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/*
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** upb::pb::Decoder
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**
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** A high performance, streaming, resumable decoder for the binary protobuf
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** format.
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**
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** This interface works the same regardless of what decoder backend is being
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** used. A client of this class does not need to know whether decoding is using
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** a JITted decoder (DynASM, LLVM, etc) or an interpreted decoder. By default,
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** it will always use the fastest available decoder. However, you can call
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** set_allow_jit(false) to disable any JIT decoder that might be available.
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** This is primarily useful for testing purposes.
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*/
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#ifndef UPB_DECODER_H_
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#define UPB_DECODER_H_
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#include "upb/sink.h"
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#ifdef __cplusplus
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namespace upb {
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namespace pb {
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class CodeCache;
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class DecoderPtr;
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class DecoderMethodPtr;
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class DecoderMethodOptions;
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} /* namespace pb */
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} /* namespace upb */
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#endif
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/* The maximum number of bytes we are required to buffer internally between
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* calls to the decoder. The value is 14: a 5 byte unknown tag plus ten-byte
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* varint, less one because we are buffering an incomplete value.
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*
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* Should only be used by unit tests. */
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#define UPB_DECODER_MAX_RESIDUAL_BYTES 14
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/* upb_pbdecodermethod ********************************************************/
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struct upb_pbdecodermethod;
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typedef struct upb_pbdecodermethod upb_pbdecodermethod;
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UPB_BEGIN_EXTERN_C
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const upb_handlers *upb_pbdecodermethod_desthandlers(
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const upb_pbdecodermethod *m);
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const upb_byteshandler *upb_pbdecodermethod_inputhandler(
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const upb_pbdecodermethod *m);
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bool upb_pbdecodermethod_isnative(const upb_pbdecodermethod *m);
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UPB_END_EXTERN_C
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#ifdef __cplusplus
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/* Represents the code to parse a protobuf according to a destination
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* Handlers. */
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class upb::pb::DecoderMethodPtr {
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public:
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DecoderMethodPtr(const upb_pbdecodermethod* ptr) : ptr_(ptr) {}
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const upb_pbdecodermethod* ptr() { return ptr_; }
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/* The destination handlers that are statically bound to this method.
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* This method is only capable of outputting to a sink that uses these
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* handlers. */
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const Handlers *dest_handlers() const {
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return upb_pbdecodermethod_desthandlers(ptr_);
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}
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/* The input handlers for this decoder method. */
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const BytesHandler* input_handler() const {
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return upb_pbdecodermethod_inputhandler(ptr_);
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}
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/* Whether this method is native. */
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bool is_native() const {
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return upb_pbdecodermethod_isnative(ptr_);
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}
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private:
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const upb_pbdecodermethod* ptr_;
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};
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#endif
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/* upb_pbdecoder **************************************************************/
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/* Preallocation hint: decoder won't allocate more bytes than this when first
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* constructed. This hint may be an overestimate for some build configurations.
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* But if the decoder library is upgraded without recompiling the application,
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* it may be an underestimate. */
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#define UPB_PB_DECODER_SIZE 4416
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struct upb_pbdecoder;
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typedef struct upb_pbdecoder upb_pbdecoder;
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UPB_BEGIN_EXTERN_C
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upb_pbdecoder *upb_pbdecoder_create(upb_env *e,
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const upb_pbdecodermethod *method,
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upb_sink *output);
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const upb_pbdecodermethod *upb_pbdecoder_method(const upb_pbdecoder *d);
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upb_bytessink *upb_pbdecoder_input(upb_pbdecoder *d);
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uint64_t upb_pbdecoder_bytesparsed(const upb_pbdecoder *d);
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size_t upb_pbdecoder_maxnesting(const upb_pbdecoder *d);
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bool upb_pbdecoder_setmaxnesting(upb_pbdecoder *d, size_t max);
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void upb_pbdecoder_reset(upb_pbdecoder *d);
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UPB_END_EXTERN_C
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#ifdef __cplusplus
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/* A Decoder receives binary protobuf data on its input sink and pushes the
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* decoded data to its output sink. */
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class upb::pb::DecoderPtr {
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public:
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DecoderPtr(upb_pbdecoder* ptr) : ptr_(ptr) {}
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upb_pbdecoder* ptr() { return ptr_; }
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/* Constructs a decoder instance for the given method, which must outlive this
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* decoder. Any errors during parsing will be set on the given status, which
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* must also outlive this decoder.
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*
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* The sink must match the given method. */
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static DecoderPtr Create(Environment *env, DecoderMethodPtr method,
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upb_sink *output) {
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return DecoderPtr(upb_pbdecoder_create(env, method.ptr(), output));
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}
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/* Returns the DecoderMethod this decoder is parsing from. */
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const DecoderMethodPtr method() const {
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return DecoderMethodPtr(upb_pbdecoder_method(ptr_));
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}
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/* The sink on which this decoder receives input. */
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upb_bytessink* input() { return upb_pbdecoder_input(ptr()); }
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/* Returns number of bytes successfully parsed.
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*
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* This can be useful for determining the stream position where an error
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* occurred.
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*
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* This value may not be up-to-date when called from inside a parsing
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* callback. */
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uint64_t BytesParsed() { return upb_pbdecoder_bytesparsed(ptr()); }
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/* Gets/sets the parsing nexting limit. If the total number of nested
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* submessages and repeated fields hits this limit, parsing will fail. This
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* is a resource limit that controls the amount of memory used by the parsing
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* stack.
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*
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* Setting the limit will fail if the parser is currently suspended at a depth
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* greater than this, or if memory allocation of the stack fails. */
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size_t max_nesting() { return upb_pbdecoder_maxnesting(ptr()); }
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bool set_max_nesting(size_t max) { return upb_pbdecoder_maxnesting(ptr()); }
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void Reset() { upb_pbdecoder_reset(ptr()); }
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static const size_t kSize = UPB_PB_DECODER_SIZE;
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private:
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upb_pbdecoder *ptr_;
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};
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#endif /* __cplusplus */
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/* upb_pbcodecache ************************************************************/
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struct upb_pbcodecache;
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typedef struct upb_pbcodecache upb_pbcodecache;
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UPB_BEGIN_EXTERN_C
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upb_pbcodecache *upb_pbcodecache_new(upb_handlercache *dest);
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void upb_pbcodecache_free(upb_pbcodecache *c);
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bool upb_pbcodecache_allowjit(const upb_pbcodecache *c);
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void upb_pbcodecache_setallowjit(upb_pbcodecache *c, bool allow);
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void upb_pbcodecache_setlazy(upb_pbcodecache *c, bool lazy);
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const upb_pbdecodermethod *upb_pbcodecache_get(upb_pbcodecache *c,
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const upb_msgdef *md);
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UPB_END_EXTERN_C
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#ifdef __cplusplus
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/* A class for caching protobuf processing code, whether bytecode for the
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* interpreted decoder or machine code for the JIT.
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*
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* This class is not thread-safe. */
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class upb::pb::CodeCache {
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public:
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CodeCache(upb::HandlerCache *dest)
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: ptr_(upb_pbcodecache_new(dest->ptr()), upb_pbcodecache_free) {}
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CodeCache(CodeCache&&) = default;
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CodeCache& operator=(CodeCache&&) = default;
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upb_pbcodecache* ptr() { return ptr_.get(); }
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const upb_pbcodecache* ptr() const { return ptr_.get(); }
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/* Whether the cache is allowed to generate machine code. Defaults to true.
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* There is no real reason to turn it off except for testing or if you are
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* having a specific problem with the JIT.
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*
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* Note that allow_jit = true does not *guarantee* that the code will be JIT
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* compiled. If this platform is not supported or the JIT was not compiled
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* in, the code may still be interpreted. */
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bool allow_jit() const { return upb_pbcodecache_allowjit(ptr()); }
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/* This may only be called when the object is first constructed, and prior to
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* any code generation. */
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void set_allow_jit(bool allow) { upb_pbcodecache_setallowjit(ptr(), allow); }
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/* Should the decoder push submessages to lazy handlers for fields that have
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* them? The caller should set this iff the lazy handlers expect data that is
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* in protobuf binary format and the caller wishes to lazy parse it. */
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void set_lazy(bool lazy) { upb_pbcodecache_setlazy(ptr(), lazy); }
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/* Returns a DecoderMethod that can push data to the given handlers.
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* If a suitable method already exists, it will be returned from the cache. */
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const DecoderMethodPtr Get(MessageDefPtr md) {
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return DecoderMethodPtr(upb_pbcodecache_get(ptr(), md.ptr()));
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}
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private:
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std::unique_ptr<upb_pbcodecache, decltype(&upb_pbcodecache_free)> ptr_;
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};
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#endif /* __cplusplus */
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#endif /* UPB_DECODER_H_ */
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