Files
notarius/internal/modules/dnd/shared/diagnostics/diagnostics.go

195 lines
6.3 KiB
Go

// Package diagnostics provides bounded, safe text for deterministic D&D
// decisions and findings.
package diagnostics
import (
"fmt"
"strconv"
"strings"
"gitea.maximumdirect.net/eric/notarius/internal/core/source"
"gitea.maximumdirect.net/eric/notarius/internal/framework/contracts"
frameworkdiagnostics "gitea.maximumdirect.net/eric/notarius/internal/framework/diagnostics"
)
const (
MaxIssues = 20
MaxDisplayedRunes = 128
MaxMessageBytes = 4096
)
// Finding is a local, ungrouped D&D diagnostic fact. Producers convert these
// to bounded framework diagnostics at their result boundary.
type Finding struct {
Scope string
ReasonCode string
Message string
}
// Corrections collects domain-owned model instructions and contextual record
// descriptions without coupling them to operator-facing diagnostics. Rules are
// emitted before affected records so the bounded result remains useful even
// when a large candidate exceeds the display budget.
type Corrections struct {
groups []correctionGroup
indexes map[string]int
}
type correctionGroup struct {
rule string
records []string
recordsSeen map[string]struct{}
}
// Add records one semantic rule and, when non-empty, one contextual record to
// which it applies. key is local grouping state and is never rendered.
func (c *Corrections) Add(key, rule, record string) {
if c.indexes == nil {
c.indexes = make(map[string]int)
}
index, ok := c.indexes[key]
if !ok {
index = len(c.groups)
c.indexes[key] = index
c.groups = append(c.groups, correctionGroup{rule: rule, recordsSeen: make(map[string]struct{})})
}
if record == "" {
return
}
group := &c.groups[index]
if _, seen := group.recordsSeen[record]; seen {
return
}
group.recordsSeen[record] = struct{}{}
group.records = append(group.records, record)
}
// Guidance returns one bounded correction request. It deliberately renders
// neither grouping keys nor operator diagnostics.
func (c Corrections) Guidance(prefix string) string {
issues := make([]string, 0, len(c.groups)*2)
for _, group := range c.groups {
issues = append(issues, group.rule)
}
for _, group := range c.groups {
issues = append(issues, group.records...)
}
return Aggregate(prefix, issues)
}
// SourceRange describes cited transcript positions without exposing source
// identities or application entity IDs.
func SourceRange(refs []source.SourceRef) string {
if len(refs) == 0 {
return "without a cited source range"
}
description := SourceRefRange(refs[0])
if len(refs) > 1 {
description += fmt.Sprintf(" (first of %d cited ranges)", len(refs))
}
return description
}
// SourceRefRange describes one transcript range without exposing its source
// identity.
func SourceRefRange(ref source.SourceRef) string {
if ref.StartUnitID == ref.EndUnitID {
return "at source unit " + strconv.Itoa(ref.StartUnitID)
}
return fmt.Sprintf("at source units %d-%d", ref.StartUnitID, ref.EndUnitID)
}
// DataQualityResult converts accepted source-quality findings into bounded,
// locally grouped advisories. These findings do not indicate process
// degradation.
func DataQualityResult(findings []Finding) (contracts.ValidationResult, error) {
diagnostics, err := Collect(findings, contracts.DiagnosticDispositionAdvisory, contracts.DiagnosticCategoryDataQuality)
if err != nil {
return contracts.ValidationResult{}, err
}
return contracts.ValidationResult{Approved: true, Diagnostics: diagnostics}, nil
}
// Collect converts individual deterministic findings into bounded,
// occurrence-grouped producer diagnostics with one consistent classification.
func Collect(findings []Finding, disposition contracts.DiagnosticDisposition, category contracts.DiagnosticCategory) ([]contracts.ProducerDiagnostic, error) {
collector := frameworkdiagnostics.NewCollector()
for _, finding := range findings {
if err := collector.Add(contracts.ProducerDiagnostic{
Disposition: disposition,
Category: category,
ReasonCode: finding.ReasonCode,
OccurrenceCount: 1,
Samples: []contracts.DiagnosticSample{{Scope: finding.Scope, Message: finding.Message}},
}); err != nil {
return nil, fmt.Errorf("collect diagnostic: %w", err)
}
}
return collector.Diagnostics(), nil
}
// NormalizationDiagnostics classifies deterministic normalization findings as
// observations, except for explicitly identified unresolved-quality findings.
func NormalizationDiagnostics(findings []Finding, advisoryReasonCodes ...string) ([]contracts.ProducerDiagnostic, error) {
advisoryReasons := make(map[string]struct{}, len(advisoryReasonCodes))
for _, reasonCode := range advisoryReasonCodes {
advisoryReasons[reasonCode] = struct{}{}
}
observations := make([]Finding, 0, len(findings))
advisories := make([]Finding, 0)
for _, finding := range findings {
if _, advisory := advisoryReasons[finding.ReasonCode]; advisory {
advisories = append(advisories, finding)
continue
}
observations = append(observations, finding)
}
diagnostics, err := Collect(observations, contracts.DiagnosticDispositionObservation, contracts.DiagnosticCategoryNormalization)
if err != nil {
return nil, err
}
qualityDiagnostics, err := Collect(advisories, contracts.DiagnosticDispositionAdvisory, contracts.DiagnosticCategoryDataQuality)
if err != nil {
return nil, err
}
return append(diagnostics, qualityDiagnostics...), nil
}
func Truncate(value string) string {
runes := []rune(value)
if len(runes) <= MaxDisplayedRunes {
return value
}
return string(runes[:MaxDisplayedRunes-1]) + "…"
}
func Quote(value string) string { return strconv.Quote(Truncate(value)) }
func Aggregate(prefix string, issues []string) string {
displayed := make([]string, 0, min(len(issues), MaxIssues))
for len(displayed) < len(issues) && len(displayed) < MaxIssues {
issue := Truncate(issues[len(displayed)])
candidate := aggregateMessage(prefix, append(displayed, issue), len(issues)-len(displayed)-1)
if len([]byte(candidate)) > MaxMessageBytes {
break
}
displayed = append(displayed, issue)
}
return aggregateMessage(prefix, displayed, len(issues)-len(displayed))
}
func aggregateMessage(prefix string, issues []string, omitted int) string {
message := prefix + ": " + strings.Join(issues, ", ")
if omitted > 0 {
message += fmt.Sprintf("; %d additional issue(s) omitted", omitted)
}
return message
}
func min(left, right int) int {
if left < right {
return left
}
return right
}