495 lines
15 KiB
C++
495 lines
15 KiB
C++
////////////////////////////////////////////////////////////////////////////
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//
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// Copyright 2015 Realm Inc.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//
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////////////////////////////////////////////////////////////////////////////
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#include "shared_realm.hpp"
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#include "external_commit_helper.hpp"
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#include "binding_context.hpp"
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#include "schema.hpp"
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#include "transact_log_handler.hpp"
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#include <realm/commit_log.hpp>
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#include <realm/group_shared.hpp>
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#include <mutex>
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using namespace realm;
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using namespace realm::_impl;
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RealmCache Realm::s_global_cache;
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Realm::Config::Config(const Config& c)
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: path(c.path)
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, read_only(c.read_only)
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, in_memory(c.in_memory)
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, cache(c.cache)
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, disable_format_upgrade(c.disable_format_upgrade)
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, encryption_key(c.encryption_key)
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, schema_version(c.schema_version)
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, migration_function(c.migration_function)
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{
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if (c.schema) {
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schema = std::make_unique<Schema>(*c.schema);
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}
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}
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Realm::Config::Config() = default;
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Realm::Config::Config(Config&&) = default;
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Realm::Config::~Config() = default;
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Realm::Config& Realm::Config::operator=(realm::Realm::Config const& c)
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{
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if (&c != this) {
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*this = Config(c);
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}
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return *this;
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}
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Realm::Realm(Config config)
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: m_config(std::move(config))
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{
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try {
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if (m_config.read_only) {
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m_read_only_group = std::make_unique<Group>(m_config.path, m_config.encryption_key.data(), Group::mode_ReadOnly);
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m_group = m_read_only_group.get();
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}
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else {
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m_history = realm::make_client_history(m_config.path, m_config.encryption_key.data());
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SharedGroup::DurabilityLevel durability = m_config.in_memory ? SharedGroup::durability_MemOnly :
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SharedGroup::durability_Full;
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m_shared_group = std::make_unique<SharedGroup>(*m_history, durability, m_config.encryption_key.data(), !m_config.disable_format_upgrade);
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}
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}
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catch (util::File::PermissionDenied const& ex) {
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throw RealmFileException(RealmFileException::Kind::PermissionDenied, ex.get_path(),
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"Unable to open a realm at path '" + ex.get_path() +
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"'. Please use a path where your app has " + (m_config.read_only ? "read" : "read-write") + " permissions.");
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}
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catch (util::File::Exists const& ex) {
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throw RealmFileException(RealmFileException::Kind::Exists, ex.get_path(),
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"File at path '" + ex.get_path() + "' already exists.");
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}
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catch (util::File::AccessError const& ex) {
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throw RealmFileException(RealmFileException::Kind::AccessError, ex.get_path(),
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"Unable to open a realm at path '" + ex.get_path() + "'");
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}
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catch (IncompatibleLockFile const& ex) {
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throw RealmFileException(RealmFileException::Kind::IncompatibleLockFile, m_config.path,
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"Realm file is currently open in another process "
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"which cannot share access with this process. All processes sharing a single file must be the same architecture.");
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}
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catch (FileFormatUpgradeRequired const& ex) {
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throw RealmFileException(RealmFileException::Kind::FormatUpgradeRequired, m_config.path,
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"The Realm file format must be allowed to be upgraded "
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"in order to proceed.");
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}
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}
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Realm::~Realm() {
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if (m_notifier) { // might not exist yet if an error occurred during init
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m_notifier->remove_realm(this);
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}
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}
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Group *Realm::read_group()
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{
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if (!m_group) {
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m_group = &const_cast<Group&>(m_shared_group->begin_read());
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}
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return m_group;
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}
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SharedRealm Realm::get_shared_realm(Config config)
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{
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if (config.cache) {
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if (SharedRealm realm = s_global_cache.get_realm(config.path)) {
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if (realm->config().read_only != config.read_only) {
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throw MismatchedConfigException("Realm at path already opened with different read permissions.");
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}
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if (realm->config().in_memory != config.in_memory) {
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throw MismatchedConfigException("Realm at path already opened with different inMemory settings.");
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}
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if (realm->config().encryption_key != config.encryption_key) {
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throw MismatchedConfigException("Realm at path already opened with a different encryption key.");
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}
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if (realm->config().schema_version != config.schema_version && config.schema_version != ObjectStore::NotVersioned) {
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throw MismatchedConfigException("Realm at path already opened with different schema version.");
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}
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// FIXME - enable schma comparison
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/*if (realm->config().schema != config.schema) {
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throw MismatchedConfigException("Realm at path already opened with different schema");
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}*/
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realm->m_config.migration_function = config.migration_function;
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return realm;
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}
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}
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SharedRealm realm(new Realm(std::move(config)));
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auto target_schema = std::move(realm->m_config.schema);
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auto target_schema_version = realm->m_config.schema_version;
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realm->m_config.schema_version = ObjectStore::get_schema_version(realm->read_group());
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// we want to ensure we are only initializing a single realm at a time
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static std::mutex s_init_mutex;
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std::lock_guard<std::mutex> lock(s_init_mutex);
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if (auto existing = s_global_cache.get_any_realm(realm->config().path)) {
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// if there is an existing realm at the current path steal its schema/column mapping
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// FIXME - need to validate that schemas match
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realm->m_config.schema = std::make_unique<Schema>(*existing->m_config.schema);
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realm->m_notifier = existing->m_notifier;
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realm->m_notifier->add_realm(realm.get());
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}
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else {
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realm->m_notifier = std::make_shared<ExternalCommitHelper>(realm.get());
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// otherwise get the schema from the group
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realm->m_config.schema = std::make_unique<Schema>(ObjectStore::schema_from_group(realm->read_group()));
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// if a target schema is supplied, verify that it matches or migrate to
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// it, as neeeded
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if (target_schema) {
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if (realm->m_config.read_only) {
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if (realm->m_config.schema_version == ObjectStore::NotVersioned) {
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throw UnitializedRealmException("Can't open an un-initialized Realm without a Schema");
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}
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target_schema->validate();
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ObjectStore::verify_schema(*realm->m_config.schema, *target_schema, true);
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realm->m_config.schema = std::move(target_schema);
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}
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else {
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realm->update_schema(std::move(target_schema), target_schema_version);
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}
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if (!realm->m_config.read_only) {
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// End the read transaction created to validation/update the
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// schema to avoid pinning the version even if the user never
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// actually reads data
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realm->invalidate();
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}
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}
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}
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if (config.cache) {
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s_global_cache.cache_realm(realm, realm->m_thread_id);
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}
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return realm;
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}
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bool Realm::update_schema(std::unique_ptr<Schema> schema, uint64_t version)
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{
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schema->validate();
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bool needs_update = !m_config.read_only && (m_config.schema_version != version || ObjectStore::needs_update(*m_config.schema, *schema));
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if (!needs_update) {
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ObjectStore::verify_schema(*m_config.schema, *schema, m_config.read_only);
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m_config.schema = std::move(schema);
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m_config.schema_version = version;
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return false;
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}
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// Store the old config/schema for the migration function, and update
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// our schema to the new one
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auto old_schema = std::move(m_config.schema);
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Config old_config(m_config);
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old_config.read_only = true;
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old_config.schema = std::move(old_schema);
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m_config.schema = std::move(schema);
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m_config.schema_version = version;
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auto migration_function = [&](Group*, Schema&) {
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SharedRealm old_realm(new Realm(old_config));
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auto updated_realm = shared_from_this();
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if (m_config.migration_function) {
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m_config.migration_function(old_realm, updated_realm);
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}
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};
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try {
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// update and migrate
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begin_transaction();
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bool changed = ObjectStore::update_realm_with_schema(read_group(), *old_config.schema,
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version, *m_config.schema,
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migration_function);
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commit_transaction();
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return changed;
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}
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catch (...) {
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if (is_in_transaction()) {
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cancel_transaction();
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}
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m_config.schema_version = old_config.schema_version;
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m_config.schema = std::move(old_config.schema);
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throw;
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}
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}
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static void check_read_write(Realm *realm)
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{
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if (realm->config().read_only) {
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throw InvalidTransactionException("Can't perform transactions on read-only Realms.");
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}
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}
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void Realm::verify_thread() const
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{
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if (m_thread_id != std::this_thread::get_id()) {
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throw IncorrectThreadException();
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}
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}
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void Realm::verify_in_write() const
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{
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if (!is_in_transaction()) {
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throw InvalidTransactionException("Cannot modify persisted objects outside of a write transaction.");
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}
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}
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void Realm::begin_transaction()
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{
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check_read_write(this);
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verify_thread();
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if (m_in_transaction) {
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throw InvalidTransactionException("The Realm is already in a write transaction");
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}
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// make sure we have a read transaction
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read_group();
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transaction::begin(*m_shared_group, *m_history, m_binding_context.get());
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m_in_transaction = true;
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}
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void Realm::commit_transaction()
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{
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check_read_write(this);
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verify_thread();
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if (!m_in_transaction) {
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throw InvalidTransactionException("Can't commit a non-existing write transaction");
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}
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m_in_transaction = false;
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transaction::commit(*m_shared_group, *m_history, m_binding_context.get());
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m_notifier->notify_others();
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}
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void Realm::cancel_transaction()
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{
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check_read_write(this);
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verify_thread();
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if (!m_in_transaction) {
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throw InvalidTransactionException("Can't cancel a non-existing write transaction");
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}
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m_in_transaction = false;
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transaction::cancel(*m_shared_group, *m_history, m_binding_context.get());
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}
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void Realm::invalidate()
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{
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verify_thread();
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if (m_in_transaction) {
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cancel_transaction();
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}
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if (!m_group) {
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return;
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}
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m_shared_group->end_read();
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m_group = nullptr;
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}
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bool Realm::compact()
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{
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verify_thread();
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if (m_config.read_only) {
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throw InvalidTransactionException("Can't compact a read-only Realm");
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}
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if (m_in_transaction) {
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throw InvalidTransactionException("Can't compact a Realm within a write transaction");
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}
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Group* group = read_group();
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for (auto &object_schema : *m_config.schema) {
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ObjectStore::table_for_object_type(group, object_schema.name)->optimize();
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}
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m_shared_group->end_read();
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m_group = nullptr;
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return m_shared_group->compact();
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}
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void Realm::notify()
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{
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verify_thread();
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if (m_shared_group->has_changed()) { // Throws
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if (m_binding_context) {
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m_binding_context->changes_available();
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}
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if (m_auto_refresh) {
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if (m_group) {
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transaction::advance(*m_shared_group, *m_history, m_binding_context.get());
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}
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else if (m_binding_context) {
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m_binding_context->did_change({}, {});
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}
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}
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}
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}
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bool Realm::refresh()
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{
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verify_thread();
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check_read_write(this);
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// can't be any new changes if we're in a write transaction
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if (m_in_transaction) {
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return false;
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}
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// advance transaction if database has changed
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if (!m_shared_group->has_changed()) { // Throws
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return false;
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}
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if (m_group) {
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transaction::advance(*m_shared_group, *m_history, m_binding_context.get());
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}
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else {
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// Create the read transaction
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read_group();
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}
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return true;
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}
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uint64_t Realm::get_schema_version(const realm::Realm::Config &config)
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{
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if (auto existing_realm = s_global_cache.get_any_realm(config.path)) {
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return existing_realm->config().schema_version;
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}
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return ObjectStore::get_schema_version(Realm(config).read_group());
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}
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void Realm::close()
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{
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if (m_notifier) {
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m_notifier->remove_realm(this);
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}
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m_group = nullptr;
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m_shared_group = nullptr;
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m_history = nullptr;
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m_read_only_group = nullptr;
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m_notifier = nullptr;
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m_binding_context = nullptr;
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}
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SharedRealm RealmCache::get_realm(const std::string &path, std::thread::id thread_id)
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{
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std::lock_guard<std::mutex> lock(m_mutex);
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auto path_iter = m_cache.find(path);
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if (path_iter == m_cache.end()) {
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return SharedRealm();
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}
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auto thread_iter = path_iter->second.find(thread_id);
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if (thread_iter == path_iter->second.end()) {
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return SharedRealm();
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}
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return thread_iter->second.lock();
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}
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SharedRealm RealmCache::get_any_realm(const std::string &path)
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{
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std::lock_guard<std::mutex> lock(m_mutex);
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auto path_iter = m_cache.find(path);
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if (path_iter == m_cache.end()) {
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return SharedRealm();
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}
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auto thread_iter = path_iter->second.begin();
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while (thread_iter != path_iter->second.end()) {
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if (auto realm = thread_iter->second.lock()) {
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return realm;
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}
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path_iter->second.erase(thread_iter++);
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}
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return SharedRealm();
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}
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void RealmCache::remove(const std::string &path, std::thread::id thread_id)
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{
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std::lock_guard<std::mutex> lock(m_mutex);
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auto path_iter = m_cache.find(path);
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if (path_iter == m_cache.end()) {
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return;
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}
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auto thread_iter = path_iter->second.find(thread_id);
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if (thread_iter != path_iter->second.end()) {
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path_iter->second.erase(thread_iter);
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}
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if (path_iter->second.size() == 0) {
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m_cache.erase(path_iter);
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}
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}
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void RealmCache::cache_realm(SharedRealm &realm, std::thread::id thread_id)
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{
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std::lock_guard<std::mutex> lock(m_mutex);
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auto path_iter = m_cache.find(realm->config().path);
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if (path_iter == m_cache.end()) {
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m_cache.emplace(realm->config().path, std::map<std::thread::id, WeakRealm>{{thread_id, realm}});
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}
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else {
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path_iter->second.emplace(thread_id, realm);
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}
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}
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void RealmCache::clear()
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{
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std::lock_guard<std::mutex> lock(m_mutex);
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for (auto const& path : m_cache) {
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for (auto const& thread : path.second) {
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if (auto realm = thread.second.lock()) {
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realm->close();
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}
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}
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}
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m_cache.clear();
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}
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