Платформа ЦРНП "Мирокод" для разработки проектов
https://git.mirocod.ru
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1778 lines
41 KiB
1778 lines
41 KiB
package dns |
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import ( |
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"bytes" |
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"encoding/base64" |
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"net" |
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"strconv" |
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"strings" |
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) |
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// A remainder of the rdata with embedded spaces, return the parsed string (sans the spaces) |
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// or an error |
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func endingToString(c *zlexer, errstr string) (string, *ParseError) { |
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var buffer bytes.Buffer |
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l, _ := c.Next() // zString |
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for l.value != zNewline && l.value != zEOF { |
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if l.err { |
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return buffer.String(), &ParseError{"", errstr, l} |
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} |
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switch l.value { |
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case zString: |
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buffer.WriteString(l.token) |
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case zBlank: // Ok |
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default: |
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return "", &ParseError{"", errstr, l} |
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} |
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l, _ = c.Next() |
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} |
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return buffer.String(), nil |
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} |
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// A remainder of the rdata with embedded spaces, split on unquoted whitespace |
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// and return the parsed string slice or an error |
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func endingToTxtSlice(c *zlexer, errstr string) ([]string, *ParseError) { |
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// Get the remaining data until we see a zNewline |
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l, _ := c.Next() |
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if l.err { |
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return nil, &ParseError{"", errstr, l} |
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} |
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// Build the slice |
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s := make([]string, 0) |
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quote := false |
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empty := false |
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for l.value != zNewline && l.value != zEOF { |
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if l.err { |
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return nil, &ParseError{"", errstr, l} |
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} |
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switch l.value { |
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case zString: |
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empty = false |
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if len(l.token) > 255 { |
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// split up tokens that are larger than 255 into 255-chunks |
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sx := []string{} |
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p, i := 0, 255 |
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for { |
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if i <= len(l.token) { |
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sx = append(sx, l.token[p:i]) |
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} else { |
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sx = append(sx, l.token[p:]) |
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break |
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} |
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p, i = p+255, i+255 |
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} |
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s = append(s, sx...) |
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break |
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} |
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s = append(s, l.token) |
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case zBlank: |
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if quote { |
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// zBlank can only be seen in between txt parts. |
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return nil, &ParseError{"", errstr, l} |
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} |
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case zQuote: |
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if empty && quote { |
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s = append(s, "") |
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} |
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quote = !quote |
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empty = true |
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default: |
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return nil, &ParseError{"", errstr, l} |
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} |
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l, _ = c.Next() |
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} |
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if quote { |
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return nil, &ParseError{"", errstr, l} |
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} |
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return s, nil |
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} |
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func (rr *A) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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rr.A = net.ParseIP(l.token) |
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// IPv4 addresses cannot include ":". |
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// We do this rather than use net.IP's To4() because |
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// To4() treats IPv4-mapped IPv6 addresses as being |
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// IPv4. |
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isIPv4 := !strings.Contains(l.token, ":") |
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if rr.A == nil || !isIPv4 || l.err { |
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return &ParseError{"", "bad A A", l} |
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} |
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return slurpRemainder(c) |
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} |
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func (rr *AAAA) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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rr.AAAA = net.ParseIP(l.token) |
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// IPv6 addresses must include ":", and IPv4 |
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// addresses cannot include ":". |
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isIPv6 := strings.Contains(l.token, ":") |
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if rr.AAAA == nil || !isIPv6 || l.err { |
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return &ParseError{"", "bad AAAA AAAA", l} |
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} |
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return slurpRemainder(c) |
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} |
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func (rr *NS) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad NS Ns", l} |
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} |
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rr.Ns = name |
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return slurpRemainder(c) |
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} |
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func (rr *PTR) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad PTR Ptr", l} |
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} |
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rr.Ptr = name |
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return slurpRemainder(c) |
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} |
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func (rr *NSAPPTR) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad NSAP-PTR Ptr", l} |
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} |
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rr.Ptr = name |
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return slurpRemainder(c) |
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} |
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func (rr *RP) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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mbox, mboxOk := toAbsoluteName(l.token, o) |
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if l.err || !mboxOk { |
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return &ParseError{"", "bad RP Mbox", l} |
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} |
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rr.Mbox = mbox |
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c.Next() // zBlank |
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l, _ = c.Next() |
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rr.Txt = l.token |
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txt, txtOk := toAbsoluteName(l.token, o) |
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if l.err || !txtOk { |
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return &ParseError{"", "bad RP Txt", l} |
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} |
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rr.Txt = txt |
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return slurpRemainder(c) |
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} |
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func (rr *MR) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad MR Mr", l} |
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} |
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rr.Mr = name |
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return slurpRemainder(c) |
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} |
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func (rr *MB) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad MB Mb", l} |
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} |
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rr.Mb = name |
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return slurpRemainder(c) |
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} |
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func (rr *MG) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad MG Mg", l} |
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} |
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rr.Mg = name |
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return slurpRemainder(c) |
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} |
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func (rr *HINFO) parse(c *zlexer, o string) *ParseError { |
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chunks, e := endingToTxtSlice(c, "bad HINFO Fields") |
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if e != nil { |
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return e |
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} |
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if ln := len(chunks); ln == 0 { |
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return nil |
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} else if ln == 1 { |
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// Can we split it? |
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if out := strings.Fields(chunks[0]); len(out) > 1 { |
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chunks = out |
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} else { |
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chunks = append(chunks, "") |
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} |
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} |
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rr.Cpu = chunks[0] |
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rr.Os = strings.Join(chunks[1:], " ") |
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return nil |
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} |
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func (rr *MINFO) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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rmail, rmailOk := toAbsoluteName(l.token, o) |
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if l.err || !rmailOk { |
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return &ParseError{"", "bad MINFO Rmail", l} |
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} |
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rr.Rmail = rmail |
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c.Next() // zBlank |
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l, _ = c.Next() |
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rr.Email = l.token |
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email, emailOk := toAbsoluteName(l.token, o) |
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if l.err || !emailOk { |
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return &ParseError{"", "bad MINFO Email", l} |
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} |
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rr.Email = email |
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return slurpRemainder(c) |
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} |
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func (rr *MF) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad MF Mf", l} |
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} |
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rr.Mf = name |
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return slurpRemainder(c) |
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} |
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func (rr *MD) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad MD Md", l} |
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} |
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rr.Md = name |
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return slurpRemainder(c) |
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} |
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func (rr *MX) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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i, e := strconv.ParseUint(l.token, 10, 16) |
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if e != nil || l.err { |
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return &ParseError{"", "bad MX Pref", l} |
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} |
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rr.Preference = uint16(i) |
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c.Next() // zBlank |
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l, _ = c.Next() // zString |
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rr.Mx = l.token |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad MX Mx", l} |
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} |
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rr.Mx = name |
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return slurpRemainder(c) |
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} |
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func (rr *RT) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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i, e := strconv.ParseUint(l.token, 10, 16) |
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if e != nil { |
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return &ParseError{"", "bad RT Preference", l} |
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} |
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rr.Preference = uint16(i) |
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c.Next() // zBlank |
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l, _ = c.Next() // zString |
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rr.Host = l.token |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad RT Host", l} |
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} |
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rr.Host = name |
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return slurpRemainder(c) |
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} |
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func (rr *AFSDB) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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i, e := strconv.ParseUint(l.token, 10, 16) |
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if e != nil || l.err { |
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return &ParseError{"", "bad AFSDB Subtype", l} |
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} |
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rr.Subtype = uint16(i) |
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c.Next() // zBlank |
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l, _ = c.Next() // zString |
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rr.Hostname = l.token |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad AFSDB Hostname", l} |
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} |
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rr.Hostname = name |
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return slurpRemainder(c) |
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} |
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func (rr *X25) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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if l.err { |
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return &ParseError{"", "bad X25 PSDNAddress", l} |
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} |
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rr.PSDNAddress = l.token |
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return slurpRemainder(c) |
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} |
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func (rr *KX) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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i, e := strconv.ParseUint(l.token, 10, 16) |
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if e != nil || l.err { |
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return &ParseError{"", "bad KX Pref", l} |
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} |
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rr.Preference = uint16(i) |
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c.Next() // zBlank |
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l, _ = c.Next() // zString |
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rr.Exchanger = l.token |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad KX Exchanger", l} |
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} |
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rr.Exchanger = name |
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return slurpRemainder(c) |
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} |
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func (rr *CNAME) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad CNAME Target", l} |
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} |
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rr.Target = name |
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return slurpRemainder(c) |
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} |
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func (rr *DNAME) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad DNAME Target", l} |
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} |
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rr.Target = name |
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return slurpRemainder(c) |
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} |
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func (rr *SOA) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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ns, nsOk := toAbsoluteName(l.token, o) |
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if l.err || !nsOk { |
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return &ParseError{"", "bad SOA Ns", l} |
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} |
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rr.Ns = ns |
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c.Next() // zBlank |
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l, _ = c.Next() |
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rr.Mbox = l.token |
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mbox, mboxOk := toAbsoluteName(l.token, o) |
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if l.err || !mboxOk { |
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return &ParseError{"", "bad SOA Mbox", l} |
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} |
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rr.Mbox = mbox |
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c.Next() // zBlank |
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var ( |
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v uint32 |
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ok bool |
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) |
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for i := 0; i < 5; i++ { |
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l, _ = c.Next() |
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if l.err { |
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return &ParseError{"", "bad SOA zone parameter", l} |
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} |
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if j, err := strconv.ParseUint(l.token, 10, 32); err != nil { |
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if i == 0 { |
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// Serial must be a number |
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return &ParseError{"", "bad SOA zone parameter", l} |
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} |
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// We allow other fields to be unitful duration strings |
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if v, ok = stringToTTL(l.token); !ok { |
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return &ParseError{"", "bad SOA zone parameter", l} |
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} |
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} else { |
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v = uint32(j) |
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} |
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switch i { |
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case 0: |
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rr.Serial = v |
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c.Next() // zBlank |
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case 1: |
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rr.Refresh = v |
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c.Next() // zBlank |
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case 2: |
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rr.Retry = v |
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c.Next() // zBlank |
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case 3: |
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rr.Expire = v |
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c.Next() // zBlank |
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case 4: |
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rr.Minttl = v |
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} |
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} |
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return slurpRemainder(c) |
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} |
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|
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func (rr *SRV) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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i, e := strconv.ParseUint(l.token, 10, 16) |
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if e != nil || l.err { |
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return &ParseError{"", "bad SRV Priority", l} |
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} |
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rr.Priority = uint16(i) |
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|
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c.Next() // zBlank |
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l, _ = c.Next() // zString |
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i, e1 := strconv.ParseUint(l.token, 10, 16) |
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if e1 != nil || l.err { |
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return &ParseError{"", "bad SRV Weight", l} |
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} |
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rr.Weight = uint16(i) |
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|
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c.Next() // zBlank |
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l, _ = c.Next() // zString |
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i, e2 := strconv.ParseUint(l.token, 10, 16) |
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if e2 != nil || l.err { |
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return &ParseError{"", "bad SRV Port", l} |
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} |
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rr.Port = uint16(i) |
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|
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c.Next() // zBlank |
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l, _ = c.Next() // zString |
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rr.Target = l.token |
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|
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name, nameOk := toAbsoluteName(l.token, o) |
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if l.err || !nameOk { |
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return &ParseError{"", "bad SRV Target", l} |
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} |
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rr.Target = name |
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return slurpRemainder(c) |
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} |
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|
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func (rr *NAPTR) parse(c *zlexer, o string) *ParseError { |
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l, _ := c.Next() |
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i, e := strconv.ParseUint(l.token, 10, 16) |
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if e != nil || l.err { |
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return &ParseError{"", "bad NAPTR Order", l} |
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} |
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rr.Order = uint16(i) |
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|
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c.Next() // zBlank |
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l, _ = c.Next() // zString |
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i, e1 := strconv.ParseUint(l.token, 10, 16) |
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if e1 != nil || l.err { |
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return &ParseError{"", "bad NAPTR Preference", l} |
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} |
|
rr.Preference = uint16(i) |
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|
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// Flags |
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c.Next() // zBlank |
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l, _ = c.Next() // _QUOTE |
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if l.value != zQuote { |
|
return &ParseError{"", "bad NAPTR Flags", l} |
|
} |
|
l, _ = c.Next() // Either String or Quote |
|
if l.value == zString { |
|
rr.Flags = l.token |
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l, _ = c.Next() // _QUOTE |
|
if l.value != zQuote { |
|
return &ParseError{"", "bad NAPTR Flags", l} |
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} |
|
} else if l.value == zQuote { |
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rr.Flags = "" |
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} else { |
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return &ParseError{"", "bad NAPTR Flags", l} |
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} |
|
|
|
// Service |
|
c.Next() // zBlank |
|
l, _ = c.Next() // _QUOTE |
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if l.value != zQuote { |
|
return &ParseError{"", "bad NAPTR Service", l} |
|
} |
|
l, _ = c.Next() // Either String or Quote |
|
if l.value == zString { |
|
rr.Service = l.token |
|
l, _ = c.Next() // _QUOTE |
|
if l.value != zQuote { |
|
return &ParseError{"", "bad NAPTR Service", l} |
|
} |
|
} else if l.value == zQuote { |
|
rr.Service = "" |
|
} else { |
|
return &ParseError{"", "bad NAPTR Service", l} |
|
} |
|
|
|
// Regexp |
|
c.Next() // zBlank |
|
l, _ = c.Next() // _QUOTE |
|
if l.value != zQuote { |
|
return &ParseError{"", "bad NAPTR Regexp", l} |
|
} |
|
l, _ = c.Next() // Either String or Quote |
|
if l.value == zString { |
|
rr.Regexp = l.token |
|
l, _ = c.Next() // _QUOTE |
|
if l.value != zQuote { |
|
return &ParseError{"", "bad NAPTR Regexp", l} |
|
} |
|
} else if l.value == zQuote { |
|
rr.Regexp = "" |
|
} else { |
|
return &ParseError{"", "bad NAPTR Regexp", l} |
|
} |
|
|
|
// After quote no space?? |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
rr.Replacement = l.token |
|
|
|
name, nameOk := toAbsoluteName(l.token, o) |
|
if l.err || !nameOk { |
|
return &ParseError{"", "bad NAPTR Replacement", l} |
|
} |
|
rr.Replacement = name |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *TALINK) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
previousName, previousNameOk := toAbsoluteName(l.token, o) |
|
if l.err || !previousNameOk { |
|
return &ParseError{"", "bad TALINK PreviousName", l} |
|
} |
|
rr.PreviousName = previousName |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
rr.NextName = l.token |
|
|
|
nextName, nextNameOk := toAbsoluteName(l.token, o) |
|
if l.err || !nextNameOk { |
|
return &ParseError{"", "bad TALINK NextName", l} |
|
} |
|
rr.NextName = nextName |
|
|
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *LOC) parse(c *zlexer, o string) *ParseError { |
|
// Non zero defaults for LOC record, see RFC 1876, Section 3. |
|
rr.Size = 0x12 // 1e2 cm (1m) |
|
rr.HorizPre = 0x16 // 1e6 cm (10000m) |
|
rr.VertPre = 0x13 // 1e3 cm (10m) |
|
ok := false |
|
|
|
// North |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 32) |
|
if e != nil || l.err || i > 90 { |
|
return &ParseError{"", "bad LOC Latitude", l} |
|
} |
|
rr.Latitude = 1000 * 60 * 60 * uint32(i) |
|
|
|
c.Next() // zBlank |
|
// Either number, 'N' or 'S' |
|
l, _ = c.Next() |
|
if rr.Latitude, ok = locCheckNorth(l.token, rr.Latitude); ok { |
|
goto East |
|
} |
|
if i, err := strconv.ParseUint(l.token, 10, 32); err != nil || l.err || i > 59 { |
|
return &ParseError{"", "bad LOC Latitude minutes", l} |
|
} else { |
|
rr.Latitude += 1000 * 60 * uint32(i) |
|
} |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if i, err := strconv.ParseFloat(l.token, 64); err != nil || l.err || i < 0 || i >= 60 { |
|
return &ParseError{"", "bad LOC Latitude seconds", l} |
|
} else { |
|
rr.Latitude += uint32(1000 * i) |
|
} |
|
c.Next() // zBlank |
|
// Either number, 'N' or 'S' |
|
l, _ = c.Next() |
|
if rr.Latitude, ok = locCheckNorth(l.token, rr.Latitude); ok { |
|
goto East |
|
} |
|
// If still alive, flag an error |
|
return &ParseError{"", "bad LOC Latitude North/South", l} |
|
|
|
East: |
|
// East |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if i, err := strconv.ParseUint(l.token, 10, 32); err != nil || l.err || i > 180 { |
|
return &ParseError{"", "bad LOC Longitude", l} |
|
} else { |
|
rr.Longitude = 1000 * 60 * 60 * uint32(i) |
|
} |
|
c.Next() // zBlank |
|
// Either number, 'E' or 'W' |
|
l, _ = c.Next() |
|
if rr.Longitude, ok = locCheckEast(l.token, rr.Longitude); ok { |
|
goto Altitude |
|
} |
|
if i, err := strconv.ParseUint(l.token, 10, 32); err != nil || l.err || i > 59 { |
|
return &ParseError{"", "bad LOC Longitude minutes", l} |
|
} else { |
|
rr.Longitude += 1000 * 60 * uint32(i) |
|
} |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if i, err := strconv.ParseFloat(l.token, 64); err != nil || l.err || i < 0 || i >= 60 { |
|
return &ParseError{"", "bad LOC Longitude seconds", l} |
|
} else { |
|
rr.Longitude += uint32(1000 * i) |
|
} |
|
c.Next() // zBlank |
|
// Either number, 'E' or 'W' |
|
l, _ = c.Next() |
|
if rr.Longitude, ok = locCheckEast(l.token, rr.Longitude); ok { |
|
goto Altitude |
|
} |
|
// If still alive, flag an error |
|
return &ParseError{"", "bad LOC Longitude East/West", l} |
|
|
|
Altitude: |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if l.token == "" || l.err { |
|
return &ParseError{"", "bad LOC Altitude", l} |
|
} |
|
if l.token[len(l.token)-1] == 'M' || l.token[len(l.token)-1] == 'm' { |
|
l.token = l.token[0 : len(l.token)-1] |
|
} |
|
if i, err := strconv.ParseFloat(l.token, 64); err != nil { |
|
return &ParseError{"", "bad LOC Altitude", l} |
|
} else { |
|
rr.Altitude = uint32(i*100.0 + 10000000.0 + 0.5) |
|
} |
|
|
|
// And now optionally the other values |
|
l, _ = c.Next() |
|
count := 0 |
|
for l.value != zNewline && l.value != zEOF { |
|
switch l.value { |
|
case zString: |
|
switch count { |
|
case 0: // Size |
|
exp, m, ok := stringToCm(l.token) |
|
if !ok { |
|
return &ParseError{"", "bad LOC Size", l} |
|
} |
|
rr.Size = exp&0x0f | m<<4&0xf0 |
|
case 1: // HorizPre |
|
exp, m, ok := stringToCm(l.token) |
|
if !ok { |
|
return &ParseError{"", "bad LOC HorizPre", l} |
|
} |
|
rr.HorizPre = exp&0x0f | m<<4&0xf0 |
|
case 2: // VertPre |
|
exp, m, ok := stringToCm(l.token) |
|
if !ok { |
|
return &ParseError{"", "bad LOC VertPre", l} |
|
} |
|
rr.VertPre = exp&0x0f | m<<4&0xf0 |
|
} |
|
count++ |
|
case zBlank: |
|
// Ok |
|
default: |
|
return &ParseError{"", "bad LOC Size, HorizPre or VertPre", l} |
|
} |
|
l, _ = c.Next() |
|
} |
|
return nil |
|
} |
|
|
|
func (rr *HIP) parse(c *zlexer, o string) *ParseError { |
|
// HitLength is not represented |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad HIP PublicKeyAlgorithm", l} |
|
} |
|
rr.PublicKeyAlgorithm = uint8(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
if l.token == "" || l.err { |
|
return &ParseError{"", "bad HIP Hit", l} |
|
} |
|
rr.Hit = l.token // This can not contain spaces, see RFC 5205 Section 6. |
|
rr.HitLength = uint8(len(rr.Hit)) / 2 |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
if l.token == "" || l.err { |
|
return &ParseError{"", "bad HIP PublicKey", l} |
|
} |
|
rr.PublicKey = l.token // This cannot contain spaces |
|
decodedPK, decodedPKerr := base64.StdEncoding.DecodeString(rr.PublicKey) |
|
if decodedPKerr != nil { |
|
return &ParseError{"", "bad HIP PublicKey", l} |
|
} |
|
rr.PublicKeyLength = uint16(len(decodedPK)) |
|
|
|
// RendezvousServers (if any) |
|
l, _ = c.Next() |
|
var xs []string |
|
for l.value != zNewline && l.value != zEOF { |
|
switch l.value { |
|
case zString: |
|
name, nameOk := toAbsoluteName(l.token, o) |
|
if l.err || !nameOk { |
|
return &ParseError{"", "bad HIP RendezvousServers", l} |
|
} |
|
xs = append(xs, name) |
|
case zBlank: |
|
// Ok |
|
default: |
|
return &ParseError{"", "bad HIP RendezvousServers", l} |
|
} |
|
l, _ = c.Next() |
|
} |
|
|
|
rr.RendezvousServers = xs |
|
return nil |
|
} |
|
|
|
func (rr *CERT) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
if v, ok := StringToCertType[l.token]; ok { |
|
rr.Type = v |
|
} else if i, err := strconv.ParseUint(l.token, 10, 16); err != nil { |
|
return &ParseError{"", "bad CERT Type", l} |
|
} else { |
|
rr.Type = uint16(i) |
|
} |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad CERT KeyTag", l} |
|
} |
|
rr.KeyTag = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
if v, ok := StringToAlgorithm[l.token]; ok { |
|
rr.Algorithm = v |
|
} else if i, err := strconv.ParseUint(l.token, 10, 8); err != nil { |
|
return &ParseError{"", "bad CERT Algorithm", l} |
|
} else { |
|
rr.Algorithm = uint8(i) |
|
} |
|
s, e1 := endingToString(c, "bad CERT Certificate") |
|
if e1 != nil { |
|
return e1 |
|
} |
|
rr.Certificate = s |
|
return nil |
|
} |
|
|
|
func (rr *OPENPGPKEY) parse(c *zlexer, o string) *ParseError { |
|
s, e := endingToString(c, "bad OPENPGPKEY PublicKey") |
|
if e != nil { |
|
return e |
|
} |
|
rr.PublicKey = s |
|
return nil |
|
} |
|
|
|
func (rr *CSYNC) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
j, e := strconv.ParseUint(l.token, 10, 32) |
|
if e != nil { |
|
// Serial must be a number |
|
return &ParseError{"", "bad CSYNC serial", l} |
|
} |
|
rr.Serial = uint32(j) |
|
|
|
c.Next() // zBlank |
|
|
|
l, _ = c.Next() |
|
j, e1 := strconv.ParseUint(l.token, 10, 16) |
|
if e1 != nil { |
|
// Serial must be a number |
|
return &ParseError{"", "bad CSYNC flags", l} |
|
} |
|
rr.Flags = uint16(j) |
|
|
|
rr.TypeBitMap = make([]uint16, 0) |
|
var ( |
|
k uint16 |
|
ok bool |
|
) |
|
l, _ = c.Next() |
|
for l.value != zNewline && l.value != zEOF { |
|
switch l.value { |
|
case zBlank: |
|
// Ok |
|
case zString: |
|
tokenUpper := strings.ToUpper(l.token) |
|
if k, ok = StringToType[tokenUpper]; !ok { |
|
if k, ok = typeToInt(l.token); !ok { |
|
return &ParseError{"", "bad CSYNC TypeBitMap", l} |
|
} |
|
} |
|
rr.TypeBitMap = append(rr.TypeBitMap, k) |
|
default: |
|
return &ParseError{"", "bad CSYNC TypeBitMap", l} |
|
} |
|
l, _ = c.Next() |
|
} |
|
return nil |
|
} |
|
|
|
func (rr *ZONEMD) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 32) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad ZONEMD Serial", l} |
|
} |
|
rr.Serial = uint32(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad ZONEMD Scheme", l} |
|
} |
|
rr.Scheme = uint8(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, err := strconv.ParseUint(l.token, 10, 8) |
|
if err != nil || l.err { |
|
return &ParseError{"", "bad ZONEMD Hash Algorithm", l} |
|
} |
|
rr.Hash = uint8(i) |
|
|
|
s, e2 := endingToString(c, "bad ZONEMD Digest") |
|
if e2 != nil { |
|
return e2 |
|
} |
|
rr.Digest = s |
|
return nil |
|
} |
|
|
|
func (rr *SIG) parse(c *zlexer, o string) *ParseError { return rr.RRSIG.parse(c, o) } |
|
|
|
func (rr *RRSIG) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
tokenUpper := strings.ToUpper(l.token) |
|
if t, ok := StringToType[tokenUpper]; !ok { |
|
if strings.HasPrefix(tokenUpper, "TYPE") { |
|
t, ok = typeToInt(l.token) |
|
if !ok { |
|
return &ParseError{"", "bad RRSIG Typecovered", l} |
|
} |
|
rr.TypeCovered = t |
|
} else { |
|
return &ParseError{"", "bad RRSIG Typecovered", l} |
|
} |
|
} else { |
|
rr.TypeCovered = t |
|
} |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad RRSIG Algorithm", l} |
|
} |
|
rr.Algorithm = uint8(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad RRSIG Labels", l} |
|
} |
|
rr.Labels = uint8(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e2 := strconv.ParseUint(l.token, 10, 32) |
|
if e2 != nil || l.err { |
|
return &ParseError{"", "bad RRSIG OrigTtl", l} |
|
} |
|
rr.OrigTtl = uint32(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if i, err := StringToTime(l.token); err != nil { |
|
// Try to see if all numeric and use it as epoch |
|
if i, err := strconv.ParseUint(l.token, 10, 32); err == nil { |
|
rr.Expiration = uint32(i) |
|
} else { |
|
return &ParseError{"", "bad RRSIG Expiration", l} |
|
} |
|
} else { |
|
rr.Expiration = i |
|
} |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if i, err := StringToTime(l.token); err != nil { |
|
if i, err := strconv.ParseUint(l.token, 10, 32); err == nil { |
|
rr.Inception = uint32(i) |
|
} else { |
|
return &ParseError{"", "bad RRSIG Inception", l} |
|
} |
|
} else { |
|
rr.Inception = i |
|
} |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e3 := strconv.ParseUint(l.token, 10, 16) |
|
if e3 != nil || l.err { |
|
return &ParseError{"", "bad RRSIG KeyTag", l} |
|
} |
|
rr.KeyTag = uint16(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
rr.SignerName = l.token |
|
name, nameOk := toAbsoluteName(l.token, o) |
|
if l.err || !nameOk { |
|
return &ParseError{"", "bad RRSIG SignerName", l} |
|
} |
|
rr.SignerName = name |
|
|
|
s, e4 := endingToString(c, "bad RRSIG Signature") |
|
if e4 != nil { |
|
return e4 |
|
} |
|
rr.Signature = s |
|
|
|
return nil |
|
} |
|
|
|
func (rr *NSEC) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
name, nameOk := toAbsoluteName(l.token, o) |
|
if l.err || !nameOk { |
|
return &ParseError{"", "bad NSEC NextDomain", l} |
|
} |
|
rr.NextDomain = name |
|
|
|
rr.TypeBitMap = make([]uint16, 0) |
|
var ( |
|
k uint16 |
|
ok bool |
|
) |
|
l, _ = c.Next() |
|
for l.value != zNewline && l.value != zEOF { |
|
switch l.value { |
|
case zBlank: |
|
// Ok |
|
case zString: |
|
tokenUpper := strings.ToUpper(l.token) |
|
if k, ok = StringToType[tokenUpper]; !ok { |
|
if k, ok = typeToInt(l.token); !ok { |
|
return &ParseError{"", "bad NSEC TypeBitMap", l} |
|
} |
|
} |
|
rr.TypeBitMap = append(rr.TypeBitMap, k) |
|
default: |
|
return &ParseError{"", "bad NSEC TypeBitMap", l} |
|
} |
|
l, _ = c.Next() |
|
} |
|
return nil |
|
} |
|
|
|
func (rr *NSEC3) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad NSEC3 Hash", l} |
|
} |
|
rr.Hash = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad NSEC3 Flags", l} |
|
} |
|
rr.Flags = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e2 := strconv.ParseUint(l.token, 10, 16) |
|
if e2 != nil || l.err { |
|
return &ParseError{"", "bad NSEC3 Iterations", l} |
|
} |
|
rr.Iterations = uint16(i) |
|
c.Next() |
|
l, _ = c.Next() |
|
if l.token == "" || l.err { |
|
return &ParseError{"", "bad NSEC3 Salt", l} |
|
} |
|
if l.token != "-" { |
|
rr.SaltLength = uint8(len(l.token)) / 2 |
|
rr.Salt = l.token |
|
} |
|
|
|
c.Next() |
|
l, _ = c.Next() |
|
if l.token == "" || l.err { |
|
return &ParseError{"", "bad NSEC3 NextDomain", l} |
|
} |
|
rr.HashLength = 20 // Fix for NSEC3 (sha1 160 bits) |
|
rr.NextDomain = l.token |
|
|
|
rr.TypeBitMap = make([]uint16, 0) |
|
var ( |
|
k uint16 |
|
ok bool |
|
) |
|
l, _ = c.Next() |
|
for l.value != zNewline && l.value != zEOF { |
|
switch l.value { |
|
case zBlank: |
|
// Ok |
|
case zString: |
|
tokenUpper := strings.ToUpper(l.token) |
|
if k, ok = StringToType[tokenUpper]; !ok { |
|
if k, ok = typeToInt(l.token); !ok { |
|
return &ParseError{"", "bad NSEC3 TypeBitMap", l} |
|
} |
|
} |
|
rr.TypeBitMap = append(rr.TypeBitMap, k) |
|
default: |
|
return &ParseError{"", "bad NSEC3 TypeBitMap", l} |
|
} |
|
l, _ = c.Next() |
|
} |
|
return nil |
|
} |
|
|
|
func (rr *NSEC3PARAM) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad NSEC3PARAM Hash", l} |
|
} |
|
rr.Hash = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad NSEC3PARAM Flags", l} |
|
} |
|
rr.Flags = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e2 := strconv.ParseUint(l.token, 10, 16) |
|
if e2 != nil || l.err { |
|
return &ParseError{"", "bad NSEC3PARAM Iterations", l} |
|
} |
|
rr.Iterations = uint16(i) |
|
c.Next() |
|
l, _ = c.Next() |
|
if l.token != "-" { |
|
rr.SaltLength = uint8(len(l.token) / 2) |
|
rr.Salt = l.token |
|
} |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *EUI48) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
if len(l.token) != 17 || l.err { |
|
return &ParseError{"", "bad EUI48 Address", l} |
|
} |
|
addr := make([]byte, 12) |
|
dash := 0 |
|
for i := 0; i < 10; i += 2 { |
|
addr[i] = l.token[i+dash] |
|
addr[i+1] = l.token[i+1+dash] |
|
dash++ |
|
if l.token[i+1+dash] != '-' { |
|
return &ParseError{"", "bad EUI48 Address", l} |
|
} |
|
} |
|
addr[10] = l.token[15] |
|
addr[11] = l.token[16] |
|
|
|
i, e := strconv.ParseUint(string(addr), 16, 48) |
|
if e != nil { |
|
return &ParseError{"", "bad EUI48 Address", l} |
|
} |
|
rr.Address = i |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *EUI64) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
if len(l.token) != 23 || l.err { |
|
return &ParseError{"", "bad EUI64 Address", l} |
|
} |
|
addr := make([]byte, 16) |
|
dash := 0 |
|
for i := 0; i < 14; i += 2 { |
|
addr[i] = l.token[i+dash] |
|
addr[i+1] = l.token[i+1+dash] |
|
dash++ |
|
if l.token[i+1+dash] != '-' { |
|
return &ParseError{"", "bad EUI64 Address", l} |
|
} |
|
} |
|
addr[14] = l.token[21] |
|
addr[15] = l.token[22] |
|
|
|
i, e := strconv.ParseUint(string(addr), 16, 64) |
|
if e != nil { |
|
return &ParseError{"", "bad EUI68 Address", l} |
|
} |
|
rr.Address = i |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *SSHFP) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad SSHFP Algorithm", l} |
|
} |
|
rr.Algorithm = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad SSHFP Type", l} |
|
} |
|
rr.Type = uint8(i) |
|
c.Next() // zBlank |
|
s, e2 := endingToString(c, "bad SSHFP Fingerprint") |
|
if e2 != nil { |
|
return e2 |
|
} |
|
rr.FingerPrint = s |
|
return nil |
|
} |
|
|
|
func (rr *DNSKEY) parseDNSKEY(c *zlexer, o, typ string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad " + typ + " Flags", l} |
|
} |
|
rr.Flags = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad " + typ + " Protocol", l} |
|
} |
|
rr.Protocol = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
i, e2 := strconv.ParseUint(l.token, 10, 8) |
|
if e2 != nil || l.err { |
|
return &ParseError{"", "bad " + typ + " Algorithm", l} |
|
} |
|
rr.Algorithm = uint8(i) |
|
s, e3 := endingToString(c, "bad "+typ+" PublicKey") |
|
if e3 != nil { |
|
return e3 |
|
} |
|
rr.PublicKey = s |
|
return nil |
|
} |
|
|
|
func (rr *DNSKEY) parse(c *zlexer, o string) *ParseError { return rr.parseDNSKEY(c, o, "DNSKEY") } |
|
func (rr *KEY) parse(c *zlexer, o string) *ParseError { return rr.parseDNSKEY(c, o, "KEY") } |
|
func (rr *CDNSKEY) parse(c *zlexer, o string) *ParseError { return rr.parseDNSKEY(c, o, "CDNSKEY") } |
|
func (rr *DS) parse(c *zlexer, o string) *ParseError { return rr.parseDS(c, o, "DS") } |
|
func (rr *DLV) parse(c *zlexer, o string) *ParseError { return rr.parseDS(c, o, "DLV") } |
|
func (rr *CDS) parse(c *zlexer, o string) *ParseError { return rr.parseDS(c, o, "CDS") } |
|
|
|
func (rr *RKEY) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad RKEY Flags", l} |
|
} |
|
rr.Flags = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad RKEY Protocol", l} |
|
} |
|
rr.Protocol = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
i, e2 := strconv.ParseUint(l.token, 10, 8) |
|
if e2 != nil || l.err { |
|
return &ParseError{"", "bad RKEY Algorithm", l} |
|
} |
|
rr.Algorithm = uint8(i) |
|
s, e3 := endingToString(c, "bad RKEY PublicKey") |
|
if e3 != nil { |
|
return e3 |
|
} |
|
rr.PublicKey = s |
|
return nil |
|
} |
|
|
|
func (rr *EID) parse(c *zlexer, o string) *ParseError { |
|
s, e := endingToString(c, "bad EID Endpoint") |
|
if e != nil { |
|
return e |
|
} |
|
rr.Endpoint = s |
|
return nil |
|
} |
|
|
|
func (rr *NIMLOC) parse(c *zlexer, o string) *ParseError { |
|
s, e := endingToString(c, "bad NIMLOC Locator") |
|
if e != nil { |
|
return e |
|
} |
|
rr.Locator = s |
|
return nil |
|
} |
|
|
|
func (rr *GPOS) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
_, e := strconv.ParseFloat(l.token, 64) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad GPOS Longitude", l} |
|
} |
|
rr.Longitude = l.token |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
_, e1 := strconv.ParseFloat(l.token, 64) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad GPOS Latitude", l} |
|
} |
|
rr.Latitude = l.token |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
_, e2 := strconv.ParseFloat(l.token, 64) |
|
if e2 != nil || l.err { |
|
return &ParseError{"", "bad GPOS Altitude", l} |
|
} |
|
rr.Altitude = l.token |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *DS) parseDS(c *zlexer, o, typ string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad " + typ + " KeyTag", l} |
|
} |
|
rr.KeyTag = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if i, err := strconv.ParseUint(l.token, 10, 8); err != nil { |
|
tokenUpper := strings.ToUpper(l.token) |
|
i, ok := StringToAlgorithm[tokenUpper] |
|
if !ok || l.err { |
|
return &ParseError{"", "bad " + typ + " Algorithm", l} |
|
} |
|
rr.Algorithm = i |
|
} else { |
|
rr.Algorithm = uint8(i) |
|
} |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad " + typ + " DigestType", l} |
|
} |
|
rr.DigestType = uint8(i) |
|
s, e2 := endingToString(c, "bad "+typ+" Digest") |
|
if e2 != nil { |
|
return e2 |
|
} |
|
rr.Digest = s |
|
return nil |
|
} |
|
|
|
func (rr *TA) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad TA KeyTag", l} |
|
} |
|
rr.KeyTag = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if i, err := strconv.ParseUint(l.token, 10, 8); err != nil { |
|
tokenUpper := strings.ToUpper(l.token) |
|
i, ok := StringToAlgorithm[tokenUpper] |
|
if !ok || l.err { |
|
return &ParseError{"", "bad TA Algorithm", l} |
|
} |
|
rr.Algorithm = i |
|
} else { |
|
rr.Algorithm = uint8(i) |
|
} |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad TA DigestType", l} |
|
} |
|
rr.DigestType = uint8(i) |
|
s, e2 := endingToString(c, "bad TA Digest") |
|
if e2 != nil { |
|
return e2 |
|
} |
|
rr.Digest = s |
|
return nil |
|
} |
|
|
|
func (rr *TLSA) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad TLSA Usage", l} |
|
} |
|
rr.Usage = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad TLSA Selector", l} |
|
} |
|
rr.Selector = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e2 := strconv.ParseUint(l.token, 10, 8) |
|
if e2 != nil || l.err { |
|
return &ParseError{"", "bad TLSA MatchingType", l} |
|
} |
|
rr.MatchingType = uint8(i) |
|
// So this needs be e2 (i.e. different than e), because...??t |
|
s, e3 := endingToString(c, "bad TLSA Certificate") |
|
if e3 != nil { |
|
return e3 |
|
} |
|
rr.Certificate = s |
|
return nil |
|
} |
|
|
|
func (rr *SMIMEA) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad SMIMEA Usage", l} |
|
} |
|
rr.Usage = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad SMIMEA Selector", l} |
|
} |
|
rr.Selector = uint8(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e2 := strconv.ParseUint(l.token, 10, 8) |
|
if e2 != nil || l.err { |
|
return &ParseError{"", "bad SMIMEA MatchingType", l} |
|
} |
|
rr.MatchingType = uint8(i) |
|
// So this needs be e2 (i.e. different than e), because...??t |
|
s, e3 := endingToString(c, "bad SMIMEA Certificate") |
|
if e3 != nil { |
|
return e3 |
|
} |
|
rr.Certificate = s |
|
return nil |
|
} |
|
|
|
func (rr *RFC3597) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
if l.token != "\\#" { |
|
return &ParseError{"", "bad RFC3597 Rdata", l} |
|
} |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
rdlength, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad RFC3597 Rdata ", l} |
|
} |
|
|
|
s, e1 := endingToString(c, "bad RFC3597 Rdata") |
|
if e1 != nil { |
|
return e1 |
|
} |
|
if int(rdlength)*2 != len(s) { |
|
return &ParseError{"", "bad RFC3597 Rdata", l} |
|
} |
|
rr.Rdata = s |
|
return nil |
|
} |
|
|
|
func (rr *SPF) parse(c *zlexer, o string) *ParseError { |
|
s, e := endingToTxtSlice(c, "bad SPF Txt") |
|
if e != nil { |
|
return e |
|
} |
|
rr.Txt = s |
|
return nil |
|
} |
|
|
|
func (rr *AVC) parse(c *zlexer, o string) *ParseError { |
|
s, e := endingToTxtSlice(c, "bad AVC Txt") |
|
if e != nil { |
|
return e |
|
} |
|
rr.Txt = s |
|
return nil |
|
} |
|
|
|
func (rr *TXT) parse(c *zlexer, o string) *ParseError { |
|
// no zBlank reading here, because all this rdata is TXT |
|
s, e := endingToTxtSlice(c, "bad TXT Txt") |
|
if e != nil { |
|
return e |
|
} |
|
rr.Txt = s |
|
return nil |
|
} |
|
|
|
// identical to setTXT |
|
func (rr *NINFO) parse(c *zlexer, o string) *ParseError { |
|
s, e := endingToTxtSlice(c, "bad NINFO ZSData") |
|
if e != nil { |
|
return e |
|
} |
|
rr.ZSData = s |
|
return nil |
|
} |
|
|
|
func (rr *URI) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad URI Priority", l} |
|
} |
|
rr.Priority = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 16) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad URI Weight", l} |
|
} |
|
rr.Weight = uint16(i) |
|
|
|
c.Next() // zBlank |
|
s, e2 := endingToTxtSlice(c, "bad URI Target") |
|
if e2 != nil { |
|
return e2 |
|
} |
|
if len(s) != 1 { |
|
return &ParseError{"", "bad URI Target", l} |
|
} |
|
rr.Target = s[0] |
|
return nil |
|
} |
|
|
|
func (rr *DHCID) parse(c *zlexer, o string) *ParseError { |
|
// awesome record to parse! |
|
s, e := endingToString(c, "bad DHCID Digest") |
|
if e != nil { |
|
return e |
|
} |
|
rr.Digest = s |
|
return nil |
|
} |
|
|
|
func (rr *NID) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad NID Preference", l} |
|
} |
|
rr.Preference = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
u, e1 := stringToNodeID(l) |
|
if e1 != nil || l.err { |
|
return e1 |
|
} |
|
rr.NodeID = u |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *L32) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad L32 Preference", l} |
|
} |
|
rr.Preference = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
rr.Locator32 = net.ParseIP(l.token) |
|
if rr.Locator32 == nil || l.err { |
|
return &ParseError{"", "bad L32 Locator", l} |
|
} |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *LP) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad LP Preference", l} |
|
} |
|
rr.Preference = uint16(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
rr.Fqdn = l.token |
|
name, nameOk := toAbsoluteName(l.token, o) |
|
if l.err || !nameOk { |
|
return &ParseError{"", "bad LP Fqdn", l} |
|
} |
|
rr.Fqdn = name |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *L64) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad L64 Preference", l} |
|
} |
|
rr.Preference = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
u, e1 := stringToNodeID(l) |
|
if e1 != nil || l.err { |
|
return e1 |
|
} |
|
rr.Locator64 = u |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *UID) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 32) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad UID Uid", l} |
|
} |
|
rr.Uid = uint32(i) |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *GID) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 32) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad GID Gid", l} |
|
} |
|
rr.Gid = uint32(i) |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *UINFO) parse(c *zlexer, o string) *ParseError { |
|
s, e := endingToTxtSlice(c, "bad UINFO Uinfo") |
|
if e != nil { |
|
return e |
|
} |
|
if ln := len(s); ln == 0 { |
|
return nil |
|
} |
|
rr.Uinfo = s[0] // silently discard anything after the first character-string |
|
return nil |
|
} |
|
|
|
func (rr *PX) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 16) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad PX Preference", l} |
|
} |
|
rr.Preference = uint16(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
rr.Map822 = l.token |
|
map822, map822Ok := toAbsoluteName(l.token, o) |
|
if l.err || !map822Ok { |
|
return &ParseError{"", "bad PX Map822", l} |
|
} |
|
rr.Map822 = map822 |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
rr.Mapx400 = l.token |
|
mapx400, mapx400Ok := toAbsoluteName(l.token, o) |
|
if l.err || !mapx400Ok { |
|
return &ParseError{"", "bad PX Mapx400", l} |
|
} |
|
rr.Mapx400 = mapx400 |
|
return slurpRemainder(c) |
|
} |
|
|
|
func (rr *CAA) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad CAA Flag", l} |
|
} |
|
rr.Flag = uint8(i) |
|
|
|
c.Next() // zBlank |
|
l, _ = c.Next() // zString |
|
if l.value != zString { |
|
return &ParseError{"", "bad CAA Tag", l} |
|
} |
|
rr.Tag = l.token |
|
|
|
c.Next() // zBlank |
|
s, e1 := endingToTxtSlice(c, "bad CAA Value") |
|
if e1 != nil { |
|
return e1 |
|
} |
|
if len(s) != 1 { |
|
return &ParseError{"", "bad CAA Value", l} |
|
} |
|
rr.Value = s[0] |
|
return nil |
|
} |
|
|
|
func (rr *TKEY) parse(c *zlexer, o string) *ParseError { |
|
l, _ := c.Next() |
|
|
|
// Algorithm |
|
if l.value != zString { |
|
return &ParseError{"", "bad TKEY algorithm", l} |
|
} |
|
rr.Algorithm = l.token |
|
c.Next() // zBlank |
|
|
|
// Get the key length and key values |
|
l, _ = c.Next() |
|
i, e := strconv.ParseUint(l.token, 10, 8) |
|
if e != nil || l.err { |
|
return &ParseError{"", "bad TKEY key length", l} |
|
} |
|
rr.KeySize = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if l.value != zString { |
|
return &ParseError{"", "bad TKEY key", l} |
|
} |
|
rr.Key = l.token |
|
c.Next() // zBlank |
|
|
|
// Get the otherdata length and string data |
|
l, _ = c.Next() |
|
i, e1 := strconv.ParseUint(l.token, 10, 8) |
|
if e1 != nil || l.err { |
|
return &ParseError{"", "bad TKEY otherdata length", l} |
|
} |
|
rr.OtherLen = uint16(i) |
|
c.Next() // zBlank |
|
l, _ = c.Next() |
|
if l.value != zString { |
|
return &ParseError{"", "bad TKEY otherday", l} |
|
} |
|
rr.OtherData = l.token |
|
return nil |
|
} |
|
|
|
func (rr *APL) parse(c *zlexer, o string) *ParseError { |
|
var prefixes []APLPrefix |
|
|
|
for { |
|
l, _ := c.Next() |
|
if l.value == zNewline || l.value == zEOF { |
|
break |
|
} |
|
if l.value == zBlank && prefixes != nil { |
|
continue |
|
} |
|
if l.value != zString { |
|
return &ParseError{"", "unexpected APL field", l} |
|
} |
|
|
|
// Expected format: [!]afi:address/prefix |
|
|
|
colon := strings.IndexByte(l.token, ':') |
|
if colon == -1 { |
|
return &ParseError{"", "missing colon in APL field", l} |
|
} |
|
|
|
family, cidr := l.token[:colon], l.token[colon+1:] |
|
|
|
var negation bool |
|
if family != "" && family[0] == '!' { |
|
negation = true |
|
family = family[1:] |
|
} |
|
|
|
afi, e := strconv.ParseUint(family, 10, 16) |
|
if e != nil { |
|
return &ParseError{"", "failed to parse APL family: " + e.Error(), l} |
|
} |
|
var addrLen int |
|
switch afi { |
|
case 1: |
|
addrLen = net.IPv4len |
|
case 2: |
|
addrLen = net.IPv6len |
|
default: |
|
return &ParseError{"", "unrecognized APL family", l} |
|
} |
|
|
|
ip, subnet, e1 := net.ParseCIDR(cidr) |
|
if e1 != nil { |
|
return &ParseError{"", "failed to parse APL address: " + e1.Error(), l} |
|
} |
|
if !ip.Equal(subnet.IP) { |
|
return &ParseError{"", "extra bits in APL address", l} |
|
} |
|
|
|
if len(subnet.IP) != addrLen { |
|
return &ParseError{"", "address mismatch with the APL family", l} |
|
} |
|
|
|
prefixes = append(prefixes, APLPrefix{ |
|
Negation: negation, |
|
Network: *subnet, |
|
}) |
|
} |
|
|
|
rr.Prefixes = prefixes |
|
return nil |
|
}
|
|
|