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199 lines
6.3 KiB
C
Executable File
199 lines
6.3 KiB
C
Executable File
/** @file
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Copyright (C) 2016, The HermitCrabs Lab. All rights reserved.
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All rights reserved.
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This program and the accompanying materials
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are licensed and made available under the terms and conditions of the BSD License
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which accompanies this distribution. The full text of the license may be found at
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http://opensource.org/licenses/bsd-license.php
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THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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**/
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#include <Base.h>
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#include <Library/BaseLib.h>
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#include <Library/DebugLib.h>
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#include <Library/OcStringLib.h>
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#include <Library/PcdLib.h>
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/**
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Performs a case insensitive comparison of two Null-terminated Unicode strings,
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and returns the difference between the first mismatched Unicode characters.
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This function performs a case insensitive comparison of the Null-terminated
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Unicode string FirstString to the Null-terminated Unicode string
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SecondString. If FirstString is identical to SecondString, then 0 is
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returned. Otherwise, the value returned is the first mismatched upper case
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Unicode character in SecondString subtracted from the first mismatched upper
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case Unicode character in FirstString.
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If FirstString is NULL, then ASSERT().
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If SecondString is NULL, then ASSERT().
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If PcdMaximumUnicodeStringLength is not zero and FirstString contains more
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than PcdMaximumUnicodeStringLength Unicode characters, not including the
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Null-terminator, then ASSERT().
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If PcdMaximumUnicodeStringLength is not zero and SecondString contains more
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than PcdMaximumUnicodeStringLength Unicode characters, not including the
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Null-terminator, then ASSERT().
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@param FirstString A pointer to a Null-terminated Unicode string.
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@param SecondString A pointer to a Null-terminated Unicode string.
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@retval ==0 FirstString is identical to SecondString using case
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insensitiv comparisons.
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@retval !=0 FirstString is not identical to SecondString using case
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insensitive comparisons.
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**/
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INTN
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EFIAPI
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StriCmp (
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IN CHAR16 *FirstString,
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IN CHAR16 *SecondString
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)
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{
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CHAR16 UpperFirstString;
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CHAR16 UpperSecondString;
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//
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// ASSERT both strings are less long than PcdMaximumUnicodeStringLength
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//
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ASSERT (StrSize (FirstString) != 0);
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ASSERT (StrSize (SecondString) != 0);
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UpperFirstString = CharToUpper (*FirstString);
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UpperSecondString = CharToUpper (*SecondString);
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while ((*FirstString != '\0') && (*SecondString != '\0') && (UpperFirstString == UpperSecondString)) {
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FirstString++;
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SecondString++;
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UpperFirstString = CharToUpper (*FirstString);
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UpperSecondString = CharToUpper (*SecondString);
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}
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return UpperFirstString - UpperSecondString;
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}
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/**
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Compares up to a specified length the contents of two Null-terminated Unicode
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strings using case insensitive comparisons, and returns the difference
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between the first mismatched Unicode characters.
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This function compares the Null-terminated Unicode string FirstString to the
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Null-terminated Unicode string SecondString using case insensitive
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comparisons. At most, Length Unicode characters will be compared. If Length
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is 0, then 0 is returned. If FirstString is identical to SecondString, then 0
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is returned. Otherwise, the value returned is the first mismatched upper case
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Unicode character in SecondString subtracted from the first mismatched upper
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case Unicode character in FirstString.
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If Length > 0 and FirstString is NULL, then ASSERT().
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If Length > 0 and FirstString is not aligned on a 16-bit boundary, then
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ASSERT().
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If Length > 0 and SecondString is NULL, then ASSERT().
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If Length > 0 and SecondString is not aligned on a 16-bit boundary, then
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ASSERT().
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If PcdMaximumUnicodeStringLength is not zero, and Length is greater than
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PcdMaximumUnicodeStringLength, then ASSERT().
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If PcdMaximumUnicodeStringLength is not zero, and FirstString contains more
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than PcdMaximumUnicodeStringLength Unicode characters, not including the
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Null-terminator, then ASSERT().
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If PcdMaximumUnicodeStringLength is not zero, and SecondString contains more
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than PcdMaximumUnicodeStringLength Unicode characters, not including the
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Null-terminator, then ASSERT().
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@param FirstString A pointer to a Null-terminated Unicode string.
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@param SecondString A pointer to a Null-terminated Unicode string.
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@param Length The maximum number of Unicode characters to compare.
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@retval ==0 FirstString is identical to SecondString using case
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insensitive comparisons.
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@retval others FirstString is not identical to SecondString using case
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insensitive comparisons.
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**/
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INTN
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EFIAPI
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StrniCmp (
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IN CONST CHAR16 *FirstString,
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IN CONST CHAR16 *SecondString,
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IN UINTN Length
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)
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{
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CHAR16 UpperFirstString;
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CHAR16 UpperSecondString;
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if (Length == 0) {
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return 0;
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}
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//
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// ASSERT both strings are less long than PcdMaximumUnicodeStringLength.
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// Length tests are performed inside StrLen().
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//
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ASSERT (StrSize (FirstString) != 0);
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ASSERT (StrSize (SecondString) != 0);
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if (PcdGet32 (PcdMaximumUnicodeStringLength) != 0) {
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ASSERT (Length <= PcdGet32 (PcdMaximumUnicodeStringLength));
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}
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UpperFirstString = CharToUpper (*FirstString);
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UpperSecondString = CharToUpper (*SecondString);
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while ((*FirstString != L'\0') &&
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(*SecondString != L'\0') &&
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(UpperFirstString == UpperSecondString) &&
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(Length > 1)) {
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FirstString++;
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SecondString++;
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UpperFirstString = CharToUpper (*FirstString);
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UpperSecondString = CharToUpper (*SecondString);
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Length--;
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}
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return UpperFirstString - UpperSecondString;
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}
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VOID
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UnicodeUefiSlashes (
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IN OUT CHAR16 *String
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)
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{
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CHAR16 *Needle;
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while ((Needle = StrStr (String, L"/")) != NULL) {
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*Needle = L'\\';
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}
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}
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VOID
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UnicodeFilterString (
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IN OUT CHAR16 *String,
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IN BOOLEAN SingleLine
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)
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{
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while (*String != L'\0') {
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if ((*String & 0x7FU) != *String) {
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//
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// Remove all unicode characters.
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//
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*String = L'_';
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} else if (SingleLine && (*String == L'\r' || *String == L'\n')) {
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//
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// Stop after printing one line.
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//
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*String = L'\0';
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break;
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} else if (*String < 0x20 || *String == 0x7F) {
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//
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// Drop all unprintable spaces but space including tabs.
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//
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*String = L'_';
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}
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++String;
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}
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}
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