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@@ -81,7 +81,8 @@ TSIG::constructFromLexer(MasterLexer& lexer) {
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const Name root(".");
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const Name& algorithm = createNameFromLexer(lexer, &root);
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- const string time_str = lexer.getNextToken(MasterToken::STRING).getString();
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+ const string time_str =
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+ lexer.getNextToken(MasterToken::STRING).getString();
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uint64_t time_signed;
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try {
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time_signed = boost::lexical_cast<uint64_t>(time_str);
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@@ -96,7 +97,8 @@ TSIG::constructFromLexer(MasterLexer& lexer) {
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if (fudge > 0xffff) {
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isc_throw(InvalidRdataText, "TSIG Fudge out of range");
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}
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- const uint32_t macsize = lexer.getNextToken(MasterToken::NUMBER).getNumber();
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+ const uint32_t macsize =
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+ lexer.getNextToken(MasterToken::NUMBER).getNumber();
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if (macsize > 0xffff) {
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isc_throw(InvalidRdataText, "TSIG MAC Size out of range");
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}
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@@ -109,12 +111,14 @@ TSIG::constructFromLexer(MasterLexer& lexer) {
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isc_throw(InvalidRdataText, "TSIG MAC Size and data are inconsistent");
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}
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- const uint32_t orig_id = lexer.getNextToken(MasterToken::NUMBER).getNumber();
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+ const uint32_t orig_id =
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+ lexer.getNextToken(MasterToken::NUMBER).getNumber();
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if (orig_id > 0xffff) {
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isc_throw(InvalidRdataText, "TSIG Original ID out of range");
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}
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- const string error_txt = lexer.getNextToken(MasterToken::STRING).getString();
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+ const string error_txt =
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+ lexer.getNextToken(MasterToken::STRING).getString();
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uint16_t error = 0;
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// XXX: In the initial implementation we hardcode the mnemonics.
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// We'll soon generalize this.
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@@ -134,7 +138,8 @@ TSIG::constructFromLexer(MasterLexer& lexer) {
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}
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}
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- const int32_t otherlen = lexer.getNextToken(MasterToken::NUMBER).getNumber();
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+ const int32_t otherlen =
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+ lexer.getNextToken(MasterToken::NUMBER).getNumber();
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if (otherlen > 0xffff) {
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isc_throw(InvalidRdataText, "TSIG Other Len out of range");
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}
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