PPlanung/Umfuhrplanung_direct.ipynb
2021-09-22 15:50:12 +02:00

248 lines
12 KiB
Plaintext

{
"cells": [
{
"cell_type": "code",
"execution_count": null,
"source": [
"from spielbergerscripts.spielbergerscripts.storageunit import Product, Bundle, NVE\r\n",
"from spielbergerscripts.spielbergerscripts.connector import IBMConnector"
],
"outputs": [],
"metadata": {}
},
{
"cell_type": "code",
"execution_count": null,
"source": [
"ibmconnect = IBMConnector(True)\r\n",
"nveDict = ibmconnect.getNVETable()\r\n",
"prodDict = ibmconnect.getProductsTable()"
],
"outputs": [],
"metadata": {}
},
{
"cell_type": "code",
"execution_count": null,
"source": [
"extResource = dict()\r\n",
"\r\n",
"for nve in nveDict.values():\r\n",
" prod = prodDict.get(nve.article)\r\n",
"\r\n",
" if not prod is None:\r\n",
" if nve.area != '01' and nve.area != '02' and nve.area != prod.pickArea:\r\n",
" extResource[(nve.article, nve.area, nve.vq)] = (prod.name, prod.bundle, extResource.get((nve.article, nve.area, nve.vq), ('', '', 0))[2] + nve.amount)"
],
"outputs": [],
"metadata": {}
},
{
"cell_type": "code",
"execution_count": null,
"source": [
"ART_WU = set()\r\n",
"\r\n",
"for (pNr, area, vq), (pName, bundle, amount) in extResource.items():\r\n",
" if area != '36' or bundle.strip() == \"25 KG\" or bundle.strip() == \"BIG-BAG\" or bundle.strip() == \"1000 ST\":\r\n",
" continue\r\n",
" print(f\"Lager {area}\\t{amount}x {pName.strip()} (#{pNr} / VQ{vq}) {bundle} auf Vorrat\")\r\n",
" ART_WU.add(pNr)\r\n",
"\r\n",
"# zusätzlich\r\n",
"ART_WU.union({\"062346\", \"062356\", \"062306\", \"062416\", \"104406\", \"104409\"})\r\n",
"\r\n",
"ART_WU = list(ART_WU)\r\n",
"ART_WU.sort()"
],
"outputs": [],
"metadata": {}
},
{
"cell_type": "code",
"execution_count": null,
"source": [
"\r\n",
"from openpyxl import load_workbook\r\n",
"from openpyxl.styles import Color, PatternFill\r\n",
"\r\n",
"from dataclasses import dataclass\r\n",
"from datetime import date, datetime, timedelta\r\n",
"\r\n",
"@dataclass\r\n",
"class Request:\r\n",
" ordernr: str\r\n",
" cust_name: str\r\n",
" delivdate: date\r\n",
" artnr: str\r\n",
" artname: str\r\n",
" bundle: str\r\n",
" stock: int\r\n",
" ordered: int\r\n",
" ord_rem: int\r\n",
" available: int\r\n",
" avail_wo_36:int\r\n",
" upcoming: int\r\n",
" upc_date: str\r\n",
" upc_area: str\r\n",
" stock00: int\r\n",
" stock01: int\r\n",
" stock33: int\r\n",
" stock36: int\r\n",
"\r\n",
" def from_tuple(t):\r\n",
" d = str(t[2])\r\n",
" szd = f\"20{d[-2:]}-{d[-4:-2]}-{int(d[:-4]):02d}\"\r\n",
" return Request(\r\n",
" ordernr=str(t[0]),\r\n",
" cust_name=str(t[1]).strip(),\r\n",
" delivdate=date.fromisoformat(szd),\r\n",
" artnr=str(t[3]),\r\n",
" artname=str(t[4]),\r\n",
" bundle=str(t[5]),\r\n",
" stock=int(t[6]),\r\n",
" ordered=int(t[7]),\r\n",
" ord_rem=int(t[23]),\r\n",
" available=int(t[9]),\r\n",
" avail_wo_36=int(t[28]),\r\n",
" upcoming=int(t[10]),\r\n",
" upc_date=date.fromisoformat(f\"20{str(t[11])[-2:]}-{str(t[11])[-4:-2]}-{int(str(t[11])[:-4]):02d}\") if int(t[10]) > 0 else None,\r\n",
" upc_area=str(t[12]),\r\n",
" stock00=int(t[24]),\r\n",
" stock01=int(t[25]),\r\n",
" stock33=int(t[26]),\r\n",
" stock36=int(t[27]),\r\n",
" )\r\n",
"\r\n",
"\r\n",
"RED = Color(rgb='E6B8B7')\r\n",
"\r\n",
"FROM = datetime.now().date()\r\n",
"TO = FROM + timedelta(days=14)\r\n",
"\r\n",
"if FROM.month == TO.month and FROM.year == TO.year:\r\n",
" aufbes = list(map(lambda t: Request.from_tuple(t), ibmconnect.getNegAvail(FROM.day, TO.day, FROM.month, FROM.year)))\r\n",
"else:\r\n",
" temp_to = FROM + timedelta(days = 31 if FROM.day >= 15 else 20)\r\n",
" temp_to = temp_to.replace(day = 1)\r\n",
" print(f\"Temp to = {temp_to}\")\r\n",
" temp_to = temp_to - timedelta(days=1)\r\n",
" print(f\"Temp to = {temp_to}\")\r\n",
" aufbes = list(map(lambda t: Request.from_tuple(t), ibmconnect.getNegAvail(FROM.day, temp_to.day, FROM.month, FROM.year)))\r\n",
" temp_from = temp_to + timedelta(days=1)\r\n",
" print(f\"Temp from = {temp_from}\")\r\n",
" while temp_from.month < TO.month:\r\n",
" temp_to = FROM + timedelta(days = 31 if FROM.day >= 15 else 20)\r\n",
" temp_to = temp_to.replace(day=1)\r\n",
" temp_to = temp_to - timedelta(days=1)\r\n",
" aufbes.extend(map(lambda t: Request.from_tuple(t), ibmconnect.getNegAvail(temp_from.day, temp_to.day, temp_from.month, temp_from.year)))\r\n",
" temp_from = temp_to + timedelta(days=1)\r\n",
" \r\n",
" # last month. temp_from is the current TO month\r\n",
" aufbes.extend(map(lambda t: Request.from_tuple(t), ibmconnect.getNegAvail(temp_from.day, TO.day, temp_from.month, temp_from.year)))\r\n",
" \r\n",
"\r\n",
"\r\n",
"aufbes.sort(key = lambda a: a.delivdate)\r\n",
"\r\n",
"vorlage = load_workbook(\"Umfuhrplanung_Vorlage.xlsx\")\r\n",
"\r\n",
"for prodNr in ART_WU:\r\n",
" aufbes_filt = [t for t in aufbes if t.artnr == prodNr]\r\n",
"\r\n",
" if len(aufbes_filt) > 0:\r\n",
" prod = prodDict.get(prodNr)\r\n",
" sheet = vorlage.copy_worksheet(vorlage[\"Vorlage\"])\r\n",
" sheet.title = prodNr\r\n",
" sheet['A1'] = f\"{prod.name.strip()} (#{prodNr})\"\r\n",
" sheet['N1'] = f\"vom {FROM} bis inklussive {TO}\\n\\n\"\r\n",
"\r\n",
" first = aufbes_filt[0]\r\n",
" bestand_00 = first.stock00\r\n",
" bestand_01 = first.stock01\r\n",
" bestand_33 = first.stock33\r\n",
" bestand_36 = first.stock36\r\n",
" \r\n",
"\r\n",
" we = first.upcoming\r\n",
" we_dat = first.upc_date\r\n",
" we_area = first.upc_area\r\n",
" we_done = False\r\n",
"\r\n",
" sheet['C2'] = bestand_00\r\n",
" sheet['E2'] = bestand_33\r\n",
" sheet['G2'] = bestand_36\r\n",
" sheet['B3'] = we\r\n",
" sheet['D3'] = we_dat\r\n",
"\r\n",
" verbleibend = bestand_00\r\n",
" bedarf_am = \"\"\r\n",
" bedarf_durch = \"\"\r\n",
" bedarf_auftrag = \"\"\r\n",
" umfuhrmenge = 0\r\n",
" umfuhr_an = \"\"\r\n",
" auftrag = 0\r\n",
" auftr_dennree = 0\r\n",
" for t in aufbes_filt:\r\n",
" if we > 0 and t.delivdate > we_dat:\r\n",
" if we_area == \"00\":\r\n",
" verbleibend += we\r\n",
" \r\n",
" sheet.append([\"\", \"Produktion\", we_dat, t.delivdate, t.artnr, t.artname, t.bundle, \"\", f\"+{we}\", verbleibend, t.upcoming, t.upc_date, t.upc_area, t.stock00, t.stock01, t.stock33, t.stock36])\r\n",
" we = 0\r\n",
" if t.cust_name.strip() == \"dennree GmbH\":\r\n",
" sheet.append([t.ordernr, t.cust_name, t.delivdate, t.artnr, t.artname, t.bundle, t.ordered, t.ord_rem, verbleibend, t.upcoming, t.upc_date, t.upc_area, t.stock00, t.stock01, t.stock33, t.stock36])\r\n",
" for row in sheet.iter_cols(min_col=1, max_col=16, min_row=sheet.max_row, max_row=sheet.max_row):\r\n",
" for cell in row:\r\n",
" cell.fill = PatternFill(fgColor=RED, fill_type = 'solid')\r\n",
" elif t.cust_name.strip() == \"Interne Umlagerung\":\r\n",
" verbleibend += t.ordered\r\n",
" sheet.append([t.ordernr, t.cust_name, t.delivdate, t.artnr, t.artname, t.bundle, t.ordered, f\"+{t.ordered}\", verbleibend, t.upcoming, t.upc_date, t.upc_area, t.stock00, t.stock01, t.stock33, t.stock36])\r\n",
" else:\r\n",
" verbleibend -= t.ord_rem\r\n",
" sheet.append([t.ordernr, t.cust_name, t.delivdate, t.artnr, t.artname, t.bundle, t.ordered, t.ord_rem, verbleibend, t.upcoming, t.upc_date, t.upc_area, t.stock00, t.stock01, t.stock33, t.stock36])\r\n",
" \r\n",
" if we > 0:\r\n",
" if we_area == \"00\":\r\n",
" verbleibend += we\r\n",
" \r\n",
" sheet.append([\"\", \"Produktion\", we_dat, t.delivdate, t.artnr, t.artname, t.bundle, \"\", f\"+{we}\", verbleibend, t.upcoming, t.upc_date, t.upc_area, t.stock00, t.stock01, t.stock33, t.stock36])\r\n",
"\r\n",
"vorlage.save(f\"Umfuhrplanung_{FROM}.xlsx\")"
],
"outputs": [],
"metadata": {}
},
{
"cell_type": "code",
"execution_count": null,
"source": [],
"outputs": [],
"metadata": {}
}
],
"metadata": {
"orig_nbformat": 4,
"language_info": {
"name": "python",
"version": "3.9.7",
"mimetype": "text/x-python",
"codemirror_mode": {
"name": "ipython",
"version": 3
},
"pygments_lexer": "ipython3",
"nbconvert_exporter": "python",
"file_extension": ".py"
},
"kernelspec": {
"name": "python3",
"display_name": "Python 3.9.7 64-bit"
},
"interpreter": {
"hash": "032eb40c1682b1e6109824d577ff4427b0bbc2f8ebe1487b7b1be524c4843266"
}
},
"nbformat": 4,
"nbformat_minor": 2
}