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id="801">801</a> <a href="#802" id="802">802</a> <a href="#803" id="803">803</a> <a href="#804" id="804">804</a> <a href="#805" id="805">805</a> <a href="#806" id="806">806</a> <a href="#807" id="807">807</a> <a href="#808" id="808">808</a> <a href="#809" id="809">809</a> <a href="#810" id="810">810</a> <a href="#811" id="811">811</a> <a href="#812" id="812">812</a> <a href="#813" id="813">813</a> <a href="#814" id="814">814</a> <a href="#815" id="815">815</a> <a href="#816" id="816">816</a> <a href="#817" id="817">817</a> <a href="#818" id="818">818</a> <a href="#819" id="819">819</a> </pre><pre class="rust"><code><span class="kw">use </span>kanidm_proto::v1::SchemaError; <span class="kw">use </span>std::time::Duration; <span class="kw">use </span><span class="kw">crate</span>::prelude::<span class="kw-2">*</span>; <span class="kw">use </span><span class="kw">super</span>::ServerPhase; <span class="kw">impl </span>QueryServer { <span class="attr">#[instrument(level = <span class="string">"info"</span>, name = <span class="string">"system_initialisation"</span>, skip_all)] </span><span class="kw">pub async fn </span>initialise_helper(<span class="kw-2">&</span><span class="self">self</span>, ts: Duration) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="comment">// Check our database version - attempt to do an initial indexing // based on the in memory configuration // // If we ever change the core in memory schema, or the schema that we ship // in fixtures, we have to bump these values. This is how we manage the // first-run and upgrade reindexings. // // A major reason here to split to multiple transactions is to allow schema // reloading to occur, which causes the idxmeta to update, and allows validation // of the schema in the subsequent steps as we proceed. </span><span class="kw">let </span><span class="kw-2">mut </span>reindex_write_1 = <span class="self">self</span>.write(ts).<span class="kw">await</span>; reindex_write_1 .upgrade_reindex(SYSTEM_INDEX_VERSION) .and_then(|<span class="kw">_</span>| reindex_write_1.commit())<span class="question-mark">?</span>; <span class="comment">// Because we init the schema here, and commit, this reloads meaning // that the on-disk index meta has been loaded, so our subsequent // migrations will be correctly indexed. // // Remember, that this would normally mean that it's possible for schema // to be mis-indexed (IE we index the new schemas here before we read // the schema to tell us what's indexed), but because we have the in // mem schema that defines how schema is structuded, and this is all // marked "system", then we won't have an issue here. </span><span class="kw">let </span><span class="kw-2">mut </span>ts_write_1 = <span class="self">self</span>.write(ts).<span class="kw">await</span>; ts_write_1 .initialise_schema_core() .and_then(|<span class="kw">_</span>| ts_write_1.commit())<span class="question-mark">?</span>; <span class="kw">let </span><span class="kw-2">mut </span>ts_write_2 = <span class="self">self</span>.write(ts).<span class="kw">await</span>; ts_write_2 .initialise_schema_idm() .and_then(|<span class="kw">_</span>| ts_write_2.commit())<span class="question-mark">?</span>; <span class="comment">// reindex and set to version + 1, this way when we bump the version // we are essetially pushing this version id back up to step write_1 </span><span class="kw">let </span><span class="kw-2">mut </span>reindex_write_2 = <span class="self">self</span>.write(ts).<span class="kw">await</span>; reindex_write_2 .upgrade_reindex(SYSTEM_INDEX_VERSION + <span class="number">1</span>) .and_then(|<span class="kw">_</span>| reindex_write_2.commit())<span class="question-mark">?</span>; <span class="comment">// Force the schema to reload - this is so that any changes to index slope // analysis are now reflected correctly. // // A side effect of these reloads is that other plugins or elements that reload // on schema change are now setup. </span><span class="kw">let </span><span class="kw-2">mut </span>slope_reload = <span class="self">self</span>.write(ts).<span class="kw">await</span>; slope_reload.set_phase(ServerPhase::SchemaReady); slope_reload.force_schema_reload(); slope_reload.commit()<span class="question-mark">?</span>; <span class="comment">// Now, based on the system version apply migrations. You may ask "should you not // be doing migrations before indexes?". And this is a very good question! The issue // is within a migration we must be able to search for content by pres index, and those // rely on us being indexed! It *is* safe to index content even if the // migration would cause a value type change (ie name changing from iutf8s to iname) because // the indexing subsystem is schema/value agnostic - the fact the values still let their keys // be extracted, means that the pres indexes will be valid even though the entries are pending // migration. We must be sure to NOT use EQ/SUB indexes in the migration code however! </span><span class="kw">let </span><span class="kw-2">mut </span>migrate_txn = <span class="self">self</span>.write(ts).<span class="kw">await</span>; <span class="comment">// If we are "in the process of being setup" this is 0, and the migrations will have no // effect as ... there is nothing to migrate! It allows reset of the version to 0 to force // db migrations to take place. </span><span class="kw">let </span>system_info_version = <span class="kw">match </span>migrate_txn.internal_search_uuid(UUID_SYSTEM_INFO) { <span class="prelude-val">Ok</span>(e) => <span class="prelude-val">Ok</span>(e.get_ava_single_uint32(<span class="string">"version"</span>).unwrap_or(<span class="number">0</span>)), <span class="prelude-val">Err</span>(OperationError::NoMatchingEntries) => <span class="prelude-val">Ok</span>(<span class="number">0</span>), <span class="prelude-val">Err</span>(r) => <span class="prelude-val">Err</span>(r), }<span class="question-mark">?</span>; <span class="macro">admin_debug!</span>(<span class="question-mark">?</span>system_info_version); <span class="kw">if </span>system_info_version > <span class="number">0 </span>{ <span class="kw">if </span>system_info_version <= <span class="number">9 </span>{ <span class="macro">error!</span>(<span class="string">"Your instance of Kanidm is version 1.1.0-alpha.10 or lower, and you are trying to perform a skip upgrade. This will not work."</span>); <span class="macro">error!</span>(<span class="string">"You need to upgrade one version at a time to ensure upgrade migrations are performed in the correct order."</span>); <span class="kw">return </span><span class="prelude-val">Err</span>(OperationError::InvalidState); } <span class="kw">if </span>system_info_version < <span class="number">9 </span>{ migrate_txn.migrate_8_to_9()<span class="question-mark">?</span>; } <span class="kw">if </span>system_info_version < <span class="number">10 </span>{ migrate_txn.migrate_9_to_10()<span class="question-mark">?</span>; } <span class="kw">if </span>system_info_version < <span class="number">11 </span>{ migrate_txn.migrate_10_to_11()<span class="question-mark">?</span>; } <span class="kw">if </span>system_info_version < <span class="number">12 </span>{ migrate_txn.migrate_11_to_12()<span class="question-mark">?</span>; } } migrate_txn.commit()<span class="question-mark">?</span>; <span class="comment">// Migrations complete. Init idm will now set the version as needed. </span><span class="kw">let </span><span class="kw-2">mut </span>ts_write_3 = <span class="self">self</span>.write(ts).<span class="kw">await</span>; ts_write_3.initialise_idm().and_then(|<span class="kw">_</span>| { ts_write_3.set_phase(ServerPhase::Running); ts_write_3.commit() })<span class="question-mark">?</span>; <span class="comment">// Here is where in the future we will need to apply domain version increments. // The actually migrations are done in a transaction though, this just needs to // bump the version in it's own transaction. </span><span class="macro">admin_debug!</span>(<span class="string">"Database version check and migrations success! ☀️ "</span>); <span class="prelude-val">Ok</span>(()) } } <span class="kw">impl</span><<span class="lifetime">'a</span>> QueryServerWriteTransaction<<span class="lifetime">'a</span>> { <span class="attr">#[instrument(level = <span class="string">"debug"</span>, skip_all)] </span><span class="kw">pub fn </span>internal_migrate_or_create_str(<span class="kw-2">&mut </span><span class="self">self</span>, e_str: <span class="kw-2">&</span>str) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="kw">let </span>res = Entry::from_proto_entry_str(e_str, <span class="self">self</span>) <span class="comment">/* .and_then(|e: Entry<EntryInvalid, EntryNew>| { let schema = self.get_schema(); e.validate(schema).map_err(OperationError::SchemaViolation) }) */ </span>.and_then(|e: Entry<EntryInit, EntryNew>| <span class="self">self</span>.internal_migrate_or_create(e)); <span class="macro">trace!</span>(<span class="question-mark">?</span>res); <span class="macro">debug_assert!</span>(res.is_ok()); res } <span class="kw">pub fn </span>internal_migrate_or_create( <span class="kw-2">&mut </span><span class="self">self</span>, e: Entry<EntryInit, EntryNew>, ) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="comment">// if the thing exists, ensure the set of attributes on // Entry A match and are present (but don't delete multivalue, or extended // attributes in the situation. // If not exist, create from Entry B // // This will extra classes an attributes alone! // // NOTE: gen modlist IS schema aware and will handle multivalue // correctly! </span><span class="macro">trace!</span>(<span class="string">"internal_migrate_or_create operating on {:?}"</span>, e.get_uuid()); <span class="kw">let </span>filt = <span class="kw">match </span>e.filter_from_attrs(<span class="kw-2">&</span>[AttrString::from(<span class="string">"uuid"</span>)]) { <span class="prelude-val">Some</span>(f) => f, <span class="prelude-val">None </span>=> <span class="kw">return </span><span class="prelude-val">Err</span>(OperationError::FilterGeneration), }; <span class="macro">trace!</span>(<span class="string">"internal_migrate_or_create search {:?}"</span>, filt); <span class="kw">let </span>results = <span class="self">self</span>.internal_search(filt.clone())<span class="question-mark">?</span>; <span class="kw">if </span>results.is_empty() { <span class="comment">// It does not exist. Create it. </span><span class="self">self</span>.internal_create(<span class="macro">vec!</span>[e]) } <span class="kw">else if </span>results.len() == <span class="number">1 </span>{ <span class="comment">// If the thing is subset, pass </span><span class="kw">match </span>e.gen_modlist_assert(<span class="kw-2">&</span><span class="self">self</span>.schema) { <span class="prelude-val">Ok</span>(modlist) => { <span class="comment">// Apply to &results[0] </span><span class="macro">trace!</span>(<span class="string">"Generated modlist -> {:?}"</span>, modlist); <span class="self">self</span>.internal_modify(<span class="kw-2">&</span>filt, <span class="kw-2">&</span>modlist) } <span class="prelude-val">Err</span>(e) => <span class="prelude-val">Err</span>(OperationError::SchemaViolation(e)), } } <span class="kw">else </span>{ <span class="macro">admin_error!</span>( <span class="string">"Invalid Result Set - Expected One Entry for {:?} - {:?}"</span>, filt, results ); <span class="prelude-val">Err</span>(OperationError::InvalidDbState) } } <span class="doccomment">/// Migrate 8 to 9 /// /// This migration updates properties of oauth2 relying server properties. First, it changes /// the former basic value to a secret utf8string. /// /// The second change improves the current scope system to remove the implicit scope type. </span><span class="attr">#[instrument(level = <span class="string">"debug"</span>, skip_all)] </span><span class="kw">pub fn </span>migrate_8_to_9(<span class="kw-2">&mut </span><span class="self">self</span>) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="macro">admin_warn!</span>(<span class="string">"starting 8 to 9 migration."</span>); <span class="kw">let </span>filt = <span class="macro">filter_all!</span>(<span class="macro">f_or!</span>([ f_eq(<span class="string">"class"</span>, PVCLASS_OAUTH2_RS.clone()), f_eq(<span class="string">"class"</span>, PVCLASS_OAUTH2_BASIC.clone()), ])); <span class="kw">let </span>pre_candidates = <span class="self">self</span>.internal_search(filt).map_err(|e| { <span class="macro">admin_error!</span>(err = <span class="question-mark">?</span>e, <span class="string">"migrate_8_to_9 internal search failure"</span>); e })<span class="question-mark">?</span>; <span class="comment">// If there is nothing, we don't need to do anything. </span><span class="kw">if </span>pre_candidates.is_empty() { <span class="macro">admin_info!</span>(<span class="string">"migrate_8_to_9 no entries to migrate, complete"</span>); <span class="kw">return </span><span class="prelude-val">Ok</span>(()); } <span class="comment">// Change the value type. </span><span class="kw">let </span><span class="kw-2">mut </span>candidates: Vec<Entry<EntryInvalid, EntryCommitted>> = pre_candidates .iter() .map(|er| er.as_ref().clone().invalidate(<span class="self">self</span>.cid.clone())) .collect(); candidates.iter_mut().try_for_each(|er| { <span class="comment">// Migrate basic secrets if they exist. </span><span class="kw">let </span>nvs = er .get_ava_set(<span class="string">"oauth2_rs_basic_secret"</span>) .and_then(|vs| vs.as_utf8_iter()) .and_then(|vs_iter| { ValueSetSecret::from_iter(vs_iter.map(|s: <span class="kw-2">&</span>str| s.to_string())) }); <span class="kw">if let </span><span class="prelude-val">Some</span>(nvs) = nvs { er.set_ava_set(<span class="string">"oauth2_rs_basic_secret"</span>, nvs) } <span class="comment">// Migrate implicit scopes if they exist. </span><span class="kw">let </span>nv = <span class="kw">if let </span><span class="prelude-val">Some</span>(vs) = er.get_ava_set(<span class="string">"oauth2_rs_implicit_scopes"</span>) { vs.as_oauthscope_set() .map(|v| Value::OauthScopeMap(UUID_IDM_ALL_PERSONS, v.clone())) } <span class="kw">else </span>{ <span class="prelude-val">None </span>}; <span class="kw">if let </span><span class="prelude-val">Some</span>(nv) = nv { er.add_ava(<span class="string">"oauth2_rs_scope_map"</span>, nv) } er.purge_ava(<span class="string">"oauth2_rs_implicit_scopes"</span>); <span class="prelude-val">Ok</span>(()) })<span class="question-mark">?</span>; <span class="comment">// Schema check all. </span><span class="kw">let </span>res: <span class="prelude-ty">Result</span><Vec<Entry<EntrySealed, EntryCommitted>>, SchemaError> = candidates .into_iter() .map(|e| e.validate(<span class="kw-2">&</span><span class="self">self</span>.schema).map(|e| e.seal(<span class="kw-2">&</span><span class="self">self</span>.schema))) .collect(); <span class="kw">let </span>norm_cand: Vec<Entry<<span class="kw">_</span>, <span class="kw">_</span>>> = <span class="kw">match </span>res { <span class="prelude-val">Ok</span>(v) => v, <span class="prelude-val">Err</span>(e) => { <span class="macro">admin_error!</span>(<span class="string">"migrate_8_to_9 schema error -> {:?}"</span>, e); <span class="kw">return </span><span class="prelude-val">Err</span>(OperationError::SchemaViolation(e)); } }; <span class="comment">// Write them back. </span><span class="self">self</span>.be_txn .modify(<span class="kw-2">&</span><span class="self">self</span>.cid, <span class="kw-2">&</span>pre_candidates, <span class="kw-2">&</span>norm_cand) .map_err(|e| { <span class="macro">admin_error!</span>(<span class="string">"migrate_8_to_9 modification failure -> {:?}"</span>, e); e }) <span class="comment">// Complete </span>} <span class="doccomment">/// Migrate 9 to 10 /// /// This forces a load and rewrite of all credentials stored on all accounts so that they are /// updated to new on-disk formats. This will allow us to purge some older on disk formats in /// a future version. /// /// An extended feature of this is the ability to store multiple TOTP's per entry. </span><span class="attr">#[instrument(level = <span class="string">"debug"</span>, skip_all)] </span><span class="kw">pub fn </span>migrate_9_to_10(<span class="kw-2">&mut </span><span class="self">self</span>) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="macro">admin_warn!</span>(<span class="string">"starting 9 to 10 migration."</span>); <span class="kw">let </span>filter = <span class="macro">filter!</span>(<span class="macro">f_or!</span>([ f_pres(<span class="string">"primary_credential"</span>), f_pres(<span class="string">"unix_password"</span>), ])); <span class="comment">// This "does nothing" since everything has object anyway, but it forces the entry to be // loaded and rewritten. </span><span class="kw">let </span>modlist = ModifyList::new_append(<span class="string">"class"</span>, Value::new_class(<span class="string">"object"</span>)); <span class="self">self</span>.internal_modify(<span class="kw-2">&</span>filter, <span class="kw-2">&</span>modlist) <span class="comment">// Complete </span>} <span class="doccomment">/// Migrate 10 to 11 /// /// This forces a load of all credentials, and then examines if any are "passkey" capable. If they /// are, they are migrated to the passkey type, allowing us to deprecate and remove the older /// credential behaviour. /// </span><span class="attr">#[instrument(level = <span class="string">"debug"</span>, skip_all)] </span><span class="kw">pub fn </span>migrate_10_to_11(<span class="kw-2">&mut </span><span class="self">self</span>) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="macro">admin_warn!</span>(<span class="string">"starting 9 to 10 migration."</span>); <span class="kw">let </span>filter = <span class="macro">filter!</span>(f_pres(<span class="string">"primary_credential"</span>)); <span class="kw">let </span>pre_candidates = <span class="self">self</span>.internal_search(filter).map_err(|e| { <span class="macro">admin_error!</span>(err = <span class="question-mark">?</span>e, <span class="string">"migrate_10_to_11 internal search failure"</span>); e })<span class="question-mark">?</span>; <span class="comment">// First, filter based on if any credentials present actually are the legacy // webauthn type. </span><span class="kw">let </span>modset: Vec<<span class="kw">_</span>> = pre_candidates .into_iter() .filter_map(|ent| { ent.get_ava_single_credential(<span class="string">"primary_credential"</span>) .and_then(|cred| cred.passkey_ref().ok()) .map(|pk_map| { <span class="kw">let </span>modlist = pk_map .iter() .map(|(t, k)| { Modify::Present( <span class="string">"passkeys"</span>.into(), Value::Passkey(Uuid::new_v4(), t.clone(), k.clone()), ) }) .chain(std::iter::once(m_purge(<span class="string">"primary_credential"</span>))) .collect(); (ent.get_uuid(), ModifyList::new_list(modlist)) }) }) .collect(); <span class="comment">// If there is nothing, we don't need to do anything. </span><span class="kw">if </span>modset.is_empty() { <span class="macro">admin_info!</span>(<span class="string">"migrate_10_to_11 no entries to migrate, complete"</span>); <span class="kw">return </span><span class="prelude-val">Ok</span>(()); } <span class="comment">// Apply the batch mod. </span><span class="self">self</span>.internal_batch_modify(modset.into_iter()) } <span class="doccomment">/// Migrate 11 to 12 /// /// Rewrite api-tokens from session to a dedicated api token type. /// </span><span class="attr">#[instrument(level = <span class="string">"debug"</span>, skip_all)] </span><span class="kw">pub fn </span>migrate_11_to_12(<span class="kw-2">&mut </span><span class="self">self</span>) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="macro">admin_warn!</span>(<span class="string">"starting 11 to 12 migration."</span>); <span class="comment">// sync_token_session </span><span class="kw">let </span>filter = <span class="macro">filter!</span>(<span class="macro">f_or!</span>([ f_pres(<span class="string">"api_token_session"</span>), f_pres(<span class="string">"sync_token_session"</span>), ])); <span class="kw">let </span><span class="kw-2">mut </span>mod_candidates = <span class="self">self</span>.internal_search_writeable(<span class="kw-2">&</span>filter).map_err(|e| { <span class="macro">admin_error!</span>(err = <span class="question-mark">?</span>e, <span class="string">"migrate_11_to_12 internal search failure"</span>); e })<span class="question-mark">?</span>; <span class="comment">// If there is nothing, we don't need to do anything. </span><span class="kw">if </span>mod_candidates.is_empty() { <span class="macro">admin_info!</span>(<span class="string">"migrate_11_to_12 no entries to migrate, complete"</span>); <span class="kw">return </span><span class="prelude-val">Ok</span>(()); } <span class="comment">// First, filter based on if any credentials present actually are the legacy // webauthn type. </span><span class="kw">for </span>(<span class="kw">_</span>, ent) <span class="kw">in </span>mod_candidates.iter_mut() { <span class="kw">if let </span><span class="prelude-val">Some</span>(api_token_session) = ent.pop_ava(<span class="string">"api_token_session"</span>) { <span class="kw">let </span>api_token_session = api_token_session .migrate_session_to_apitoken() .map_err(|e| { <span class="macro">error!</span>(<span class="string">"Failed to convert api_token_session from session -> apitoken"</span>); e })<span class="question-mark">?</span>; ent.set_ava_set(<span class="string">"api_token_session"</span>, api_token_session); } <span class="kw">if let </span><span class="prelude-val">Some</span>(sync_token_session) = ent.pop_ava(<span class="string">"sync_token_session"</span>) { <span class="kw">let </span>sync_token_session = sync_token_session .migrate_session_to_apitoken() .map_err(|e| { <span class="macro">error!</span>(<span class="string">"Failed to convert sync_token_session from session -> apitoken"</span>); e })<span class="question-mark">?</span>; ent.set_ava_set(<span class="string">"sync_token_session"</span>, sync_token_session); } } <span class="comment">// Apply the batch mod. </span><span class="self">self</span>.internal_apply_writable(mod_candidates) } <span class="attr">#[instrument(level = <span class="string">"info"</span>, skip_all)] </span><span class="kw">pub fn </span>initialise_schema_core(<span class="kw-2">&mut </span><span class="self">self</span>) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="macro">admin_debug!</span>(<span class="string">"initialise_schema_core -> start ..."</span>); <span class="comment">// Load in all the "core" schema, that we already have in "memory". </span><span class="kw">let </span>entries = <span class="self">self</span>.schema.to_entries(); <span class="comment">// admin_debug!("Dumping schemas: {:?}", entries); // internal_migrate_or_create. </span><span class="kw">let </span>r: <span class="prelude-ty">Result</span><<span class="kw">_</span>, <span class="kw">_</span>> = entries.into_iter().try_for_each(|e| { <span class="macro">trace!</span>(<span class="question-mark">?</span>e, <span class="string">"init schema entry"</span>); <span class="self">self</span>.internal_migrate_or_create(e) }); <span class="kw">if </span>r.is_ok() { <span class="macro">admin_debug!</span>(<span class="string">"initialise_schema_core -> Ok!"</span>); } <span class="kw">else </span>{ <span class="macro">admin_error!</span>(<span class="question-mark">?</span>r, <span class="string">"initialise_schema_core -> Error"</span>); } <span class="comment">// why do we have error handling if it's always supposed to be `Ok`? </span><span class="macro">debug_assert!</span>(r.is_ok()); r } <span class="attr">#[instrument(level = <span class="string">"info"</span>, skip_all)] </span><span class="kw">pub fn </span>initialise_schema_idm(<span class="kw-2">&mut </span><span class="self">self</span>) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="macro">admin_debug!</span>(<span class="string">"initialise_schema_idm -> start ..."</span>); <span class="comment">// List of IDM schemas to init. </span><span class="kw">let </span>idm_schema: Vec<<span class="kw-2">&</span>str> = <span class="macro">vec!</span>[ JSON_SCHEMA_ATTR_DISPLAYNAME, JSON_SCHEMA_ATTR_LEGALNAME, JSON_SCHEMA_ATTR_MAIL, JSON_SCHEMA_ATTR_SSH_PUBLICKEY, JSON_SCHEMA_ATTR_PRIMARY_CREDENTIAL, JSON_SCHEMA_ATTR_RADIUS_SECRET, JSON_SCHEMA_ATTR_DOMAIN_NAME, JSON_SCHEMA_ATTR_DOMAIN_DISPLAY_NAME, JSON_SCHEMA_ATTR_DOMAIN_UUID, JSON_SCHEMA_ATTR_DOMAIN_SSID, JSON_SCHEMA_ATTR_DOMAIN_TOKEN_KEY, JSON_SCHEMA_ATTR_FERNET_PRIVATE_KEY_STR, JSON_SCHEMA_ATTR_GIDNUMBER, JSON_SCHEMA_ATTR_BADLIST_PASSWORD, JSON_SCHEMA_ATTR_LOGINSHELL, JSON_SCHEMA_ATTR_UNIX_PASSWORD, JSON_SCHEMA_ATTR_ACCOUNT_EXPIRE, JSON_SCHEMA_ATTR_ACCOUNT_VALID_FROM, JSON_SCHEMA_ATTR_OAUTH2_RS_NAME, JSON_SCHEMA_ATTR_OAUTH2_RS_ORIGIN, JSON_SCHEMA_ATTR_OAUTH2_RS_SCOPE_MAP, JSON_SCHEMA_ATTR_OAUTH2_RS_IMPLICIT_SCOPES, JSON_SCHEMA_ATTR_OAUTH2_RS_BASIC_SECRET, JSON_SCHEMA_ATTR_OAUTH2_RS_TOKEN_KEY, JSON_SCHEMA_ATTR_ES256_PRIVATE_KEY_DER, JSON_SCHEMA_ATTR_OAUTH2_ALLOW_INSECURE_CLIENT_DISABLE_PKCE, JSON_SCHEMA_ATTR_OAUTH2_JWT_LEGACY_CRYPTO_ENABLE, JSON_SCHEMA_ATTR_RS256_PRIVATE_KEY_DER, JSON_SCHEMA_ATTR_CREDENTIAL_UPDATE_INTENT_TOKEN, JSON_SCHEMA_ATTR_OAUTH2_CONSENT_SCOPE_MAP, JSON_SCHEMA_ATTR_PASSKEYS, JSON_SCHEMA_ATTR_DEVICEKEYS, JSON_SCHEMA_ATTR_DYNGROUP_FILTER, JSON_SCHEMA_ATTR_JWS_ES256_PRIVATE_KEY, JSON_SCHEMA_ATTR_API_TOKEN_SESSION, JSON_SCHEMA_ATTR_OAUTH2_RS_SUP_SCOPE_MAP, JSON_SCHEMA_ATTR_USER_AUTH_TOKEN_SESSION, JSON_SCHEMA_ATTR_OAUTH2_SESSION, JSON_SCHEMA_ATTR_NSUNIQUEID, JSON_SCHEMA_ATTR_OAUTH2_PREFER_SHORT_USERNAME, JSON_SCHEMA_ATTR_SYNC_TOKEN_SESSION, JSON_SCHEMA_ATTR_SYNC_COOKIE, JSON_SCHEMA_ATTR_GRANT_UI_HINT, JSON_SCHEMA_ATTR_OAUTH2_RS_ORIGIN_LANDING, JSON_SCHEMA_ATTR_DOMAIN_LDAP_BASEDN, JSON_SCHEMA_CLASS_PERSON, JSON_SCHEMA_CLASS_ORGPERSON, JSON_SCHEMA_CLASS_GROUP, JSON_SCHEMA_CLASS_DYNGROUP, JSON_SCHEMA_CLASS_ACCOUNT, JSON_SCHEMA_CLASS_SERVICE_ACCOUNT, JSON_SCHEMA_CLASS_DOMAIN_INFO, JSON_SCHEMA_CLASS_POSIXACCOUNT, JSON_SCHEMA_CLASS_POSIXGROUP, JSON_SCHEMA_CLASS_SYSTEM_CONFIG, JSON_SCHEMA_CLASS_OAUTH2_RS, JSON_SCHEMA_CLASS_OAUTH2_RS_BASIC, JSON_SCHEMA_CLASS_SYNC_ACCOUNT, JSON_SCHEMA_ATTR_PRIVATE_COOKIE_KEY, ]; <span class="kw">let </span>r = idm_schema .iter() <span class="comment">// Each item individually logs it's result </span>.try_for_each(|e_str| <span class="self">self</span>.internal_migrate_or_create_str(e_str)); <span class="kw">if </span>r.is_ok() { <span class="macro">admin_debug!</span>(<span class="string">"initialise_schema_idm -> Ok!"</span>); } <span class="kw">else </span>{ <span class="macro">admin_error!</span>(res = <span class="question-mark">?</span>r, <span class="string">"initialise_schema_idm -> Error"</span>); } <span class="macro">debug_assert!</span>(r.is_ok()); <span class="comment">// why return a result if we assert it's `Ok`? </span>r } <span class="comment">// This function is idempotent </span><span class="attr">#[instrument(level = <span class="string">"info"</span>, skip_all)] </span><span class="kw">pub fn </span>initialise_idm(<span class="kw-2">&mut </span><span class="self">self</span>) -> <span class="prelude-ty">Result</span><(), OperationError> { <span class="comment">// First, check the system_info object. This stores some server information // and details. It's a pretty const thing. Also check anonymous, important to many // concepts. </span><span class="kw">let </span>res = <span class="self">self </span>.internal_migrate_or_create(E_SYSTEM_INFO_V1.clone()) .and_then(|<span class="kw">_</span>| <span class="self">self</span>.internal_migrate_or_create(E_DOMAIN_INFO_V1.clone())) .and_then(|<span class="kw">_</span>| <span class="self">self</span>.internal_migrate_or_create(E_SYSTEM_CONFIG_V1.clone())); <span class="kw">if </span>res.is_err() { <span class="macro">admin_error!</span>(<span class="string">"initialise_idm p1 -> result {:?}"</span>, res); } <span class="macro">debug_assert!</span>(res.is_ok()); res<span class="question-mark">?</span>; <span class="comment">// The domain info now exists, we should be able to do these migrations as they will // cause SPN regenerations to occur // Check the admin object exists (migrations). // Create the default idm_admin group. </span><span class="kw">let </span>admin_entries = [ E_ANONYMOUS_V1.clone(), E_ADMIN_V1.clone(), E_IDM_ADMIN_V1.clone(), E_IDM_ADMINS_V1.clone(), E_SYSTEM_ADMINS_V1.clone(), ]; <span class="kw">let </span>res: <span class="prelude-ty">Result</span><(), <span class="kw">_</span>> = admin_entries .into_iter() <span class="comment">// Each item individually logs it's result </span>.try_for_each(|ent| <span class="self">self</span>.internal_migrate_or_create(ent)); <span class="kw">if </span>res.is_err() { <span class="macro">admin_error!</span>(<span class="string">"initialise_idm p2 -> result {:?}"</span>, res); } <span class="macro">debug_assert!</span>(res.is_ok()); res<span class="question-mark">?</span>; <span class="comment">// Create any system default schema entries. // Create any system default access profile entries. </span><span class="kw">let </span>idm_entries = [ <span class="comment">// Builtin dyn groups, </span>JSON_IDM_ALL_PERSONS, JSON_IDM_ALL_ACCOUNTS, <span class="comment">// Builtin groups </span>JSON_IDM_PEOPLE_MANAGE_PRIV_V1, JSON_IDM_PEOPLE_ACCOUNT_PASSWORD_IMPORT_PRIV_V1, JSON_IDM_PEOPLE_EXTEND_PRIV_V1, JSON_IDM_PEOPLE_SELF_WRITE_MAIL_PRIV_V1, JSON_IDM_PEOPLE_WRITE_PRIV_V1, JSON_IDM_PEOPLE_READ_PRIV_V1, JSON_IDM_HP_PEOPLE_EXTEND_PRIV_V1, JSON_IDM_HP_PEOPLE_WRITE_PRIV_V1, JSON_IDM_HP_PEOPLE_READ_PRIV_V1, JSON_IDM_GROUP_MANAGE_PRIV_V1, JSON_IDM_GROUP_WRITE_PRIV_V1, JSON_IDM_GROUP_UNIX_EXTEND_PRIV_V1, JSON_IDM_ACCOUNT_MANAGE_PRIV_V1, JSON_IDM_ACCOUNT_WRITE_PRIV_V1, JSON_IDM_ACCOUNT_UNIX_EXTEND_PRIV_V1, JSON_IDM_ACCOUNT_READ_PRIV_V1, JSON_IDM_RADIUS_SECRET_WRITE_PRIV_V1, JSON_IDM_RADIUS_SECRET_READ_PRIV_V1, JSON_IDM_RADIUS_SERVERS_V1, <span class="comment">// Write deps on read, so write must be added first. </span>JSON_IDM_HP_ACCOUNT_MANAGE_PRIV_V1, JSON_IDM_HP_ACCOUNT_WRITE_PRIV_V1, JSON_IDM_HP_ACCOUNT_READ_PRIV_V1, JSON_IDM_HP_ACCOUNT_UNIX_EXTEND_PRIV_V1, JSON_IDM_SCHEMA_MANAGE_PRIV_V1, JSON_IDM_HP_GROUP_MANAGE_PRIV_V1, JSON_IDM_HP_GROUP_WRITE_PRIV_V1, JSON_IDM_HP_GROUP_UNIX_EXTEND_PRIV_V1, JSON_IDM_ACP_MANAGE_PRIV_V1, JSON_DOMAIN_ADMINS, JSON_IDM_HP_OAUTH2_MANAGE_PRIV_V1, JSON_IDM_HP_SERVICE_ACCOUNT_INTO_PERSON_MIGRATE_PRIV, JSON_IDM_HP_SYNC_ACCOUNT_MANAGE_PRIV, <span class="comment">// All members must exist before we write HP </span>JSON_IDM_HIGH_PRIVILEGE_V1, ]; <span class="kw">let </span>res: <span class="prelude-ty">Result</span><(), <span class="kw">_</span>> = idm_entries .iter() .try_for_each(|e_str| <span class="self">self</span>.internal_migrate_or_create_str(e_str)); <span class="kw">if </span>res.is_ok() { <span class="macro">admin_debug!</span>(<span class="string">"initialise_idm -> result Ok!"</span>); } <span class="kw">else </span>{ <span class="macro">admin_error!</span>(<span class="question-mark">?</span>res, <span class="string">"initialise_idm p3 -> result"</span>); } <span class="macro">debug_assert!</span>(res.is_ok()); res<span class="question-mark">?</span>; <span class="kw">let </span>idm_entries = [ <span class="comment">// Built in access controls. </span>E_IDM_ADMINS_ACP_RECYCLE_SEARCH_V1.clone(), E_IDM_ADMINS_ACP_REVIVE_V1.clone(), E_IDM_ALL_ACP_READ_V1.clone(), E_IDM_SELF_ACP_READ_V1.clone(), E_IDM_SELF_ACP_WRITE_V1.clone(), E_IDM_PEOPLE_SELF_ACP_WRITE_MAIL_PRIV_V1.clone(), E_IDM_ACP_PEOPLE_READ_PRIV_V1.clone(), E_IDM_ACP_PEOPLE_WRITE_PRIV_V1.clone(), E_IDM_ACP_PEOPLE_MANAGE_PRIV_V1.clone(), E_IDM_ACP_ACCOUNT_READ_PRIV_V1.clone(), E_IDM_ACP_ACCOUNT_WRITE_PRIV_V1.clone(), E_IDM_ACP_ACCOUNT_MANAGE_PRIV_V1.clone(), E_IDM_ACP_HP_ACCOUNT_READ_PRIV_V1.clone(), E_IDM_ACP_HP_ACCOUNT_WRITE_PRIV_V1.clone(), E_IDM_ACP_HP_ACCOUNT_MANAGE_PRIV_V1.clone(), E_IDM_ACP_GROUP_WRITE_PRIV_V1.clone(), E_IDM_ACP_GROUP_MANAGE_PRIV_V1.clone(), E_IDM_ACP_HP_GROUP_WRITE_PRIV_V1.clone(), E_IDM_ACP_HP_GROUP_MANAGE_PRIV_V1.clone(), E_IDM_ACP_SCHEMA_WRITE_ATTRS_PRIV_V1.clone(), E_IDM_ACP_SCHEMA_WRITE_CLASSES_PRIV_V1.clone(), E_IDM_ACP_ACP_MANAGE_PRIV_V1.clone(), E_IDM_ACP_RADIUS_SERVERS_V1.clone(), E_IDM_ACP_DOMAIN_ADMIN_PRIV_V1.clone(), E_IDM_ACP_SYSTEM_CONFIG_PRIV_V1.clone(), E_IDM_ACP_PEOPLE_ACCOUNT_PASSWORD_IMPORT_PRIV_V1.clone(), E_IDM_ACP_PEOPLE_EXTEND_PRIV_V1.clone(), E_IDM_ACP_HP_PEOPLE_READ_PRIV_V1.clone(), E_IDM_ACP_HP_PEOPLE_WRITE_PRIV_V1.clone(), E_IDM_ACP_HP_PEOPLE_EXTEND_PRIV_V1.clone(), E_IDM_ACP_ACCOUNT_UNIX_EXTEND_PRIV_V1.clone(), E_IDM_HP_ACP_ACCOUNT_UNIX_EXTEND_PRIV_V1.clone(), E_IDM_ACP_GROUP_UNIX_EXTEND_PRIV_V1.clone(), E_IDM_HP_ACP_GROUP_UNIX_EXTEND_PRIV_V1.clone(), E_IDM_HP_ACP_OAUTH2_MANAGE_PRIV_V1.clone(), E_IDM_ACP_RADIUS_SECRET_READ_PRIV_V1.clone(), E_IDM_ACP_RADIUS_SECRET_WRITE_PRIV_V1.clone(), E_IDM_HP_ACP_SERVICE_ACCOUNT_INTO_PERSON_MIGRATE_V1.clone(), E_IDM_HP_ACP_SYNC_ACCOUNT_MANAGE_PRIV_V1.clone(), E_IDM_UI_ENABLE_EXPERIMENTAL_FEATURES.clone(), E_IDM_ACCOUNT_MAIL_READ_PRIV.clone(), E_IDM_ACP_ACCOUNT_MAIL_READ_PRIV_V1.clone(), ]; <span class="kw">let </span>res: <span class="prelude-ty">Result</span><(), <span class="kw">_</span>> = idm_entries .into_iter() .try_for_each(|entry| <span class="self">self</span>.internal_migrate_or_create(entry)); <span class="kw">if </span>res.is_ok() { <span class="macro">admin_debug!</span>(<span class="string">"initialise_idm -> result Ok!"</span>); } <span class="kw">else </span>{ <span class="macro">admin_error!</span>(<span class="question-mark">?</span>res, <span class="string">"initialise_idm p3 -> result"</span>); } <span class="macro">debug_assert!</span>(res.is_ok()); res<span class="question-mark">?</span>; <span class="comment">// Delete entries that no longer need to exist. </span><span class="kw">let </span>delete_entries = [UUID_IDM_ACP_OAUTH2_READ_PRIV_V1]; <span class="kw">let </span>res: <span class="prelude-ty">Result</span><(), <span class="kw">_</span>> = delete_entries .into_iter() .try_for_each(|entry_uuid| <span class="self">self</span>.internal_delete_uuid_if_exists(entry_uuid)); <span class="kw">if </span>res.is_ok() { <span class="macro">admin_debug!</span>(<span class="string">"initialise_idm -> result Ok!"</span>); } <span class="kw">else </span>{ <span class="macro">admin_error!</span>(<span class="question-mark">?</span>res, <span class="string">"initialise_idm p3 -> result"</span>); } <span class="macro">debug_assert!</span>(res.is_ok()); res<span class="question-mark">?</span>; <span class="self">self</span>.changed_schema = <span class="bool-val">true</span>; <span class="self">self</span>.changed_acp = <span class="bool-val">true</span>; <span class="prelude-val">Ok</span>(()) } } <span class="attr">#[cfg(test)] </span><span class="kw">mod </span>tests { <span class="kw">use </span><span class="kw">crate</span>::prelude::<span class="kw-2">*</span>; <span class="attr">#[qs_test] </span><span class="kw">async fn </span>test_init_idempotent_schema_core(server: <span class="kw-2">&</span>QueryServer) { { <span class="comment">// Setup and abort. </span><span class="kw">let </span><span class="kw-2">mut </span>server_txn = server.write(duration_from_epoch_now()).<span class="kw">await</span>; <span class="macro">assert!</span>(server_txn.initialise_schema_core().is_ok()); } { <span class="kw">let </span><span class="kw-2">mut </span>server_txn = server.write(duration_from_epoch_now()).<span class="kw">await</span>; <span class="macro">assert!</span>(server_txn.initialise_schema_core().is_ok()); <span class="macro">assert!</span>(server_txn.initialise_schema_core().is_ok()); <span class="macro">assert!</span>(server_txn.commit().is_ok()); } { <span class="comment">// Now do it again in a new txn, but abort </span><span class="kw">let </span><span class="kw-2">mut </span>server_txn = server.write(duration_from_epoch_now()).<span class="kw">await</span>; <span class="macro">assert!</span>(server_txn.initialise_schema_core().is_ok()); } { <span class="comment">// Now do it again in a new txn. </span><span class="kw">let </span><span class="kw-2">mut </span>server_txn = server.write(duration_from_epoch_now()).<span class="kw">await</span>; <span class="macro">assert!</span>(server_txn.initialise_schema_core().is_ok()); <span class="macro">assert!</span>(server_txn.commit().is_ok()); } } <span class="comment">/* #[qs_test_no_init] async fn test_qs_upgrade_entry_attrs(server: &QueryServer) { let mut server_txn = server.write(duration_from_epoch_now()).await; assert!(server_txn.upgrade_reindex(SYSTEM_INDEX_VERSION).is_ok()); assert!(server_txn.commit().is_ok()); let mut server_txn = server.write(duration_from_epoch_now()).await; server_txn.initialise_schema_core().unwrap(); server_txn.initialise_schema_idm().unwrap(); assert!(server_txn.commit().is_ok()); let mut server_txn = server.write(duration_from_epoch_now()).await; assert!(server_txn.upgrade_reindex(SYSTEM_INDEX_VERSION + 1).is_ok()); assert!(server_txn.commit().is_ok()); let mut server_txn = server.write(duration_from_epoch_now()).await; assert!(server_txn .internal_migrate_or_create_str(JSON_SYSTEM_INFO_V1) .is_ok()); assert!(server_txn .internal_migrate_or_create_str(JSON_DOMAIN_INFO_V1) .is_ok()); assert!(server_txn .internal_migrate_or_create_str(JSON_SYSTEM_CONFIG_V1) .is_ok()); assert!(server_txn.commit().is_ok()); let mut server_txn = server.write(duration_from_epoch_now()).await; // ++ Mod the schema to set name to the old string type let me_syn = unsafe { ModifyEvent::new_internal_invalid( filter!(f_or!([ f_eq("attributename", PartialValue::new_iutf8("name")), f_eq("attributename", PartialValue::new_iutf8("domain_name")), ])), ModifyList::new_purge_and_set( "syntax", Value::new_syntaxs("UTF8STRING_INSENSITIVE").unwrap(), ), ) }; assert!(server_txn.modify(&me_syn).is_ok()); assert!(server_txn.commit().is_ok()); let mut server_txn = server.write(duration_from_epoch_now()).await; // ++ Mod domain name and name to be the old type. let me_dn = unsafe { ModifyEvent::new_internal_invalid( filter!(f_eq("uuid", PartialValue::Uuid(UUID_DOMAIN_INFO))), ModifyList::new_list(vec![ Modify::Purged(AttrString::from("name")), Modify::Purged(AttrString::from("domain_name")), Modify::Present(AttrString::from("name"), Value::new_iutf8("domain_local")), Modify::Present( AttrString::from("domain_name"), Value::new_iutf8("example.com"), ), ]), ) }; assert!(server_txn.modify(&me_dn).is_ok()); // Now, both the types are invalid. // WARNING! We can't commit here because this triggers domain_reload which will fail // due to incorrect syntax of the domain name! Run the migration in the same txn! // Trigger a schema reload. assert!(server_txn.reload_schema().is_ok()); // We can't just re-run the migrate here because name takes it's definition from // in memory, and we can't re-run the initial memory gen. So we just fix it to match // what the migrate "would do". let me_syn = unsafe { ModifyEvent::new_internal_invalid( filter!(f_or!([ f_eq("attributename", PartialValue::new_iutf8("name")), f_eq("attributename", PartialValue::new_iutf8("domain_name")), ])), ModifyList::new_purge_and_set( "syntax", Value::new_syntaxs("UTF8STRING_INAME").unwrap(), ), ) }; assert!(server_txn.modify(&me_syn).is_ok()); // WARNING! We can't commit here because this triggers domain_reload which will fail // due to incorrect syntax of the domain name! Run the migration in the same txn! // Trigger a schema reload. assert!(server_txn.reload_schema().is_ok()); // ++ Run the upgrade for X to Y assert!(server_txn.migrate_2_to_3().is_ok()); assert!(server_txn.commit().is_ok()); // Assert that it migrated and worked as expected. let mut server_txn = server.write(duration_from_epoch_now()).await; let domain = server_txn .internal_search_uuid(UUID_DOMAIN_INFO) .expect("failed"); // ++ assert all names are iname assert!( domain.get_ava_set("name").expect("no name?").syntax() == SyntaxType::Utf8StringIname ); // ++ assert all domain/domain_name are iname assert!( domain .get_ava_set("domain_name") .expect("no domain_name?") .syntax() == SyntaxType::Utf8StringIname ); assert!(server_txn.commit().is_ok()); } */ </span>} </code></pre></div> </section></main><div id="rustdoc-vars" data-root-path="../../../" data-static-root-path="../../../static.files/" data-current-crate="kanidmd_lib" data-themes="" data-resource-suffix="" data-rustdoc-version="1.68.2 (9eb3afe9e 2023-03-27)" data-search-js="search-98d53477a794af0b.js" data-settings-js="settings-c3c521c753752a1a.js" data-settings-css="settings-08ddfdda51b8ee2e.css" ></div></body></html>