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marcus.hinz
2026-06-20 09:14:17 +02:00
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#!/usr/bin/env python3
"""Folie 6 Core / Rationale (DEUTSCH): kompakte Landscape links, Argumente als Karten rechts.
(adesso-Styling). Hintergrund: solides dunkles Blau (BG) Farbe frei anpassbar."""
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, MUTE, RECF,
F, FC, chrome)
# ---- Hintergrundfarbe (solid, keine Transparenz) frei anpassbar ----------
BG = RGBColor(0x0A, 0x3D, 0x6B) # dunkles Blau
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, adj=None):
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
if adj is not None:
try: sh.adjustments[0] = adj
except Exception: pass
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, font=F, anchor=MSO_ANCHOR.MIDDLE, sp=None):
tb = s.shapes.add_textbox(x, y, w, h); tf = tb.text_frame
tf.word_wrap = True; tf.vertical_anchor = anchor
tf.margin_left = tf.margin_right = tf.margin_top = tf.margin_bottom = Pt(0)
first = True
for line in t.split("\n"):
p = tf.paragraphs[0] if first else tf.add_paragraph()
first = False
p.alignment = align
if sp is not None: p.space_after = Pt(sp)
r = p.add_run(); r.text = line
r.font.size = Pt(size); r.font.bold = bold; r.font.italic = italic
r.font.name = font; r.font.color.rgb = color
return tb
def chip(cx, y, text, size=10):
w = Inches(0.30 + 0.085 * len(text)); h = Inches(0.27)
x = cx - w / 2
shp(MSO_SHAPE.ROUNDED_RECTANGLE, x, y, w, h, fill=INK, adj=0.5)
txt(x, y, w, h, text, size=size, color=WHITE, align=PP_ALIGN.CENTER, font=FC)
def core_tag(x, y):
w, h = Inches(0.54), Inches(0.23)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, x, y, w, h, fill=INK, adj=0.5)
txt(x, y, w, h, "CORE", size=8.5, color=TEAL, bold=True, align=PP_ALIGN.CENTER, font=FC)
# ---- solider Hintergrund (zuerst -> liegt hinten) --------------------------
bg = shp(MSO_SHAPE.RECTANGLE, 0, 0, SW, SH, fill=BG)
chrome(s, "Warum Event Sourcing passt", 7)
# ===========================================================================
# LINKS kompakte Landscape
# ===========================================================================
LCX = Inches(3.35)
# Quellen
shp(MSO_SHAPE.ROUNDED_RECTANGLE, Inches(0.7), Inches(1.58), Inches(5.3), Inches(0.7),
fill=WHITE, adj=0.12)
txt(Inches(0.92), Inches(1.66), Inches(4.9), Inches(0.26), "Quellen",
size=12.5, color=INK, bold=True, anchor=MSO_ANCHOR.TOP)
txt(Inches(0.92), Inches(1.94), Inches(4.9), Inches(0.28),
"Publisher (publizieren) · Subsysteme (konsumieren & publizieren)",
size=10.5, color=MUTE, anchor=MSO_ANCHOR.TOP)
shp(MSO_SHAPE.DOWN_ARROW, LCX - Inches(0.13), Inches(2.30), Inches(0.26), Inches(0.26),
fill=CORAL)
# Hot Store (CORE) inkl. Event-Prozessoren
hy, hh = Inches(2.58), Inches(0.98)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, Inches(1.35), hy, Inches(4.0), hh,
fill=CORAL, line=INK, lw=Pt(3), adj=0.08)
core_tag(Inches(1.50), hy + Inches(0.12))
txt(Inches(1.35), hy + Inches(0.08), Inches(4.0), Inches(0.34),
"Event Store — Hot Store", size=15, color=INK, bold=True, align=PP_ALIGN.CENTER)
txt(Inches(1.35), hy + Inches(0.40), Inches(4.0), Inches(0.24),
"inkl. Event-Prozessoren", size=10.5, color=INK, align=PP_ALIGN.CENTER)
chip(LCX, hy + hh - Inches(0.34), "Kafka")
shp(MSO_SHAPE.DOWN_ARROW, LCX - Inches(0.13), hy + hh + Inches(0.02),
Inches(0.26), Inches(0.24), fill=CORAL)
# Projektionen
py, ph = Inches(3.82), Inches(0.56)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, Inches(1.35), py, Inches(4.0), ph, fill=WHITE, adj=0.16)
txt(Inches(1.55), py, Inches(2.0), ph, "Projektionen", size=12.5, color=INK, bold=True)
chip(Inches(4.25), py + ph / 2 - Inches(0.135), "Kafka Streams → PostgreSQL")
# Verteiler -> 3 Bloecke
boxes_y = Inches(4.72); mbh = Inches(1.28)
mb_w = Inches(1.65)
cold_x = Inches(0.7); cold_cx = cold_x + mb_w / 2
mon_x = Inches(2.55); mon_cx = mon_x + mb_w / 2
rep_x = Inches(4.40); rep_cx = rep_x + mb_w / 2
bus_y = py + ph + Inches(0.10)
shp(MSO_SHAPE.RECTANGLE, LCX - Pt(0.75), py + ph, Pt(1.5), bus_y - (py + ph), fill=LIGHT)
shp(MSO_SHAPE.RECTANGLE, cold_cx, bus_y, rep_cx - cold_cx, Pt(1.5), fill=LIGHT)
for cx in (cold_cx, mon_cx, rep_cx):
shp(MSO_SHAPE.DOWN_ARROW, cx - Inches(0.10), bus_y, Inches(0.20), boxes_y - bus_y, fill=LIGHT)
def minibox(x, title, tech, core=False):
fill = CORAL if core else WHITE
line = INK if core else None
lw = Pt(3) if core else Pt(1)
shp(MSO_SHAPE.ROUNDED_RECTANGLE, x, boxes_y, mb_w, mbh, fill=fill, line=line, lw=lw, adj=0.10)
if core:
core_tag(x + Inches(0.12), boxes_y + Inches(0.12))
txt(x, boxes_y + (Inches(0.42) if core else Inches(0.26)), mb_w, Inches(0.5), title,
size=12, color=INK, bold=True, align=PP_ALIGN.CENTER)
chip(x + mb_w / 2, boxes_y + mbh - Inches(0.36), tech)
minibox(cold_x, "Cold\nStore", "PostgreSQL", core=True)
minibox(mon_x, "Monitoring", "Grafana")
minibox(rep_x, "Reporting", "Power BI")
# ===========================================================================
# RECHTS Argumente als Karten
# ===========================================================================
cards = [
("Bewährte Technologie",
"Erprobt in regulierten Branchen mit hohem Volumen — z. B. ING setzt auf Kafka / Event-Streaming."),
("Flexibel",
"Neues System = neuer Adapter, ohne Eingriff in den Rest. Neue Event-Folgen & Projektionen jederzeit baubar."),
("Skalierbar",
"Selbst massive Lastzunahme wird durch mehr Hardware aufgefangen — horizontal, ohne Redesign."),
("Kosteneffizient",
"Wiederverwendbare Adapter statt Punkt-zu-Punkt. Open Source auf Standard-Hardware — kein Lock-in."),
("Auditierbar & revisionssicher",
"Append-only, vollständige & manipulationssichere Historie — vollständig replay-fähig."),
("Resilient & entkoppelt",
"Systeme fallen aus und holen per Replay auf; ein Log statt N² Schnittstellen."),
]
cw, ch = Inches(3.0), Inches(1.42)
col_x = [Inches(6.55), Inches(9.8)]
row_y = [Inches(1.62), Inches(3.30), Inches(4.98)]
for i, (title, body) in enumerate(cards):
x = col_x[i % 2]; y = row_y[i // 2]
shp(MSO_SHAPE.ROUNDED_RECTANGLE, x, y, cw, ch, fill=WHITE, adj=0.08)
shp(MSO_SHAPE.RECTANGLE, x + Inches(0.0), y + Inches(0.14), Inches(0.11), ch - Inches(0.28),
fill=CORAL)
txt(x + Inches(0.32), y + Inches(0.15), cw - Inches(0.5), Inches(0.36), title,
size=13.5, color=INK, bold=True, anchor=MSO_ANCHOR.TOP)
txt(x + Inches(0.32), y + Inches(0.55), cw - Inches(0.52), ch - Inches(0.68), body,
size=10.5, color=MUTE, anchor=MSO_ANCHOR.TOP)
out = os.path.join(os.path.dirname(os.path.abspath(__file__)), "Folie6.pptx")
prs.save(out)
print("saved", out)