146 lines
7.4 KiB
Python
146 lines
7.4 KiB
Python
import json
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import math
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from PIL import Image, ImageDraw, ImageFont
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from funcs import logThis, getName
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# Draws the whole thing
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def drawImage(channel):
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logThis("Drawing four in a row board")
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with open("resources/games/games.json", "r") as f:
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data = json.load(f)
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board = data["4 in a row games"][channel]["board"]
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border = 40
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gridBorder = 40
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cornerSize = 100
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outlineSize = 20
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bottomBorder = 110
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exampleCircles = 100
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w, h = 2800,2000
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backgroundColor = (128,128,128,255)
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outlineColor = (0,0,0)
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player1Color = (200,0,0)
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player2Color = (255,255,0)
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boardColor = (0,0,170)
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placeSize = 285
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white = (255,255,255,160)
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winBarColor = (140,160,140,255)
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fnt = ImageFont.truetype('resources/futura-bold.ttf', exampleCircles)
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boardSize = [w-(2*(border+gridBorder)),h-(2*(border+gridBorder))]
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placeGridSize = [math.floor(boardSize[0]/7),math.floor(boardSize[1]/6)]
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pieceStartx = (border+gridBorder)+math.floor(placeGridSize[0]/2)-math.floor(placeSize/2)
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pieceStarty = (border+gridBorder)+math.floor(placeGridSize[1]/2)-math.floor(placeSize/2)
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if data["4 in a row games"][channel]["players"][0] == "Gwendolyn":
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player1 = "Gwendolyn"
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else:
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player1 = getName(data["4 in a row games"][channel]["players"][0])
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if data["4 in a row games"][channel]["players"][1] == "Gwendolyn":
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player2 = "Gwendolyn"
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else:
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player2 = getName(data["4 in a row games"][channel]["players"][1])
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background = Image.new("RGB", (w,h+bottomBorder),backgroundColor)
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d = ImageDraw.Draw(background,"RGBA")
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# This whole part was the easiest way to make a rectangle with rounded corners and an outline
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# - Corners:
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d.ellipse([(border,border),(border+cornerSize,border+cornerSize)],fill=boardColor,outline=outlineColor,width=outlineSize)
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d.ellipse([(w-(border+cornerSize),h-(border+cornerSize)),(w-border,h-border)],fill=boardColor,outline=outlineColor,width=outlineSize)
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d.ellipse([(border,h-(border+cornerSize)),(border+cornerSize,h-border)],fill=boardColor,outline=outlineColor,width=outlineSize)
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d.ellipse([(w-(border+cornerSize),border),(w-border,border+cornerSize)],fill=boardColor,outline=outlineColor,width=outlineSize)
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# - Rectangle:
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d.rectangle([(border+math.floor(cornerSize/2),border),(w-(border+math.floor(cornerSize/2)),h-border)],fill=boardColor,outline=outlineColor,width=outlineSize)
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d.rectangle([(border,border+math.floor(cornerSize/2)),(w-border,h-(border+math.floor(cornerSize/2)))],fill=boardColor,outline=outlineColor,width=outlineSize)
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# - Removing outline on the inside:
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d.rectangle([(border+math.floor(cornerSize/2),border+math.floor(cornerSize/2)),(w-(border+math.floor(cornerSize/2)),h-(border+math.floor(cornerSize/2)))],fill=boardColor)
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d.rectangle([(border+math.floor(cornerSize/2),border+outlineSize),(w-(border+math.floor(cornerSize/2)),h-(border+outlineSize))],fill=boardColor)
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d.rectangle([(border+outlineSize,border+math.floor(cornerSize/2)),(w-(border+outlineSize),h-(border+math.floor(cornerSize/2)))],fill=boardColor)
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for line in range(len(board)):
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for place in range(len(board[line])):
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piece = board[line][place]
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if piece == 1:
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pieceColor = player1Color
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elif piece == 2:
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pieceColor = player2Color
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else:
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pieceColor = backgroundColor
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startx = pieceStartx + placeGridSize[0]*place
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starty = pieceStarty + placeGridSize[1]*line
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d.ellipse([(startx,starty),(startx+placeSize,starty+placeSize)],fill=pieceColor,outline=outlineColor,width=outlineSize)
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if data["4 in a row games"][channel]["winner"] != 0:
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coordinates = data["4 in a row games"][channel]["win coordinates"]
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startx = border + placeGridSize[0]*coordinates[1] + gridBorder
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starty = border + placeGridSize[1]*coordinates[0] + gridBorder
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a = (placeGridSize[0]*4-gridBorder-border)**2
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b = (placeGridSize[1]*4-gridBorder-border)**2
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diagonalLength = (math.sqrt(a+b))/placeGridSize[0]
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diagonalAngle = math.degrees(math.atan(placeGridSize[1]/placeGridSize[0]))
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if data["4 in a row games"][channel]["win direction"] == "h":
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winBar = Image.new("RGBA",(placeGridSize[0]*4,placeGridSize[1]),(0,0,0,0))
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winD = ImageDraw.Draw(winBar)
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winD.ellipse([(0,0),(placeGridSize[0],placeGridSize[1])],fill=white)
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winD.ellipse([((placeGridSize[0]*3),0),(placeGridSize[0]*4,placeGridSize[1])],fill=white)
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winD.rectangle([(int(placeGridSize[0]*0.5),0),(int(placeGridSize[0]*3.5),placeGridSize[1])],fill=white)
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elif data["4 in a row games"][channel]["win direction"] == "v":
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winBar = Image.new("RGBA",(placeGridSize[0],placeGridSize[1]*4),(0,0,0,0))
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winD = ImageDraw.Draw(winBar)
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winD.ellipse([(0,0),(placeGridSize[0],placeGridSize[1])],fill=white)
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winD.ellipse([(0,(placeGridSize[1]*3)),(placeGridSize[0],placeGridSize[1]*4)],fill=white)
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winD.rectangle([0,(int(placeGridSize[1]*0.5)),(placeGridSize[0],int(placeGridSize[1]*3.5))],fill=white)
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elif data["4 in a row games"][channel]["win direction"] == "r":
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winBar = Image.new("RGBA",(int(placeGridSize[0]*diagonalLength),placeGridSize[1]),(0,0,0,0))
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winD = ImageDraw.Draw(winBar)
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winD.ellipse([(0,0),(placeGridSize[0],placeGridSize[1])],fill=white)
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winD.ellipse([((placeGridSize[0]*(diagonalLength-1)),0),(placeGridSize[0]*diagonalLength,placeGridSize[1])],fill=white)
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winD.rectangle([(int(placeGridSize[0]*0.5),0),(int(placeGridSize[0]*(diagonalLength-0.5)),placeGridSize[1])],fill=white)
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winBar = winBar.rotate(-diagonalAngle,expand=1)
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startx -= border
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starty -= gridBorder + border
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elif data["4 in a row games"][channel]["win direction"] == "l":
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winBar = Image.new("RGBA",(int(placeGridSize[0]*diagonalLength),placeGridSize[1]),(0,0,0,0))
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winD = ImageDraw.Draw(winBar)
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winD.ellipse([(0,0),(placeGridSize[0],placeGridSize[1])],fill=white)
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winD.ellipse([((placeGridSize[0]*(diagonalLength-1)),0),(placeGridSize[0]*diagonalLength,placeGridSize[1])],fill=white)
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winD.rectangle([(int(placeGridSize[0]*0.5),0),(int(placeGridSize[0]*(diagonalLength-0.5)),placeGridSize[1])],fill=white)
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winBar = winBar.rotate(diagonalAngle,expand=1)
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startx -= placeGridSize[0]*3 + border
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starty -= gridBorder + border
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mask = winBar.copy()#.convert("L")
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#mask.putalpha(128)
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#mask.save("test.png")
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winBarImage = Image.new("RGBA",mask.size,color=winBarColor)
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background.paste(winBarImage,(startx,starty),mask)
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# Bottom
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textPadding = 20
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exampleHeight = h - border + int((bottomBorder+border)/2) - int(exampleCircles/2)
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d.ellipse([(border,exampleHeight),(border+exampleCircles),(exampleHeight+exampleCircles)],fill=player1Color,outline=outlineColor,width=3)
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d.text((border+exampleCircles+textPadding,exampleHeight),player1,font=fnt,fill=(0,0,0))
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textWidth = fnt.getsize(player2)[0]
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d.ellipse([(w-border-exampleCircles-textWidth-textPadding,exampleHeight),(w-border-textWidth-textPadding),(exampleHeight+exampleCircles)],fill=player2Color,outline=outlineColor,width=3)
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d.text((w-border-textWidth,exampleHeight),player2,font=fnt,fill=(0,0,0))
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background.save("resources/games/4InARowBoards/board"+channel+".png")
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