674ae01057 Adds collectibles and fixes score 2023-02-05 15:50:20 -07:00
William Hubbard
feafdfbac2 Implements scaling difficulty.
Probably not balanced, but it is there.
2023-02-05 15:19:16 -07:00
Neal Finger
b743e61b10 Merge pull request #10 from Markil3/build_update_finalish
general update
2023-02-05 14:59:45 -07:00
Neal Finger
15d86a7391 general update
merge water, update game loop
2023-02-05 14:59:08 -07:00
Neal Finger
05d5734c66 Merge pull request #9 from Markil3/negative-scroll
Cleans up the scrolling code
2023-02-05 14:12:45 -07:00
William Hubbard
8d90129dbd Merge branch 'master' into negative-scroll 2023-02-05 14:04:52 -07:00
William Hubbard
05dd0a1cfd Fixes some debug code. 2023-02-05 14:04:42 -07:00
William Hubbard
518bf5f5e6 Fixes collision code. 2023-02-05 13:58:32 -07:00
William Hubbard
b80c215d98 Sets the depth to be handled by the player
Just a lot simpler.
2023-02-05 13:09:05 -07:00
5 changed files with 212 additions and 66 deletions

136
Throot.py
View File

@@ -7,12 +7,14 @@ import Games.Throot.map
import Games.Throot.sprites
from random import randrange
from Games.Throot.artrepository import OBSTACLES
from Games.Throot.player import Player
from Games.Throot.artrepository import *
from Games.Throot.player import Player, Camera
from Games.Throot.map import ObstacleSlice, OBSTACLE_SLICES
from Games.Throot.sprites import Obstacle, update_entities
from Games.Throot.sprites import Entity, Obstacle, Collectible, update_entities
from Games.Throot.constants import *
class GameManager:
def __init__(self, *rooms):
self.rooms = rooms
@@ -76,72 +78,156 @@ class RoomTitle(Room):
class GameLoop(Room):
def __init__(self):
self.current_depth = 0
self.diving_velocity = 10
self.diving_accel = 0
self.current_obstacle_slice = OBSTACLE_SLICES[0]
self.entities = set()
self.player = Player()
self.player = None
self.camera = None
self.score = 0
self.level = 0
self.finish_depth = 0
self.waterx = float(0)
seed_sprite = thumby.Sprite(seed.width, seed.height, seed.image, 0, 0, 0, False, False)
self.seed = Entity((thumby.display.width - seed.width) // 2, 0, seed.width, seed.height, None, seed_sprite)
def start(self, event):
self.current_depth = 0
self.entities.clear()
self.entities.add(
self.seed
)
self.current_obstacle_slice = OBSTACLE_SLICES[0]
self.player = Player()
self.score = 0
self.player.yspeed = 10
self.score = 'score' in event and event['score'] or 0
self.level = 'level' in event and event['level'] or 0
self.finish_depth = 100 + 5 * self.level ** 2
self.camera = Camera(self.player)
def get_obstacle_slice(self):
return OBSTACLE_SLICES[randrange(0, len(OBSTACLE_SLICES))]
def draw_sky(self):
sky_x = 0
sky_y = -thumby.display.height
sky_width = thumby.display.width
sky_height = thumby.display.height
if self.camera.entity_in_camera(sky_x, sky_y, sky_width, sky_height):
sky_x, sky_y = self.camera.relative_to_camera(sky_x, sky_y)
thumby.display.drawFilledRectangle(int(sky_x), int(sky_y), int(sky_width), int(sky_height), 1)
sky_x = 0
sky_y = 0
sky_width = thumby.display.width
sky_height = thumby.display.height
if self.camera.entity_in_camera(sky_x, sky_y, sky_width, sky_height):
sky_x, sky_y = self.camera.relative_to_camera(sky_x, sky_y)
thumby.display.drawFilledRectangle(int(sky_x), int(sky_y), int(sky_width), int(sky_height), 0)
def draw_water(self):
# bookwater
# exit if depth is less than 2 screens of the finish depth
if self.player.y + thumby.display.height < self.finish_depth:
return
self.waterx += sprite_water.width / CONST_FPS
if self.waterx > sprite_water.width:
self.waterx = 0
# water surface.
for i in range(math.ceil(thumby.display.width / sprite_water.width) + 1):
x, y = self.camera.relative_to_camera(
(int(self.waterx) - sprite_water.width) + i * sprite_water.width,
self.finish_depth
)
thumby.display.blit(
sprite_water[0],
int(x), int(y),
sprite_water.width, sprite_water.height,
0,
0, 0
)
# water below surface
x, y = self.camera.relative_to_camera(
0,
self.finish_depth
)
thumby.display.drawFilledRectangle(
int(x), int(y) + sprite_water.height,
thumby.display.width, self.finish_depth + thumby.display.height * 3,
1,
)
# win text
if self.player.y > self.finish_depth + (thumby.display.height // 2):
thumby.display.drawText('water reach!', 0, thumby.display.height // 4, 0)
thumby.display.drawText(f' stage {self.level + 1}', 0, thumby.display.height // 4 + 9, 0)
def update(self, tpf):
"""
Executes one tick of the game
"""
super().update(tpf)
prev_depth = self.current_depth
self.diving_velocity += self.diving_accel * tpf
self.current_depth += self.diving_velocity * tpf
#print("%f (%f)" % (self.current_depth, self.current_depth % ObstacleSlice.height))
self.player.update_phys(tpf, self.camera)
#print("%f -> %f: %f -> %f" % (prev_depth, self.current_depth, prev_depth % ObstacleSlice.height, self.current_depth % ObstacleSlice.height))
if (
self.current_depth > prev_depth and self.current_depth % ObstacleSlice.height < prev_depth % ObstacleSlice.height
or self.current_depth < prev_depth and self.current_depth % ObstacleSlice.height > prev_depth % ObstacleSlice.height
):
self.current_obstacle_slice = self.get_obstacle_slice()
self.player.update_phys(self.current_depth, prev_depth)
self.camera.update_phys()
# Generate new entities as needed
self.entities |= update_entities(self.entities, 5, self.current_depth, prev_depth)
if abs(self.player.y) < abs(self.finish_depth):
self.entities |= update_entities(self.entities, self.level, self.player.ysub, self.player.prev_y)
else:
self.entities.clear()
# Updates the entities
to_remove = set()
for entity in self.entities:
if not entity.update(tpf, self.current_depth, prev_depth):
if not entity.update(tpf, self.player, self.camera) or abs(entity.y - self.player.y) > self.camera.height * 1.5:
to_remove.add(entity)
elif entity.intersects_pixel(self.player.xsub, self.player.ysub):
if isinstance(entity, Obstacle):
return {
'room': ROOM_END,
'score': self.score
'score': self.score,
'level': self.level + 1
}
elif isinstance(entity, Collectible):
self.score += entity.score
to_remove.add(entity)
self.entities -= to_remove
self.score = int(self.current_depth * 10)
self.score += int(abs(self.player.ysub - self.player.prev_y) * 10)
# finish level
if self.player.y > self.finish_depth + int(thumby.display.height * 1.5):
self.score += 20
self.level += 1
self.start({
'score': self.score,
'level': self.level
})
thumby.display.fill(0)
self.draw_sky()
# Draw the entities
for entity in self.entities:
entity.render(tpf, self.current_depth, prev_depth)
self.player.update_draw(self.player.y)
entity.render(tpf, self.camera)
self.player.update_draw(self.camera)
self.draw_water()
thumby.display.drawText(str(self.score), thumby.display.width - (len(str(self.score)) + 2) * 5, 1, 1)
class EndRoom(Room):
def __init__(self):
self.score = 0

View File

@@ -2,6 +2,27 @@ from collections import namedtuple
SpriteImage = namedtuple("SpriteImage", ["image", "collision", "width", "height"])
seed = SpriteImage(
bytearray([8,20,46,46,62,62,46,62,46,12,0]),
None,
11,
7
)
collectibleover = SpriteImage(
bytearray([9,4,6,9]),
None,
4,
4
)
collectibleunder = SpriteImage(
bytearray([6,11,9,6]),
None,
4,
4
)
# BITMAP: width: 8, height: 8
skull = SpriteImage(
bytearray([0,28,102,126,38,30,28,0]),
@@ -175,4 +196,11 @@ Doritoobstaclelvl5 = SpriteImage(
30
)
sprite_water = SpriteImage(
bytearray([224,240,240,248,252,248,240,240]),
None,
8,
8
)
OBSTACLES = [skull, pizza, boulder, ball, steve, mathroot, leaf, robot, dinoskull, dinojaw, dinospine, bone, bigdinohead, bigboneddiag, bigdoritoobstacle, spaceinv,annoydead,lvl4wall,ballobstaclelvl3,Doritoobstaclelvl5]

View File

@@ -4,3 +4,4 @@ ROOM_START = 0
ROOM_MAIN = 1
ROOM_END = 2
ROOM_NEXT = -1

View File

@@ -17,6 +17,8 @@ CONST_INP_MOVE_RIGHT = thumby.buttonA
# classes
class Player:
def __init__(self):
self.prev_x = 0
self.prev_y = 0
self.xsub = float(thumby.display.width / 2)
self.ysub = float(0)
self.x = int(self.xsub)
@@ -26,14 +28,16 @@ class Player:
self.isdecend = 1
self.xspeed = 32 / CONST_FPS
self.yspeed = 32 / CONST_FPS
self.yspeed = 32
self.accx = 1 / (CONST_FPS * 4)
self.accaccx = self.accx
self.anim = PlayerAnimation(self.x, self.y)
self.debugvisible = True
self.debugvisible = False
def update_phys(self, current_depth, prev_depth):
def update_phys(self, tpf, camera: Camera):
self.prev_x = self.xsub
self.prev_y = self.ysub
inp = int(0)
if CONST_INP_MOVE_LEFT.pressed():
inp -= 1
@@ -58,35 +62,44 @@ class Player:
self.xsub = max(min(xx, thumby.display.width - 1), 0)
### y movement
self.ysub = current_depth - (thumby.display.height / 2)
self.ysub += self.yspeed * tpf
### pixel positions
self.x = int(self.xsub)
self.y = int(self.ysub)
# animation
self.anim.update_phys(self.x, self.y, CONST_PL_SCREEN_Y, current_depth)
self.anim.update_phys(self.x, self.y, camera)
def update_draw(self, plworldy):
def update_draw(self, camera):
# debug draw
if self.debugvisible:
pix_x = self.x
pix_y = int(self.y - plworldy + 20)
thumby.display.setPixel(pix_x, pix_y, self.isdecend)
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(plworldy - 20, self.isdecend)
self.anim.update_draw(camera, self.isdecend)
class Camera:
def __init__(self, target):
self.x = int(0)
self.y = int(0)
self.width = thumby.display.width
self.height = thumby.display.height
self.offset = -self.height / 2
self.target = target
def update_phys(self, plscreeny):
def entity_in_camera(self, ent_x, ent_y, ent_width = 0, ent_height = 0) -> bool:
return ent_x + ent_width >= self.x and ent_y + ent_height >= self.y and ent_x < self.x + self.width and ent_y < self.y + self.height
def relative_to_camera(self, global_x, global_y):
return (global_x - self.x, global_y - self.y)
def update_phys(self):
# position player
self.y = self.target.y - plscreeny
self.y = self.target.y + self.offset
class PlayerAnimation:
@@ -101,7 +114,7 @@ class PlayerAnimation:
self.debugrandomrange = self.RANDOM_RANGE
self.debugposrange = self.POS_RANGE
def update_phys(self, plworldx, plworldy, plscreeny, current_depth):
def update_phys(self, plworldx, plworldy, camera):
#print(plworldx, plworldy, plscreeny, current_depth)
@@ -159,21 +172,23 @@ class PlayerAnimation:
# self.poslist.append((plworldx, plworldy))
### remove the fist item in the list if its full line is off screen
if self.poslist[1][self.POS_Y] < plworldy - plscreeny:
if not camera.entity_in_camera(self.poslist[1][self.POS_X], self.poslist[1][self.POS_Y]):
self.poslist.pop(0)
#print(len(self.poslist))
def update_draw(self, topleft, prev_depth, isdecend=1):
def update_draw(self, camera, isdecend=1):
### draw line from first position to next
#print(topleft)
for i in range(len(self.poslist) - 1):
x1, y1 = camera.relative_to_camera(self.poslist[i][self.POS_X], self.poslist[i][self.POS_Y])
x2, y2 = camera.relative_to_camera(self.poslist[i + 1][self.POS_X], self.poslist[i + 1][self.POS_Y])
thumby.display.drawLine(
int(self.poslist[i][self.POS_X]),
int(self.poslist[i][self.POS_Y] - topleft),
int(self.poslist[i + 1][self.POS_X]),
int(self.poslist[i + 1][self.POS_Y] - topleft),
int(x1),
int(y1),
int(x2),
int(y2),
isdecend
)

View File

@@ -4,7 +4,8 @@ from random import randrange, random
import thumby
from Games.Throot.map import ObstacleSlice
from Games.Throot.artrepository import OBSTACLES
from Games.Throot.player import Player, Camera
from Games.Throot.artrepository import *
class Entity:
"""
@@ -36,9 +37,9 @@ class Entity:
return False
rel_x = int(loc_x - self.x)
rel_y = int(loc_y - self.y)
return bool((self.collision[rel_x] >> (self.height - rel_y)) & 1)
return bool((self.collision[rel_x] >> (rel_y)) & 1)
def can_render(self, current_depth: int) -> bool:
def can_render(self, camera: Camera) -> bool:
"""
Checks to see if this sprite is within the game screen.
@@ -49,15 +50,9 @@ class Entity:
:return:
True if the sprite shows up on screen in any capacity, false otherwise.
"""
if self.x < -self.width or self.x >= thumby.display.width:
return False
max = current_depth
min = max - thumby.display.height
if self.y < (min - self.height) or self.y > max:
return False
return True
return camera.entity_in_camera(self.x, self.y, self.width, self.height)
def update(self, tpf: float, current_depth: int, prev_depth: int) -> bool:
def update(self, tpf: float, player: Player, camera: Camera) -> bool:
"""
Updates the state of the entity based on the game state.
@@ -72,9 +67,9 @@ class Entity:
True if the game should keep this entity, false if the game should drop
this entity from memory.
"""
return False
return True
def render(self, tpf: float, current_depth: int, prev_depth: int) -> bool:
def render(self, tpf: float, camera: Camera) -> bool:
"""
Sets the position of the sprite and draws it.
@@ -90,16 +85,25 @@ class Entity:
should be hidden.
"""
if self.sprite:
self.sprite.y = int(self.y - current_depth + thumby.display.height)
self.sprite.x = int(self.x)
if self.can_render(current_depth):
coordinates = camera.relative_to_camera(self.x, self.y)
self.sprite.x = coordinates[0]
self.sprite.y = coordinates[1]
if self.can_render(camera):
thumby.display.drawSprite(self.sprite)
return True
return False
class Obstacle(Entity):
def update(self, tpf: float, current_depth: int, prev_depth: int) -> bool:
return self.can_render(current_depth)
def update(self, tpf: float, player: Player, camera: Camera) -> bool:
return True
class Collectible(Entity):
def __init__(self, *args, **kwargs):
super().__init__(*args, **kwargs)
self.score = 'score' in kwargs and kwargs['score'] or 10
def update(self, tpf: float, player: Player, camera: Camera) -> bool:
return True
def update_entities(entities, difficulty: int, current_depth: int, prev_depth: int):
@@ -127,14 +131,26 @@ def update_entities(entities, difficulty: int, current_depth: int, prev_depth: i
return set()
spawned = set()
max_spawned = 1#randrange(0, difficulty + 1)
max_spawned = randrange(0, difficulty + 1)
while len(spawned) < max_spawned and random() < (2 * math.pow(difficulty + 0.01, 2)) / (3 * math.pow(difficulty + 0.01, 2) + 20 * (difficulty + 0.01)) + 0.05:
if random() < 0.2:
Clazz = Collectible
if current_depth >= 0:
sprite_image = collectibleunder
else:
sprite_image = collectibleover
else:
Clazz = Obstacle
sprite_image = OBSTACLES[randrange(0, min((difficulty + 1) * 3, len(OBSTACLES)))]
if sprite_image.width >= thumby.display.width:
x = 0
else:
x = randrange(0, thumby.display.width - sprite_image.width)
y = current_depth
if current_depth > prev_depth:
y += thumby.display.height // 2
elif current_depth < prev_depth:
y -= thumby.display.height // 2 + sprite_image.height
error = False
for entity in entities | spawned:
if x > (entity.x - OBSTACLE_BUFFER) and x <= (entity.x + entity.width + OBSTACLE_BUFFER) and y > (entity.y - OBSTACLE_BUFFER) and y <= (entity.y + entity.height + OBSTACLE_BUFFER):
@@ -142,5 +158,5 @@ def update_entities(entities, difficulty: int, current_depth: int, prev_depth: i
break
if not error:
sprite = thumby.Sprite(sprite_image.width, sprite_image.height, sprite_image.image, 0, 0, 0, False, False)
spawned.add(Obstacle(x, y, sprite_image.width, sprite_image.height, sprite_image.collision or sprite_image.image, sprite))
spawned.add(Clazz(x, y, sprite_image.width, sprite_image.height, sprite_image.collision or sprite_image.image, sprite))
return spawned