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1/** @file\r
2 This module provide help function for displaying unicode string.\r
3\r
4 Copyright (c) 2006 - 2015, Intel Corporation. All rights reserved.<BR>\r
5 This program and the accompanying materials \r
6 are licensed and made available under the terms and conditions of the BSD License \r
7 which accompanies this distribution. The full text of the license may be found at \r
8 http://opensource.org/licenses/bsd-license.php. \r
9\r
10 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS, \r
11 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED. \r
12\r
13**/\r
14\r
15\r
16\r
17\r
18#include "UefiLibInternal.h"\r
19\r
20typedef struct {\r
21 CHAR16 WChar;\r
22 UINT32 Width;\r
23} UNICODE_WIDTH_ENTRY;\r
24\r
25#define NARROW_CHAR 0xFFF0\r
26#define WIDE_CHAR 0xFFF1\r
27\r
28GLOBAL_REMOVE_IF_UNREFERENCED CONST UNICODE_WIDTH_ENTRY mUnicodeWidthTable[] = {\r
29 //\r
30 // General script area\r
31 //\r
32 {(CHAR16)0x1FFF, 1},\r
33 /*\r
34 * Merge the blocks and replace them with the above entry as they fall to \r
35 * the same category and they are all narrow glyph. This will reduce search\r
36 * time and table size. The merge will omit the reserved code.\r
37 *\r
38 * Remove the above item if below is un-commented.\r
39 *\r
40 {(CHAR16)0x007F, 1}, // C0 controls and basic Latin. 0x0000-0x007F\r
41 {(CHAR16)0x00FF, 1}, // C1 controls and Latin-1 support. 0x0080-0x00FF\r
42 {(CHAR16)0x017F, 1}, // Latin extended-A. 0x0100-0x017F\r
43 {(CHAR16)0x024F, 1}, // Latin extended-B. 0x0180-0x024F\r
44 {(CHAR16)0x02AF, 1}, // IPA extensions. 0x0250-0x02AF\r
45 {(CHAR16)0x02FF, 1}, // Spacing modifier letters. 0x02B0-0x02FF\r
46 {(CHAR16)0x036F, 1}, // Combining diacritical marks. 0x0300-0x036F\r
47 {(CHAR16)0x03FF, 1}, // Greek. 0x0370-0x03FF\r
48 {(CHAR16)0x04FF, 1}, // Cyrillic. 0x0400-0x04FF\r
49 {(CHAR16)0x052F, 0}, // Unassigned. As Armenian in ver3.0. 0x0500-0x052F\r
50 {(CHAR16)0x058F, 1}, // Armenian. 0x0530-0x058F\r
51 {(CHAR16)0x05FF, 1}, // Hebrew. 0x0590-0x05FF\r
52 {(CHAR16)0x06FF, 1}, // Arabic. 0x0600-0x06FF\r
53 {(CHAR16)0x08FF, 0}, // Unassigned. 0x0700-0x08FF\r
54 {(CHAR16)0x097F, 1}, // Devanagari. 0x0900-0x097F\r
55 {(CHAR16)0x09FF, 1}, // Bengali. 0x0980-0x09FF\r
56 {(CHAR16)0x0A7F, 1}, // Gurmukhi. 0x0A00-0x0A7F\r
57 {(CHAR16)0x0AFF, 1}, // Gujarati. 0x0A80-0x0AFF\r
58 {(CHAR16)0x0B7F, 1}, // Oriya. 0x0B00-0x0B7F\r
59 {(CHAR16)0x0BFF, 1}, // Tamil. (See page 7-92). 0x0B80-0x0BFF\r
60 {(CHAR16)0x0C7F, 1}, // Telugu. 0x0C00-0x0C7F\r
61 {(CHAR16)0x0CFF, 1}, // Kannada. (See page 7-100). 0x0C80-0x0CFF\r
62 {(CHAR16)0x0D7F, 1}, // Malayalam (See page 7-104). 0x0D00-0x0D7F\r
63 {(CHAR16)0x0DFF, 0}, // Unassigned. 0x0D80-0x0DFF\r
64 {(CHAR16)0x0E7F, 1}, // Thai. 0x0E00-0x0E7F\r
65 {(CHAR16)0x0EFF, 1}, // Lao. 0x0E80-0x0EFF\r
66 {(CHAR16)0x0FBF, 1}, // Tibetan. 0x0F00-0x0FBF\r
67 {(CHAR16)0x109F, 0}, // Unassigned. 0x0FC0-0x109F\r
68 {(CHAR16)0x10FF, 1}, // Georgian. 0x10A0-0x10FF\r
69 {(CHAR16)0x11FF, 1}, // Hangul Jamo. 0x1100-0x11FF\r
70 {(CHAR16)0x1DFF, 0}, // Unassigned. 0x1200-0x1DFF\r
71 {(CHAR16)0x1EFF, 1}, // Latin extended additional. 0x1E00-0x1EFF\r
72 {(CHAR16)0x1FFF, 1}, // Greek extended. 0x1F00-0x1FFF\r
73 *\r
74 */\r
75\r
76 //\r
77 // Symbol area\r
78 //\r
79 {(CHAR16)0x2FFF, 1},\r
80 /*\r
81 * Merge the blocks and replace them with the above entry as they fall to \r
82 * the same category and they are all narrow glyph. This will reduce search\r
83 * time and table size. The merge will omit the reserved code.\r
84 *\r
85 * Remove the above item if below is un-commented.\r
86 *\r
87 {(CHAR16)0x206F, 1}, // General punctuation. (See page7-154). 0x200-0x206F\r
88 {(CHAR16)0x209F, 1}, // Superscripts and subscripts. 0x2070-0x209F\r
89 {(CHAR16)0x20CF, 1}, // Currency symbols. 0x20A0-0x20CF\r
90 {(CHAR16)0x20FF, 1}, // Combining diacritical marks for symbols. 0x20D0-0x20FF\r
91 {(CHAR16)0x214F, 1}, // Letterlike sympbols. 0x2100-0x214F\r
92 {(CHAR16)0x218F, 1}, // Number forms. 0x2150-0x218F\r
93 {(CHAR16)0x21FF, 1}, // Arrows. 0x2190-0x21FF\r
94 {(CHAR16)0x22FF, 1}, // Mathematical operators. 0x2200-0x22FF\r
95 {(CHAR16)0x23FF, 1}, // Miscellaneous technical. 0x2300-0x23FF\r
96 {(CHAR16)0x243F, 1}, // Control pictures. 0x2400-0x243F\r
97 {(CHAR16)0x245F, 1}, // Optical character recognition. 0x2440-0x245F\r
98 {(CHAR16)0x24FF, 1}, // Enclosed alphanumerics. 0x2460-0x24FF\r
99 {(CHAR16)0x257F, 1}, // Box drawing. 0x2500-0x257F\r
100 {(CHAR16)0x259F, 1}, // Block elements. 0x2580-0x259F\r
101 {(CHAR16)0x25FF, 1}, // Geometric shapes. 0x25A0-0x25FF\r
102 {(CHAR16)0x26FF, 1}, // Miscellaneous symbols. 0x2600-0x26FF\r
103 {(CHAR16)0x27BF, 1}, // Dingbats. 0x2700-0x27BF\r
104 {(CHAR16)0x2FFF, 0}, // Reserved. 0x27C0-0x2FFF\r
105 *\r
106 */\r
107\r
108 //\r
109 // CJK phonetics and symbol area\r
110 //\r
111 {(CHAR16)0x33FF, 2},\r
112 /*\r
113 * Merge the blocks and replace them with the above entry as they fall to \r
114 * the same category and they are all wide glyph. This will reduce search\r
115 * time and table size. The merge will omit the reserved code.\r
116 *\r
117 * Remove the above item if below is un-commented.\r
118 *\r
119 {(CHAR16)0x303F, 2}, // CJK symbols and punctuation. 0x3000-0x303F\r
120 {(CHAR16)0x309F, 2}, // Hiragana. 0x3040-0x309F\r
121 {(CHAR16)0x30FF, 2}, // Katakana. 0x30A0-0x30FF\r
122 {(CHAR16)0x312F, 2}, // Bopomofo. 0x3100-0x312F\r
123 {(CHAR16)0x318F, 2}, // Hangul compatibility jamo. 0x3130-0x318F\r
124 {(CHAR16)0x319F, 2}, // Kanbun. 0x3190-0x319F\r
125 {(CHAR16)0x31FF, 0}, // Reserved. As Bopomofo extended in ver3.0. 0x31A0-0x31FF\r
126 {(CHAR16)0x32FF, 2}, // Enclosed CJK letters and months. 0x3200-0x32FF\r
127 {(CHAR16)0x33FF, 2}, // CJK compatibility. 0x3300-0x33FF\r
128 *\r
129 */\r
130\r
131 //\r
132 // CJK ideograph area\r
133 //\r
134 {(CHAR16)0x9FFF, 2},\r
135 /*\r
136 * Merge the blocks and replace them with the above entry as they fall to \r
137 * the same category and they are all wide glyph. This will reduce search\r
138 * time and table size. The merge will omit the reserved code.\r
139 *\r
140 * Remove the above item if below is un-commented.\r
141 *\r
142 {(CHAR16)0x4DFF, 0}, // Reserved. 0x3400-0x4DBF as CJK unified ideographs \r
143 // extension A in ver3.0. 0x3400-0x4DFF\r
144 {(CHAR16)0x9FFF, 2}, // CJK unified ideographs. 0x4E00-0x9FFF\r
145 *\r
146 */\r
147\r
148 //\r
149 // Reserved\r
150 //\r
151 {(CHAR16)0xABFF, 0}, // Reserved. 0xA000-0xA490 as Yi syllables. 0xA490-0xA4D0\r
152 // as Yi radicals in ver3.0. 0xA000-0xABFF\r
153 //\r
154 // Hangul syllables\r
155 //\r
156 {(CHAR16)0xD7FF, 2},\r
157 /*\r
158 * Merge the blocks and replace them with the above entry as they fall to \r
159 * the same category and they are all wide glyph. This will reduce search\r
160 * time and table size. The merge will omit the reserved code.\r
161 *\r
162 * Remove the above item if below is un-commented.\r
163 *\r
164 {(CHAR16)0xD7A3, 2}, // Hangul syllables. 0xAC00-0xD7A3\r
165 {(CHAR16)0xD7FF, 0}, // Reserved. 0xD7A3-0xD7FF\r
166 *\r
167 */\r
168\r
169 //\r
170 // Surrogates area\r
171 //\r
172 {(CHAR16)0xDFFF, 0}, // Surrogates, not used now. 0xD800-0xDFFF\r
173\r
174 //\r
175 // Private use area\r
176 //\r
177 {(CHAR16)0xF8FF, 0}, // Private use area. 0xE000-0xF8FF\r
178\r
179 //\r
180 // Compatibility area and specials\r
181 //\r
182 {(CHAR16)0xFAFF, 2}, // CJK compatibility ideographs. 0xF900-0xFAFF\r
183 {(CHAR16)0xFB4F, 1}, // Alphabetic presentation forms. 0xFB00-0xFB4F\r
184 {(CHAR16)0xFDFF, 1}, // Arabic presentation forms-A. 0xFB50-0xFDFF\r
185 {(CHAR16)0xFE1F, 0}, // Reserved. As variation selectors in ver3.0. 0xFE00-0xFE1F\r
186 {(CHAR16)0xFE2F, 1}, // Combining half marks. 0xFE20-0xFE2F\r
187 {(CHAR16)0xFE4F, 2}, // CJK compatibility forms. 0xFE30-0xFE4F\r
188 {(CHAR16)0xFE6F, 1}, // Small Form Variants. 0xFE50-0xFE6F\r
189 {(CHAR16)0xFEFF, 1}, // Arabic presentation forms-B. 0xFE70-0xFEFF\r
190 {(CHAR16)0xFFEF, 1}, // Half width and full width forms. 0xFF00-0xFFEF\r
191 {(CHAR16)0xFFFF, 0}, // Speicials. 0xFFF0-0xFFFF\r
192};\r
193\r
194/**\r
195 Retrieves the width of a Unicode character.\r
196\r
197 This function computes and returns the width of the Unicode character specified\r
198 by UnicodeChar.\r
199\r
200 @param UnicodeChar A Unicode character.\r
201\r
202 @retval 0 The width if UnicodeChar could not be determined.\r
203 @retval 1 UnicodeChar is a narrow glyph.\r
204 @retval 2 UnicodeChar is a wide glyph.\r
205\r
206**/\r
207UINTN\r
208EFIAPI\r
209GetGlyphWidth (\r
210 IN CHAR16 UnicodeChar\r
211 )\r
212{\r
213 UINTN Index;\r
214 UINTN Low;\r
215 UINTN High;\r
216 CONST UNICODE_WIDTH_ENTRY *Item;\r
217\r
218 Item = NULL;\r
219 Low = 0;\r
220 High = (sizeof (mUnicodeWidthTable)) / (sizeof (UNICODE_WIDTH_ENTRY)) - 1;\r
221 while (Low <= High) {\r
222 Index = (Low + High) >> 1;\r
223 Item = &(mUnicodeWidthTable[Index]);\r
224 if (Index == 0) {\r
225 if (UnicodeChar <= Item->WChar) {\r
226 break;\r
227 }\r
228\r
229 return 0;\r
230 }\r
231\r
232 if (UnicodeChar > Item->WChar) {\r
233 Low = Index + 1;\r
234 } else if (UnicodeChar <= mUnicodeWidthTable[Index - 1].WChar) {\r
235 High = Index - 1;\r
236 } else {\r
237 //\r
238 // Index - 1 < UnicodeChar <= Index. Found\r
239 //\r
240 break;\r
241 }\r
242 }\r
243\r
244 if (Low <= High) {\r
245 return Item->Width;\r
246 }\r
247\r
248 return 0;\r
249}\r
250\r
251/**\r
252 Computes the display length of a Null-terminated Unicode String.\r
253\r
254 This function computes and returns the display length of the Null-terminated \r
255 Unicode string specified by String. If String is NULL then 0 is returned. If \r
256 any of the widths of the Unicode characters in String can not be determined, \r
257 then 0 is returned. The display width of String can be computed by summing the \r
258 display widths of each Unicode character in String. Unicode characters that \r
259 are narrow glyphs have a width of 1, and Unicode characters that are width glyphs \r
260 have a width of 2. If String is not aligned on a 16-bit boundary, then ASSERT().\r
261\r
262 @param String A pointer to a Null-terminated Unicode string.\r
263\r
264 @return The display length of the Null-terminated Unicode string specified by String.\r
265 \r
266**/\r
267UINTN\r
268EFIAPI\r
269UnicodeStringDisplayLength (\r
270 IN CONST CHAR16 *String\r
271 )\r
272{\r
273 UINTN Length;\r
274 UINTN Width;\r
275\r
276 if (String == NULL) {\r
277 return 0;\r
278 }\r
279\r
280 Length = 0;\r
281 while (*String != 0) {\r
282 Width = GetGlyphWidth (*String);\r
283 if (Width == 0) {\r
284 return 0;\r
285 }\r
286\r
287 Length += Width;\r
288 String++;\r
289 }\r
290\r
291 return Length;\r
292}\r
293\r
294/**\r
295 Count the storage space of a Unicode string. \r
296\r
297 This function handles the Unicode string with NARROW_CHAR\r
298 and WIDE_CHAR control characters. NARROW_HCAR and WIDE_CHAR\r
299 does not count in the resultant output. If a WIDE_CHAR is\r
300 hit, then 2 Unicode character will consume an output storage\r
301 space with size of CHAR16 till a NARROW_CHAR is hit.\r
302\r
303 @param String The input string to be counted.\r
304 @param LimitLen Whether need to limit the string length.\r
305 @param MaxWidth The max length this function supported.\r
306 @param Offset The max index of the string can be show out. \r
307\r
308 @return Storage space for the input string.\r
309\r
310**/\r
311UINTN\r
312UefiLibGetStringWidth (\r
313 IN CHAR16 *String,\r
314 IN BOOLEAN LimitLen,\r
315 IN UINTN MaxWidth,\r
316 OUT UINTN *Offset\r
317 )\r
318{\r
319 UINTN Index;\r
320 UINTN Count;\r
321 UINTN IncrementValue;\r
322\r
323 if (String == NULL) {\r
324 return 0;\r
325 }\r
326\r
327 Index = 0;\r
328 Count = 0;\r
329 IncrementValue = 1;\r
330\r
331 do {\r
332 //\r
333 // Advance to the null-terminator or to the first width directive\r
334 //\r
335 for (;(String[Index] != NARROW_CHAR) && (String[Index] != WIDE_CHAR) && (String[Index] != 0); Index++) {\r
336 Count = Count + IncrementValue;\r
337\r
338 if (LimitLen && Count > MaxWidth) {\r
339 break;\r
340 }\r
341 }\r
342\r
343 //\r
344 // We hit the null-terminator, we now have a count\r
345 //\r
346 if (String[Index] == 0) {\r
347 break;\r
348 }\r
349\r
350 if (LimitLen && Count > MaxWidth) {\r
351 *Offset = Index;\r
352 break;\r
353 }\r
354\r
355 //\r
356 // We encountered a narrow directive - strip it from the size calculation since it doesn't get printed\r
357 // and also set the flag that determines what we increment by.(if narrow, increment by 1, if wide increment by 2)\r
358 //\r
359 if (String[Index] == NARROW_CHAR) {\r
360 //\r
361 // Skip to the next character\r
362 //\r
363 Index++;\r
364 IncrementValue = 1;\r
365 } else {\r
366 //\r
367 // Skip to the next character\r
368 //\r
369 Index++;\r
370 IncrementValue = 2;\r
371 }\r
372 } while (String[Index] != 0);\r
373\r
374 return Count * sizeof (CHAR16);\r
375}\r
376\r
377/**\r
378 Draws a dialog box to the console output device specified by \r
379 ConOut defined in the EFI_SYSTEM_TABLE and waits for a keystroke\r
380 from the console input device specified by ConIn defined in the \r
381 EFI_SYSTEM_TABLE.\r
382\r
383 If there are no strings in the variable argument list, then ASSERT().\r
384 If all the strings in the variable argument list are empty, then ASSERT().\r
385\r
386 @param[in] Attribute Specifies the foreground and background color of the popup.\r
387 @param[out] Key A pointer to the EFI_KEY value of the key that was \r
388 pressed. This is an optional parameter that may be NULL.\r
389 If it is NULL then no wait for a keypress will be performed.\r
390 @param[in] ... The variable argument list that contains pointers to Null-\r
391 terminated Unicode strings to display in the dialog box. \r
392 The variable argument list is terminated by a NULL.\r
393\r
394**/\r
395VOID\r
396EFIAPI\r
397CreatePopUp (\r
398 IN UINTN Attribute, \r
399 OUT EFI_INPUT_KEY *Key, OPTIONAL\r
400 ...\r
401 )\r
402{\r
403 EFI_STATUS Status;\r
404 VA_LIST Args;\r
405 EFI_SIMPLE_TEXT_OUTPUT_PROTOCOL *ConOut;\r
406 EFI_SIMPLE_TEXT_OUTPUT_MODE SavedConsoleMode;\r
407 UINTN Columns;\r
408 UINTN Rows;\r
409 UINTN Column;\r
410 UINTN Row;\r
411 UINTN NumberOfLines;\r
412 UINTN MaxLength;\r
413 CHAR16 *String;\r
414 UINTN Length;\r
415 CHAR16 *Line;\r
416 UINTN EventIndex;\r
417 CHAR16 *TmpString;\r
418\r
419 //\r
420 // Determine the length of the longest line in the popup and the the total \r
421 // number of lines in the popup\r
422 //\r
423 VA_START (Args, Key);\r
424 MaxLength = 0;\r
425 NumberOfLines = 0;\r
426 while ((String = VA_ARG (Args, CHAR16 *)) != NULL) {\r
427 MaxLength = MAX (MaxLength, UefiLibGetStringWidth (String, FALSE, 0, NULL) / 2);\r
428 NumberOfLines++;\r
429 }\r
430 VA_END (Args);\r
431\r
432 //\r
433 // If the total number of lines in the popup is zero, then ASSERT()\r
434 //\r
435 ASSERT (NumberOfLines != 0);\r
436\r
437 //\r
438 // If the maximum length of all the strings is zero, then ASSERT()\r
439 //\r
440 ASSERT (MaxLength != 0);\r
441\r
442 //\r
443 // Cache a pointer to the Simple Text Output Protocol in the EFI System Table\r
444 //\r
445 ConOut = gST->ConOut;\r
446 \r
447 //\r
448 // Save the current console cursor position and attributes\r
449 //\r
450 CopyMem (&SavedConsoleMode, ConOut->Mode, sizeof (SavedConsoleMode));\r
451\r
452 //\r
453 // Retrieve the number of columns and rows in the current console mode\r
454 //\r
455 ConOut->QueryMode (ConOut, SavedConsoleMode.Mode, &Columns, &Rows);\r
456\r
457 //\r
458 // Disable cursor and set the foreground and background colors specified by Attribute\r
459 //\r
460 ConOut->EnableCursor (ConOut, FALSE);\r
461 ConOut->SetAttribute (ConOut, Attribute);\r
462\r
463 //\r
464 // Limit NumberOfLines to height of the screen minus 3 rows for the box itself\r
465 //\r
466 NumberOfLines = MIN (NumberOfLines, Rows - 3);\r
467\r
468 //\r
469 // Limit MaxLength to width of the screen minus 2 columns for the box itself\r
470 //\r
471 MaxLength = MIN (MaxLength, Columns - 2);\r
472\r
473 //\r
474 // Compute the starting row and starting column for the popup\r
475 //\r
476 Row = (Rows - (NumberOfLines + 3)) / 2;\r
477 Column = (Columns - (MaxLength + 2)) / 2;\r
478\r
479 //\r
480 // Allocate a buffer for a single line of the popup with borders and a Null-terminator\r
481 //\r
482 Line = AllocateZeroPool ((MaxLength + 3) * sizeof (CHAR16));\r
483 ASSERT (Line != NULL);\r
484\r
485 //\r
486 // Draw top of popup box \r
487 //\r
488 SetMem16 (Line, (MaxLength + 2) * 2, BOXDRAW_HORIZONTAL);\r
489 Line[0] = BOXDRAW_DOWN_RIGHT;\r
490 Line[MaxLength + 1] = BOXDRAW_DOWN_LEFT;\r
491 Line[MaxLength + 2] = L'\0';\r
492 ConOut->SetCursorPosition (ConOut, Column, Row++);\r
493 ConOut->OutputString (ConOut, Line);\r
494\r
495 //\r
496 // Draw middle of the popup with strings\r
497 //\r
498 VA_START (Args, Key);\r
499 while ((String = VA_ARG (Args, CHAR16 *)) != NULL && NumberOfLines > 0) {\r
500 SetMem16 (Line, (MaxLength + 2) * 2, L' ');\r
501 Line[0] = BOXDRAW_VERTICAL;\r
502 Line[MaxLength + 1] = BOXDRAW_VERTICAL;\r
503 Line[MaxLength + 2] = L'\0';\r
504 ConOut->SetCursorPosition (ConOut, Column, Row);\r
505 ConOut->OutputString (ConOut, Line);\r
506 Length = UefiLibGetStringWidth (String, FALSE, 0, NULL) / 2;\r
507 if (Length <= MaxLength) {\r
508 //\r
509 // Length <= MaxLength\r
510 //\r
511 ConOut->SetCursorPosition (ConOut, Column + 1 + (MaxLength - Length) / 2, Row++);\r
512 ConOut->OutputString (ConOut, String);\r
513 } else {\r
514 //\r
515 // Length > MaxLength\r
516 //\r
517 UefiLibGetStringWidth (String, TRUE, MaxLength, &Length);\r
518 TmpString = AllocateZeroPool ((Length + 1) * sizeof (CHAR16));\r
519 ASSERT (TmpString != NULL);\r
520 StrnCpyS (TmpString, Length + 1, String, Length - 3);\r
521 StrCatS (TmpString, Length + 1, L"...");\r
522\r
523 ConOut->SetCursorPosition (ConOut, Column + 1, Row++);\r
524 ConOut->OutputString (ConOut, TmpString);\r
525 FreePool (TmpString);\r
526 }\r
527 NumberOfLines--;\r
528 }\r
529 VA_END (Args);\r
530\r
531 //\r
532 // Draw bottom of popup box\r
533 //\r
534 SetMem16 (Line, (MaxLength + 2) * 2, BOXDRAW_HORIZONTAL);\r
535 Line[0] = BOXDRAW_UP_RIGHT;\r
536 Line[MaxLength + 1] = BOXDRAW_UP_LEFT;\r
537 Line[MaxLength + 2] = L'\0';\r
538 ConOut->SetCursorPosition (ConOut, Column, Row++);\r
539 ConOut->OutputString (ConOut, Line);\r
540\r
541 //\r
542 // Free the allocated line buffer\r
543 //\r
544 FreePool (Line);\r
545\r
546 //\r
547 // Restore the cursor visibility, position, and attributes\r
548 //\r
549 ConOut->EnableCursor (ConOut, SavedConsoleMode.CursorVisible);\r
550 ConOut->SetCursorPosition (ConOut, SavedConsoleMode.CursorColumn, SavedConsoleMode.CursorRow);\r
551 ConOut->SetAttribute (ConOut, SavedConsoleMode.Attribute);\r
552\r
553 //\r
554 // Wait for a keystroke\r
555 //\r
556 if (Key != NULL) {\r
557 while (TRUE) {\r
558 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, Key);\r
559 if (!EFI_ERROR (Status)) {\r
560 break;\r
561 }\r
562\r
563 //\r
564 // If we encounter error, continue to read another key in.\r
565 //\r
566 if (Status != EFI_NOT_READY) {\r
567 continue;\r
568 }\r
569 gBS->WaitForEvent (1, &gST->ConIn->WaitForKey, &EventIndex);\r
570 }\r
571 }\r
572}\r