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* Extract the Logos protocol layer from logos-cpp-sdk
Transports (plain TCP/TLS, qt_local, qt_remote/QRO, mock), token manager,
consumer core (LogosAPIClient/LogosAPIConsumer incl. the capability
auto-requestModule flow), ModuleProxy, the abstract LogosProviderObject
interface, and the canonical QVariant<->JSON conversion — now behind the
language-neutral lp_* C ABI (logos_protocol.h) carrying the protocol
semver (LOGOS_PROTOCOL_VERSION_*, lp_protocol_version()).
Bytes crossing the ABI use the lossless {"_bytes": base64url} tagging
(NUL-safe), matching the plain wire encoding.
Provider lp_* surface is compiled groundwork; serving lands with module
authoring.
* Move LogosProviderPlugin into logos_provider_interface.h
Plugin-loading tools (logos-cpp-generator's introspection mode, lm, the
hosts) need only qobject_cast<LogosProviderPlugin*>() + the abstract
LogosProviderObject — both framework-internal. Hosting the detection
interface here keeps those tools off the developer-facing logos-qt-sdk
layer. Same iid (org.logos.LogosProviderPlugin); header-only, ABI-neutral.
* Define the common module-impl C ABI (logos_module_impl.h)
ONE cdylib contract for module implementations in every language:
dispatch / get_methods / set_context / set_emit_callback / accept_token
/ get_protocol_version / string_free. The C++ and Rust SDKs emit these
exports around their respective impls; the uniform generated Qt glue
(and later a no-Qt host) talks to the cdylib only through this ABI.
JSON data model and tagged bytes form match the lp_* consumer ABI; the
protocol-version handshake complements the build-time metadata stamp.
* json convert: integers stay integers across the C ABI
QJsonValue::fromVariant degrades every numeric to double, so Int/UInt/
LongLong/ULongLong QVariants serialized as 5.0 — and a strict consumer on
the other side of the C ABI (a generated dispatch reading an int param)
rejects or zeroes them. Surfaced by the first cdylib-authored module
whose inbound args cross qvariantToNlohmann; the dlopen smoke harness
fed hand-written int JSON and never exercised this edge.
* call-error channel: surface {code,message,origin} for unacquirable targets
invokeRemoteMethod could not distinguish a failed call from a void/null
result — lp_invoke returned LP_OK with a null JSON result even when the
target module was never reached, and generated typed wrappers silently
defaulted (0 / empty string). Additive err-out overloads on
LogosAPIConsumer/LogosAPIClient fill a std-only logos::CallError
(logos_call_error.h, new LogosCallError exception for the generated
wrappers to throw); lp_invoke now honors its documented contract for
this class of failure: LP_ERR_UNAVAILABLE + canonical error JSON.
First detectable code: object_unavailable (requestObject failure) —
the struct is the extension point for transport-level statuses.
* call-error: drop the exception type — the error channel is the out-param
Per review, generated wrappers expose CallError as an optional trailing
out-parameter instead of throwing; the struct is the whole contract.
* ci: build + run the protocol test suite
On every pull request (unfiltered — stacked PRs included), master pushes,
and manual dispatch. The repo shipped without CI; its 111-test suite only
ran locally and through the workspace gate.
* consumer: typed requestModule for the capability flow
Port of logos-cpp-sdk master f5a127dd ('use updated capability module',
cpp-sdk#85, Iuri Matias) — the touched files (logos_api_client.cpp,
logos_api_consumer.{h,cpp}) moved into this repo in the P1 extraction.
The capability auto-requestModule path now calls a typed std::string
helper on the consumer (which acquires the capability object directly)
instead of a stringly invokeRemoteMethod round-trip. 111/111 tests.
* ci: DeterminateSystems nix installer (macOS runners)
cachix/install-nix-action fails on the macOS runners with
eDSRecordAlreadyExists (pre-existing nix build users); the org's
macOS-bearing workflows use the DeterminateSystems installer.
134 lines
5.5 KiB
C++
134 lines
5.5 KiB
C++
#ifndef LOGOS_API_CONSUMER_H
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#define LOGOS_API_CONSUMER_H
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#include <QObject>
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#include <QString>
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#include <QVariant>
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#include <QVariantList>
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#include <QHash>
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#include <QMap>
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#include <functional>
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#include <memory>
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#include <string>
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#include "logos_call_error.h"
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#include "logos_mode.h"
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#include "logos_transport_config.h"
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class LogosTransportConnection;
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class LogosObject;
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class TokenManager;
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/**
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* @brief LogosAPIConsumer handles connecting to module objects and invoking their methods
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*
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* This class is responsible for the consumer/client side functionality:
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* - Connecting to module registries via the transport layer
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* - Requesting LogosObject handles
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* - Invoking methods on objects
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* - Handling events from objects
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*/
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class LogosAPIConsumer : public QObject
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{
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Q_OBJECT
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public:
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/**
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* @brief Construct a consumer connected via `transport`, honoring the
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* process-wide LogosMode.
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*
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* Transport resolution is done in one place — LogosTransportFactory —
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* by combining LogosMode + the supplied LogosTransportConfig:
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* - LogosMode::Mock → MockTransportConnection (transport ignored)
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* - LogosMode::Local → LocalTransportConnection (transport ignored)
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* - LogosMode::Remote → wire protocol picked by `transport.protocol`
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*
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* Use this overload when the caller wants a specific transport for
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* this consumer without side-effecting the rest of the process
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* (e.g. the logoscore CLI dialing `core_service` over tcp_ssl
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* without also flipping the in-process LogosAPIProvider into
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* binding TLS).
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*/
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LogosAPIConsumer(const QString& module_to_talk_to,
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const QString& origin_module,
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TokenManager* token_manager,
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const LogosTransportConfig& transport,
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QObject *parent = nullptr);
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/**
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* @brief Convenience constructor that uses the process-global default
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* LogosTransportConfig. Equivalent to passing
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* `LogosTransportConfigGlobal::getDefault()` to the explicit-transport
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* constructor above.
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*/
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explicit LogosAPIConsumer(const QString& module_to_talk_to,
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const QString& origin_module,
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TokenManager* token_manager,
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QObject *parent = nullptr);
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~LogosAPIConsumer();
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/**
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* @brief Request a LogosObject handle by name
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* @return LogosObject* handle, or nullptr if failed. Caller must call release() when done.
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*/
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LogosObject* requestObject(const QString& objectName, Timeout timeout = Timeout());
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bool isConnected() const;
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QString registryUrl() const;
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bool reconnect();
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QVariant invokeRemoteMethod(const QString& authToken, const QString& objectName, const QString& methodName,
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const QVariantList& args = QVariantList(), Timeout timeout = Timeout());
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/**
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* @brief invokeRemoteMethod with an explicit error out-channel.
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*
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* Fills *err with the canonical {code, message, origin} call error when
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* the failure is detectable on this side (today: "object_unavailable"
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* when the target object/replica cannot be acquired). On success *err is
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* cleared. Failures the transport cannot yet distinguish from a void
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* result (per-dispatch errors) leave *err clear — the struct is the
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* extension point for surfacing transport-level statuses later.
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*/
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QVariant invokeRemoteMethod(const QString& authToken, const QString& objectName, const QString& methodName,
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const QVariantList& args, Timeout timeout, logos::CallError* err);
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using AsyncResultCallback = std::function<void(QVariant)>;
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/**
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* @brief Invoke a remote method asynchronously; result is delivered via callback
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* @param authToken Authentication token for the operation
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* @param objectName The name of the remote object
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* @param methodName The name of the method to call
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* @param args Arguments to pass to the method
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* @param callback Called when the call completes (on the caller's thread via QueuedConnection)
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* @param timeout Timeout for replica acquisition and for the remote call
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*/
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void invokeRemoteMethodAsync(const QString& authToken, const QString& objectName, const QString& methodName,
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const QVariantList& args,
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AsyncResultCallback callback,
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Timeout timeout = Timeout());
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/**
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* @brief Register an event listener via LogosObject's callback mechanism
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* @param originObject The LogosObject that will emit the event
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* @param eventName The name of the event to listen for
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* @param callback Function to call when the event is triggered
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*/
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void onEvent(LogosObject* originObject, const QString& eventName,
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std::function<void(const QString&, const QVariantList&)> callback);
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public slots:
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bool informModuleToken(const QString& authToken, const QString& moduleName, const QString& token);
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bool informModuleToken_module(const QString& authToken, const QString& originModule, const QString& moduleName, const QString& token);
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std::string requestModule(const std::string& authToken, const std::string& originModule, const std::string& targetModule);
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private:
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std::unique_ptr<LogosTransportConnection> m_transport;
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QString m_registryUrl;
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QMap<QString, QString> m_tokens;
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TokenManager* m_token_manager;
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};
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#endif // LOGOS_API_CONSUMER_H
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