# Frontend Runtime Extension Contract (V1)
This document defines the stable frontend runtime integration surface for plugins that extend FrontEdit in the browser.
## Purpose
This contract answers four questions for external integrations:
1. How another plugin may open and control FrontEdit editing.
2. What schema-resolved runtime data FrontEdit guarantees to expose.
3. Which lifecycle hooks and events are stable for observing editing and the standard FrontEdit save flow.
4. Which globals and implementation details are explicitly private.
## Scope
This contract covers the browser runtime only.
It does not define:
1. PHP handler registration.
2. Schema authoring rules.
3. Internal editor-state layout.
4. REST endpoint internals or private save helpers.
5. Internal DOM classes or data attributes unless explicitly documented here.
## Stability Model
FrontEdit exposes one stable base namespace for browser integrations:
```js
window.MWP.SFE.PublicApi
```
When FrontEdit Pro is active, FrontEdit also exposes one optional pro-only namespace:
```js
window.MWP.SFE.ProApi
```
Everything else on `window.MWP.SFE` is private unless this document explicitly says otherwise.
### Two-tier contract
This document uses two stability tiers:
1. `V1 committed surface`
External plugins may rely on these methods, events, and return shapes.
2. `Candidate APIs under evaluation`
These are roadmap items only. They are not part of the stable contract and may change or never ship.
### Versioning
The runtime extension contract is versioned independently from the schema contract.
`window.MWP.SFE.PublicApi` must expose:
```js
SFE.PublicApi.getApiInfo();
```
Expected shape:
```js
{
apiVersion: 1,
namespace: 'window.MWP.SFE.PublicApi',
features: {
editorControl: true,
runtimeInspection: true,
editableBlockDiscovery: true,
editingRuntimeResolution: true,
textComponentOperations: true,
mediaComponentOperations: true,
mediaInspection: true,
mediaSessionControl: true,
explicitStaging: true,
events: true,
blockRefresh: true
}
}
```
Version rules:
1. Additive methods, additive event payload fields, and additive snapshot fields are minor-safe.
2. Removing or renaming methods, changing event semantics, or changing documented return-shape meaning requires an `apiVersion` bump.
3. Private internals may change at any time without notice.
## Public Namespace Rules
External plugins may:
1. Call documented `SFE.PublicApi.*` methods.
2. Call documented `SFE.ProApi.*` methods only when the pro plugin is active and the method is documented here as pro-only.
3. Subscribe only to documented `SFE.PublicApi` events.
4. Store and compare documented snapshot data returned by the API.
External plugins must not:
1. Monkey-patch FrontEdit methods.
2. Directly mutate `window.MWP.SFE` objects unless a documented API explicitly allows it.
3. Depend on underscore-prefixed properties.
4. Rebuild schema runtime resolution, media descriptor resolution, or block-state hydration from private internals when a public API exists.
## V1 Committed Surface
### Discovery
#### Server-side AI discovery
When the WordPress Abilities API is available, an authorized FrontEdit editor
may call the following post-scoped, read-only abilities:
1. `mwpsfe/list-editable-blocks` with `post_id` to retrieve selectable block
UUIDs, block types, edit handler IDs, and source-text summaries.
2. `mwpsfe/get-editable-block` with `post_id` and `uuid` to retrieve focused
content for one already-authorized editable block.
3. `mwpsfe/get-frontend-runtime-contract` with `post_id` to retrieve this
canonical browser contract.
These abilities authorize the current user against the exact requested post;
they do not discover WordPress posts/pages, execute browser methods, or create
an external save path. WordPress core remains responsible for page discovery.
Once the browser runtime is present, integrations must still verify
availability through `SFE.PublicApi.getApiInfo()` and use
`SFE.PublicApi.getEditableBlocks()` to enumerate the live page.
#### `getEditableBlocks() -> EditableBlock[]`
Return the FrontEdit-editable blocks currently known to the live page runtime.
```js
const blocks = SFE.PublicApi.getEditableBlocks();
const match = blocks.find(block => block.contentText.includes('Pricing'));
```
Each entry is a `BlockSnapshot` plus `contentText`, which is normalized text
from the current rendered block element. Use its `uuid` with
`resolveEditingRuntime(...)` before choosing a documented edit operation. This
method is the supported browser discovery path; integrations must not scrape
private FrontEdit DOM attributes to enumerate UUIDs.
#### Human save handoff
An integration may inspect a block, open FrontEdit, and apply documented
runtime operations or staging. It must then hand control to the authorized
human to review and complete FrontEdit's standard save UI. V1 has no external
direct-save API.
#### `getApiInfo()`
```js
const info = SFE.PublicApi.getApiInfo();
```
Returns the contract version and feature flags for this runtime.
### Editor Control
#### `openEditor(options) -> Promise`
Open FrontEdit editing for a target block through the supported runtime path.
```js
await SFE.PublicApi.openEditor({
uuid,
element,
handlerId,
componentId,
mode: 'edit',
source: 'external'
});
```
Rules:
1. `uuid` is required.
2. `element` is optional when the block can be resolved from `uuid`.
3. `handlerId` is optional when FrontEdit can resolve the applicable handler for the block.
4. `componentId` is optional. When supplied, FrontEdit targets the documented editable component for the session.
5. `mode` defaults to `'edit'`.
6. `source` is a caller label for diagnostics and event payloads.
Returns an `EditorSnapshot` when FrontEdit opened an editor session, otherwise `null`.
#### `closeEditor(options = {}) -> boolean`
Close the active editor session through the supported runtime path.
```js
SFE.PublicApi.closeEditor({
uuid,
restoreOriginal: true,
reason: 'api',
source: 'external'
});
```
Rules:
1. `uuid` is optional. When omitted, FrontEdit closes the active editor if one exists.
2. `restoreOriginal` defaults to `true`.
3. `reason` is an informational reason token.
4. `source` is a caller label for diagnostics and event payloads.
Returns `true` when a close was attempted through the active supported editor session, otherwise `false`.
#### `isEditorOpen() -> boolean`
Returns whether FrontEdit currently has an active editor session.
#### `getActiveEditor() -> EditorSnapshot|null`
Returns a stable snapshot of the current active editor session.
The return value is a snapshot, not a mutable live internal object.
### Runtime Inspection
#### `resolveRuntime(options) -> ResolvedRuntime|null`
Resolve the schema-aware runtime view FrontEdit would use for editing.
```js
const runtime = SFE.PublicApi.resolveRuntime({
uuid,
element,
handlerId
});
```
Returns a stable runtime snapshot for the target block or `null` when no supported runtime could be resolved.
#### `resolveEditingRuntime(options) -> ResolvedEditingRuntime|null`
Resolve the richer schema-driven editing runtime FrontEdit would use for active editing or proposal materialization.
```js
const runtime = SFE.PublicApi.resolveEditingRuntime({
uuid,
element,
handlerId,
blockState,
attributeChanges
});
```
Returns a detailed editing runtime snapshot with resolved component metadata and live component element references.
Rules:
1. `uuid`, `element`, and `handlerId` follow the same resolution rules as `resolveRuntime()`.
2. `blockState` is optional. When supplied, FrontEdit resolves the runtime against that staged block state instead of the current session baseline.
3. `attributeChanges` is optional. When supplied, FrontEdit resolves the runtime against those pending block attribute changes.
4. The returned runtime data is read-only snapshot data except for documented DOM element references inside component entries.
#### `getEditableComponents(options) -> EditableComponent[]`
Returns the runtime-editable components for the resolved block.
#### `getDefaultComponent(options) -> EditableComponent|null`
Returns the default editable component for the resolved block, if one exists.
### Block Attribute Runtime
Schema-backed block attribute changes flow through the shared executor. Public callers use `applyBlockAttributeOperations(...)` for both single-operation and multi-operation batches, and each entry must reference one schema-declared operation ID exposed through `resolveEditingRuntime(...).runtime.editableComponents[*].editor.operations`.
#### `applyBlockAttributeOperations(options) -> BlockAttributeOperationResult|null`
Apply one or more schema-declared block attribute mutations as one runtime batch.
```js
const result = SFE.PublicApi.applyBlockAttributeOperations({
uuid,
operations: [
{ id: 'set_heading_level', value: 2 },
{ id: 'set_text_align', value: 'center' },
{ id: 'set_align', value: 'wide' },
{ id: 'set_column_align', value: 'right', columns: [0] },
{ id: 'set_column_align', value: 'right', columns: [0, 1, 2] },
{ id: 'set_column_align', value: 'left', columns: 'all' }
]
});
```
Rules:
1. `uuid` is required.
2. The target editor must already be open.
3. `operations` is required. Callers should pass a one-item array when only one mutation is needed.
4. `operations` are applied in order against the current live editor state.
5. Each entry must supply a schema operation `id` plus a concrete `value`.
6. Column-scoped table alignment operations such as `set_column_align` must supply `columns`.
7. `columns` must be either an array of zero-based column indexes such as `[0]` or `[0, 1, 2]`, or the string `'all'`.
8. Scalar convenience values such as `columns: 0` are intentionally invalid; callers must always send an array for explicit column indexes.
9. Public callers must not send raw `block_attribute_change` payloads or direct attribute paths such as `style.typography.textAlign`.
### Component Runtime
The Component Runtime API applies schema-backed component content updates to an
open editor. It supports replacing the content of one or more runtime
components in a single batch while automatically normalizing the supplied
content against the component's schema.
Use `applyTextComponentOperations(...)` for direct component content replacement.
For compatibility with existing integrations, `applyStructuredEdit(...)`
continues to provide the higher-level batch API and internally delegates
component updates to the same execution pipeline.
#### `applyTextComponentOperations(options) -> ComponentOperationResult|null`
Apply one or more schema-backed component content replacements as one runtime
batch.
```js
const result = SFE.PublicApi.applyTextComponentOperations({
uuid,
operations: [
{
kind: 'replace_component_content',
componentId: 'content',
bindingSource: 'html',
runs: [
{
text: 'Updated CTA copy',
formats: ['link'],
formatAttributes: {
link: {
href: 'https://example.com',
settings: {
new_tab: true,
no_follow: true
}
}
}
}
]
}
]
});
```
```js
const result = SFE.PublicApi.applyTextComponentOperations({
uuid,
operations: [
{
id: 'set_button_link',
kind: 'link_change',
componentId: 'label',
format: 'buttonLink',
href: 'https://example.com/pricing',
new_tab: true,
no_follow: true
}
]
});
```
Rules:
1. `uuid` is required.
2. The target editor must already be open.
3. `operations` is required. Callers should pass a one-item array when only one replacement is needed.
4. Each operation must target one runtime `componentId`.
5. `replace_component_content` is the canonical public text/content mutation kind.
6. `link_change` is the canonical public host-link mutation kind for element-scoped anchor components such as `core/button`.
7. `link_change` accepts `href` or `url`, optional `target` or `linkTarget`, optional `rel`, and link settings via either top-level `new_tab` / `no_follow` fields or `settings.{new_tab,no_follow}`.
8. `link_change` is intended for components whose editable host element is itself the canonical anchor. It is not the replacement path for inline text links inside larger rich-text content.
9. Public callers should send normalized `runs` payloads for `replace_component_content`. Literal newline characters inside `runs[*].text` are interpreted through the component's schema/runtime editor options.
10. FrontEdit also accepts `lines` as an undocumented compatibility input while callers migrate to direct `runs`, but `runs` is the stable public contract.
11. Link-like format attributes inside `replace_component_content` runs are normalized by FrontEdit against the component's schema-declared inline format capabilities, including `settings.new_tab` and `settings.no_follow`.
#### `ComponentOperationResult`
Successful component runtime mutations return:
1. `uuid` (string): target block UUID
2. `updatedComponentIds` (array of strings): component IDs whose live DOM was updated
3. `operationsApplied` (array of strings): applied operation IDs or canonical kinds in execution order
### Media Runtime
The Media Runtime API applies schema-backed media replacements to an open media
editing session. It uses the same component targeting model as the component
content runtime, but delegates the actual preview mutation through FrontEdit's
existing media-session host so resolved media attributes and save-time behavior
stay aligned with the native editor flow.
#### `applyMediaComponentOperations(options) -> MediaOperationResult|null`
Apply one or more schema-backed media replacements to the active media session.
```js
const result = SFE.PublicApi.applyMediaComponentOperations({
uuid,
operations: [
{
kind: 'replace_component_media',
componentId: 'image',
url: 'https://example.com/uploads/updated-image.jpg',
attachmentId: 123,
source: 'library'
}
]
});
```
Rules:
1. `uuid` is required.
2. The target editor must already be open.
3. The target component must already own the active media-editing session.
4. `operations` is required. Callers should pass a one-item array when only one replacement is needed.
5. Each operation must target one runtime `componentId`.
6. `replace_component_media` is the canonical public media mutation kind.
7. `url` is required.
8. `attachmentId` is optional.
9. `source` may be `'library'` or `'input'` and defaults to the input-style transition when omitted.
#### `MediaOperationResult`
Successful media runtime mutations return:
1. `uuid` (string): target block UUID
2. `updatedComponentIds` (array of strings): component IDs whose live DOM was updated
3. `operationsApplied` (array of strings): applied operation IDs or canonical kinds in execution order
### Structured Edit Runtime
Structured non-list edits use the same high-level pattern as public list mutations:
1. open the editor for the target block
2. apply normalized operations through the public API
3. let FrontEdit own DOM mutation, toolbar sync, and history persistence
#### `applyStructuredEdit(options) -> StructuredEditResult|null`
Apply one normalized structured edit batch to the active schema editor.
```js
const result = SFE.PublicApi.applyStructuredEdit({
uuid,
componentUpdates: [
{
componentId: 'content',
bindingSource: 'html',
runs: [
{ text: 'Updated heading copy' }
]
}
],
attributeOperations: [
{ id: 'set_heading_level', value: 1 },
{ id: 'set_align', value: 'full' },
{ id: 'set_text_align', value: 'right' }
]
});
```
Rules:
1. `uuid` is required.
2. The target editor must already be open.
3. `componentUpdates` are applied first through the shared component executor.
4. `attributeOperations` are then applied through the shared block-attribute executor.
5. The batch creates at most one FrontEdit history entry after all component and attribute mutations finish.
6. `attributeOperations` must use schema operation IDs, not raw `block_attribute_change` payloads or direct attribute paths.
7. Callers should pass normalized capability-driven payloads rather than manually mutating the editor DOM outside this seam.
#### `StructuredEditResult`
Successful structured edits return:
1. `uuid` (string): target block UUID
2. `updatedComponentIds` (array of strings): component IDs whose live DOM was updated
3. `operationsApplied` (array of strings): schema operation IDs that mutated the live editor state when available
4. `attributeChanges` (object): current tracked block attribute change map after the batch
#### `BlockAttributeOperationResult`
Successful block-attribute runtime mutations return:
1. `uuid` (string): target block UUID
2. `operationsApplied` (array of strings): schema operation IDs that actually mutated the live editor state
3. `attributeChanges` (object): current tracked block attribute change map after the batch
### List Runtime
`V1` includes a public list-tree runtime for `core/list`-style blocks that are
edited as one root block while exposing nested item/list structure to external
callers.
#### `getListStructure(options) -> ListNode|null`
Return the current live structural snapshot for one open or discoverable list
block.
```js
const structure = SFE.PublicApi.getListStructure({
uuid,
element
});
```
Rules:
1. `uuid` is required unless `element` can be resolved to a block UUID.
2. The target block must resolve to a live `UL` or `OL` root.
3. The return value is a read-only structural snapshot of the live DOM tree.
#### `applyListOperations(options) -> ListOperationResult|null`
Apply one or more structural list mutations as one runtime batch.
```js
const result = SFE.PublicApi.applyListOperations({
uuid,
operations: [
{
kind: 'update_list_item_text',
itemUuid: '7db1a4ff-8e25-4f7d-a806-9328d473bb96',
contentHtml: 'Alpha'
},
{
kind: 'toggle_list_type',
itemUuid: '7db1a4ff-8e25-4f7d-a806-9328d473bb96',
}
]
});
```
Rules:
1. `uuid` is required.
2. The target list editor must already be open.
3. `operations` are applied in order against the live mutated tree.
4. Every operation must supply the correct documented UUID target token family for its kind.
5. FrontEdit resolves each operation's runtime UUIDs against the current post-mutation tree immediately before that operation runs.
6. Public callers must use only the documented high-level list-operation kinds.
7. Some public operations may expand into multiple internal primitive mutations. For example, `insert_child` inserts the new item after the parent item, then indents it so the tracker creates the nested child list through the normal editor path.
8. Successful batches return one updated list structure snapshot.
#### Supported list operation kinds
List runtime operations currently include:
1. `update_list_item_text`
2. `insert_before`
3. `insert_after`
4. `insert_child`
5. `remove_list_item`
6. `move_before`
7. `move_after`
8. `indent_list_item`
9. `outdent_list_item`
10. `toggle_list_type`
These are the public API kinds only. Internally FrontEdit still executes lower-level
primitive list operations such as `insert_list_item`, `move_list_item`, and
`toggle_list_type`, but only the documented public surface is part of the
runtime contract.
#### List operation payloads
| Kind | Required fields | Optional fields | Description |
| --- | --- | --- | --- |
| `update_list_item_text` | `kind`, `itemUuid`, `contentHtml` | -- | Replaces the direct text HTML for one existing list item. |
| `insert_before` | `kind`, `newItemUuid`, `targetItemUuid`, `contentHtml` | -- | Inserts a new sibling item before the target item. |
| `insert_after` | `kind`, `newItemUuid`, `targetItemUuid`, `contentHtml` | -- | Inserts a new sibling item after the target item. |
| `insert_child` | `kind`, `newItemUuid`, `targetItemUuid`, `contentHtml` | -- | Creates a new child item under the target item. |
| `remove_list_item` | `kind`, `itemUuid` | -- | Removes one existing list item and its nested children. |
| `move_before` | `kind`, `itemUuid`, `targetItemUuid` | -- | Moves an existing item before the target item. |
| `move_after` | `kind`, `itemUuid`, `targetItemUuid` | -- | Moves an existing item after the target item. |
| `indent_list_item` | `kind`, `itemUuid` | -- | Indents one existing item through the normal editor list behavior. |
| `outdent_list_item` | `kind`, `itemUuid` | -- | Outdents one existing item through the normal editor list behavior. |
| `toggle_list_type` | `kind`, `itemUuid` | -- | Toggles the containing list for the referenced item between ordered and unordered. |
`contentHtml` is required for operations that create or replace item content. It represents the direct item text HTML only. It must not include wrapping `
`, `
`, or `` elements.
#### Public target-token rules
Public list operations must use only the documented runtime UUID token family
for their kind. FrontEdit rejects public operations that omit the required token.
1. `update_list_item_text`, `remove_list_item`, `indent_list_item`, and `outdent_list_item` target one existing list item and must provide `itemUuid`.
2. `insert_before` and `insert_after` must provide `newItemUuid` plus `targetItemUuid`.
3. `insert_child` must provide `newItemUuid` plus `targetItemUuid`. If the target item does not already own a child list, FrontEdit creates the
required nested list automatically.
4. `move_before` and `move_after` must provide `itemUuid` plus `targetItemUuid`.
5. `toggle_list_type` must provide `itemUuid`. FrontEdit resolves that item to its current containing list immediately before the toggle runs.
6. Public callers must use only the documented camelCase keys above. Any other keys are outside the API contract.
7. Public callers must not rely on cursor or selection state. Cursor-based inference is reserved for internal editor-originated calls only.
#### Runtime UUID ownership
List-item UUIDs and list-node UUIDs have different ownership rules.
1. Public callers are responsible for generating UUIDs for newly created list items.
2. FrontEdit is responsible for generating and managing UUIDs for list nodes.
3. Public callers must not create, assign, or mutate list-node UUIDs directly.
4. When a structural operation creates a new nested list, FrontEdit assigns the resulting `listUuid`.
5. Public list operations target items, not list nodes, even though returned structure snapshots still expose `listUuid` values.
#### Recommended UUID convention
FrontEdit does not enforce a specific caller UUID format for public list operations.
Recommended convention:
1. Use RFC 4122 version 4 UUID strings for `itemUuid`, `targetItemUuid`, and `newItemUuid`.
2. Generate one fresh UUID for every new list item the caller intends to create.
3. Treat runtime UUIDs as session-scoped cursor tokens only. Do not persist or reuse them after the list editor closes or the page reloads.
#### `ListNode`
`getListStructure()` and successful list-operation results return recursive list
nodes plus item nodes so child lists remain distinct from the list items that
own them.
A list node contains:
1. `listUuid` (string): session-scoped runtime UUID for this list node
2. `listPath` (string): empty string for the root list, or the parent item path that owns this nested child list
3. `ordered` (boolean): whether this specific list node is `OL`
4. `items` (array): direct child list items for this list node
Each item contains:
1. `itemUuid` (string): session-scoped runtime UUID for this item
2. `path` (string): item tree path
3. `pathLabel` (string): human-readable 1-based path label
4. `depth` (number): zero-based nesting depth
5. `contentHtml` (string): direct item text HTML only
6. `childList` (`ListNode|null`): nested list node owned by this item, or `null`
Example:
```json
{
"listUuid": "e183f2b5-2f90-4ca2-8ea8-c3d8c72ab2c1",
"listPath": "",
"ordered": false,
"items": [
{
"itemUuid": "7db1a4ff-8e25-4f7d-a806-9328d473bb96",
"path": "0",
"pathLabel": "1",
"depth": 0,
"contentHtml": "a",
"childList": {
"listUuid": "fd818143-75d8-4ae9-8f3f-798d54150472",
"listPath": "0",
"ordered": false,
"items": [
{
"itemUuid": "c71fad00-2d1f-4f70-b0fc-84681f5ef8a0",
"path": "0_0",
"pathLabel": "1.1",
"depth": 1,
"contentHtml": "b",
"childList": {
"listUuid": "2cd9f476-1d91-45e5-bd0b-ae981b78a111",
"listPath": "0_0",
"ordered": false,
"items": [
{
"itemUuid": "b2f4ffad-edbc-48e9-950d-2716b5bf6942",
"path": "0_0_0",
"pathLabel": "1.1.1",
"depth": 2,
"contentHtml": "c",
"childList": null
}
]
}
}
]
}
}
]
}
```
#### `ListOperationResult`
Successful list runtime mutations return:
1. `uuid` (string): target block UUID
2. `operationsApplied` (array of strings): normalized operation kinds applied in order
3. `structure` (`ListNode`): updated live list structure snapshot
### Media Inspection And Session Control
#### `getMediaContext(options) -> MediaContext|null`
Resolve the media-editable context for a block or specific component.
```js
const mediaContext = SFE.PublicApi.getMediaContext({
uuid,
element,
handlerId,
componentId
});
```
Returns `null` when the target block is not media-editable through the documented runtime surface.
#### `getMediaDescriptor(options) -> MediaDescriptor|null`
Returns the stable media descriptor for the selected file component, if one exists.
#### `isMediaEditable(options) -> boolean`
Returns whether the resolved block exposes a file-editable component through the public runtime contract.
#### `applyActiveMediaSelection(options) -> EditorSnapshot|null`
Apply one selected media item to the current active schema-media editor session through FrontEdit's supported runtime path.
```js
const editor = SFE.PublicApi.applyActiveMediaSelection({
uuid,
url,
attachmentId,
source: 'library'
});
```
Rules:
1. `uuid` is required and must match the current active editor session.
2. `url` is required.
3. `attachmentId` is optional.
4. `source` may be `'library'` or `'input'` and defaults to the input-style save transition when omitted.
5. Returns an updated `EditorSnapshot` when the active media session accepted the selection, otherwise `null`.
### Explicit Staging
`V1` supports explicit block-state staging only.
Staging is editor preparation, not external save execution. External plugins may stage block state and open or guide the FrontEdit editor, but the user must complete saving through FrontEdit's standard save UI and normal FrontEdit save workflow.
#### `stageBlockState(stage) -> void`
Stage a temporary block-state payload for one block so that subsequent editor open and hydration flows may consume it through FrontEdit's supported staging path.
```js
SFE.PublicApi.stageBlockState({
uuid,
handlerId,
blockState,
source: 'external'
});
```
Rules:
1. `uuid` is required.
2. `handlerId` is optional metadata for the caller and diagnostics.
3. `blockState` must match the shape FrontEdit's canonical block hydration path expects.
4. Staged block state is temporary and applies only through the documented FrontEdit runtime path.
5. Staged changes do not create a supported external save path in `V1`.
#### `clearStagedBlockState(uuid) -> void`
Clear any currently staged block state for the given block UUID.
### Session Utilities
#### `on(eventName, handler) -> unsubscribeFn`
Subscribe to one documented runtime event.
```js
const unsubscribe = SFE.PublicApi.on('save:after', payload => {
// observe successful save completion
});
```
Returns an unsubscribe function equivalent to calling `off(eventName, handler)`.
#### `off(eventName, handler) -> void`
Remove a previously registered event handler.
#### `refreshBlock(uuid, options?) -> Promise`
Request that FrontEdit refresh the live DOM for one block through its supported refresh path and return the resulting `BlockSnapshot`.
### Dirty State, Page Context, and Lookup Utilities
#### `getDirtyBlocks() -> DirtyBlock[]`
Returns a stable summary of the blocks that currently have unsaved changes in the active runtime session.
#### `hasDirtyBlocks() -> boolean`
Returns whether any block currently has unsaved changes.
#### `isBatchSessionActive() -> boolean`
Returns whether FrontEdit currently has an active batch-edit session.
#### `resetDirtyBlocks(uuids, options?) -> boolean`
Reset the tracked dirty batch state for the supplied block UUIDs back to the current batch-session baseline.
### Pro-only Session Utilities
These methods exist only when FrontEdit Pro is active on the page.
#### `ensureBatchSession() -> Promise`
Ensure the shared batch-edit session exists before downstream runtime checks or mutations depend on it.
```js
const ready = await SFE.ProApi.ensureBatchSession();
```
Rules:
1. This method is available only on `window.MWP.SFE.ProApi`.
2. It returns `false` when batch editing is unavailable or disabled for the current page.
3. It may be called repeatedly; repeated calls are safe and reuse any in-flight session bootstrap work.
#### `getPageContext() -> PageContext`
Returns a stable page-level runtime snapshot.
#### `getRestContext() -> RestContext`
Returns the REST context FrontEdit guarantees to expose for supported runtime integrations.
#### `setRestNonce(nonce) -> RestContext`
Update the REST nonce FrontEdit should use for subsequent supported runtime requests on the current page.
```js
const restContext = SFE.PublicApi.setRestNonce(refreshedNonce);
```
Rules:
1. `nonce` must be a non-empty string.
2. This updates only the current page runtime state. It does not fetch or mint a new nonce on its own.
3. Callers should use this after their own authenticated nonce-refresh flow succeeds.
4. The return value is the updated `RestContext`.
#### `getElementByUuid(uuid) -> Element|null`
Returns the current live DOM element for a block UUID, if present.
#### `getUuidForElement(element) -> string`
Returns the FrontEdit block UUID for the supplied element, or an empty string when none is available.
#### `getBlockSnapshot(uuid) -> BlockSnapshot|null`
Returns a stable summary snapshot for one block UUID.
#### `getEditableBlocks() -> EditableBlock[]`
Returns the stable live-page discovery snapshots described above.
## Stable Snapshot Shapes
Snapshots are plain data contracts. They are not live editor-state objects and must not be mutated to control FrontEdit.
### `EditorSnapshot`
```json
{
"uuid": "8d63...",
"handlerId": "core_image",
"mode": "edit",
"blockName": "core/image",
"componentType": "file",
"componentId": "image",
"saveStrategy": "single",
"hasMediaSession": true,
"isDirty": false,
"isDraftSession": false,
"isBatchSession": false
}
```
Required fields:
1. `uuid`
2. `handlerId`
3. `mode`
4. `blockName`
5. `componentType`
6. `componentId`
7. `saveStrategy`
8. `hasMediaSession`
9. `isDirty`
10. `isDraftSession`
11. `isBatchSession`
Field notes:
1. `hasMediaSession` is `true` when the active editor host currently exposes the
supported media-selection control surface used by
`SFE.PublicApi.applyActiveMediaSelection(...)`.
### `ResolvedRuntime`
```json
{
"uuid": "8d63...",
"handlerId": "core_cover",
"blockName": "core/cover",
"schemaVersion": 1,
"mode": "mixed",
"defaultComponentId": "image",
"components": []
}
```
Required fields:
1. `uuid`
2. `handlerId`
3. `blockName`
4. `schemaVersion`
5. `mode`
6. `defaultComponentId`
7. `components`
### `EditableComponent`
```json
{
"id": "image",
"label": "Image",
"type": "file",
"selector": "figure",
"default": true,
"target": {
"selector": "img",
"attribute": "src",
"mediaType": "image"
},
"mediaDescriptor": {
"componentId": "image",
"scopeSelector": "figure",
"targetSelector": "img",
"attribute": "src",
"mediaType": "image"
}
}
```
Required fields:
1. `id`
2. `label`
3. `type`
4. `selector`
5. `default`
Optional fields:
1. `required`
2. `placeholder`
3. `target`
4. `mediaDescriptor`
5. `editor`
### `MediaDescriptor`
```json
{
"componentId": "image",
"scopeSelector": "figure",
"targetSelector": "img",
"attribute": "src",
"mediaType": "image"
}
```
Required fields:
1. `componentId`
2. `scopeSelector`
3. `targetSelector`
4. `attribute`
5. `mediaType`
### `MediaContext`
```json
{
"supported": true,
"componentId": "image",
"mediaType": "image",
"accept": "image/*",
"label": "image block",
"descriptor": {
"componentId": "image",
"scopeSelector": "figure",
"targetSelector": "img",
"attribute": "src",
"mediaType": "image"
}
}
```
Required fields:
1. `supported`
2. `componentId`
3. `mediaType`
4. `accept`
5. `label`
6. `descriptor`
### `DirtyBlock`
```json
{
"uuid": "8d63...",
"handlerId": "core_paragraph",
"blockName": "core/paragraph",
"beforeRaw": "
Old
",
"afterRaw": "
New
"
}
```
Required fields:
1. `uuid`
2. `handlerId`
3. `blockName`
4. `beforeRaw`
5. `afterRaw`
### `PageContext`
```json
{
"postId": 123,
"permissions": {
"can_publish": true,
"can_draft": false,
"can_comment": true,
"can_batch": true
},
"hasDraftPreview": false,
"isEditorOpen": false,
"activeMode": ""
}
```
Required fields:
1. `postId`
2. `permissions`
3. `hasDraftPreview`
4. `isEditorOpen`
5. `activeMode`
### `RestContext`
```json
{
"baseUrl": "https://example.com/wp-json/",
"namespaceUrl": "https://example.com/wp-json/mwpsfe/v1/",
"nonce": "..."
}
```
Required fields:
1. `baseUrl`
2. `namespaceUrl`
3. `nonce`
### `BlockSnapshot`
```json
{
"uuid": "8d63...",
"blockName": "core/image",
"handlerIds": ["core_image", "core_image_comment"],
"isPending": false,
"pendingInfo": null,
"elementPresent": true
}
```
Required fields:
1. `uuid`
2. `blockName`
3. `handlerIds`
4. `isPending`
5. `pendingInfo`
6. `elementPresent`
### `EditableBlock`
An `EditableBlock` contains every `BlockSnapshot` field plus:
```json
{
"contentText": "Visible normalized text from this block"
}
```
`contentText` is the current rendered text used for live-page matching. It is
not serialized Gutenberg block markup and must not be used as a write payload.
## Stable Events
`V1` events are observable only.
They provide visibility into FrontEdit runtime lifecycle. They are not interception points and do not allow cancellation, mutation, or alternate control flow through event payload side effects.
### Subscription rules
1. Consumers may subscribe only through `SFE.PublicApi.on()`.
2. Consumers must treat event payloads as snapshots.
3. Event payload objects must not be mutated.
### `editor:opened`
Fires after FrontEdit has opened an editor session through a supported path.
Payload:
```json
{
"source": "external",
"editor": {}
}
```
Required fields:
1. `source`
2. `editor` as `EditorSnapshot`
### `editor:beforeClose`
Fires before FrontEdit closes an editor session through a supported path.
Payload:
```json
{
"source": "api",
"reason": "api",
"editor": {}
}
```
Required fields:
1. `source`
2. `reason`
3. `editor` as `EditorSnapshot`
### `editor:closed`
Fires after FrontEdit closes an editor session through a supported path.
Payload:
```json
{
"source": "api",
"reason": "api",
"editor": {}
}
```
Required fields:
1. `source`
2. `reason`
3. `editor` as `EditorSnapshot`
### `editor:componentChanged`
Fires when FrontEdit changes the active editable component within one editor session.
Payload:
```json
{
"source": "sfe",
"editor": {}
}
```
Required fields:
1. `source`
2. `editor` as `EditorSnapshot`
### `save:before`
Fires when FrontEdit is about to begin a supported save path.
Payload:
```json
{
"source": "sfe",
"editor": {},
"saveStrategy": "single"
}
```
Required fields:
1. `source`
2. `editor` as `EditorSnapshot`
3. `saveStrategy`
### `save:after`
Fires after FrontEdit completes a supported save path successfully.
Payload:
```json
{
"source": "sfe",
"editor": {},
"saveStrategy": "single",
"success": true
}
```
Required fields:
1. `source`
2. `editor` as `EditorSnapshot`
3. `saveStrategy`
4. `success`
### `save:error`
Fires when FrontEdit's supported save path fails.
Payload:
```json
{
"source": "sfe",
"editor": {},
"saveStrategy": "single",
"message": "REVISION_CONFLICT"
}
```
Required fields:
1. `source`
2. `editor` as `EditorSnapshot`
3. `saveStrategy`
4. `message`
### `block:staged`
Fires after `stageBlockState()` records a staged block-state payload.
Payload:
```json
{
"source": "external",
"uuid": "8d63...",
"handlerId": "core_image"
}
```
Required fields:
1. `source`
2. `uuid`
3. `handlerId`
### `block:stageCleared`
Fires after `clearStagedBlockState()` clears a staged block-state payload.
Payload:
```json
{
"source": "external",
"uuid": "8d63..."
}
```
Required fields:
1. `source`
2. `uuid`
### `block:refreshed`
Fires after FrontEdit refreshes a block's live DOM through the supported refresh path.
Payload:
```json
{
"source": "sfe",
"block": {}
}
```
Required fields:
1. `source`
2. `block` as `BlockSnapshot`
## Candidate APIs Under Evaluation
The following APIs are not part of `V1` and are intentionally non-contractual in this document:
1. `consumeMediaSelection()`
2. `getActiveMediaSession()`
3. `registerBlockStateProvider()`
4. `unregisterBlockStateProvider()`
These remain candidate APIs under evaluation so FrontEdit can improve its internal runtime boundaries before committing to stable provider or live media-session semantics.
## Private Runtime Boundary
The following names and object families are explicitly private and unsupported for external integrations:
1. `SFE.Context`
2. `SFE.ManagerData`
3. `SFE.SchemaRuntime`
4. `SFE.MediaHelper`
5. `SFE.Api`
6. `SFE.SaveHelpers`
7. `SFE.SaveHooks`
8. `SFE.BlockSerializer`
9. `SFE.BatchEditManager`
10. `SFE.ResolveBlockState`
11. `SFE.ResolveEditorStrategy`
12. Raw `handler.client_config`
13. Raw editor-state objects
14. Underscore-prefixed properties such as `_mwpSchemaRuntime` and `_mwpSchemaMediaSession`
15. Undocumented DOM classes and data attributes
Private APIs may change without deprecation, compatibility shims, or contract version notice.
## Extension Rules
External runtime integrations must follow these rules:
1. Use `window.MWP.SFE.PublicApi` as the only supported JS entry point.
2. Use FrontEdit runtime inspection APIs instead of re-resolving schema handlers or media descriptors from private state.
3. Use explicit staging APIs instead of overriding global block-state resolvers.
4. Use documented lifecycle events instead of patching editor open or close methods.
5. Use stable snapshots only for observation and coordination, never for direct mutation of live FrontEdit state.
6. Preserve FrontEdit's canonical save pipeline and do not bypass block serialization rules.
7. Do not treat `V1` as a supported direct-save API; saving remains user-driven through standard FrontEdit controls.
8. When an integration refreshes the shared REST nonce during a long-lived session, it should synchronize FrontEdit through `SFE.PublicApi.setRestNonce(...)` instead of mutating `SFE.ManagerData` directly.
// SYS-CACHE-START
// SYS-CACHE-END
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3232Biblische Wunder als Zeichen der göttlichen Macht in der Vergangenheit und Gegenwart
https://www.durucapari.com/biblische-wunder-als-zeichen-der-gottlichen-macht-in-der-vergangenheit-und-gegenwart-2/
Mon, 20 Oct 2025 13:14:17 +0000https://www.durucapari.com/?p=113160Heilung geschieht oft auf eine Art und Weise, die zunächst unmöglich erscheint. In vielen Augenblicken der Menschheitsgeschichte erleben wir, wie der Glaube an das Übernatürliche Menschen Kraft verleiht. Es sind diese seltenen Gelegenheiten, in denen das Unbeschreibliche zum Leben erwacht, die uns die wahre Tiefe der spirituellen Erkenntnis offenbaren.
Jeder von uns hat Geschichten gehört, in denen das Unmögliche Wirklichkeit wird. Diese Erzählungen zurückzuführen auf tief verwurzelte Überzeugungen und die Kraft des Glaubens, inspirieren und ermutigen. Die Berichte von unerklärlichen Heilungen und außergewöhnlichen Ereignissen stärken unser Vertrauen und lassen uns erkennen, dass das Wirken höherer Kräfte stets gegenwärtig ist.
Diese Momente der Erneuerung zeigen uns, dass unser Wirken im Einklang mit einer göttlichen Präsenz steht. Der Glaube kann Berge versetzen und das scheinbar Unvorstellbare vollbringen. Diese Erlebnisse festigen nicht nur unsere Hoffnung, sondern laden auch andere ein, auf einer spirituellen Reise zu wachsen.
Die Bedeutung von Wundern für den Glauben der Gläubigen
Wunder spielen eine entscheidende Rolle im Glaubensleben vieler Menschen. Sie fördern den Glauben und verleihen den Gläubigen Zuversicht, dass heiliges Wirken in der Welt um sie herum stattfindet. Diese naturwunder sind nicht nur beeindruckende Ereignisse, sondern auch Beweise für das göttliche Eingreifen, das seit jeher die Herzen der Menschen berührt. Die Heilung von Krankheiten beispielsweise zeigt, wie Glauben verwandelt und Hoffnung zurückgebracht werden kann. Die Berichte über solche Ereignisse verstärken das Vertrauen in eine höhere Macht und stärken die Gemeinschaft der Gläubigen.
Die Anzeichen von Macht manifestieren sich oft in erstaunlichen Heilungen, die als direkte Antwort auf Gebet und Glaubensakte gedeutet werden. Diese Erlebnisse schaffen ein Gefühl der Verbundenheit und inspirieren sowohl Individuen als auch Gruppen, ihre spirituellen Praktiken und Überzeugungen zu vertiefen. Viele finden in solchen Erlebnissen Trost und Bestärkung ihres Glaubens, was die individuelle sowie kollektive Spiritualität bereichert und vertieft. Das Wirken in den Herzen der Menschen führt häufig zu einer tieferen Verbindung zur Transzendenz, die über das Sichtbare hinausgeht.
Wunder in der Bibel: Beispiele und ihre Lehren
Die Geschichten von Heilungen und Naturwundern zeigen, dass der Glaube an eine höhere Kraft eine transformative Wirkung auf das Leben der Menschen hat. Ein bemerkenswertes Beispiel ist die Heilung des Blinden in Jericho, wo ein kurzer Akt des Glaubens zu einer sofortigen Wiederherstellung des Sehens führte.
Ein weiteres herausragendes Ereignis ist die Teilung des Roten Meeres. Das Vertrauen des Volkes in das Wirken einer höheren Macht ermöglichte diesen bemerkenswerten Moment, der den Ausgang aus der Sklaverei symbolisierte und den Glauben für kommende Generationen stärken sollte.
Die Speisung der Fünftausend, bei der mit wenigen Broten und Fischen eine große Menschmenge ernährt wurde, verdeutlicht die Idee, dass auch das Unmögliche durch Glauben und Zusammenhalt erreicht werden kann. Diese Erzählung lehrt, dass wir oft mehr erhalten, als wir ursprünglich annehmen.
Ein weiteres Beispiel ist die Heilung des Gelähmten durch den Glauben seiner Freunde. Diese Geschichte erinnert uns daran, dass unser Glaube auch das Leben anderer beeinflussen kann und dass gemeinschaftliches Handeln oft zu außergewöhnlichen Ergebnissen führt.
Die Wunder in der Natur, wie das stille Wasser während eines Sturms, zeigen die Autorität über die Elemente. Diese Erzählungen lehren uns Vertrauen und Gelassenheit in schwierigen Zeiten, während sie den Glauben stärken.
Die Auferweckung des Lazarus verdeutlicht die Kraft des Glaubens über den Tod hinaus. Diese Geschichte inspiriert viele, an die Möglichkeit von Heilung und Wiederherstellung zu glauben, egal wie hoffnungslos die Situation erscheinen mag.
Die Wunder der Umwandlungen, wie die Verwandlung von Wasser in Wein, zeigen, dass auch alltägliche Dinge besondere Bedeutung und Schönheit haben können. Diese Ereignisse ermutigen dazu, Vertrauen in den Prozess des Lebens zu haben.
Schließlich lehren diese Erzählungen, dass die Kraft des Glaubens nicht nur in der Vergangenheit erlebbar war, sondern auch in der Gegenwart wirkt. Die Botschaften dieser Geschichten sind zeitlos und ermutigen dazu, ein Leben voller Glaube und Offenheit zu führen.
Wunder in der heutigen Zeit: Erfahrungen von Gläubigen
Viele Menschen berichten von außergewöhnlichen Erlebnissen, die ihr Verständnis von Glauben und Hoffnung tief geprägt haben. Diese Geschichten zeigen, wie das Unmögliche für diejenigen, die fest glauben, wahr werden kann.
Im Alltag finden sich oft kleine Naturwunder, die den Gläubigen als Zeichen ermutigen. Solche Erlebnisse lassen die Herzen aufblühen und stärken das Vertrauen, dass höhere Mächte im Spiel sind.
Eine Frau beschreibt, wie sie nach einer schweren Krankheit durch das Gebet ihrer Lieben geheilt wurde. Die Ärzte hatten keine Hoffnung mehr gegeben, doch durch ihren unerschütterlichen Glauben erlebte sie eine vollständige Genesung.
Ein junger Mann erzählt von seinem finanziellen Ruin, der durch unerwartete Unterstützung von Fremden abgewendet werden konnte. Diese Hilfe kam genau in dem Moment, als er sie am dringendsten benötigte. Er sieht darin ein klares Zeichen für die Wirksamkeit des Glaubens.
Diese bemerkenswerten Geschichten begegnen uns nicht nur in persönlichen Interviews, sondern finden auch Platz in sozialen Netzwerken, wo Gläubige ihre Erlebnisse teilen. Jedes Zeugnis bekräftigt den Glauben und inspiriert andere, das Unmögliche anzustreben.
In der Gemeinschaft entstehen tiefere Verbindungen, wenn Menschen ihre Erfahrungen austauschen. Dies führt zu einer Atmosphäre der Unterstützung, in der jeder ermutigt wird, die eigenen Überzeugungen zu vertreten und eigene Wunder zu erwarten.
Die Berichte über solche Erfahrungen zeigen, dass der Glaube nicht nur ein individuelles Erlebnis ist, sondern auch das Potenzial hat, andere zu berühren und sie in ihrer eigenen Lebenssituation zu stärken.
Wissenschaftliche Perspektiven auf heilende Ereignisse
In der heutigen Forschungslandschaft gibt es verschiedene Ansätze zur Analyse von Heilung und spektakulären naturwunder. Wissenschaftler untersuchen, wie individuelle Glaubenshaltungen durch psychosomatische Mechanismen körperliche Heilung fördern können.
Ein häufiges Argument gegen die Existenz übernatürlicher Heilungen ist die Behauptung, dass alles um uns herum vor dem Hintergrund natürlicher Gesetze erklärt werden kann. Studien zeigen jedoch, dass unkonventionelle Heilungen immer wieder dokumentiert wurden und viele Menschen betroffen sind.
Die Psychologie spielt eine entscheidende Rolle in diesem Prozess.
Glaube kann das Wohlbefinden beeinflussen und die Genesung beschleunigen.
Manchmal können als unmöglich geltende Heilungen geschehen, die nicht mit rein physikalischen Erklärungen gefasst werden können.
Unter Forschungsthemen befinden sich unter anderem die Wechselwirkungen zwischen Mind-Body-Techniken und dem Glauben an die Heilkräfte. Die evidenzbasierte Medizin hat in diesem Bereich einen enormen Fortschritt gemacht.
Es gibt Patienten, die durch Glaubensgemeinschaften und deren Unterstützung überraschende Verbesserungen erfahren haben. Betroffene berichten oft von einer neuen Einstellung zum Leben und einer tiefen inneren Ruhe.
Medizinische Erfahrungen allein reichen nicht aus, um alle Phänomene zu erklären.
Es ist wichtig, die spirituelle Dimension zu berücksichtigen.
Die Neugierde auf naturwunder bleibt ein Antrieb für die menschliche Forschung. Rückblicke auf historische Ereignisse zeigen oft, wie der Glaube Menschen zu außergewöhnlichen Leistungen inspiriert hat.
Für weitere Informationen über inspirierende Geschichten von Glaubensheilungen und mehr besuchen Sie https://bibel-versede.com/.
Fragen und Antworten:
Was sind biblische Wunder und welche Bedeutung haben sie im Glauben der Menschen?
Biblische Wunder sind außergewöhnliche Ereignisse, die in den heiligen Schriften, insbesondere der Bibel, beschrieben werden. Diese Wunder werden oft als Zeichen der Macht Gottes angesehen, die die Gläubigen ansprechen und ihre Überzeugungen stärken sollen. Sie können dazu dienen, die Herrschaft Gottes über die Natur und das Leben der Menschen zu verdeutlichen. Viele Gläubige betrachten diese Wunder als Bestätigungen der göttlichen Präsenz und der Unterstützung in ihrem täglichen Leben.
Wie werden Wunder in der heutigen Zeit wahrgenommen?
In der heutigen Zeit reicht das Spektrum der Wahrnehmung von Wundern von skeptischen bis hin zu gläubigen Ansichten. Manche Menschen glauben, dass Wunder auch heute noch geschehen, sei es in Form von Heilungen oder unerklärlichen Ereignissen, die sie als göttliches Eingreifen verstehen. Andere dagegen sehen solche Begebenheiten als Zufälle oder psychologische Phänomene. Die Diskussion über die Bedeutung von Wundern bleibt somit lebendig und oft kontrovers, sowohl innerhalb theologischer Kreise als auch in der breiteren Gesellschaft.
Welche Rolle spielen Wunder im Alten Testament im Vergleich zu denen im Neuen Testament?
Im Alten Testament finden sich zahlreiche Wunder, die oft mit dem Handeln Gottes in der Geschichte des Volkes Israel verbunden sind, wie etwa die Teilung des Roten Meeres oder die Manna-Wunder in der Wüste. Im Neuen Testament hingegen sind die Wunder oft Teil von Jesu Dienst, darunter Heilungen, Auferweckungen und Naturwunder. Diese Wunder sollten nicht nur seine göttliche Autorität bezeugen, sondern auch die Botschaft des Heils verkörpern, die für alle Menschen offensteht. Der Unterschied liegt also im Kontext und der Absicht der jeweiligen Wunder.
Wie können Gläubige heute durch das Studium biblischer Wunder inspiriert werden?
Das Studium biblischer Wunder kann Gläubigen einen tieferen Einblick in die Beziehung zwischen Gott und den Menschen geben. Diese Wunder können als Vorbilder dienen, die zeigen, wie Glaube und Vertrauen in Gott auch in schwierigen Zeiten zu außergewöhnlichen Ergebnissen führen können. Viele Gläubige berichten von ermutigenden Erfahrungen, die sie aus den Geschichten über Wunder in der Bibel ziehen und die sie in ihrem eigenen Leben anwenden. Diese Inspiration kann zu einer stärkeren Bindung an den Glauben führen und das Vertrauen in göttliche Hilfe stärken.