shelve模块和xml模块
一 shelve模块
shelve模块比pickle模块简单,只有一个open函数,返回类似字典的对象,可读可写;key必须为字符串,而值可以是python所支持的数据类型
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import shelve f=shelve.open(r'sheve.txt') # f['stu1_info']={'name':'egon','age':18,'hobby':['piao','smoking','drinking']} # f['stu2_info']={'name':'gangdan','age':53} # f['school_info']={'website':'http://www.pypy.org','city':'beijing'} print(f['stu1_info']['hobby']) f.close()
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二 xml模块
xml是实现不同语言或程序之间进行数据交换的协议,跟json差不多,但json使用起来更简单,不过,古时候,在json还没诞生的黑暗年代,大家只能选择用xml呀,至今很多传统公司如金融行业的很多系统的接口还主要是xml。
xml的格式如下,就是通过<>节点来区别数据结构的:
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<?xml version="1.0"?> <data> <country name="Liechtenstein"> <rank updated="yes">2</rank> <year>2008</year> <gdppc>141100</gdppc> <neighbor name="Austria" direction="E"/> <neighbor name="Switzerland" direction="W"/> </country> <country name="Singapore"> <rank updated="yes">5</rank> <year>2011</year> <gdppc>59900</gdppc> <neighbor name="Malaysia" direction="N"/> </country> <country name="Panama"> <rank updated="yes">69</rank> <year>2011</year> <gdppc>13600</gdppc> <neighbor name="Costa Rica" direction="W"/> <neighbor name="Colombia" direction="E"/> </country> </data>
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xml协议在各个语言里的都 是支持的,在python中可以用以下模块操作xml:
# print(root.iter('year')) #全文搜索 # print(root.find('country')) #在root的子节点找,只找一个 # print(root.findall('country')) #在root的子节点找,找所有
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import xml.etree.ElementTree as ET tree = ET.parse("xmltest.xml") root = tree.getroot() print(root.tag) #遍历xml文档 for child in root: print('========>',child.tag,child.attrib,child.attrib['name']) for i in child: print(i.tag,i.attrib,i.text) #只遍历year 节点 for node in root.iter('year'): print(node.tag,node.text) #--------------------------------------- import xml.etree.ElementTree as ET tree = ET.parse("xmltest.xml") root = tree.getroot() #修改 for node in root.iter('year'): new_year=int(node.text)+1 node.text=str(new_year) node.set('updated','yes') node.set('version','1.0') tree.write('test.xml') #删除node for country in root.findall('country'): rank = int(country.find('rank').text) if rank > 50: root.remove(country) tree.write('output.xml')
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#在country内添加(append)节点year2 import xml.etree.ElementTree as ET tree = ET.parse("a.xml") root=tree.getroot() for country in root.findall('country'): for year in country.findall('year'): if int(year.text) > 2000: year2=ET.Element('year2') year2.text='新年' year2.attrib={'update':'yes'} country.append(year2) #往country节点下添加子节点 tree.write('a.xml.swap')
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自己创建xml文档:
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import xml.etree.ElementTree as ET new_xml = ET.Element("namelist") name = ET.SubElement(new_xml,"name",attrib={"enrolled":"yes"}) age = ET.SubElement(name,"age",attrib={"checked":"no"}) sex = ET.SubElement(name,"sex") sex.text = '33' name2 = ET.SubElement(new_xml,"name",attrib={"enrolled":"no"}) age = ET.SubElement(name2,"age") age.text = '19' et = ET.ElementTree(new_xml) #生成文档对象 et.write("test.xml", encoding="utf-8",xml_declaration=True) ET.dump(new_xml) #打印生成的格式
来源:https://www.cnblogs.com/achai222/p/12610113.html