
Windows 10's MSVCRT will only work if the Win32 version in the header is 0 or 10. Some PE's use it for something else, so when the DLL is injected the process fails. Provide custom routines for the C functions used, so the DLL only depends on KERNEL32. With the DLL independent of the CRT that would mean the exe would either also need to be independent, or the source files would need to be built twice (or just remove a linker warning). Another option is to export the functions from the DLL and have the exe import them, which turned out to simplify things quite nicely. A process that has a really long command line would not log properly, so double the heap to accommodate it. If ANSICON_DEF could not be parsed the default attribute would be zero (black on black). Use 7 or -7 instead.
672 lines
14 KiB
C
672 lines
14 KiB
C
/*
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util.c - Utility functions.
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*/
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#include "ansicon.h"
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#include "version.h"
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TCHAR prog_path[MAX_PATH];
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LPTSTR prog;
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int log_level;
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TCHAR DllName[MAX_PATH]; // Dll file name
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char ansi_dll[MAX_PATH];
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DWORD ansi_len;
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#ifdef _WIN64
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char* ansi_bits;
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#endif
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// Get just the name of the program: "C:\path\program.exe" -> "program".
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// Returns a pointer within program; it is modified to remove the extension.
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LPTSTR get_program_name( LPTSTR program )
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{
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LPTSTR name, ext;
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if (program == NULL)
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{
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GetModuleFileName( NULL, prog_path, lenof(prog_path) );
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program = prog_path;
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}
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name = ac_wcsrchr( program, '\\' );
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if (name != NULL)
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++name;
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else
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name = program;
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ext = ac_wcsrchr( name, '.' );
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if (ext != NULL && ext != name)
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*ext = '\0';
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return name;
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}
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// Get the ANSI path of the DLL for the import. If it can't be converted,
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// just use the name and hope it's on the PATH.
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void set_ansi_dll( void )
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{
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BOOL bad;
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ansi_len = WideCharToMultiByte( CP_ACP, WC_NO_BEST_FIT_CHARS, DllName, -1,
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NULL, 0, NULL, &bad );
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if (bad || ansi_len > MAX_PATH)
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{
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#ifdef _WIN64
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ansi_bits = ansi_dll + 4;
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if (*DllNameType == '6')
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memcpy( ansi_dll, "ANSI64.dll\0", 12 );
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else
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#endif
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memcpy( ansi_dll, "ANSI32.dll\0", 12 );
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ansi_len = 12;
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}
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else
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{
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WideCharToMultiByte( CP_ACP, WC_NO_BEST_FIT_CHARS, DllName, -1,
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ansi_dll, MAX_PATH, NULL, NULL );
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#ifdef _WIN64
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ansi_bits = ansi_dll + ansi_len - 7;
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#endif
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ansi_len = (ansi_len + 3) & ~3;
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}
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}
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// GetVersion and GetVersionEx use Win32VersionValue from the header, which
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// could be anything. Retrieve the OS version from NTDLL's header.
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DWORD get_os_version( void )
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{
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PIMAGE_DOS_HEADER pDosHeader;
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PIMAGE_NT_HEADERS pNTHeader;
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pDosHeader = (PIMAGE_DOS_HEADER)GetModuleHandle( L"ntdll.dll" );
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pNTHeader = MakeVA( PIMAGE_NT_HEADERS, pDosHeader->e_lfanew );
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return pNTHeader->OptionalHeader.MajorOperatingSystemVersion << 8 |
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pNTHeader->OptionalHeader.MinorOperatingSystemVersion;
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}
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static LPSTR buf;
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static DWORD buf_len;
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static BOOL quote, alt;
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static DWORD str_format( DWORD pos, BOOL wide, DWORD_PTR str, DWORD len )
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{
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static UINT cp;
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static DWORD flags;
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static BOOL def, *pDef, start_trail;
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union
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{
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LPSTR a;
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LPWSTR w;
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} src;
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int ch;
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BOOL trail;
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src.a = (LPSTR)str;
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if (len == 0 && str != 0)
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len = (DWORD)(wide ? lstrlen( src.w ) : strlen( src.a ));
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if (pos + len * 6 + 8 >= buf_len)
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{
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LPVOID tmp = HeapReAlloc( hHeap, 0, buf, buf_len + len * 6 + 8 );
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if (tmp == NULL)
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return pos;
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buf = tmp;
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buf_len = (DWORD)HeapSize( hHeap, 0, buf );
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}
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if (len == 0)
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{
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if (str == 0)
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{
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memcpy( buf + pos, "<null>", 6 );
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pos += 6;
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}
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else if (quote)
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{
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buf[pos++] = '"';
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buf[pos++] = '"';
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}
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else if (alt)
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{
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memcpy( buf + pos, "<empty>", 7 );
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pos += 7;
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}
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return pos;
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}
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if (cp != GetConsoleOutputCP())
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{
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cp = GetConsoleOutputCP();
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if (wide)
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{
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wchar_t und = L'\xFFFF';
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flags = WC_NO_BEST_FIT_CHARS;
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pDef = &def;
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// Some code pages don't support the default character.
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if (!WideCharToMultiByte( cp, flags, &und, 1, buf + pos, 12, NULL, pDef ))
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{
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flags = 0;
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pDef = NULL;
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def = FALSE;
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}
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}
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}
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if (quote)
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buf[pos++] = '"';
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trail = FALSE;
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while (len-- != 0)
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{
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if (wide)
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ch = *src.w++;
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else
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ch = (BYTE)*src.a++;
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if (ch < 32 || (quote && start_trail))
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{
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start_trail = FALSE;
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if (quote)
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{
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buf[pos++] = '\\';
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switch (ch)
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{
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case '\0': buf[pos++] = '0'; break;
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case '\a': buf[pos++] = 'a'; break;
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case '\b': buf[pos++] = 'b'; break;
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case '\t': buf[pos++] = 't'; break;
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case '\n': buf[pos++] = 'n'; break;
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case '\v': buf[pos++] = 'v'; break;
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case '\f': buf[pos++] = 'f'; break;
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case '\r': buf[pos++] = 'r'; break;
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case 27 : buf[pos++] = 'e'; break;
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default:
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pos += ac_sprintf( buf + pos, "x%2X", ch );
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}
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}
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else
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{
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buf[pos++] = '^';
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buf[pos++] = ch + '@';
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}
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}
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else if (quote && ch == '"')
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{
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buf[pos++] = '\\';
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buf[pos++] = ch;
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}
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else if (!wide)
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{
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if (quote && (cp == 932 || cp == 936 || cp == 949 || cp == 950))
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{
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if (trail)
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trail = FALSE;
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else if (IsDBCSLeadByteEx( cp, (char)ch ))
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{
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if (len == 0)
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start_trail = TRUE;
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else
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trail = TRUE;
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}
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}
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if (quote && start_trail)
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pos += ac_sprintf( buf + pos, "\\x%2X", ch );
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else
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buf[pos++] = ch;
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}
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else
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{
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int mb = WideCharToMultiByte( cp, flags, src.w - 1, 1, buf + pos, 12,
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NULL, pDef );
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if (def)
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{
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buf[pos++] = (quote) ? '\\' : '^';
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mb = ac_sprintf( buf + pos, ch < 0x100 ? "x%2X" : "u%4X", ch );
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}
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pos += mb;
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}
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}
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if (quote)
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buf[pos++] = '"';
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return pos;
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}
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void DEBUGSTR( int level, LPCSTR szFormat, ... )
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{
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static int prefix_len;
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static HANDLE mutex;
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static DWORD size;
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WCHAR temp[MAX_PATH];
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HANDLE file;
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va_list pArgList;
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DWORD len, slen, written;
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DWORD_PTR num;
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if ((log_level & 3) < level && !(level & 4 & log_level))
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return;
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if (mutex == NULL)
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{
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mutex = CreateMutex( NULL, FALSE, L"ANSICON_debug_file" );
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if (mutex == NULL)
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{
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log_level = 0;
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return;
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}
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buf = HeapAlloc( hHeap, 0, 2048 );
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buf_len = (DWORD)HeapSize( hHeap, 0, buf );
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prefix_len = str_format( 0, TRUE, (DWORD_PTR)prog, 0 );
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prefix_len += ac_sprintf(buf+prefix_len, " (%u): ", GetCurrentProcessId());
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}
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if (WaitForSingleObject( mutex, 500 ) == WAIT_TIMEOUT)
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return;
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ExpandEnvironmentStrings( L"%TEMP%\\ansicon.log", temp, lenof(temp) );
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file = CreateFile( temp, GENERIC_WRITE, FILE_SHARE_READ, NULL,
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(szFormat != NULL || (log_level & 8)) ? OPEN_ALWAYS
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: CREATE_ALWAYS,
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0, NULL );
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if (file == INVALID_HANDLE_VALUE)
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{
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ReleaseMutex( mutex );
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return;
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}
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len = SetFilePointer( file, 0, NULL, FILE_END );
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if (len == 0 || szFormat == NULL)
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{
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char buf[128];
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SYSTEMTIME now;
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size = 0;
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if (len != 0)
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{
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RtlFillMemory( buf + 2, 72, '=' );
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buf[0] = buf[74] = buf[76] = '\r';
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buf[1] = buf[75] = buf[77] = '\n';
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WriteFile( file, buf, 78, &written, NULL );
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}
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GetLocalTime( &now );
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len = ac_sprintf( buf, "ANSICON (" BITSA "-bit) v" PVERSA " log (%d)"
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" started %d-%2d-%2d %d:%2d:%2d\r\n",
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log_level,
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now.wYear, now.wMonth, now.wDay,
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now.wHour, now.wMinute, now.wSecond );
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WriteFile( file, buf, len, &written, NULL );
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if (szFormat == NULL)
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{
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CloseHandle( file );
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ReleaseMutex( mutex );
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return;
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}
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}
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if (len != size)
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WriteFile( file, "\r\n", 2, &written, NULL );
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va_start( pArgList, szFormat );
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// Customized printf, mainly to handle wide-character strings the way I want.
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// It only supports:
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// %u unsigned 32-bit decimal
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// %X unsigned 32-bit upper case hexadecimal
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// %p native pointer
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// %q native pointer, display as 32 bits
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// %P 32-bit pointer, display as 64 bits
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// %s null-terminated byte characters
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// %S null-terminated wide characters
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//
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// s & S may be prefixed with (in this order):
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// " quote the string, using C-style escapes and <null> for NULL
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// # use <null> for NULL and <empty> for ""
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// < length of the string is the previous %u
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// * length of the string is the parameter before the string
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//
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// Wide strings are converted according to the current code page; if a
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// character could not be translated, hex is used.
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//
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// C-style escapes are the standard backslash sequences, plus '\e' for ESC,
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// with '\x' used for two hex digits and '\u' for four. Otherwise, caret
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// notation is used to represent controls, with '^x'/'^u' for hex.
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num = 0;
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len = prefix_len;
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while (*szFormat != '\0')
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{
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if (*szFormat != '%')
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buf[len++] = *szFormat++;
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else
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{
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quote = alt = FALSE;
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++szFormat;
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if (*szFormat == '"')
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{
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quote = TRUE;
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++szFormat;
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}
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if (*szFormat == '#')
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{
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alt = TRUE;
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++szFormat;
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}
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slen = 0;
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if (*szFormat == '<')
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{
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slen = (DWORD)num;
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++szFormat;
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}
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if (*szFormat == '*')
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{
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slen = va_arg( pArgList, DWORD );
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++szFormat;
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}
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num = va_arg( pArgList, DWORD_PTR );
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switch (*szFormat++)
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{
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case 'u': len += ac_sprintf( buf + len, "%u", (DWORD)num ); break;
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case 'X': len += ac_sprintf( buf + len, "%X", (DWORD)num ); break;
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case 'p':
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#ifdef _WIN64
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len += ac_sprintf( buf + len, "%8X_%8X",
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(DWORD)(num >> 32), (DWORD)num );
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break;
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#endif
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case 'q': len += ac_sprintf( buf + len, "%8X", (DWORD)num ); break;
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case 'P': len += ac_sprintf( buf + len, "00000000_%8X", (DWORD)num ); break;
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case 's': len = str_format( len, FALSE, num, slen ); break;
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case 'S': len = str_format( len, TRUE, num, slen ); break;
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default:
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buf[len++] = '%';
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if (szFormat[-1] == '\0')
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--szFormat;
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else
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buf[len++] = szFormat[-1];
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}
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if (len >= buf_len - 20)
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{
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LPVOID tmp = HeapReAlloc( hHeap, 0, buf, buf_len + 128 );
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if (tmp == NULL)
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break;
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buf = tmp;
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buf_len = (DWORD)HeapSize( hHeap, 0, buf );
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}
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}
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}
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buf[len++] = '\r';
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buf[len++] = '\n';
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WriteFile( file, buf, len, &written, NULL );
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size = GetFileSize( file, NULL );
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CloseHandle( file );
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ReleaseMutex( mutex );
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}
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// Provide custom versions of used C runtime functions, to remove dependence on
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// the runtime library.
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// For my purposes (palette index and colors):
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// * no leading space;
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// * base is 10 or 16;
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// * number doesn't overflow.
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unsigned long ac_wcstoul( const wchar_t* str, wchar_t** end, int base )
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{
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unsigned c, n;
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unsigned long num = 0;
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for (;;)
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{
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n = -1;
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c = *str;
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if (c >= '0' && c <= '9')
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n = c - '0';
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else if (base == 16)
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{
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c |= 0x20;
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if (c >= 'a' && c <= 'f')
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n = c - 'a' + 10;
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}
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if (n == -1)
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break;
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num = num * base + n;
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++str;
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}
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if (end != NULL)
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*end = (wchar_t*)str;
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return num;
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}
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// For my purposes (log level):
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// * same as ac_wcstoul.
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int ac_wtoi( const wchar_t* str )
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{
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return (int)ac_wcstoul( str, NULL, 10 );
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}
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// For my purposes (default attribute):
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// * same as ac_wcstoul.
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long ac_wcstol( const wchar_t* str, wchar_t** end, int base )
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{
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int neg = (*str == '-');
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long num = ac_wcstoul( str + neg, end, base );
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return neg ? -num : num;
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}
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// For my purposes (program separator):
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// * set is only one or two characters.
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wchar_t* ac_wcspbrk( const wchar_t* str, const wchar_t* set )
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{
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while (*str != '\0')
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{
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if (*str == set[0] || *str == set[1])
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return (wchar_t*)str;
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++str;
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}
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return NULL;
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}
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// For my purposes (path components):
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// * c is not null.
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wchar_t* ac_wcsrchr( const wchar_t* str, wchar_t c )
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{
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wchar_t* last = NULL;
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while (*str != '\0')
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{
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if (*str == c)
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last = (wchar_t*)str;
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++str;
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}
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return last;
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}
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// For my purposes (import module matching):
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// * A-Z becomes a-z;
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// * s2 is lower case;
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// * both strings are at least LEN long;
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// * returns 0 for match, 1 for no match.
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int ac_strnicmp( const char* s1, const char* s2, size_t len )
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{
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while (len--)
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{
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if (*s1 != *s2)
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{
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if (*s2 < 'a' || *s2 > 'z' || (*s1 | 0x20) != *s2)
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return 1;
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}
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++s1;
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++s2;
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}
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return 0;
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}
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static const char hex[16] = { '0','1','2','3','4','5','6','7',
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'8','9','A','B','C','D','E','F' };
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// For my purposes:
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// * BUF is big enough;
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// * FMT is valid;
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// * width implies zero fill and the number is not bigger than the width;
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// * only types d, u & X are supported, all as 32-bit unsigned;
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// * BUF is NOT NUL-terminated.
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int ac_sprintf( char* buf, const char* fmt, ... )
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{
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va_list args;
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DWORD num;
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int t, width;
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char* beg = buf;
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va_start( args, fmt );
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while (*fmt)
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{
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t = *fmt++;
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if (t != '%')
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*buf++ = t;
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else
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{
|
|
num = va_arg( args, DWORD );
|
|
t = *fmt++;
|
|
width = 0;
|
|
if (t == '2' || t == '4' || t == '8')
|
|
{
|
|
width = t - '0';
|
|
t = *fmt++;
|
|
}
|
|
if (t == 'X')
|
|
{
|
|
int bits;
|
|
if (width == 0)
|
|
{
|
|
if (num & 0xF0000000)
|
|
bits = 32;
|
|
else
|
|
{
|
|
bits = 4;
|
|
while (num >> bits)
|
|
bits += 4;
|
|
}
|
|
}
|
|
else
|
|
bits = width * 4;
|
|
do
|
|
{
|
|
bits -= 4;
|
|
*buf++ = hex[num >> bits & 0xF];
|
|
} while (bits);
|
|
}
|
|
else // (t == 'd' || t == 'u')
|
|
{
|
|
if (width == 2)
|
|
{
|
|
*buf++ = (int)(num / 10) + '0';
|
|
*buf++ = (int)(num % 10) + '0';
|
|
}
|
|
else
|
|
{
|
|
unsigned power;
|
|
if (num >= 1000000000)
|
|
power = 1000000000;
|
|
else
|
|
{
|
|
power = 1;
|
|
while (num / (power * 10))
|
|
power *= 10;
|
|
}
|
|
do
|
|
{
|
|
*buf++ = (unsigned)(num / power) % 10 + '0';
|
|
power /= 10;
|
|
} while (power);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
return (int)(buf - beg);
|
|
}
|
|
|
|
|
|
// For my purposes:
|
|
// * BUF is big enough;
|
|
// * FMT is valid;
|
|
// * width is only for X, is only 2 and the number is not bigger than that;
|
|
// * X, d & u are 32-bit unsigned decimal, a digit less than maximum;
|
|
// * c is not output if NUL;
|
|
// * no other type is used;
|
|
// * return value is not used.
|
|
int ac_wprintf( wchar_t* buf, const char* fmt, ... )
|
|
{
|
|
va_list args;
|
|
DWORD num;
|
|
int t;
|
|
|
|
va_start( args, fmt );
|
|
|
|
while (*fmt)
|
|
{
|
|
t = *fmt++;
|
|
if (t != '%')
|
|
*buf++ = t;
|
|
else
|
|
{
|
|
num = va_arg( args, DWORD );
|
|
t = *fmt++;
|
|
if (t == '2')
|
|
{
|
|
++fmt;
|
|
*buf++ = hex[num >> 4];
|
|
*buf++ = hex[num & 0xF];
|
|
}
|
|
else if (t == 'X')
|
|
{
|
|
int bits = 4;
|
|
while (num >> bits)
|
|
bits += 4;
|
|
do
|
|
{
|
|
bits -= 4;
|
|
*buf++ = hex[num >> bits & 0xF];
|
|
} while (bits);
|
|
}
|
|
else if (t == 'c')
|
|
{
|
|
if (num)
|
|
*buf++ = (wchar_t)num;
|
|
}
|
|
else // (t == 'd' || t == 'u')
|
|
{
|
|
int power = 10;
|
|
while (num / power)
|
|
power *= 10;
|
|
do
|
|
{
|
|
power /= 10;
|
|
*buf++ = (int)(num / power) % 10 + '0';
|
|
} while (power != 1);
|
|
}
|
|
}
|
|
}
|
|
*buf = '\0';
|
|
|
|
return 0;
|
|
}
|