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@@ -2,6 +2,7 @@ package file
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import (
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"bufio"
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+ "bytes"
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"errors"
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"fmt"
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"io"
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@@ -596,3 +597,171 @@ func NameAccumulation(name string, dir string) string {
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}
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}
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}
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+
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+// / 解析多个文件上传中,每个具体的文件的信息
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+// type FileHeader struct {
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+// ContentDisposition string
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+// Name string
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+// FileName string
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+// ///< 文件名
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+// ContentType string
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+// ContentLength int64
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+// }
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+
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+// / 解析描述文件信息的头部
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+// / @return FileHeader 文件名等信息的结构体
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+// / @return bool 解析成功还是失败
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+func ParseFileHeader(h []byte, boundary []byte) (map[string]string, bool) {
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+ arr := bytes.Split(h, boundary)
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+ //var out_header FileHeader
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+ //out_header.ContentLength = -1
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+ const (
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+ CONTENT_DISPOSITION = "Content-Disposition: "
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+ NAME = "name=\""
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+ FILENAME = "filename=\""
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+ CONTENT_TYPE = "Content-Type: "
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+ CONTENT_LENGTH = "Content-Length: "
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+ )
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+ result := make(map[string]string)
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+ for _, item := range arr {
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+
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+ tarr := bytes.Split(item, []byte(";"))
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+ if len(tarr) != 2 {
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+ continue
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+ }
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+
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+ tbyte := tarr[1]
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+ fmt.Println(string(tbyte))
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+ tbyte = bytes.ReplaceAll(tbyte, []byte("\r\n--"), []byte(""))
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+ tbyte = bytes.ReplaceAll(tbyte, []byte("name=\""), []byte(""))
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+ tempArr := bytes.Split(tbyte, []byte("\"\r\n\r\n"))
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+ if len(tempArr) != 2 {
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+ continue
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+ }
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+ bytes.HasPrefix(item, []byte("name="))
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+ result[strings.TrimSpace(string(tempArr[0]))] = strings.TrimSpace(string(tempArr[1]))
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+ }
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+ // for _, item := range arr {
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+ // if bytes.HasPrefix(item, []byte(CONTENT_DISPOSITION)) {
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+ // l := len(CONTENT_DISPOSITION)
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+ // arr1 := bytes.Split(item[l:], []byte("; "))
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+ // out_header.ContentDisposition = string(arr1[0])
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+ // if bytes.HasPrefix(arr1[1], []byte(NAME)) {
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+ // out_header.Name = string(arr1[1][len(NAME) : len(arr1[1])-1])
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+ // }
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+ // l = len(arr1[2])
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+ // if bytes.HasPrefix(arr1[2], []byte(FILENAME)) && arr1[2][l-1] == 0x22 {
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+ // out_header.FileName = string(arr1[2][len(FILENAME) : l-1])
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+ // }
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+ // } else if bytes.HasPrefix(item, []byte(CONTENT_TYPE)) {
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+ // l := len(CONTENT_TYPE)
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+ // out_header.ContentType = string(item[l:])
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+ // } else if bytes.HasPrefix(item, []byte(CONTENT_LENGTH)) {
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+ // l := len(CONTENT_LENGTH)
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+ // s := string(item[l:])
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+ // content_length, err := strconv.ParseInt(s, 10, 64)
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+ // if err != nil {
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+ // log.Printf("content length error:%s", string(item))
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+ // return out_header, false
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+ // } else {
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+ // out_header.ContentLength = content_length
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+ // }
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+ // } else {
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+ // log.Printf("unknown:%s\n", string(item))
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+ // }
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+ // }
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+ //fmt.Println(result)
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+ // if len(out_header.FileName) == 0 {
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+ // return out_header, false
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+ // }
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+ return result, true
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+}
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+
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+// / 从流中一直读到文件的末位
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+// / @return []byte 没有写到文件且又属于下一个文件的数据
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+// / @return bool 是否已经读到流的末位了
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+// / @return error 是否发生错误
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+func ReadToBoundary(boundary []byte, stream io.ReadCloser, target io.WriteCloser) ([]byte, bool, error) {
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+ read_data := make([]byte, 1024*8)
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+ read_data_len := 0
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+ buf := make([]byte, 1024*4)
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+ b_len := len(boundary)
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+ reach_end := false
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+ for !reach_end {
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+ read_len, err := stream.Read(buf)
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+ if err != nil {
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+ if err != io.EOF && read_len <= 0 {
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+ return nil, true, err
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+ }
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+ reach_end = true
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+ }
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+ //todo: 下面这一句很蠢,值得优化
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+ copy(read_data[read_data_len:], buf[:read_len]) //追加到另一块buffer,仅仅只是为了搜索方便
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+ read_data_len += read_len
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+ if read_data_len < b_len+4 {
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+ continue
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+ }
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+ loc := bytes.Index(read_data[:read_data_len], boundary)
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+ if loc >= 0 {
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+ //找到了结束位置
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+ target.Write(read_data[:loc-4])
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+ return read_data[loc:read_data_len], reach_end, nil
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+ }
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+ target.Write(read_data[:read_data_len-b_len-4])
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+ copy(read_data[0:], read_data[read_data_len-b_len-4:])
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+ read_data_len = b_len + 4
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+ }
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+ target.Write(read_data[:read_data_len])
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+ return nil, reach_end, nil
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+}
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+
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+// / 解析表单的头部
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+// / @param read_data 已经从流中读到的数据
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+// / @param read_total 已经从流中读到的数据长度
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+// / @param boundary 表单的分割字符串
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+// / @param stream 输入流
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+// / @return FileHeader 文件名等信息头
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+// /[]byte 已经从流中读到的部分
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+// /error 是否发生错误
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+func ParseFromHead(read_data []byte, read_total int, boundary []byte, stream io.ReadCloser) (map[string]string, []byte, error) {
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+
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+ buf := make([]byte, 1024*8)
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+ found_boundary := false
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+ boundary_loc := -1
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+
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+ for {
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+ read_len, err := stream.Read(buf)
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+ if err != nil {
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+ if err != io.EOF {
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+ return nil, nil, err
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+ }
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+ break
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+ }
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+ if read_total+read_len > cap(read_data) {
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+ return nil, nil, fmt.Errorf("not found boundary")
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+ }
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+ copy(read_data[read_total:], buf[:read_len])
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+ read_total += read_len
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+ if !found_boundary {
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+ boundary_loc = bytes.LastIndex(read_data[:read_total], boundary)
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+ if boundary_loc == -1 {
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+ continue
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+ }
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+ found_boundary = true
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+ }
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+ start_loc := boundary_loc + len(boundary)
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+ fmt.Println(string(read_data))
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+ file_head_loc := bytes.Index(read_data[start_loc:read_total], []byte("\r\n\r\n"))
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+ if file_head_loc == -1 {
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+ continue
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+ }
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+ file_head_loc += start_loc
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+ ret := false
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+ headMap, ret := ParseFileHeader(read_data, boundary)
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+ if !ret {
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+ return headMap, nil, fmt.Errorf("ParseFileHeader fail:%s", string(read_data[start_loc:file_head_loc]))
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+ }
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+ return headMap, read_data[file_head_loc+4 : read_total], nil
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+ }
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+ return nil, nil, fmt.Errorf("reach to sream EOF")
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+}
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