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// Copyright 2018 The Fuchsia Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
package codegen
const unionTemplate = `
{{- define "UnionForwardDeclaration" }}
class {{ .Name }};
{{- end }}
{{/* TODO(fxbug.dev/36441): Remove __Fuchsia__ ifdefs once we have non-Fuchsia
emulated handles for C++. */}}
{{- define "UnionDeclaration" }}
{{ if .IsResourceType }}
#ifdef __Fuchsia__
{{- end }}
{{- range .DocComments }}
///{{ . }}
{{- end }}
class {{ .Name }} final {
public:
static const fidl_type_t* FidlType;
{{ .Name }}();
~{{ .Name }}();
{{ .Name }}({{ .Name }}&&);
{{ .Name }}& operator=({{ .Name }}&&);
{{ range .Members }}
static {{ $.Name }} With{{ .UpperCamelCaseName }}({{ .Type.FullDecl }}&&);
{{- end }}
{{/* There are two different tag types here:
* fidl_xunion_tag_t: This is an "open" enum that encompasses all possible ordinal values
(including zero). Ordinal() returns a fidl_xunion_tag_t.
* An inner ::Tag enum: This only contains valid ordinals for this xunion. Which() returns a
::Tag.
The two types generally carry the same value. However:
* If the ordinal is zero, which is only ever the case when the xunion is first constructed and
not yet set:
* tag_, which is a fidl_xunion_tag_t, will be kEmpty (which is kFidlXUnionEmptyTag, or 0).
kEmpty is intended for internal use only; clients should use ::Tag instead.
* Ordinal() will return kEmpty.
* Which() will return Tag::kUnknown.
* if the xunion is non-strict (flexible) and has been de-serialized from a xunion with an
ordinal that's unknown to the client's schema:
* tag_ will be the raw ordinal from the serialized xunion,
* Ordinal() will return tag_,
* Which() will return Tag::kUnknown.
* UnknownBytes() will return a pointer to a valid std::vector<uint8_t> with the unknown bytes.
* if the xunion is a resource type:
* UnknownHandles() will return a pointer to a valid std::vector<zx::handle> with the unknown handles.
*/ -}}
enum __attribute__((enum_extensibility(closed))) Tag : fidl_xunion_tag_t {
{{ if .IsFlexible -}}
kUnknown = 0,
{{- /* TODO(fxbug.dev/8050): Remove the Empty tag below. */}}
Empty = kUnknown, // DEPRECATED: use kUnknown instead.
{{ end -}}
{{- range .Members }}
{{ .TagName }} = {{ .Ordinal }}, // {{ .Ordinal | printf "%#x" }}
{{- end }}
Invalid = ::std::numeric_limits<::fidl_union_tag_t>::max(),
};
static inline ::std::unique_ptr<{{ .Name }}> New() { return ::std::make_unique<{{ .Name }}>(); }
void Encode(::fidl::Encoder* encoder, size_t offset);
static void Decode(::fidl::Decoder* decoder, {{ .Name }}* value, size_t offset);
zx_status_t Clone({{ .Name }}* result) const;
bool has_invalid_tag() const {
return tag_ == Invalid;
}
{{- range .Members }}
bool is_{{ .Name }}() const { return tag_ == Tag::{{ .TagName }}; }
{{range .DocComments}}
///{{ . }}
{{- end}}
{{ .Type.FullDecl }}& {{ .Name }}() {
EnsureStorageInitialized(Tag::{{ .TagName }});
return {{ .StorageName }};
}
{{range .DocComments}}
///{{ . }}
{{- end}}
const {{ .Type.FullDecl }}& {{ .Name }}() const {
ZX_ASSERT(is_{{ .Name }}());
return {{ .StorageName }};
}
{{ $.Name }}& set_{{ .Name }}({{ .Type.FullDecl }} value);
{{- end }}
{{- if .IsFlexible }}
{{ .Name }}& SetUnknownData(fidl_xunion_tag_t ordinal, std::vector<uint8_t> bytes{{ if .IsResourceType }}, std::vector<zx::handle> handles{{ end }});
{{- end }}
Tag Which() const {
{{ if .IsFlexible }}
switch (tag_) {
case Tag::Invalid:
{{- range .Members }}
case Tag::{{ .TagName }}:
{{- end }}
return Tag(tag_);
default:
return Tag::kUnknown;
}
{{ else }}
return Tag(tag_);
{{ end }}
}
// You probably want to use Which() method instead of Ordinal(). Use Ordinal() only when you need
// access to the raw integral ordinal value.
fidl_xunion_tag_t Ordinal() const {
return tag_;
}
{{- if .IsFlexible }}
const std::vector<uint8_t>* UnknownBytes() const {
if (Which() != Tag::kUnknown) {
return nullptr;
}
{{- if .IsResourceType }}
return &unknown_data_.bytes;
{{- else }}
return &unknown_data_;
{{- end }}
}
{{- if .IsResourceType }}
const std::vector<zx::handle>* UnknownHandles() const {
if (Which() != Tag::kUnknown) {
return nullptr;
}
return &unknown_data_.handles;
}
{{- end }}
{{- end }}
friend ::fidl::Equality<{{ .Namespace }}::{{ .Name }}>;
{{- if .Result }}
{{ .Name }}(fit::result<{{ .Result.ValueDecl }}, {{ .Result.ErrorDecl }}>&& result) {
ZX_ASSERT(!result.is_pending());
if (result.is_ok()) {
{{- if eq 0 .Result.ValueArity }}
set_response({{ .Result.ValueStructDecl }}{});
{{- else }}
set_response({{ .Result.ValueStructDecl }}{result.take_value()});
{{- end }}
} else {
set_err(std::move(result.take_error()));
}
}
{{ .Name }}(fit::ok_result<{{ .Result.ValueDecl }}>&& result)
: {{ .Name }}(fit::result<{{ .Result.ValueDecl }}, {{ .Result.ErrorDecl }}>(std::move(result))) { }
{{ .Name }}(fit::error_result<{{ .Result.ErrorDecl }}>&& result)
: {{ .Name }}(fit::result<{{ .Result.ValueDecl }}, {{ .Result.ErrorDecl }}>(std::move(result))) { }
operator fit::result<{{ .Result.ValueDecl }}, {{ .Result.ErrorDecl }}>() && {
if (is_err()) {
return fit::error(err());
}
{{- if eq 0 .Result.ValueArity }}
return fit::ok();
{{- else if eq 1 .Result.ValueArity }}
{{ .Result.ValueTupleDecl }} value_tuple = std::move(response());
return fit::ok(std::move(std::get<0>(value_tuple)));
{{- else }}
return fit::ok(std::move(response()));
{{- end }}
}
{{- end }}
private:
void Destroy();
void EnsureStorageInitialized(::fidl_xunion_tag_t tag);
::fidl_xunion_tag_t tag_ = static_cast<fidl_xunion_tag_t>(Tag::Invalid);
union {
{{- range .Members }}
{{ .Type.FullDecl }} {{ .StorageName }};
{{- end }}
{{- if .IsFlexible }}
{{ if .IsResourceType }}::fidl::UnknownData{{ else }}std::vector<uint8_t>{{ end }} unknown_data_;
{{- end }}
};
};
inline zx_status_t Clone(const {{ .Namespace }}::{{ .Name }}& value,
{{ .Namespace }}::{{ .Name }}* result) {
return value.Clone(result);
}
using {{ .Name }}Ptr = ::std::unique_ptr<{{ .Name }}>;
{{- if .IsResourceType }}
#endif // __Fuchsia__
{{ end }}
{{- end }}
{{- define "UnionDefinition" }}
{{- if .IsResourceType }}
#ifdef __Fuchsia__
{{- end }}
extern "C" const fidl_type_t {{ .TableType }};
const fidl_type_t* {{ .Name }}::FidlType = &{{ .TableType }};
{{ .Name }}::{{ .Name }}() {}
{{ .Name }}::~{{ .Name }}() {
Destroy();
}
{{ .Name }}::{{ .Name }}({{ .Name }}&& other) : tag_(other.tag_) {
switch (tag_) {
{{- range .Members }}
case Tag::{{ .TagName }}:
{{- if .Type.NeedsDtor }}
new (&{{ .StorageName }}) {{ .Type.FullDecl }}();
{{- end }}
{{ .StorageName }} = std::move(other.{{ .StorageName }});
break;
{{- end }}
case static_cast<fidl_xunion_tag_t>(Tag::Invalid):
break;
{{- if .IsFlexible }}
default:
new (&unknown_data_) decltype(unknown_data_);
unknown_data_ = std::move(other.unknown_data_);
break;
{{- end }}
}
}
{{ .Name }}& {{ .Name }}::operator=({{ .Name }}&& other) {
if (this != &other) {
Destroy();
tag_ = other.tag_;
switch (tag_) {
{{- range .Members }}
case Tag::{{ .TagName }}:
{{- if .Type.NeedsDtor }}
new (&{{ .StorageName }}) {{ .Type.FullDecl }}();
{{- end }}
{{ .StorageName }} = std::move(other.{{ .StorageName }});
break;
{{- end }}
case static_cast<fidl_xunion_tag_t>(Tag::Invalid):
break;
{{- if .IsFlexible }}
default:
new (&unknown_data_) decltype(unknown_data_);
unknown_data_= std::move(other.unknown_data_);
break;
{{- end }}
}
}
return *this;
}
{{ range .Members -}}
{{ $.Name }} {{ $.Name }}::With{{ .UpperCamelCaseName }}({{ .Type.FullDecl }}&& val) {
{{ $.Name }} result;
result.set_{{ .Name }}(std::move(val));
return result;
}
{{ end }}
void {{ .Name }}::Encode(::fidl::Encoder* encoder, size_t offset) {
const size_t length_before = encoder->CurrentLength();
const size_t handles_before = encoder->CurrentHandleCount();
size_t envelope_offset = 0;
switch (Which()) {
{{- range .Members }}
case Tag::{{ .TagName }}: {
envelope_offset = encoder->Alloc(::fidl::EncodingInlineSize<{{ .Type.FullDecl }}, ::fidl::Encoder>(encoder));
::fidl::Encode(encoder, &{{ .StorageName }}, envelope_offset);
break;
}
{{- end }}
{{- if .IsFlexible }}
case Tag::kUnknown:
{{- if .IsResourceType }}
envelope_offset = encoder->Alloc(unknown_data_.bytes.size());
::fidl::EncodeUnknownDataContents(encoder, &unknown_data_, envelope_offset);
{{- else }}
envelope_offset = encoder->Alloc(unknown_data_.size());
::fidl::EncodeUnknownBytesContents(encoder, &unknown_data_, envelope_offset);
{{- end }}
break;
{{- end }}
default:
break;
}
{{/* Note that encoder->GetPtr() must be called after every call to
encoder->Alloc(), since encoder.bytes_ could be re-sized and moved.
*/ -}}
fidl_xunion_t* xunion = encoder->GetPtr<fidl_xunion_t>(offset);
assert(xunion->envelope.presence == FIDL_ALLOC_ABSENT);
if (envelope_offset) {
xunion->tag = tag_;
xunion->envelope.num_bytes = static_cast<uint32_t>(encoder->CurrentLength() - length_before);
xunion->envelope.num_handles = static_cast<uint32_t>(encoder->CurrentHandleCount() - handles_before);
xunion->envelope.presence = FIDL_ALLOC_PRESENT;
}
}
void {{ .Name }}::Decode(::fidl::Decoder* decoder, {{ .Name }}* value, size_t offset) {
fidl_xunion_t* xunion = decoder->GetPtr<fidl_xunion_t>(offset);
if (!xunion->envelope.data) {
value->EnsureStorageInitialized(static_cast<fidl_xunion_tag_t>(Tag::Invalid));
return;
}
value->EnsureStorageInitialized(xunion->tag);
{{ if len .Members }}
const size_t envelope_offset = decoder->GetOffset(xunion->envelope.data);
switch (value->tag_) {
{{- range .Members }}
case Tag::{{ .TagName }}:
{{- if .Type.NeedsDtor }}
new (&value->{{ .StorageName }}) {{ .Type.FullDecl }}();
{{- end }}
::fidl::Decode(decoder, &value->{{ .StorageName }}, envelope_offset);
break;
{{- end }}
default:
{{ if .IsFlexible -}}
{{- if .IsResourceType }}
value->unknown_data_.bytes.resize(xunion->envelope.num_bytes);
value->unknown_data_.handles.resize(xunion->envelope.num_handles);
::fidl::DecodeUnknownDataContents(decoder, &value->unknown_data_, envelope_offset);
{{- else }}
value->unknown_data_.resize(xunion->envelope.num_bytes);
::fidl::DecodeUnknownBytesContents(decoder, &value->unknown_data_, envelope_offset);
{{- end }}
{{ end -}}
break;
}
{{ end }}
}
zx_status_t {{ .Name }}::Clone({{ .Name }}* result) const {
result->Destroy();
result->tag_ = tag_;
switch (tag_) {
case Tag::Invalid:
return ZX_OK;
{{- range .Members }}
case Tag::{{ .TagName }}:
{{- if .Type.NeedsDtor }}
new (&result->{{ .StorageName }}) {{ .Type.FullDecl }}();
{{- end }}
return ::fidl::Clone({{ .StorageName }}, &result->{{ .StorageName }});
{{- end }}
default:
{{- if .IsFlexible }}
new (&result->unknown_data_) decltype(unknown_data_);
return ::fidl::Clone(unknown_data_, &result->unknown_data_);
{{ end -}}
return ZX_OK;
}
}
{{- range $member := .Members }}
{{ $.Name }}& {{ $.Name }}::set_{{ .Name }}({{ .Type.FullDecl }} value) {
EnsureStorageInitialized(Tag::{{ .TagName }});
{{ .StorageName }} = std::move(value);
return *this;
}
{{- end }}
{{- if .IsFlexible }}
{{ .Name }}& {{ .Name }}::SetUnknownData(fidl_xunion_tag_t ordinal, std::vector<uint8_t> bytes{{ if .IsResourceType }}, std::vector<zx::handle> handles{{ end }}) {
EnsureStorageInitialized(ordinal);
{{- if .IsResourceType }}
unknown_data_.bytes = std::move(bytes);
unknown_data_.handles = std::move(handles);
{{- else }}
unknown_data_ = std::move(bytes);
{{- end }}
return *this;
}
{{- end }}
void {{ .Name }}::Destroy() {
switch (tag_) {
{{- range .Members }}
case Tag::{{ .TagName }}:
{{- if .Type.NeedsDtor }}
{{ .StorageName }}.~decltype({{ .StorageName }})();
{{- end }}
break;
{{- end }}
{{ if .IsFlexible }}
case static_cast<fidl_xunion_tag_t>(Tag::Invalid):
break;
default:
unknown_data_.~decltype(unknown_data_)();
break;
{{ else }}
default:
break;
{{ end }}
}
tag_ = static_cast<fidl_xunion_tag_t>(Tag::Invalid);
}
void {{ .Name }}::EnsureStorageInitialized(::fidl_xunion_tag_t tag) {
if (tag_ != tag) {
Destroy();
tag_ = tag;
switch (tag_) {
case static_cast<fidl_xunion_tag_t>(Tag::Invalid):
break;
{{- range .Members }}
case Tag::{{ .TagName }}:
new (&{{ .StorageName }}) {{ .Type.FullDecl }}();
break;
{{- end }}
default:
{{- if .IsFlexible }}
new (&unknown_data_) decltype(unknown_data_);
{{- end }}
break;
}
}
}
{{- if .IsResourceType }}
#endif // __Fuchsia__
{{ end }}
{{- end }}
{{- define "UnionTraits" }}
{{- if .IsResourceType }}
#ifdef __Fuchsia__
{{- end }}
template <>
struct IsFidlXUnion<{{ .Namespace }}::{{ .Name }}> : public std::true_type {};
template <>
struct CodingTraits<{{ .Namespace }}::{{ .Name }}>
: public EncodableCodingTraits<{{ .Namespace }}::{{ .Name }}, {{ .InlineSize }}> {};
template <>
struct CodingTraits<std::unique_ptr<{{ .Namespace }}::{{ .Name }}>> {
static constexpr size_t inline_size_v1_no_ee = {{ .InlineSize }};
static void Encode(Encoder* encoder, std::unique_ptr<{{ .Namespace }}::{{ .Name }}>* value, size_t offset) {
{{/* TODO(fxbug.dev/7805): Disallow empty xunions (but permit nullable/optional
xunions). */ -}}
auto&& p_xunion = *value;
if (p_xunion) {
p_xunion->Encode(encoder, offset);
}
}
static void Decode(Decoder* decoder, std::unique_ptr<{{ .Namespace }}::{{ .Name }}>* value, size_t offset) {
fidl_xunion_t* encoded = decoder->GetPtr<fidl_xunion_t>(offset);
if (encoded->tag == 0) {
value->reset(nullptr);
return;
}
value->reset(new {{ .Namespace }}::{{ .Name }});
{{ .Namespace }}::{{ .Name }}::Decode(decoder, value->get(), offset);
}
};
inline zx_status_t Clone(const {{ .Namespace }}::{{ .Name }}& value,
{{ .Namespace }}::{{ .Name }}* result) {
return {{ .Namespace }}::Clone(value, result);
}
template<>
struct Equality<{{ .Namespace }}::{{ .Name }}> {
bool operator()(const {{ .Namespace }}::{{ .Name }}& _lhs, const {{ .Namespace }}::{{ .Name }}& _rhs) const {
if (_lhs.Ordinal() != _rhs.Ordinal()) {
return false;
}
{{ with $xunion := . -}}
switch (_lhs.Ordinal()) {
case static_cast<fidl_xunion_tag_t>({{ $xunion.Namespace }}::{{ $xunion.Name }}::Tag::Invalid):
return true;
{{- range .Members }}
case {{ $xunion.Namespace }}::{{ $xunion.Name }}::Tag::{{ .TagName }}:
return ::fidl::Equals(_lhs.{{ .StorageName }}, _rhs.{{ .StorageName }});
{{- end }}
{{ if .IsFlexible -}}
default:
return ::fidl::Equals(_lhs.unknown_data_, _rhs.unknown_data_);
{{ else }}
default:
return false;
{{ end -}}
}
{{end -}}
}
};
{{- if .IsResourceType }}
#endif // __Fuchsia__
{{ end }}
{{- end }}
`