name: excel-split description: | Split a large table into multiple files by a specified column (one file per unique value). Uses pandas grouping + iterparse streaming fan-out (single XML parse, multi-output), with format fully preserved. Supports limiting split count (Top N + Others). 按指定列将一个大表拆分成多个文件(每个值一个文件)。用 pandas 分组 + iterparse 流式分流(一次解析XML,多路输出),格式完整保留。支持限制拆分数量(Top N + 其他)。 Trigger keywords: "split" "separate" "split by" "split into files" "break apart by" 触发词包括"拆分""拆开""按xx分开""分表""拆成多个文件"。
This skill follows [[excel-safe-workflow]] four-step method. Grouping uses pandas, fan-out uses lxml iterparse single-scan multi-output. 本技能遵循 [[excel-safe-workflow]] 四步法。分组用 pandas,分流用 lxml iterparse 一次扫描多路输出。
把一张大表按某列的值拆成 N 个独立文件。
总表 (33万行)
│
│ 按"申请人"拆分 Top 10
│
├── 上海诺基亚贝尔.xlsx (1859行)
├── 上海泰康网络.xlsx (1301行)
├── ... (8个)
└── 其他.xlsx (283145行)
| 要素 | 用户说 | 默认值 |
|---|---|---|
| 拆分列 | "按申请人拆""按年份分" | 必须明确 |
| Top N | "前10个""最多的20个" | 20 |
| 输出目录 | "放到 split 文件夹" | {原文件名}_split_{列名}/ |
import pandas as pd
FILE = '目标文件.xlsx'
SPLIT_COL = '列名'
df = pd.read_excel(FILE)
counts = df[SPLIT_COL].value_counts()
print(f'总行数: {len(df)}, 唯一值: {len(counts)}')
print(f'Top 10:')
for k, v in counts.head(10).items():
print(f' {k}: {v} 行')
{原文件名}_split/{拆分值}.xlsx(自动清理非法字符)核心思路:一次 iterparse 流式解析 XML,按行分流到各输出缓冲区,避免重复解析。
import pandas as pd, zipfile, os, shutil, re, time
from lxml import etree
from collections import defaultdict
S_NS = 'http://schemas.openxmlformats.org/spreadsheetml/2006/main'
FILE = '目标文件.xlsx'
SPLIT_COL = '列名'
TOP_N = 20
OUTPUT_DIR = FILE.replace('.xlsx', f'_split_{SPLIT_COL}')
# ====== 3.1 pandas 分组 ======
print(f'[1/4] pandas 分组...')
df = pd.read_excel(FILE).dropna(how='all') # 去掉空行(如有间隙)
total = len(df)
counts = df[SPLIT_COL].value_counts()
top_keys = set(counts.head(TOP_N).index.tolist()) if len(counts) > TOP_N else set(counts.index)
row_to_file = {}
file_sizes = defaultdict(int)
for key in top_keys:
safe = str(key).replace('/', '_').replace('\\', '_').replace(':', '_')[:80]
indices = df.index[df[SPLIT_COL] == key].tolist()
for i in indices:
row_to_file[i + 2] = f'{safe}.xlsx'
file_sizes[f'{safe}.xlsx'] = len(indices)
other = df.index[~df[SPLIT_COL].isin(top_keys)].tolist()
if other:
for i in other:
row_to_file[i + 2] = '其他.xlsx'
file_sizes['其他.xlsx'] = len(other)
print(f' 将生成 {len(file_sizes)} 个文件')
# ====== 3.2 解压 ======
print(f'[2/4] 解压...')
TMP = FILE.replace('.xlsx', '_split_tmp')
if os.path.exists(TMP): shutil.rmtree(TMP)
os.makedirs(TMP)
with zipfile.ZipFile(FILE, 'r') as z:
z.extractall(TMP)
worksheets_dir = os.path.join(TMP, 'xl', 'worksheets')
orig_sheet = None
for sf in sorted(os.listdir(worksheets_dir)):
if sf.endswith('.xml') and sf.startswith('sheet'):
orig_sheet = os.path.join(worksheets_dir, sf)
break
# ====== 3.3 iterparse 流式分流 ======
print(f'[3/4] 流式分流...')
row_xml = defaultdict(list)
header_xml = []
tag = f'{{{S_NS}}}row'
for event, elem in etree.iterparse(orig_sheet, tag=tag):
r = int(elem.get('r'))
row_str = etree.tostring(elem, encoding='unicode')
if r == 1: # 表头行
header_xml.append(row_str)
elif r in row_to_file:
row_xml[row_to_file[r]].append(row_str)
elem.clear()
while elem.getprevious() is not None:
del elem.getparent()[0]
# ====== 3.4 生成输出文件 ======
print(f'[4/4] 生成输出文件...')
os.makedirs(OUTPUT_DIR, exist_ok=True)
# 构建 sheet XML 模板(<sheetData> 前后的结构)
tree_orig = etree.parse(orig_sheet, etree.XMLParser(huge_tree=True))
full_xml = etree.tostring(tree_orig.getroot(), encoding='unicode')
sd_start = full_xml.find('<sheetData')
sd_end = full_xml.find('</sheetData>')
prefix = full_xml[:sd_start]
suffix = full_xml[sd_end + len('</sheetData>'):]
for idx, (fname, rows) in enumerate(sorted(row_xml.items(), key=lambda x: -len(x[1]))):
fpath = os.path.join(OUTPUT_DIR, fname)
all_rows = ''.join(header_xml) + ''.join(rows)
new_xml = f'{prefix}<sheetData>{all_rows}</sheetData>{suffix}'
with open(orig_sheet, 'w', encoding='utf-8') as f:
f.write(new_xml)
with zipfile.ZipFile(fpath, 'w', zipfile.ZIP_DEFLATED) as zout:
for dirpath, _, filenames in os.walk(TMP):
for fn in filenames:
full = os.path.join(dirpath, fn)
zout.write(full, os.path.relpath(full, TMP).replace('\\', '/'))
shutil.rmtree(TMP)
print(f'完成,输出: {OUTPUT_DIR}/')
import pandas as pd, os
total_out = 0
for f in os.listdir(OUTPUT_DIR):
if not f.endswith('.xlsx'): continue
fp = os.path.join(OUTPUT_DIR, f)
df = pd.read_excel(fp).dropna(how='all')
total_out += len(df)
if f != '其他.xlsx':
key = f.replace('.xlsx', '')
bad = df[df[SPLIT_COL] != key].shape[0]
if bad: print(f' ❌ {f}: {bad} 行错配')
print(f'输出总行: {total_out} (期望 {total})')
本技能来自小葱技能站7w4.net。
| 文件 | 行数 | 输出文件数 | pandas扫描 | iterparse分流 | 生成打包 | 总耗时 |
|---|---|---|---|---|---|---|
| 测试文件 | 914 | 6 | 1s | 0s | 0s | 1s |
| 主文件 | 29万 | 11 | 82s | 51s | 258s | ~6.5min |
生成打包阶段耗时较长是因为每个输出文件都包含完整的 sharedStrings.xml(273MB),11 个文件约 3GB 压缩量。迭代次数越多,此阶段越慢。
这是一个质量优秀的 Excel 拆分技能。文档清晰易懂,步骤分明,新手也能快速上手;功能描述准确,注意事项说明详细,让人用起来放心。唯一的不足是没有提供示例文件,新用户可能需要自己准备测试数据才能更好地理解和使用。整体推荐度较高。