2026-08-19 15:50:49 -03:00
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#include "logos_api.h"
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#include "logos_api_client.h"
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#include "logos_api_provider.h"
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#include "logos_thread_marshal.h"
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#include "token_manager.h"
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2026-08-22 18:37:01 -03:00
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// For LOGOS_PROTOCOL_VERSION_{MAJOR,MINOR}, which currentCallerJson()'s body is
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// guarded on. Included by name rather than relied on transitively: if the macro
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// were merely undefined here the guard would evaluate FALSE and this file would
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// still compile, handing every module a permanently empty caller with no
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// diagnostic anywhere.
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#include "logos_protocol.h"
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2026-08-19 15:50:49 -03:00
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#include <QDebug>
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#include <QVariant>
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#include <string>
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2026-08-22 18:37:01 -03:00
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// The host half of the caller: logos::currentInboundCallerJson() and
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// logos::callerUnknownJson(). Arrived in logos-protocol 0.6, so the include is
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// guarded exactly as the body below is — this file must keep compiling against
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// an older protocol, where the header does not exist.
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#if defined(LOGOS_PROTOCOL_VERSION_MINOR) && (LOGOS_PROTOCOL_VERSION_MAJOR > 0 || \
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(LOGOS_PROTOCOL_VERSION_MAJOR == 0 && LOGOS_PROTOCOL_VERSION_MINOR >= 6))
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#include "logos_caller_scope.h"
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#endif
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2026-08-19 15:50:49 -03:00
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LogosAPI::LogosAPI(const QString& module_name, QObject *parent)
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: LogosAPI(module_name, LogosTransportSet{}, parent)
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{
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}
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LogosAPI::LogosAPI(const QString& module_name,
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LogosTransportSet transports,
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QObject *parent)
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: LogosAPI(module_name, nullptr, std::move(transports), parent)
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{
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}
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LogosAPI::LogosAPI(const QString& module_name,
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TokenManager* token_store,
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LogosTransportSet transports,
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QObject *parent)
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: QObject(parent)
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, m_module_name(module_name)
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, m_provider(nullptr)
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, m_token_manager(nullptr)
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{
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m_provider = new LogosAPIProvider(m_module_name, std::move(transports), this);
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// An explicit store wins. NULL resolves to the store for the identity this
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// object says it is — which is TokenManager::instance() itself, the same
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// object this line used to name outright, for every identity nobody has
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// isolated. So this is not a behaviour change; it is the hook that lets one
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// BECOME a behaviour change, for one name, when a host asks for it.
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m_token_manager = token_store ? token_store
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: &TokenManager::forIdentity(m_module_name);
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qRegisterMetaType<LogosResult>("LogosResult");
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}
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LogosAPI* LogosAPI::forIdentity(const QString& identity, QObject* parent)
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{
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if (identity.isEmpty()) {
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qWarning() << "LogosAPI::forIdentity: refusing to isolate the empty identity";
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return nullptr;
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}
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if (!TokenManager::isolateIdentity(identity)) {
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// Not advisory. A client for this name already captured the ambient
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// ring as a raw pointer, so isolating now would split the identity
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// across two stores.
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qWarning() << "LogosAPI::forIdentity: cannot isolate" << identity
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<< "- the shared token store was already handed out under"
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" that name; refusing to hand back a half-isolated identity";
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return nullptr;
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}
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return new LogosAPI(identity, &TokenManager::forIdentity(identity), parent);
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}
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LogosAPI::LogosAPI(const std::string& module_name, QObject *parent)
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: LogosAPI(QString::fromStdString(module_name), parent)
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{
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}
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LogosAPI::~LogosAPI()
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{
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// Provider and client will be automatically deleted as child objects
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// Token manager is a singleton, so we don't delete it
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}
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2026-08-22 18:37:01 -03:00
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// See logos_api.h for WHY this exists as an invokable rather than a plain
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// method or a property. The body is one line of substance; the mechanism is
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// entirely in how it is REACHED.
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//
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// The DECLARATION stays unguarded even though the body is guarded, matching
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// aboutToUnload in the generated glue: moc emits the meta-object entry either
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// way, and a by-name lookup should find the same surface on every host. On a
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// protocol below 0.6 the answer is an empty QString — not a hand-spelled
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// unknown document, because at that version the whole surface is absent
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// (nothing on the module side can receive one, since the glue's push is guarded
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// on the same expression) and inventing a second spelling of
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// logos::callerUnknownJson() here is exactly how the two would drift apart.
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QString LogosAPI::currentCallerJson() const
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{
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#if defined(LOGOS_PROTOCOL_VERSION_MINOR) && (LOGOS_PROTOCOL_VERSION_MAJOR > 0 || \
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(LOGOS_PROTOCOL_VERSION_MAJOR == 0 && LOGOS_PROTOCOL_VERSION_MINOR >= 6))
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const std::string caller = logos::currentInboundCallerJson();
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return QString::fromStdString(caller.empty() ? logos::callerUnknownJson()
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: caller);
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#else
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return QString();
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#endif
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}
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2026-08-19 15:50:49 -03:00
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LogosAPIProvider* LogosAPI::getProvider() const
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{
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return m_provider;
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}
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LogosAPIClient* LogosAPI::getClient(const QString& target_module) const
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{
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// The no-transport overload is just shorthand for "use the
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// process-global default" — the explicit-transport overload below
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// is the single resolution path. Mode-awareness lives in the
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// factory, so this delegation preserves Mock/Local semantics.
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return getClient(target_module, LogosTransportConfigGlobal::getDefault());
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}
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LogosAPIClient* LogosAPI::getClient(const std::string& target_module) const
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{
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return getClient(QString::fromStdString(target_module));
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}
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LogosAPIClient* LogosAPI::getClient(const QString& target_module,
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const LogosTransportConfig& transport) const
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{
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// Create the client (and its consumers + transport replicas) on this
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// LogosAPI's owner thread — the module's main/event-loop thread — even when
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// called from a worker thread (e.g. an HTTP handler). Qt Remote Objects
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// replicas only work on the thread that created them, so construction (and
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// the cache it populates) must happen there. invokeRemoteMethod() then
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// marshals calls back to the same thread. See logos_thread_marshal.h.
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return logos::runOnOwnerThread(const_cast<LogosAPI*>(this),
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[&]() -> LogosAPIClient* {
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// Single cache, single construction path. Key composition mirrors
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// the factory's resolution rule (see LogosAPIClientCacheKey in
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// logos_api.h):
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// - Mock/Local mode: every cfg collapses to one cache slot per
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// target — switching cfg returns the same MockTransport-backed
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// client instead of allocating a duplicate.
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// - Remote mode: every distinguishing field of cfg matters, so
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// two callers with different TLS/codec settings get separate
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// clients (no risk of silently reusing an insecure transport).
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//
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// The capability_module transport — used by the client's
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// auto-`requestModule` flow — falls back to the registered
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// override (if any) or the global default. Two-arg getClient
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// intentionally doesn't expose a second transport here; callers
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// that care register the capability_module transport once via
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// setCapabilityModuleTransport() and the rest is plumbing.
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const LogosAPIClientCacheKey key{
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target_module, LogosModeConfig::getMode(), transport};
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auto it = m_clients.constFind(key);
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if (it != m_clients.constEnd()) return it.value();
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const LogosTransportConfig capabilityTransport =
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m_capabilityModuleTransport.has_value()
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? *m_capabilityModuleTransport
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: LogosTransportConfigGlobal::getDefault();
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LogosAPIClient* client = new LogosAPIClient(
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target_module, m_module_name, m_token_manager,
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transport, capabilityTransport,
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const_cast<LogosAPI*>(this));
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m_clients.insert(key, client);
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return client;
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});
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}
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TokenManager* LogosAPI::getTokenManager() const
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{
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return m_token_manager;
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}
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void LogosAPI::setCapabilityModuleTransport(const LogosTransportConfig& transport)
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{
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m_capabilityModuleTransport = transport;
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}
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bool LogosAPI::setProperty(const char* name, const std::string& value)
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{
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return QObject::setProperty(name, QVariant(QString::fromStdString(value)));
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}
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