/** * Adds type and description representation from function docstring * * @param parameter parameter of a function * @return true if type from docstring was added */ private boolean addTypeAndDescriptionFromDocstring(@NotNull final PyNamedParameter parameter) { final PyFunction function = PsiTreeUtil.getParentOfType(parameter, PyFunction.class); if (function != null) { final String docString = PyPsiUtils.strValue(function.getDocStringExpression()); final Pair<String, String> typeAndDescr = getTypeAndDescription(docString, parameter); final String type = typeAndDescr.first; final String description = typeAndDescr.second; if (type != null) { final PyType pyType = PyTypeParser.getTypeByName(parameter, type); if (pyType instanceof PyClassType) { myBody .addItem(": ") .addWith( new LinkWrapper(PythonDocumentationProvider.LINK_TYPE_PARAM), $(pyType.getName())); } else { myBody.addItem(": ").addItem(type); } } if (description != null) { myEpilog.addItem(BR).addItem(description); } return type != null; } return false; }
private void buildFromDocstring(@NotNull final PsiElement elementDefinition, boolean isProperty) { PyClass pyClass = null; final PyStringLiteralExpression docStringExpression = ((PyDocStringOwner) elementDefinition).getDocStringExpression(); if (elementDefinition instanceof PyClass) { pyClass = (PyClass) elementDefinition; myBody.add(PythonDocumentationProvider.describeDecorators(pyClass, TagItalic, BR, LCombUp)); myBody.add(PythonDocumentationProvider.describeClass(pyClass, TagBold, true, false)); } else if (elementDefinition instanceof PyFunction) { PyFunction pyFunction = (PyFunction) elementDefinition; if (!isProperty) { pyClass = pyFunction.getContainingClass(); if (pyClass != null) { myBody .addWith( TagSmall, PythonDocumentationProvider.describeClass(pyClass, TagCode, true, true)) .addItem(BR) .addItem(BR); } } myBody .add(PythonDocumentationProvider.describeDecorators(pyFunction, TagItalic, BR, LCombUp)) .add(PythonDocumentationProvider.describeFunction(pyFunction, TagBold, LCombUp)); if (docStringExpression == null) { addInheritedDocString(pyFunction, pyClass); } } else if (elementDefinition instanceof PyFile) { addModulePath((PyFile) elementDefinition); } if (docStringExpression != null) { myBody.addItem(BR); addFormattedDocString(myElement, docStringExpression.getStringValue(), myBody, myEpilog); } }
private void addPredefinedMethodDoc(PyFunction fun, String mothodName) { PyClassType objectType = PyBuiltinCache.getInstance(fun) .getObjectType(); // old- and new-style classes share the __xxx__ stuff if (objectType != null) { PyClass objectClass = objectType.getPyClass(); PyFunction predefinedMethod = objectClass.findMethodByName(mothodName, false); if (predefinedMethod != null) { PyStringLiteralExpression predefinedDocstring = predefinedMethod.getDocStringExpression(); String predefinedDoc = predefinedDocstring != null ? predefinedDocstring.getStringValue() : null; if (predefinedDoc != null && predefinedDoc.length() > 1) { // only a real-looking doc string counts addFormattedDocString(fun, predefinedDoc, myBody, myBody); myEpilog.addItem(BR).addItem(BR).addItem(PyBundle.message("QDOC.copied.from.builtin")); } } } }
private void addInheritedDocString( @NotNull final PyFunction pyFunction, @Nullable final PyClass pyClass) { boolean notFound = true; final String methodName = pyFunction.getName(); if (pyClass == null || methodName == null) { return; } final boolean isConstructor = PyNames.INIT.equals(methodName); Iterable<PyClass> classes = pyClass.getAncestorClasses(null); if (isConstructor) { // look at our own class again and maybe inherit class's doc classes = new ChainIterable<PyClass>(pyClass).add(classes); } for (PyClass ancestor : classes) { PyStringLiteralExpression docstringElement = null; PyFunction inherited = null; boolean isFromClass = false; if (isConstructor) docstringElement = pyClass.getDocStringExpression(); if (docstringElement != null) { isFromClass = true; } else { inherited = ancestor.findMethodByName(methodName, false); } if (inherited != null) { docstringElement = inherited.getDocStringExpression(); } if (docstringElement != null) { final String inheritedDoc = docstringElement.getStringValue(); if (inheritedDoc.length() > 1) { myEpilog.addItem(BR).addItem(BR); String ancestor_name = ancestor.getName(); String marker = (pyClass == ancestor) ? PythonDocumentationProvider.LINK_TYPE_CLASS : PythonDocumentationProvider.LINK_TYPE_PARENT; final String ancestor_link = $().addWith(new LinkWrapper(marker + ancestor_name), $(ancestor_name)).toString(); if (isFromClass) { myEpilog.addItem(PyBundle.message("QDOC.copied.from.class.$0", ancestor_link)); } else { myEpilog.addItem(PyBundle.message("QDOC.copied.from.$0.$1", ancestor_link, methodName)); } myEpilog.addItem(BR).addItem(BR); ChainIterable<String> formatted = new ChainIterable<String>(); ChainIterable<String> unformatted = new ChainIterable<String>(); addFormattedDocString(pyFunction, inheritedDoc, formatted, unformatted); myEpilog.addWith(TagCode, formatted).add(unformatted); notFound = false; break; } } } if (notFound) { // above could have not worked because inheritance is not searched down to 'object'. // for well-known methods, copy built-in doc string. // TODO: also handle predefined __xxx__ that are not part of 'object'. if (PyNames.UnderscoredAttributes.contains(methodName)) { addPredefinedMethodDoc(pyFunction, methodName); } } }