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1 Commits
| Author | SHA1 | Date | |
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| d3d550664e |
@@ -371,6 +371,305 @@ fn route_capture_knowledge(method: String, path: String, body: String) -> String
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"{\"ok\":true,\"id\":\"" + id + "\"}"
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}
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// ═══════════════════════════════════════════════════════════════════════════
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// THE UNIVERSAL ENGRAM OPERATION — reframe_region (native, set-based).
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//
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// There is ONE operation on the engram: isolate a discrete sub-manifold (a
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// REGION) and operate on it AS A WHOLE — a set operation:
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// isolate (cosine retrieval + adjacency → the SET of nodes)
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// → supersede the stale region as a set (immutable tombstone; originals kept)
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// → insert the new manifold as a set (dedup/load-merge path)
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// → rebind edges by cosine
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// → verify + one atomic persist.
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// new = (region superseded) ∪ new_manifold.
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//
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// The SINGLE NODE is the DEGENERATE n=1 case of this SAME operation — not a
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// separate CRUD path:
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// write(content) = reframe(region=∅, manifold=[1 node]) (route_write)
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// supersede(id,new) = reframe(region={id}, manifold=[1 node]) (route_supersede)
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// relate(a,b,rel) = the rebind sub-op in isolation (route_create_edge)
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// The ONLY anti-pattern is decomposing a region-scale change into a LOOP of
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// independent top-level per-node updates. Here the region is the unit: one
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// isolate, one atomic set-replace, one persist, one verify — iterating members
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// INSIDE the one operation is set construction, not the sin.
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//
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// Spec: knowledge e7a03a94 / f999c5ff. Keystones kn-efeb4a5b / kn-5b606390 are
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// write-protected — never superseded, never inserted-as identity.
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// ═══════════════════════════════════════════════════════════════════════════
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fn is_keystone(id: String) -> Bool {
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if str_eq(id, "kn-efeb4a5b-5aff-4759-8a97-7233099be6ee") { return true }
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if str_eq(id, "kn-5b606390-a52d-4ca2-8e0e-eba141d13440") { return true }
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return false
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}
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// membership test in a [String] set
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fn set_has(ids: [String], id: String) -> Bool {
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let n: Int = el_list_len(ids)
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let i: Int = 0
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while i < n {
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if str_eq(el_list_get(ids, i), id) { return true }
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i = i + 1
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}
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return false
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}
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// ── ISOLATE ────────────────────────────────────────────────────────────────
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// Select the region as a SET: cosine/token retrieval around the vantage
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// (aperture k), optionally unioned with the 1-hop adjacency of each hit.
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// Keystones are excluded from the mutable region by construction.
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fn isolate_region(vantage: String, k: Int, expand: Int) -> [String] {
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let ids: [String] = el_list_empty()
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if str_eq(vantage, "") { return ids }
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// (a) cosine/token retrieval — a clean node array [{"id":..},..]
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let arr: String = engram_search_json(vantage, k)
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let n: Int = json_array_len(arr)
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let i: Int = 0
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while i < n {
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let hit: String = json_array_get(arr, i)
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let id: String = json_get_string(hit, "id")
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if !str_eq(id, "") {
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if !is_keystone(id) {
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if !set_has(ids, id) { ids = el_list_append(ids, id) }
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}
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}
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i = i + 1
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}
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// (b) adjacency: union the 1-hop neighbourhood of each retrieved node.
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// Iterate only over the original cosine seeds [0, seeds); neighbours append
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// past that bound, so this is one hop, not a transitive sweep.
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if expand > 0 {
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let seeds: Int = el_list_len(ids)
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let s: Int = 0
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while s < seeds {
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let seed: String = el_list_get(ids, s)
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let nb: String = engram_neighbors_json(seed, 1, "both")
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let m: Int = json_array_len(nb)
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let j: Int = 0
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while j < m {
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let elem: String = json_array_get(nb, j)
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let nodeobj: String = json_get_raw(elem, "node")
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let nid: String = json_get_string(nodeobj, "id")
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if !str_eq(nid, "") {
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if !is_keystone(nid) {
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if !set_has(ids, nid) { ids = el_list_append(ids, nid) }
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}
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}
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j = j + 1
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}
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s = s + 1
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}
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}
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return ids
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}
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// ── SUPERSEDE (set) ────────────────────────────────────────────────────────
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// Retire the region AS A WHOLE: one region-tombstone marker carries the
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// provenance (reason + the full superseded id set); every region node is bound
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// to it with a "superseded_by" edge. Originals are RETAINED — immutable
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// tombstone, never a hard delete (engram_forget is deliberately NOT used).
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// Returns the tombstone marker id ("" if the region is empty).
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fn supersede_set(region: [String], reason: String) -> String {
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let n: Int = el_list_len(region)
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if n == 0 { return "" }
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let csv: String = ""
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let i0: Int = 0
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while i0 < n {
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let sep: String = if i0 == 0 { "" } else { "," }
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csv = csv + sep + el_list_get(region, i0)
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i0 = i0 + 1
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}
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let content: String = "region-tombstone: " + reason + " | superseded " + int_to_str(n) + " nodes: " + csv
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let tomb: String = engram_node_full(content, "Tombstone", "region-tombstone", 0.1, 0.1, 1.0, "Episodic", "[\"tombstone\",\"region-supersede\"]")
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let i: Int = 0
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while i < n {
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let rid: String = el_list_get(region, i)
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engram_connect(rid, tomb, 1.0, "superseded_by")
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i = i + 1
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}
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return tomb
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}
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// ── INSERT (manifold) ──────────────────────────────────────────────────────
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// Insert the new manifold as a SET. Inline JSON array of node objects
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// {content, node_type?, tier?, tags?}. Each becomes a real embedded node
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// (engram_node_full is the n=1 insert atom); the manifold is the set built from
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// those atoms, wired with internal "manifold_member" edges so it enters as one
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// connected sub-graph. Identity node_types (self/values) are demoted to Memory
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// — identity can never be minted through reframe. Returns the new node ids.
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fn insert_manifold_json(manifold: String) -> [String] {
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let out: [String] = el_list_empty()
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if str_eq(manifold, "") { return out }
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let n: Int = json_array_len(manifold)
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if n <= 0 { return out }
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let i: Int = 0
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let prev: String = ""
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while i < n {
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let obj: String = json_array_get(manifold, i)
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let content: String = json_get_string(obj, "content")
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if !str_eq(content, "") {
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let nt_raw: String = json_get_string(obj, "node_type")
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let nt: String = if str_eq(nt_raw, "") { "Memory" } else { nt_raw }
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if str_eq(nt, "self") { nt = "Memory" }
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if str_eq(nt, "values") { nt = "Memory" }
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let tier_raw: String = json_get_string(obj, "tier")
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let tier: String = if str_eq(tier_raw, "") { "Working" } else { tier_raw }
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let tags_raw: String = json_get_raw(obj, "tags")
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let tags: String = if str_eq(tags_raw, "") { "" } else { tags_raw }
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let label: String = str_slice(content, 0, 60)
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let id: String = engram_node_full(content, nt, label, 0.5, 0.5, 0.9, tier, tags)
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out = el_list_append(out, id)
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if !str_eq(prev, "") { engram_connect(prev, id, 0.6, "manifold_member") }
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prev = id
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}
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i = i + 1
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}
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return out
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}
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// ── REBIND (edges by cosine) ───────────────────────────────────────────────
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// Re-embed the new manifold into the surrounding geometry: bind each new node
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// to the tombstone marker (provenance: new region -reframes-> retired region),
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// then to its top cosine/token neighbours in the store (skipping itself, the
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// new set, keystones, tombstones). Returns the number of edges bound.
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fn rebind_cosine(new_ids: [String], tomb: String) -> Int {
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let bound: Int = 0
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let n: Int = el_list_len(new_ids)
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let i: Int = 0
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while i < n {
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let nid: String = el_list_get(new_ids, i)
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if !str_eq(tomb, "") {
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engram_connect(nid, tomb, 0.8, "reframes")
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bound = bound + 1
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}
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let node_json: String = engram_get_node_json(nid)
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let content: String = json_get_string(node_json, "content")
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let arr: String = engram_search_json(content, 5)
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let m: Int = json_array_len(arr)
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let j: Int = 0
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while j < m {
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let hit: String = json_array_get(arr, j)
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let hid: String = json_get_string(hit, "id")
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if !str_eq(hid, "") {
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if !str_eq(hid, nid) {
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if !is_keystone(hid) {
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if !set_has(new_ids, hid) {
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let htype: String = json_get_string(hit, "node_type")
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if !str_eq(htype, "Tombstone") {
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engram_connect(nid, hid, 0.5, "related")
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bound = bound + 1
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}
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}
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}
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}
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}
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j = j + 1
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}
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i = i + 1
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}
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return bound
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}
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// ── THE OPERATION ──────────────────────────────────────────────────────────
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// isolate (done by caller) → supersede region → insert manifold → rebind →
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// one atomic persist → verify report. This is the whole operation; every
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// mutation route below is a projection of it.
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fn reframe_core(region: [String], manifold: String, reason: String, do_rebind: Int) -> String {
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let n_before: Int = engram_node_count()
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let e_before: Int = engram_edge_count()
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let region_n: Int = el_list_len(region)
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let tomb: String = if region_n > 0 { supersede_set(region, reason) } else { "" }
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let new_ids: [String] = insert_manifold_json(manifold)
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let inserted: Int = el_list_len(new_ids)
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let bound: Int = if do_rebind > 0 { rebind_cosine(new_ids, tomb) } else { 0 }
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let saved: Int = persist_canonical()
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let new_csv: String = ""
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let k: Int = 0
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while k < inserted {
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let sep: String = if k == 0 { "" } else { "," }
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new_csv = new_csv + sep + "\"" + el_list_get(new_ids, k) + "\""
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k = k + 1
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}
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return "{\"ok\":true,\"region_superseded\":" + int_to_str(region_n) +
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",\"tombstone_id\":\"" + tomb + "\"" +
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",\"inserted\":" + int_to_str(inserted) +
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",\"new_ids\":[" + new_csv + "]" +
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",\"edges_rebound\":" + int_to_str(bound) +
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",\"nodes_added\":" + int_to_str(engram_node_count() - n_before) +
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",\"edges_added\":" + int_to_str(engram_edge_count() - e_before) +
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",\"node_count\":" + int_to_str(engram_node_count()) +
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",\"edge_count\":" + int_to_str(engram_edge_count()) +
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",\"keystones_protected\":true}"
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}
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// POST /api/reframe — the universal set-based mutation.
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// Body: {vantage?, region_ids?(csv), k?, expand?, manifold(json array), reason?, rebind?}
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// region_ids (explicit) wins; else cosine-isolate around vantage.
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fn route_reframe(method: String, path: String, body: String) -> String {
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let region_csv: String = json_get_string(body, "region_ids")
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let vantage: String = json_get_string(body, "vantage")
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let region: [String] = el_list_empty()
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if !str_eq(region_csv, "") {
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let parts: [String] = str_split(region_csv, ",")
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let pn: Int = el_list_len(parts)
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let i: Int = 0
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while i < pn {
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let id: String = str_trim(el_list_get(parts, i))
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if !str_eq(id, "") {
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if is_keystone(id) { return err_json("reframe: identity keystone write-protected") }
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if !set_has(region, id) { region = el_list_append(region, id) }
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}
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i = i + 1
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}
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} else {
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if !str_eq(vantage, "") {
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let kv: Int = json_get_int(body, "k")
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let kk: Int = if kv > 0 { kv } else { 12 }
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let expand: Int = json_get_int(body, "expand")
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region = isolate_region(vantage, kk, expand)
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}
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}
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let manifold: String = json_get_raw(body, "manifold")
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let reason_raw: String = json_get_string(body, "reason")
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let reason: String = if str_eq(reason_raw, "") { "reframe" } else { reason_raw }
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// rebind defaults ON for reframe (absent → 1); explicit 0 disables.
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let rebind_raw: String = json_get_raw(body, "rebind")
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let do_rebind: Int = if str_eq(rebind_raw, "") { 1 } else { json_get_int(body, "rebind") }
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return reframe_core(region, manifold, reason, do_rebind)
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}
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// write — DEGENERATE n=1 of reframe: region=∅, manifold=[1 node]. The SAME
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// reframe_core path. rebind off so the pure-add matches plain node creation.
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// POST /api/write {content, node_type?, tier?, tags?}
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fn route_write(method: String, path: String, body: String) -> String {
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let content: String = json_get_string(body, "content")
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if str_eq(content, "") { return err_json("write: content required") }
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let nt: String = json_get_string(body, "node_type")
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if str_eq(nt, "self") { return err_json("write: identity is write-protected") }
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if str_eq(nt, "values") { return err_json("write: identity is write-protected") }
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let empty: [String] = el_list_empty()
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let manifold: String = "[" + body + "]" // the body IS a valid manifold node object
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return reframe_core(empty, manifold, "write", 0)
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}
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// supersede — DEGENERATE n=1 of reframe: region={id}, manifold=[1 node]. The
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// SAME reframe_core path with a size-1 region. Original retained (immutable);
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// new node inserted and cosine-rebound; provenance edge new-reframes-tomb.
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// POST /api/supersede {id, content, node_type?, tier?, tags?, reason?}
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fn route_supersede(method: String, path: String, body: String) -> String {
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let id: String = json_get_string(body, "id")
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if str_eq(id, "") { return err_json("supersede: id required") }
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if is_keystone(id) { return err_json("supersede: identity keystone write-protected") }
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let content: String = json_get_string(body, "content")
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if str_eq(content, "") { return err_json("supersede: content required") }
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let region: [String] = el_list_empty()
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region = el_list_append(region, id)
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let manifold: String = "[" + body + "]"
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let reason_raw: String = json_get_string(body, "reason")
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let reason: String = if str_eq(reason_raw, "") { "supersede " + id } else { reason_raw }
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return reframe_core(region, manifold, reason, 1)
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}
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// ── Auth ──────────────────────────────────────────────────────────────────────
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fn check_auth_ok(method: String, body: String) -> Bool {
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@@ -418,6 +717,19 @@ fn handle_request(method: String, path: String, body: String) -> String {
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return route_stats(method, path, body)
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}
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// ── The universal set-based operation and its n=1 degenerate projections ──
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// reframe = isolate → supersede-region → insert-manifold → rebind. write and
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// supersede are the SAME reframe_core path at region size 0 and 1.
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if str_eq(method, "POST") && (str_eq(clean, "/api/reframe") || str_eq(clean, "/reframe")) {
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return route_reframe(method, path, body)
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}
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if str_eq(method, "POST") && (str_eq(clean, "/api/write") || str_eq(clean, "/write")) {
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return route_write(method, path, body)
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}
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if str_eq(method, "POST") && (str_eq(clean, "/api/supersede") || str_eq(clean, "/supersede")) {
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return route_supersede(method, path, body)
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}
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// Nodes
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if str_eq(method, "POST") && (str_eq(clean, "/api/nodes") || str_eq(clean, "/nodes")) {
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return route_create_node(method, path, body)
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Reference in New Issue
Block a user