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				| // Copyright (c) 2015 Sandstorm Development Group, Inc. and contributors
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| // Licensed under the MIT License:
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| //
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| // Permission is hereby granted, free of charge, to any person obtaining a copy
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| // of this software and associated documentation files (the "Software"), to deal
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| // in the Software without restriction, including without limitation the rights
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| // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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| // copies of the Software, and to permit persons to whom the Software is
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| // furnished to do so, subject to the following conditions:
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| //
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| // The above copyright notice and this permission notice shall be included in
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| // all copies or substantial portions of the Software.
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| //
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| // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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| // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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| // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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| // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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| // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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| // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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| // THE SOFTWARE.
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| 
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| #ifndef CAPNP_COMPAT_JSON_H_
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| #define CAPNP_COMPAT_JSON_H_
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| 
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| #include <capnp/schema.h>
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| #include <capnp/dynamic.h>
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| #include <capnp/compat/json.capnp.h>
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| 
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| namespace capnp {
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| 
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| class JsonCodec {
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|   // Flexible class for encoding Cap'n Proto types as JSON, and decoding JSON back to Cap'n Proto.
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|   //
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|   // Typical usage:
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|   //
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|   //     JsonCodec json;
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|   //
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|   //     // encode
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|   //     kj::String encoded = json.encode(someStructReader);
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|   //
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|   //     // decode
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|   //     json.decode(encoded, someStructBuilder);
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|   //
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|   // Advanced users can do fancy things like override the way certain types or fields are
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|   // represented in JSON by registering handlers. See the unit test for an example.
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|   //
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|   // Notes:
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|   // - When encoding, all primitive fields are always encoded, even if default-valued. Pointer
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|   //   fields are only encoded if they are non-null.
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|   // - 64-bit integers are encoded as strings, since JSON "numbers" are double-precision floating
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|   //   points which cannot store a 64-bit integer without losing data.
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|   // - NaNs and infinite floating point numbers are not allowed by the JSON spec, and so are encoded
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|   //   as null. This matches the behavior of `JSON.stringify` in at least Firefox and Chrome.
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|   // - Data is encoded as an array of numbers in the range [0,255]. You probably want to register
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|   //   a handler that does something better, like maybe base64 encoding, but there are a zillion
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|   //   different ways people do this.
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|   // - Encoding/decoding capabilities and AnyPointers requires registering a Handler, since there's
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|   //   no obvious default behavior.
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|   // - When decoding, unrecognized field names are ignored. Note: This means that JSON is NOT a
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|   //   good format for receiving input from a human. Consider `capnp eval` or the SchemaParser
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|   //   library for human input.
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| 
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| public:
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|   JsonCodec();
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|   ~JsonCodec() noexcept(false);
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| 
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|   // ---------------------------------------------------------------------------
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|   // standard API
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| 
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|   void setPrettyPrint(bool enabled);
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|   // Enable to insert newlines, indentation, and other extra spacing into the output. The default
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|   // is to use minimal whitespace.
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| 
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|   void setMaxNestingDepth(size_t maxNestingDepth);
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|   // Set maximum nesting depth when decoding JSON to prevent highly nested input from overflowing
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|   // the call stack. The default is 64.
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| 
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|   template <typename T>
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|   kj::String encode(T&& value);
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|   // Encode any Cap'n Proto value to JSON, including primitives and
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|   // Dynamic{Enum,Struct,List,Capability}, but not DynamicValue (see below).
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| 
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|   kj::String encode(DynamicValue::Reader value, Type type) const;
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|   // Encode a DynamicValue to JSON. `type` is needed because `DynamicValue` itself does
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|   // not distinguish between e.g. int32 and int64, which in JSON are handled differently. Most
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|   // of the time, though, you can use the single-argument templated version of `encode()` instead.
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| 
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|   void decode(kj::ArrayPtr<const char> input, DynamicStruct::Builder output) const;
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|   // Decode JSON text directly into a struct builder. This only works for structs since lists
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|   // need to be allocated with the correct size in advance.
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|   //
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|   // (Remember that any Cap'n Proto struct reader type can be implicitly cast to
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|   // DynamicStruct::Reader.)
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| 
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|   template <typename T>
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|   Orphan<T> decode(kj::ArrayPtr<const char> input, Orphanage orphanage) const;
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|   // Decode JSON text to any Cap'n Proto object (pointer value), allocated using the given
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|   // orphanage. T must be specified explicitly and cannot be dynamic, e.g.:
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|   //
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|   //     Orphan<MyType> orphan = json.decode<MyType>(text, orphanage);
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| 
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|   template <typename T>
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|   ReaderFor<T> decode(kj::ArrayPtr<const char> input) const;
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|   // Decode JSON text into a primitive or capability value. T must be specified explicitly and
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|   // cannot be dynamic, e.g.:
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|   //
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|   //     uint32_t n = json.decode<uint32_t>(text);
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| 
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|   Orphan<DynamicValue> decode(kj::ArrayPtr<const char> input, Type type, Orphanage orphanage) const;
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|   Orphan<DynamicList> decode(
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|       kj::ArrayPtr<const char> input, ListSchema type, Orphanage orphanage) const;
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|   Orphan<DynamicStruct> decode(
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|       kj::ArrayPtr<const char> input, StructSchema type, Orphanage orphanage) const;
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|   DynamicCapability::Client decode(kj::ArrayPtr<const char> input, InterfaceSchema type) const;
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|   DynamicEnum decode(kj::ArrayPtr<const char> input, EnumSchema type) const;
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|   // Decode to a dynamic value, specifying the type schema.
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| 
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|   // ---------------------------------------------------------------------------
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|   // layered API
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|   //
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|   // You can separate text <-> JsonValue from JsonValue <-> T. These are particularly useful
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|   // for calling from Handler implementations.
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| 
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|   kj::String encodeRaw(JsonValue::Reader value) const;
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|   void decodeRaw(kj::ArrayPtr<const char> input, JsonValue::Builder output) const;
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|   // Translate JsonValue <-> text.
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| 
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|   template <typename T>
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|   void encode(T&& value, JsonValue::Builder output);
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|   void encode(DynamicValue::Reader input, Type type, JsonValue::Builder output) const;
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|   void decode(JsonValue::Reader input, DynamicStruct::Builder output) const;
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|   template <typename T>
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|   Orphan<T> decode(JsonValue::Reader input, Orphanage orphanage) const;
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|   template <typename T>
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|   ReaderFor<T> decode(JsonValue::Reader input) const;
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| 
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|   Orphan<DynamicValue> decode(JsonValue::Reader input, Type type, Orphanage orphanage) const;
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|   Orphan<DynamicList> decode(JsonValue::Reader input, ListSchema type, Orphanage orphanage) const;
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|   Orphan<DynamicStruct> decode(
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|       JsonValue::Reader input, StructSchema type, Orphanage orphanage) const;
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|   DynamicCapability::Client decode(JsonValue::Reader input, InterfaceSchema type) const;
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|   DynamicEnum decode(JsonValue::Reader input, EnumSchema type) const;
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| 
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|   // ---------------------------------------------------------------------------
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|   // specializing particular types
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| 
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|   template <typename T, Style s = style<T>()>
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|   class Handler;
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|   // Implement this interface to specify a special encoding for a particular type or field.
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|   //
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|   // The templates are a bit ugly, but subclasses of this type essentially implement two methods,
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|   // one to encode values of this type and one to decode values of this type. `encode()` is simple:
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|   //
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|   //   void encode(const JsonCodec& codec, ReaderFor<T> input, JsonValue::Builder output) const;
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|   //
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|   // `decode()` is a bit trickier. When T is a struct (including DynamicStruct), it is:
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|   //
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|   //   void decode(const JsonCodec& codec, JsonValue::Reader input, BuilderFor<T> output) const;
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|   //
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|   // However, when T is a primitive, decode() is:
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|   //
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|   //   T decode(const JsonCodec& codec, JsonValue::Reader input) const;
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|   //
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|   // Or when T is any non-struct object (list, blob), decode() is:
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|   //
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|   //   Orphan<T> decode(const JsonCodec& codec, JsonValue::Reader input, Orphanage orphanage) const;
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|   //
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|   // Or when T is an interface:
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|   //
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|   //   T::Client decode(const JsonCodec& codec, JsonValue::Reader input) const;
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|   //
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|   // Additionally, when T is a struct you can *optionally* also implement the orphan-returning form
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|   // of decode(), but it will only be called when the struct would be allocated as an individual
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|   // object, not as part of a list. This allows you to return "nullptr" in these cases to say that
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|   // the pointer value should be null. This does not apply to list elements because struct list
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|   // elements cannot ever be null (since Cap'n Proto encodes struct lists as a flat list rather
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|   // than list-of-pointers).
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| 
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|   template <typename T>
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|   void addTypeHandler(Handler<T>& handler);
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|   void addTypeHandler(Type type, Handler<DynamicValue>& handler);
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|   void addTypeHandler(EnumSchema type, Handler<DynamicEnum>& handler);
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|   void addTypeHandler(StructSchema type, Handler<DynamicStruct>& handler);
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|   void addTypeHandler(ListSchema type, Handler<DynamicList>& handler);
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|   void addTypeHandler(InterfaceSchema type, Handler<DynamicCapability>& handler);
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|   // Arrange that whenever the type T appears in the message, your handler will be used to
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|   // encode/decode it.
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|   //
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|   // Note that if you register a handler for a capability type, it will also apply to subtypes.
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|   // Thus Handler<Capability> handles all capabilities.
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| 
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|   template <typename T>
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|   void addFieldHandler(StructSchema::Field field, Handler<T>& handler);
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|   // Matches only the specific field. T can be a dynamic type. T must match the field's type.
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| 
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| private:
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|   class HandlerBase;
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|   struct Impl;
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| 
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|   kj::Own<Impl> impl;
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| 
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|   void encodeField(StructSchema::Field field, DynamicValue::Reader input,
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|                    JsonValue::Builder output) const;
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|   void decodeArray(List<JsonValue>::Reader input, DynamicList::Builder output) const;
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|   void decodeObject(List<JsonValue::Field>::Reader input, DynamicStruct::Builder output) const;
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|   void addTypeHandlerImpl(Type type, HandlerBase& handler);
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|   void addFieldHandlerImpl(StructSchema::Field field, Type type, HandlerBase& handler);
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| };
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| 
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| // =======================================================================================
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| // inline implementation details
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| 
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| template <typename T>
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| kj::String JsonCodec::encode(T&& value) {
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|   typedef FromAny<kj::Decay<T>> Base;
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|   return encode(DynamicValue::Reader(ReaderFor<Base>(kj::fwd<T>(value))), Type::from<Base>());
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| }
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| 
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| template <typename T>
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| inline Orphan<T> JsonCodec::decode(kj::ArrayPtr<const char> input, Orphanage orphanage) const {
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|   return decode(input, Type::from<T>(), orphanage).template releaseAs<T>();
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| }
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| 
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| template <typename T>
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| inline ReaderFor<T> JsonCodec::decode(kj::ArrayPtr<const char> input) const {
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|   static_assert(style<T>() == Style::PRIMITIVE || style<T>() == Style::CAPABILITY,
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|                 "must specify an orphanage to decode an object type");
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|   return decode(input, Type::from<T>(), Orphanage()).getReader().template as<T>();
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| }
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| 
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| inline Orphan<DynamicList> JsonCodec::decode(
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|     kj::ArrayPtr<const char> input, ListSchema type, Orphanage orphanage) const {
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|   return decode(input, Type(type), orphanage).releaseAs<DynamicList>();
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| }
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| inline Orphan<DynamicStruct> JsonCodec::decode(
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|     kj::ArrayPtr<const char> input, StructSchema type, Orphanage orphanage) const {
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|   return decode(input, Type(type), orphanage).releaseAs<DynamicStruct>();
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| }
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| inline DynamicCapability::Client JsonCodec::decode(
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|     kj::ArrayPtr<const char> input, InterfaceSchema type) const {
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|   return decode(input, Type(type), Orphanage()).getReader().as<DynamicCapability>();
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| }
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| inline DynamicEnum JsonCodec::decode(kj::ArrayPtr<const char> input, EnumSchema type) const {
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|   return decode(input, Type(type), Orphanage()).getReader().as<DynamicEnum>();
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| }
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| 
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| // -----------------------------------------------------------------------------
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| 
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| template <typename T>
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| void JsonCodec::encode(T&& value, JsonValue::Builder output) {
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|   typedef FromAny<kj::Decay<T>> Base;
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|   encode(DynamicValue::Reader(ReaderFor<Base>(kj::fwd<T>(value))), Type::from<Base>(), output);
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| }
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| 
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| template <typename T>
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| inline Orphan<T> JsonCodec::decode(JsonValue::Reader input, Orphanage orphanage) const {
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|   return decode(input, Type::from<T>(), orphanage).template releaseAs<T>();
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| }
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| 
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| template <typename T>
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| inline ReaderFor<T> JsonCodec::decode(JsonValue::Reader input) const {
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|   static_assert(style<T>() == Style::PRIMITIVE || style<T>() == Style::CAPABILITY,
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|                 "must specify an orphanage to decode an object type");
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|   return decode(input, Type::from<T>(), Orphanage()).getReader().template as<T>();
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| }
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| 
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| inline Orphan<DynamicList> JsonCodec::decode(
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|     JsonValue::Reader input, ListSchema type, Orphanage orphanage) const {
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|   return decode(input, Type(type), orphanage).releaseAs<DynamicList>();
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| }
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| inline Orphan<DynamicStruct> JsonCodec::decode(
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|     JsonValue::Reader input, StructSchema type, Orphanage orphanage) const {
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|   return decode(input, Type(type), orphanage).releaseAs<DynamicStruct>();
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| }
 | |
| inline DynamicCapability::Client JsonCodec::decode(
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|     JsonValue::Reader input, InterfaceSchema type) const {
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|   return decode(input, Type(type), Orphanage()).getReader().as<DynamicCapability>();
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| }
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| inline DynamicEnum JsonCodec::decode(JsonValue::Reader input, EnumSchema type) const {
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|   return decode(input, Type(type), Orphanage()).getReader().as<DynamicEnum>();
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| }
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| 
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| // -----------------------------------------------------------------------------
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| 
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| class JsonCodec::HandlerBase {
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|   // Internal helper; ignore.
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| public:
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|   virtual void encodeBase(const JsonCodec& codec, DynamicValue::Reader input,
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|                           JsonValue::Builder output) const = 0;
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|   virtual Orphan<DynamicValue> decodeBase(const JsonCodec& codec, JsonValue::Reader input,
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|                                           Type type, Orphanage orphanage) const;
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|   virtual void decodeStructBase(const JsonCodec& codec, JsonValue::Reader input,
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|                                 DynamicStruct::Builder output) const;
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| };
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| 
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| template <typename T>
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| class JsonCodec::Handler<T, Style::POINTER>: private JsonCodec::HandlerBase {
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| public:
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|   virtual void encode(const JsonCodec& codec, ReaderFor<T> input,
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|                       JsonValue::Builder output) const = 0;
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|   virtual Orphan<T> decode(const JsonCodec& codec, JsonValue::Reader input,
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|                            Orphanage orphanage) const = 0;
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| 
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| private:
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|   void encodeBase(const JsonCodec& codec, DynamicValue::Reader input,
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|                   JsonValue::Builder output) const override final {
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|     encode(codec, input.as<T>(), output);
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|   }
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|   Orphan<DynamicValue> decodeBase(const JsonCodec& codec, JsonValue::Reader input,
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|                                   Type type, Orphanage orphanage) const override final {
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|     return decode(codec, input, orphanage);
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|   }
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|   friend class JsonCodec;
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| };
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| 
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| template <typename T>
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| class JsonCodec::Handler<T, Style::STRUCT>: private JsonCodec::HandlerBase {
 | |
| public:
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|   virtual void encode(const JsonCodec& codec, ReaderFor<T> input,
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|                       JsonValue::Builder output) const = 0;
 | |
|   virtual void decode(const JsonCodec& codec, JsonValue::Reader input,
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|                       BuilderFor<T> output) const = 0;
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|   virtual Orphan<T> decode(const JsonCodec& codec, JsonValue::Reader input,
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|                            Orphanage orphanage) const {
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|     // If subclass does not override, fall back to regular version.
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|     auto result = orphanage.newOrphan<T>();
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|     decode(codec, input, result.get());
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|     return result;
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|   }
 | |
| 
 | |
| private:
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|   void encodeBase(const JsonCodec& codec, DynamicValue::Reader input,
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|                   JsonValue::Builder output) const override final {
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|     encode(codec, input.as<T>(), output);
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|   }
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|   Orphan<DynamicValue> decodeBase(const JsonCodec& codec, JsonValue::Reader input,
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|                                   Type type, Orphanage orphanage) const override final {
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|     return decode(codec, input, orphanage);
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|   }
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|   void decodeStructBase(const JsonCodec& codec, JsonValue::Reader input,
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|                         DynamicStruct::Builder output) const override final {
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|     decode(codec, input, output.as<T>());
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|   }
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|   friend class JsonCodec;
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| };
 | |
| 
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| template <>
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| class JsonCodec::Handler<DynamicStruct>: private JsonCodec::HandlerBase {
 | |
|   // Almost identical to Style::STRUCT except that we pass the struct type to decode().
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| 
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| public:
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|   virtual void encode(const JsonCodec& codec, DynamicStruct::Reader input,
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|                       JsonValue::Builder output) const = 0;
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|   virtual void decode(const JsonCodec& codec, JsonValue::Reader input,
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|                       DynamicStruct::Builder output) const = 0;
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|   virtual Orphan<DynamicStruct> decode(const JsonCodec& codec, JsonValue::Reader input,
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|                                        StructSchema type, Orphanage orphanage) const {
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|     // If subclass does not override, fall back to regular version.
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|     auto result = orphanage.newOrphan(type);
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|     decode(codec, input, result.get());
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|     return result;
 | |
|   }
 | |
| 
 | |
| private:
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|   void encodeBase(const JsonCodec& codec, DynamicValue::Reader input,
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|                   JsonValue::Builder output) const override final {
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|     encode(codec, input.as<DynamicStruct>(), output);
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|   }
 | |
|   Orphan<DynamicValue> decodeBase(const JsonCodec& codec, JsonValue::Reader input,
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|                                   Type type, Orphanage orphanage) const override final {
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|     return decode(codec, input, type.asStruct(), orphanage);
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|   }
 | |
|   void decodeStructBase(const JsonCodec& codec, JsonValue::Reader input,
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|                         DynamicStruct::Builder output) const override final {
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|     decode(codec, input, output.as<DynamicStruct>());
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|   }
 | |
|   friend class JsonCodec;
 | |
| };
 | |
| 
 | |
| template <typename T>
 | |
| class JsonCodec::Handler<T, Style::PRIMITIVE>: private JsonCodec::HandlerBase {
 | |
| public:
 | |
|   virtual void encode(const JsonCodec& codec, T input, JsonValue::Builder output) const = 0;
 | |
|   virtual T decode(const JsonCodec& codec, JsonValue::Reader input) const = 0;
 | |
| 
 | |
| private:
 | |
|   void encodeBase(const JsonCodec& codec, DynamicValue::Reader input,
 | |
|                   JsonValue::Builder output) const override final {
 | |
|     encode(codec, input.as<T>(), output);
 | |
|   }
 | |
|   Orphan<DynamicValue> decodeBase(const JsonCodec& codec, JsonValue::Reader input,
 | |
|                                   Type type, Orphanage orphanage) const override final {
 | |
|     return decode(codec, input);
 | |
|   }
 | |
|   friend class JsonCodec;
 | |
| };
 | |
| 
 | |
| template <typename T>
 | |
| class JsonCodec::Handler<T, Style::CAPABILITY>: private JsonCodec::HandlerBase {
 | |
| public:
 | |
|   virtual void encode(const JsonCodec& codec, typename T::Client input,
 | |
|                       JsonValue::Builder output) const = 0;
 | |
|   virtual typename T::Client decode(const JsonCodec& codec, JsonValue::Reader input) const = 0;
 | |
| 
 | |
| private:
 | |
|   void encodeBase(const JsonCodec& codec, DynamicValue::Reader input,
 | |
|                   JsonValue::Builder output) const override final {
 | |
|     encode(codec, input.as<T>(), output);
 | |
|   }
 | |
|   Orphan<DynamicValue> decodeBase(const JsonCodec& codec, JsonValue::Reader input,
 | |
|                                   Type type, Orphanage orphanage) const override final {
 | |
|     return orphanage.newOrphanCopy(decode(codec, input));
 | |
|   }
 | |
|   friend class JsonCodec;
 | |
| };
 | |
| 
 | |
| template <typename T>
 | |
| inline void JsonCodec::addTypeHandler(Handler<T>& handler) {
 | |
|   addTypeHandlerImpl(Type::from<T>(), handler);
 | |
| }
 | |
| inline void JsonCodec::addTypeHandler(Type type, Handler<DynamicValue>& handler) {
 | |
|   addTypeHandlerImpl(type, handler);
 | |
| }
 | |
| inline void JsonCodec::addTypeHandler(EnumSchema type, Handler<DynamicEnum>& handler) {
 | |
|   addTypeHandlerImpl(type, handler);
 | |
| }
 | |
| inline void JsonCodec::addTypeHandler(StructSchema type, Handler<DynamicStruct>& handler) {
 | |
|   addTypeHandlerImpl(type, handler);
 | |
| }
 | |
| inline void JsonCodec::addTypeHandler(ListSchema type, Handler<DynamicList>& handler) {
 | |
|   addTypeHandlerImpl(type, handler);
 | |
| }
 | |
| inline void JsonCodec::addTypeHandler(InterfaceSchema type, Handler<DynamicCapability>& handler) {
 | |
|   addTypeHandlerImpl(type, handler);
 | |
| }
 | |
| 
 | |
| template <typename T>
 | |
| inline void JsonCodec::addFieldHandler(StructSchema::Field field, Handler<T>& handler) {
 | |
|   addFieldHandlerImpl(field, Type::from<T>(), handler);
 | |
| }
 | |
| 
 | |
| template <> void JsonCodec::addTypeHandler(Handler<DynamicValue>& handler)
 | |
|     KJ_UNAVAILABLE("JSON handlers for type sets (e.g. all structs, all lists) not implemented; "
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|                    "try specifying a specific type schema as the first parameter");
 | |
| template <> void JsonCodec::addTypeHandler(Handler<DynamicEnum>& handler)
 | |
|     KJ_UNAVAILABLE("JSON handlers for type sets (e.g. all structs, all lists) not implemented; "
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|                    "try specifying a specific type schema as the first parameter");
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| template <> void JsonCodec::addTypeHandler(Handler<DynamicStruct>& handler)
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|     KJ_UNAVAILABLE("JSON handlers for type sets (e.g. all structs, all lists) not implemented; "
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|                    "try specifying a specific type schema as the first parameter");
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| template <> void JsonCodec::addTypeHandler(Handler<DynamicList>& handler)
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|     KJ_UNAVAILABLE("JSON handlers for type sets (e.g. all structs, all lists) not implemented; "
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|                    "try specifying a specific type schema as the first parameter");
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| template <> void JsonCodec::addTypeHandler(Handler<DynamicCapability>& handler)
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|     KJ_UNAVAILABLE("JSON handlers for type sets (e.g. all structs, all lists) not implemented; "
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|                    "try specifying a specific type schema as the first parameter");
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| // TODO(someday): Implement support for registering handlers that cover thinsg like "all structs"
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| //   or "all lists". Currently you can only target a specific struct or list type.
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| 
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| } // namespace capnp
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| 
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| #endif // CAPNP_COMPAT_JSON_H_
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| 
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