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1 /*
2  * Copyright 2014 Google Inc. All rights reserved.
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *     http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #ifndef FLATBUFFERS_IDL_H_
18 #define FLATBUFFERS_IDL_H_
19 
20 #include <map>
21 #include <memory>
22 #include <stack>
23 
24 #include "flatbuffers/base.h"
25 #include "flatbuffers/flatbuffers.h"
26 #include "flatbuffers/flexbuffers.h"
27 #include "flatbuffers/hash.h"
28 #include "flatbuffers/reflection.h"
29 
30 #if !defined(FLATBUFFERS_CPP98_STL)
31 #  include <functional>
32 #endif  // !defined(FLATBUFFERS_CPP98_STL)
33 
34 // This file defines the data types representing a parsed IDL (Interface
35 // Definition Language) / schema file.
36 
37 // Limits maximum depth of nested objects.
38 // Prevents stack overflow while parse scheme, or json, or flexbuffer.
39 #if !defined(FLATBUFFERS_MAX_PARSING_DEPTH)
40 #  define FLATBUFFERS_MAX_PARSING_DEPTH 64
41 #endif
42 
43 namespace flatbuffers {
44 
45 // The order of these matters for Is*() functions below.
46 // Additionally, Parser::ParseType assumes bool..string is a contiguous range
47 // of type tokens.
48 // clang-format off
49 #define FLATBUFFERS_GEN_TYPES_SCALAR(TD) \
50   TD(NONE,   "",       uint8_t,  byte,   byte,    byte,   uint8,   u8,   UByte, UInt8) \
51   TD(UTYPE,  "",       uint8_t,  byte,   byte,    byte,   uint8,   u8,   UByte, UInt8) /* begin scalar/int */ \
52   TD(BOOL,   "bool",   uint8_t,  boolean,bool,    bool,   bool,    bool, Boolean, Bool) \
53   TD(CHAR,   "byte",   int8_t,   byte,   int8,    sbyte,  int8,    i8,   Byte, Int8) \
54   TD(UCHAR,  "ubyte",  uint8_t,  byte,   byte,    byte,   uint8,   u8,   UByte, UInt8) \
55   TD(SHORT,  "short",  int16_t,  short,  int16,   short,  int16,   i16,  Short, Int16) \
56   TD(USHORT, "ushort", uint16_t, short,  uint16,  ushort, uint16,  u16,  UShort, UInt16) \
57   TD(INT,    "int",    int32_t,  int,    int32,   int,    int32,   i32,  Int, Int32) \
58   TD(UINT,   "uint",   uint32_t, int,    uint32,  uint,   uint32,  u32,  UInt, UInt32) \
59   TD(LONG,   "long",   int64_t,  long,   int64,   long,   int64,   i64,  Long, Int64) \
60   TD(ULONG,  "ulong",  uint64_t, long,   uint64,  ulong,  uint64,  u64,  ULong, UInt64) /* end int */ \
61   TD(FLOAT,  "float",  float,    float,  float32, float,  float32, f32,  Float, Float32) /* begin float */ \
62   TD(DOUBLE, "double", double,   double, float64, double, float64, f64,  Double, Double) /* end float/scalar */
63 #define FLATBUFFERS_GEN_TYPES_POINTER(TD) \
64   TD(STRING, "string", Offset<void>, int, int, StringOffset, int, unused, Int, Offset<String>) \
65   TD(VECTOR, "",       Offset<void>, int, int, VectorOffset, int, unused, Int, Offset<UOffset>) \
66   TD(STRUCT, "",       Offset<void>, int, int, int,          int, unused, Int, Offset<UOffset>) \
67   TD(UNION,  "",       Offset<void>, int, int, int,          int, unused, Int, Offset<UOffset>)
68 #define FLATBUFFERS_GEN_TYPE_ARRAY(TD) \
69   TD(ARRAY,  "",       int,          int, int, int,          int, unused, Int, Offset<UOffset>)
70 // The fields are:
71 // - enum
72 // - FlatBuffers schema type.
73 // - C++ type.
74 // - Java type.
75 // - Go type.
76 // - C# / .Net type.
77 // - Python type.
78 // - Rust type.
79 // - Kotlin type.
80 
81 // using these macros, we can now write code dealing with types just once, e.g.
82 
83 /*
84 switch (type) {
85   #define FLATBUFFERS_TD(ENUM, IDLTYPE, CTYPE, JTYPE, GTYPE, NTYPE, PTYPE, \
86                          RTYPE, KTYPE) \
87     case BASE_TYPE_ ## ENUM: \
88       // do something specific to CTYPE here
89     FLATBUFFERS_GEN_TYPES(FLATBUFFERS_TD)
90   #undef FLATBUFFERS_TD
91 }
92 */
93 
94 // If not all FLATBUFFERS_GEN_() arguments are necessary for implementation
95 // of FLATBUFFERS_TD, you can use a variadic macro (with __VA_ARGS__ if needed).
96 // In the above example, only CTYPE is used to generate the code, it can be rewritten:
97 
98 /*
99 switch (type) {
100   #define FLATBUFFERS_TD(ENUM, IDLTYPE, CTYPE, ...) \
101     case BASE_TYPE_ ## ENUM: \
102       // do something specific to CTYPE here
103     FLATBUFFERS_GEN_TYPES(FLATBUFFERS_TD)
104   #undef FLATBUFFERS_TD
105 }
106 */
107 
108 #define FLATBUFFERS_GEN_TYPES(TD) \
109         FLATBUFFERS_GEN_TYPES_SCALAR(TD) \
110         FLATBUFFERS_GEN_TYPES_POINTER(TD) \
111         FLATBUFFERS_GEN_TYPE_ARRAY(TD)
112 
113 // Create an enum for all the types above.
114 #ifdef __GNUC__
115 __extension__  // Stop GCC complaining about trailing comma with -Wpendantic.
116 #endif
117 enum BaseType {
118   #define FLATBUFFERS_TD(ENUM, ...) \
119     BASE_TYPE_ ## ENUM,
120     FLATBUFFERS_GEN_TYPES(FLATBUFFERS_TD)
121   #undef FLATBUFFERS_TD
122 };
123 
124 #define FLATBUFFERS_TD(ENUM, IDLTYPE, CTYPE, ...) \
125   static_assert(sizeof(CTYPE) <= sizeof(largest_scalar_t), \
126                 "define largest_scalar_t as " #CTYPE);
FLATBUFFERS_GEN_TYPES(FLATBUFFERS_TD)127   FLATBUFFERS_GEN_TYPES(FLATBUFFERS_TD)
128 #undef FLATBUFFERS_TD
129 
130 inline bool IsScalar (BaseType t) { return t >= BASE_TYPE_UTYPE &&
131                                            t <= BASE_TYPE_DOUBLE; }
IsInteger(BaseType t)132 inline bool IsInteger(BaseType t) { return t >= BASE_TYPE_UTYPE &&
133                                            t <= BASE_TYPE_ULONG; }
IsFloat(BaseType t)134 inline bool IsFloat  (BaseType t) { return t == BASE_TYPE_FLOAT ||
135                                            t == BASE_TYPE_DOUBLE; }
IsLong(BaseType t)136 inline bool IsLong   (BaseType t) { return t == BASE_TYPE_LONG ||
137                                            t == BASE_TYPE_ULONG; }
IsBool(BaseType t)138 inline bool IsBool   (BaseType t) { return t == BASE_TYPE_BOOL; }
IsOneByte(BaseType t)139 inline bool IsOneByte(BaseType t) { return t >= BASE_TYPE_UTYPE &&
140                                            t <= BASE_TYPE_UCHAR; }
141 
IsUnsigned(BaseType t)142 inline bool IsUnsigned(BaseType t) {
143   return (t == BASE_TYPE_UTYPE)  || (t == BASE_TYPE_UCHAR) ||
144          (t == BASE_TYPE_USHORT) || (t == BASE_TYPE_UINT)  ||
145          (t == BASE_TYPE_ULONG);
146 }
147 
148 // clang-format on
149 
150 extern const char *const kTypeNames[];
151 extern const char kTypeSizes[];
152 
SizeOf(BaseType t)153 inline size_t SizeOf(BaseType t) { return kTypeSizes[t]; }
154 
155 struct StructDef;
156 struct EnumDef;
157 class Parser;
158 
159 // Represents any type in the IDL, which is a combination of the BaseType
160 // and additional information for vectors/structs_.
161 struct Type {
162   explicit Type(BaseType _base_type = BASE_TYPE_NONE, StructDef *_sd = nullptr,
163                 EnumDef *_ed = nullptr, uint16_t _fixed_length = 0)
base_typeType164       : base_type(_base_type),
165         element(BASE_TYPE_NONE),
166         struct_def(_sd),
167         enum_def(_ed),
168         fixed_length(_fixed_length) {}
169 
170   bool operator==(const Type &o) {
171     return base_type == o.base_type && element == o.element &&
172            struct_def == o.struct_def && enum_def == o.enum_def;
173   }
174 
VectorTypeType175   Type VectorType() const {
176     return Type(element, struct_def, enum_def, fixed_length);
177   }
178 
179   Offset<reflection::Type> Serialize(FlatBufferBuilder *builder) const;
180 
181   bool Deserialize(const Parser &parser, const reflection::Type *type);
182 
183   BaseType base_type;
184   BaseType element;       // only set if t == BASE_TYPE_VECTOR
185   StructDef *struct_def;  // only set if t or element == BASE_TYPE_STRUCT
186   EnumDef *enum_def;      // set if t == BASE_TYPE_UNION / BASE_TYPE_UTYPE,
187                           // or for an integral type derived from an enum.
188   uint16_t fixed_length;  // only set if t == BASE_TYPE_ARRAY
189 };
190 
191 // Represents a parsed scalar value, it's type, and field offset.
192 struct Value {
ValueValue193   Value()
194       : constant("0"),
195         offset(static_cast<voffset_t>(~(static_cast<voffset_t>(0U)))) {}
196   Type type;
197   std::string constant;
198   voffset_t offset;
199 };
200 
201 // Helper class that retains the original order of a set of identifiers and
202 // also provides quick lookup.
203 template<typename T> class SymbolTable {
204  public:
~SymbolTable()205   ~SymbolTable() {
206     for (auto it = vec.begin(); it != vec.end(); ++it) { delete *it; }
207   }
208 
Add(const std::string & name,T * e)209   bool Add(const std::string &name, T *e) {
210     vector_emplace_back(&vec, e);
211     auto it = dict.find(name);
212     if (it != dict.end()) return true;
213     dict[name] = e;
214     return false;
215   }
216 
Move(const std::string & oldname,const std::string & newname)217   void Move(const std::string &oldname, const std::string &newname) {
218     auto it = dict.find(oldname);
219     if (it != dict.end()) {
220       auto obj = it->second;
221       dict.erase(it);
222       dict[newname] = obj;
223     } else {
224       FLATBUFFERS_ASSERT(false);
225     }
226   }
227 
Lookup(const std::string & name)228   T *Lookup(const std::string &name) const {
229     auto it = dict.find(name);
230     return it == dict.end() ? nullptr : it->second;
231   }
232 
233  public:
234   std::map<std::string, T *> dict;  // quick lookup
235   std::vector<T *> vec;             // Used to iterate in order of insertion
236 };
237 
238 // A name space, as set in the schema.
239 struct Namespace {
NamespaceNamespace240   Namespace() : from_table(0) {}
241 
242   // Given a (potentially unqualified) name, return the "fully qualified" name
243   // which has a full namespaced descriptor.
244   // With max_components you can request less than the number of components
245   // the current namespace has.
246   std::string GetFullyQualifiedName(const std::string &name,
247                                     size_t max_components = 1000) const;
248 
249   std::vector<std::string> components;
250   size_t from_table;  // Part of the namespace corresponds to a message/table.
251 };
252 
253 inline bool operator<(const Namespace &a, const Namespace &b) {
254   size_t min_size = std::min(a.components.size(), b.components.size());
255   for (size_t i = 0; i < min_size; ++i) {
256     if (a.components[i] != b.components[i])
257       return a.components[i] < b.components[i];
258   }
259   return a.components.size() < b.components.size();
260 }
261 
262 // Base class for all definition types (fields, structs_, enums_).
263 struct Definition {
DefinitionDefinition264   Definition()
265       : generated(false),
266         defined_namespace(nullptr),
267         serialized_location(0),
268         index(-1),
269         refcount(1) {}
270 
271   flatbuffers::Offset<
272       flatbuffers::Vector<flatbuffers::Offset<reflection::KeyValue>>>
273   SerializeAttributes(FlatBufferBuilder *builder, const Parser &parser) const;
274 
275   bool DeserializeAttributes(Parser &parser,
276                              const Vector<Offset<reflection::KeyValue>> *attrs);
277 
278   std::string name;
279   std::string file;
280   std::vector<std::string> doc_comment;
281   SymbolTable<Value> attributes;
282   bool generated;  // did we already output code for this definition?
283   Namespace *defined_namespace;  // Where it was defined.
284 
285   // For use with Serialize()
286   uoffset_t serialized_location;
287   int index;  // Inside the vector it is stored.
288   int refcount;
289 };
290 
291 struct FieldDef : public Definition {
FieldDefFieldDef292   FieldDef()
293       : deprecated(false),
294         key(false),
295         shared(false),
296         native_inline(false),
297         flexbuffer(false),
298         presence(kDefault),
299         nested_flatbuffer(NULL),
300         padding(0) {}
301 
302   Offset<reflection::Field> Serialize(FlatBufferBuilder *builder, uint16_t id,
303                                       const Parser &parser) const;
304 
305   bool Deserialize(Parser &parser, const reflection::Field *field);
306 
IsScalarOptionalFieldDef307   bool IsScalarOptional() const {
308     return IsScalar(value.type.base_type) && IsOptional();
309   }
IsOptionalFieldDef310   bool IsOptional() const {
311     return presence == kOptional;
312   }
IsRequiredFieldDef313   bool IsRequired() const {
314     return presence == kRequired;
315   }
IsDefaultFieldDef316   bool IsDefault() const {
317     return presence == kDefault;
318   }
319 
320   Value value;
321   bool deprecated;  // Field is allowed to be present in old data, but can't be.
322                     // written in new data nor accessed in new code.
323   bool key;         // Field functions as a key for creating sorted vectors.
324   bool shared;  // Field will be using string pooling (i.e. CreateSharedString)
325                 // as default serialization behavior if field is a string.
326   bool native_inline;  // Field will be defined inline (instead of as a pointer)
327                        // for native tables if field is a struct.
328   bool flexbuffer;     // This field contains FlexBuffer data.
329 
330   enum Presence {
331     // Field must always be present.
332     kRequired,
333     // Non-presence should be signalled to and controlled by users.
334     kOptional,
335     // Non-presence is hidden from users.
336     // Implementations may omit writing default values.
337     kDefault,
338   };
MakeFieldPresenceFieldDef339   Presence static MakeFieldPresence(bool optional, bool required) {
340     FLATBUFFERS_ASSERT(!(required && optional));
341     // clang-format off
342     return required ? FieldDef::kRequired
343          : optional ? FieldDef::kOptional
344                     : FieldDef::kDefault;
345     // clang-format on
346   }
347   Presence presence;
348 
349   StructDef *nested_flatbuffer;  // This field contains nested FlatBuffer data.
350   size_t padding;                // Bytes to always pad after this field.
351 };
352 
353 struct StructDef : public Definition {
StructDefStructDef354   StructDef()
355       : fixed(false),
356         predecl(true),
357         sortbysize(true),
358         has_key(false),
359         minalign(1),
360         bytesize(0) {}
361 
PadLastFieldStructDef362   void PadLastField(size_t min_align) {
363     auto padding = PaddingBytes(bytesize, min_align);
364     bytesize += padding;
365     if (fields.vec.size()) fields.vec.back()->padding = padding;
366   }
367 
368   Offset<reflection::Object> Serialize(FlatBufferBuilder *builder,
369                                        const Parser &parser) const;
370 
371   bool Deserialize(Parser &parser, const reflection::Object *object);
372 
373   SymbolTable<FieldDef> fields;
374 
375   bool fixed;       // If it's struct, not a table.
376   bool predecl;     // If it's used before it was defined.
377   bool sortbysize;  // Whether fields come in the declaration or size order.
378   bool has_key;     // It has a key field.
379   size_t minalign;  // What the whole object needs to be aligned to.
380   size_t bytesize;  // Size if fixed.
381 
382   flatbuffers::unique_ptr<std::string> original_location;
383 };
384 
385 struct EnumDef;
386 struct EnumValBuilder;
387 
388 struct EnumVal {
389   Offset<reflection::EnumVal> Serialize(FlatBufferBuilder *builder,
390                                         const Parser &parser) const;
391 
392   bool Deserialize(const Parser &parser, const reflection::EnumVal *val);
393 
GetAsUInt64EnumVal394   uint64_t GetAsUInt64() const { return static_cast<uint64_t>(value); }
GetAsInt64EnumVal395   int64_t GetAsInt64() const { return value; }
IsZeroEnumVal396   bool IsZero() const { return 0 == value; }
IsNonZeroEnumVal397   bool IsNonZero() const { return !IsZero(); }
398 
399   std::string name;
400   std::vector<std::string> doc_comment;
401   Type union_type;
402 
403  private:
404   friend EnumDef;
405   friend EnumValBuilder;
406   friend bool operator==(const EnumVal &lhs, const EnumVal &rhs);
407 
EnumValEnumVal408   EnumVal(const std::string &_name, int64_t _val) : name(_name), value(_val) {}
EnumValEnumVal409   EnumVal() : value(0) {}
410 
411   int64_t value;
412 };
413 
414 struct EnumDef : public Definition {
EnumDefEnumDef415   EnumDef() : is_union(false), uses_multiple_type_instances(false) {}
416 
417   Offset<reflection::Enum> Serialize(FlatBufferBuilder *builder,
418                                      const Parser &parser) const;
419 
420   bool Deserialize(Parser &parser, const reflection::Enum *values);
421 
422   template<typename T> void ChangeEnumValue(EnumVal *ev, T new_val);
423   void SortByValue();
424   void RemoveDuplicates();
425 
426   std::string AllFlags() const;
427   const EnumVal *MinValue() const;
428   const EnumVal *MaxValue() const;
429   // Returns the number of integer steps from v1 to v2.
430   uint64_t Distance(const EnumVal *v1, const EnumVal *v2) const;
431   // Returns the number of integer steps from Min to Max.
DistanceEnumDef432   uint64_t Distance() const { return Distance(MinValue(), MaxValue()); }
433 
434   EnumVal *ReverseLookup(int64_t enum_idx,
435                          bool skip_union_default = false) const;
436   EnumVal *FindByValue(const std::string &constant) const;
437 
ToStringEnumDef438   std::string ToString(const EnumVal &ev) const {
439     return IsUInt64() ? NumToString(ev.GetAsUInt64())
440                       : NumToString(ev.GetAsInt64());
441   }
442 
sizeEnumDef443   size_t size() const { return vals.vec.size(); }
444 
ValsEnumDef445   const std::vector<EnumVal *> &Vals() const { return vals.vec; }
446 
LookupEnumDef447   const EnumVal *Lookup(const std::string &enum_name) const {
448     return vals.Lookup(enum_name);
449   }
450 
451   bool is_union;
452   // Type is a union which uses type aliases where at least one type is
453   // available under two different names.
454   bool uses_multiple_type_instances;
455   Type underlying_type;
456 
457  private:
IsUInt64EnumDef458   bool IsUInt64() const {
459     return (BASE_TYPE_ULONG == underlying_type.base_type);
460   }
461 
462   friend EnumValBuilder;
463   SymbolTable<EnumVal> vals;
464 };
465 
IsString(const Type & type)466 inline bool IsString(const Type &type) {
467   return type.base_type == BASE_TYPE_STRING;
468 }
469 
IsStruct(const Type & type)470 inline bool IsStruct(const Type &type) {
471   return type.base_type == BASE_TYPE_STRUCT && type.struct_def->fixed;
472 }
473 
IsUnion(const Type & type)474 inline bool IsUnion(const Type &type) {
475   return type.enum_def != nullptr && type.enum_def->is_union;
476 }
477 
IsVector(const Type & type)478 inline bool IsVector(const Type &type) {
479   return type.base_type == BASE_TYPE_VECTOR;
480 }
481 
IsArray(const Type & type)482 inline bool IsArray(const Type &type) {
483   return type.base_type == BASE_TYPE_ARRAY;
484 }
485 
IsSeries(const Type & type)486 inline bool IsSeries(const Type &type) {
487   return IsVector(type) || IsArray(type);
488 }
489 
IsEnum(const Type & type)490 inline bool IsEnum(const Type &type) {
491   return type.enum_def != nullptr && IsInteger(type.base_type);
492 }
493 
InlineSize(const Type & type)494 inline size_t InlineSize(const Type &type) {
495   return IsStruct(type)
496              ? type.struct_def->bytesize
497              : (IsArray(type)
498                     ? InlineSize(type.VectorType()) * type.fixed_length
499                     : SizeOf(type.base_type));
500 }
501 
InlineAlignment(const Type & type)502 inline size_t InlineAlignment(const Type &type) {
503   if (IsStruct(type)) {
504     return type.struct_def->minalign;
505   } else if (IsArray(type)) {
506     return IsStruct(type.VectorType()) ? type.struct_def->minalign
507                                        : SizeOf(type.element);
508   } else {
509     return SizeOf(type.base_type);
510   }
511 }
512 inline bool operator==(const EnumVal &lhs, const EnumVal &rhs) {
513   return lhs.value == rhs.value;
514 }
515 inline bool operator!=(const EnumVal &lhs, const EnumVal &rhs) {
516   return !(lhs == rhs);
517 }
518 
EqualByName(const Type & a,const Type & b)519 inline bool EqualByName(const Type &a, const Type &b) {
520   return a.base_type == b.base_type && a.element == b.element &&
521          (a.struct_def == b.struct_def ||
522           a.struct_def->name == b.struct_def->name) &&
523          (a.enum_def == b.enum_def || a.enum_def->name == b.enum_def->name);
524 }
525 
526 struct RPCCall : public Definition {
527   Offset<reflection::RPCCall> Serialize(FlatBufferBuilder *builder,
528                                         const Parser &parser) const;
529 
530   bool Deserialize(Parser &parser, const reflection::RPCCall *call);
531 
532   StructDef *request, *response;
533 };
534 
535 struct ServiceDef : public Definition {
536   Offset<reflection::Service> Serialize(FlatBufferBuilder *builder,
537                                         const Parser &parser) const;
538   bool Deserialize(Parser &parser, const reflection::Service *service);
539 
540   SymbolTable<RPCCall> calls;
541 };
542 
543 // Container of options that may apply to any of the source/text generators.
544 struct IDLOptions {
545   bool gen_jvmstatic;
546   // Use flexbuffers instead for binary and text generation
547   bool use_flexbuffers;
548   bool strict_json;
549   bool output_default_scalars_in_json;
550   int indent_step;
551   bool output_enum_identifiers;
552   bool prefixed_enums;
553   bool scoped_enums;
554   bool include_dependence_headers;
555   bool mutable_buffer;
556   bool one_file;
557   bool proto_mode;
558   bool proto_oneof_union;
559   bool generate_all;
560   bool skip_unexpected_fields_in_json;
561   bool generate_name_strings;
562   bool generate_object_based_api;
563   bool gen_compare;
564   std::string cpp_object_api_pointer_type;
565   std::string cpp_object_api_string_type;
566   bool cpp_object_api_string_flexible_constructor;
567   bool cpp_direct_copy;
568   bool gen_nullable;
569   bool java_checkerframework;
570   bool gen_generated;
571   std::string object_prefix;
572   std::string object_suffix;
573   bool union_value_namespacing;
574   bool allow_non_utf8;
575   bool natural_utf8;
576   std::string include_prefix;
577   bool keep_include_path;
578   bool binary_schema_comments;
579   bool binary_schema_builtins;
580   bool binary_schema_gen_embed;
581   std::string go_import;
582   std::string go_namespace;
583   bool protobuf_ascii_alike;
584   bool size_prefixed;
585   std::string root_type;
586   bool force_defaults;
587   bool java_primitive_has_method;
588   bool cs_gen_json_serializer;
589   std::vector<std::string> cpp_includes;
590   std::string cpp_std;
591   bool cpp_static_reflection;
592   std::string proto_namespace_suffix;
593   std::string filename_suffix;
594   std::string filename_extension;
595   bool no_warnings;
596 
597   // Possible options for the more general generator below.
598   enum Language {
599     kJava = 1 << 0,
600     kCSharp = 1 << 1,
601     kGo = 1 << 2,
602     kCpp = 1 << 3,
603     kPython = 1 << 5,
604     kPhp = 1 << 6,
605     kJson = 1 << 7,
606     kBinary = 1 << 8,
607     kTs = 1 << 9,
608     kJsonSchema = 1 << 10,
609     kDart = 1 << 11,
610     kLua = 1 << 12,
611     kLobster = 1 << 13,
612     kRust = 1 << 14,
613     kKotlin = 1 << 15,
614     kSwift = 1 << 16,
615     kMAX
616   };
617 
618   Language lang;
619 
620   enum MiniReflect { kNone, kTypes, kTypesAndNames };
621 
622   MiniReflect mini_reflect;
623 
624   // If set, require all fields in a table to be explicitly numbered.
625   bool require_explicit_ids;
626 
627   // The corresponding language bit will be set if a language is included
628   // for code generation.
629   unsigned long lang_to_generate;
630 
631   // If set (default behavior), empty string fields will be set to nullptr to
632   // make the flatbuffer more compact.
633   bool set_empty_strings_to_null;
634 
635   // If set (default behavior), empty vector fields will be set to nullptr to
636   // make the flatbuffer more compact.
637   bool set_empty_vectors_to_null;
638 
IDLOptionsIDLOptions639   IDLOptions()
640       : gen_jvmstatic(false),
641         use_flexbuffers(false),
642         strict_json(false),
643         output_default_scalars_in_json(false),
644         indent_step(2),
645         output_enum_identifiers(true),
646         prefixed_enums(true),
647         scoped_enums(false),
648         include_dependence_headers(true),
649         mutable_buffer(false),
650         one_file(false),
651         proto_mode(false),
652         proto_oneof_union(false),
653         generate_all(false),
654         skip_unexpected_fields_in_json(false),
655         generate_name_strings(false),
656         generate_object_based_api(false),
657         gen_compare(false),
658         cpp_object_api_pointer_type("std::unique_ptr"),
659         cpp_object_api_string_flexible_constructor(false),
660         cpp_direct_copy(true),
661         gen_nullable(false),
662         java_checkerframework(false),
663         gen_generated(false),
664         object_suffix("T"),
665         union_value_namespacing(true),
666         allow_non_utf8(false),
667         natural_utf8(false),
668         keep_include_path(false),
669         binary_schema_comments(false),
670         binary_schema_builtins(false),
671         binary_schema_gen_embed(false),
672         protobuf_ascii_alike(false),
673         size_prefixed(false),
674         force_defaults(false),
675         java_primitive_has_method(false),
676         cs_gen_json_serializer(false),
677         cpp_static_reflection(false),
678         filename_suffix("_generated"),
679         filename_extension(),
680         no_warnings(false),
681         lang(IDLOptions::kJava),
682         mini_reflect(IDLOptions::kNone),
683         require_explicit_ids(false),
684         lang_to_generate(0),
685         set_empty_strings_to_null(true),
686         set_empty_vectors_to_null(true) {}
687 };
688 
689 // This encapsulates where the parser is in the current source file.
690 struct ParserState {
ParserStateParserState691   ParserState()
692       : cursor_(nullptr),
693         line_start_(nullptr),
694         line_(0),
695         token_(-1),
696         attr_is_trivial_ascii_string_(true) {}
697 
698  protected:
ResetStateParserState699   void ResetState(const char *source) {
700     cursor_ = source;
701     line_ = 0;
702     MarkNewLine();
703   }
704 
MarkNewLineParserState705   void MarkNewLine() {
706     line_start_ = cursor_;
707     line_ += 1;
708   }
709 
CursorPositionParserState710   int64_t CursorPosition() const {
711     FLATBUFFERS_ASSERT(cursor_ && line_start_ && cursor_ >= line_start_);
712     return static_cast<int64_t>(cursor_ - line_start_);
713   }
714 
715   const char *cursor_;
716   const char *line_start_;
717   int line_;  // the current line being parsed
718   int token_;
719 
720   // Flag: text in attribute_ is true ASCII string without escape
721   // sequences. Only printable ASCII (without [\t\r\n]).
722   // Used for number-in-string (and base64 string in future).
723   bool attr_is_trivial_ascii_string_;
724   std::string attribute_;
725   std::vector<std::string> doc_comment_;
726 };
727 
728 // A way to make error propagation less error prone by requiring values to be
729 // checked.
730 // Once you create a value of this type you must either:
731 // - Call Check() on it.
732 // - Copy or assign it to another value.
733 // Failure to do so leads to an assert.
734 // This guarantees that this as return value cannot be ignored.
735 class CheckedError {
736  public:
CheckedError(bool error)737   explicit CheckedError(bool error)
738       : is_error_(error), has_been_checked_(false) {}
739 
740   CheckedError &operator=(const CheckedError &other) {
741     is_error_ = other.is_error_;
742     has_been_checked_ = false;
743     other.has_been_checked_ = true;
744     return *this;
745   }
746 
CheckedError(const CheckedError & other)747   CheckedError(const CheckedError &other) {
748     *this = other;  // Use assignment operator.
749   }
750 
~CheckedError()751   ~CheckedError() { FLATBUFFERS_ASSERT(has_been_checked_); }
752 
Check()753   bool Check() {
754     has_been_checked_ = true;
755     return is_error_;
756   }
757 
758  private:
759   bool is_error_;
760   mutable bool has_been_checked_;
761 };
762 
763 // Additionally, in GCC we can get these errors statically, for additional
764 // assurance:
765 // clang-format off
766 #ifdef __GNUC__
767 #define FLATBUFFERS_CHECKED_ERROR CheckedError \
768           __attribute__((warn_unused_result))
769 #else
770 #define FLATBUFFERS_CHECKED_ERROR CheckedError
771 #endif
772 // clang-format on
773 
774 class Parser : public ParserState {
775  public:
776   explicit Parser(const IDLOptions &options = IDLOptions())
current_namespace_(nullptr)777       : current_namespace_(nullptr),
778         empty_namespace_(nullptr),
779         flex_builder_(256, flexbuffers::BUILDER_FLAG_SHARE_ALL),
780         root_struct_def_(nullptr),
781         opts(options),
782         uses_flexbuffers_(false),
783         advanced_features_(0),
784         source_(nullptr),
785         anonymous_counter_(0),
786         parse_depth_counter_(0) {
787     if (opts.force_defaults) { builder_.ForceDefaults(true); }
788     // Start out with the empty namespace being current.
789     empty_namespace_ = new Namespace();
790     namespaces_.push_back(empty_namespace_);
791     current_namespace_ = empty_namespace_;
792     known_attributes_["deprecated"] = true;
793     known_attributes_["required"] = true;
794     known_attributes_["key"] = true;
795     known_attributes_["shared"] = true;
796     known_attributes_["hash"] = true;
797     known_attributes_["id"] = true;
798     known_attributes_["force_align"] = true;
799     known_attributes_["bit_flags"] = true;
800     known_attributes_["original_order"] = true;
801     known_attributes_["nested_flatbuffer"] = true;
802     known_attributes_["csharp_partial"] = true;
803     known_attributes_["streaming"] = true;
804     known_attributes_["idempotent"] = true;
805     known_attributes_["cpp_type"] = true;
806     known_attributes_["cpp_ptr_type"] = true;
807     known_attributes_["cpp_ptr_type_get"] = true;
808     known_attributes_["cpp_str_type"] = true;
809     known_attributes_["cpp_str_flex_ctor"] = true;
810     known_attributes_["native_inline"] = true;
811     known_attributes_["native_custom_alloc"] = true;
812     known_attributes_["native_type"] = true;
813     known_attributes_["native_type_pack_name"] = true;
814     known_attributes_["native_default"] = true;
815     known_attributes_["flexbuffer"] = true;
816     known_attributes_["private"] = true;
817   }
818 
~Parser()819   ~Parser() {
820     for (auto it = namespaces_.begin(); it != namespaces_.end(); ++it) {
821       delete *it;
822     }
823   }
824 
825   // Parse the string containing either schema or JSON data, which will
826   // populate the SymbolTable's or the FlatBufferBuilder above.
827   // include_paths is used to resolve any include statements, and typically
828   // should at least include the project path (where you loaded source_ from).
829   // include_paths must be nullptr terminated if specified.
830   // If include_paths is nullptr, it will attempt to load from the current
831   // directory.
832   // If the source was loaded from a file and isn't an include file,
833   // supply its name in source_filename.
834   // All paths specified in this call must be in posix format, if you accept
835   // paths from user input, please call PosixPath on them first.
836   bool Parse(const char *_source, const char **include_paths = nullptr,
837              const char *source_filename = nullptr);
838 
839   bool ParseJson(const char *json, const char *json_filename = nullptr);
840 
841   // Set the root type. May override the one set in the schema.
842   bool SetRootType(const char *name);
843 
844   // Mark all definitions as already having code generated.
845   void MarkGenerated();
846 
847   // Get the files recursively included by the given file. The returned
848   // container will have at least the given file.
849   std::set<std::string> GetIncludedFilesRecursive(
850       const std::string &file_name) const;
851 
852   // Fills builder_ with a binary version of the schema parsed.
853   // See reflection/reflection.fbs
854   void Serialize();
855 
856   // Deserialize a schema buffer
857   bool Deserialize(const uint8_t *buf, const size_t size);
858 
859   // Fills internal structure as if the schema passed had been loaded by parsing
860   // with Parse except that included filenames will not be populated.
861   bool Deserialize(const reflection::Schema *schema);
862 
863   Type *DeserializeType(const reflection::Type *type);
864 
865   // Checks that the schema represented by this parser is a safe evolution
866   // of the schema provided. Returns non-empty error on any problems.
867   std::string ConformTo(const Parser &base);
868 
869   // Similar to Parse(), but now only accepts JSON to be parsed into a
870   // FlexBuffer.
871   bool ParseFlexBuffer(const char *source, const char *source_filename,
872                        flexbuffers::Builder *builder);
873 
874   StructDef *LookupStruct(const std::string &id) const;
875   StructDef *LookupStructThruParentNamespaces(const std::string &id) const;
876 
877   std::string UnqualifiedName(const std::string &fullQualifiedName);
878 
879   FLATBUFFERS_CHECKED_ERROR Error(const std::string &msg);
880 
881   // @brief Verify that any of 'opts.lang_to_generate' supports Optional scalars
882   // in a schema.
883   // @param opts Options used to parce a schema and generate code.
884   static bool SupportsOptionalScalars(const flatbuffers::IDLOptions &opts);
885 
886  private:
887   class ParseDepthGuard;
888 
889   void Message(const std::string &msg);
890   void Warning(const std::string &msg);
891   FLATBUFFERS_CHECKED_ERROR ParseHexNum(int nibbles, uint64_t *val);
892   FLATBUFFERS_CHECKED_ERROR Next();
893   FLATBUFFERS_CHECKED_ERROR SkipByteOrderMark();
894   bool Is(int t) const;
895   bool IsIdent(const char *id) const;
896   FLATBUFFERS_CHECKED_ERROR Expect(int t);
897   std::string TokenToStringId(int t) const;
898   EnumDef *LookupEnum(const std::string &id);
899   FLATBUFFERS_CHECKED_ERROR ParseNamespacing(std::string *id,
900                                              std::string *last);
901   FLATBUFFERS_CHECKED_ERROR ParseTypeIdent(Type &type);
902   FLATBUFFERS_CHECKED_ERROR ParseType(Type &type);
903   FLATBUFFERS_CHECKED_ERROR AddField(StructDef &struct_def,
904                                      const std::string &name, const Type &type,
905                                      FieldDef **dest);
906   FLATBUFFERS_CHECKED_ERROR ParseField(StructDef &struct_def);
907   FLATBUFFERS_CHECKED_ERROR ParseString(Value &val, bool use_string_pooling);
908   FLATBUFFERS_CHECKED_ERROR ParseComma();
909   FLATBUFFERS_CHECKED_ERROR ParseAnyValue(Value &val, FieldDef *field,
910                                           size_t parent_fieldn,
911                                           const StructDef *parent_struct_def,
912                                           uoffset_t count,
913                                           bool inside_vector = false);
914   template<typename F>
915   FLATBUFFERS_CHECKED_ERROR ParseTableDelimiters(size_t &fieldn,
916                                                  const StructDef *struct_def,
917                                                  F body);
918   FLATBUFFERS_CHECKED_ERROR ParseTable(const StructDef &struct_def,
919                                        std::string *value, uoffset_t *ovalue);
920   void SerializeStruct(const StructDef &struct_def, const Value &val);
921   void SerializeStruct(FlatBufferBuilder &builder, const StructDef &struct_def,
922                        const Value &val);
923   template<typename F>
924   FLATBUFFERS_CHECKED_ERROR ParseVectorDelimiters(uoffset_t &count, F body);
925   FLATBUFFERS_CHECKED_ERROR ParseVector(const Type &type, uoffset_t *ovalue,
926                                         FieldDef *field, size_t fieldn);
927   FLATBUFFERS_CHECKED_ERROR ParseArray(Value &array);
928   FLATBUFFERS_CHECKED_ERROR ParseNestedFlatbuffer(
929       Value &val, FieldDef *field, size_t fieldn,
930       const StructDef *parent_struct_def);
931   FLATBUFFERS_CHECKED_ERROR ParseMetaData(SymbolTable<Value> *attributes);
932   FLATBUFFERS_CHECKED_ERROR TryTypedValue(const std::string *name, int dtoken,
933                                           bool check, Value &e, BaseType req,
934                                           bool *destmatch);
935   FLATBUFFERS_CHECKED_ERROR ParseHash(Value &e, FieldDef *field);
936   FLATBUFFERS_CHECKED_ERROR TokenError();
937   FLATBUFFERS_CHECKED_ERROR ParseSingleValue(const std::string *name, Value &e,
938                                              bool check_now);
939   FLATBUFFERS_CHECKED_ERROR ParseFunction(const std::string *name, Value &e);
940   FLATBUFFERS_CHECKED_ERROR ParseEnumFromString(const Type &type,
941                                                 std::string *result);
942   StructDef *LookupCreateStruct(const std::string &name,
943                                 bool create_if_new = true,
944                                 bool definition = false);
945   FLATBUFFERS_CHECKED_ERROR ParseEnum(bool is_union, EnumDef **dest);
946   FLATBUFFERS_CHECKED_ERROR ParseNamespace();
947   FLATBUFFERS_CHECKED_ERROR StartStruct(const std::string &name,
948                                         StructDef **dest);
949   FLATBUFFERS_CHECKED_ERROR StartEnum(const std::string &name, bool is_union,
950                                       EnumDef **dest);
951   FLATBUFFERS_CHECKED_ERROR ParseDecl();
952   FLATBUFFERS_CHECKED_ERROR ParseService();
953   FLATBUFFERS_CHECKED_ERROR ParseProtoFields(StructDef *struct_def,
954                                              bool isextend, bool inside_oneof);
955   FLATBUFFERS_CHECKED_ERROR ParseProtoOption();
956   FLATBUFFERS_CHECKED_ERROR ParseProtoKey();
957   FLATBUFFERS_CHECKED_ERROR ParseProtoDecl();
958   FLATBUFFERS_CHECKED_ERROR ParseProtoCurliesOrIdent();
959   FLATBUFFERS_CHECKED_ERROR ParseTypeFromProtoType(Type *type);
960   FLATBUFFERS_CHECKED_ERROR SkipAnyJsonValue();
961   FLATBUFFERS_CHECKED_ERROR ParseFlexBufferNumericConstant(
962       flexbuffers::Builder *builder);
963   FLATBUFFERS_CHECKED_ERROR ParseFlexBufferValue(flexbuffers::Builder *builder);
964   FLATBUFFERS_CHECKED_ERROR StartParseFile(const char *source,
965                                            const char *source_filename);
966   FLATBUFFERS_CHECKED_ERROR ParseRoot(const char *_source,
967                                       const char **include_paths,
968                                       const char *source_filename);
969   FLATBUFFERS_CHECKED_ERROR DoParse(const char *_source,
970                                     const char **include_paths,
971                                     const char *source_filename,
972                                     const char *include_filename);
973   FLATBUFFERS_CHECKED_ERROR DoParseJson();
974   FLATBUFFERS_CHECKED_ERROR CheckClash(std::vector<FieldDef *> &fields,
975                                        StructDef *struct_def,
976                                        const char *suffix, BaseType baseType);
977   FLATBUFFERS_CHECKED_ERROR ParseAlignAttribute(
978       const std::string &align_constant, size_t min_align, size_t *align);
979 
980   bool SupportsAdvancedUnionFeatures() const;
981   bool SupportsAdvancedArrayFeatures() const;
982   bool SupportsOptionalScalars() const;
983   bool SupportsDefaultVectorsAndStrings() const;
984   Namespace *UniqueNamespace(Namespace *ns);
985 
986   FLATBUFFERS_CHECKED_ERROR RecurseError();
987   template<typename F> CheckedError Recurse(F f);
988 
989  public:
990   SymbolTable<Type> types_;
991   SymbolTable<StructDef> structs_;
992   SymbolTable<EnumDef> enums_;
993   SymbolTable<ServiceDef> services_;
994   std::vector<Namespace *> namespaces_;
995   Namespace *current_namespace_;
996   Namespace *empty_namespace_;
997   std::string error_;  // User readable error_ if Parse() == false
998 
999   FlatBufferBuilder builder_;  // any data contained in the file
1000   flexbuffers::Builder flex_builder_;
1001   flexbuffers::Reference flex_root_;
1002   StructDef *root_struct_def_;
1003   std::string file_identifier_;
1004   std::string file_extension_;
1005 
1006   std::map<uint64_t, std::string> included_files_;
1007   std::map<std::string, std::set<std::string>> files_included_per_file_;
1008   std::vector<std::string> native_included_files_;
1009 
1010   std::map<std::string, bool> known_attributes_;
1011 
1012   IDLOptions opts;
1013   bool uses_flexbuffers_;
1014 
1015   uint64_t advanced_features_;
1016 
1017  private:
1018   const char *source_;
1019 
1020   std::string file_being_parsed_;
1021 
1022   std::vector<std::pair<Value, FieldDef *>> field_stack_;
1023 
1024   int anonymous_counter_;
1025   int parse_depth_counter_;  // stack-overflow guard
1026 };
1027 
1028 // Utility functions for multiple generators:
1029 
1030 extern std::string MakeCamel(const std::string &in, bool first = true);
1031 
1032 extern std::string MakeScreamingCamel(const std::string &in);
1033 
1034 // Generate text (JSON) from a given FlatBuffer, and a given Parser
1035 // object that has been populated with the corresponding schema.
1036 // If ident_step is 0, no indentation will be generated. Additionally,
1037 // if it is less than 0, no linefeeds will be generated either.
1038 // See idl_gen_text.cpp.
1039 // strict_json adds "quotes" around field names if true.
1040 // If the flatbuffer cannot be encoded in JSON (e.g., it contains non-UTF-8
1041 // byte arrays in String values), returns false.
1042 extern bool GenerateTextFromTable(const Parser &parser, const void *table,
1043                                   const std::string &tablename,
1044                                   std::string *text);
1045 extern bool GenerateText(const Parser &parser, const void *flatbuffer,
1046                          std::string *text);
1047 extern bool GenerateTextFile(const Parser &parser, const std::string &path,
1048                              const std::string &file_name);
1049 
1050 // Generate Json schema to string
1051 // See idl_gen_json_schema.cpp.
1052 extern bool GenerateJsonSchema(const Parser &parser, std::string *json);
1053 
1054 // Generate binary files from a given FlatBuffer, and a given Parser
1055 // object that has been populated with the corresponding schema.
1056 // See code_generators.cpp.
1057 extern bool GenerateBinary(const Parser &parser, const std::string &path,
1058                            const std::string &file_name);
1059 
1060 // Generate a C++ header from the definitions in the Parser object.
1061 // See idl_gen_cpp.
1062 extern bool GenerateCPP(const Parser &parser, const std::string &path,
1063                         const std::string &file_name);
1064 
1065 // Generate C# files from the definitions in the Parser object.
1066 // See idl_gen_csharp.cpp.
1067 extern bool GenerateCSharp(const Parser &parser, const std::string &path,
1068                            const std::string &file_name);
1069 
1070 extern bool GenerateDart(const Parser &parser, const std::string &path,
1071                          const std::string &file_name);
1072 
1073 // Generate Java files from the definitions in the Parser object.
1074 // See idl_gen_java.cpp.
1075 extern bool GenerateJava(const Parser &parser, const std::string &path,
1076                          const std::string &file_name);
1077 
1078 // Generate JavaScript or TypeScript code from the definitions in the Parser
1079 // object. See idl_gen_js.
1080 extern bool GenerateTS(const Parser &parser, const std::string &path,
1081                        const std::string &file_name);
1082 
1083 // Generate Go files from the definitions in the Parser object.
1084 // See idl_gen_go.cpp.
1085 extern bool GenerateGo(const Parser &parser, const std::string &path,
1086                        const std::string &file_name);
1087 
1088 // Generate Php code from the definitions in the Parser object.
1089 // See idl_gen_php.
1090 extern bool GeneratePhp(const Parser &parser, const std::string &path,
1091                         const std::string &file_name);
1092 
1093 // Generate Python files from the definitions in the Parser object.
1094 // See idl_gen_python.cpp.
1095 extern bool GeneratePython(const Parser &parser, const std::string &path,
1096                            const std::string &file_name);
1097 
1098 // Generate Lobster files from the definitions in the Parser object.
1099 // See idl_gen_lobster.cpp.
1100 extern bool GenerateLobster(const Parser &parser, const std::string &path,
1101                             const std::string &file_name);
1102 
1103 // Generate Lua files from the definitions in the Parser object.
1104 // See idl_gen_lua.cpp.
1105 extern bool GenerateLua(const Parser &parser, const std::string &path,
1106                         const std::string &file_name);
1107 
1108 // Generate Rust files from the definitions in the Parser object.
1109 // See idl_gen_rust.cpp.
1110 extern bool GenerateRust(const Parser &parser, const std::string &path,
1111                          const std::string &file_name);
1112 
1113 // Generate Json schema file
1114 // See idl_gen_json_schema.cpp.
1115 extern bool GenerateJsonSchema(const Parser &parser, const std::string &path,
1116                                const std::string &file_name);
1117 
1118 extern bool GenerateKotlin(const Parser &parser, const std::string &path,
1119                            const std::string &file_name);
1120 
1121 // Generate Swift classes.
1122 // See idl_gen_swift.cpp
1123 extern bool GenerateSwift(const Parser &parser, const std::string &path,
1124                           const std::string &file_name);
1125 
1126 // Generate a schema file from the internal representation, useful after
1127 // parsing a .proto schema.
1128 extern std::string GenerateFBS(const Parser &parser,
1129                                const std::string &file_name);
1130 extern bool GenerateFBS(const Parser &parser, const std::string &path,
1131                         const std::string &file_name);
1132 
1133 // Generate a make rule for the generated TypeScript code.
1134 // See idl_gen_ts.cpp.
1135 extern std::string TSMakeRule(const Parser &parser, const std::string &path,
1136                               const std::string &file_name);
1137 
1138 // Generate a make rule for the generated C++ header.
1139 // See idl_gen_cpp.cpp.
1140 extern std::string CPPMakeRule(const Parser &parser, const std::string &path,
1141                                const std::string &file_name);
1142 
1143 // Generate a make rule for the generated Dart code
1144 // see idl_gen_dart.cpp
1145 extern std::string DartMakeRule(const Parser &parser, const std::string &path,
1146                                 const std::string &file_name);
1147 
1148 // Generate a make rule for the generated Rust code.
1149 // See idl_gen_rust.cpp.
1150 extern std::string RustMakeRule(const Parser &parser, const std::string &path,
1151                                 const std::string &file_name);
1152 
1153 // Generate a make rule for generated Java or C# files.
1154 // See code_generators.cpp.
1155 extern std::string JavaCSharpMakeRule(const Parser &parser,
1156                                       const std::string &path,
1157                                       const std::string &file_name);
1158 
1159 // Generate a make rule for the generated text (JSON) files.
1160 // See idl_gen_text.cpp.
1161 extern std::string TextMakeRule(const Parser &parser, const std::string &path,
1162                                 const std::string &file_names);
1163 
1164 // Generate a make rule for the generated binary files.
1165 // See code_generators.cpp.
1166 extern std::string BinaryMakeRule(const Parser &parser, const std::string &path,
1167                                   const std::string &file_name);
1168 
1169 // Generate GRPC Cpp interfaces.
1170 // See idl_gen_grpc.cpp.
1171 bool GenerateCppGRPC(const Parser &parser, const std::string &path,
1172                      const std::string &file_name);
1173 
1174 // Generate GRPC Go interfaces.
1175 // See idl_gen_grpc.cpp.
1176 bool GenerateGoGRPC(const Parser &parser, const std::string &path,
1177                     const std::string &file_name);
1178 
1179 // Generate GRPC Java classes.
1180 // See idl_gen_grpc.cpp
1181 bool GenerateJavaGRPC(const Parser &parser, const std::string &path,
1182                       const std::string &file_name);
1183 
1184 // Generate GRPC Python interfaces.
1185 // See idl_gen_grpc.cpp.
1186 bool GeneratePythonGRPC(const Parser &parser, const std::string &path,
1187                         const std::string &file_name);
1188 
1189 // Generate GRPC Swift interfaces.
1190 // See idl_gen_grpc.cpp.
1191 extern bool GenerateSwiftGRPC(const Parser &parser, const std::string &path,
1192                               const std::string &file_name);
1193 
1194 extern bool GenerateTSGRPC(const Parser &parser, const std::string &path,
1195                            const std::string &file_name);
1196 }  // namespace flatbuffers
1197 
1198 #endif  // FLATBUFFERS_IDL_H_
1199