Code/utils/graph_utils.py

196 lines
6.1 KiB
Python

import networkx as nx
import pandas as pd
import logging
import streamlit as st
import json
from networkx.drawing.nx_agraph import read_dot
# Configuration Gitea
from config import DOT_FILE
from utils.gitea import (
charger_schema_depuis_gitea
)
def extraire_chemins_depuis(G, source):
chemins = []
stack = [(source, [source])]
while stack:
(node, path) = stack.pop()
voisins = list(G.successors(node))
if not voisins:
chemins.append(path)
else:
for voisin in voisins:
if voisin not in path:
stack.append((voisin, path + [voisin]))
return chemins
def extraire_chemins_vers(G, target, niveau_demande):
chemins = []
reverse_G = G.reverse()
niveaux = nx.get_node_attributes(G, "niveau")
stack = [(target, [target])]
while stack:
(node, path) = stack.pop()
voisins = list(reverse_G.successors(node))
if not voisins:
chemin_inverse = list(reversed(path))
contient_niveau = any(
int(niveaux.get(n, -1)) == niveau_demande for n in chemin_inverse
)
if contient_niveau:
chemins.append(chemin_inverse)
else:
for voisin in voisins:
if voisin not in path:
stack.append((voisin, path + [voisin]))
return chemins
def recuperer_donnees(graph, noeuds):
donnees = []
ics = {}
for noeud in noeuds:
try:
operation, minerai = noeud.split('_', 1)
except ValueError:
logging.warning(f"Nom de nœud inattendu : {noeud}")
continue
if operation == "Traitement":
try:
fabrications = list(graph.predecessors(minerai))
valeurs = [
int(float(graph.get_edge_data(f, minerai)[0].get('ics', 0)) * 100)
for f in fabrications
if graph.get_edge_data(f, minerai)
]
if valeurs:
ics[minerai] = round(sum(valeurs) / len(valeurs))
except Exception as e:
logging.warning(f"Erreur criticité pour {noeud} : {e}")
ics[minerai] = 50
for noeud in noeuds:
try:
operation, minerai = noeud.split('_', 1)
ihh_pays = int(graph.nodes[noeud].get('ihh_pays', 0))
ihh_acteurs = int(graph.nodes[noeud].get('ihh_acteurs', 0))
ics_val = ics.get(minerai, 50)
ics_cat = 1 if ics_val <= 33 else (2 if ics_val <= 66 else 3)
donnees.append({
'categorie': operation,
'nom': minerai,
'ihh_pays': ihh_pays,
'ihh_acteurs': ihh_acteurs,
'ics_minerai': ics_val,
'ics_cat': ics_cat
})
except Exception as e:
logging.error(f"Erreur sur le nœud {noeud} : {e}", exc_info=True)
return pd.DataFrame(donnees)
def recuperer_donnees_2(graph, noeuds_2):
donnees = []
for minerai in noeuds_2:
try:
missing = []
if not graph.has_node(minerai):
missing.append(minerai)
if not graph.has_node(f"Extraction_{minerai}"):
missing.append(f"Extraction_{minerai}")
if not graph.has_node(f"Reserves_{minerai}"):
missing.append(f"Reserves_{minerai}")
if missing:
print(f"⚠️ Nœuds manquants pour {minerai} : {', '.join(missing)} — Ignoré.")
continue
ivc = int(graph.nodes[minerai].get('ivc', 0))
ihh_extraction_pays = int(graph.nodes[f"Extraction_{minerai}"].get('ihh_pays', 0))
ihh_reserves_pays = int(graph.nodes[f"Reserves_{minerai}"].get('ihh_pays', 0))
donnees.append({
'nom': minerai,
'ivc': ivc,
'ihh_extraction': ihh_extraction_pays,
'ihh_reserves': ihh_reserves_pays
})
except Exception as e:
print(f"Erreur avec le nœud {minerai} : {e}")
return donnees
def couleur_noeud(n, niveaux, G):
niveau = niveaux.get(n, 99)
attrs = G.nodes[n]
# Niveau 99 : pays géographique avec isg
if niveau == 99:
isg = int(attrs.get("isg", -1))
return (
"darkred" if isg >= 60 else
"orange" if isg >= 31 else
"darkgreen" if isg >= 0 else
"gray"
)
# Niveau 11 ou 12 connecté à un pays géographique
if niveau in (11, 12, 1011, 1012):
for succ in G.successors(n):
if niveaux.get(succ) == 99:
isg = int(G.nodes[succ].get("isg", -1))
return (
"darkred" if isg >= 60 else
"orange" if isg >= 31 else
"darkgreen" if isg >= 0 else
"gray"
)
# Logique existante pour IHH / IVC
if niveau in (10, 1010) and attrs.get("ihh_pays"):
ihh = int(attrs["ihh_pays"])
return (
"darkgreen" if ihh <= 15 else
"orange" if ihh <= 25 else
"darkred"
)
elif niveau == 2 and attrs.get("ivc"):
ivc = int(attrs["ivc"])
return (
"darkgreen" if ivc <= 15 else
"orange" if ivc <= 30 else
"darkred"
)
return "lightblue"
def charger_graphe():
if "G_temp" not in st.session_state:
try:
if charger_schema_depuis_gitea(DOT_FILE):
st.session_state["G_temp"] = read_dot(DOT_FILE)
st.session_state["G_temp_ivc"] = st.session_state["G_temp"].copy()
dot_file_path = True
else:
dot_file_path = False
except Exception as e:
st.error(f"Erreur de lecture du fichier DOT : {e}")
dot_file_path = False
else:
dot_file_path = True
if dot_file_path:
return dot_file_path
else:
st.error("Impossible de charger le graphe pour cet onglet.")
return dot_file_path