Wed, 31 Dec 2014 06:09:35 +0100
Cloned upstream origin tor-browser at tor-browser-31.3.0esr-4.5-1-build1
revision ID fc1c9ff7c1b2defdbc039f12214767608f46423f for hacking purpose.
michael@0 | 1 | /* |
michael@0 | 2 | ******************************************************************************* |
michael@0 | 3 | * Copyright (C) 2010-2012, International Business Machines |
michael@0 | 4 | * Corporation and others. All Rights Reserved. |
michael@0 | 5 | ******************************************************************************* |
michael@0 | 6 | * file name: bytestrieiterator.cpp |
michael@0 | 7 | * encoding: US-ASCII |
michael@0 | 8 | * tab size: 8 (not used) |
michael@0 | 9 | * indentation:4 |
michael@0 | 10 | * |
michael@0 | 11 | * created on: 2010nov03 |
michael@0 | 12 | * created by: Markus W. Scherer |
michael@0 | 13 | */ |
michael@0 | 14 | |
michael@0 | 15 | #include "unicode/utypes.h" |
michael@0 | 16 | #include "unicode/bytestrie.h" |
michael@0 | 17 | #include "unicode/stringpiece.h" |
michael@0 | 18 | #include "charstr.h" |
michael@0 | 19 | #include "uvectr32.h" |
michael@0 | 20 | |
michael@0 | 21 | U_NAMESPACE_BEGIN |
michael@0 | 22 | |
michael@0 | 23 | BytesTrie::Iterator::Iterator(const void *trieBytes, int32_t maxStringLength, |
michael@0 | 24 | UErrorCode &errorCode) |
michael@0 | 25 | : bytes_(static_cast<const uint8_t *>(trieBytes)), |
michael@0 | 26 | pos_(bytes_), initialPos_(bytes_), |
michael@0 | 27 | remainingMatchLength_(-1), initialRemainingMatchLength_(-1), |
michael@0 | 28 | str_(NULL), maxLength_(maxStringLength), value_(0), stack_(NULL) { |
michael@0 | 29 | if(U_FAILURE(errorCode)) { |
michael@0 | 30 | return; |
michael@0 | 31 | } |
michael@0 | 32 | // str_ and stack_ are pointers so that it's easy to turn bytestrie.h into |
michael@0 | 33 | // a public API header for which we would want it to depend only on |
michael@0 | 34 | // other public headers. |
michael@0 | 35 | // Unlike BytesTrie itself, its Iterator performs memory allocations anyway |
michael@0 | 36 | // via the CharString and UVector32 implementations, so this additional |
michael@0 | 37 | // cost is minimal. |
michael@0 | 38 | str_=new CharString(); |
michael@0 | 39 | stack_=new UVector32(errorCode); |
michael@0 | 40 | if(U_SUCCESS(errorCode) && (str_==NULL || stack_==NULL)) { |
michael@0 | 41 | errorCode=U_MEMORY_ALLOCATION_ERROR; |
michael@0 | 42 | } |
michael@0 | 43 | } |
michael@0 | 44 | |
michael@0 | 45 | BytesTrie::Iterator::Iterator(const BytesTrie &trie, int32_t maxStringLength, |
michael@0 | 46 | UErrorCode &errorCode) |
michael@0 | 47 | : bytes_(trie.bytes_), pos_(trie.pos_), initialPos_(trie.pos_), |
michael@0 | 48 | remainingMatchLength_(trie.remainingMatchLength_), |
michael@0 | 49 | initialRemainingMatchLength_(trie.remainingMatchLength_), |
michael@0 | 50 | str_(NULL), maxLength_(maxStringLength), value_(0), stack_(NULL) { |
michael@0 | 51 | if(U_FAILURE(errorCode)) { |
michael@0 | 52 | return; |
michael@0 | 53 | } |
michael@0 | 54 | str_=new CharString(); |
michael@0 | 55 | stack_=new UVector32(errorCode); |
michael@0 | 56 | if(U_FAILURE(errorCode)) { |
michael@0 | 57 | return; |
michael@0 | 58 | } |
michael@0 | 59 | if(str_==NULL || stack_==NULL) { |
michael@0 | 60 | errorCode=U_MEMORY_ALLOCATION_ERROR; |
michael@0 | 61 | return; |
michael@0 | 62 | } |
michael@0 | 63 | int32_t length=remainingMatchLength_; // Actual remaining match length minus 1. |
michael@0 | 64 | if(length>=0) { |
michael@0 | 65 | // Pending linear-match node, append remaining bytes to str_. |
michael@0 | 66 | ++length; |
michael@0 | 67 | if(maxLength_>0 && length>maxLength_) { |
michael@0 | 68 | length=maxLength_; // This will leave remainingMatchLength>=0 as a signal. |
michael@0 | 69 | } |
michael@0 | 70 | str_->append(reinterpret_cast<const char *>(pos_), length, errorCode); |
michael@0 | 71 | pos_+=length; |
michael@0 | 72 | remainingMatchLength_-=length; |
michael@0 | 73 | } |
michael@0 | 74 | } |
michael@0 | 75 | |
michael@0 | 76 | BytesTrie::Iterator::~Iterator() { |
michael@0 | 77 | delete str_; |
michael@0 | 78 | delete stack_; |
michael@0 | 79 | } |
michael@0 | 80 | |
michael@0 | 81 | BytesTrie::Iterator & |
michael@0 | 82 | BytesTrie::Iterator::reset() { |
michael@0 | 83 | pos_=initialPos_; |
michael@0 | 84 | remainingMatchLength_=initialRemainingMatchLength_; |
michael@0 | 85 | int32_t length=remainingMatchLength_+1; // Remaining match length. |
michael@0 | 86 | if(maxLength_>0 && length>maxLength_) { |
michael@0 | 87 | length=maxLength_; |
michael@0 | 88 | } |
michael@0 | 89 | str_->truncate(length); |
michael@0 | 90 | pos_+=length; |
michael@0 | 91 | remainingMatchLength_-=length; |
michael@0 | 92 | stack_->setSize(0); |
michael@0 | 93 | return *this; |
michael@0 | 94 | } |
michael@0 | 95 | |
michael@0 | 96 | UBool |
michael@0 | 97 | BytesTrie::Iterator::hasNext() const { return pos_!=NULL || !stack_->isEmpty(); } |
michael@0 | 98 | |
michael@0 | 99 | UBool |
michael@0 | 100 | BytesTrie::Iterator::next(UErrorCode &errorCode) { |
michael@0 | 101 | if(U_FAILURE(errorCode)) { |
michael@0 | 102 | return FALSE; |
michael@0 | 103 | } |
michael@0 | 104 | const uint8_t *pos=pos_; |
michael@0 | 105 | if(pos==NULL) { |
michael@0 | 106 | if(stack_->isEmpty()) { |
michael@0 | 107 | return FALSE; |
michael@0 | 108 | } |
michael@0 | 109 | // Pop the state off the stack and continue with the next outbound edge of |
michael@0 | 110 | // the branch node. |
michael@0 | 111 | int32_t stackSize=stack_->size(); |
michael@0 | 112 | int32_t length=stack_->elementAti(stackSize-1); |
michael@0 | 113 | pos=bytes_+stack_->elementAti(stackSize-2); |
michael@0 | 114 | stack_->setSize(stackSize-2); |
michael@0 | 115 | str_->truncate(length&0xffff); |
michael@0 | 116 | length=(int32_t)((uint32_t)length>>16); |
michael@0 | 117 | if(length>1) { |
michael@0 | 118 | pos=branchNext(pos, length, errorCode); |
michael@0 | 119 | if(pos==NULL) { |
michael@0 | 120 | return TRUE; // Reached a final value. |
michael@0 | 121 | } |
michael@0 | 122 | } else { |
michael@0 | 123 | str_->append((char)*pos++, errorCode); |
michael@0 | 124 | } |
michael@0 | 125 | } |
michael@0 | 126 | if(remainingMatchLength_>=0) { |
michael@0 | 127 | // We only get here if we started in a pending linear-match node |
michael@0 | 128 | // with more than maxLength remaining bytes. |
michael@0 | 129 | return truncateAndStop(); |
michael@0 | 130 | } |
michael@0 | 131 | for(;;) { |
michael@0 | 132 | int32_t node=*pos++; |
michael@0 | 133 | if(node>=kMinValueLead) { |
michael@0 | 134 | // Deliver value for the byte sequence so far. |
michael@0 | 135 | UBool isFinal=(UBool)(node&kValueIsFinal); |
michael@0 | 136 | value_=readValue(pos, node>>1); |
michael@0 | 137 | if(isFinal || (maxLength_>0 && str_->length()==maxLength_)) { |
michael@0 | 138 | pos_=NULL; |
michael@0 | 139 | } else { |
michael@0 | 140 | pos_=skipValue(pos, node); |
michael@0 | 141 | } |
michael@0 | 142 | sp_.set(str_->data(), str_->length()); |
michael@0 | 143 | return TRUE; |
michael@0 | 144 | } |
michael@0 | 145 | if(maxLength_>0 && str_->length()==maxLength_) { |
michael@0 | 146 | return truncateAndStop(); |
michael@0 | 147 | } |
michael@0 | 148 | if(node<kMinLinearMatch) { |
michael@0 | 149 | if(node==0) { |
michael@0 | 150 | node=*pos++; |
michael@0 | 151 | } |
michael@0 | 152 | pos=branchNext(pos, node+1, errorCode); |
michael@0 | 153 | if(pos==NULL) { |
michael@0 | 154 | return TRUE; // Reached a final value. |
michael@0 | 155 | } |
michael@0 | 156 | } else { |
michael@0 | 157 | // Linear-match node, append length bytes to str_. |
michael@0 | 158 | int32_t length=node-kMinLinearMatch+1; |
michael@0 | 159 | if(maxLength_>0 && str_->length()+length>maxLength_) { |
michael@0 | 160 | str_->append(reinterpret_cast<const char *>(pos), |
michael@0 | 161 | maxLength_-str_->length(), errorCode); |
michael@0 | 162 | return truncateAndStop(); |
michael@0 | 163 | } |
michael@0 | 164 | str_->append(reinterpret_cast<const char *>(pos), length, errorCode); |
michael@0 | 165 | pos+=length; |
michael@0 | 166 | } |
michael@0 | 167 | } |
michael@0 | 168 | } |
michael@0 | 169 | |
michael@0 | 170 | UBool |
michael@0 | 171 | BytesTrie::Iterator::truncateAndStop() { |
michael@0 | 172 | pos_=NULL; |
michael@0 | 173 | sp_.set(str_->data(), str_->length()); |
michael@0 | 174 | value_=-1; // no real value for str |
michael@0 | 175 | return TRUE; |
michael@0 | 176 | } |
michael@0 | 177 | |
michael@0 | 178 | // Branch node, needs to take the first outbound edge and push state for the rest. |
michael@0 | 179 | const uint8_t * |
michael@0 | 180 | BytesTrie::Iterator::branchNext(const uint8_t *pos, int32_t length, UErrorCode &errorCode) { |
michael@0 | 181 | while(length>kMaxBranchLinearSubNodeLength) { |
michael@0 | 182 | ++pos; // ignore the comparison byte |
michael@0 | 183 | // Push state for the greater-or-equal edge. |
michael@0 | 184 | stack_->addElement((int32_t)(skipDelta(pos)-bytes_), errorCode); |
michael@0 | 185 | stack_->addElement(((length-(length>>1))<<16)|str_->length(), errorCode); |
michael@0 | 186 | // Follow the less-than edge. |
michael@0 | 187 | length>>=1; |
michael@0 | 188 | pos=jumpByDelta(pos); |
michael@0 | 189 | } |
michael@0 | 190 | // List of key-value pairs where values are either final values or jump deltas. |
michael@0 | 191 | // Read the first (key, value) pair. |
michael@0 | 192 | uint8_t trieByte=*pos++; |
michael@0 | 193 | int32_t node=*pos++; |
michael@0 | 194 | UBool isFinal=(UBool)(node&kValueIsFinal); |
michael@0 | 195 | int32_t value=readValue(pos, node>>1); |
michael@0 | 196 | pos=skipValue(pos, node); |
michael@0 | 197 | stack_->addElement((int32_t)(pos-bytes_), errorCode); |
michael@0 | 198 | stack_->addElement(((length-1)<<16)|str_->length(), errorCode); |
michael@0 | 199 | str_->append((char)trieByte, errorCode); |
michael@0 | 200 | if(isFinal) { |
michael@0 | 201 | pos_=NULL; |
michael@0 | 202 | sp_.set(str_->data(), str_->length()); |
michael@0 | 203 | value_=value; |
michael@0 | 204 | return NULL; |
michael@0 | 205 | } else { |
michael@0 | 206 | return pos+value; |
michael@0 | 207 | } |
michael@0 | 208 | } |
michael@0 | 209 | |
michael@0 | 210 | U_NAMESPACE_END |