meshai/work/dashboard-frontend/node_modules/zrender/lib/svg/patch.js
malice 2c46c9104d
feat(region-routing): unified per-family routing cards + region-scoped family→channel routing (#87)
* feat(region-routing): P1 tagging + region_routes primitive + read/write API + preview launcher

- config.py: add Coverage.region_tagging (bool=False); add RegionRouteMatrix
  dataclass (enabled, cells) above NotificationsConfig; add region_routes field
  to NotificationsConfig; add explicit hydration branch for region_routes in
  _dict_to_dataclass mirroring destinations pattern.

- coverage_area.py: add MonitoringArea.name (str|None=None, frozen); update
  areas_from_config to preserve name; refactor inline geom extraction from
  classify_event_areas into shared _event_geom_json helper; add
  matching_area_names(geom_json, areas)->list[str] (additive, all named
  matches, config-order, deduped; gate unchanged); add event_region_names
  convenience wrapper.

- coverage_filter.py: add region_tagging ctor kwarg; stamp event.region/
  regions before the gate when region_tagging=True and areas non-empty and
  not event.regions (never clobbers satpass preset).

- pipeline/__init__.py: wire region_tagging into CoverageFilter construction.

- notification_routes.py: add GET /notifications/regions (named coverage area
  names, config-order, deduped); GET /notifications/region-routing (matrix as
  JSON); POST /notifications/region-routing (explicit RMW — only region_routes
  changes, toggles/rules/destinations survive).

- scripts/preview_dashboard.py: mesh-free launcher — dashboard API only, no
  mesh connector, no broadcast loop; vite runs separately.

All 87 coverage tests pass; 300 total pass; 6 pre-existing failures unchanged
(adapter config count mismatch + MeshCore EventType.NEW_CONTACT).

* feat(region-routing): manual region x family matrix editor page

Adds RegionRoutingMatrix.tsx — a plain editor over the region_routes
config primitive. Rows = families (via useFamilies()), cols = regions
(from GET /api/notifications/regions). Each cell exposes MT channel
(ChannelPicker single + includeDisabled), MC channel name (text input),
min_severity select (routine/priority/critical/immediate), and an enabled
checkbox. Only cells where MT or MC is set are included in the sparse
POST payload. Master enable toggle maps to top-level enabled. MT budget
guard warns when more than 7 distinct MT indices are in use. Sticky
family column; horizontal scroll for wide region sets.

Registers route /region-routing in App.tsx and adds "Region Routing"
nav entry (Map icon) under the Meshtastic section in Layout.tsx,
immediately after Routing.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* fix(region-routing): regions endpoint reads saved (disk) coverage so routing columns are dynamic without a bot restart; preview reloads config after writes

* feat(routing): unify MT/MC routing into per-family cards; region routing as an in-card expand; remove rules/destinations UI + standalone page

* refactor(routing): move Meshtastic Routing from /notifications to /meshtastic/routing (mirror /meshcore/routing); redirect legacy path

* feat(region-routing): dispatcher honors region_routes matrix (authoritative-on-match, per-region cooldown, per-channel dedup); non-matrix path unchanged

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(region-routing): matrix dedup key must match boot-restore 2-tuple form (prevents restart re-broadcast flood); regression test

---------

Co-authored-by: Matt Johnson <mj@k7zvx.com>
Co-authored-by: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-07-07 16:52:03 -06:00

253 lines
8.2 KiB
JavaScript

import { isArray, isObject } from '../core/util.js';
import { createElement, createVNode, XMLNS, XML_NAMESPACE, XLINKNS } from './core.js';
import * as api from './domapi.js';
var colonChar = 58;
var xChar = 120;
var emptyNode = createVNode('', '');
function isUndef(s) {
return s === undefined;
}
function isDef(s) {
return s !== undefined;
}
function createKeyToOldIdx(children, beginIdx, endIdx) {
var map = {};
for (var i = beginIdx; i <= endIdx; ++i) {
var key = children[i].key;
if (key !== undefined) {
if (process.env.NODE_ENV !== 'production') {
if (map[key] != null) {
console.error("Duplicate key " + key);
}
}
map[key] = i;
}
}
return map;
}
function sameVnode(vnode1, vnode2) {
var isSameKey = vnode1.key === vnode2.key;
var isSameTag = vnode1.tag === vnode2.tag;
return isSameTag && isSameKey;
}
function createElm(vnode) {
var i;
var children = vnode.children;
var tag = vnode.tag;
if (isDef(tag)) {
var elm = (vnode.elm = createElement(tag));
updateAttrs(emptyNode, vnode);
if (isArray(children)) {
for (i = 0; i < children.length; ++i) {
var ch = children[i];
if (ch != null) {
api.appendChild(elm, createElm(ch));
}
}
}
else if (isDef(vnode.text) && !isObject(vnode.text)) {
api.appendChild(elm, api.createTextNode(vnode.text));
}
}
else {
vnode.elm = api.createTextNode(vnode.text);
}
return vnode.elm;
}
function addVnodes(parentElm, before, vnodes, startIdx, endIdx) {
for (; startIdx <= endIdx; ++startIdx) {
var ch = vnodes[startIdx];
if (ch != null) {
api.insertBefore(parentElm, createElm(ch), before);
}
}
}
function removeVnodes(parentElm, vnodes, startIdx, endIdx) {
for (; startIdx <= endIdx; ++startIdx) {
var ch = vnodes[startIdx];
if (ch != null) {
if (isDef(ch.tag)) {
var parent_1 = api.parentNode(ch.elm);
api.removeChild(parent_1, ch.elm);
}
else {
api.removeChild(parentElm, ch.elm);
}
}
}
}
export function updateAttrs(oldVnode, vnode) {
var key;
var elm = vnode.elm;
var oldAttrs = oldVnode && oldVnode.attrs || {};
var attrs = vnode.attrs || {};
if (oldAttrs === attrs) {
return;
}
for (key in attrs) {
var cur = attrs[key];
var old = oldAttrs[key];
if (old !== cur) {
if (cur === true) {
elm.setAttribute(key, '');
}
else if (cur === false) {
elm.removeAttribute(key);
}
else {
if (key === 'style') {
elm.style.cssText = cur;
}
else if (key.charCodeAt(0) !== xChar) {
elm.setAttribute(key, cur);
}
else if (key === 'xmlns:xlink' || key === 'xmlns') {
elm.setAttributeNS(XMLNS, key, cur);
}
else if (key.charCodeAt(3) === colonChar) {
elm.setAttributeNS(XML_NAMESPACE, key, cur);
}
else if (key.charCodeAt(5) === colonChar) {
elm.setAttributeNS(XLINKNS, key, cur);
}
else {
elm.setAttribute(key, cur);
}
}
}
}
for (key in oldAttrs) {
if (!(key in attrs)) {
elm.removeAttribute(key);
}
}
}
function updateChildren(parentElm, oldCh, newCh) {
var oldStartIdx = 0;
var newStartIdx = 0;
var oldEndIdx = oldCh.length - 1;
var oldStartVnode = oldCh[0];
var oldEndVnode = oldCh[oldEndIdx];
var newEndIdx = newCh.length - 1;
var newStartVnode = newCh[0];
var newEndVnode = newCh[newEndIdx];
var oldKeyToIdx;
var idxInOld;
var elmToMove;
var before;
while (oldStartIdx <= oldEndIdx && newStartIdx <= newEndIdx) {
if (oldStartVnode == null) {
oldStartVnode = oldCh[++oldStartIdx];
}
else if (oldEndVnode == null) {
oldEndVnode = oldCh[--oldEndIdx];
}
else if (newStartVnode == null) {
newStartVnode = newCh[++newStartIdx];
}
else if (newEndVnode == null) {
newEndVnode = newCh[--newEndIdx];
}
else if (sameVnode(oldStartVnode, newStartVnode)) {
patchVnode(oldStartVnode, newStartVnode);
oldStartVnode = oldCh[++oldStartIdx];
newStartVnode = newCh[++newStartIdx];
}
else if (sameVnode(oldEndVnode, newEndVnode)) {
patchVnode(oldEndVnode, newEndVnode);
oldEndVnode = oldCh[--oldEndIdx];
newEndVnode = newCh[--newEndIdx];
}
else if (sameVnode(oldStartVnode, newEndVnode)) {
patchVnode(oldStartVnode, newEndVnode);
api.insertBefore(parentElm, oldStartVnode.elm, api.nextSibling(oldEndVnode.elm));
oldStartVnode = oldCh[++oldStartIdx];
newEndVnode = newCh[--newEndIdx];
}
else if (sameVnode(oldEndVnode, newStartVnode)) {
patchVnode(oldEndVnode, newStartVnode);
api.insertBefore(parentElm, oldEndVnode.elm, oldStartVnode.elm);
oldEndVnode = oldCh[--oldEndIdx];
newStartVnode = newCh[++newStartIdx];
}
else {
if (isUndef(oldKeyToIdx)) {
oldKeyToIdx = createKeyToOldIdx(oldCh, oldStartIdx, oldEndIdx);
}
idxInOld = oldKeyToIdx[newStartVnode.key];
if (isUndef(idxInOld)) {
api.insertBefore(parentElm, createElm(newStartVnode), oldStartVnode.elm);
}
else {
elmToMove = oldCh[idxInOld];
if (elmToMove.tag !== newStartVnode.tag) {
api.insertBefore(parentElm, createElm(newStartVnode), oldStartVnode.elm);
}
else {
patchVnode(elmToMove, newStartVnode);
oldCh[idxInOld] = undefined;
api.insertBefore(parentElm, elmToMove.elm, oldStartVnode.elm);
}
}
newStartVnode = newCh[++newStartIdx];
}
}
if (oldStartIdx <= oldEndIdx || newStartIdx <= newEndIdx) {
if (oldStartIdx > oldEndIdx) {
before = newCh[newEndIdx + 1] == null ? null : newCh[newEndIdx + 1].elm;
addVnodes(parentElm, before, newCh, newStartIdx, newEndIdx);
}
else {
removeVnodes(parentElm, oldCh, oldStartIdx, oldEndIdx);
}
}
}
function patchVnode(oldVnode, vnode) {
var elm = (vnode.elm = oldVnode.elm);
var oldCh = oldVnode.children;
var ch = vnode.children;
if (oldVnode === vnode) {
return;
}
updateAttrs(oldVnode, vnode);
if (isUndef(vnode.text)) {
if (isDef(oldCh) && isDef(ch)) {
if (oldCh !== ch) {
updateChildren(elm, oldCh, ch);
}
}
else if (isDef(ch)) {
if (isDef(oldVnode.text)) {
api.setTextContent(elm, '');
}
addVnodes(elm, null, ch, 0, ch.length - 1);
}
else if (isDef(oldCh)) {
removeVnodes(elm, oldCh, 0, oldCh.length - 1);
}
else if (isDef(oldVnode.text)) {
api.setTextContent(elm, '');
}
}
else if (oldVnode.text !== vnode.text) {
if (isDef(oldCh)) {
removeVnodes(elm, oldCh, 0, oldCh.length - 1);
}
api.setTextContent(elm, vnode.text);
}
}
export default function patch(oldVnode, vnode) {
if (sameVnode(oldVnode, vnode)) {
patchVnode(oldVnode, vnode);
}
else {
var elm = oldVnode.elm;
var parent_2 = api.parentNode(elm);
createElm(vnode);
if (parent_2 !== null) {
api.insertBefore(parent_2, vnode.elm, api.nextSibling(elm));
removeVnodes(parent_2, [oldVnode], 0, 0);
}
}
return vnode;
}