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Side by Side Diff: pdf/document_loader.cc

Issue 2456653002: Revert of Improve linearized pdf load/show time. (Closed)
Patch Set: Created 4 years, 1 month ago
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1 // Copyright (c) 2010 The Chromium Authors. All rights reserved. 1 // Copyright (c) 2010 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include "pdf/document_loader.h" 5 #include "pdf/document_loader.h"
6 6
7 #include <stddef.h> 7 #include <stddef.h>
8 #include <stdint.h> 8 #include <stdint.h>
9 9
10 #include <algorithm>
11
12 #include "base/logging.h" 10 #include "base/logging.h"
13 #include "base/memory/ptr_util.h"
14 #include "base/numerics/safe_math.h"
15 #include "base/strings/string_util.h" 11 #include "base/strings/string_util.h"
16 #include "pdf/url_loader_wrapper.h" 12 #include "net/http/http_util.h"
17 #include "ppapi/c/pp_errors.h" 13 #include "ppapi/c/pp_errors.h"
18 #include "ui/gfx/range/range.h" 14 #include "ppapi/cpp/url_loader.h"
15 #include "ppapi/cpp/url_request_info.h"
16 #include "ppapi/cpp/url_response_info.h"
19 17
20 namespace chrome_pdf { 18 namespace chrome_pdf {
21 19
22 namespace { 20 namespace {
23 21
24 // The distance from last received chunk, when we wait requesting data, using 22 // If the headers have a byte-range response, writes the start and end
25 // current connection (like playing a cassette tape) and do not send new range 23 // positions and returns true if at least the start position was parsed.
26 // request (like rewind a cassette tape, and continue playing after). 24 // The end position will be set to 0 if it was not found or parsed from the
27 // Experimentally chosen value. 25 // response.
28 const int kChunkCloseDistance = 10; 26 // Returns false if not even a start position could be parsed.
27 bool GetByteRange(const std::string& headers, uint32_t* start, uint32_t* end) {
28 net::HttpUtil::HeadersIterator it(headers.begin(), headers.end(), "\n");
29 while (it.GetNext()) {
30 if (base::LowerCaseEqualsASCII(it.name(), "content-range")) {
31 std::string range = it.values().c_str();
32 if (base::StartsWith(range, "bytes",
33 base::CompareCase::INSENSITIVE_ASCII)) {
34 range = range.substr(strlen("bytes"));
35 std::string::size_type pos = range.find('-');
36 std::string range_end;
37 if (pos != std::string::npos)
38 range_end = range.substr(pos + 1);
39 base::TrimWhitespaceASCII(range, base::TRIM_LEADING, &range);
40 base::TrimWhitespaceASCII(range_end, base::TRIM_LEADING, &range_end);
41 *start = atoi(range.c_str());
42 *end = atoi(range_end.c_str());
43 return true;
44 }
45 }
46 }
47 return false;
48 }
49
50 // If the headers have a multi-part response, returns the boundary name.
51 // Otherwise returns an empty string.
52 std::string GetMultiPartBoundary(const std::string& headers) {
53 net::HttpUtil::HeadersIterator it(headers.begin(), headers.end(), "\n");
54 while (it.GetNext()) {
55 if (base::LowerCaseEqualsASCII(it.name(), "content-type")) {
56 std::string type = base::ToLowerASCII(it.values());
57 if (base::StartsWith(type, "multipart/", base::CompareCase::SENSITIVE)) {
58 const char* boundary = strstr(type.c_str(), "boundary=");
59 if (!boundary) {
60 NOTREACHED();
61 break;
62 }
63
64 return std::string(boundary + 9);
65 }
66 }
67 }
68 return std::string();
69 }
29 70
30 bool IsValidContentType(const std::string& type) { 71 bool IsValidContentType(const std::string& type) {
31 return (base::EndsWith(type, "/pdf", base::CompareCase::INSENSITIVE_ASCII) || 72 return (base::EndsWith(type, "/pdf", base::CompareCase::INSENSITIVE_ASCII) ||
32 base::EndsWith(type, ".pdf", base::CompareCase::INSENSITIVE_ASCII) || 73 base::EndsWith(type, ".pdf", base::CompareCase::INSENSITIVE_ASCII) ||
33 base::EndsWith(type, "/x-pdf", 74 base::EndsWith(type, "/x-pdf",
34 base::CompareCase::INSENSITIVE_ASCII) || 75 base::CompareCase::INSENSITIVE_ASCII) ||
35 base::EndsWith(type, "/*", base::CompareCase::INSENSITIVE_ASCII) || 76 base::EndsWith(type, "/*", base::CompareCase::INSENSITIVE_ASCII) ||
36 base::EndsWith(type, "/acrobat", 77 base::EndsWith(type, "/acrobat",
37 base::CompareCase::INSENSITIVE_ASCII) || 78 base::CompareCase::INSENSITIVE_ASCII) ||
38 base::EndsWith(type, "/unknown", 79 base::EndsWith(type, "/unknown",
39 base::CompareCase::INSENSITIVE_ASCII)); 80 base::CompareCase::INSENSITIVE_ASCII));
40 } 81 }
41 82
42 } // namespace 83 } // namespace
43 84
44 DocumentLoader::Client::~Client() { 85 DocumentLoader::Client::~Client() {
45 } 86 }
46 87
47 DocumentLoader::Chunk::Chunk() {} 88 DocumentLoader::DocumentLoader(Client* client)
48 89 : client_(client), partial_document_(false), request_pending_(false),
49 DocumentLoader::Chunk::~Chunk() {} 90 current_pos_(0), current_chunk_size_(0), current_chunk_read_(0),
50 91 document_size_(0), header_request_(true), is_multipart_(false) {
51 void DocumentLoader::Chunk::Clear() { 92 loader_factory_.Initialize(this);
52 chunk_index = 0;
53 data_size = 0;
54 chunk_data.reset();
55 } 93 }
56 94
57 DocumentLoader::DocumentLoader(Client* client)
58 : client_(client), loader_factory_(this) {}
59
60 DocumentLoader::~DocumentLoader() { 95 DocumentLoader::~DocumentLoader() {
61 } 96 }
62 97
63 bool DocumentLoader::Init(std::unique_ptr<URLLoaderWrapper> loader, 98 bool DocumentLoader::Init(const pp::URLLoader& loader,
64 const std::string& url) { 99 const std::string& url,
100 const std::string& headers) {
65 DCHECK(url_.empty()); 101 DCHECK(url_.empty());
66 DCHECK(!loader_); 102 url_ = url;
103 loader_ = loader;
67 104
68 std::string type = loader->GetContentType(); 105 std::string response_headers;
106 if (!headers.empty()) {
107 response_headers = headers;
108 } else {
109 pp::URLResponseInfo response = loader_.GetResponseInfo();
110 pp::Var headers_var = response.GetHeaders();
111
112 if (headers_var.is_string()) {
113 response_headers = headers_var.AsString();
114 }
115 }
116
117 bool accept_ranges_bytes = false;
118 bool content_encoded = false;
119 uint32_t content_length = 0;
120 std::string type;
121 std::string disposition;
69 122
70 // This happens for PDFs not loaded from http(s) sources. 123 // This happens for PDFs not loaded from http(s) sources.
71 if (type == "text/plain") { 124 if (response_headers == "Content-Type: text/plain") {
72 if (!base::StartsWith(url, "http://", 125 if (!base::StartsWith(url, "http://",
73 base::CompareCase::INSENSITIVE_ASCII) && 126 base::CompareCase::INSENSITIVE_ASCII) &&
74 !base::StartsWith(url, "https://", 127 !base::StartsWith(url, "https://",
75 base::CompareCase::INSENSITIVE_ASCII)) { 128 base::CompareCase::INSENSITIVE_ASCII)) {
76 type = "application/pdf"; 129 type = "application/pdf";
77 } 130 }
78 } 131 }
132 if (type.empty() && !response_headers.empty()) {
133 net::HttpUtil::HeadersIterator it(response_headers.begin(),
134 response_headers.end(), "\n");
135 while (it.GetNext()) {
136 if (base::LowerCaseEqualsASCII(it.name(), "content-length")) {
137 content_length = atoi(it.values().c_str());
138 } else if (base::LowerCaseEqualsASCII(it.name(), "accept-ranges")) {
139 accept_ranges_bytes = base::LowerCaseEqualsASCII(it.values(), "bytes");
140 } else if (base::LowerCaseEqualsASCII(it.name(), "content-encoding")) {
141 content_encoded = true;
142 } else if (base::LowerCaseEqualsASCII(it.name(), "content-type")) {
143 type = it.values();
144 size_t semi_colon_pos = type.find(';');
145 if (semi_colon_pos != std::string::npos) {
146 type = type.substr(0, semi_colon_pos);
147 }
148 TrimWhitespaceASCII(type, base::TRIM_ALL, &type);
149 } else if (base::LowerCaseEqualsASCII(it.name(), "content-disposition")) {
150 disposition = it.values();
151 }
152 }
153 }
79 if (!type.empty() && !IsValidContentType(type)) 154 if (!type.empty() && !IsValidContentType(type))
80 return false; 155 return false;
81 156 if (base::StartsWith(disposition, "attachment",
82 if (base::StartsWith(loader->GetContentDisposition(), "attachment",
83 base::CompareCase::INSENSITIVE_ASCII)) 157 base::CompareCase::INSENSITIVE_ASCII))
84 return false; 158 return false;
85 159
86 url_ = url; 160 if (content_length > 0)
87 loader_ = std::move(loader); 161 chunk_stream_.Preallocate(content_length);
88 162
89 if (!loader_->IsContentEncoded()) { 163 document_size_ = content_length;
90 chunk_stream_.set_eof_pos(std::max(0, loader_->GetContentLength())); 164 requests_count_ = 0;
165
166 // Enable partial loading only if file size is above the threshold.
167 // It will allow avoiding latency for multiple requests.
168 if (content_length > kMinFileSize &&
169 accept_ranges_bytes &&
170 !content_encoded) {
171 LoadPartialDocument();
172 } else {
173 LoadFullDocument();
91 } 174 }
92 int64_t bytes_received = 0;
93 int64_t total_bytes_to_be_received = 0;
94 if (!chunk_stream_.eof_pos() &&
95 loader_->GetDownloadProgress(&bytes_received,
96 &total_bytes_to_be_received)) {
97 chunk_stream_.set_eof_pos(
98 std::max(0, static_cast<int>(total_bytes_to_be_received)));
99 }
100
101 SetPartialLoadingEnabled(
102 partial_loading_enabled_ &&
103 !base::StartsWith(url, "file://", base::CompareCase::INSENSITIVE_ASCII) &&
104 loader_->IsAcceptRangesBytes() && !loader_->IsContentEncoded() &&
105 GetDocumentSize());
106
107 ReadMore();
108 return true; 175 return true;
109 } 176 }
110 177
111 bool DocumentLoader::IsDocumentComplete() const { 178 void DocumentLoader::LoadPartialDocument() {
112 return chunk_stream_.IsComplete(); 179 // The current request is a full request (not a range request) so it starts at
180 // 0 and ends at |document_size_|.
181 current_chunk_size_ = document_size_;
182 current_pos_ = 0;
183 current_request_offset_ = 0;
184 current_request_size_ = 0;
185 current_request_extended_size_ = document_size_;
186 request_pending_ = true;
187
188 partial_document_ = true;
189 header_request_ = true;
190 ReadMore();
113 } 191 }
114 192
115 uint32_t DocumentLoader::GetDocumentSize() const { 193 void DocumentLoader::LoadFullDocument() {
116 return chunk_stream_.eof_pos(); 194 partial_document_ = false;
195 chunk_buffer_.clear();
196 ReadMore();
197 }
198
199 bool DocumentLoader::IsDocumentComplete() const {
200 if (document_size_ == 0) // Document size unknown.
201 return false;
202 return IsDataAvailable(0, document_size_);
203 }
204
205 uint32_t DocumentLoader::GetAvailableData() const {
206 if (document_size_ == 0) { // If document size is unknown.
207 return current_pos_;
208 }
209
210 std::vector<std::pair<size_t, size_t> > ranges;
211 chunk_stream_.GetMissedRanges(0, document_size_, &ranges);
212 uint32_t available = document_size_;
213 for (const auto& range : ranges)
214 available -= range.second;
215 return available;
117 } 216 }
118 217
119 void DocumentLoader::ClearPendingRequests() { 218 void DocumentLoader::ClearPendingRequests() {
120 pending_requests_.Clear(); 219 pending_requests_.erase(pending_requests_.begin(),
220 pending_requests_.end());
121 } 221 }
122 222
123 bool DocumentLoader::GetBlock(uint32_t position, 223 bool DocumentLoader::GetBlock(uint32_t position,
124 uint32_t size, 224 uint32_t size,
125 void* buf) const { 225 void* buf) const {
126 base::CheckedNumeric<uint32_t> addition_result = position; 226 return chunk_stream_.ReadData(position, size, buf);
127 addition_result += size;
128 if (!addition_result.IsValid())
129 return false;
130 return chunk_stream_.ReadData(
131 gfx::Range(position, addition_result.ValueOrDie()), buf);
132 } 227 }
133 228
134 bool DocumentLoader::IsDataAvailable(uint32_t position, uint32_t size) const { 229 bool DocumentLoader::IsDataAvailable(uint32_t position, uint32_t size) const {
135 base::CheckedNumeric<uint32_t> addition_result = position; 230 return chunk_stream_.IsRangeAvailable(position, size);
136 addition_result += size;
137 if (!addition_result.IsValid())
138 return false;
139 return chunk_stream_.IsRangeAvailable(
140 gfx::Range(position, addition_result.ValueOrDie()));
141 } 231 }
142 232
143 void DocumentLoader::RequestData(uint32_t position, uint32_t size) { 233 void DocumentLoader::RequestData(uint32_t position, uint32_t size) {
144 if (!size || IsDataAvailable(position, size)) { 234 DCHECK(partial_document_);
145 return;
146 }
147 {
148 // Check integer overflow.
149 base::CheckedNumeric<uint32_t> addition_result = position;
150 addition_result += size;
151 if (!addition_result.IsValid())
152 return;
153 }
154
155 if (GetDocumentSize() && (position + size > GetDocumentSize())) {
156 return;
157 }
158 235
159 // We have some artefact request from 236 // We have some artefact request from
160 // PDFiumEngine::OnDocumentComplete() -> FPDFAvail_IsPageAvail after 237 // PDFiumEngine::OnDocumentComplete() -> FPDFAvail_IsPageAvail after
161 // document is complete. 238 // document is complete.
162 // We need this fix in PDFIum. Adding this as a work around. 239 // We need this fix in PDFIum. Adding this as a work around.
163 // Bug: http://code.google.com/p/chromium/issues/detail?id=79996 240 // Bug: http://code.google.com/p/chromium/issues/detail?id=79996
164 // Test url: 241 // Test url:
165 // http://www.icann.org/en/correspondence/holtzman-to-jeffrey-02mar11-en.pdf 242 // http://www.icann.org/en/correspondence/holtzman-to-jeffrey-02mar11-en.pdf
166 if (!loader_) 243 if (IsDocumentComplete())
167 return; 244 return;
168 245
169 RangeSet requested_chunks(chunk_stream_.GetChunksRange(position, size)); 246 pending_requests_.push_back(std::pair<size_t, size_t>(position, size));
170 requested_chunks.Subtract(chunk_stream_.filled_chunks()); 247 DownloadPendingRequests();
171 if (requested_chunks.IsEmpty()) { 248 }
249
250 void DocumentLoader::RemoveCompletedRanges() {
251 // Split every request that has been partially downloaded already into smaller
252 // requests.
253 std::vector<std::pair<size_t, size_t> > ranges;
254 auto it = pending_requests_.begin();
255 while (it != pending_requests_.end()) {
256 chunk_stream_.GetMissedRanges(it->first, it->second, &ranges);
257 pending_requests_.insert(it, ranges.begin(), ranges.end());
258 ranges.clear();
259 pending_requests_.erase(it++);
260 }
261 }
262
263 void DocumentLoader::DownloadPendingRequests() {
264 if (request_pending_)
265 return;
266
267 uint32_t pos;
268 uint32_t size;
269 if (pending_requests_.empty()) {
270 // If the document is not complete and we have no outstanding requests,
271 // download what's left for as long as no other request gets added to
272 // |pending_requests_|.
273 pos = chunk_stream_.GetFirstMissingByte();
274 if (pos >= document_size_) {
275 // We're done downloading the document.
276 return;
277 }
278 // Start with size 0, we'll set |current_request_extended_size_| to > 0.
279 // This way this request will get cancelled as soon as the renderer wants
280 // another portion of the document.
281 size = 0;
282 } else {
283 RemoveCompletedRanges();
284
285 pos = pending_requests_.front().first;
286 size = pending_requests_.front().second;
287 if (IsDataAvailable(pos, size)) {
288 ReadComplete();
289 return;
290 }
291 }
292
293 size_t last_byte_before = chunk_stream_.GetFirstMissingByteInInterval(pos);
294 if (size < kDefaultRequestSize) {
295 // Try to extend before pos, up to size |kDefaultRequestSize|.
296 if (pos + size - last_byte_before > kDefaultRequestSize) {
297 pos += size - kDefaultRequestSize;
298 size = kDefaultRequestSize;
299 } else {
300 size += pos - last_byte_before;
301 pos = last_byte_before;
302 }
303 }
304 if (pos - last_byte_before < kDefaultRequestSize) {
305 // Don't leave a gap smaller than |kDefaultRequestSize|.
306 size += pos - last_byte_before;
307 pos = last_byte_before;
308 }
309
310 current_request_offset_ = pos;
311 current_request_size_ = size;
312
313 // Extend the request until the next downloaded byte or the end of the
314 // document.
315 size_t last_missing_byte =
316 chunk_stream_.GetLastMissingByteInInterval(pos + size - 1);
317 current_request_extended_size_ = last_missing_byte - pos + 1;
318
319 request_pending_ = true;
320
321 // Start downloading first pending request.
322 loader_.Close();
323 loader_ = client_->CreateURLLoader();
324 pp::CompletionCallback callback =
325 loader_factory_.NewCallback(&DocumentLoader::DidOpen);
326 pp::URLRequestInfo request = GetRequest(pos, current_request_extended_size_);
327 requests_count_++;
328 int rv = loader_.Open(request, callback);
329 if (rv != PP_OK_COMPLETIONPENDING)
330 callback.Run(rv);
331 }
332
333 pp::URLRequestInfo DocumentLoader::GetRequest(uint32_t position,
334 uint32_t size) const {
335 pp::URLRequestInfo request(client_->GetPluginInstance());
336 request.SetURL(url_);
337 request.SetMethod("GET");
338 request.SetFollowRedirects(false);
339 request.SetCustomReferrerURL(url_);
340
341 const size_t kBufSize = 100;
342 char buf[kBufSize];
343 // According to rfc2616, byte range specifies position of the first and last
344 // bytes in the requested range inclusively. Therefore we should subtract 1
345 // from the position + size, to get index of the last byte that needs to be
346 // downloaded.
347 base::snprintf(buf, kBufSize, "Range: bytes=%d-%d", position,
348 position + size - 1);
349 pp::Var header(buf);
350 request.SetHeaders(header);
351
352 return request;
353 }
354
355 void DocumentLoader::DidOpen(int32_t result) {
356 if (result != PP_OK) {
172 NOTREACHED(); 357 NOTREACHED();
173 return; 358 return;
174 } 359 }
175 pending_requests_.Union(requested_chunks); 360
176 } 361 int32_t http_code = loader_.GetResponseInfo().GetStatusCode();
177
178 void DocumentLoader::SetPartialLoadingEnabled(bool enabled) {
179 partial_loading_enabled_ = enabled;
180 if (!enabled) {
181 is_partial_loader_active_ = false;
182 }
183 }
184
185 bool DocumentLoader::ShouldCancelLoading() const {
186 if (!loader_)
187 return true;
188 if (!partial_loading_enabled_ || pending_requests_.IsEmpty())
189 return false;
190 const gfx::Range current_range(chunk_.chunk_index,
191 chunk_.chunk_index + kChunkCloseDistance);
192 return !pending_requests_.Intersects(current_range);
193 }
194
195 void DocumentLoader::ContinueDownload() {
196 if (!ShouldCancelLoading())
197 return ReadMore();
198 DCHECK(partial_loading_enabled_);
199 DCHECK(!IsDocumentComplete());
200 DCHECK(GetDocumentSize());
201
202 const uint32_t range_start =
203 pending_requests_.IsEmpty() ? 0 : pending_requests_.First().start();
204 RangeSet candidates_for_request(
205 gfx::Range(range_start, chunk_stream_.total_chunks_count()));
206 candidates_for_request.Subtract(chunk_stream_.filled_chunks());
207 DCHECK(!candidates_for_request.IsEmpty());
208 gfx::Range next_request = candidates_for_request.First();
209 if (candidates_for_request.Size() == 1 &&
210 next_request.length() < kChunkCloseDistance) {
211 // We have only request at the end, try to enlarge it to improve back order
212 // reading.
213 const int additional_chunks_count =
214 kChunkCloseDistance - next_request.length();
215 int new_start = std::max(
216 0, static_cast<int>(next_request.start()) - additional_chunks_count);
217 candidates_for_request =
218 RangeSet(gfx::Range(new_start, next_request.end()));
219 candidates_for_request.Subtract(chunk_stream_.filled_chunks());
220 next_request = candidates_for_request.Last();
221 }
222
223 loader_.reset();
224 chunk_.Clear();
225 if (!is_partial_loader_active_) {
226 client_->CancelBrowserDownload();
227 is_partial_loader_active_ = true;
228 }
229
230 const uint32_t start = next_request.start() * DataStream::kChunkSize;
231 const uint32_t length =
232 std::min(chunk_stream_.eof_pos() - start,
233 next_request.length() * DataStream::kChunkSize);
234
235 loader_ = client_->CreateURLLoader();
236
237 loader_->OpenRange(
238 url_, url_, start, length,
239 loader_factory_.NewCallback(&DocumentLoader::DidOpenPartial));
240 }
241
242 void DocumentLoader::DidOpenPartial(int32_t result) {
243 if (result != PP_OK) {
244 return ReadComplete();
245 }
246
247 int32_t http_code = loader_->GetStatusCode();
248 if (http_code >= 400 && http_code < 500) { 362 if (http_code >= 400 && http_code < 500) {
249 // Error accessing resource. 4xx error indicate subsequent requests 363 // Error accessing resource. 4xx error indicate subsequent requests
250 // will fail too. 364 // will fail too.
251 // E.g. resource has been removed from the server while loading it. 365 // E.g. resource has been removed from the server while loading it.
252 return ReadComplete(); 366 // https://code.google.com/p/chromium/issues/detail?id=414827
253 } 367 return;
254 368 }
255 // Leave position untouched for multiparted responce for now, when we read the 369
256 // data we'll get it. 370 is_multipart_ = false;
257 if (!loader_->IsMultipart()) { 371 current_chunk_size_ = 0;
372 current_chunk_read_ = 0;
373
374 pp::Var headers_var = loader_.GetResponseInfo().GetHeaders();
375 std::string headers;
376 if (headers_var.is_string())
377 headers = headers_var.AsString();
378
379 std::string boundary = GetMultiPartBoundary(headers);
380 if (!boundary.empty()) {
381 // Leave position untouched for now, when we read the data we'll get it.
382 is_multipart_ = true;
383 multipart_boundary_ = boundary;
384 } else {
258 // Need to make sure that the server returned a byte-range, since it's 385 // Need to make sure that the server returned a byte-range, since it's
259 // possible for a server to just ignore our byte-range request and just 386 // possible for a server to just ignore our byte-range request and just
260 // return the entire document even if it supports byte-range requests. 387 // return the entire document even if it supports byte-range requests.
261 // i.e. sniff response to 388 // i.e. sniff response to
262 // http://www.act.org/compass/sample/pdf/geometry.pdf 389 // http://www.act.org/compass/sample/pdf/geometry.pdf
263 int start_pos = 0; 390 current_pos_ = 0;
264 int end_pos = 0; 391 uint32_t start_pos, end_pos;
265 if (loader_->GetByteRange(&start_pos, &end_pos)) { 392 if (GetByteRange(headers, &start_pos, &end_pos)) {
266 if (start_pos % DataStream::kChunkSize != 0) { 393 current_pos_ = start_pos;
267 return ReadComplete(); 394 if (end_pos && end_pos > start_pos)
395 current_chunk_size_ = end_pos - start_pos + 1;
396 } else {
397 partial_document_ = false;
398 }
399 }
400
401 ReadMore();
402 }
403
404 void DocumentLoader::ReadMore() {
405 pp::CompletionCallback callback =
406 loader_factory_.NewCallback(&DocumentLoader::DidRead);
407 int rv = loader_.ReadResponseBody(buffer_, sizeof(buffer_), callback);
408 if (rv != PP_OK_COMPLETIONPENDING)
409 callback.Run(rv);
410 }
411
412 void DocumentLoader::DidRead(int32_t result) {
413 if (result <= 0) {
414 // If |result| == PP_OK, the document was loaded, otherwise an error was
415 // encountered. Either way we want to stop processing the response. In the
416 // case where an error occurred, the renderer will detect that we're missing
417 // data and will display a message.
418 ReadComplete();
419 return;
420 }
421
422 char* start = buffer_;
423 size_t length = result;
424 if (is_multipart_ && result > 2) {
425 for (int i = 2; i < result; ++i) {
426 if ((buffer_[i - 1] == '\n' && buffer_[i - 2] == '\n') ||
427 (i >= 4 && buffer_[i - 1] == '\n' && buffer_[i - 2] == '\r' &&
428 buffer_[i - 3] == '\n' && buffer_[i - 4] == '\r')) {
429 uint32_t start_pos, end_pos;
430 if (GetByteRange(std::string(buffer_, i), &start_pos, &end_pos)) {
431 current_pos_ = start_pos;
432 start += i;
433 length -= i;
434 if (end_pos && end_pos > start_pos)
435 current_chunk_size_ = end_pos - start_pos + 1;
436 }
437 break;
268 } 438 }
269 DCHECK(!chunk_.chunk_data); 439 }
270 chunk_.chunk_index = chunk_stream_.GetChunkIndex(start_pos); 440
441 // Reset this flag so we don't look inside the buffer in future calls of
442 // DidRead for this response. Note that this code DOES NOT handle multi-
443 // part responses with more than one part (we don't issue them at the
444 // moment, so they shouldn't arrive).
445 is_multipart_ = false;
446 }
447
448 if (current_chunk_size_ && current_chunk_read_ + length > current_chunk_size_)
449 length = current_chunk_size_ - current_chunk_read_;
450
451 if (length) {
452 if (document_size_ > 0) {
453 chunk_stream_.WriteData(current_pos_, start, length);
271 } else { 454 } else {
272 SetPartialLoadingEnabled(false); 455 // If we did not get content-length in the response, we can't
273 } 456 // preallocate buffer for the entire document. Resizing array causing
274 return ContinueDownload(); 457 // memory fragmentation issues on the large files and OOM exceptions.
275 } 458 // To fix this, we collect all chunks of the file to the list and
276 // Needs more data to calc chunk index. 459 // concatenate them together after request is complete.
277 return ReadMore(); 460 std::vector<unsigned char> buf(length);
278 } 461 memcpy(buf.data(), start, length);
279 462 chunk_buffer_.push_back(std::move(buf));
280 void DocumentLoader::ReadMore() { 463 }
281 loader_->ReadResponseBody( 464 current_pos_ += length;
282 buffer_, sizeof(buffer_), 465 current_chunk_read_ += length;
283 loader_factory_.NewCallback(&DocumentLoader::DidRead)); 466 client_->OnNewDataAvailable();
284 } 467 }
285 468
286 void DocumentLoader::DidRead(int32_t result) { 469 // Only call the renderer if we allow partial loading.
287 if (result < 0) { 470 if (!partial_document_) {
288 // An error occurred. 471 ReadMore();
289 // The renderer will detect that we're missing data and will display a 472 return;
290 // message. 473 }
291 return ReadComplete(); 474
292 } 475 UpdateRendering();
293 if (result == 0) { 476 RemoveCompletedRanges();
294 loader_.reset(); 477
295 if (!is_partial_loader_active_) 478 if (!pending_requests_.empty()) {
296 return ReadComplete(); 479 // If there are pending requests and the current content we're downloading
297 return ContinueDownload(); 480 // doesn't satisfy any of these requests, cancel the current request to
298 } 481 // fullfill those more important requests.
299 if (loader_->IsMultipart()) { 482 bool satisfying_pending_request =
300 int start_pos = 0; 483 SatisfyingRequest(current_request_offset_, current_request_size_);
301 int end_pos = 0; 484 for (const auto& pending_request : pending_requests_) {
302 if (!loader_->GetByteRange(&start_pos, &end_pos)) { 485 if (SatisfyingRequest(pending_request.first, pending_request.second)) {
303 return ReadComplete(); 486 satisfying_pending_request = true;
304 } 487 break;
305 DCHECK(!chunk_.chunk_data); 488 }
306 chunk_.chunk_index = chunk_stream_.GetChunkIndex(start_pos); 489 }
307 } 490 // Cancel the request as it's not satisfying any request from the
308 if (!SaveChunkData(buffer_, result)) { 491 // renderer, unless the current request is finished in which case we let
309 return ReadMore(); 492 // it finish cleanly.
310 } 493 if (!satisfying_pending_request &&
311 if (IsDocumentComplete()) { 494 current_pos_ <
312 return ReadComplete(); 495 current_request_offset_ + current_request_extended_size_) {
313 } 496 loader_.Close();
314 return ContinueDownload(); 497 }
315 } 498 }
316 499
317 bool DocumentLoader::SaveChunkData(char* input, uint32_t input_size) { 500 ReadMore();
318 count_of_bytes_received_ += input_size; 501 }
319 bool chunk_saved = false; 502
320 bool loading_pending_request = pending_requests_.Contains(chunk_.chunk_index); 503 bool DocumentLoader::SatisfyingRequest(size_t offset, size_t size) const {
321 while (input_size > 0) { 504 return offset <= current_pos_ + kDefaultRequestSize &&
322 if (chunk_.data_size == 0) { 505 current_pos_ < offset + size;
323 chunk_.chunk_data = base::MakeUnique<DataStream::ChunkData>();
324 }
325 const uint32_t new_chunk_data_len =
326 std::min(DataStream::kChunkSize - chunk_.data_size, input_size);
327 memcpy(chunk_.chunk_data->data() + chunk_.data_size, input,
328 new_chunk_data_len);
329 chunk_.data_size += new_chunk_data_len;
330 if (chunk_.data_size == DataStream::kChunkSize ||
331 chunk_stream_.eof_pos() ==
332 chunk_.chunk_index * DataStream::kChunkSize + chunk_.data_size) {
333 chunk_stream_.SetChunkData(chunk_.chunk_index,
334 std::move(chunk_.chunk_data));
335 pending_requests_.Subtract(
336 gfx::Range(chunk_.chunk_index, chunk_.chunk_index + 1));
337 chunk_.data_size = 0;
338 ++(chunk_.chunk_index);
339 chunk_saved = true;
340 }
341
342 input += new_chunk_data_len;
343 input_size -= new_chunk_data_len;
344 }
345
346 if (IsDocumentComplete())
347 return true;
348
349 if (!chunk_saved)
350 return false;
351
352 if (loading_pending_request &&
353 !pending_requests_.Contains(chunk_.chunk_index)) {
354 client_->OnPendingRequestComplete();
355 }
356 client_->OnNewDataAvailable();
357 return true;
358 } 506 }
359 507
360 void DocumentLoader::ReadComplete() { 508 void DocumentLoader::ReadComplete() {
361 if (!GetDocumentSize()) { 509 if (!partial_document_) {
362 uint32_t eof = 510 if (document_size_ == 0) {
363 chunk_.chunk_index * DataStream::kChunkSize + chunk_.data_size; 511 // For the document with no 'content-length" specified we've collected all
364 if (!chunk_stream_.filled_chunks().IsEmpty()) { 512 // the chunks already. Let's allocate final document buffer and copy them
365 eof = std::max( 513 // over.
366 chunk_stream_.filled_chunks().Last().end() * DataStream::kChunkSize, 514 chunk_stream_.Preallocate(current_pos_);
367 eof); 515 uint32_t pos = 0;
368 } 516 for (auto& chunk : chunk_buffer_) {
369 chunk_stream_.set_eof_pos(eof); 517 chunk_stream_.WriteData(pos, chunk.data(), chunk.size());
370 if (eof == chunk_.chunk_index * DataStream::kChunkSize + chunk_.data_size) { 518 pos += chunk.size();
371 chunk_stream_.SetChunkData(chunk_.chunk_index, 519 }
372 std::move(chunk_.chunk_data)); 520 chunk_buffer_.clear();
373 } 521 }
374 } 522 document_size_ = current_pos_;
375 loader_.reset(); 523 client_->OnDocumentComplete();
524 return;
525 }
526
527 request_pending_ = false;
528
376 if (IsDocumentComplete()) { 529 if (IsDocumentComplete()) {
377 client_->OnDocumentComplete(); 530 client_->OnDocumentComplete();
378 } else { 531 return;
379 client_->OnDocumentCanceled(); 532 }
380 } 533
381 } 534 UpdateRendering();
382 535 DownloadPendingRequests();
383 float DocumentLoader::GetProgress() const { 536 }
384 if (!GetDocumentSize()) 537
385 return -1; 538 void DocumentLoader::UpdateRendering() {
386 if (IsDocumentComplete()) 539 if (header_request_)
387 return 1; 540 client_->OnPartialDocumentLoaded();
388 return static_cast<float>(chunk_stream_.filled_chunks_count()) / 541 else
389 chunk_stream_.total_chunks_count(); 542 client_->OnPendingRequestComplete();
543 header_request_ = false;
390 } 544 }
391 545
392 } // namespace chrome_pdf 546 } // namespace chrome_pdf
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