mirror of
https://github.com/logos-co/logos-cpp-sdk.git
synced 2026-08-30 09:11:13 +00:00
337 lines
12 KiB
C++
337 lines
12 KiB
C++
#include "impl_header_parser.h"
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#include <QFile>
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#include <QFileInfo>
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#include <QJsonDocument>
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#include <QJsonObject>
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#include <QJsonArray>
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#include <QRegularExpression>
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#include <QStringList>
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// ---------------------------------------------------------------------------
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// C++ type string → LIDL TypeExpr
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// ---------------------------------------------------------------------------
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static TypeExpr cppTypeToLidl(const QString& raw)
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{
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// Normalize: strip const, &, leading/trailing whitespace
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QString t = raw.trimmed();
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t.remove(QRegularExpression("^const\\s+"));
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t.remove(QRegularExpression("\\s*&$"));
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t = t.trimmed();
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// Primitives
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if (t == "bool") return { TypeExpr::Primitive, "bool", {} };
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if (t == "int64_t") return { TypeExpr::Primitive, "int", {} };
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if (t == "uint64_t") return { TypeExpr::Primitive, "uint", {} };
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if (t == "double") return { TypeExpr::Primitive, "float64", {} };
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if (t == "void") return { TypeExpr::Primitive, "void", {} };
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// std::string
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if (t == "std::string")
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return { TypeExpr::Primitive, "tstr", {} };
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// std::vector<T>
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static QRegularExpression vecRe("^std::vector\\s*<\\s*(.+)\\s*>$");
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QRegularExpressionMatch m = vecRe.match(t);
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if (m.hasMatch()) {
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QString inner = m.captured(1).trimmed();
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if (inner == "std::string") {
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TypeExpr elem = { TypeExpr::Primitive, "tstr", {} };
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return { TypeExpr::Array, "", { elem } };
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}
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if (inner == "uint8_t") {
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return { TypeExpr::Primitive, "bstr", {} };
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}
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if (inner == "int64_t") {
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TypeExpr elem = { TypeExpr::Primitive, "int", {} };
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return { TypeExpr::Array, "", { elem } };
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}
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if (inner == "uint64_t") {
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TypeExpr elem = { TypeExpr::Primitive, "uint", {} };
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return { TypeExpr::Array, "", { elem } };
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}
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if (inner == "double") {
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TypeExpr elem = { TypeExpr::Primitive, "float64", {} };
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return { TypeExpr::Array, "", { elem } };
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}
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if (inner == "bool") {
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TypeExpr elem = { TypeExpr::Primitive, "bool", {} };
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return { TypeExpr::Array, "", { elem } };
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}
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}
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// Qt collection types — pass through directly (non-std-convertible)
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if (t == "QVariantMap")
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return { TypeExpr::Map, "", { {TypeExpr::Primitive, "tstr", {}}, {TypeExpr::Primitive, "any", {}} } };
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if (t == "QVariantList")
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return { TypeExpr::Array, "", { {TypeExpr::Primitive, "any", {}} } };
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if (t == "QStringList")
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return { TypeExpr::Array, "", { {TypeExpr::Primitive, "tstr", {}} } };
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// LogosMap / LogosList — nlohmann::json aliases; same LIDL shape as the Qt types
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// but flagged so the generator emits an nlohmann→Qt conversion in the glue.
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if (t == "LogosMap")
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return { TypeExpr::Map, "", { {TypeExpr::Primitive, "tstr", {}}, {TypeExpr::Primitive, "any", {}} } };
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if (t == "LogosList")
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return { TypeExpr::Array, "", { {TypeExpr::Primitive, "any", {}} } };
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// StdLogosResult — pure C++ result type for universal impls. The generator
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// emits a StdLogosResult→Qt LogosResult conversion in the glue layer.
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if (t == "StdLogosResult")
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return { TypeExpr::Primitive, "result", {} };
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// Fallback: treat as opaque
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return { TypeExpr::Primitive, "any", {} };
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}
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// ---------------------------------------------------------------------------
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// Parse a single method declaration line
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// ---------------------------------------------------------------------------
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static bool parseMethodLine(const QString& line, MethodDecl& out)
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{
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// Find the parameter list: everything between the last '(' and ')'
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int parenOpen = -1;
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int parenClose = -1;
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int depth = 0;
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for (int i = line.size() - 1; i >= 0; --i) {
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if (line[i] == ')') {
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if (parenClose < 0) parenClose = i;
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depth++;
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} else if (line[i] == '(') {
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depth--;
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if (depth == 0) {
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parenOpen = i;
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break;
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}
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}
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}
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if (parenOpen < 0 || parenClose < 0)
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return false;
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QString paramStr = line.mid(parenOpen + 1, parenClose - parenOpen - 1).trimmed();
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// Everything before '(' is "returnType methodName"
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QString prefix = line.left(parenOpen).trimmed();
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// The method name is the last identifier token in prefix
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int nameEnd = prefix.size();
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while (nameEnd > 0 && prefix[nameEnd - 1].isSpace())
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nameEnd--;
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int nameStart = nameEnd;
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while (nameStart > 0 && (prefix[nameStart - 1].isLetterOrNumber() || prefix[nameStart - 1] == '_'))
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nameStart--;
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if (nameStart >= nameEnd)
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return false;
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out.name = prefix.mid(nameStart, nameEnd - nameStart);
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// Reject if the extracted name is a C++ keyword — this filters out
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// member variable declarations like "std::function<void(...)> onEvent"
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// where the parser would mistakenly extract "void" as the method name.
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static const QSet<QString> cppKeywords = {
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"void", "int", "bool", "char", "short", "long", "double", "float",
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"auto", "return", "if", "else", "for", "while", "do", "switch",
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"case", "break", "continue", "const", "static", "inline", "virtual"
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};
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if (cppKeywords.contains(out.name))
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return false;
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QString retTypeStr = prefix.left(nameStart).trimmed();
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out.returnType = cppTypeToLidl(retTypeStr);
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// Flag methods whose impl returns LogosMap / LogosList so the generator
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// can emit nlohmann→Qt conversion code in the glue layer.
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out.jsonReturn = (retTypeStr == "LogosMap" || retTypeStr == "LogosList");
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// Flag methods whose impl returns StdLogosResult so the generator can
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// emit a StdLogosResult→Qt LogosResult conversion in the glue layer.
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out.resultReturn = (retTypeStr == "StdLogosResult");
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// Parse parameters
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out.params.clear();
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if (!paramStr.isEmpty()) {
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// Split by comma, respecting template depth
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QStringList parts;
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int start = 0;
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int tdepth = 0;
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for (int i = 0; i < paramStr.size(); ++i) {
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if (paramStr[i] == '<') tdepth++;
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else if (paramStr[i] == '>') tdepth--;
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else if (paramStr[i] == ',' && tdepth == 0) {
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parts.append(paramStr.mid(start, i - start).trimmed());
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start = i + 1;
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}
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}
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parts.append(paramStr.mid(start).trimmed());
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for (const QString& part : parts) {
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if (part.isEmpty()) continue;
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QString p = part.trimmed();
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int pNameEnd = p.size();
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while (pNameEnd > 0 && p[pNameEnd - 1].isSpace())
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pNameEnd--;
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int pNameStart = pNameEnd;
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while (pNameStart > 0 && (p[pNameStart - 1].isLetterOrNumber() || p[pNameStart - 1] == '_'))
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pNameStart--;
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if (pNameStart >= pNameEnd) continue;
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ParamDecl pd;
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pd.name = p.mid(pNameStart, pNameEnd - pNameStart);
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pd.type = cppTypeToLidl(p.left(pNameStart));
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out.params.append(pd);
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}
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}
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return true;
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}
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// ---------------------------------------------------------------------------
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// Main entry point
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// ---------------------------------------------------------------------------
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ImplParseResult parseImplHeader(const QString& headerPath,
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const QString& className,
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const QString& metadataPath,
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QTextStream& err)
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{
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ImplParseResult result;
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// --- Read metadata.json ---
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{
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QFile mf(metadataPath);
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if (!mf.open(QIODevice::ReadOnly | QIODevice::Text)) {
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result.error = "Failed to open metadata file: " + metadataPath;
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return result;
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}
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QJsonParseError pe;
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QJsonDocument doc = QJsonDocument::fromJson(mf.readAll(), &pe);
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if (pe.error != QJsonParseError::NoError) {
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result.error = "Failed to parse metadata JSON: " + pe.errorString();
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return result;
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}
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QJsonObject obj = doc.object();
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result.module.name = obj.value("name").toString();
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result.module.version = obj.value("version").toString();
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result.module.description = obj.value("description").toString();
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result.module.category = obj.value("category").toString();
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QJsonArray deps = obj.value("dependencies").toArray();
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for (const QJsonValue& v : deps)
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result.module.depends.append(v.toString());
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// Read events declared in metadata.json
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QJsonArray events = obj.value("events").toArray();
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for (const QJsonValue& ev : events) {
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QJsonObject evObj = ev.toObject();
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EventDecl ed;
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ed.name = evObj.value("name").toString();
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QJsonArray params = evObj.value("params").toArray();
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for (const QJsonValue& pv : params) {
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QJsonObject po = pv.toObject();
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ParamDecl pd;
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pd.name = po.value("name").toString();
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pd.type = cppTypeToLidl(po.value("type").toString());
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ed.params.append(pd);
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}
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if (!ed.name.isEmpty())
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result.module.events.append(ed);
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}
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}
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// --- Read and parse header ---
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QFile hf(headerPath);
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if (!hf.open(QIODevice::ReadOnly | QIODevice::Text)) {
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result.error = "Failed to open header file: " + headerPath;
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return result;
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}
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QString source = QString::fromUtf8(hf.readAll());
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hf.close();
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QStringList lines = source.split('\n');
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// State machine: find "class <className>", then collect public methods
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enum State { LookingForClass, InClass, InPublic, InPrivate };
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State state = LookingForClass;
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int braceDepth = 0;
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QRegularExpression classRe("\\bclass\\s+" + QRegularExpression::escape(className) + "\\b");
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QRegularExpression accessRe("^\\s*(public|private|protected)\\s*:");
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QRegularExpression ctorDtorRe("^\\s*~?" + QRegularExpression::escape(className) + "\\s*\\(");
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for (const QString& rawLine : lines) {
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QString line = rawLine.trimmed();
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switch (state) {
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case LookingForClass:
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if (classRe.match(line).hasMatch()) {
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state = InClass;
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for (QChar c : line) {
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if (c == '{') braceDepth++;
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else if (c == '}') braceDepth--;
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}
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}
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break;
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case InClass:
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case InPublic:
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case InPrivate:
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for (QChar c : line) {
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if (c == '{') braceDepth++;
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else if (c == '}') braceDepth--;
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}
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if (braceDepth <= 0) {
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state = LookingForClass;
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goto done;
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}
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{
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QRegularExpressionMatch am = accessRe.match(line);
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if (am.hasMatch()) {
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QString spec = am.captured(1);
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if (spec == "public") state = InPublic;
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else state = InPrivate;
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break;
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}
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}
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if (state != InPublic) break;
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if (line.isEmpty() || line.startsWith("//") || line.startsWith("#")
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|| line.startsWith("/*") || line.startsWith("*"))
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break;
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if (ctorDtorRe.match(line).hasMatch())
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break;
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if (line.startsWith("typedef") || line.startsWith("using")
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|| line.startsWith("friend") || line.startsWith("enum")
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|| line.startsWith("struct"))
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break;
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if (line.contains("std::function<")) {
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if (line.contains("emitEvent"))
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result.module.hasEmitEvent = true;
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break;
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}
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if (line.endsWith(';')) {
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QString decl = line.left(line.size() - 1).trimmed();
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MethodDecl md;
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if (parseMethodLine(decl, md)) {
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result.module.methods.append(md);
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}
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}
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break;
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}
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}
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done:
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if (result.module.methods.isEmpty()) {
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err << "Warning: no public methods found in class " << className
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<< " in " << headerPath << "\n";
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}
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return result;
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}
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