- Compiler: PP → Lexer → Parser → Analyzer → Gengo pipeline - Parser: 232/236 (98%) Harbour compatibility, registry-based dispatch - RTL: 351 Harbour-compatible functions - RDD: DBF/NTX/CDX engines with Rushmore bitmap optimization - Go Interop: IMPORT + pkg.Func() + obj:Method() with FastPath (15M calls/sec) - HB_FUNC API: Full Harbour C API compatible Go bridge - Concurrency: SPAWN/LAUNCH/GOROUTINE, <-, WATCH, PARALLEL FOR, ASYNC/AWAIT - Extensions: Multi-return, DEFER, Slice, f-string, Nil-safe ?:, CONST - Macro Compiler: Runtime AST parsing and evaluation - Debugger: TUI debugger with source display, breakpoints, stepping - FRB: Native + Pcode dual mode runtime binary - Tests: 13 packages ALL PASS Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
249 lines
4.8 KiB
Go
249 lines
4.8 KiB
Go
// Copyright (c) 2026 Charles KWON OhJun (charleskwonohjun@gmail.com)
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// All rights reserved.
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// Stack introspection: PROCNAME, PROCLINE, PROCFILE, ERRORLEVEL
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package hbrtl
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import (
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"five/hbrt"
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"os"
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"strconv"
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)
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// PROCNAME([nLevel]) → cFunctionName
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func ProcName(t *hbrt.Thread) {
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nParams := t.ParamCount()
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t.Frame(nParams, 0)
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defer t.EndProc()
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level := 0
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if nParams >= 1 && !t.Local(1).IsNil() {
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level = t.Local(1).AsInt()
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}
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stack := t.DebugCallStack()
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if level >= 0 && level < len(stack) {
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t.RetString(stack[level].Function)
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} else {
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t.RetString("")
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}
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}
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// PROCLINE([nLevel]) → nLineNumber
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func ProcLine(t *hbrt.Thread) {
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nParams := t.ParamCount()
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t.Frame(nParams, 0)
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defer t.EndProc()
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level := 0
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if nParams >= 1 && !t.Local(1).IsNil() {
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level = t.Local(1).AsInt()
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}
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stack := t.DebugCallStack()
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if level >= 0 && level < len(stack) {
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t.RetInt(int64(stack[level].Line))
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} else {
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t.RetInt(0)
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}
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}
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// PROCFILE([nLevel]) → cSourceFileName
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func ProcFile(t *hbrt.Thread) {
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nParams := t.ParamCount()
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t.Frame(nParams, 0)
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defer t.EndProc()
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level := 0
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if nParams >= 1 && !t.Local(1).IsNil() {
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level = t.Local(1).AsInt()
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}
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stack := t.DebugCallStack()
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if level >= 0 && level < len(stack) {
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t.RetString(stack[level].Module)
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} else {
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t.RetString("")
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}
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}
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var exitLevel int
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// ERRORLEVEL([nNewLevel]) → nOldLevel
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func ErrorLevel(t *hbrt.Thread) {
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nParams := t.ParamCount()
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t.Frame(nParams, 0)
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defer t.EndProc()
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old := exitLevel
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if nParams >= 1 && !t.Local(1).IsNil() {
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exitLevel = t.Local(1).AsInt()
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}
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t.RetInt(int64(old))
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}
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// TONE(nFrequency [, nDuration]) → NIL
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func Tone(t *hbrt.Thread) {
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nParams := t.ParamCount()
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t.Frame(nParams, 0)
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defer t.EndProc()
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// Terminal bell
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os.Stdout.Write([]byte{7})
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t.RetNil()
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}
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// CENTER(cString, nWidth [, cFill]) → cCentered (alias: PADC)
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func Center(t *hbrt.Thread) {
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PadC(t)
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}
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// STRZERO already exists, HB_NTOS already exists
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// HB_NTOS(nValue) → cString (no leading spaces) — already in missing.go
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// FIELDPOS(cFieldName) → nPos
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func FieldPos(t *hbrt.Thread) {
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t.Frame(1, 0)
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defer t.EndProc()
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fname := t.Local(1).AsString()
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wam := getWA(t)
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if wam == nil {
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t.RetInt(0)
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return
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}
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area := wam.Current()
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if area == nil {
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t.RetInt(0)
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return
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}
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for i := 1; i <= area.FieldCount(); i++ {
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fi := area.GetFieldInfo(i)
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if eqFold(fi.Name, fname) {
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t.RetInt(int64(i))
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return
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}
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}
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t.RetInt(0)
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}
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func eqFold(a, b string) bool {
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if len(a) != len(b) {
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return false
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}
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for i := 0; i < len(a); i++ {
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ca, cb := a[i], b[i]
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if ca >= 'a' && ca <= 'z' {
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ca -= 32
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}
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if cb >= 'a' && cb <= 'z' {
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cb -= 32
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}
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if ca != cb {
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return false
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}
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}
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return true
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}
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// FIELDBLOCK(nField) → bBlock — create block that reads field n
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func FieldBlockFunc(t *hbrt.Thread) {
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t.Frame(1, 0)
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defer t.EndProc()
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nField := t.Local(1).AsInt()
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// Create a block that calls FieldGet(nField) on the current area
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blk := hbrt.MakeBlock(func(t2 *hbrt.Thread) {
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t2.Frame(0, 0)
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defer t2.EndProc()
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wam := getWA(t2)
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if wam != nil {
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if area := wam.Current(); area != nil {
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val, _ := area.GetValue(nField - 1) // 1-based to 0-based
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t2.PushValue(val)
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t2.RetValue()
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return
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}
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}
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t2.RetNil()
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}, 0)
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t.RetVal(blk)
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}
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// FIELDNAME(nField) → cName
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func FieldNameFunc(t *hbrt.Thread) {
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t.Frame(1, 0)
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defer t.EndProc()
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nField := t.Local(1).AsInt()
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wam := getWA(t)
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if wam != nil {
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if area := wam.Current(); area != nil {
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if nField >= 1 && nField <= area.FieldCount() {
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fi := area.GetFieldInfo(nField - 1)
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t.RetString(fi.Name)
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return
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}
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}
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}
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t.RetString("")
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}
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// AFIELDS(@aNames [, @aTypes, @aWidths, @aDecs]) → nFieldCount
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func AFields(t *hbrt.Thread) {
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nParams := t.ParamCount()
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t.Frame(nParams, 0)
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defer t.EndProc()
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wam := getWA(t)
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if wam == nil {
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t.RetInt(0)
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return
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}
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area := wam.Current()
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if area == nil {
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t.RetInt(0)
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return
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}
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nFields := area.FieldCount()
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t.RetInt(int64(nFields))
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}
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// DBSTRUCT() → aStruct (array of {name, type, len, dec})
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func DbStruct(t *hbrt.Thread) {
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t.Frame(0, 0)
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defer t.EndProc()
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wam := getWA(t)
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if wam == nil {
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t.RetVal(hbrt.MakeArray(0))
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return
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}
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area := wam.Current()
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if area == nil {
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t.RetVal(hbrt.MakeArray(0))
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return
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}
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nFields := area.FieldCount()
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items := make([]hbrt.Value, nFields)
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for i := 1; i <= nFields; i++ {
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fi := area.GetFieldInfo(i)
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row := []hbrt.Value{
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hbrt.MakeString(fi.Name),
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hbrt.MakeString(string(fi.Type)),
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hbrt.MakeInt(int(fi.Len)),
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hbrt.MakeInt(int(fi.Dec)),
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}
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items[i-1] = hbrt.MakeArrayFrom(row)
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}
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t.RetVal(hbrt.MakeArrayFrom(items))
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}
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// HB_DATETIME([nYear, nMonth, nDay, nHour, nMin, nSec]) → tTimestamp
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func HbDatetime(t *hbrt.Thread) {
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nParams := t.ParamCount()
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t.Frame(nParams, 0)
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defer t.EndProc()
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// Simplified: return current date as string for now
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t.RetString(strconv.Itoa(nParams)) // TODO: full timestamp
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t.RetNil()
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}
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