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421 lines
11 KiB
421 lines
11 KiB
/* Copyright (C) Boris Nikolaus, Germany, 1996-1997. All rights reserved. */
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/* Copyright (C) Microsoft Corporation, 1997-1998. All rights reserved. */
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#include "precomp.h"
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#include "hackdir.h"
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#ifdef MS_DIRECTIVE
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int g_fPrivateDir_FieldNameToken = 0;
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int g_fPrivateDir_TypeNameToken = 0;
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int g_fPrivateDir_ValueNameToken = 0;
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int g_fPrivateDir_SLinked = 0;
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int g_fPrivateDir_DLinked = 0;
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int g_fPrivateDir_Public = 0;
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int g_fPrivateDir_Intx = 0;
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int g_fPrivateDir_LenPtr = 0;
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int g_fPrivateDir_Pointer = 0;
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int g_fPrivateDir_Array = 0;
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int g_fPrivateDir_NoCode = 0;
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int g_fPrivateDir_NoMemCopy = 0;
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int g_fPrivateDir_OidPacked = 0;
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int g_fPrivateDir_OidArray = 0;
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char g_szPrivateDirectedFieldName[64];
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char g_szPrivateDirectedTypeName[64];
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char g_szPrivateDirectedValueName[64];
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int My_toupper ( int ch )
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{
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if ('a' <= ch && ch <= 'z')
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{
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ch = (ch - 'a' + 'A');
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}
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return ch;
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}
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int PrivateDirectives_MatchSymbol ( int *p, char *psz )
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{
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int c = *p;
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int fMatched = 1;
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while (*psz != '\0')
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{
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if (My_toupper(c) != *psz++)
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{
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fMatched = 0;
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break;
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}
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c = PrivateDirectives_Input();
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}
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*p = c;
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return fMatched;
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}
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void PrivateDirectives_SkipSpace ( int *p )
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{
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int c = *p;
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while (isspace(c))
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{
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c = PrivateDirectives_Input();
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}
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*p = c;
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}
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void PrivateDirectives_GetSymbol ( int *p, char *psz )
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{
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int c = *p;
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while (c == '_' || isalnum(c))
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{
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*psz++ = (char)c;
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c = PrivateDirectives_Input();
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}
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*psz = '\0';
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*p = c;
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}
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void PrivateDirectives_IgnoreSymbol ( int *p )
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{
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int c = *p;
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while (c == '_' || isalnum(c))
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{
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c = PrivateDirectives_Input();
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}
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*p = c;
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}
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void GetMicrosoftDirective ( int *p )
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{
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int c = *p;
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// loop through to get all directives
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while (c != g_chDirectiveEnd)
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{
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if (c == g_chDirectiveAND)
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{
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c = PrivateDirectives_Input();
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PrivateDirectives_SkipSpace(&c);
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}
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switch (My_toupper(c))
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{
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case 'A': // possible ARRAY
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if (PrivateDirectives_MatchSymbol(&c, "ARRAY"))
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{
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g_fPrivateDir_Array = 1;
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}
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break;
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case 'D': // possible DLINKED
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if (PrivateDirectives_MatchSymbol(&c, "DLINKED"))
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{
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g_fPrivateDir_DLinked = 1;
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}
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break;
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case 'F': // possible FNAME
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if (PrivateDirectives_MatchSymbol(&c, "FIELD"))
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{
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// c should be a space now
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PrivateDirectives_SkipSpace(&c);
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// c should be a double quote now
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if (c == '"')
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{
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c = PrivateDirectives_Input();
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}
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// c should be the first char of name
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PrivateDirectives_GetSymbol(&c, &g_szPrivateDirectedFieldName[0]);
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g_fPrivateDir_FieldNameToken = 0;
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}
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break;
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case 'I': // possible INTX
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if (PrivateDirectives_MatchSymbol(&c, "INTX"))
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{
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g_fPrivateDir_Intx = 1;
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}
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break;
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case 'L': // possible LENPTR
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if (PrivateDirectives_MatchSymbol(&c, "LENPTR"))
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{
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g_fPrivateDir_LenPtr = 1;
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}
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break;
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case 'N': // possible NO MEMCPY (or NOMEMCPY) or NO CODE (or NOCODE)
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if (PrivateDirectives_MatchSymbol(&c, "NO"))
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{
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// skip over possible spaces
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PrivateDirectives_SkipSpace(&c);
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switch (My_toupper(c))
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{
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case 'C':
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if (PrivateDirectives_MatchSymbol(&c, "CODE")) // CODE
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{
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g_fPrivateDir_NoCode = 1;
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}
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break;
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case 'M':
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if (PrivateDirectives_MatchSymbol(&c, "MEMCPY")) // MEMCPY
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{
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g_fPrivateDir_NoMemCopy = 1;
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}
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break;
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}
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}
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break;
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case 'O': // possible OID ARRAY (or OIDARRAY) or OID PACKED (or OIDPACKED)
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if (PrivateDirectives_MatchSymbol(&c, "OID"))
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{
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// skip over possible spaces
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PrivateDirectives_SkipSpace(&c);
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switch (My_toupper(c))
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{
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case 'A':
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if (PrivateDirectives_MatchSymbol(&c, "ARRAY")) // ARRAY
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{
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g_fPrivateDir_OidArray = 1;
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}
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break;
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case 'P':
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if (PrivateDirectives_MatchSymbol(&c, "PACKED")) // PACKED
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{
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g_fPrivateDir_OidPacked = 1;
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}
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break;
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}
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}
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break;
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case 'P': // possible POINTER or PUBLIC
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c = PrivateDirectives_Input();
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switch (My_toupper(c))
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{
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case 'O':
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if (PrivateDirectives_MatchSymbol(&c, "OINTER")) // POINTER
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{
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g_fPrivateDir_Pointer = 1;
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}
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break;
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case 'U':
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if (PrivateDirectives_MatchSymbol(&c, "UBLIC")) // PUBLIC
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{
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g_fPrivateDir_Public = 1;
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}
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break;
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}
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break;
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case 'S': // possible SLINKED
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if (PrivateDirectives_MatchSymbol(&c, "SLINKED"))
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{
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g_fPrivateDir_SLinked = 1;
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}
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break;
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case 'T': // possible TNAME
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if (PrivateDirectives_MatchSymbol(&c, "TYPE"))
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{
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// c should be a space now
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PrivateDirectives_SkipSpace(&c);
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// c should be a double quote now
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if (c == '"')
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{
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c = PrivateDirectives_Input();
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}
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// c should be the first char of name
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PrivateDirectives_GetSymbol(&c, &g_szPrivateDirectedTypeName[0]);
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g_fPrivateDir_TypeNameToken = 0;
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}
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break;
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case 'V': // possible VNAME
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if (PrivateDirectives_MatchSymbol(&c, "VALUE"))
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{
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// c should be a space now
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PrivateDirectives_SkipSpace(&c);
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// c should be a double quote now
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if (c == '"')
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{
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c = PrivateDirectives_Input();
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}
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// c should be the first char of name
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PrivateDirectives_GetSymbol(&c, &g_szPrivateDirectedValueName[0]);
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g_fPrivateDir_ValueNameToken = 0;
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}
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break;
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default:
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goto MyExit;
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}
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// determine if we should stay in the loop
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// skip over the ending double quote
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if (c == '"')
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{
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c = PrivateDirectives_Input();
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}
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// skip over unknown directives
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PrivateDirectives_IgnoreSymbol(&c);
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// skip over possible spaces
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PrivateDirectives_SkipSpace(&c);
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}
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// now, c is >. we need to advance to --
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c = PrivateDirectives_Input();
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// now, c should be -
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MyExit:
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// return the current character
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*p = c;
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}
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void GetPrivateDirective ( int *p )
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{
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GetMicrosoftDirective(p);
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}
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typedef struct Verbatim_s
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{
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struct Verbatim_s *next;
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char pszVerbatim[1];
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}
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Verbatim_t;
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Verbatim_t *g_VerbatimList = NULL;
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void RememberVerbatim(char *pszVerbatim)
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{
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int cb = strlen(pszVerbatim) + 1;
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Verbatim_t *p = (Verbatim_t *) malloc(sizeof(Verbatim_t) + cb);
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if (p)
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{
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memcpy(p->pszVerbatim, pszVerbatim, cb);
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p->next = NULL;
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if (g_VerbatimList)
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{
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Verbatim_t *q;
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for (q = g_VerbatimList; q->next; q = q->next)
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;
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q->next = p;
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}
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else
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{
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g_VerbatimList = p;
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}
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}
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}
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void PrintVerbatim(void)
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{
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Verbatim_t *p;
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for (p = g_VerbatimList; p; p = p->next)
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{
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output("/* %s */\n", p->pszVerbatim);
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}
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if (g_VerbatimList)
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{
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output("\n");
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}
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}
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int CompareDirective(char *pszDirective, char *pszInput)
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{
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int rc;
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int len = strlen(pszDirective);
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char ch = pszInput[len];
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pszInput[len] = '\0';
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rc = strcmpi(pszDirective, pszInput);
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pszInput[len] = ch;
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return rc;
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}
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void SetDirective(char *pszInput)
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{
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// verbatim strings
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const char szComment[] = "COMMENT";
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if (! CompareDirective((char *) &szComment[0], pszInput))
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{
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pszInput += sizeof(szComment) - 1;
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if (isspace(*pszInput))
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{
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pszInput++;
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if ('"' == *pszInput++)
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{
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char *pszEnd = strchr(pszInput, '"');
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if (pszEnd)
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{
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*pszEnd = '\0';
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RememberVerbatim(pszInput);
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*pszEnd = '"';
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}
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}
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}
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return;
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}
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// object identifier
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if (! CompareDirective("OID ARRAY", pszInput))
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{
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g_fOidArray = 1;
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return;
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}
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// set of/sequence of w/o size constraint
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if (! CompareDirective("SS.basic SLINKED", pszInput))
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{
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g_eDefTypeRuleSS_NonSized = eTypeRules_SinglyLinkedList;
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return;
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}
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if (! CompareDirective("SS.basic DLINKED", pszInput))
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{
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g_eDefTypeRuleSS_NonSized = eTypeRules_DoublyLinkedList;
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return;
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}
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if (! CompareDirective("SS.basic LENPTR", pszInput))
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{
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g_eDefTypeRuleSS_NonSized = eTypeRules_LengthPointer;
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return;
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}
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if (! CompareDirective("SS.basic ARRAY", pszInput))
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{
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g_eDefTypeRuleSS_NonSized = eTypeRules_FixedArray;
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return;
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}
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// set of/sequence of w/ size constraint
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if (! CompareDirective("SS.sized SLINKED", pszInput))
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{
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g_eDefTypeRuleSS_Sized = eTypeRules_SinglyLinkedList;
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return;
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}
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if (! CompareDirective("SS.sized DLINKED", pszInput))
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{
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g_eDefTypeRuleSS_Sized = eTypeRules_DoublyLinkedList;
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return;
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}
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if (! CompareDirective("SS.sized LENPTR", pszInput))
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{
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g_eDefTypeRuleSS_Sized = eTypeRules_LengthPointer;
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return;
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}
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if (! CompareDirective("SS.sized ARRAY", pszInput))
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{
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g_eDefTypeRuleSS_Sized = eTypeRules_FixedArray;
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return;
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}
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// set extra pointer type for SS construct, its struct name will be postfixed with _s
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if (! CompareDirective("SS.struct EXTRA-PTR-TYPE", pszInput))
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{
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g_fExtraStructPtrTypeSS = 1;
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return;
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}
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}
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#endif // MS_DIRECTIVE
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