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"""This is the implementation of the Google Scholar engine.Compared to other Google services the Scholar engine has a simple GET REST-APIand there does not exists `async` API.  Even though the API slightly vintage wecan make use of the :ref:`google API` to assemble the arguments of the GETrequest."""from typing import TYPE_CHECKINGfrom typing import Optionalfrom urllib.parse import urlencodefrom datetime import datetimefrom lxml import htmlfrom searx.utils import (    eval_xpath,    eval_xpath_getindex,    eval_xpath_list,    extract_text,)from searx.exceptions import SearxEngineCaptchaExceptionfrom searx.engines.google import fetch_traits  from searx.engines.google import (    get_google_info,    time_range_dict,)from searx.enginelib.traits import EngineTraitsif TYPE_CHECKING:    import logging    logger: logging.Loggertraits: EngineTraitsabout = {    "website": 'https://scholar.google.com',    "wikidata_id": 'Q494817',    "official_api_documentation": 'https://developers.google.com/custom-search',    "use_official_api": False,    "require_api_key": False,    "results": 'HTML',}categories = ['science', 'scientific publications']paging = Truelanguage_support = Truetime_range_support = Truesafesearch = Falsesend_accept_language_header = Truedef time_range_args(params):    """Returns a dictionary with a time range arguments based on    ``params['time_range']``.    Google Scholar supports a detailed search by year.  Searching by *last    month* or *last week* (as offered by SearXNG) is uncommon for scientific    publications and is not supported by Google Scholar.    To limit the result list when the users selects a range, all the SearXNG    ranges (*day*, *week*, *month*, *year*) are mapped to *year*.  If no range    is set an empty dictionary of arguments is returned.  Example;  when    user selects a time range (current year minus one in 2022):    .. code:: python        { 'as_ylo' : 2021 }    """    ret_val = {}    if params['time_range'] in time_range_dict:        ret_val['as_ylo'] = datetime.now().year - 1    return ret_valdef detect_google_captcha(dom):    """In case of CAPTCHA Google Scholar open its own *not a Robot* dialog and is    not redirected to ``sorry.google.com``.    """    if eval_xpath(dom, "//form[@id='gs_captcha_f']"):        raise SearxEngineCaptchaException()def request(query, params):    """Google-Scholar search request"""    google_info = get_google_info(params, traits)        google_info['subdomain'] = google_info['subdomain'].replace("www.", "scholar.")    args = {        'q': query,        **google_info['params'],        'start': (params['pageno'] - 1) * 10,        'as_sdt': '2007',          'as_vis': '0',      }    args.update(time_range_args(params))    params['url'] = 'https://' + google_info['subdomain'] + '/scholar?' + urlencode(args)    params['cookies'] = google_info['cookies']    params['headers'].update(google_info['headers'])    return paramsdef parse_gs_a(text: Optional[str]):    """Parse the text written in green.    Possible formats:    * "{authors} - {journal}, {year} - {publisher}"    * "{authors} - {year} - {publisher}"    * "{authors} - {publisher}"    """    if text is None or text == "":        return None, None, None, None    s_text = text.split(' - ')    authors = s_text[0].split(', ')    publisher = s_text[-1]    if len(s_text) != 3:        return authors, None, publisher, None            journal_year = s_text[1].split(', ')        if len(journal_year) > 1:        journal = ', '.join(journal_year[0:-1])        if journal == '…':            journal = None    else:        journal = None        year = journal_year[-1]    try:        publishedDate = datetime.strptime(year.strip(), '%Y')    except ValueError:        publishedDate = None    return authors, journal, publisher, publishedDatedef response(resp):      """Parse response from Google Scholar"""    results = []        dom = html.fromstring(resp.text)    detect_google_captcha(dom)        for result in eval_xpath_list(dom, '//div[@data-rp]'):        title = extract_text(eval_xpath(result, './/h3[1]//a'))        if not title:                        continue        pub_type = extract_text(eval_xpath(result, './/span[@class="gs_ctg2"]'))        if pub_type:            pub_type = pub_type[1:-1].lower()        url = eval_xpath_getindex(result, './/h3[1]//a/@href', 0)        content = extract_text(eval_xpath(result, './/div[@class="gs_rs"]'))        authors, journal, publisher, publishedDate = parse_gs_a(            extract_text(eval_xpath(result, './/div[@class="gs_a"]'))        )        if publisher in url:            publisher = None                comments = extract_text(eval_xpath(result, './/div[@class="gs_fl"]/a[starts-with(@href,"/scholar?cites=")]'))                html_url = None        pdf_url = None        doc_url = eval_xpath_getindex(result, './/div[@class="gs_or_ggsm"]/a/@href', 0, default=None)        doc_type = extract_text(eval_xpath(result, './/span[@class="gs_ctg2"]'))        if doc_type == "[PDF]":            pdf_url = doc_url        else:            html_url = doc_url        results.append(            {                'template': 'paper.html',                'type': pub_type,                'url': url,                'title': title,                'authors': authors,                'publisher': publisher,                'journal': journal,                'publishedDate': publishedDate,                'content': content,                'comments': comments,                'html_url': html_url,                'pdf_url': pdf_url,            }        )        for suggestion in eval_xpath(dom, '//div[contains(@class, "gs_qsuggest_wrap")]//li//a'):                results.append({'suggestion': extract_text(suggestion)})    for correction in eval_xpath(dom, '//div[@class="gs_r gs_pda"]/a'):        results.append({'correction': extract_text(correction)})    return results
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