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1/** @file\r
2 This library is used to share code between UEFI network stack modules.\r
3 It provides the helper routines to parse the HTTP message byte stream.\r
4\r
27fd61af 5Copyright (c) 2015 - 2017, Intel Corporation. All rights reserved.<BR>\r
558b99a6 6(C) Copyright 2016 Hewlett Packard Enterprise Development LP<BR>\r
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7This program and the accompanying materials\r
8are licensed and made available under the terms and conditions of the BSD License\r
9which accompanies this distribution. The full text of the license may be found at<BR>\r
10http://opensource.org/licenses/bsd-license.php\r
11\r
12THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
13WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
14\r
15**/\r
16\r
558b99a6 17#include "DxeHttpLib.h"\r
f9a14916 18\r
f9a14916 19\r
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20\r
21/**\r
22 Decode a percent-encoded URI component to the ASCII character.\r
23 \r
24 Decode the input component in Buffer according to RFC 3986. The caller is responsible to make \r
25 sure ResultBuffer points to a buffer with size equal or greater than ((AsciiStrSize (Buffer))\r
26 in bytes. \r
27\r
28 @param[in] Buffer The pointer to a percent-encoded URI component.\r
29 @param[in] BufferLength Length of Buffer in bytes.\r
30 @param[out] ResultBuffer Point to the buffer to store the decode result.\r
31 @param[out] ResultLength Length of decoded string in ResultBuffer in bytes.\r
32\r
33 @retval EFI_SUCCESS Successfully decoded the URI.\r
34 @retval EFI_INVALID_PARAMETER Buffer is not a valid percent-encoded string.\r
35 \r
36**/\r
37EFI_STATUS\r
38EFIAPI\r
39UriPercentDecode (\r
40 IN CHAR8 *Buffer,\r
41 IN UINT32 BufferLength,\r
42 OUT CHAR8 *ResultBuffer,\r
43 OUT UINT32 *ResultLength\r
44 )\r
45{\r
46 UINTN Index;\r
47 UINTN Offset;\r
48 CHAR8 HexStr[3];\r
49\r
50 if (Buffer == NULL || BufferLength == 0 || ResultBuffer == NULL) {\r
51 return EFI_INVALID_PARAMETER;\r
52 }\r
53 \r
54 Index = 0;\r
55 Offset = 0;\r
56 HexStr[2] = '\0';\r
57 while (Index < BufferLength) {\r
58 if (Buffer[Index] == '%') {\r
b2a73b5b 59 if (Index + 1 >= BufferLength || Index + 2 >= BufferLength || !NET_IS_HEX_CHAR (Buffer[Index+1]) || !NET_IS_HEX_CHAR (Buffer[Index+2])) {\r
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60 return EFI_INVALID_PARAMETER;\r
61 }\r
62 HexStr[0] = Buffer[Index+1];\r
63 HexStr[1] = Buffer[Index+2];\r
64 ResultBuffer[Offset] = (CHAR8) AsciiStrHexToUintn (HexStr);\r
65 Index += 3;\r
66 } else {\r
67 ResultBuffer[Offset] = Buffer[Index];\r
68 Index++;\r
69 }\r
70 Offset++;\r
71 }\r
72\r
73 *ResultLength = (UINT32) Offset;\r
74 \r
75 return EFI_SUCCESS;\r
76}\r
77\r
78/**\r
8a1c4a8c 79 This function return the updated state according to the input state and next character of\r
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80 the authority.\r
81\r
82 @param[in] Char Next character.\r
83 @param[in] State Current value of the parser state machine.\r
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84 @param[in] IsRightBracket TRUE if there is an sign ']' in the authority component and \r
85 indicates the next part is ':' before Port. \r
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86\r
87 @return Updated state value.\r
88**/\r
89HTTP_URL_PARSE_STATE\r
90NetHttpParseAuthorityChar (\r
91 IN CHAR8 Char,\r
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92 IN HTTP_URL_PARSE_STATE State,\r
93 IN BOOLEAN *IsRightBracket\r
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94 )\r
95{\r
96\r
97 //\r
98 // RFC 3986:\r
99 // The authority component is preceded by a double slash ("//") and is\r
100 // terminated by the next slash ("/"), question mark ("?"), or number\r
101 // sign ("#") character, or by the end of the URI.\r
102 //\r
103 if (Char == ' ' || Char == '\r' || Char == '\n') {\r
104 return UrlParserStateMax;\r
105 }\r
106\r
107 //\r
108 // authority = [ userinfo "@" ] host [ ":" port ]\r
109 //\r
110 switch (State) {\r
111 case UrlParserUserInfo:\r
112 if (Char == '@') {\r
113 return UrlParserHostStart;\r
114 }\r
115 break;\r
116\r
117 case UrlParserHost:\r
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118 case UrlParserHostStart: \r
119 if (Char == '[') {\r
120 return UrlParserHostIpv6;\r
121 }\r
122 \r
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123 if (Char == ':') {\r
124 return UrlParserPortStart;\r
125 }\r
e91cc29d 126 \r
f9a14916 127 return UrlParserHost;\r
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128 \r
129 case UrlParserHostIpv6: \r
130 if (Char == ']') {\r
131 *IsRightBracket = TRUE;\r
132 }\r
133 \r
b8b65a03 134 if (Char == ':' && *IsRightBracket) {\r
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135 return UrlParserPortStart;\r
136 }\r
137 return UrlParserHostIpv6;\r
138 \r
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139 case UrlParserPort:\r
140 case UrlParserPortStart:\r
141 return UrlParserPort;\r
142\r
143 default:\r
144 break;\r
145 }\r
146\r
147 return State;\r
148}\r
149\r
150/**\r
151 This function parse the authority component of the input URL and update the parser.\r
152\r
153 @param[in] Url The pointer to a HTTP URL string.\r
154 @param[in] FoundAt TRUE if there is an at sign ('@') in the authority component.\r
155 @param[in, out] UrlParser Pointer to the buffer of the parse result.\r
156\r
157 @retval EFI_SUCCESS Successfully parse the authority.\r
158 @retval Other Error happened.\r
159\r
160**/\r
161EFI_STATUS\r
162NetHttpParseAuthority (\r
163 IN CHAR8 *Url,\r
164 IN BOOLEAN FoundAt,\r
165 IN OUT HTTP_URL_PARSER *UrlParser\r
166 )\r
167{\r
168 CHAR8 *Char;\r
169 CHAR8 *Authority;\r
170 UINT32 Length;\r
171 HTTP_URL_PARSE_STATE State;\r
172 UINT32 Field;\r
173 UINT32 OldField;\r
e91cc29d 174 BOOLEAN IsrightBracket;\r
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175 \r
176 ASSERT ((UrlParser->FieldBitMap & BIT (HTTP_URI_FIELD_AUTHORITY)) != 0);\r
177\r
178 //\r
179 // authority = [ userinfo "@" ] host [ ":" port ]\r
180 //\r
181 if (FoundAt) {\r
182 State = UrlParserUserInfo;\r
183 } else {\r
184 State = UrlParserHost;\r
185 }\r
186\r
e91cc29d 187 IsrightBracket = FALSE;\r
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188 Field = HTTP_URI_FIELD_MAX;\r
189 OldField = Field;\r
190 Authority = Url + UrlParser->FieldData[HTTP_URI_FIELD_AUTHORITY].Offset;\r
191 Length = UrlParser->FieldData[HTTP_URI_FIELD_AUTHORITY].Length;\r
192 for (Char = Authority; Char < Authority + Length; Char++) {\r
e91cc29d 193 State = NetHttpParseAuthorityChar (*Char, State, &IsrightBracket);\r
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194 switch (State) {\r
195 case UrlParserStateMax:\r
196 return EFI_INVALID_PARAMETER;\r
197\r
198 case UrlParserHostStart:\r
199 case UrlParserPortStart:\r
200 continue;\r
201\r
202 case UrlParserUserInfo:\r
203 Field = HTTP_URI_FIELD_USERINFO;\r
204 break;\r
205 \r
206 case UrlParserHost:\r
207 Field = HTTP_URI_FIELD_HOST;\r
208 break;\r
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209\r
210 case UrlParserHostIpv6:\r
211 Field = HTTP_URI_FIELD_HOST;\r
212 break;\r
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213 \r
214 case UrlParserPort:\r
215 Field = HTTP_URI_FIELD_PORT;\r
216 break;\r
217\r
218 default:\r
219 ASSERT (FALSE);\r
220 }\r
221\r
222 //\r
223 // Field not changed, count the length.\r
224 //\r
225 ASSERT (Field < HTTP_URI_FIELD_MAX);\r
226 if (Field == OldField) {\r
227 UrlParser->FieldData[Field].Length++;\r
228 continue;\r
229 }\r
230\r
231 //\r
232 // New field start\r
233 //\r
234 UrlParser->FieldBitMap |= BIT (Field);\r
235 UrlParser->FieldData[Field].Offset = (UINT32) (Char - Url);\r
236 UrlParser->FieldData[Field].Length = 1;\r
237 OldField = Field;\r
238 }\r
239\r
240 return EFI_SUCCESS;\r
241}\r
242\r
243/**\r
8a1c4a8c 244 This function return the updated state according to the input state and next character of a URL.\r
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245\r
246 @param[in] Char Next character.\r
247 @param[in] State Current value of the parser state machine.\r
248\r
249 @return Updated state value.\r
250\r
251**/\r
252HTTP_URL_PARSE_STATE\r
253NetHttpParseUrlChar (\r
254 IN CHAR8 Char,\r
255 IN HTTP_URL_PARSE_STATE State\r
256 )\r
257{\r
258 if (Char == ' ' || Char == '\r' || Char == '\n') {\r
259 return UrlParserStateMax;\r
260 }\r
261 \r
262 //\r
263 // http_URL = "http:" "//" host [ ":" port ] [ abs_path [ "?" query ]]\r
264 // \r
265 // Request-URI = "*" | absolute-URI | path-absolute | authority\r
266 // \r
267 // absolute-URI = scheme ":" hier-part [ "?" query ]\r
268 // path-absolute = "/" [ segment-nz *( "/" segment ) ]\r
269 // authority = [ userinfo "@" ] host [ ":" port ]\r
270 //\r
271 switch (State) {\r
272 case UrlParserUrlStart:\r
273 if (Char == '*' || Char == '/') {\r
274 return UrlParserPath;\r
275 }\r
276 return UrlParserScheme;\r
277\r
278 case UrlParserScheme:\r
279 if (Char == ':') {\r
280 return UrlParserSchemeColon;\r
281 }\r
282 break;\r
283\r
284 case UrlParserSchemeColon:\r
285 if (Char == '/') {\r
286 return UrlParserSchemeColonSlash;\r
287 }\r
288 break;\r
289\r
290 case UrlParserSchemeColonSlash:\r
291 if (Char == '/') {\r
292 return UrlParserSchemeColonSlashSlash;\r
293 }\r
294 break;\r
295\r
296 case UrlParserAtInAuthority:\r
297 if (Char == '@') {\r
298 return UrlParserStateMax;\r
299 }\r
300\r
301 case UrlParserAuthority:\r
302 case UrlParserSchemeColonSlashSlash:\r
303 if (Char == '@') {\r
304 return UrlParserAtInAuthority;\r
305 }\r
306 if (Char == '/') {\r
307 return UrlParserPath;\r
308 }\r
309 if (Char == '?') {\r
310 return UrlParserQueryStart;\r
311 }\r
312 if (Char == '#') {\r
313 return UrlParserFragmentStart;\r
314 }\r
315 return UrlParserAuthority;\r
316\r
317 case UrlParserPath:\r
318 if (Char == '?') {\r
319 return UrlParserQueryStart;\r
320 }\r
321 if (Char == '#') {\r
322 return UrlParserFragmentStart;\r
323 }\r
324 break;\r
325\r
326 case UrlParserQuery:\r
327 case UrlParserQueryStart:\r
328 if (Char == '#') {\r
329 return UrlParserFragmentStart;\r
330 }\r
331 return UrlParserQuery;\r
332\r
333 case UrlParserFragmentStart:\r
334 return UrlParserFragment;\r
335 \r
336 default:\r
337 break;\r
338 }\r
339\r
340 return State;\r
341}\r
342/**\r
343 Create a URL parser for the input URL string.\r
344\r
345 This function will parse and dereference the input HTTP URL into it components. The original\r
346 content of the URL won't be modified and the result will be returned in UrlParser, which can\r
347 be used in other functions like NetHttpUrlGetHostName().\r
348\r
349 @param[in] Url The pointer to a HTTP URL string.\r
350 @param[in] Length Length of Url in bytes.\r
351 @param[in] IsConnectMethod Whether the Url is used in HTTP CONNECT method or not.\r
352 @param[out] UrlParser Pointer to the returned buffer to store the parse result.\r
353\r
354 @retval EFI_SUCCESS Successfully dereferenced the HTTP URL.\r
355 @retval EFI_INVALID_PARAMETER UrlParser is NULL or Url is not a valid HTTP URL.\r
356 @retval EFI_OUT_OF_RESOURCES Could not allocate needed resources.\r
357\r
358**/\r
359EFI_STATUS\r
360EFIAPI\r
361HttpParseUrl (\r
362 IN CHAR8 *Url,\r
363 IN UINT32 Length,\r
364 IN BOOLEAN IsConnectMethod,\r
365 OUT VOID **UrlParser\r
366 )\r
367{\r
368 HTTP_URL_PARSE_STATE State;\r
369 CHAR8 *Char;\r
370 UINT32 Field;\r
371 UINT32 OldField;\r
372 BOOLEAN FoundAt;\r
373 EFI_STATUS Status;\r
374 HTTP_URL_PARSER *Parser;\r
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375\r
376 Parser = NULL;\r
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377 \r
378 if (Url == NULL || Length == 0 || UrlParser == NULL) {\r
379 return EFI_INVALID_PARAMETER;\r
380 }\r
381\r
382 Parser = AllocateZeroPool (sizeof (HTTP_URL_PARSER));\r
383 if (Parser == NULL) {\r
384 return EFI_OUT_OF_RESOURCES;\r
385 }\r
386 \r
387 if (IsConnectMethod) {\r
388 //\r
389 // According to RFC 2616, the authority form is only used by the CONNECT method.\r
390 //\r
391 State = UrlParserAuthority;\r
392 } else {\r
393 State = UrlParserUrlStart;\r
394 }\r
395\r
396 Field = HTTP_URI_FIELD_MAX;\r
397 OldField = Field;\r
398 FoundAt = FALSE;\r
399 for (Char = Url; Char < Url + Length; Char++) {\r
400 //\r
24648548 401 // Update state machine according to next char.\r
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402 //\r
403 State = NetHttpParseUrlChar (*Char, State);\r
404\r
405 switch (State) {\r
406 case UrlParserStateMax:\r
f5168b84 407 FreePool (Parser);\r
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408 return EFI_INVALID_PARAMETER;\r
409 \r
410 case UrlParserSchemeColon:\r
411 case UrlParserSchemeColonSlash:\r
412 case UrlParserSchemeColonSlashSlash:\r
413 case UrlParserQueryStart:\r
414 case UrlParserFragmentStart:\r
415 //\r
416 // Skip all the delimiting char: "://" "?" "@"\r
417 //\r
418 continue;\r
419 \r
420 case UrlParserScheme:\r
421 Field = HTTP_URI_FIELD_SCHEME;\r
422 break;\r
423\r
424 case UrlParserAtInAuthority:\r
425 FoundAt = TRUE;\r
426 case UrlParserAuthority:\r
427 Field = HTTP_URI_FIELD_AUTHORITY;\r
428 break;\r
429\r
430 case UrlParserPath:\r
431 Field = HTTP_URI_FIELD_PATH;\r
432 break;\r
433\r
434 case UrlParserQuery:\r
435 Field = HTTP_URI_FIELD_QUERY;\r
436 break;\r
437\r
438 case UrlParserFragment:\r
439 Field = HTTP_URI_FIELD_FRAGMENT;\r
440 break;\r
441\r
442 default:\r
443 ASSERT (FALSE);\r
444 }\r
445\r
446 //\r
447 // Field not changed, count the length.\r
448 //\r
449 ASSERT (Field < HTTP_URI_FIELD_MAX);\r
450 if (Field == OldField) {\r
451 Parser->FieldData[Field].Length++;\r
452 continue;\r
453 }\r
454\r
455 //\r
456 // New field start\r
457 //\r
458 Parser->FieldBitMap |= BIT (Field);\r
459 Parser->FieldData[Field].Offset = (UINT32) (Char - Url);\r
460 Parser->FieldData[Field].Length = 1;\r
461 OldField = Field;\r
462 }\r
463\r
464 //\r
465 // If has authority component, continue to parse the username, host and port.\r
466 //\r
467 if ((Parser->FieldBitMap & BIT (HTTP_URI_FIELD_AUTHORITY)) != 0) {\r
468 Status = NetHttpParseAuthority (Url, FoundAt, Parser);\r
469 if (EFI_ERROR (Status)) {\r
f5168b84 470 FreePool (Parser);\r
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471 return Status;\r
472 }\r
473 }\r
474\r
475 *UrlParser = Parser;\r
476 return EFI_SUCCESS; \r
477}\r
478\r
479/**\r
480 Get the Hostname from a HTTP URL.\r
481\r
482 This function will return the HostName according to the Url and previous parse result ,and\r
483 it is the caller's responsibility to free the buffer returned in *HostName.\r
484\r
485 @param[in] Url The pointer to a HTTP URL string.\r
486 @param[in] UrlParser URL Parse result returned by NetHttpParseUrl().\r
487 @param[out] HostName Pointer to a buffer to store the HostName.\r
488\r
489 @retval EFI_SUCCESS Successfully get the required component.\r
490 @retval EFI_INVALID_PARAMETER Uri is NULL or HostName is NULL or UrlParser is invalid.\r
491 @retval EFI_NOT_FOUND No hostName component in the URL.\r
492 @retval EFI_OUT_OF_RESOURCES Could not allocate needed resources.\r
493 \r
494**/\r
495EFI_STATUS\r
496EFIAPI\r
497HttpUrlGetHostName (\r
498 IN CHAR8 *Url,\r
499 IN VOID *UrlParser,\r
500 OUT CHAR8 **HostName\r
501 )\r
502{\r
503 CHAR8 *Name;\r
504 EFI_STATUS Status;\r
505 UINT32 ResultLength;\r
506 HTTP_URL_PARSER *Parser;\r
507\r
508 if (Url == NULL || UrlParser == NULL || HostName == NULL) {\r
509 return EFI_INVALID_PARAMETER;\r
510 }\r
511\r
512 Parser = (HTTP_URL_PARSER*) UrlParser;\r
513\r
514 if ((Parser->FieldBitMap & BIT (HTTP_URI_FIELD_HOST)) == 0) {\r
515 return EFI_NOT_FOUND;\r
516 }\r
517\r
518 Name = AllocatePool (Parser->FieldData[HTTP_URI_FIELD_HOST].Length + 1);\r
519 if (Name == NULL) {\r
520 return EFI_OUT_OF_RESOURCES;\r
521 }\r
522 \r
523 Status = UriPercentDecode (\r
524 Url + Parser->FieldData[HTTP_URI_FIELD_HOST].Offset,\r
525 Parser->FieldData[HTTP_URI_FIELD_HOST].Length,\r
526 Name,\r
527 &ResultLength\r
528 );\r
529 if (EFI_ERROR (Status)) {\r
df642d70 530 FreePool (Name);\r
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531 return Status;\r
532 }\r
533\r
534 Name[ResultLength] = '\0';\r
535 *HostName = Name;\r
536 return EFI_SUCCESS;\r
537}\r
538\r
539\r
540/**\r
541 Get the IPv4 address from a HTTP URL.\r
542\r
543 This function will return the IPv4 address according to the Url and previous parse result.\r
544\r
545 @param[in] Url The pointer to a HTTP URL string.\r
546 @param[in] UrlParser URL Parse result returned by NetHttpParseUrl().\r
547 @param[out] Ip4Address Pointer to a buffer to store the IP address.\r
548\r
549 @retval EFI_SUCCESS Successfully get the required component.\r
550 @retval EFI_INVALID_PARAMETER Uri is NULL or Ip4Address is NULL or UrlParser is invalid.\r
551 @retval EFI_NOT_FOUND No IPv4 address component in the URL.\r
552 @retval EFI_OUT_OF_RESOURCES Could not allocate needed resources.\r
553 \r
554**/\r
555EFI_STATUS\r
556EFIAPI\r
557HttpUrlGetIp4 (\r
558 IN CHAR8 *Url,\r
559 IN VOID *UrlParser,\r
560 OUT EFI_IPv4_ADDRESS *Ip4Address\r
561 )\r
562{\r
563 CHAR8 *Ip4String;\r
564 EFI_STATUS Status;\r
565 UINT32 ResultLength;\r
566 HTTP_URL_PARSER *Parser;\r
567 \r
568 if (Url == NULL || UrlParser == NULL || Ip4Address == NULL) {\r
569 return EFI_INVALID_PARAMETER;\r
570 }\r
571\r
572 Parser = (HTTP_URL_PARSER*) UrlParser;\r
573\r
574 if ((Parser->FieldBitMap & BIT (HTTP_URI_FIELD_HOST)) == 0) {\r
575 return EFI_INVALID_PARAMETER;\r
576 }\r
577\r
578 Ip4String = AllocatePool (Parser->FieldData[HTTP_URI_FIELD_HOST].Length + 1);\r
579 if (Ip4String == NULL) {\r
580 return EFI_OUT_OF_RESOURCES;\r
581 }\r
582 \r
583 Status = UriPercentDecode (\r
584 Url + Parser->FieldData[HTTP_URI_FIELD_HOST].Offset,\r
585 Parser->FieldData[HTTP_URI_FIELD_HOST].Length,\r
586 Ip4String,\r
587 &ResultLength\r
588 );\r
589 if (EFI_ERROR (Status)) {\r
df642d70 590 FreePool (Ip4String);\r
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591 return Status;\r
592 }\r
593\r
594 Ip4String[ResultLength] = '\0';\r
595 Status = NetLibAsciiStrToIp4 (Ip4String, Ip4Address);\r
596 FreePool (Ip4String);\r
597\r
598 return Status;\r
599}\r
600\r
601/**\r
602 Get the IPv6 address from a HTTP URL.\r
603\r
604 This function will return the IPv6 address according to the Url and previous parse result.\r
605\r
606 @param[in] Url The pointer to a HTTP URL string.\r
607 @param[in] UrlParser URL Parse result returned by NetHttpParseUrl().\r
608 @param[out] Ip6Address Pointer to a buffer to store the IP address.\r
609\r
610 @retval EFI_SUCCESS Successfully get the required component.\r
611 @retval EFI_INVALID_PARAMETER Uri is NULL or Ip6Address is NULL or UrlParser is invalid.\r
612 @retval EFI_NOT_FOUND No IPv6 address component in the URL.\r
613 @retval EFI_OUT_OF_RESOURCES Could not allocate needed resources.\r
614 \r
615**/\r
616EFI_STATUS\r
617EFIAPI\r
618HttpUrlGetIp6 (\r
619 IN CHAR8 *Url,\r
620 IN VOID *UrlParser,\r
621 OUT EFI_IPv6_ADDRESS *Ip6Address\r
622 )\r
623{\r
624 CHAR8 *Ip6String;\r
625 CHAR8 *Ptr;\r
626 UINT32 Length;\r
627 EFI_STATUS Status;\r
628 UINT32 ResultLength;\r
629 HTTP_URL_PARSER *Parser;\r
630 \r
631 if (Url == NULL || UrlParser == NULL || Ip6Address == NULL) {\r
632 return EFI_INVALID_PARAMETER;\r
633 }\r
634\r
635 Parser = (HTTP_URL_PARSER*) UrlParser;\r
636\r
637 if ((Parser->FieldBitMap & BIT (HTTP_URI_FIELD_HOST)) == 0) {\r
638 return EFI_INVALID_PARAMETER;\r
639 }\r
640\r
641 //\r
642 // IP-literal = "[" ( IPv6address / IPvFuture ) "]"\r
643 //\r
644 Length = Parser->FieldData[HTTP_URI_FIELD_HOST].Length;\r
645 if (Length < 2) {\r
646 return EFI_INVALID_PARAMETER;\r
647 }\r
648\r
649 Ptr = Url + Parser->FieldData[HTTP_URI_FIELD_HOST].Offset;\r
650 if ((Ptr[0] != '[') || (Ptr[Length - 1] != ']')) {\r
651 return EFI_INVALID_PARAMETER;\r
652 }\r
653\r
654 Ip6String = AllocatePool (Length);\r
655 if (Ip6String == NULL) {\r
656 return EFI_OUT_OF_RESOURCES;\r
657 }\r
658 \r
659 Status = UriPercentDecode (\r
660 Ptr + 1,\r
661 Length - 2,\r
662 Ip6String,\r
663 &ResultLength\r
664 );\r
665 if (EFI_ERROR (Status)) {\r
df642d70 666 FreePool (Ip6String);\r
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667 return Status;\r
668 }\r
669 \r
670 Ip6String[ResultLength] = '\0';\r
671 Status = NetLibAsciiStrToIp6 (Ip6String, Ip6Address);\r
672 FreePool (Ip6String);\r
673\r
674 return Status;\r
675}\r
676\r
677/**\r
678 Get the port number from a HTTP URL.\r
679\r
680 This function will return the port number according to the Url and previous parse result.\r
681\r
682 @param[in] Url The pointer to a HTTP URL string.\r
683 @param[in] UrlParser URL Parse result returned by NetHttpParseUrl().\r
684 @param[out] Port Pointer to a buffer to store the port number.\r
685\r
686 @retval EFI_SUCCESS Successfully get the required component.\r
687 @retval EFI_INVALID_PARAMETER Uri is NULL or Port is NULL or UrlParser is invalid.\r
688 @retval EFI_NOT_FOUND No port number in the URL.\r
689 @retval EFI_OUT_OF_RESOURCES Could not allocate needed resources.\r
690 \r
691**/\r
692EFI_STATUS\r
693EFIAPI\r
694HttpUrlGetPort (\r
695 IN CHAR8 *Url,\r
696 IN VOID *UrlParser,\r
697 OUT UINT16 *Port\r
698 )\r
699{\r
700 CHAR8 *PortString;\r
701 EFI_STATUS Status;\r
d3017dd9 702 UINTN Index;\r
962e62bc 703 UINTN Data;\r
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704 UINT32 ResultLength;\r
705 HTTP_URL_PARSER *Parser;\r
706\r
707 if (Url == NULL || UrlParser == NULL || Port == NULL) {\r
708 return EFI_INVALID_PARAMETER;\r
709 }\r
710\r
d3017dd9
JW
711 *Port = 0;\r
712 Index = 0;\r
713\r
f9a14916
JW
714 Parser = (HTTP_URL_PARSER*) UrlParser;\r
715\r
716 if ((Parser->FieldBitMap & BIT (HTTP_URI_FIELD_PORT)) == 0) {\r
717 return EFI_INVALID_PARAMETER;\r
718 }\r
719\r
720 PortString = AllocatePool (Parser->FieldData[HTTP_URI_FIELD_PORT].Length + 1);\r
721 if (PortString == NULL) {\r
722 return EFI_OUT_OF_RESOURCES;\r
723 }\r
724\r
725 Status = UriPercentDecode (\r
726 Url + Parser->FieldData[HTTP_URI_FIELD_PORT].Offset,\r
727 Parser->FieldData[HTTP_URI_FIELD_PORT].Length,\r
728 PortString,\r
729 &ResultLength\r
730 );\r
731 if (EFI_ERROR (Status)) {\r
df642d70 732 goto ON_EXIT;\r
f9a14916
JW
733 }\r
734\r
735 PortString[ResultLength] = '\0';\r
f9a14916 736\r
d3017dd9
JW
737 while (Index < ResultLength) {\r
738 if (!NET_IS_DIGIT (PortString[Index])) {\r
df642d70
PA
739 Status = EFI_INVALID_PARAMETER;\r
740 goto ON_EXIT;\r
d3017dd9
JW
741 }\r
742 Index ++;\r
743 }\r
744\r
962e62bc
ZL
745 Status = AsciiStrDecimalToUintnS (Url + Parser->FieldData[HTTP_URI_FIELD_PORT].Offset, (CHAR8 **) NULL, &Data);\r
746\r
e2d662c3 747 if (Data > HTTP_URI_PORT_MAX_NUM) {\r
df642d70
PA
748 Status = EFI_INVALID_PARAMETER;\r
749 goto ON_EXIT;\r
d3017dd9
JW
750 }\r
751\r
962e62bc 752 *Port = (UINT16) Data;\r
df642d70
PA
753\r
754ON_EXIT:\r
755 FreePool (PortString);\r
962e62bc 756 return Status;\r
f9a14916
JW
757}\r
758\r
6796629d
FS
759/**\r
760 Get the Path from a HTTP URL.\r
761\r
762 This function will return the Path according to the Url and previous parse result,and\r
763 it is the caller's responsibility to free the buffer returned in *Path.\r
764\r
765 @param[in] Url The pointer to a HTTP URL string.\r
766 @param[in] UrlParser URL Parse result returned by NetHttpParseUrl().\r
767 @param[out] Path Pointer to a buffer to store the Path.\r
768\r
769 @retval EFI_SUCCESS Successfully get the required component.\r
770 @retval EFI_INVALID_PARAMETER Uri is NULL or HostName is NULL or UrlParser is invalid.\r
771 @retval EFI_NOT_FOUND No hostName component in the URL.\r
772 @retval EFI_OUT_OF_RESOURCES Could not allocate needed resources.\r
773 \r
774**/\r
775EFI_STATUS\r
776EFIAPI\r
777HttpUrlGetPath (\r
778 IN CHAR8 *Url,\r
779 IN VOID *UrlParser,\r
780 OUT CHAR8 **Path\r
781 )\r
782{\r
783 CHAR8 *PathStr;\r
784 EFI_STATUS Status;\r
785 UINT32 ResultLength;\r
786 HTTP_URL_PARSER *Parser;\r
787\r
788 if (Url == NULL || UrlParser == NULL || Path == NULL) {\r
789 return EFI_INVALID_PARAMETER;\r
790 }\r
791\r
792 Parser = (HTTP_URL_PARSER*) UrlParser;\r
793\r
794 if ((Parser->FieldBitMap & BIT (HTTP_URI_FIELD_PATH)) == 0) {\r
795 return EFI_NOT_FOUND;\r
796 }\r
797\r
798 PathStr = AllocatePool (Parser->FieldData[HTTP_URI_FIELD_PATH].Length + 1);\r
799 if (PathStr == NULL) {\r
800 return EFI_OUT_OF_RESOURCES;\r
801 }\r
802 \r
803 Status = UriPercentDecode (\r
804 Url + Parser->FieldData[HTTP_URI_FIELD_PATH].Offset,\r
805 Parser->FieldData[HTTP_URI_FIELD_PATH].Length,\r
806 PathStr,\r
807 &ResultLength\r
808 );\r
809 if (EFI_ERROR (Status)) {\r
df642d70 810 FreePool (PathStr);\r
6796629d
FS
811 return Status;\r
812 }\r
813\r
814 PathStr[ResultLength] = '\0';\r
815 *Path = PathStr;\r
816 return EFI_SUCCESS;\r
817}\r
818\r
f9a14916
JW
819/**\r
820 Release the resource of the URL parser.\r
821\r
822 @param[in] UrlParser Pointer to the parser.\r
823 \r
824**/\r
825VOID\r
826EFIAPI\r
827HttpUrlFreeParser (\r
828 IN VOID *UrlParser\r
829 )\r
830{\r
831 FreePool (UrlParser);\r
832}\r
833\r
834/**\r
835 Find a specified header field according to the field name.\r
836\r
837 @param[in] HeaderCount Number of HTTP header structures in Headers list. \r
838 @param[in] Headers Array containing list of HTTP headers.\r
839 @param[in] FieldName Null terminated string which describes a field name. \r
840\r
841 @return Pointer to the found header or NULL.\r
842\r
843**/\r
844EFI_HTTP_HEADER *\r
558b99a6
GB
845EFIAPI\r
846HttpFindHeader (\r
f9a14916
JW
847 IN UINTN HeaderCount,\r
848 IN EFI_HTTP_HEADER *Headers,\r
849 IN CHAR8 *FieldName\r
850 )\r
851{\r
852 UINTN Index;\r
558b99a6 853\r
f9a14916
JW
854 if (HeaderCount == 0 || Headers == NULL || FieldName == NULL) {\r
855 return NULL;\r
856 }\r
857\r
858 for (Index = 0; Index < HeaderCount; Index++){\r
859 //\r
860 // Field names are case-insensitive (RFC 2616).\r
861 //\r
862 if (AsciiStriCmp (Headers[Index].FieldName, FieldName) == 0) {\r
863 return &Headers[Index];\r
864 }\r
865 }\r
866 return NULL;\r
867}\r
868\r
869typedef enum {\r
870 BodyParserBodyStart,\r
871 BodyParserBodyIdentity,\r
872 BodyParserChunkSizeStart,\r
873 BodyParserChunkSize,\r
874 BodyParserChunkSizeEndCR,\r
875 BodyParserChunkExtStart,\r
876 BodyParserChunkDataStart,\r
877 BodyParserChunkDataEnd,\r
878 BodyParserChunkDataEndCR,\r
879 BodyParserTrailer,\r
880 BodyParserLastCRLF,\r
881 BodyParserLastCRLFEnd,\r
882 BodyParserComplete,\r
883 BodyParserStateMax\r
884} HTTP_BODY_PARSE_STATE;\r
885\r
886typedef struct {\r
887 BOOLEAN IgnoreBody; // "MUST NOT" include a message-body\r
888 BOOLEAN IsChunked; // "chunked" transfer-coding.\r
889 BOOLEAN ContentLengthIsValid;\r
890 UINTN ContentLength; // Entity length (not the message-body length), invalid until ContentLengthIsValid is TRUE\r
558b99a6 891\r
f9a14916
JW
892 HTTP_BODY_PARSER_CALLBACK Callback;\r
893 VOID *Context;\r
894 UINTN ParsedBodyLength;\r
895 HTTP_BODY_PARSE_STATE State;\r
896 UINTN CurrentChunkSize;\r
897 UINTN CurrentChunkParsedSize;\r
898} HTTP_BODY_PARSER;\r
899\r
900/**\r
901\r
902 Convert an Ascii char to its uppercase.\r
903\r
904 @param[in] Char Ascii character.\r
905\r
906 @return Uppercase value of the input Char.\r
907\r
908**/\r
909CHAR8\r
910HttpIoCharToUpper (\r
911 IN CHAR8 Char\r
912 )\r
913{\r
914 if (Char >= 'a' && Char <= 'z') {\r
915 return Char - ('a' - 'A');\r
916 }\r
917\r
918 return Char;\r
919}\r
920\r
921/**\r
922 Convert an hexadecimal char to a value of type UINTN.\r
923\r
924 @param[in] Char Ascii character.\r
925\r
926 @return Value translated from Char.\r
927\r
928**/\r
929UINTN\r
930HttpIoHexCharToUintn (\r
931 IN CHAR8 Char\r
932 )\r
933{\r
934 if (Char >= '0' && Char <= '9') {\r
935 return Char - '0';\r
936 }\r
937\r
938 return (10 + HttpIoCharToUpper (Char) - 'A');\r
939}\r
940\r
941/**\r
942 Get the value of the content length if there is a "Content-Length" header.\r
943\r
944 @param[in] HeaderCount Number of HTTP header structures in Headers.\r
945 @param[in] Headers Array containing list of HTTP headers.\r
946 @param[out] ContentLength Pointer to save the value of the content length.\r
947\r
948 @retval EFI_SUCCESS Successfully get the content length.\r
949 @retval EFI_NOT_FOUND No "Content-Length" header in the Headers.\r
950\r
951**/\r
952EFI_STATUS\r
953HttpIoParseContentLengthHeader (\r
954 IN UINTN HeaderCount,\r
955 IN EFI_HTTP_HEADER *Headers,\r
956 OUT UINTN *ContentLength\r
957 )\r
958{\r
959 EFI_HTTP_HEADER *Header;\r
558b99a6
GB
960\r
961 Header = HttpFindHeader (HeaderCount, Headers, HTTP_HEADER_CONTENT_LENGTH);\r
f9a14916
JW
962 if (Header == NULL) {\r
963 return EFI_NOT_FOUND;\r
964 }\r
965\r
27fd61af 966 return AsciiStrDecimalToUintnS (Header->FieldValue, (CHAR8 **) NULL, ContentLength);\r
f9a14916
JW
967}\r
968\r
969/**\r
970\r
971 Check whether the HTTP message is using the "chunked" transfer-coding.\r
972\r
973 @param[in] HeaderCount Number of HTTP header structures in Headers.\r
974 @param[in] Headers Array containing list of HTTP headers.\r
975\r
976 @return The message is "chunked" transfer-coding (TRUE) or not (FALSE).\r
977 \r
978**/\r
979BOOLEAN\r
980HttpIoIsChunked (\r
981 IN UINTN HeaderCount,\r
982 IN EFI_HTTP_HEADER *Headers\r
983 )\r
984{\r
985 EFI_HTTP_HEADER *Header;\r
986\r
987\r
558b99a6 988 Header = HttpFindHeader (HeaderCount, Headers, HTTP_HEADER_TRANSFER_ENCODING);\r
f9a14916
JW
989 if (Header == NULL) {\r
990 return FALSE;\r
991 }\r
992\r
993 if (AsciiStriCmp (Header->FieldValue, "identity") != 0) {\r
994 return TRUE;\r
995 }\r
996\r
997 return FALSE;\r
998}\r
999\r
1000/**\r
1001 Check whether the HTTP message should have a message-body.\r
1002\r
1003 @param[in] Method The HTTP method (e.g. GET, POST) for this HTTP message.\r
1004 @param[in] StatusCode Response status code returned by the remote host.\r
1005\r
1006 @return The message should have a message-body (FALSE) or not (TRUE).\r
1007\r
1008**/\r
1009BOOLEAN\r
1010HttpIoNoMessageBody (\r
1011 IN EFI_HTTP_METHOD Method,\r
1012 IN EFI_HTTP_STATUS_CODE StatusCode\r
1013 )\r
1014{\r
1015 //\r
1016 // RFC 2616:\r
1017 // All responses to the HEAD request method\r
1018 // MUST NOT include a message-body, even though the presence of entity-\r
1019 // header fields might lead one to believe they do. All 1xx\r
1020 // (informational), 204 (no content), and 304 (not modified) responses\r
1021 // MUST NOT include a message-body. All other responses do include a\r
1022 // message-body, although it MAY be of zero length.\r
1023 //\r
1024 if (Method == HttpMethodHead) {\r
1025 return TRUE;\r
1026 }\r
1027\r
1028 if ((StatusCode == HTTP_STATUS_100_CONTINUE) ||\r
1029 (StatusCode == HTTP_STATUS_101_SWITCHING_PROTOCOLS) ||\r
1030 (StatusCode == HTTP_STATUS_204_NO_CONTENT) ||\r
1031 (StatusCode == HTTP_STATUS_304_NOT_MODIFIED))\r
1032 {\r
1033 return TRUE;\r
1034 }\r
1035\r
1036 return FALSE;\r
1037}\r
1038\r
1039/**\r
1040 Initialize a HTTP message-body parser.\r
1041\r
1042 This function will create and initialize a HTTP message parser according to caller provided HTTP message\r
1043 header information. It is the caller's responsibility to free the buffer returned in *UrlParser by HttpFreeMsgParser().\r
1044\r
1045 @param[in] Method The HTTP method (e.g. GET, POST) for this HTTP message.\r
1046 @param[in] StatusCode Response status code returned by the remote host.\r
1047 @param[in] HeaderCount Number of HTTP header structures in Headers.\r
1048 @param[in] Headers Array containing list of HTTP headers.\r
1049 @param[in] Callback Callback function that is invoked when parsing the HTTP message-body,\r
1050 set to NULL to ignore all events.\r
1051 @param[in] Context Pointer to the context that will be passed to Callback.\r
1052 @param[out] MsgParser Pointer to the returned buffer to store the message parser.\r
1053\r
1054 @retval EFI_SUCCESS Successfully initialized the parser.\r
1055 @retval EFI_OUT_OF_RESOURCES Could not allocate needed resources.\r
1056 @retval EFI_INVALID_PARAMETER MsgParser is NULL or HeaderCount is not NULL but Headers is NULL.\r
1057 @retval Others Failed to initialize the parser.\r
1058\r
1059**/\r
1060EFI_STATUS\r
1061EFIAPI\r
1062HttpInitMsgParser (\r
1063 IN EFI_HTTP_METHOD Method,\r
1064 IN EFI_HTTP_STATUS_CODE StatusCode,\r
1065 IN UINTN HeaderCount,\r
1066 IN EFI_HTTP_HEADER *Headers,\r
1067 IN HTTP_BODY_PARSER_CALLBACK Callback,\r
1068 IN VOID *Context,\r
1069 OUT VOID **MsgParser\r
1070 )\r
1071{\r
1072 EFI_STATUS Status;\r
1073 HTTP_BODY_PARSER *Parser;\r
1074 \r
1075 if (HeaderCount != 0 && Headers == NULL) {\r
1076 return EFI_INVALID_PARAMETER;\r
1077 }\r
1078\r
1079 if (MsgParser == NULL) {\r
1080 return EFI_INVALID_PARAMETER;\r
1081 }\r
1082\r
1083 Parser = AllocateZeroPool (sizeof (HTTP_BODY_PARSER));\r
1084 if (Parser == NULL) {\r
1085 return EFI_OUT_OF_RESOURCES;\r
1086 }\r
1087\r
1088 Parser->State = BodyParserBodyStart;\r
1089 \r
1090 //\r
8a1c4a8c 1091 // Determine the message length according to RFC 2616.\r
f9a14916
JW
1092 // 1. Check whether the message "MUST NOT" have a message-body.\r
1093 //\r
1094 Parser->IgnoreBody = HttpIoNoMessageBody (Method, StatusCode);\r
1095 //\r
1096 // 2. Check whether the message using "chunked" transfer-coding.\r
1097 //\r
1098 Parser->IsChunked = HttpIoIsChunked (HeaderCount, Headers);\r
1099 //\r
1100 // 3. Check whether the message has a Content-Length header field.\r
1101 //\r
1102 Status = HttpIoParseContentLengthHeader (HeaderCount, Headers, &Parser->ContentLength);\r
1103 if (!EFI_ERROR (Status)) {\r
1104 Parser->ContentLengthIsValid = TRUE;\r
1105 }\r
1106 //\r
1107 // 4. Range header is not supported now, so we won't meet media type "multipart/byteranges".\r
1108 // 5. By server closing the connection\r
1109 //\r
1110 \r
1111 //\r
1112 // Set state to skip body parser if the message shouldn't have a message body.\r
1113 //\r
1114 if (Parser->IgnoreBody) {\r
1115 Parser->State = BodyParserComplete;\r
1116 } else {\r
1117 Parser->Callback = Callback;\r
1118 Parser->Context = Context;\r
1119 }\r
1120\r
1121 *MsgParser = Parser;\r
1122 return EFI_SUCCESS;\r
1123}\r
1124\r
1125/**\r
1126 Parse message body.\r
1127\r
1128 Parse BodyLength of message-body. This function can be called repeatedly to parse the message-body partially.\r
1129\r
1130 @param[in, out] MsgParser Pointer to the message parser.\r
1131 @param[in] BodyLength Length in bytes of the Body.\r
1132 @param[in] Body Pointer to the buffer of the message-body to be parsed.\r
1133\r
1134 @retval EFI_SUCCESS Successfully parse the message-body.\r
1135 @retval EFI_INVALID_PARAMETER MsgParser is NULL or Body is NULL or BodyLength is 0.\r
1136 @retval Others Operation aborted.\r
1137\r
1138**/\r
1139EFI_STATUS\r
1140EFIAPI\r
1141HttpParseMessageBody (\r
1142 IN OUT VOID *MsgParser,\r
1143 IN UINTN BodyLength,\r
1144 IN CHAR8 *Body\r
1145 )\r
1146{\r
1147 CHAR8 *Char;\r
1148 UINTN RemainderLengthInThis;\r
1149 UINTN LengthForCallback;\r
1150 EFI_STATUS Status;\r
1151 HTTP_BODY_PARSER *Parser;\r
1152 \r
1153 if (BodyLength == 0 || Body == NULL) {\r
1154 return EFI_INVALID_PARAMETER;\r
1155 }\r
1156\r
1157 if (MsgParser == NULL) {\r
1158 return EFI_INVALID_PARAMETER;\r
1159 }\r
1160\r
1161 Parser = (HTTP_BODY_PARSER*) MsgParser;\r
1162\r
1163 if (Parser->IgnoreBody) {\r
1164 Parser->State = BodyParserComplete;\r
1165 if (Parser->Callback != NULL) {\r
1166 Status = Parser->Callback (\r
1167 BodyParseEventOnComplete,\r
1168 Body,\r
1169 0,\r
1170 Parser->Context\r
1171 );\r
1172 if (EFI_ERROR (Status)) {\r
1173 return Status;\r
1174 }\r
1175 }\r
1176 return EFI_SUCCESS;\r
1177 }\r
1178\r
1179 if (Parser->State == BodyParserBodyStart) {\r
1180 Parser->ParsedBodyLength = 0;\r
1181 if (Parser->IsChunked) {\r
1182 Parser->State = BodyParserChunkSizeStart;\r
1183 } else {\r
1184 Parser->State = BodyParserBodyIdentity;\r
1185 }\r
1186 }\r
1187\r
1188 //\r
1189 // The message body might be truncated in anywhere, so we need to parse is byte-by-byte.\r
1190 //\r
1191 for (Char = Body; Char < Body + BodyLength; ) {\r
1192\r
1193 switch (Parser->State) {\r
1194 case BodyParserStateMax:\r
1195 return EFI_ABORTED;\r
47bda627 1196 \r
f9a14916
JW
1197 case BodyParserBodyIdentity:\r
1198 //\r
1199 // Identity transfer-coding, just notify user to save the body data.\r
1200 //\r
1201 if (Parser->Callback != NULL) {\r
1202 Status = Parser->Callback (\r
1203 BodyParseEventOnData,\r
1204 Char,\r
1205 MIN (BodyLength, Parser->ContentLength - Parser->ParsedBodyLength),\r
1206 Parser->Context\r
1207 );\r
1208 if (EFI_ERROR (Status)) {\r
1209 return Status;\r
1210 }\r
1211 }\r
1212 Char += MIN (BodyLength, Parser->ContentLength - Parser->ParsedBodyLength);\r
1213 Parser->ParsedBodyLength += MIN (BodyLength, Parser->ContentLength - Parser->ParsedBodyLength);\r
1214 if (Parser->ParsedBodyLength == Parser->ContentLength) {\r
1215 Parser->State = BodyParserComplete;\r
47bda627
ZL
1216 if (Parser->Callback != NULL) {\r
1217 Status = Parser->Callback (\r
1218 BodyParseEventOnComplete,\r
1219 Char,\r
1220 0,\r
1221 Parser->Context\r
1222 );\r
1223 if (EFI_ERROR (Status)) {\r
1224 return Status;\r
1225 }\r
1226 }\r
f9a14916
JW
1227 }\r
1228 break;\r
1229\r
1230 case BodyParserChunkSizeStart:\r
1231 //\r
1232 // First byte of chunk-size, the chunk-size might be truncated.\r
1233 //\r
1234 Parser->CurrentChunkSize = 0;\r
1235 Parser->State = BodyParserChunkSize;\r
1236 case BodyParserChunkSize:\r
1237 if (!NET_IS_HEX_CHAR (*Char)) {\r
1238 if (*Char == ';') {\r
1239 Parser->State = BodyParserChunkExtStart;\r
1240 Char++;\r
1241 } else if (*Char == '\r') {\r
1242 Parser->State = BodyParserChunkSizeEndCR;\r
1243 Char++;\r
1244 } else {\r
1245 Parser->State = BodyParserStateMax;\r
1246 }\r
1247 break;\r
1248 }\r
1249\r
1250 if (Parser->CurrentChunkSize > (((~((UINTN) 0)) - 16) / 16)) {\r
1251 return EFI_INVALID_PARAMETER;\r
1252 }\r
1253 Parser->CurrentChunkSize = Parser->CurrentChunkSize * 16 + HttpIoHexCharToUintn (*Char);\r
1254 Char++;\r
1255 break;\r
1256\r
1257 case BodyParserChunkExtStart:\r
1258 //\r
1259 // Ignore all the chunk extensions.\r
1260 //\r
1261 if (*Char == '\r') {\r
1262 Parser->State = BodyParserChunkSizeEndCR;\r
1263 }\r
1264 Char++;\r
1265 break;\r
1266 \r
1267 case BodyParserChunkSizeEndCR:\r
1268 if (*Char != '\n') {\r
1269 Parser->State = BodyParserStateMax;\r
1270 break;\r
1271 }\r
1272 Char++;\r
1273 if (Parser->CurrentChunkSize == 0) {\r
1274 //\r
1275 // The last chunk has been parsed and now assumed the state \r
1276 // of HttpBodyParse is ParserLastCRLF. So it need to decide\r
1277 // whether the rest message is trailer or last CRLF in the next round.\r
1278 //\r
1279 Parser->ContentLengthIsValid = TRUE;\r
1280 Parser->State = BodyParserLastCRLF;\r
1281 break;\r
1282 }\r
1283 Parser->State = BodyParserChunkDataStart;\r
1284 Parser->CurrentChunkParsedSize = 0;\r
1285 break;\r
1286 \r
1287 case BodyParserLastCRLF:\r
1288 //\r
1289 // Judge the byte is belong to the Last CRLF or trailer, and then \r
1290 // configure the state of HttpBodyParse to corresponding state.\r
1291 //\r
1292 if (*Char == '\r') {\r
1293 Char++;\r
1294 Parser->State = BodyParserLastCRLFEnd;\r
1295 break;\r
1296 } else {\r
1297 Parser->State = BodyParserTrailer;\r
1298 break;\r
1299 }\r
1300 \r
1301 case BodyParserLastCRLFEnd:\r
1302 if (*Char == '\n') {\r
1303 Parser->State = BodyParserComplete;\r
47bda627
ZL
1304 Char++;\r
1305 if (Parser->Callback != NULL) {\r
1306 Status = Parser->Callback (\r
1307 BodyParseEventOnComplete,\r
1308 Char,\r
1309 0,\r
1310 Parser->Context\r
1311 );\r
1312 if (EFI_ERROR (Status)) {\r
1313 return Status;\r
1314 }\r
1315 }\r
f9a14916
JW
1316 break;\r
1317 } else {\r
1318 Parser->State = BodyParserStateMax;\r
1319 break;\r
1320 }\r
1321 \r
1322 case BodyParserTrailer:\r
1323 if (*Char == '\r') {\r
1324 Parser->State = BodyParserChunkSizeEndCR;\r
1325 }\r
1326 Char++;\r
1327 break; \r
1328\r
1329 case BodyParserChunkDataStart:\r
1330 //\r
1331 // First byte of chunk-data, the chunk data also might be truncated.\r
1332 //\r
1333 RemainderLengthInThis = BodyLength - (Char - Body);\r
1334 LengthForCallback = MIN (Parser->CurrentChunkSize - Parser->CurrentChunkParsedSize, RemainderLengthInThis);\r
1335 if (Parser->Callback != NULL) {\r
1336 Status = Parser->Callback (\r
1337 BodyParseEventOnData,\r
1338 Char,\r
1339 LengthForCallback,\r
1340 Parser->Context\r
1341 );\r
1342 if (EFI_ERROR (Status)) {\r
1343 return Status;\r
1344 }\r
1345 }\r
1346 Char += LengthForCallback;\r
1347 Parser->ContentLength += LengthForCallback;\r
1348 Parser->CurrentChunkParsedSize += LengthForCallback;\r
1349 if (Parser->CurrentChunkParsedSize == Parser->CurrentChunkSize) {\r
1350 Parser->State = BodyParserChunkDataEnd;\r
1351 } \r
1352 break;\r
1353\r
1354 case BodyParserChunkDataEnd:\r
1355 if (*Char == '\r') {\r
1356 Parser->State = BodyParserChunkDataEndCR;\r
1357 } else {\r
1358 Parser->State = BodyParserStateMax;\r
1359 }\r
1360 Char++;\r
1361 break;\r
1362\r
1363 case BodyParserChunkDataEndCR:\r
1364 if (*Char != '\n') {\r
1365 Parser->State = BodyParserStateMax;\r
1366 break;\r
1367 }\r
1368 Char++;\r
1369 Parser->State = BodyParserChunkSizeStart;\r
1370 break; \r
1371\r
1372 default:\r
1373 break;\r
1374 }\r
1375\r
1376 }\r
1377\r
1378 if (Parser->State == BodyParserStateMax) {\r
1379 return EFI_ABORTED;\r
1380 }\r
1381\r
1382 return EFI_SUCCESS;\r
1383}\r
1384\r
1385/**\r
1386 Check whether the message-body is complete or not.\r
1387\r
1388 @param[in] MsgParser Pointer to the message parser.\r
1389\r
1390 @retval TRUE Message-body is complete.\r
1391 @retval FALSE Message-body is not complete.\r
1392\r
1393**/\r
1394BOOLEAN\r
1395EFIAPI\r
1396HttpIsMessageComplete (\r
1397 IN VOID *MsgParser\r
1398 )\r
1399{\r
1400 HTTP_BODY_PARSER *Parser;\r
1401\r
0efeec8e
JW
1402 if (MsgParser == NULL) {\r
1403 return FALSE;\r
1404 }\r
1405\r
f9a14916
JW
1406 Parser = (HTTP_BODY_PARSER*) MsgParser;\r
1407\r
1408 if (Parser->State == BodyParserComplete) {\r
1409 return TRUE;\r
1410 }\r
1411 return FALSE;\r
1412}\r
1413\r
1414/**\r
1415 Get the content length of the entity.\r
1416\r
1417 Note that in trunk transfer, the entity length is not valid until the whole message body is received.\r
1418\r
1419 @param[in] MsgParser Pointer to the message parser.\r
1420 @param[out] ContentLength Pointer to store the length of the entity.\r
1421\r
1422 @retval EFI_SUCCESS Successfully to get the entity length.\r
1423 @retval EFI_NOT_READY Entity length is not valid yet.\r
1424 @retval EFI_INVALID_PARAMETER MsgParser is NULL or ContentLength is NULL.\r
1425 \r
1426**/\r
1427EFI_STATUS\r
1428EFIAPI\r
1429HttpGetEntityLength (\r
1430 IN VOID *MsgParser,\r
1431 OUT UINTN *ContentLength\r
1432 )\r
1433{\r
1434 HTTP_BODY_PARSER *Parser;\r
1435\r
1436 if (MsgParser == NULL || ContentLength == NULL) {\r
1437 return EFI_INVALID_PARAMETER;\r
1438 }\r
1439\r
1440 Parser = (HTTP_BODY_PARSER*) MsgParser;\r
1441\r
1442 if (!Parser->ContentLengthIsValid) {\r
1443 return EFI_NOT_READY;\r
1444 }\r
1445\r
1446 *ContentLength = Parser->ContentLength;\r
1447 return EFI_SUCCESS;\r
1448}\r
1449\r
1450/**\r
1451 Release the resource of the message parser.\r
1452\r
1453 @param[in] MsgParser Pointer to the message parser.\r
1454 \r
1455**/\r
1456VOID\r
1457EFIAPI\r
1458HttpFreeMsgParser (\r
1459 IN VOID *MsgParser\r
1460 )\r
1461{\r
1462 FreePool (MsgParser);\r
1463}\r
558b99a6
GB
1464\r
1465\r
1466/**\r
3b28e744 1467 Get the next string, which is distinguished by specified separator.\r
558b99a6
GB
1468\r
1469 @param[in] String Pointer to the string.\r
3b28e744 1470 @param[in] Separator Specified separator used to distinguish where is the beginning\r
558b99a6
GB
1471 of next string.\r
1472\r
1473 @return Pointer to the next string.\r
1474 @return NULL if not find or String is NULL.\r
1475\r
1476**/\r
1477CHAR8 *\r
1478EFIAPI\r
1479AsciiStrGetNextToken (\r
1480 IN CONST CHAR8 *String,\r
3b28e744 1481 IN CHAR8 Separator\r
558b99a6
GB
1482 )\r
1483{\r
1484 CONST CHAR8 *Token;\r
1485\r
1486 Token = String;\r
1487 while (TRUE) {\r
1488 if (*Token == 0) {\r
1489 return NULL;\r
1490 }\r
3b28e744 1491 if (*Token == Separator) {\r
558b99a6
GB
1492 return (CHAR8 *)(Token + 1);\r
1493 }\r
1494 Token++;\r
1495 }\r
1496}\r
1497\r
1498/**\r
1499 Set FieldName and FieldValue into specified HttpHeader.\r
1500\r
1501 @param[in,out] HttpHeader Specified HttpHeader.\r
1502 @param[in] FieldName FieldName of this HttpHeader, a NULL terminated ASCII string.\r
1503 @param[in] FieldValue FieldValue of this HttpHeader, a NULL terminated ASCII string.\r
1504\r
1505\r
1506 @retval EFI_SUCCESS The FieldName and FieldValue are set into HttpHeader successfully.\r
0efeec8e 1507 @retval EFI_INVALID_PARAMETER The parameter is invalid.\r
558b99a6
GB
1508 @retval EFI_OUT_OF_RESOURCES Failed to allocate resources.\r
1509\r
1510**/\r
1511EFI_STATUS\r
1512EFIAPI\r
1513HttpSetFieldNameAndValue (\r
1514 IN OUT EFI_HTTP_HEADER *HttpHeader,\r
1515 IN CONST CHAR8 *FieldName,\r
1516 IN CONST CHAR8 *FieldValue\r
1517 )\r
1518{\r
1519 UINTN FieldNameSize;\r
1520 UINTN FieldValueSize;\r
1521\r
0efeec8e
JW
1522 if (HttpHeader == NULL || FieldName == NULL || FieldValue == NULL) {\r
1523 return EFI_INVALID_PARAMETER;\r
1524 }\r
1525\r
558b99a6
GB
1526 if (HttpHeader->FieldName != NULL) {\r
1527 FreePool (HttpHeader->FieldName);\r
1528 }\r
1529 if (HttpHeader->FieldValue != NULL) {\r
1530 FreePool (HttpHeader->FieldValue);\r
1531 }\r
1532\r
1533 FieldNameSize = AsciiStrSize (FieldName);\r
1534 HttpHeader->FieldName = AllocateZeroPool (FieldNameSize);\r
1535 if (HttpHeader->FieldName == NULL) {\r
1536 return EFI_OUT_OF_RESOURCES;\r
1537 }\r
1538 CopyMem (HttpHeader->FieldName, FieldName, FieldNameSize);\r
1539 HttpHeader->FieldName[FieldNameSize - 1] = 0;\r
1540\r
1541 FieldValueSize = AsciiStrSize (FieldValue);\r
1542 HttpHeader->FieldValue = AllocateZeroPool (FieldValueSize);\r
1543 if (HttpHeader->FieldValue == NULL) {\r
f5168b84 1544 FreePool (HttpHeader->FieldName);\r
558b99a6
GB
1545 return EFI_OUT_OF_RESOURCES;\r
1546 }\r
1547 CopyMem (HttpHeader->FieldValue, FieldValue, FieldValueSize);\r
1548 HttpHeader->FieldValue[FieldValueSize - 1] = 0;\r
1549\r
1550 return EFI_SUCCESS;\r
1551}\r
1552\r
1553/**\r
1554 Get one key/value header pair from the raw string.\r
1555\r
1556 @param[in] String Pointer to the raw string.\r
1557 @param[out] FieldName Points directly to field name within 'HttpHeader'.\r
1558 @param[out] FieldValue Points directly to field value within 'HttpHeader'.\r
1559\r
1560 @return Pointer to the next raw string.\r
1561 @return NULL if no key/value header pair from this raw string.\r
1562\r
1563**/\r
1564CHAR8 *\r
1565EFIAPI\r
1566HttpGetFieldNameAndValue (\r
1567 IN CHAR8 *String,\r
1568 OUT CHAR8 **FieldName,\r
1569 OUT CHAR8 **FieldValue\r
1570 )\r
1571{\r
1572 CHAR8 *FieldNameStr;\r
1573 CHAR8 *FieldValueStr;\r
1574 CHAR8 *StrPtr;\r
b2a73b5b 1575 CHAR8 *EndofHeader;\r
558b99a6
GB
1576\r
1577 if (String == NULL || FieldName == NULL || FieldValue == NULL) {\r
1578 return NULL;\r
1579 }\r
1580\r
1581 *FieldName = NULL;\r
1582 *FieldValue = NULL;\r
1583 FieldNameStr = NULL;\r
1584 FieldValueStr = NULL;\r
1585 StrPtr = NULL;\r
b2a73b5b
JW
1586 EndofHeader = NULL;\r
1587\r
1588\r
1589 //\r
1590 // Check whether the raw HTTP header string is valid or not.\r
1591 //\r
1592 EndofHeader = AsciiStrStr (String, "\r\n\r\n");\r
1593 if (EndofHeader == NULL) {\r
1594 return NULL;\r
1595 }\r
558b99a6
GB
1596\r
1597 //\r
1598 // Each header field consists of a name followed by a colon (":") and the field value.\r
1599 //\r
1600 FieldNameStr = String;\r
1601 FieldValueStr = AsciiStrGetNextToken (FieldNameStr, ':');\r
1602 if (FieldValueStr == NULL) {\r
1603 return NULL;\r
1604 }\r
1605\r
1606 //\r
1607 // Replace ':' with 0\r
1608 //\r
1609 *(FieldValueStr - 1) = 0;\r
1610\r
1611 //\r
1612 // The field value MAY be preceded by any amount of LWS, though a single SP is preferred.\r
b2a73b5b
JW
1613 // Note: LWS = [CRLF] 1*(SP|HT), it can be '\r\n ' or '\r\n\t' or ' ' or '\t'.\r
1614 // CRLF = '\r\n'.\r
1615 // SP = ' '.\r
1616 // HT = '\t' (Tab).\r
558b99a6
GB
1617 //\r
1618 while (TRUE) {\r
1619 if (*FieldValueStr == ' ' || *FieldValueStr == '\t') {\r
b2a73b5b
JW
1620 //\r
1621 // Boundary condition check. \r
1622 //\r
1623 if ((UINTN)EndofHeader - (UINTN)(FieldValueStr) < 1) {\r
1624 return NULL; \r
1625 }\r
1626 \r
558b99a6 1627 FieldValueStr ++;\r
b2a73b5b
JW
1628 } else if (*FieldValueStr == '\r') {\r
1629 //\r
1630 // Boundary condition check. \r
1631 //\r
1632 if ((UINTN)EndofHeader - (UINTN)(FieldValueStr) < 3) {\r
1633 return NULL; \r
1634 }\r
1635\r
1636 if (*(FieldValueStr + 1) == '\n' && (*(FieldValueStr + 2) == ' ' || *(FieldValueStr + 2) == '\t')) {\r
1637 FieldValueStr = FieldValueStr + 3;\r
1638 }\r
558b99a6
GB
1639 } else {\r
1640 break;\r
1641 }\r
1642 }\r
1643\r
1644 //\r
1645 // Header fields can be extended over multiple lines by preceding each extra\r
1646 // line with at least one SP or HT.\r
1647 //\r
1648 StrPtr = FieldValueStr;\r
1649 do {\r
1650 StrPtr = AsciiStrGetNextToken (StrPtr, '\r');\r
1651 if (StrPtr == NULL || *StrPtr != '\n') {\r
1652 return NULL;\r
1653 }\r
1654\r
1655 StrPtr++;\r
1656 } while (*StrPtr == ' ' || *StrPtr == '\t');\r
1657\r
1658 //\r
1659 // Replace '\r' with 0\r
1660 //\r
1661 *(StrPtr - 2) = 0;\r
1662\r
1663 //\r
1664 // Get FieldName and FieldValue.\r
1665 //\r
1666 *FieldName = FieldNameStr;\r
1667 *FieldValue = FieldValueStr;\r
1668\r
1669 return StrPtr;\r
1670}\r
1671\r
1672/**\r
1673 Free existing HeaderFields.\r
1674\r
1675 @param[in] HeaderFields Pointer to array of key/value header pairs waitting for free.\r
1676 @param[in] FieldCount The number of header pairs in HeaderFields.\r
1677\r
1678**/\r
1679VOID\r
1680EFIAPI\r
1681HttpFreeHeaderFields (\r
1682 IN EFI_HTTP_HEADER *HeaderFields,\r
1683 IN UINTN FieldCount\r
1684 )\r
1685{\r
1686 UINTN Index;\r
1687\r
1688 if (HeaderFields != NULL) {\r
1689 for (Index = 0; Index < FieldCount; Index++) {\r
1690 if (HeaderFields[Index].FieldName != NULL) {\r
1691 FreePool (HeaderFields[Index].FieldName);\r
1692 }\r
1693 if (HeaderFields[Index].FieldValue != NULL) {\r
1694 FreePool (HeaderFields[Index].FieldValue);\r
1695 }\r
1696 }\r
1697\r
1698 FreePool (HeaderFields);\r
1699 }\r
1700}\r
1701\r
1702/**\r
e297a0a4 1703 Generate HTTP request message.\r
558b99a6 1704\r
e297a0a4
NH
1705 This function will allocate memory for the whole HTTP message and generate a\r
1706 well formatted HTTP Request message in it, include the Request-Line, header\r
1707 fields and also the message body. It is the caller's responsibility to free\r
1708 the buffer returned in *RequestMsg.\r
1709\r
1710 @param[in] Message Pointer to the EFI_HTTP_MESSAGE structure which\r
1711 contains the required information to generate\r
1712 the HTTP request message.\r
558b99a6 1713 @param[in] Url The URL of a remote host.\r
e297a0a4 1714 @param[out] RequestMsg Pointer to the created HTTP request message.\r
558b99a6 1715 NULL if any error occured.\r
e297a0a4 1716 @param[out] RequestMsgSize Size of the RequestMsg (in bytes).\r
558b99a6
GB
1717\r
1718 @return EFI_SUCCESS If HTTP request string was created successfully\r
1719 @retval EFI_OUT_OF_RESOURCES Failed to allocate resources.\r
1720 @retval EFI_INVALID_PARAMETER The input arguments are invalid\r
1721\r
1722**/\r
1723EFI_STATUS\r
1724EFIAPI\r
e297a0a4 1725HttpGenRequestMessage (\r
558b99a6
GB
1726 IN CONST EFI_HTTP_MESSAGE *Message,\r
1727 IN CONST CHAR8 *Url,\r
e297a0a4
NH
1728 OUT CHAR8 **RequestMsg,\r
1729 OUT UINTN *RequestMsgSize\r
558b99a6
GB
1730 )\r
1731{\r
1732 EFI_STATUS Status;\r
1733 UINTN StrLength;\r
1734 CHAR8 *RequestPtr;\r
1735 UINTN HttpHdrSize;\r
1736 UINTN MsgSize;\r
1737 BOOLEAN Success;\r
1738 VOID *HttpHdr;\r
1739 EFI_HTTP_HEADER **AppendList;\r
1740 UINTN Index;\r
1741 EFI_HTTP_UTILITIES_PROTOCOL *HttpUtilitiesProtocol;\r
1742\r
1fed57ab
JW
1743 Status = EFI_SUCCESS;\r
1744 HttpHdrSize = 0;\r
1745 MsgSize = 0;\r
1746 Success = FALSE;\r
1747 HttpHdr = NULL;\r
1748 AppendList = NULL;\r
558b99a6
GB
1749 HttpUtilitiesProtocol = NULL;\r
1750\r
1751 //\r
09991304
NH
1752 // 1. If we have a Request, we cannot have a NULL Url\r
1753 // 2. If we have a Request, HeaderCount can not be non-zero\r
1754 // 3. If we do not have a Request, HeaderCount should be zero\r
1755 // 4. If we do not have Request and Headers, we need at least a message-body\r
558b99a6 1756 //\r
0efeec8e
JW
1757 if ((Message == NULL || RequestMsg == NULL || RequestMsgSize == NULL) || \r
1758 (Message->Data.Request != NULL && Url == NULL) ||\r
09991304
NH
1759 (Message->Data.Request != NULL && Message->HeaderCount == 0) ||\r
1760 (Message->Data.Request == NULL && Message->HeaderCount != 0) ||\r
1761 (Message->Data.Request == NULL && Message->HeaderCount == 0 && Message->BodyLength == 0)) {\r
1762 return EFI_INVALID_PARAMETER;\r
1763 }\r
558b99a6 1764\r
09991304
NH
1765 if (Message->HeaderCount != 0) {\r
1766 //\r
1767 // Locate the HTTP_UTILITIES protocol.\r
1768 //\r
1769 Status = gBS->LocateProtocol (\r
1770 &gEfiHttpUtilitiesProtocolGuid,\r
1771 NULL,\r
1772 (VOID **)&HttpUtilitiesProtocol\r
1773 );\r
1774\r
1775 if (EFI_ERROR (Status)) {\r
1776 DEBUG ((DEBUG_ERROR,"Failed to locate Http Utilities protocol. Status = %r.\n", Status));\r
1777 return Status;\r
1778 }\r
1779\r
1780 //\r
1781 // Build AppendList to send into HttpUtilitiesBuild\r
1782 //\r
1783 AppendList = AllocateZeroPool (sizeof (EFI_HTTP_HEADER *) * (Message->HeaderCount));\r
1784 if (AppendList == NULL) {\r
1785 return EFI_OUT_OF_RESOURCES;\r
1786 }\r
1787\r
1788 for(Index = 0; Index < Message->HeaderCount; Index++){\r
1789 AppendList[Index] = &Message->Headers[Index];\r
1790 }\r
1791\r
1792 //\r
1793 // Build raw HTTP Headers\r
1794 //\r
1795 Status = HttpUtilitiesProtocol->Build (\r
1796 HttpUtilitiesProtocol,\r
1797 0,\r
1798 NULL,\r
1799 0,\r
1800 NULL,\r
1801 Message->HeaderCount,\r
1802 AppendList,\r
1803 &HttpHdrSize,\r
1804 &HttpHdr\r
1805 );\r
1806\r
1807 if (AppendList != NULL) {\r
1808 FreePool (AppendList);\r
1809 }\r
1810\r
1811 if (EFI_ERROR (Status) || HttpHdr == NULL){\r
1812 return Status;\r
1813 }\r
558b99a6
GB
1814 }\r
1815\r
1816 //\r
09991304 1817 // If we have headers to be sent, account for it.\r
558b99a6 1818 //\r
09991304
NH
1819 if (Message->HeaderCount != 0) {\r
1820 MsgSize = HttpHdrSize;\r
558b99a6
GB
1821 }\r
1822\r
1823 //\r
09991304 1824 // If we have a request line, account for the fields.\r
558b99a6 1825 //\r
09991304
NH
1826 if (Message->Data.Request != NULL) {\r
1827 MsgSize += HTTP_METHOD_MAXIMUM_LEN + AsciiStrLen (HTTP_VERSION_CRLF_STR) + AsciiStrLen (Url);\r
558b99a6
GB
1828 }\r
1829\r
09991304 1830\r
558b99a6 1831 //\r
09991304 1832 // If we have a message body to be sent, account for it.\r
558b99a6 1833 //\r
09991304 1834 MsgSize += Message->BodyLength;\r
558b99a6 1835\r
09991304
NH
1836 //\r
1837 // memory for the string that needs to be sent to TCP\r
1838 //\r
0efeec8e 1839 *RequestMsg = NULL;\r
e297a0a4
NH
1840 *RequestMsg = AllocateZeroPool (MsgSize);\r
1841 if (*RequestMsg == NULL) {\r
558b99a6
GB
1842 Status = EFI_OUT_OF_RESOURCES;\r
1843 goto Exit;\r
1844 }\r
1845\r
e297a0a4 1846 RequestPtr = *RequestMsg;\r
558b99a6
GB
1847 //\r
1848 // Construct header request\r
1849 //\r
09991304
NH
1850 if (Message->Data.Request != NULL) {\r
1851 switch (Message->Data.Request->Method) {\r
1852 case HttpMethodGet:\r
1853 StrLength = sizeof (HTTP_METHOD_GET) - 1;\r
1854 CopyMem (RequestPtr, HTTP_METHOD_GET, StrLength);\r
1855 RequestPtr += StrLength;\r
1856 break;\r
1857 case HttpMethodPut:\r
1858 StrLength = sizeof (HTTP_METHOD_PUT) - 1;\r
1859 CopyMem (RequestPtr, HTTP_METHOD_PUT, StrLength);\r
1860 RequestPtr += StrLength;\r
1861 break;\r
1862 case HttpMethodPatch:\r
1863 StrLength = sizeof (HTTP_METHOD_PATCH) - 1;\r
1864 CopyMem (RequestPtr, HTTP_METHOD_PATCH, StrLength);\r
1865 RequestPtr += StrLength;\r
1866 break;\r
1867 case HttpMethodPost:\r
1868 StrLength = sizeof (HTTP_METHOD_POST) - 1;\r
1869 CopyMem (RequestPtr, HTTP_METHOD_POST, StrLength);\r
1870 RequestPtr += StrLength;\r
1871 break;\r
1872 case HttpMethodHead:\r
1873 StrLength = sizeof (HTTP_METHOD_HEAD) - 1;\r
1874 CopyMem (RequestPtr, HTTP_METHOD_HEAD, StrLength);\r
1875 RequestPtr += StrLength;\r
1876 break;\r
1877 case HttpMethodDelete:\r
1878 StrLength = sizeof (HTTP_METHOD_DELETE) - 1;\r
1879 CopyMem (RequestPtr, HTTP_METHOD_DELETE, StrLength);\r
1880 RequestPtr += StrLength;\r
1881 break;\r
1882 default:\r
1883 ASSERT (FALSE);\r
1884 Status = EFI_INVALID_PARAMETER;\r
1885 goto Exit;\r
1886 }\r
558b99a6 1887\r
09991304
NH
1888 StrLength = AsciiStrLen(EMPTY_SPACE);\r
1889 CopyMem (RequestPtr, EMPTY_SPACE, StrLength);\r
1890 RequestPtr += StrLength;\r
558b99a6 1891\r
09991304
NH
1892 StrLength = AsciiStrLen (Url);\r
1893 CopyMem (RequestPtr, Url, StrLength);\r
1894 RequestPtr += StrLength;\r
558b99a6 1895\r
09991304
NH
1896 StrLength = sizeof (HTTP_VERSION_CRLF_STR) - 1;\r
1897 CopyMem (RequestPtr, HTTP_VERSION_CRLF_STR, StrLength);\r
1898 RequestPtr += StrLength;\r
558b99a6 1899\r
09991304
NH
1900 if (HttpHdr != NULL) {\r
1901 //\r
1902 // Construct header\r
1903 //\r
1904 CopyMem (RequestPtr, HttpHdr, HttpHdrSize);\r
1905 RequestPtr += HttpHdrSize;\r
1906 }\r
1907 }\r
558b99a6 1908\r
e297a0a4
NH
1909 //\r
1910 // Construct body\r
1911 //\r
1912 if (Message->Body != NULL) {\r
1913 CopyMem (RequestPtr, Message->Body, Message->BodyLength);\r
1914 RequestPtr += Message->BodyLength;\r
1915 }\r
1916\r
558b99a6
GB
1917 //\r
1918 // Done\r
1919 //\r
e297a0a4 1920 (*RequestMsgSize) = (UINTN)(RequestPtr) - (UINTN)(*RequestMsg);\r
558b99a6
GB
1921 Success = TRUE;\r
1922\r
1923Exit:\r
1924\r
1925 if (!Success) {\r
e297a0a4
NH
1926 if (*RequestMsg != NULL) {\r
1927 FreePool (*RequestMsg);\r
558b99a6 1928 }\r
e297a0a4 1929 *RequestMsg = NULL;\r
558b99a6
GB
1930 return Status;\r
1931 }\r
1932\r
1933 if (HttpHdr != NULL) {\r
1934 FreePool (HttpHdr);\r
1935 }\r
1936\r
1937 return EFI_SUCCESS;\r
1938}\r
1939\r
1940/**\r
1941 Translate the status code in HTTP message to EFI_HTTP_STATUS_CODE defined\r
1942 in UEFI 2.5 specification.\r
1943\r
1944 @param[in] StatusCode The status code value in HTTP message.\r
1945\r
1946 @return Value defined in EFI_HTTP_STATUS_CODE .\r
1947\r
1948**/\r
1949EFI_HTTP_STATUS_CODE\r
1950EFIAPI\r
1951HttpMappingToStatusCode (\r
1952 IN UINTN StatusCode\r
1953 )\r
1954{\r
1955 switch (StatusCode) {\r
1956 case 100:\r
1957 return HTTP_STATUS_100_CONTINUE;\r
1958 case 101:\r
1959 return HTTP_STATUS_101_SWITCHING_PROTOCOLS;\r
1960 case 200:\r
1961 return HTTP_STATUS_200_OK;\r
1962 case 201:\r
1963 return HTTP_STATUS_201_CREATED;\r
1964 case 202:\r
1965 return HTTP_STATUS_202_ACCEPTED;\r
1966 case 203:\r
1967 return HTTP_STATUS_203_NON_AUTHORITATIVE_INFORMATION;\r
1968 case 204:\r
1969 return HTTP_STATUS_204_NO_CONTENT;\r
1970 case 205:\r
1971 return HTTP_STATUS_205_RESET_CONTENT;\r
1972 case 206:\r
1973 return HTTP_STATUS_206_PARTIAL_CONTENT;\r
1974 case 300:\r
d7de19ce 1975 return HTTP_STATUS_300_MULTIPLE_CHOICES;\r
558b99a6
GB
1976 case 301:\r
1977 return HTTP_STATUS_301_MOVED_PERMANENTLY;\r
1978 case 302:\r
1979 return HTTP_STATUS_302_FOUND;\r
1980 case 303:\r
1981 return HTTP_STATUS_303_SEE_OTHER;\r
1982 case 304:\r
1983 return HTTP_STATUS_304_NOT_MODIFIED;\r
1984 case 305:\r
1985 return HTTP_STATUS_305_USE_PROXY;\r
1986 case 307:\r
1987 return HTTP_STATUS_307_TEMPORARY_REDIRECT;\r
7dec14b7 1988 case 308:\r
1989 return HTTP_STATUS_308_PERMANENT_REDIRECT;\r
558b99a6
GB
1990 case 400:\r
1991 return HTTP_STATUS_400_BAD_REQUEST;\r
1992 case 401:\r
1993 return HTTP_STATUS_401_UNAUTHORIZED;\r
1994 case 402:\r
1995 return HTTP_STATUS_402_PAYMENT_REQUIRED;\r
1996 case 403:\r
1997 return HTTP_STATUS_403_FORBIDDEN;\r
1998 case 404:\r
1999 return HTTP_STATUS_404_NOT_FOUND;\r
2000 case 405:\r
2001 return HTTP_STATUS_405_METHOD_NOT_ALLOWED;\r
2002 case 406:\r
2003 return HTTP_STATUS_406_NOT_ACCEPTABLE;\r
2004 case 407:\r
2005 return HTTP_STATUS_407_PROXY_AUTHENTICATION_REQUIRED;\r
2006 case 408:\r
2007 return HTTP_STATUS_408_REQUEST_TIME_OUT;\r
2008 case 409:\r
2009 return HTTP_STATUS_409_CONFLICT;\r
2010 case 410:\r
2011 return HTTP_STATUS_410_GONE;\r
2012 case 411:\r
2013 return HTTP_STATUS_411_LENGTH_REQUIRED;\r
2014 case 412:\r
2015 return HTTP_STATUS_412_PRECONDITION_FAILED;\r
2016 case 413:\r
2017 return HTTP_STATUS_413_REQUEST_ENTITY_TOO_LARGE;\r
2018 case 414:\r
2019 return HTTP_STATUS_414_REQUEST_URI_TOO_LARGE;\r
2020 case 415:\r
2021 return HTTP_STATUS_415_UNSUPPORTED_MEDIA_TYPE;\r
2022 case 416:\r
2023 return HTTP_STATUS_416_REQUESTED_RANGE_NOT_SATISFIED;\r
2024 case 417:\r
2025 return HTTP_STATUS_417_EXPECTATION_FAILED;\r
2026 case 500:\r
2027 return HTTP_STATUS_500_INTERNAL_SERVER_ERROR;\r
2028 case 501:\r
2029 return HTTP_STATUS_501_NOT_IMPLEMENTED;\r
2030 case 502:\r
2031 return HTTP_STATUS_502_BAD_GATEWAY;\r
2032 case 503:\r
2033 return HTTP_STATUS_503_SERVICE_UNAVAILABLE;\r
2034 case 504:\r
2035 return HTTP_STATUS_504_GATEWAY_TIME_OUT;\r
2036 case 505:\r
2037 return HTTP_STATUS_505_HTTP_VERSION_NOT_SUPPORTED;\r
2038\r
2039 default:\r
2040 return HTTP_STATUS_UNSUPPORTED_STATUS;\r
2041 }\r
2042}\r
2043\r
2044/**\r
2045 Check whether header field called FieldName is in DeleteList.\r
2046\r
2047 @param[in] DeleteList Pointer to array of key/value header pairs.\r
2048 @param[in] DeleteCount The number of header pairs.\r
2049 @param[in] FieldName Pointer to header field's name.\r
2050\r
2051 @return TRUE if FieldName is not in DeleteList, that means this header field is valid.\r
2052 @return FALSE if FieldName is in DeleteList, that means this header field is invalid.\r
2053\r
2054**/\r
2055BOOLEAN\r
2056EFIAPI\r
2057HttpIsValidHttpHeader (\r
2058 IN CHAR8 *DeleteList[],\r
2059 IN UINTN DeleteCount,\r
2060 IN CHAR8 *FieldName\r
2061 )\r
2062{\r
2063 UINTN Index;\r
2064\r
0efeec8e
JW
2065 if (FieldName == NULL) {\r
2066 return FALSE;\r
2067 }\r
2068\r
558b99a6 2069 for (Index = 0; Index < DeleteCount; Index++) {\r
0efeec8e
JW
2070 if (DeleteList[Index] == NULL) {\r
2071 continue;\r
2072 }\r
2073 \r
558b99a6
GB
2074 if (AsciiStrCmp (FieldName, DeleteList[Index]) == 0) {\r
2075 return FALSE;\r
2076 }\r
2077 }\r
2078\r
2079 return TRUE;\r
2080}\r
2081\r