462 lines
14 KiB
Go
462 lines
14 KiB
Go
package fejkdata
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import (
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"fmt"
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"sort"
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"strings"
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)
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// drawSet is one render's reference draws: the unnamed draw group's, and each named one's.
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type drawSet struct {
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unnamed draws
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named map[string]*draws
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}
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// drawScope is where a render reads its reference paths: a draw set, in the draw group of the
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// template rendering, and the row a table's format is rendering, which its columns read.
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type drawScope struct {
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set *drawSet
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group string
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t *table
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row int
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}
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// newDrawSet makes the unnamed group's maps where the set is declared, keeping them on that frame's
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// stack for a render that reads through them; a zero drawSet makes them on its first read instead.
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func newDrawSet(s *session) drawSet {
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return drawSet{unnamed: draws{variant: map[string]node{}, value: map[string]draw{}, s: s}}
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}
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// renderOnce renders n as one render, over draws of its own.
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func renderOnce(s *session, n node) string {
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set := drawSet{unnamed: draws{s: s}}
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return render(s, n, drawScope{set: &set})
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}
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// in is the scope t renders in: its draw group where it names one, else its caller's.
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func (sc drawScope) in(t *template) drawScope {
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if t.drawGroupKey != "" {
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sc.group = t.drawGroupKey
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}
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return sc
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}
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// draws is the set's draws for sc's draw group. The session is passed in rather than
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// read out of the set: copying it from there would leak the set's maps to the heap.
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func (sc drawScope) draws(s *session) *draws {
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if sc.group == "" {
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return &sc.set.unnamed
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}
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d, drew := sc.set.named[sc.group]
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if !drew {
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if sc.set.named == nil {
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sc.set.named = map[string]*draws{}
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}
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d = &draws{variant: map[string]node{}, value: map[string]draw{}, s: s}
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sc.set.named[strings.Clone(sc.group)] = d // a key from sc would leak sc, and with it every render's draw set, to the heap
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}
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return d
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}
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// drawGroupOf reads a template's "drawGroup" (default ""), which a repeat cannot carry: each
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// iteration renders in no draw group.
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func drawGroupOf(m map[string]any, repeat int) (string, error) {
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v, ok := m["drawGroup"]
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if !ok {
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return "", nil
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}
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name, ok := v.(string)
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switch {
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case !ok:
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return "", fmt.Errorf("drawGroup must be a string, got %T", v)
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case name == "":
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return "", fmt.Errorf(`drawGroup "" is the default, so it has no effect; drop it`)
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case repeat > 1:
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return "", fmt.Errorf("drawGroup %q on a repeat names nothing, since each iteration is a render of its own; drop it", name)
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}
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return name, nil
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}
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// keyDrawGroup keys t's draw group by the category t sits in, "" for an inline template, so a name
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// is local to its category.
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func (t *template) keyDrawGroup(category string) {
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if t.drawGroup != "" {
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t.drawGroupKey = category + "/" + t.drawGroup
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}
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}
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// checkNestedDrawGroup refuses a template beneath one drawing in group that names group again,
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// short of a repeat or another draw group.
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func checkNestedDrawGroup(fields map[string]node, group string) error {
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if group == "" {
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return nil
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}
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var walk func(path string, n node) error
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walk = func(path string, n node) error {
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t, isTemplate := n.(*template)
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switch {
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case isTemplate && t.drawGroup == group:
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return fmt.Errorf("%q names drawGroup %q, the draw group this template draws in already; drop it", path, group)
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case isTemplate && (t.drawGroup != "" || t.repeat > 1):
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return nil
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}
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for _, c := range contained(n) {
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if err := walk(join(path, c.name), c.node); err != nil {
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return err
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}
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}
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return nil
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}
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for _, name := range sortedNames(fields) {
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if err := walk(name, fields[name]); err != nil {
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return err
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}
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}
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return nil
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}
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// drawCheck fences each template of a scope as a render of its own, remembering which nodes read a
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// reference path.
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type drawCheck struct {
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memo map[readsMemo]bool
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}
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type readsMemo struct {
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n node
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stopAtGroup bool
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}
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// checkDrawGroup refuses a draw group that splits nothing: one whose render reads every reference
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// path inside a repeat or a nested draw group, which draw apart from it whatever it names.
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func (c *drawCheck) checkDrawGroup(path string, n node) error {
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if t, ok := n.(*template); ok && t.drawGroup != "" && !c.splitsDraws(t) {
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return fmt.Errorf("%s: drawGroup %q splits nothing, since nothing it renders reads a reference path outside a repeat or a nested drawGroup; drop it", path, t.drawGroup)
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}
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return nil
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}
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func (c *drawCheck) checkDraws(path string, n node) error {
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t, ok := n.(*template)
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if !ok {
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return nil
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}
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if err := checkOwnFamily(t); err != nil {
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return fmt.Errorf("%s: %w", path, err)
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}
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if !c.readsPath(t) {
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return nil
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}
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w := newDrawWalk()
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for _, e := range renderEdges(t) {
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w.edge(t, e, drawAt{group: t.drawGroupKey, route: drawRoute{e.reached(), e.label}})
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}
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if err := w.check(); err != nil {
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return fmt.Errorf("%s: %w", path, err)
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}
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return nil
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}
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// checkOwnFamily refuses a table's format or cell that reads, however many templates
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// away and through a repeat or a draw group too, a table of its own family: a row
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// rendered whole draws its row without pinning it, so the family would draw apart
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// from the row being rendered, whichever draws the reaching template holds.
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func checkOwnFamily(t *template) error {
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own := t.table
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if own == nil {
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own = t.cellOf
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}
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if own == nil {
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return nil
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}
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seen := map[node]bool{}
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var find func(n node) (renderEdge, *table, bool)
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find = func(n node) (renderEdge, *table, bool) {
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if seen[n] {
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return renderEdge{}, nil, false
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}
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seen[n] = true
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for _, e := range renderEdges(n) {
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if a, isRef := refRead(n, e.label); isRef {
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if head, isTable := n.(*template).fields[a.key].(*table); isTable && head.family() == own.family() {
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return e, head, true
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}
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}
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if e, head, found := find(e.to); found {
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return e, head, true
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}
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}
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return renderEdge{}, nil, false
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}
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if e, head, found := find(t); found {
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return fmt.Errorf("%s reads %s, a table of its own family, which a row of %s rendered whole would draw apart from; read the family from a template beside it, or add the value as a column", e.reached(), head.category, own.category)
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}
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return nil
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}
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// checkRecordDraws fences the columns of a record — a template compiled at the top without a
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// repeat — so a load proves the record view of it as well as the string view.
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func (c *drawCheck) checkRecordDraws(path string, n node) error {
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t, ok := n.(*template)
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if !ok || !t.record {
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return nil
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}
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// A record-only template's format renders nothing, so weigh the columns, not the format.
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columns := recordColumns(t)
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reads := false
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for _, name := range columns {
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reads = reads || c.readsPath(t.fields[name])
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}
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if !reads {
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return nil
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}
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if err := checkColumnDraws(t, columns); err != nil {
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return fmt.Errorf("%s: %w", path, err)
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}
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return nil
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}
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// readsPath reports whether rendering n reads a reference path, short of a repeat, which renders
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// over draws of its own.
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func (c *drawCheck) readsPath(n node) bool { return c.reads(n, false) }
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// splitsDraws reports whether rendering n reads a reference path that n's own draw group answers
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// for: one outside a repeat and outside a nested draw group, which hold their own draws.
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func (c *drawCheck) splitsDraws(n node) bool { return c.reads(n, true) }
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// reads walks what rendering n renders for a reference path, stopping at a repeat — and at a nested
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// draw group when stopAtGroup — since each holds draws of its own.
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func (c *drawCheck) reads(n node, stopAtGroup bool) bool {
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k := readsMemo{n, stopAtGroup}
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if r, done := c.memo[k]; done {
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return r
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}
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r := false
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for _, e := range renderEdges(n) {
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if a, isRef := refRead(n, e.label); (isRef && (len(a.tail) > 0 || readsTable(n, a))) || (!repeats(e.to) && !(stopAtGroup && grouped(e.to)) && c.reads(e.to, stopAtGroup)) {
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r = true
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break
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}
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}
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if c.memo == nil {
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c.memo = map[readsMemo]bool{}
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}
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c.memo[k] = r
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return r
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}
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func repeats(n node) bool {
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t, isTemplate := n.(*template)
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return isTemplate && t.repeat > 1
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}
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func grouped(n node) bool {
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t, isTemplate := n.(*template)
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return isTemplate && t.drawGroupKey != ""
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}
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// readsTable reports whether a reference of n names a table, whose draw the render's
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// group answers for even when read whole.
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func readsTable(n node, a arm) bool {
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t, isTemplate := n.(*template)
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if !isTemplate {
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return false
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}
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_, isTable := t.fields[a.key].(*table)
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return isTable
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}
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// refRead is the reference an edge of n reads; false when the edge reads none.
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func refRead(n node, label string) (arm, bool) {
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t, isTemplate := n.(*template)
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if !isTemplate {
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return arm{}, false
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}
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a := splitArm(label, t.refs)
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return a, isRef(a.key)
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}
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// checkColumnDraws fences a record's columns as one render.
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func checkColumnDraws(t *template, columns []string) error {
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w := newDrawWalk()
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for _, name := range columns {
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w.walk(t.fields[name], drawAt{group: t.drawGroupKey, route: drawRoute{spelling: fmt.Sprintf("column %q", name)}})
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}
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return w.check()
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}
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// drawWalk gathers the references one render reads, by draw group, for check to compare.
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type drawWalk struct {
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reads []pathRead
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read map[drawKey]bool
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seen map[drawVisit]bool
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}
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// drawAt is where a walk stands: the draw group it draws in, how the render's root reached it, and
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// the table rows it entered.
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type drawAt struct {
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group string
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route drawRoute
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alt rowSet
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}
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// rowSet is the rows a walk entered, one per table: only one row of a table renders, so reads in
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// two rows of one table never meet, while reads in one row, across its columns and whatever they
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// reach, do.
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type rowSet []tablePin
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func (s rowSet) rowOf(t *table) (int, bool) {
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for _, p := range s {
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if p.t == t {
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return p.row, true
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}
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}
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return 0, false
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}
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// enter is s with row r of t, where t is not in it yet; the set is copied, since walks branch.
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func (s rowSet) enter(t *table, r int) rowSet {
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if _, in := s.rowOf(t); in {
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return s
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}
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out := append(append(make(rowSet, 0, len(s)+1), s...), tablePin{t, r})
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sort.Slice(out, func(i, j int) bool { return out[i].t.category < out[j].t.category })
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return out
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}
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// key spells the set for a map, by the tables' identities.
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func (s rowSet) key() string {
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var b strings.Builder
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for _, p := range s {
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fmt.Fprintf(&b, "%p[%d]", p.t, p.row)
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}
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return b.String()
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}
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// alternatives reports whether two reads sit in different rows of one table.
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func alternatives(a, b drawAt) bool {
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for _, p := range a.alt {
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if r, in := b.alt.rowOf(p.t); in && r != p.row {
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return true
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}
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}
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return false
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}
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// drawRoute is how a render reaches a draw: as its author spells it, and the root edge's label.
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type drawRoute struct{ spelling, label string }
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// pathRead is one reference a render reads: a path, or a bare reference with no tail.
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type pathRead struct {
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at drawAt
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a arm
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tr *tableRead // set where the reference names a table
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}
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type drawVisit struct {
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n node
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group string
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alt string
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}
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type drawKey struct {
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group string
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path string
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alt string
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}
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func newDrawWalk() *drawWalk {
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return &drawWalk{read: map[drawKey]bool{}, seen: map[drawVisit]bool{}}
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}
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// walk follows what rendering n renders. A repeat renders over draws of its own, so the walk stops
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// there.
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func (w *drawWalk) walk(n node, at drawAt) {
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v := drawVisit{n, at.group, at.alt.key()}
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if w.seen[v] {
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return
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}
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w.seen[v] = true
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if repeats(n) {
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return
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}
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if t, isTemplate := n.(*template); isTemplate && t.drawGroupKey != "" {
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at.group = t.drawGroupKey
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}
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for _, e := range renderEdges(n) {
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if cell, isCell := e.to.(*template); isCell && cell.cellOf != nil {
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if at.alt.excludes(cell) {
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continue
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}
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w.edge(n, e, drawAt{at.group, at.route, at.alt.enter(cell.cellOf, cell.cellRow)})
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continue
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}
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w.edge(n, e, at)
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}
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}
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// excludes reports whether a cell's row cannot render with the rows entered: another
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// row of its table, or a row outside an entered ancestor's.
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func (s rowSet) excludes(cell *template) bool {
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for _, p := range s {
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if p.t == cell.cellOf {
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return p.row != cell.cellRow
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}
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if cell.cellOf.descends(p.t) && !cell.cellOf.under(cell.cellRow, p.t, p.row) {
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return true
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}
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}
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return false
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}
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// edge records the reference an edge reads, then walks on with every row the read
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// pins entered, so a selected row renders only its own cells.
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func (w *drawWalk) edge(from node, e renderEdge, at drawAt) {
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if a, reads := refRead(from, e.label); reads {
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tr := tableReadOf(from.(*template).fields[a.key], a, e.to)
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if k := (drawKey{at.group, a.path, at.alt.key()}); !w.read[k] {
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w.read[k] = true
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w.reads = append(w.reads, pathRead{at, a, tr})
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}
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if tr != nil {
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tr.pins.each(func(t *table, r int) { at.alt = at.alt.enter(t, r) })
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}
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}
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w.walk(e.to, at)
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}
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// check refuses what one draw per reference path cannot answer for: a read of a level beside a path
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// another read takes into it, and two reads of one table family that select different rows. Reads
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// are compared in path order, so which pair is reported does not vary.
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func (w *drawWalk) check() error {
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sort.SliceStable(w.reads, func(i, j int) bool {
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if w.reads[i].at.group != w.reads[j].at.group {
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return w.reads[i].at.group < w.reads[j].at.group
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}
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return w.reads[i].a.path < w.reads[j].a.path
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})
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for i, level := range w.reads {
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for _, into := range w.reads[i+1:] {
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if into.at.group != level.at.group || alternatives(level.at, into.at) {
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continue
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}
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if strings.HasPrefix(into.a.path, level.a.path+".") && !(level.tr != nil && level.tr.whole) {
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return overlapError(level.at.route, level.a.name, into)
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}
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}
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}
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return checkFamilies(w.reads)
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}
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func overlapError(route drawRoute, ref string, into pathRead) error {
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return fmt.Errorf("%s renders a level that %s reads a path into; name the fields you want instead, or draw them apart with a drawGroup", route.spelled(ref), into.at.route.spelled(into.a.name))
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}
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// spelled names the route, and the reference it reaches a draw by where its root edge is not that
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// reference.
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func (r drawRoute) spelled(ref string) string {
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if ref == "" || ref == r.label {
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return r.spelling
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}
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return fmt.Sprintf("%s with {%s}", r.spelling, ref)
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}
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