forked from BigfootDev/flatbuffers
clang format on codebase (#7058)
This commit is contained in:
@@ -285,9 +285,7 @@ class FlatBufferBuilder {
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FieldLoc fl = { off, field };
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buf_.scratch_push_small(fl);
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num_field_loc++;
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if (field > max_voffset_) {
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max_voffset_ = field;
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}
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if (field > max_voffset_) { max_voffset_ = field; }
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}
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// Like PushElement, but additionally tracks the field this represents.
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@@ -1074,7 +1072,7 @@ class FlatBufferBuilder {
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void SwapBufAllocator(FlatBufferBuilder &other) {
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buf_.swap_allocator(other.buf_);
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}
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/// @brief The length of a FlatBuffer file header.
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static const size_t kFileIdentifierLength =
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::flatbuffers::kFileIdentifierLength;
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@@ -226,12 +226,13 @@ struct TypeTable {
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};
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// String which identifies the current version of FlatBuffers.
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inline const char * flatbuffers_version_string() {
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inline const char *flatbuffers_version_string() {
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return "FlatBuffers " FLATBUFFERS_STRING(FLATBUFFERS_VERSION_MAJOR) "."
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FLATBUFFERS_STRING(FLATBUFFERS_VERSION_MINOR) "."
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FLATBUFFERS_STRING(FLATBUFFERS_VERSION_REVISION);
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}
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// clang-format off
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#define FLATBUFFERS_DEFINE_BITMASK_OPERATORS(E, T)\
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inline E operator | (E lhs, E rhs){\
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return E(T(lhs) | T(rhs));\
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@@ -371,10 +371,7 @@ void AppendToString(std::string &s, T &&v, bool keys_quoted) {
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class Reference {
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public:
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Reference()
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: data_(nullptr),
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parent_width_(0),
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byte_width_(0),
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type_(FBT_NULL) {}
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: data_(nullptr), parent_width_(0), byte_width_(0), type_(FBT_NULL) {}
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Reference(const uint8_t *data, uint8_t parent_width, uint8_t byte_width,
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Type type)
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@@ -1645,8 +1642,7 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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// comes at the cost of using additional memory the same size of
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// the buffer being verified, so it is by default off.
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std::vector<uint8_t> *reuse_tracker = nullptr,
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bool _check_alignment = true,
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size_t max_depth = 64)
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bool _check_alignment = true, size_t max_depth = 64)
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: buf_(buf),
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size_(buf_len),
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depth_(0),
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@@ -1689,18 +1685,16 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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auto o = static_cast<size_t>(p - buf_);
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return VerifyBefore(o, len);
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}
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bool VerifyByteWidth(size_t width) {
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return Check(width == 1 || width == 2 || width == 4 || width == 8);
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}
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bool VerifyType(int type) {
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return Check(type >= 0 && type < FBT_MAX_TYPE);
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}
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bool VerifyType(int type) { return Check(type >= 0 && type < FBT_MAX_TYPE); }
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bool VerifyOffset(uint64_t off, const uint8_t *p) {
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return Check(off <= static_cast<uint64_t>(size_)) &&
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off <= static_cast<uint64_t>(p - buf_);
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off <= static_cast<uint64_t>(p - buf_);
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}
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bool VerifyAlignment(const uint8_t *p, size_t size) const {
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@@ -1708,16 +1702,16 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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return Check((o & (size - 1)) == 0 || !check_alignment_);
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}
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// Macro, since we want to escape from parent function & use lazy args.
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#define FLEX_CHECK_VERIFIED(P, PACKED_TYPE) \
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if (reuse_tracker_) { \
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auto packed_type = PACKED_TYPE; \
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auto existing = (*reuse_tracker_)[P - buf_]; \
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if (existing == packed_type) return true; \
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/* Fail verification if already set with different type! */ \
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if (!Check(existing == 0)) return false; \
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(*reuse_tracker_)[P - buf_] = packed_type; \
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}
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// Macro, since we want to escape from parent function & use lazy args.
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#define FLEX_CHECK_VERIFIED(P, PACKED_TYPE) \
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if (reuse_tracker_) { \
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auto packed_type = PACKED_TYPE; \
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auto existing = (*reuse_tracker_)[P - buf_]; \
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if (existing == packed_type) return true; \
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/* Fail verification if already set with different type! */ \
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if (!Check(existing == 0)) return false; \
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(*reuse_tracker_)[P - buf_] = packed_type; \
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}
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bool VerifyVector(Reference r, const uint8_t *p, Type elem_type) {
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// Any kind of nesting goes thru this function, so guard against that
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@@ -1727,19 +1721,19 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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if (!Check(depth_ <= max_depth_ && num_vectors_ <= max_vectors_))
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return false;
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auto size_byte_width = r.byte_width_;
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FLEX_CHECK_VERIFIED(p, PackedType(Builder::WidthB(size_byte_width), r.type_));
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if (!VerifyBeforePointer(p, size_byte_width))
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return false;
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FLEX_CHECK_VERIFIED(p,
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PackedType(Builder::WidthB(size_byte_width), r.type_));
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if (!VerifyBeforePointer(p, size_byte_width)) return false;
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auto sized = Sized(p, size_byte_width);
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auto num_elems = sized.size();
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auto elem_byte_width =
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r.type_ == FBT_STRING || r.type_ == FBT_BLOB ? uint8_t(1) : r.byte_width_;
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auto elem_byte_width = r.type_ == FBT_STRING || r.type_ == FBT_BLOB
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? uint8_t(1)
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: r.byte_width_;
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auto max_elems = SIZE_MAX / elem_byte_width;
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if (!Check(num_elems < max_elems))
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return false; // Protect against byte_size overflowing.
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auto byte_size = num_elems * elem_byte_width;
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if (!VerifyFromPointer(p, byte_size))
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return false;
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if (!VerifyFromPointer(p, byte_size)) return false;
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if (elem_type == FBT_NULL) {
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// Verify type bytes after the vector.
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if (!VerifyFromPointer(p + byte_size, num_elems)) return false;
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@@ -1760,28 +1754,25 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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bool VerifyKeys(const uint8_t *p, uint8_t byte_width) {
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// The vector part of the map has already been verified.
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const size_t num_prefixed_fields = 3;
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if (!VerifyBeforePointer(p, byte_width * num_prefixed_fields))
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return false;
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if (!VerifyBeforePointer(p, byte_width * num_prefixed_fields)) return false;
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p -= byte_width * num_prefixed_fields;
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auto off = ReadUInt64(p, byte_width);
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if (!VerifyOffset(off, p))
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return false;
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if (!VerifyOffset(off, p)) return false;
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auto key_byte_with =
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static_cast<uint8_t>(ReadUInt64(p + byte_width, byte_width));
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if (!VerifyByteWidth(key_byte_with))
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return false;
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static_cast<uint8_t>(ReadUInt64(p + byte_width, byte_width));
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if (!VerifyByteWidth(key_byte_with)) return false;
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return VerifyVector(Reference(p, byte_width, key_byte_with, FBT_VECTOR_KEY),
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p - off, FBT_KEY);
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}
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bool VerifyKey(const uint8_t* p) {
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bool VerifyKey(const uint8_t *p) {
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FLEX_CHECK_VERIFIED(p, PackedType(BIT_WIDTH_8, FBT_KEY));
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while (p < buf_ + size_)
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if (*p++) return true;
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return false;
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}
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#undef FLEX_CHECK_VERIFIED
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#undef FLEX_CHECK_VERIFIED
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bool VerifyTerminator(const String &s) {
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return VerifyFromPointer(reinterpret_cast<const uint8_t *>(s.c_str()),
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@@ -1799,37 +1790,26 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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}
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// All remaining types are an offset.
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auto off = ReadUInt64(r.data_, r.parent_width_);
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if (!VerifyOffset(off, r.data_))
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return false;
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if (!VerifyOffset(off, r.data_)) return false;
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auto p = r.Indirect();
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if (!VerifyAlignment(p, r.byte_width_))
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return false;
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if (!VerifyAlignment(p, r.byte_width_)) return false;
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switch (r.type_) {
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case FBT_INDIRECT_INT:
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case FBT_INDIRECT_UINT:
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case FBT_INDIRECT_FLOAT:
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return VerifyFromPointer(p, r.byte_width_);
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case FBT_KEY:
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return VerifyKey(p);
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case FBT_INDIRECT_FLOAT: return VerifyFromPointer(p, r.byte_width_);
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case FBT_KEY: return VerifyKey(p);
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case FBT_MAP:
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return VerifyVector(r, p, FBT_NULL) &&
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VerifyKeys(p, r.byte_width_);
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case FBT_VECTOR:
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return VerifyVector(r, p, FBT_NULL);
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case FBT_VECTOR_INT:
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return VerifyVector(r, p, FBT_INT);
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return VerifyVector(r, p, FBT_NULL) && VerifyKeys(p, r.byte_width_);
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case FBT_VECTOR: return VerifyVector(r, p, FBT_NULL);
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case FBT_VECTOR_INT: return VerifyVector(r, p, FBT_INT);
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case FBT_VECTOR_BOOL:
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case FBT_VECTOR_UINT:
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return VerifyVector(r, p, FBT_UINT);
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case FBT_VECTOR_FLOAT:
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return VerifyVector(r, p, FBT_FLOAT);
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case FBT_VECTOR_KEY:
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return VerifyVector(r, p, FBT_KEY);
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case FBT_VECTOR_UINT: return VerifyVector(r, p, FBT_UINT);
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case FBT_VECTOR_FLOAT: return VerifyVector(r, p, FBT_FLOAT);
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case FBT_VECTOR_KEY: return VerifyVector(r, p, FBT_KEY);
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case FBT_VECTOR_STRING_DEPRECATED:
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// Use of FBT_KEY here intentional, see elsewhere.
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return VerifyVector(r, p, FBT_KEY);
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case FBT_BLOB:
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return VerifyVector(r, p, FBT_UINT);
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case FBT_BLOB: return VerifyVector(r, p, FBT_UINT);
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case FBT_STRING:
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return VerifyVector(r, p, FBT_UINT) &&
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VerifyTerminator(String(p, r.byte_width_));
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@@ -1844,12 +1824,10 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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case FBT_VECTOR_FLOAT4: {
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uint8_t len = 0;
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auto vtype = ToFixedTypedVectorElementType(r.type_, &len);
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if (!VerifyType(vtype))
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return false;
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if (!VerifyType(vtype)) return false;
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return VerifyFromPointer(p, r.byte_width_ * len);
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}
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default:
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return false;
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default: return false;
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}
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}
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@@ -1859,8 +1837,7 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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auto end = buf_ + size_;
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auto byte_width = *--end;
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auto packed_type = *--end;
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return VerifyByteWidth(byte_width) &&
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Check(end - buf_ >= byte_width) &&
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return VerifyByteWidth(byte_width) && Check(end - buf_ >= byte_width) &&
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VerifyRef(Reference(end - byte_width, byte_width, packed_type));
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}
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@@ -1875,14 +1852,14 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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std::vector<uint8_t> *reuse_tracker_;
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};
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// Utility function that contructs the Verifier for you, see above for parameters.
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// Utility function that contructs the Verifier for you, see above for
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// parameters.
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inline bool VerifyBuffer(const uint8_t *buf, size_t buf_len,
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std::vector<uint8_t> *reuse_tracker = nullptr) {
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Verifier verifier(buf, buf_len, reuse_tracker);
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return verifier.VerifyBuffer();
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}
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#ifdef FLATBUFFERS_H_
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// This is a verifier utility function that works together with the
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// FlatBuffers verifier, which should only be present if flatbuffer.h
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@@ -1890,9 +1867,8 @@ inline bool VerifyBuffer(const uint8_t *buf, size_t buf_len,
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inline bool VerifyNestedFlexBuffer(const flatbuffers::Vector<uint8_t> *nv,
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flatbuffers::Verifier &verifier) {
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if (!nv) return true;
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return verifier.Check(
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flexbuffers::VerifyBuffer(nv->data(), nv->size(),
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verifier.GetFlexReuseTracker()));
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return verifier.Check(flexbuffers::VerifyBuffer(
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nv->data(), nv->size(), verifier.GetFlexReuseTracker()));
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}
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#endif
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@@ -112,18 +112,19 @@ class Table {
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// Verify a particular field.
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template<typename T>
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bool VerifyField(const Verifier &verifier, voffset_t field, size_t align) const {
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bool VerifyField(const Verifier &verifier, voffset_t field,
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size_t align) const {
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// Calling GetOptionalFieldOffset should be safe now thanks to
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// VerifyTable().
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auto field_offset = GetOptionalFieldOffset(field);
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// Check the actual field.
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return !field_offset ||
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verifier.VerifyField<T>(data_, field_offset, align);
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return !field_offset || verifier.VerifyField<T>(data_, field_offset, align);
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}
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// VerifyField for required fields.
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template<typename T>
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bool VerifyFieldRequired(const Verifier &verifier, voffset_t field, size_t align) const {
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bool VerifyFieldRequired(const Verifier &verifier, voffset_t field,
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size_t align) const {
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auto field_offset = GetOptionalFieldOffset(field);
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return verifier.Check(field_offset != 0) &&
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verifier.VerifyField<T>(data_, field_offset, align);
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@@ -17,15 +17,15 @@
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#ifndef FLATBUFFERS_UTIL_H_
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#define FLATBUFFERS_UTIL_H_
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#include <errno.h>
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#include <ctype.h>
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#include <errno.h>
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#include "flatbuffers/base.h"
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#include "flatbuffers/stl_emulation.h"
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#ifndef FLATBUFFERS_PREFER_PRINTF
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# include <sstream>
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# include <iomanip>
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# include <sstream>
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#else // FLATBUFFERS_PREFER_PRINTF
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# include <float.h>
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# include <stdio.h>
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@@ -81,14 +81,15 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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}
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// Verify relative to a known-good base pointer.
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bool VerifyFieldStruct(const uint8_t *base, voffset_t elem_off, size_t elem_len,
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size_t align) const {
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bool VerifyFieldStruct(const uint8_t *base, voffset_t elem_off,
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size_t elem_len, size_t align) const {
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auto f = static_cast<size_t>(base - buf_) + elem_off;
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return VerifyAlignment(f, align) && Verify(f, elem_len);
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}
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template<typename T>
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bool VerifyField(const uint8_t *base, voffset_t elem_off, size_t align) const {
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bool VerifyField(const uint8_t *base, voffset_t elem_off,
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size_t align) const {
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auto f = static_cast<size_t>(base - buf_) + elem_off;
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return VerifyAlignment(f, align) && Verify(f, sizeof(T));
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}
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@@ -259,9 +260,7 @@ class Verifier FLATBUFFERS_FINAL_CLASS {
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// clang-format on
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}
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||||
std::vector<uint8_t> *GetFlexReuseTracker() {
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return flex_reuse_tracker_;
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}
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std::vector<uint8_t> *GetFlexReuseTracker() { return flex_reuse_tracker_; }
|
||||
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void SetFlexReuseTracker(std::vector<uint8_t> *rt) {
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flex_reuse_tracker_ = rt;
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@@ -538,7 +538,9 @@ class CppGenerator : public BaseGenerator {
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||||
|
||||
// Check if a size-prefixed buffer has the identifier.
|
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code_ += "inline \\";
|
||||
code_ += "bool SizePrefixed{{STRUCT_NAME}}BufferHasIdentifier(const void *buf) {";
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||||
code_ +=
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"bool SizePrefixed{{STRUCT_NAME}}BufferHasIdentifier(const void "
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"*buf) {";
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code_ += " return flatbuffers::BufferHasIdentifier(";
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code_ += " buf, {{STRUCT_NAME}}Identifier(), true);";
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||||
code_ += "}";
|
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@@ -1482,7 +1484,7 @@ class CppGenerator : public BaseGenerator {
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if (ev.union_type.base_type == BASE_TYPE_STRUCT) {
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||||
if (ev.union_type.struct_def->fixed) {
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||||
code_.SetValue("ALIGN",
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||||
NumToString(ev.union_type.struct_def->minalign));
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NumToString(ev.union_type.struct_def->minalign));
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code_ +=
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||||
" return verifier.VerifyField<{{TYPE}}>("
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"static_cast<const uint8_t *>(obj), 0, {{ALIGN}});";
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@@ -2122,8 +2124,9 @@ class CppGenerator : public BaseGenerator {
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code_.SetValue("OFFSET", GenFieldOffsetName(field));
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||||
if (IsScalar(field.value.type.base_type) || IsStruct(field.value.type)) {
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code_.SetValue("ALIGN", NumToString(InlineAlignment(field.value.type)));
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||||
code_ += "{{PRE}}VerifyField{{REQUIRED}}<{{SIZE}}>(verifier, "
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"{{OFFSET}}, {{ALIGN}})\\";
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code_ +=
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"{{PRE}}VerifyField{{REQUIRED}}<{{SIZE}}>(verifier, "
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||||
"{{OFFSET}}, {{ALIGN}})\\";
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} else {
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||||
code_ += "{{PRE}}VerifyOffset{{REQUIRED}}(verifier, {{OFFSET}})\\";
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||||
}
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||||
@@ -2175,11 +2178,13 @@ class CppGenerator : public BaseGenerator {
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||||
if (!nfn.empty()) {
|
||||
code_.SetValue("CPP_NAME", nfn);
|
||||
// FIXME: file_identifier.
|
||||
code_ += "{{PRE}}verifier.VerifyNestedFlatBuffer<{{CPP_NAME}}>"
|
||||
"({{NAME}}(), nullptr)\\";
|
||||
code_ +=
|
||||
"{{PRE}}verifier.VerifyNestedFlatBuffer<{{CPP_NAME}}>"
|
||||
"({{NAME}}(), nullptr)\\";
|
||||
} else if (field.flexbuffer) {
|
||||
code_ += "{{PRE}}flexbuffers::VerifyNestedFlexBuffer"
|
||||
"({{NAME}}(), verifier)\\";
|
||||
code_ +=
|
||||
"{{PRE}}flexbuffers::VerifyNestedFlexBuffer"
|
||||
"({{NAME}}(), verifier)\\";
|
||||
}
|
||||
break;
|
||||
}
|
||||
@@ -2216,7 +2221,8 @@ class CppGenerator : public BaseGenerator {
|
||||
}
|
||||
// Returns {field<val: -1, field==val: 0, field>val: +1}.
|
||||
code_.SetValue("KEY_TYPE", type);
|
||||
code_ += " int KeyCompareWithValue({{KEY_TYPE}} _{{FIELD_NAME}}) const {";
|
||||
code_ +=
|
||||
" int KeyCompareWithValue({{KEY_TYPE}} _{{FIELD_NAME}}) const {";
|
||||
code_ +=
|
||||
" return static_cast<int>({{FIELD_NAME}}() > _{{FIELD_NAME}}) - "
|
||||
"static_cast<int>({{FIELD_NAME}}() < _{{FIELD_NAME}});";
|
||||
|
||||
@@ -738,11 +738,8 @@ class PythonGenerator : public BaseGenerator {
|
||||
}
|
||||
break;
|
||||
}
|
||||
case BASE_TYPE_UNION:
|
||||
GetUnionField(struct_def, field, code_ptr);
|
||||
break;
|
||||
default:
|
||||
FLATBUFFERS_ASSERT(0);
|
||||
case BASE_TYPE_UNION: GetUnionField(struct_def, field, code_ptr); break;
|
||||
default: FLATBUFFERS_ASSERT(0);
|
||||
}
|
||||
}
|
||||
if (IsVector(field.value.type) || IsArray(field.value.type)) {
|
||||
@@ -913,14 +910,9 @@ class PythonGenerator : public BaseGenerator {
|
||||
import_list->insert("import " + package_reference);
|
||||
}
|
||||
break;
|
||||
case BASE_TYPE_STRING:
|
||||
field_type += "str";
|
||||
break;
|
||||
case BASE_TYPE_NONE:
|
||||
field_type += "None";
|
||||
break;
|
||||
default:
|
||||
break;
|
||||
case BASE_TYPE_STRING: field_type += "str"; break;
|
||||
case BASE_TYPE_NONE: field_type += "None"; break;
|
||||
default: break;
|
||||
}
|
||||
field_types += field_type + separator_string;
|
||||
}
|
||||
@@ -1253,8 +1245,7 @@ class PythonGenerator : public BaseGenerator {
|
||||
GenUnPackForScalarVector(struct_def, field, &code);
|
||||
break;
|
||||
}
|
||||
default:
|
||||
GenUnPackForScalar(struct_def, field, &code);
|
||||
default: GenUnPackForScalar(struct_def, field, &code);
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -859,7 +859,8 @@ class RustGenerator : public BaseGenerator {
|
||||
code_ += " serializer.serialize_u32(self.bits() as u32)";
|
||||
} else {
|
||||
code_ +=
|
||||
" serializer.serialize_unit_variant(\"{{ENUM_NAME}}\", self.0 as "
|
||||
" serializer.serialize_unit_variant(\"{{ENUM_NAME}}\", self.0 "
|
||||
"as "
|
||||
"u32, self.variant_name().unwrap())";
|
||||
}
|
||||
code_ += " }";
|
||||
@@ -2752,7 +2753,8 @@ class RustGenerator : public BaseGenerator {
|
||||
ForAllStructFields(struct_def, [&](const FieldDef &unused) {
|
||||
(void)unused;
|
||||
code_ +=
|
||||
" s.serialize_field(\"{{FIELD_NAME}}\", &self.{{FIELD_NAME}}())?;";
|
||||
" s.serialize_field(\"{{FIELD_NAME}}\", "
|
||||
"&self.{{FIELD_NAME}}())?;";
|
||||
});
|
||||
code_ += " s.end()";
|
||||
code_ += " }";
|
||||
@@ -2959,8 +2961,9 @@ class RustGenerator : public BaseGenerator {
|
||||
code_ += "";
|
||||
if (parser_.opts.rust_serialize) {
|
||||
code_ += indent + "extern crate serde;";
|
||||
code_ += indent +
|
||||
"use self::serde::ser::{Serialize, Serializer, SerializeStruct};";
|
||||
code_ +=
|
||||
indent +
|
||||
"use self::serde::ser::{Serialize, Serializer, SerializeStruct};";
|
||||
code_ += "";
|
||||
}
|
||||
code_ += indent + "extern crate flatbuffers;";
|
||||
|
||||
@@ -711,8 +711,9 @@ class SwiftGenerator : public BaseGenerator {
|
||||
}
|
||||
|
||||
if (IsBool(field.value.type.base_type)) {
|
||||
std::string default_value = field.IsOptional() ? "nil" :
|
||||
("0" == field.value.constant ? "false" : "true");
|
||||
std::string default_value =
|
||||
field.IsOptional() ? "nil"
|
||||
: ("0" == field.value.constant ? "false" : "true");
|
||||
code_.SetValue("CONSTANT", default_value);
|
||||
code_.SetValue("VALUETYPE", "Bool");
|
||||
code_ += GenReaderMainBody(optional) + "\\";
|
||||
|
||||
@@ -343,8 +343,7 @@ class TsGenerator : public BaseGenerator {
|
||||
switch (type.base_type) {
|
||||
case BASE_TYPE_BOOL: return allowNull ? "boolean|null" : "boolean";
|
||||
case BASE_TYPE_LONG:
|
||||
case BASE_TYPE_ULONG:
|
||||
return allowNull ? "bigint|null" : "bigint";
|
||||
case BASE_TYPE_ULONG: return allowNull ? "bigint|null" : "bigint";
|
||||
default:
|
||||
if (IsScalar(type.base_type)) {
|
||||
if (type.enum_def) {
|
||||
@@ -907,8 +906,7 @@ class TsGenerator : public BaseGenerator {
|
||||
// a string that contains values for things that can be created inline or
|
||||
// the variable name from field_offset_decl
|
||||
std::string field_offset_val;
|
||||
const auto field_default_val =
|
||||
GenDefaultValue(field, imports);
|
||||
const auto field_default_val = GenDefaultValue(field, imports);
|
||||
|
||||
// Emit a scalar field
|
||||
const auto is_string = IsString(field.value.type);
|
||||
@@ -1643,7 +1641,7 @@ class TsGenerator : public BaseGenerator {
|
||||
|
||||
std::string GetArgName(const FieldDef &field) {
|
||||
auto argname = MakeCamel(field.name, false);
|
||||
if (!IsScalar(field.value.type.base_type)) {
|
||||
if (!IsScalar(field.value.type.base_type)) {
|
||||
argname += "Offset";
|
||||
} else {
|
||||
argname = EscapeKeyword(argname);
|
||||
|
||||
@@ -1677,8 +1677,9 @@ CheckedError Parser::ParseNestedFlatbuffer(Value &val, FieldDef *field,
|
||||
if (opts.json_nested_legacy_flatbuffers) {
|
||||
ECHECK(ParseAnyValue(val, field, fieldn, parent_struct_def, 0));
|
||||
} else {
|
||||
return Error("cannot parse nested_flatbuffer as bytes unless"
|
||||
" --json-nested-bytes is set");
|
||||
return Error(
|
||||
"cannot parse nested_flatbuffer as bytes unless"
|
||||
" --json-nested-bytes is set");
|
||||
}
|
||||
} else {
|
||||
auto cursor_at_value_begin = cursor_;
|
||||
@@ -2167,9 +2168,7 @@ void EnumDef::SortByValue() {
|
||||
});
|
||||
else
|
||||
std::sort(v.begin(), v.end(), [](const EnumVal *e1, const EnumVal *e2) {
|
||||
if (e1->GetAsInt64() == e2->GetAsInt64()) {
|
||||
return e1->name < e2->name;
|
||||
}
|
||||
if (e1->GetAsInt64() == e2->GetAsInt64()) { return e1->name < e2->name; }
|
||||
return e1->GetAsInt64() < e2->GetAsInt64();
|
||||
});
|
||||
}
|
||||
|
||||
@@ -645,8 +645,7 @@ bool VerifyObject(flatbuffers::Verifier &v, const reflection::Schema &schema,
|
||||
case reflection::Bool:
|
||||
case reflection::Byte:
|
||||
case reflection::UByte:
|
||||
if (!table->VerifyField<int8_t>(v, field_def->offset(),
|
||||
sizeof(int8_t)))
|
||||
if (!table->VerifyField<int8_t>(v, field_def->offset(), sizeof(int8_t)))
|
||||
return false;
|
||||
break;
|
||||
case reflection::Short:
|
||||
@@ -668,13 +667,11 @@ bool VerifyObject(flatbuffers::Verifier &v, const reflection::Schema &schema,
|
||||
return false;
|
||||
break;
|
||||
case reflection::Float:
|
||||
if (!table->VerifyField<float>(v, field_def->offset(),
|
||||
sizeof(float)))
|
||||
if (!table->VerifyField<float>(v, field_def->offset(), sizeof(float)))
|
||||
return false;
|
||||
break;
|
||||
case reflection::Double:
|
||||
if (!table->VerifyField<double>(v, field_def->offset(),
|
||||
sizeof(double)))
|
||||
if (!table->VerifyField<double>(v, field_def->offset(), sizeof(double)))
|
||||
return false;
|
||||
break;
|
||||
case reflection::String:
|
||||
|
||||
@@ -496,7 +496,7 @@ void MutateFlatBuffersTest(uint8_t *flatbuf, std::size_t length) {
|
||||
}
|
||||
|
||||
// Utility function to check a Monster object.
|
||||
void CheckMonsterObject(MonsterT* monster2) {
|
||||
void CheckMonsterObject(MonsterT *monster2) {
|
||||
TEST_EQ(monster2->hp, 80);
|
||||
TEST_EQ(monster2->mana, 150); // default
|
||||
TEST_EQ_STR(monster2->name.c_str(), "MyMonster");
|
||||
@@ -589,8 +589,7 @@ void ObjectFlatBuffersTest(uint8_t *flatbuf) {
|
||||
// Test object copy.
|
||||
auto monster3 = *monster2;
|
||||
flatbuffers::FlatBufferBuilder fbb3;
|
||||
fbb3.Finish(CreateMonster(fbb3, &monster3, &rehasher),
|
||||
MonsterIdentifier());
|
||||
fbb3.Finish(CreateMonster(fbb3, &monster3, &rehasher), MonsterIdentifier());
|
||||
const auto len3 = fbb3.GetSize();
|
||||
TEST_EQ(len2, len3);
|
||||
TEST_EQ(memcmp(fbb2.GetBufferPointer(), fbb3.GetBufferPointer(), len2), 0);
|
||||
|
||||
Reference in New Issue
Block a user