GLOSSARY
Systematized body of Gativus knowledge.
ACTV
Active. Connector status after successful handshake. UNON and LOCN fields are filled with specific partner addresses. Communication works.
AGMT
AGreeMenT. Intersection of AVEC₀ of two ANODs. Computed per axis: min(coordinate), per RULE matrix: bitwise AND. Stored in G-relations of both ANODs. Allows inter-group SYGN without per-request approval.
AIOT
Activity IOTa. Type of A-component. Branching point (conditional jump). Evaluates condition and directs execution to one of APAKs. Visualized as yellow hexagon.
ANOD
Administrative NODe — administrative node in Gativus network. Part of infrastructure layer.
APAK
Activity PAcKage. Type of A-component. Sequential code block (function body). Performs computations and writes results to V-components. Visualized as pink rectangle.
Aufheben
Sublation: negation, preservation, and elevation of a contradiction.
AVEC
Asset VEctor. Vector of resources and authorities. Propagates from GLAI down the delegation tree with splitting. Lower nodes can add their own resources and dimensions. Main function — maintaining network consistency.
b-vector
A vector characterizing the displacement on MAP3.
biological contour
The closed circuit of the two lowest transformations, GTRU and GTRM: the zygote unfolds into a cell, cells into an organism, and the organism folds back into a zygote. Closes independently of the subjective contour — a plant has no subjective contour and still closes this one. MOGE v338.
BLOM
Behavioral LOM — composite behavioral structure. Meaningful chain of OPRNs.
CNN1
First convolutional network. Object-level convolution.
CNN2
Second convolutional network. Semiotic-level convolution.
CNN3
Third convolutional network. Axiological-level convolution.
CNNM
Convolution operator of the organismic level GTRM: folds TRLU into a cell kind (upward) and, unfolding, issues a cell a seed prompt MTVU rather than assembling a body (downward). Works by trained weights NDM1.
CNNU
Convolution operator of the cellular level GTRU: unfolds a gene into an executable program (downward) and folds programs into gene-names (upward) — almost a compiler. Works by trained weights NDU1.
Connector
A data structure inside an NDDI component describing one connection. 128 bits: partner UNON (64 bits), partner LOCN (32 bits), CONT type (32 bits). Status determined by UNON value: zero — PEND, non-zero — ACTV.
CONT
CONnector Type. Connector type, 32 bits. Defines compatibility: each connector knows its own type and complementary type.
Critical period
A temporary window of active morphogenesis. Closes when MOVE is exhausted, by external command, or by timeout. After closure, neurogenesis stops; unresolved PEND can be resolved through operational plasticity.
CRL
Certificate Revocation List. List of compromised UNONs. Distributed via LRAI across the jurisdiction. Blocks requests from compromised keys at the immune check stage.
D-section
See LOAI.
d-vector
The vector of the cellular transformation GTRU: a switch of the configuration of gene activity at the same vocabulary — which genes are switched on, not their alteration. Isomorphic in role to the b-, k-, w-vectors of GTR1–GTR3.
DOM
DOMain — an information space with a specific ontology, arising within a GTR.
DOM0
DOMain 0 — description space. Compact static vectors (MOVE) defining cell structure and position.
DOM1
DOMain 1 — working cell space. Living cells as active dynamic processes.
DOM2
DOMain 2 — multicellular structure space. Extends DOM1 with spatial coordinates and intercellular connections.
DOM3
DOMain 3 — spatial map level. Representation of external 3D space built from L-components.
DOM4
DOMain 4 — object level. Arises from DOM3 via convolution. Contains R-components (recognized objects).
DOM5
DOMain 5 — behavioral level. Arises from DOM4 via splice. Contains OPRNs and BLOMs. First level with temporal structure (TRL5).
DOM6
DOMain 6 — symbol map. Arises from DOM5 via convolution. Unified map of symbols.
DOM7
DOMain 7 — narrative map. Arises from DOM6 via splice. Contains KLEN triplets organized into narratives.
DOM8
DOMain 8 — concept map. Arises from DOM7 via convolution. Contains Concepts (Begriff).
DOM9
DOMain 9 — contradiction map. Arises from DOM8 via splice. Contains WILL triplets (contradictions). Source of all movement of will.
DOMA
Evolutionary Level A (10). Axiological level. Corresponds to the second half of GTR3 (splice). Contains MAP9 (contradictions) with W-components, WILL, WLOM, TRL9. The 'willing I' (OPN9) emerges here. Personality as TRL9.
DOMB
Evolutionary Level B (11). Collective concept level (DOMC). Emergent domain. Intersection of individual MAP8 of group members. Provides C_ought (how quality should be) to individuals. Balanced information flow.
DOMC
DOMain Concepts — shared concept domain (GTR3). Intersection of many MAP8s. Cultural transmission of concepts.
DOMD
Evolutionary Level D (13). Meta-informational level (DOMZ). The seed of the spiritual cycle. Located in the meta-informational plane above the blue plane. Unfolds via RTR_Z into DOM9 of each mature subject. Functional isomorphism with DOM0.
DOME
DOMain Events — collective behavioral domain (GTR1). Emergent coordination patterns. Bottom-up.
DOMN
DOMain Narratives — shared narrative domain (GTR2). Intersection of TRL7s and MAP7s. Balanced consensus.
DOMS
DOMain Symbols — shared symbol space (GTR2). Intersection of many MAP6s. Strongly top-down.
DOMW
DOMain Will — collective will domain (GTR3). Intersection of many DOM9s. Engine of historical development.
G-section
Security section inside ANOD. RULE matrices, AVEC quotas, audit. The organ's immune system. Validates all requests for neurogenesis and synaptogenesis.
GANN
Global Alias Node Name. Pseudonym component of UNON (32 bits). Provides privacy: node is identifiable in the network (CRL works) but real identity is not revealed to counterparties.
GATE
GATivus Edge device — physical hardware platform. Hosts NDDI nodes.
GATN
Global Asset Type Name. Named component of UNON (32 bits). Provides full transparency. Used for corporations, registries, regulated markets. Also — the format of a digital asset in Gativus.
GATR
Gativus Transformation. Two-step pattern: convolution + splice.
GERM
Gativus Embryonic Resource Module. The seed of Gativus. A self-sufficient module containing MOVE (morphological plan) and OPNG (operational network of genesis). Placing GERM in a node with sufficient AVEC triggers germination.
Germination
The process of autonomous germination of GERM. Includes phases: MOVE parsing, neurogenesis (NRGN), deterministic synaptogenesis (SYGD), autonomous synaptogenesis (SYGA), maturation, verification, transformation OPNG→OPN. Analogy of a seed germinating in soil.
GLAI
Global Asset Issuer. The root registrar of the network, GATE with name 0xFFFFFFFF. The Gativus uterus: provides namespace and basic AVEC, but does not contain MOVE and does not manage germination.
GORP
Gativus Object Routing Protocol. Three-level routing: G1 (inside GATE, fast), G2 (local network, Ethernet), G3 (global network, IPv6).
GTR#
Gativus TRansformation. A single transformation applied three times. Three steps: convolution (transition to a new space), dynamic operator (b/P/W-vector inside the space), splice (filling the space). GTR1: input DOM0 → output MAP2. GTR2: input MAP3 → output MAP6. GTR3: input MAP8 → output MAPA. All three are isomorphic — differing only in the data source.
GTR0
Gativus Transformation 0 — the fully material transformation: connects DOM0 (description space), DOM1 (working cell space), and DOM2 (multicellular structure space).
GTR1
Gativus Transformation 1 — first information transformation: connects DOM3 (spatial map), DOM4 (object map), and DOM5 (behavioral map).
GTR2
Gativus Transformation 2 — second information transformation: connects DOM6 (symbol map) and DOM7 (narrative map). Introduces bidirectionality (imagination).
GTR3
Gativus Transformation 3 — third information transformation: connects DOM8 (concept map) and DOM9 (contradiction map). Introduces axiology, will, personality.
GTR4
Gativus TRansformation 4. Reserved for future extensions of the architecture. Currently not defined. Possible direction: meta-cognitive or transpersonal levels beyond individual subjectivity.
GTRM
The organismic transformation (GTR-M, multicellular): builds an organism out of cells. Base MPM0 = TRLU (the aggregate of GTRU); first-cascade unit — the cell kind (MPM1); second cascade — cell splice (MPM2); third cascade — the scheme of the organism, a chain of m-vector differentiations (MPM3). The upper of the two transformations the zeroth level splits into in MOGE v338.
GTRU
The cellular transformation (GTR-U, unicellular): builds a cell out of programs. Base MPU0 — GATE primitives; first-cascade unit — the gene (MPU1); second cascade — gene splice (MPU2); third cascade — chain of d-vector switches (MPU3). One of the two transformations the zeroth level (GTR0) splits into in MOGE v338, together with GTRM.
k-vector
Semantic distance between narrative states in MP23. Its content is the need for symbolic completeness. For example, an unsolved problem is a k-vector between a condition and an answer.
KLEN
Knowledge entity. Basic unit of DOM7. Triplet: symbol1—P-vector—symbol2.
KLOM
Narrative chain of KLEN units in TRL8.
L-component
The base information unit of the MP10 spatial map. It represents a single coordinate point in space containing status attributes (free, surface, boundary, gateway) and connection vectors to neighboring points.
LOAI
Local Asset Issuer. D-section of the ANOD node. Stores D-components — object code of node types with their connectors and CONT types. Repository of organ genes.
LOCN
LOCatioN. 32-bit local address of a component or connector inside an NDDI node. Fixed forever for critical components with external connectors.
LOMN
Local Morphogenesis Node. M-section of the ANOD node. Contains a fragment of MOVE for a specific organ, coordinates neurogenesis and synaptogenesis. The subject of morphogenesis. After germination completes, transforms into OPN.
m-vector
The vector of the organismic transformation GTRM (MOGE v338): a change of a cell's kind, that is, differentiation — a passage from one cell kind to another. Produced by the lower level (GTRU, as a sequence of d-vector switches) and observed by the upper level as a change of coordinate in MPM0. Redefined in v338; the earlier meaning — content of the zygote — is withdrawn and reassigned to ZGOT.
MAP
Object Map. Storage of the state of a given level's space.
MAP1
Spatial map of DOM1. Contains L-components representing elementary points of space with status (Ls/Lb/Lg). Formed by OPN3 via SLAM during locomotion.
MAP2
Object map of DOM2. Contains R-components (recognition vectors) representing invariant objects extracted from sensory flow by CNN1.
MAP3
MAP 3 — spatial multi-map. Collection of elementary 20×10×10 L-component grids connected via Lg.
MAP4
MAP 4 — object map. Network of R-components connected to MAP3 and MAP5.
MAP6
MAP 6 — symbol map. Unified (non-multi) map of DOM6 symbols.
MAP7
MAP 7 — narrative/knowledge map. Network of KLEN triplets.
MAP8
MAP 8 — concept map. Unified map of DOM8 Concepts connected through W-vectors.
MAP9
MAP 9 — contradiction map. Structured network of WILL triplets.
MLOM
Morphological LOM. Composite morphological unit — a chain of MORN or of smaller MLOM. Forms recursive hierarchy: microcolumn → column → organ → organism.
MORN
MOrphogenesis Node. Atomic unit of GTR0. Triad: Class – m-vector – Group. Isomorphic to OPRN, KLEN, WILL. Represents the act of linking cells into a functional group.
MOTV
MOTivation Vector — general term for vector produced during an act of will. Carries chosen direction downward.
MOVE
Morphogenesis VEctor — description vector of an organism. Compact, static, parametric. Input to RTR0.
MP00
Base map of hardware reality from the side of GTR0 (pre-physical level). Represents the primary coordinate system of information topology, inseparably linked with MP10.
MP01
Map of subjective reality of abstract topology. Represents the convolution (point) level, forming a space where abstract nodes and topological invariants operate.
MP02
Map of subjective reality of abstract topology. Represents the splice (line) level, forming a space where abstract connection vectors operate.
MP03
Map of subjective reality of abstract topology. Represents the chain (scheme) level, forming a space where abstract graphs and routes operate.
MP10
A spatial map of physical reality. Its basic unit is the L-component, representing a single point in space with its status (surface, boundary, gateway) and spatial connections. It forms the field for MP11 objects.
MP11
Map of subjective reality of physical reality. Represents the convolution (point) level, forming a space where elementary physical objects operate.
MP12
Map of subjective reality of physical reality. Represents the splice (line) level, forming a space where subject-action-object links operate.
MP13
Map of subjective reality of physical reality. Represents the chain (scheme) level, forming a space where physical behavior schemes and routes operate.
MP20
A spatial map of symbolic reality. It acts as a structural background (e.g., a phonetic or syntactic grid) in which discrete symbols (MP21) are placed, developed, and operated.
MP21
Map of subjective reality of symbolic space. Represents the convolution (point) level, forming a space where elementary symbols operate.
MP22
Map of subjective reality of symbolic space. Represents the splice (line) level, forming a space where statements and judgments operate.
MP23
Map of subjective reality of symbolic space. Represents the chain (scheme) level, forming a space where narrative plans and stories operate.
MP30
A spatial map of conceptual reality. It represents the global topology of meanings, values, and logical laws, forming a "landscape of truth" on which conceptual entities (MP31) are built.
MP31
Map of subjective reality of conceptual space. Represents the convolution (point) level, forming a space where base concepts operate.
MP32
Map of subjective reality of conceptual space. Represents the splice (line) level, forming a space where volitional acts of stitching contradictions operate.
MP33
Map of subjective reality of conceptual space. Represents the chain (scheme) level, forming a space where maps of resolved contradictions (Personality) operate.
MPM0
Base of the organismic transformation GTRM: equals TRLU, the aggregate of the cellular level entire — not a digest or a message, the lower level's own aggregate serving as the upper level's coordinate system. MOGE v338, correcting the earlier ascription of the GATE instruction set as this base.
MPM1
First-cascade map of GTRM: cell kinds — convolutions (names) of TRLU, the entire life of a cell. A kind is a characteristic way of life, not a make-up of components.
MPM2
Second-cascade map of GTRM: cell splices — n-ary relations between cell kinds with roles, connector types, multiplicity and allowance. Exists as description (open valences) and instance (closed valences) of one form.
MPM3
Third-cascade map of GTRM: the scheme of the organism — a chain of m-vector differentiations (links) generated by PRDM. A trace of generation, not a stored plan; empty in the zygote.
MPU0
Base of the cellular transformation GTRU: the instruction set and rules of the GATE platform, populated by programs. Analogue of SLAM (GTR1) and EMBD (GTR2) for the cellular level.
MPU1
First-cascade map of GTRU: the vocabulary of genes — convolutions (names) of programs recorded as trees of ROOT components. Holds both gene descriptions and their switched-on instances.
MPU2
Second-cascade map of GTRU: gene splices — configurations of jointly switched-on genes. A cell is a point of this space; the d-vector is a switch between neighbouring points.
MPU3
Third-cascade map of GTRU: the chain of d-vector switches generated by PRDU from the seed prompt MTVU. Empty in the zygote; filled only by generation.
MTV0
Generator of base metric distance (abstract vector). Responsible for the fundamental tension of the system requiring structural zeroing.
MTV1
Generator of physical metric distance (b-vector). Provides biologically determined drives, such as distance to prey or from threat.
MTV2
Generator of semantic distance (k-vector). Responsible for the need for informational completeness, gestalt closure, and solving symbolic problems.
MTV3
Generator of conceptual distance (w-vector). Creates tension between incompatible concepts (e.g., "is" and "ought"), generating the highest will to change.
MTVM
Seed prompt of the organismic level GTRM: the initial context of generation, what is to be built and with what priorities. Inherited in the zygote's organismic component; does not descend from the subjective contour (MOGE v338).
MTVU
Seed prompt of the cellular level GTRU: the initial context of generation, "go on living and dividing". Inherited in a free-living cell; replaced by a prompt from CNNM for a cell inside an organism (specialisation).
NDDI
Network Digital Domain Instance — hardware substrate node. Carrier of L/R/OPRN components from GTR1 perspective.
NDM1
Trained weights of CNNM — determine which differences in a cell's life (TRLU) are inessential, i.e. which cells fold into one kind.
NDM2
Trained weights of SPLM — give the metric of proximity between cell kinds and determine how a cell splice's valences are closed at a handshake.
NDM3
Trained weights of PRDM — determine the scheme of the organism generated from the seed prompt MTVM and the vocabulary of cell splices.
NDU1
Trained weights of CNNU — determine which subtrees of primitives are recognised as one gene (aggregation, compression of a gene's description).
NDU2
Trained weights of SPLU — determine which genes are switched on jointly and how a gene splice's valences are closed at a handshake.
NDU3
Trained weights of PRDU — determine the chain of d-vector switches generated from the seed prompt MTVU and the vocabulary of gene splices.
NRGN
NeRoGeNesis. Neurogenesis. The first phase of germination: creation of NDDI nodes according to a fragment of MOVE. Includes code assembly from D-component, resource allocation, UNON assignment, establishing D/G-relations with ANOD, creating connectors.
OP01
Operational network of abstract topology (level of convolution (point)). A deterministic (non-learning) program-machine attached to the map MP01. Engaged in the practical implementation of the logic involving abstract nodes and topological invariants, following the predictor's path.
OP02
Operational network of abstract topology (level of splice (line)). A deterministic (non-learning) program-machine attached to the map MP02. Engaged in the practical implementation of the logic involving abstract connection vectors, following the predictor's path.
OP03
Operational network of abstract topology (level of chain (scheme)). A deterministic (non-learning) program-machine attached to the map MP03. Engaged in the practical implementation of the logic involving abstract graphs and routes, following the predictor's path.
OP11
Operational network of physical reality (level of convolution (point)). A deterministic (non-learning) program-machine attached to the map MP11. Engaged in the practical implementation of the logic involving elementary physical objects, following the predictor's path.
OP12
Operational network of physical reality (level of splice (line)). A deterministic (non-learning) program-machine attached to the map MP12. Engaged in the practical implementation of the logic involving subject-action-object links, following the predictor's path.
OP13
Operational network of physical reality (level of chain (scheme)). A deterministic (non-learning) program-machine attached to the map MP13. Engaged in the practical implementation of the logic involving physical behavior schemes and routes, following the predictor's path.
OP21
Operational network of symbolic space (level of convolution (point)). A deterministic (non-learning) program-machine attached to the map MP21. Engaged in the practical implementation of the logic involving elementary symbols, following the predictor's path.
OP22
Operational network of symbolic space (level of splice (line)). A deterministic (non-learning) program-machine attached to the map MP22. Engaged in the practical implementation of the logic involving statements and judgments, following the predictor's path.
OP23
Operational network of symbolic space (level of chain (scheme)). A deterministic (non-learning) program-machine attached to the map MP23. Engaged in the practical implementation of the logic involving narrative plans and stories, following the predictor's path.
OP31
Operational network of conceptual space (level of convolution (point)). A deterministic (non-learning) program-machine attached to the map MP31. Engaged in the practical implementation of the logic involving base concepts, following the predictor's path.
OP32
Operational network of conceptual space (level of splice (line)). A deterministic (non-learning) program-machine attached to the map MP32. Engaged in the practical implementation of the logic involving volitional acts of stitching contradictions, following the predictor's path.
OP33
Operational network of conceptual space (level of chain (scheme)). A deterministic (non-learning) program-machine attached to the map MP33. Engaged in the practical implementation of the logic involving maps of resolved contradictions (Personality), following the predictor's path.
OPN
Operational Network that performs operations on a MAP.
OPN1
Operational network for MAP1. Implements SLAM: fills L-components based on sensor data and locomotion. Deterministic program, not trainable.
OPN2
Operational network for MAP2. Manages convolution: feeds MAP1 vector to CNN1, compares result with existing R-components, creates new ones if needed.
OPN3
OPeration Network 3 — deterministic program managing DOM3. Records sensory data into MAP3.
OPN6
OPeration Network 6 — deterministic program managing DOM6. Feeds MAP5 to CNN2, produces symbols.
OPN7
OPeration Network 7 — deterministic program managing DOM7. Connects symbols into KLENs, maintains TRL7.
OPN8
OPeration Network 8 — deterministic program managing DOM8. Feeds MAP7 to CNN3, produces Concepts.
OPN9
OPeration Network 9 — deterministic program managing DOM9. Connects Concepts via W-vectors into WILL triplets.
OPNG
OPerational Network of Genesis. The minimal operational environment inside GERM, capable of reading MOVE and executing it. After germination completes, it transforms into OPN (operational network of functioning). The stem function is preserved in sleep mode.
OPRN
OPeRatioN — basic unit of DOM5. Triplet R—b—R: subject, b-vector (action), object.
P-vector
Semantic distance vector between symbols in MAP8.
PEND
Pending. Connector status awaiting resolution. CONT type is known, complementary type is known, partner not found. UNON and LOCN fields are empty (UNON = 0). Presence of PEND triggers partner search via ANOD.
PLEN
Payload LENgth. 16-bit field in datagram header indicating the size of the value being transmitted.
POCN
Point Of CoNnection. Connector data structure inside an NDDI component. 128 bits: partner UNON (64 bits), partner LOCN (32 bits), CONT type (32 bits). Status: PEND (UNON=0) or ACTV (UNON≠0).
PRD
Semantic predictor that computes the variant of continuation (the plan), choosing the next unit under the goal.
PRD01
Semantic predictor of abstract topology (level of convolution (point)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (abstract nodes and topological invariants) as a single whole.
PRD02
Semantic predictor of abstract topology (level of splice (line)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (abstract connection vectors) as a single whole.
PRD03
Semantic predictor of abstract topology (level of chain (scheme)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (abstract graphs and routes) as a single whole.
PRD1
Semantic predictor of the first level (spatial thinking) that computes BLOM.
PRD11
Semantic predictor of physical reality (level of convolution (point)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (elementary physical objects) as a single whole.
PRD12
Semantic predictor of physical reality (level of splice (line)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (subject-action-object links) as a single whole.
PRD13
Semantic predictor of physical reality (level of chain (scheme)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (physical behavior schemes and routes) as a single whole.
PRD2
Semantic predictor of the second level (symbolic thinking) that computes KLOM (a narrative plan).
PRD21
Semantic predictor of symbolic space (level of convolution (point)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (elementary symbols) as a single whole.
PRD22
Semantic predictor of symbolic space (level of splice (line)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (statements and judgments) as a single whole.
PRD23
Semantic predictor of symbolic space (level of chain (scheme)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (narrative plans and stories) as a single whole.
PRD3
Semantic predictor of the third level (conceptual thinking) that computes WLOM.
PRD31
Semantic predictor of conceptual space (level of convolution (point)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (base concepts) as a single whole.
PRD32
Semantic predictor of conceptual space (level of splice (line)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (volitional acts of stitching contradictions) as a single whole.
PRD33
Semantic predictor of conceptual space (level of chain (scheme)). A slow computing device that relies on the motivation vector and experience, making a conceptual choice (maps of resolved contradictions (Personality)) as a single whole.
PRDM
Predictor of the organismic level GTRM: generates the scheme of the organism (MPM3) — a chain of links naming a splice and a point of attachment — from the seed prompt MTVM, the aggregate TRLM and weights NDM3.
PRDU
Predictor of the cellular level GTRU: generates the chain of d-vector switches (MPU3) from the vocabulary of gene splices, the seed prompt MTVU and weights NDU3 — the third cascade of the cellular transformation.
SACK
Synapse ACKnowledge. Positive response to SREQ. Both parties create connectors, update POCN with partner addresses.
SDEL
Synapse DELete. Operation to break a G-relation. Triggered by accumulation of negative (−) markers in TRL. Releases resources, D-section is relinked.
SERN
Sensory-Reflex Network. DOM0 system.
SLAM
A built-in mechanism for building a spatial map of the locality out of a stream of observations.
SLGW
The gateway organ between the cellular (GTR0) and informational (GTR1) levels, housing the SLAM mechanism.
SPL01
Syntactic predictor of abstract topology (level of convolution (point)). A fast deterministic device that automatically completes the current unit (abstract nodes and topological invariants) according to local rules, without referring to the global goal.
SPL02
Syntactic predictor of abstract topology (level of splice (line)). A fast deterministic device that automatically completes the current unit (abstract connection vectors) according to local rules, without referring to the global goal.
SPL03
Syntactic predictor of abstract topology (level of chain (scheme)). A fast deterministic device that automatically completes the current unit (abstract graphs and routes) according to local rules, without referring to the global goal.
SPL11
Syntactic predictor of physical reality (level of convolution (point)). A fast deterministic device that automatically completes the current unit (elementary physical objects) according to local rules, without referring to the global goal.
SPL12
Syntactic predictor of physical reality (level of splice (line)). A fast deterministic device that automatically completes the current unit (subject-action-object links) according to local rules, without referring to the global goal.
SPL13
Syntactic predictor of physical reality (level of chain (scheme)). A fast deterministic device that automatically completes the current unit (physical behavior schemes and routes) according to local rules, without referring to the global goal.
SPL21
Syntactic predictor of symbolic space (level of convolution (point)). A fast deterministic device that automatically completes the current unit (elementary symbols) according to local rules, without referring to the global goal.
SPL22
Syntactic predictor of symbolic space (level of splice (line)). A fast deterministic device that automatically completes the current unit (statements and judgments) according to local rules, without referring to the global goal.
SPL23
Syntactic predictor of symbolic space (level of chain (scheme)). A fast deterministic device that automatically completes the current unit (narrative plans and stories) according to local rules, without referring to the global goal.
SPL31
Syntactic predictor of conceptual space (level of convolution (point)). A fast deterministic device that automatically completes the current unit (base concepts) according to local rules, without referring to the global goal.
SPL32
Syntactic predictor of conceptual space (level of splice (line)). A fast deterministic device that automatically completes the current unit (volitional acts of stitching contradictions) according to local rules, without referring to the global goal.
SPL33
Syntactic predictor of conceptual space (level of chain (scheme)). A fast deterministic device that automatically completes the current unit (maps of resolved contradictions (Personality)) according to local rules, without referring to the global goal.
SPLM
Splice operator of the organismic level GTRM: assembles cell splices — creates a skeleton from a description and closes its valences by a handshake, generating cells via CNNM on demand. Works by trained weights NDM2.
SPLU
Splice operator of the cellular level GTRU: assembles gene splices — creates a skeleton from a description and closes its valences by a handshake, unfolding genes via CNNU on demand. Works by trained weights NDU2.
SREJ
Synapse REJect. Negative response to SREQ. Refusal reasons: insufficient AVEC, incompatible CONT types, policy violation.
SREQ
Synapse REQuest. Datagram initiating SYGN. Contains source UNON, target UNON, requested relation type (RTYP), and the AVEC₀ of the initiator.
SRNT
Subjective Reality Network. Hierarchy of maps from DOM1 to DOMD.
subjective contour
The closed circuit of the three upper transformations GTR1–GTR3: the world unfolds into objects, symbols and concepts and converges on the compact pole IDEA. Joined to the biological contour only through the substrate, at the seam SLGW. MOGE v338.
SYGA
SYnaptogenesis Autonomous. Autonomous synaptogenesis. Resolution of PEND connectors through hierarchical search for complementary partners by CONT type. Search via ANOD, handshake at ANOD level. The result is emergent — specific topology varies with functional equivalence.
SYGD
SYnaptogenesis Deterministic. Deterministic synaptogenesis. Establishment of framework connections according to D-component templates during neurogenesis. Connectors are created immediately in ACTV status. Intra-group patterns, inter-level projections, administrative connections.
SYGN
SYnaptoGeNesis. The process of establishing G-relations between nodes. Divided into SYGD (deterministic, during neurogenesis) and SYGA (autonomous, through PEND resolution).
TRL
Trajectory Log. Working space of each DOM level.
TRL1
Trajectory log of DOM1. Records the history of spatial exploration: which L-components were visited, when, in what order.
TRL2
Trajectory log of DOM2. Records object recognition events: which R-components were activated, when, with what confidence.
TRL3
Trajectory log of DOM3 (physical level). Contains BLOM.
TRL6
Trajectory log of DOM6. Records symbol usage: which S-components were activated, when, in what context.
TRL7
TRajectory Log 7 — temporal history of DOM7. Records narrative thinking over time.
TRL8
Trajectory log of DOM8 (symbolic level). Contains KLOM.
TRL9
TRajectory Log 9 — temporal history of DOM9. Records contradictions, acts of will, outcomes. Forms personality.
TRLB
Trajectory log of DOMB (axiological level). Constitutes personality.
TRLM
Aggregate of the organismic level: Σ(MPM1+MPM2+MPM3) | MPM0 — the entire life of an organism (cell kinds, cell splices, scheme) on the base MPM0 = TRLU.
TRLU
Aggregate of the cellular level: Σ(MPU1+MPU2+MPU3) | MPU0 — the entire life of a cell (genes, gene splices, chain of switches) on the base of GATE primitives. Serves as the base MPM0 of the organismic level GTRM.
TX
Transaction. Cryptographic envelope for asset transfer. Contains recipient UNON, asset identifier, transfer conditions, and signature of the sender.
Δb
Physical collective mismatch. A metric describing collective motivation as the divergence of individual physical vectors of group members.
Δk
Symbolic collective mismatch. A metric describing collective motivation as the divergence of individual semantic vectors of group members.
Δw
Conceptual collective mismatch. A metric describing collective motivation as the divergence of individual conceptual vectors of group members.
