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e1f414b6 1/** @file\r
eceb3a4c 2 Print Library internal worker functions.\r
e1f414b6 3\r
eceb3a4c 4 Copyright (c) 2006 - 2008, Intel Corporation<BR>\r
e1f414b6 5 All rights reserved. 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
e1f414b6 13**/\r
14\r
e1f414b6 15#include "PrintLibInternal.h"\r
16\r
e389c39b 17#define WARNING_STATUS_NUMBER 4\r
18#define ERROR_STATUS_NUMBER 24\r
19\r
e1f414b6 20GLOBAL_REMOVE_IF_UNREFERENCED CONST CHAR8 mHexStr[] = {'0','1','2','3','4','5','6','7','8','9','A','B','C','D','E','F'};\r
21\r
e389c39b 22GLOBAL_REMOVE_IF_UNREFERENCED CONST CHAR8 *mStatusString[] = {\r
23 "Success", // RETURN_SUCCESS = 0\r
24 "Warning Unknown Glyph", // RETURN_WARN_UNKNOWN_GLYPH = 1\r
25 "Warning Delete Failure", // RETURN_WARN_DELETE_FAILURE = 2\r
26 "Warning Write Failure", // RETURN_WARN_WRITE_FAILURE = 3\r
27 "Warning Buffer Too Small", // RETURN_WARN_BUFFER_TOO_SMALL = 4\r
28 "Load Error", // RETURN_LOAD_ERROR = 1 | MAX_BIT\r
29 "Invalid Parameter", // RETURN_INVALID_PARAMETER = 2 | MAX_BIT\r
30 "Unsupported", // RETURN_UNSUPPORTED = 3 | MAX_BIT\r
31 "Bad Buffer Size", // RETURN_BAD_BUFFER_SIZE = 4 | MAX_BIT\r
32 "Buffer Too Small", // RETURN_BUFFER_TOO_SMALL, = 5 | MAX_BIT\r
33 "Not Ready", // RETURN_NOT_READY = 6 | MAX_BIT\r
34 "Device Error", // RETURN_DEVICE_ERROR = 7 | MAX_BIT\r
35 "Write Protected", // RETURN_WRITE_PROTECTED = 8 | MAX_BIT\r
36 "Out of Resources", // RETURN_OUT_OF_RESOURCES = 9 | MAX_BIT\r
37 "Volume Corrupt", // RETURN_VOLUME_CORRUPTED = 10 | MAX_BIT\r
38 "Volume Full", // RETURN_VOLUME_FULL = 11 | MAX_BIT\r
39 "No Media", // RETURN_NO_MEDIA = 12 | MAX_BIT\r
40 "Media changed", // RETURN_MEDIA_CHANGED = 13 | MAX_BIT\r
41 "Not Found", // RETURN_NOT_FOUND = 14 | MAX_BIT\r
42 "Access Denied", // RETURN_ACCESS_DENIED = 15 | MAX_BIT\r
43 "No Response", // RETURN_NO_RESPONSE = 16 | MAX_BIT\r
44 "No mapping", // RETURN_NO_MAPPING = 17 | MAX_BIT\r
45 "Time out", // RETURN_TIMEOUT = 18 | MAX_BIT\r
46 "Not started", // RETURN_NOT_STARTED = 19 | MAX_BIT\r
47 "Already started", // RETURN_ALREADY_STARTED = 20 | MAX_BIT\r
48 "Aborted", // RETURN_ABORTED = 21 | MAX_BIT\r
49 "ICMP Error", // RETURN_ICMP_ERROR = 22 | MAX_BIT\r
50 "TFTP Error", // RETURN_TFTP_ERROR = 23 | MAX_BIT\r
51 "Protocol Error" // RETURN_PROTOCOL_ERROR = 24 | MAX_BIT\r
52};\r
53\r
e1f414b6 54\r
55/**\r
56 Internal function that places the character into the Buffer.\r
57\r
58 Internal function that places ASCII or Unicode character into the Buffer.\r
59\r
60 @param Buffer Buffer to place the Unicode or ASCII string.\r
61 @param EndBuffer The end of the input Buffer. No characters will be\r
62 placed after that. \r
63 @param Length Count of character to be placed into Buffer.\r
64 @param Character Character to be placed into Buffer.\r
65 @param Increment Character increment in Buffer.\r
66\r
eceb3a4c 67 @return Buffer Buffer filled with the input Character.\r
e1f414b6 68\r
69**/\r
70CHAR8 *\r
71BasePrintLibFillBuffer (\r
eceb3a4c
LG
72 OUT CHAR8 *Buffer,\r
73 IN CHAR8 *EndBuffer,\r
74 IN INTN Length,\r
75 IN UINTN Character,\r
76 IN INTN Increment\r
e1f414b6 77 )\r
78{\r
79 INTN Index;\r
80\r
81 for (Index = 0; Index < Length && Buffer < EndBuffer; Index++) {\r
82 *Buffer = (CHAR8) Character;\r
83 *(Buffer + 1) = (CHAR8) (Character >> 8);\r
84 Buffer += Increment;\r
85 }\r
86 return Buffer;\r
87}\r
88\r
89/**\r
90 Internal function that convert a decimal number to a string in Buffer.\r
91\r
92 Print worker function that convert a decimal number to a string in Buffer.\r
93\r
94 @param Buffer Location to place the Unicode or ASCII string of Value.\r
95 @param Value Value to convert to a Decimal or Hexidecimal string in Buffer.\r
96 @param Radix Radix of the value\r
97\r
98 @return Number of characters printed.\r
99\r
100**/\r
101UINTN\r
e1f414b6 102BasePrintLibValueToString (\r
103 IN OUT CHAR8 *Buffer,\r
104 IN INT64 Value,\r
105 IN UINTN Radix\r
106 )\r
107{\r
108 UINTN Digits;\r
109 UINT32 Remainder;\r
110\r
111 //\r
112 // Loop to convert one digit at a time in reverse order\r
113 //\r
114 *(Buffer++) = 0;\r
115 Digits = 0;\r
116 do {\r
117 Value = (INT64)DivU64x32Remainder ((UINT64)Value, (UINT32)Radix, &Remainder);\r
118 *(Buffer++) = mHexStr[Remainder];\r
119 Digits++;\r
120 } while (Value != 0);\r
eceb3a4c
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121\r
122 //\r
123 // the length of Buffer string converted from Value\r
124 //\r
e1f414b6 125 return Digits;\r
126}\r
127\r
128/**\r
129 Internal function that converts a decimal value to a Null-terminated string.\r
130 \r
131 Converts the decimal number specified by Value to a Null-terminated \r
132 string specified by Buffer containing at most Width characters.\r
133 If Width is 0 then a width of MAXIMUM_VALUE_CHARACTERS is assumed.\r
134 The number of characters in Buffer is returned not including the Null-terminator.\r
135 If the conversion contains more than Width characters, then only the first\r
136 Width characters are returned, and the total number of characters \r
137 required to perform the conversion is returned.\r
138 Additional conversion parameters are specified in Flags. \r
139 The Flags bit LEFT_JUSTIFY is always ignored.\r
140 All conversions are left justified in Buffer.\r
141 If Width is 0, PREFIX_ZERO is ignored in Flags.\r
142 If COMMA_TYPE is set in Flags, then PREFIX_ZERO is ignored in Flags, and commas\r
143 are inserted every 3rd digit starting from the right.\r
144 If HEX_RADIX is set in Flags, then the output buffer will be formatted in hexadecimal format.\r
145 If Value is < 0 and HEX_RADIX is not set in Flags, then the fist character in Buffer is a '-'.\r
146 If PREFIX_ZERO is set in Flags and PREFIX_ZERO is not being ignored, \r
147 then Buffer is padded with '0' characters so the combination of the optional '-' \r
148 sign character, '0' characters, digit characters for Value, and the Null-terminator\r
149 add up to Width characters.\r
150 If both COMMA_TYPE and HEX_RADIX are set in Flags, then ASSERT().\r
151\r
152 If Buffer is NULL, then ASSERT().\r
153 If unsupported bits are set in Flags, then ASSERT().\r
154 If Width >= MAXIMUM_VALUE_CHARACTERS, then ASSERT()\r
155\r
156 @param Buffer Pointer to the output buffer for the produced Null-terminated\r
157 string.\r
158 @param Flags The bitmask of flags that specify left justification, zero pad,\r
159 and commas.\r
160 @param Value The 64-bit signed value to convert to a string.\r
161 @param Width The maximum number of characters to place in Buffer, not including\r
162 the Null-terminator.\r
163 @param Increment Character increment in Buffer.\r
164 \r
165 @return The number of characters in Buffer not including the Null-terminator.\r
166\r
167**/\r
168UINTN\r
169BasePrintLibConvertValueToString (\r
170 IN OUT CHAR8 *Buffer,\r
171 IN UINTN Flags,\r
172 IN INT64 Value,\r
173 IN UINTN Width,\r
174 IN UINTN Increment\r
175 )\r
176{\r
177 CHAR8 *OriginalBuffer;\r
178 CHAR8 *EndBuffer;\r
179 CHAR8 ValueBuffer[MAXIMUM_VALUE_CHARACTERS];\r
180 UINTN Count;\r
181 UINTN Digits;\r
182 UINTN Index;\r
183 UINTN Radix;\r
184\r
eceb3a4c
LG
185 //\r
186 // Make sure Buffer is not NULL and Width < MAXIMUM\r
187 //\r
e1f414b6 188 ASSERT (Buffer != NULL);\r
189 ASSERT (Width < MAXIMUM_VALUE_CHARACTERS);\r
190 //\r
191 // Make sure Flags can only contain supported bits.\r
192 //\r
193 ASSERT ((Flags & ~(LEFT_JUSTIFY | COMMA_TYPE | PREFIX_ZERO | RADIX_HEX)) == 0);\r
194\r
195 //\r
196 // If both COMMA_TYPE and HEX_RADIX are set, then ASSERT ()\r
197 //\r
198 ASSERT (((Flags & COMMA_TYPE) != 0 && (Flags & RADIX_HEX) != 0) == FALSE);\r
199\r
200 OriginalBuffer = Buffer;\r
eceb3a4c
LG
201 \r
202 //\r
203 // Width is 0 or COMMA_TYPE is set, PREFIX_ZERO is ignored.\r
204 //\r
e1f414b6 205 if (Width == 0 || (Flags & COMMA_TYPE) != 0) {\r
206 Flags &= (~PREFIX_ZERO);\r
207 }\r
eceb3a4c
LG
208 //\r
209 // If Width is 0 then a width of MAXIMUM_VALUE_CHARACTERS is assumed.\r
210 //\r
e1f414b6 211 if (Width == 0) {\r
212 Width = MAXIMUM_VALUE_CHARACTERS - 1;\r
213 }\r
214 //\r
215 // Set the tag for the end of the input Buffer.\r
216 //\r
217 EndBuffer = Buffer + Width * Increment;\r
eceb3a4c
LG
218 \r
219 //\r
220 // Convert decimal negative\r
221 //\r
e1f414b6 222 if ((Value < 0) && ((Flags & RADIX_HEX) == 0)) {\r
223 Value = -Value;\r
224 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, 1, '-', Increment);\r
225 Width--;\r
226 }\r
eceb3a4c
LG
227 \r
228 //\r
229 // Count the length of the value string.\r
230 //\r
e1f414b6 231 Radix = ((Flags & RADIX_HEX) == 0)? 10 : 16;\r
232 Count = BasePrintLibValueToString (ValueBuffer, Value, Radix);\r
eceb3a4c
LG
233 \r
234 //\r
235 // Append Zero\r
236 //\r
e1f414b6 237 if ((Flags & PREFIX_ZERO) != 0) {\r
238 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, Width - Count, '0', Increment);\r
239 }\r
eceb3a4c
LG
240 \r
241 //\r
242 // Print Comma type for every 3 characters\r
243 //\r
e1f414b6 244 Digits = Count % 3;\r
245 if (Digits != 0) {\r
246 Digits = 3 - Digits;\r
247 }\r
248 for (Index = 0; Index < Count; Index++) {\r
249 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, 1, ValueBuffer[Count - Index], Increment);\r
250 if ((Flags & COMMA_TYPE) != 0) {\r
251 Digits++;\r
252 if (Digits == 3) {\r
253 Digits = 0;\r
254 if ((Index + 1) < Count) {\r
255 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, 1, ',', Increment);\r
256 }\r
257 }\r
258 }\r
259 }\r
eceb3a4c
LG
260 \r
261 //\r
262 // Print Null-terminator\r
263 //\r
e1f414b6 264 BasePrintLibFillBuffer (Buffer, EndBuffer + Increment, 1, 0, Increment);\r
265\r
266 return ((Buffer - OriginalBuffer) / Increment);\r
267}\r
268\r
e389c39b 269/**\r
270 Worker function that produces a Null-terminated string in an output buffer \r
271 based on a Null-terminated format string and a VA_LIST argument list.\r
272\r
273 VSPrint function to process format and place the results in Buffer. Since a \r
274 VA_LIST is used this rountine allows the nesting of Vararg routines. Thus \r
275 this is the main print working routine.\r
276\r
277 @param Buffer Character buffer to print the results of the parsing\r
278 of Format into.\r
279 @param BufferSize Maximum number of characters to put into buffer.\r
280 @param Flags Intial flags value.\r
281 Can only have FORMAT_UNICODE and OUTPUT_UNICODE set.\r
282 @param Format Null-terminated format string.\r
283 @param Marker Vararg list consumed by processing Format.\r
284\r
285 @return Number of characters printed not including the Null-terminator.\r
286\r
287**/\r
288UINTN\r
289BasePrintLibVSPrint (\r
290 OUT CHAR8 *Buffer,\r
291 IN UINTN BufferSize,\r
292 IN UINTN Flags,\r
293 IN CONST CHAR8 *Format,\r
294 IN VA_LIST Marker\r
295 )\r
296{\r
297 CHAR8 *OriginalBuffer;\r
298 CHAR8 *EndBuffer;\r
299 CHAR8 ValueBuffer[MAXIMUM_VALUE_CHARACTERS];\r
300 UINTN BytesPerOutputCharacter;\r
301 UINTN BytesPerFormatCharacter;\r
302 UINTN FormatMask;\r
303 UINTN FormatCharacter;\r
304 UINTN Width;\r
305 UINTN Precision;\r
306 INT64 Value;\r
307 CONST CHAR8 *ArgumentString;\r
308 UINTN Character;\r
309 GUID *TmpGuid;\r
310 TIME *TmpTime;\r
311 UINTN Count;\r
312 UINTN ArgumentMask;\r
313 INTN BytesPerArgumentCharacter;\r
314 UINTN ArgumentCharacter;\r
315 BOOLEAN Done;\r
316 UINTN Index;\r
317 CHAR8 Prefix;\r
318 BOOLEAN ZeroPad;\r
319 BOOLEAN Comma;\r
320 UINTN Digits;\r
321 UINTN Radix;\r
322 RETURN_STATUS Status;\r
323\r
324 if (BufferSize == 0) {\r
325 return 0;\r
326 }\r
327 ASSERT (Buffer != NULL);\r
328\r
329 if ((Flags & OUTPUT_UNICODE) != 0) {\r
330 BytesPerOutputCharacter = 2;\r
331 } else {\r
332 BytesPerOutputCharacter = 1;\r
333 }\r
334\r
335 //\r
336 // Reserve space for the Null terminator.\r
337 //\r
338 BufferSize--;\r
339 OriginalBuffer = Buffer;\r
340 //\r
341 // Set the tag for the end of the input Buffer.\r
342 //\r
343 EndBuffer = Buffer + BufferSize * BytesPerOutputCharacter;\r
344\r
345 if ((Flags & FORMAT_UNICODE) != 0) {\r
346 //\r
347 // Make sure format string cannot contain more than PcdMaximumUnicodeStringLength\r
348 // Unicode characters if PcdMaximumUnicodeStringLength is not zero. \r
349 //\r
350 ASSERT (StrSize ((CHAR16 *) Format) != 0);\r
351 BytesPerFormatCharacter = 2;\r
352 FormatMask = 0xffff;\r
353 } else {\r
354 //\r
355 // Make sure format string cannot contain more than PcdMaximumAsciiStringLength\r
356 // Ascii characters if PcdMaximumAsciiStringLength is not zero. \r
357 //\r
358 ASSERT (AsciiStrSize (Format) != 0);\r
359 BytesPerFormatCharacter = 1;\r
360 FormatMask = 0xff;\r
361 }\r
362\r
363\r
364\r
365 //\r
366 // Get the first character from the format string\r
367 //\r
368 FormatCharacter = ((*Format & 0xff) | (*(Format + 1) << 8)) & FormatMask;\r
369\r
370 //\r
371 // Loop until the end of the format string is reached or the output buffer is full\r
372 //\r
373 while (FormatCharacter != 0 && Buffer < EndBuffer) {\r
374 //\r
375 // Clear all the flag bits except those that may have been passed in\r
376 //\r
377 Flags &= (OUTPUT_UNICODE | FORMAT_UNICODE);\r
378\r
379 //\r
380 // Set the default width to zero, and the default precision to 1\r
381 //\r
382 Width = 0;\r
383 Precision = 1;\r
384 Prefix = 0;\r
385 Comma = FALSE;\r
386 ZeroPad = FALSE;\r
387 Count = 0;\r
388 Digits = 0;\r
389\r
390 switch (FormatCharacter) {\r
391 case '%':\r
392 //\r
393 // Parse Flags and Width\r
394 //\r
395 for (Done = FALSE; !Done; ) {\r
396 Format += BytesPerFormatCharacter;\r
397 FormatCharacter = ((*Format & 0xff) | (*(Format + 1) << 8)) & FormatMask;\r
398 switch (FormatCharacter) {\r
399 case '.': \r
400 Flags |= PRECISION; \r
401 break;\r
402 case '-': \r
403 Flags |= LEFT_JUSTIFY; \r
404 break;\r
405 case '+': \r
406 Flags |= PREFIX_SIGN; \r
407 break;\r
408 case ' ': \r
409 Flags |= PREFIX_BLANK; \r
410 break;\r
411 case ',': \r
412 Flags |= COMMA_TYPE; \r
413 break;\r
414 case 'L':\r
415 case 'l': \r
416 Flags |= LONG_TYPE; \r
417 break;\r
418 case '*':\r
419 if ((Flags & PRECISION) == 0) {\r
420 Flags |= PAD_TO_WIDTH;\r
421 Width = VA_ARG (Marker, UINTN);\r
422 } else {\r
423 Precision = VA_ARG (Marker, UINTN);\r
424 }\r
425 break;\r
426 case '0':\r
427 if ((Flags & PRECISION) == 0) {\r
428 Flags |= PREFIX_ZERO;\r
429 }\r
430 case '1':\r
431 case '2':\r
432 case '3':\r
433 case '4':\r
434 case '5':\r
435 case '6':\r
436 case '7':\r
437 case '8':\r
438 case '9':\r
439 for (Count = 0; ((FormatCharacter >= '0') && (FormatCharacter <= '9')); ){\r
440 Count = (Count * 10) + FormatCharacter - '0';\r
441 Format += BytesPerFormatCharacter;\r
442 FormatCharacter = ((*Format & 0xff) | (*(Format + 1) << 8)) & FormatMask;\r
443 }\r
444 Format -= BytesPerFormatCharacter;\r
445 if ((Flags & PRECISION) == 0) {\r
446 Flags |= PAD_TO_WIDTH;\r
447 Width = Count;\r
448 } else {\r
449 Precision = Count;\r
450 }\r
451 break;\r
452 \r
453 case '\0':\r
454 //\r
455 // Make no output if Format string terminates unexpectedly when\r
456 // looking up for flag, width, precision and type. \r
457 //\r
458 Format -= BytesPerFormatCharacter;\r
459 Precision = 0;\r
460 //\r
461 // break skipped on purpose.\r
462 //\r
463 default:\r
464 Done = TRUE;\r
465 break;\r
466 }\r
467 } \r
468\r
469 //\r
470 // Handle each argument type\r
471 //\r
472 switch (FormatCharacter) {\r
473 case 'p':\r
474 //\r
475 // Flag space, +, 0, L & l are invalid for type p.\r
476 //\r
477 Flags &= ~(PREFIX_BLANK | PREFIX_SIGN | PREFIX_ZERO | LONG_TYPE);\r
478 if (sizeof (VOID *) > 4) {\r
479 Flags |= LONG_TYPE;\r
480 }\r
481 case 'X':\r
482 Flags |= PREFIX_ZERO;\r
483 //\r
484 // break skipped on purpose\r
485 //\r
486 case 'x':\r
487 Flags |= RADIX_HEX;\r
488 //\r
489 // break skipped on purpose\r
490 //\r
491 case 'd':\r
492 if ((Flags & LONG_TYPE) == 0) {\r
493 Value = (VA_ARG (Marker, int));\r
494 } else {\r
495 Value = VA_ARG (Marker, INT64);\r
496 }\r
497 if ((Flags & PREFIX_BLANK) != 0) {\r
498 Prefix = ' ';\r
499 }\r
500 if ((Flags & PREFIX_SIGN) != 0) {\r
501 Prefix = '+';\r
502 }\r
503 if ((Flags & COMMA_TYPE) != 0) {\r
504 Comma = TRUE;\r
505 }\r
506 if ((Flags & RADIX_HEX) == 0) {\r
507 Radix = 10;\r
508 if (Comma) {\r
509 Flags &= (~PREFIX_ZERO);\r
510 Precision = 1;\r
511 }\r
512 if (Value < 0) {\r
513 Flags |= PREFIX_SIGN;\r
514 Prefix = '-';\r
515 Value = -Value;\r
516 }\r
517 } else {\r
518 Radix = 16;\r
519 Comma = FALSE;\r
520 if ((Flags & LONG_TYPE) == 0 && Value < 0) {\r
521 Value = (unsigned int)Value;\r
522 }\r
523 }\r
524 //\r
525 // Convert Value to a reversed string\r
526 //\r
527 Count = BasePrintLibValueToString (ValueBuffer, Value, Radix);\r
528 if (Value == 0 && Precision == 0) {\r
529 Count = 0;\r
530 }\r
531 ArgumentString = (CHAR8 *)ValueBuffer + Count;\r
532 \r
533 Digits = Count % 3;\r
534 if (Digits != 0) {\r
535 Digits = 3 - Digits;\r
536 }\r
537 if (Comma && Count != 0) {\r
538 Count += ((Count - 1) / 3);\r
539 }\r
540 if (Prefix != 0) {\r
541 Count++;\r
542 Precision++;\r
543 }\r
544 Flags |= ARGUMENT_REVERSED;\r
545 ZeroPad = TRUE;\r
546 if ((Flags & PREFIX_ZERO) != 0) {\r
547 if ((Flags & LEFT_JUSTIFY) == 0) {\r
548 if ((Flags & PAD_TO_WIDTH) != 0) {\r
549 if ((Flags & PRECISION) == 0) {\r
550 Precision = Width;\r
551 }\r
552 }\r
553 }\r
554 }\r
555 break;\r
556\r
557 case 's':\r
558 case 'S':\r
559 Flags |= ARGUMENT_UNICODE;\r
560 //\r
561 // break skipped on purpose\r
562 //\r
563 case 'a':\r
564 ArgumentString = (CHAR8 *)VA_ARG (Marker, CHAR8 *);\r
565 if (ArgumentString == NULL) {\r
566 Flags &= (~ARGUMENT_UNICODE);\r
567 ArgumentString = "<null string>";\r
568 }\r
569 //\r
570 // Set the default precision for string to be zero if not specified.\r
571 //\r
572 if ((Flags & PRECISION) == 0) {\r
573 Precision = 0;\r
574 }\r
575 break;\r
576\r
577 case 'c':\r
578 Character = VA_ARG (Marker, UINTN) & 0xffff;\r
579 ArgumentString = (CHAR8 *)&Character;\r
580 Flags |= ARGUMENT_UNICODE;\r
581 break;\r
582\r
583 case 'g':\r
584 TmpGuid = VA_ARG (Marker, GUID *);\r
585 if (TmpGuid == NULL) {\r
586 ArgumentString = "<null guid>";\r
587 } else {\r
588 BasePrintLibSPrint (\r
589 ValueBuffer,\r
590 MAXIMUM_VALUE_CHARACTERS, \r
591 0,\r
592 "%08x-%04x-%04x-%02x%02x-%02x%02x%02x%02x%02x%02x",\r
593 TmpGuid->Data1,\r
594 TmpGuid->Data2,\r
595 TmpGuid->Data3,\r
596 TmpGuid->Data4[0],\r
597 TmpGuid->Data4[1],\r
598 TmpGuid->Data4[2],\r
599 TmpGuid->Data4[3],\r
600 TmpGuid->Data4[4],\r
601 TmpGuid->Data4[5],\r
602 TmpGuid->Data4[6],\r
603 TmpGuid->Data4[7]\r
604 );\r
605 ArgumentString = ValueBuffer;\r
606 }\r
607 break;\r
608\r
609 case 't':\r
610 TmpTime = VA_ARG (Marker, TIME *); \r
611 if (TmpTime == NULL) {\r
612 ArgumentString = "<null time>";\r
613 } else {\r
614 BasePrintLibSPrint (\r
615 ValueBuffer,\r
616 MAXIMUM_VALUE_CHARACTERS,\r
617 0,\r
618 "%02d/%02d/%04d %02d:%02d",\r
619 TmpTime->Month,\r
620 TmpTime->Day,\r
621 TmpTime->Year,\r
622 TmpTime->Hour,\r
623 TmpTime->Minute\r
624 );\r
625 ArgumentString = ValueBuffer;\r
626 }\r
627 break;\r
628\r
629 case 'r':\r
630 Status = VA_ARG (Marker, RETURN_STATUS);\r
631 ArgumentString = ValueBuffer;\r
632 if (RETURN_ERROR (Status)) {\r
633 //\r
634 // Clear error bit\r
635 //\r
636 Index = Status & ~MAX_BIT;\r
637 if (Index > 0 && Index <= ERROR_STATUS_NUMBER) {\r
638 ArgumentString = mStatusString [Index + WARNING_STATUS_NUMBER];\r
639 }\r
640 } else {\r
641 Index = Status;\r
642 if (Index <= WARNING_STATUS_NUMBER) {\r
643 ArgumentString = mStatusString [Index];\r
644 }\r
645 }\r
646 if (ArgumentString == ValueBuffer) {\r
647 BasePrintLibSPrint ((CHAR8 *) ValueBuffer, MAXIMUM_VALUE_CHARACTERS, 0, "%08X", Status);\r
648 }\r
649 break;\r
650\r
651 case '\n':\r
652 ArgumentString = "\n\r";\r
653 break;\r
654\r
655 case '%':\r
656 default:\r
657 //\r
658 // if the type is '%' or unknown, then print it to the screen\r
659 //\r
660 ArgumentString = (CHAR8 *)&FormatCharacter;\r
661 Flags |= ARGUMENT_UNICODE;\r
662 break;\r
663 }\r
664 break;\r
665 \r
666 case '\n':\r
667 ArgumentString = "\n\r";\r
668 break;\r
669\r
670 default:\r
671 ArgumentString = (CHAR8 *)&FormatCharacter;\r
672 Flags |= ARGUMENT_UNICODE;\r
673 break;\r
674 }\r
675\r
676 //\r
677 // Retrieve the ArgumentString attriubutes\r
678 //\r
679 if ((Flags & ARGUMENT_UNICODE) != 0) {\r
680 ArgumentMask = 0xffff;\r
681 BytesPerArgumentCharacter = 2;\r
682 } else {\r
683 ArgumentMask = 0xff;\r
684 BytesPerArgumentCharacter = 1;\r
685 }\r
686 if ((Flags & ARGUMENT_REVERSED) != 0) {\r
687 BytesPerArgumentCharacter = -BytesPerArgumentCharacter;\r
688 } else {\r
689 //\r
690 // Compute the number of characters in ArgumentString and store it in Count\r
691 // ArgumentString is either null-terminated, or it contains Precision characters\r
692 //\r
693 for (Count = 0; Count < Precision || ((Flags & PRECISION) == 0); Count++) {\r
694 ArgumentCharacter = ((ArgumentString[Count * BytesPerArgumentCharacter] & 0xff) | ((ArgumentString[Count * BytesPerArgumentCharacter + 1]) << 8)) & ArgumentMask;\r
695 if (ArgumentCharacter == 0) {\r
696 break;\r
697 }\r
698 }\r
699 }\r
700\r
701 if (Precision < Count) {\r
702 Precision = Count;\r
703 }\r
704\r
705 //\r
706 // Pad before the string\r
707 //\r
708 if ((Flags & (PAD_TO_WIDTH | LEFT_JUSTIFY)) == (PAD_TO_WIDTH)) {\r
709 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, Width - Precision, ' ', BytesPerOutputCharacter);\r
710 }\r
711\r
712 if (ZeroPad) {\r
713 if (Prefix != 0) {\r
714 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, 1, Prefix, BytesPerOutputCharacter);\r
715 }\r
716 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, Precision - Count, '0', BytesPerOutputCharacter);\r
717 } else {\r
718 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, Precision - Count, ' ', BytesPerOutputCharacter);\r
719 if (Prefix != 0) {\r
720 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, 1, Prefix, BytesPerOutputCharacter);\r
721 }\r
722 }\r
723\r
724 //\r
725 // Output the Prefix character if it is present\r
726 //\r
727 Index = 0;\r
728 if (Prefix != 0) {\r
729 Index++;\r
730 }\r
731\r
732 //\r
733 // Copy the string into the output buffer performing the required type conversions\r
734 //\r
735 while (Index < Count) {\r
736 ArgumentCharacter = ((*ArgumentString & 0xff) | (*(ArgumentString + 1) << 8)) & ArgumentMask;\r
737\r
738 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, 1, ArgumentCharacter, BytesPerOutputCharacter);\r
739 ArgumentString += BytesPerArgumentCharacter;\r
740 Index++;\r
741 if (Comma) {\r
742 Digits++;\r
743 if (Digits == 3) {\r
744 Digits = 0;\r
745 Index++;\r
746 if (Index < Count) {\r
747 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, 1, ',', BytesPerOutputCharacter);\r
748 }\r
749 }\r
750 }\r
751 }\r
752\r
753 //\r
754 // Pad after the string\r
755 //\r
756 if ((Flags & (PAD_TO_WIDTH | LEFT_JUSTIFY)) == (PAD_TO_WIDTH | LEFT_JUSTIFY)) {\r
757 Buffer = BasePrintLibFillBuffer (Buffer, EndBuffer, Width - Precision, ' ', BytesPerOutputCharacter);\r
758 }\r
759\r
760 //\r
761 // Get the next character from the format string\r
762 //\r
763 Format += BytesPerFormatCharacter;\r
764\r
765 //\r
766 // Get the next character from the format string\r
767 //\r
768 FormatCharacter = ((*Format & 0xff) | (*(Format + 1) << 8)) & FormatMask;\r
769 }\r
770\r
771 //\r
772 // Null terminate the Unicode or ASCII string\r
773 //\r
774 BasePrintLibFillBuffer (Buffer, EndBuffer + BytesPerOutputCharacter, 1, 0, BytesPerOutputCharacter);\r
775 //\r
776 // Make sure output buffer cannot contain more than PcdMaximumUnicodeStringLength\r
777 // Unicode characters if PcdMaximumUnicodeStringLength is not zero. \r
778 //\r
779 ASSERT ((((Flags & OUTPUT_UNICODE) == 0)) || (StrSize ((CHAR16 *) OriginalBuffer) != 0));\r
780 //\r
781 // Make sure output buffer cannot contain more than PcdMaximumAsciiStringLength\r
782 // ASCII characters if PcdMaximumAsciiStringLength is not zero. \r
783 //\r
784 ASSERT ((((Flags & OUTPUT_UNICODE) != 0)) || (AsciiStrSize (OriginalBuffer) != 0));\r
785\r
786 return ((Buffer - OriginalBuffer) / BytesPerOutputCharacter);\r
787}\r
788\r
789/**\r
790 Worker function that produces a Null-terminated string in an output buffer \r
791 based on a Null-terminated format string and variable argument list.\r
792\r
793 VSPrint function to process format and place the results in Buffer. Since a \r
794 VA_LIST is used this rountine allows the nesting of Vararg routines. Thus \r
795 this is the main print working routine.\r
796\r
797 @param StartOfBuffer Character buffer to print the results of the parsing\r
798 of Format into.\r
799 @param BufferSize Maximum number of characters to put into buffer.\r
800 Zero means no limit.\r
801 @param Flags Intial flags value.\r
802 Can only have FORMAT_UNICODE and OUTPUT_UNICODE set\r
803 @param FormatString Null-terminated format string.\r
804 @param ... The variable argument list.\r
805\r
806 @return Number of characters printed not including the Null-terminator.\r
807\r
808**/\r
809UINTN\r
810BasePrintLibSPrint (\r
811 OUT CHAR8 *StartOfBuffer,\r
812 IN UINTN BufferSize,\r
813 IN UINTN Flags,\r
814 IN CONST CHAR8 *FormatString,\r
815 ...\r
816 )\r
817{\r
818 VA_LIST Marker;\r
819\r
820 VA_START (Marker, FormatString);\r
821 return BasePrintLibVSPrint (StartOfBuffer, BufferSize, Flags, FormatString, Marker);\r
822}\r