Files
limbach/folie4.py
T
marcus hinz 93bb19abf0 initial
2026-06-20 14:40:33 +02:00

162 lines
6.2 KiB
Python
Raw Blame History

This file contains ambiguous Unicode characters
This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.
#!/usr/bin/env python3
"""Folie 4 Eventstream als Quelle; Aussagen links, Lupen rechts, Strecke unten
(adesso-Styling)."""
import os
from pptx import Presentation
from pptx.util import Inches, Pt
from pptx.dml.color import RGBColor
from pptx.enum.text import PP_ALIGN, MSO_ANCHOR
from pptx.enum.shapes import MSO_SHAPE
from adesso_style import (WHITE, INK, BLUE, TEAL, GREEN, CORAL, LIGHT, RECF, F, FC,
paint_background, chrome)
# Rollen-Mapping auf die adesso-Palette
NAVY = INK # dunkle Füllungen (Lupe, Maschine)
ACCENT = CORAL
AMBER = GREEN
GLASS = RECF
BELT = RECF
DARK = INK
LINEC = LIGHT
THIN = LIGHT
STREAM = INK
MID = RGBColor(0x34, 0x4E, 0x70)
prs = Presentation()
prs.slide_width = Inches(13.333)
prs.slide_height = Inches(7.5)
SW, SH = prs.slide_width, prs.slide_height
s = prs.slides.add_slide(prs.slide_layouts[6])
def shp(kind, x, y, w, h, fill=None, line=None, lw=Pt(1), rot=0):
sh = s.shapes.add_shape(kind, x, y, w, h)
if fill is None: sh.fill.background()
else: sh.fill.solid(); sh.fill.fore_color.rgb = fill
if line is None: sh.line.fill.background()
else: sh.line.color.rgb = line; sh.line.width = lw
if rot: sh.rotation = rot
sh.shadow.inherit = False
return sh
def txt(x, y, w, h, t, size=16, color=WHITE, bold=False, italic=False,
align=PP_ALIGN.LEFT, spc=None, font=F):
tb = s.shapes.add_textbox(x, y, w, h); tf = tb.text_frame
tf.word_wrap = True; tf.vertical_anchor = MSO_ANCHOR.MIDDLE
tf.margin_left = tf.margin_right = tf.margin_top = tf.margin_bottom = Pt(0)
p = tf.paragraphs[0]; p.alignment = align
r = p.add_run(); r.text = t
r.font.size = Pt(size); r.font.bold = bold; r.font.italic = italic
r.font.name = font; r.font.color.rgb = color
if spc: r.font._rPr.set('spc', str(spc))
return tb
paint_background(s, SW, SH)
chrome(s, "Zustand oder Ereignis", 5)
x0, x1 = Inches(1.0), Inches(12.33)
beltw = x1 - x0
# ---- Aussagen links --------------------------------------------------------
claims = [
"Eventstream = einzige Quelle der Wahrheit",
"kann nicht überschrieben werden",
"vollständige 3D-Sicht auf Maschine / Strang",
]
cy = Inches(1.95)
for i, c in enumerate(claims):
y = cy + Inches(0.6) * i
shp(MSO_SHAPE.RECTANGLE, Inches(0.95), y + Inches(0.1), Inches(0.14), Inches(0.14), fill=ACCENT)
txt(Inches(1.28), y, Inches(4.6), Inches(0.45), c, size=16.5, color=WHITE, bold=(i == 0))
# ===========================================================================
# LUPEN (Projektionen)
# ===========================================================================
def lupe(cx, label, label_w):
cyy = Inches(2.45)
d = Inches(0.9)
shp(MSO_SHAPE.OVAL, cx - d / 2, cyy - d / 2, d, d, fill=WHITE, line=NAVY, lw=Pt(4))
shp(MSO_SHAPE.OVAL, cx - d / 2 + Inches(0.13), cyy - d / 2 + Inches(0.12),
Inches(0.17), Inches(0.13), fill=RECF)
hw, hh = Inches(0.48), Inches(0.15)
hcx, hcy = cx + d * 0.52, cyy + d * 0.52
shp(MSO_SHAPE.ROUNDED_RECTANGLE, hcx - hw / 2, hcy - hh / 2, hw, hh, fill=NAVY, rot=45)
txt(cx - label_w / 2, cyy + d / 2 + Inches(0.16), label_w, Inches(0.6),
label, size=14, color=WHITE, bold=True, align=PP_ALIGN.CENTER)
return cyy + d / 2
lupes = [
(Inches(7.05), "Gruppen-Reporting", Inches(2.3)),
(Inches(9.45), "Optimierung der Auslastung", Inches(2.3)),
(Inches(11.55), "Abrechnungen", Inches(1.9)),
]
lens_bottoms = [lupe(cx, lb, lw) for cx, lb, lw in lupes]
# ===========================================================================
# EVENTSTREAM (Pfeil)
# ===========================================================================
ay, ah = Inches(4.45), Inches(0.46)
shp(MSO_SHAPE.RIGHT_ARROW, x0, ay, beltw, ah, fill=STREAM)
acx = ay + ah / 2
txt(Inches(5.65), ay + Inches(0.04), Inches(2.0), ah - Inches(0.08),
"Eventstream", size=14, color=WHITE, bold=True, align=PP_ALIGN.CENTER)
# Verbinder Lupe -> Strom
for (cx, _, _), lb_y in zip(lupes, lens_bottoms):
shp(MSO_SHAPE.RECTANGLE, cx - Pt(0.5), lb_y, Pt(1), ay - lb_y, fill=LINEC)
# ===========================================================================
# RÖHRCHEN-STRECKE durch Maschine unten
# ===========================================================================
belt_top = Inches(6.1)
belt_h = Inches(0.30)
for rx in (x0 - Inches(0.18), x1 - Inches(0.32)):
shp(MSO_SHAPE.OVAL, rx, belt_top - Inches(0.10), Inches(0.5), Inches(0.5),
fill=BELT, line=LINEC)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, x0, belt_top, beltw, belt_h, fill=BELT)
mx, mw = Inches(5.45), Inches(2.45)
my, mh = Inches(5.2), Inches(1.5)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, mx, my, mw, mh, fill=NAVY)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, mx + Inches(0.3), my + Inches(0.22),
mw - Inches(0.6), Inches(0.32), fill=MID)
shp(MSO_SHAPE.OVAL, mx + Inches(0.35), my + Inches(0.74), Inches(0.15), Inches(0.15), fill=TEAL)
shp(MSO_SHAPE.OVAL, mx + Inches(0.6), my + Inches(0.74), Inches(0.15), Inches(0.15), fill=AMBER)
shp(MSO_SHAPE.RECTANGLE, mx - Inches(0.02), belt_top - Inches(0.02),
Inches(0.14), belt_h + Inches(0.04), fill=DARK)
shp(MSO_SHAPE.RECTANGLE, mx + mw - Inches(0.12), belt_top - Inches(0.02),
Inches(0.14), belt_h + Inches(0.04), fill=DARK)
def tube(cx, liquid):
bw, bh = Inches(0.22), Inches(0.6)
bx, by = cx - bw / 2, belt_top - bh
shp(MSO_SHAPE.ROUNDED_RECTANGLE, bx, by, bw, bh, fill=GLASS, line=LINEC, lw=Pt(0.75))
lh = Inches(0.25)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, bx + Pt(1), belt_top - lh, bw - Pt(2), lh, fill=liquid)
cw, ch = Inches(0.26), Inches(0.12)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, cx - cw / 2, by - Inches(0.06), cw, ch, fill=DARK)
cols = [ACCENT, TEAL, AMBER]
pre_x = [1.55, 2.1, 2.65, 3.2, 3.75, 4.3, 4.85]
post_x = [8.25, 8.8, 9.35, 9.9, 10.45, 11.0]
for i, xv in enumerate(pre_x + post_x):
tube(Inches(xv), cols[i % 3])
tube_top = belt_top - Inches(0.6)
for xv in pre_x + post_x:
shp(MSO_SHAPE.RECTANGLE, Inches(xv) - Pt(0.4), ay + ah,
Pt(0.8), tube_top - (ay + ah), fill=THIN)
shp(MSO_SHAPE.OVAL, Inches(xv) - Inches(0.05), acx - Inches(0.05),
Inches(0.1), Inches(0.1), fill=AMBER)
out = os.path.join(os.path.dirname(os.path.abspath(__file__)), "Folie4.pptx")
prs.save(out)
print("saved", out)