406 lines
14 KiB
C
406 lines
14 KiB
C
/* -*- Mode: C; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details:
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*
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* Copyright (C) 2014 Aleksander Morgado <aleksander@aleksander.es>
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*/
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#include <glib.h>
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#include <glib-object.h>
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#include <locale.h>
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#include <ModemManager.h>
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#define _LIBMM_INSIDE_MM
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#include <libmm-glib.h>
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#include "mm-log.h"
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#include "mm-modem-helpers.h"
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#include "mm-modem-helpers-cinterion.h"
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static gint
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sort_band (MMModemBand a, MMModemBand b)
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{
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return a - b;
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}
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/*****************************************************************************/
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/* Test ^SCFG test responses */
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static void
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common_test_scfg (const gchar *response,
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GArray *expected_bands)
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{
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GArray *bands = NULL;
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gchar *expected_bands_str;
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gchar *bands_str;
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GError *error = NULL;
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gboolean res;
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res = mm_cinterion_parse_scfg_test (response,
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MM_MODEM_CHARSET_UNKNOWN,
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&bands,
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&error);
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g_assert_no_error (error);
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g_assert (res == TRUE);
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g_assert (bands != NULL);
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g_array_sort (bands, (GCompareFunc)sort_band);
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g_array_sort (expected_bands, (GCompareFunc)sort_band);
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expected_bands_str = mm_common_build_bands_string ((const MMModemBand *)expected_bands->data,
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expected_bands->len);
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bands_str = mm_common_build_bands_string ((const MMModemBand *)bands->data,
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bands->len);
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/* Instead of comparing the array one by one, compare the strings built from the mask
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* (we get a nicer error if it fails) */
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g_assert_cmpstr (bands_str, ==, expected_bands_str);
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g_free (bands_str);
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g_free (expected_bands_str);
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g_array_unref (bands);
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}
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static void
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test_scfg (void)
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{
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GArray *expected_bands;
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MMModemBand single;
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const gchar *response =
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"^SCFG: \"Audio/Loop\",(\"0\",\"1\")\r\n"
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"^SCFG: \"Call/ECC\",(\"0\"-\"255\")\r\n"
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"^SCFG: \"Call/Speech/Codec\",(\"0\",\"1\")\r\n"
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"^SCFG: \"GPRS/Auth\",(\"0\",\"1\",\"2\")\r\n"
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"^SCFG: \"GPRS/AutoAttach\",(\"disabled\",\"enabled\")\r\n"
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"^SCFG: \"GPRS/MaxDataRate/HSDPA\",(\"0\",\"1\")\r\n"
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"^SCFG: \"GPRS/MaxDataRate/HSUPA\",(\"0\",\"1\")\r\n"
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"^SCFG: \"Ident/Manufacturer\",(25)\r\n"
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"^SCFG: \"Ident/Product\",(25)\r\n"
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"^SCFG: \"MEopMode/Airplane\",(\"off\",\"on\")\r\n"
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"^SCFG: \"MEopMode/CregRoam\",(\"0\",\"1\")\r\n"
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"^SCFG: \"MEopMode/CFUN\",(\"0\",\"1\")\r\n"
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"^SCFG: \"MEopMode/PowerMgmt/LCI\",(\"disabled\",\"enabled\")\r\n"
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"^SCFG: \"MEopMode/PowerMgmt/VExt\",(\"high\",\"low\")\r\n"
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"^SCFG: \"MEopMode/PwrSave\",(\"disabled\",\"enabled\"),(\"0-600\"),(\"1-36000\")\r\n"
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"^SCFG: \"MEopMode/RingOnData\",(\"on\",\"off\")\r\n"
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"^SCFG: \"MEopMode/RingUrcOnCall\",(\"on\",\"off\")\r\n"
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"^SCFG: \"MEShutdown/OnIgnition\",(\"on\",\"off\")\r\n"
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"^SCFG: \"Radio/Band\",(\"1-511\",\"0-1\")\r\n"
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"^SCFG: \"Radio/NWSM\",(\"0\",\"1\",\"2\")\r\n"
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"^SCFG: \"Radio/OutputPowerReduction\",(\"4\"-\"8\")\r\n"
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"^SCFG: \"Serial/USB/DDD\",(\"0\",\"1\"),(\"0\"),(4),(4),(4),(63),(63),(4)\r\n"
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"^SCFG: \"URC/DstIfc\",(\"mdm\",\"app\")\r\n"
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"^SCFG: \"URC/Datamode/Ringline\",(\"off\",\"on\")\r\n"
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"^SCFG: \"URC/Ringline\",(\"off\",\"local\",\"asc0\",\"wakeup\")\r\n"
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"^SCFG: \"URC/Ringline/ActiveTime\",(\"0\",\"1\",\"2\",\"keep\")\r\n";
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expected_bands = g_array_sized_new (FALSE, FALSE, sizeof (MMModemBand), 9);
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single = MM_MODEM_BAND_EGSM, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_DCS, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_PCS, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_G850, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_U2100, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_U1900, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_U850, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_U900, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_U800, g_array_append_val (expected_bands, single);
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common_test_scfg (response, expected_bands);
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g_array_unref (expected_bands);
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}
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/*****************************************************************************/
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/* Test ^SCFG responses */
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static void
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common_test_scfg_response (const gchar *response,
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MMModemCharset charset,
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GArray *expected_bands)
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{
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GArray *bands = NULL;
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gchar *expected_bands_str;
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gchar *bands_str;
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GError *error = NULL;
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gboolean res;
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res = mm_cinterion_parse_scfg_response (response, charset, &bands, &error);
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g_assert_no_error (error);
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g_assert (res == TRUE);
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g_assert (bands != NULL);
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g_array_sort (bands, (GCompareFunc)sort_band);
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g_array_sort (expected_bands, (GCompareFunc)sort_band);
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expected_bands_str = mm_common_build_bands_string ((const MMModemBand *)expected_bands->data,
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expected_bands->len);
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bands_str = mm_common_build_bands_string ((const MMModemBand *)bands->data,
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bands->len);
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/* Instead of comparing the array one by one, compare the strings built from the mask
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* (we get a nicer error if it fails) */
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g_assert_cmpstr (bands_str, ==, expected_bands_str);
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g_free (bands_str);
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g_free (expected_bands_str);
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g_array_unref (bands);
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}
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static void
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test_scfg_response_2g (void)
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{
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GArray *expected_bands;
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MMModemBand single;
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const gchar *response =
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"^SCFG: \"Radio/Band\",\"3\",\"3\"\r\n"
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"\r\n";
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expected_bands = g_array_sized_new (FALSE, FALSE, sizeof (MMModemBand), 9);
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single = MM_MODEM_BAND_EGSM, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_DCS, g_array_append_val (expected_bands, single);
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common_test_scfg_response (response, MM_MODEM_CHARSET_UNKNOWN, expected_bands);
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g_array_unref (expected_bands);
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}
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static void
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test_scfg_response_2g_ucs2 (void)
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{
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GArray *expected_bands;
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MMModemBand single;
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const gchar *response =
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"^SCFG: \"Radio/Band\",\"0031\",\"0031\"\r\n"
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"\r\n";
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expected_bands = g_array_sized_new (FALSE, FALSE, sizeof (MMModemBand), 9);
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single = MM_MODEM_BAND_EGSM, g_array_append_val (expected_bands, single);
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common_test_scfg_response (response, MM_MODEM_CHARSET_UCS2, expected_bands);
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g_array_unref (expected_bands);
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}
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static void
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test_scfg_response_3g (void)
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{
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GArray *expected_bands;
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MMModemBand single;
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const gchar *response =
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"^SCFG: \"Radio/Band\",127\r\n"
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"\r\n";
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expected_bands = g_array_sized_new (FALSE, FALSE, sizeof (MMModemBand), 9);
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single = MM_MODEM_BAND_EGSM, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_DCS, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_PCS, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_G850, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_U2100, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_U1900, g_array_append_val (expected_bands, single);
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single = MM_MODEM_BAND_U850, g_array_append_val (expected_bands, single);
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common_test_scfg_response (response, MM_MODEM_CHARSET_UNKNOWN, expected_bands);
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g_array_unref (expected_bands);
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}
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/*****************************************************************************/
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/* Test ^SCFG test */
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static void
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compare_arrays (const GArray *supported,
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const GArray *expected)
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{
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guint i;
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g_assert_cmpuint (supported->len, ==, expected->len);
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for (i = 0; i < supported->len; i++) {
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gboolean found = FALSE;
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guint j;
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for (j = 0; j < expected->len && !found; j++) {
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if (g_array_index (supported, guint, i) == g_array_index (expected, guint, j))
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found = TRUE;
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}
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g_assert (found);
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}
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}
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static void
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common_test_cnmi (const gchar *response,
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const GArray *expected_mode,
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const GArray *expected_mt,
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const GArray *expected_bm,
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const GArray *expected_ds,
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const GArray *expected_bfr)
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{
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GArray *supported_mode = NULL;
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GArray *supported_mt = NULL;
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GArray *supported_bm = NULL;
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GArray *supported_ds = NULL;
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GArray *supported_bfr = NULL;
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GError *error = NULL;
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gboolean res;
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g_assert (expected_mode != NULL);
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g_assert (expected_mt != NULL);
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g_assert (expected_bm != NULL);
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g_assert (expected_ds != NULL);
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g_assert (expected_bfr != NULL);
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res = mm_cinterion_parse_cnmi_test (response,
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&supported_mode,
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&supported_mt,
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&supported_bm,
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&supported_ds,
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&supported_bfr,
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&error);
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g_assert_no_error (error);
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g_assert (res == TRUE);
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g_assert (supported_mode != NULL);
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g_assert (supported_mt != NULL);
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g_assert (supported_bm != NULL);
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g_assert (supported_ds != NULL);
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g_assert (supported_bfr != NULL);
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compare_arrays (supported_mode, expected_mode);
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compare_arrays (supported_mt, expected_mt);
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compare_arrays (supported_bm, expected_bm);
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compare_arrays (supported_ds, expected_ds);
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compare_arrays (supported_bfr, expected_bfr);
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g_array_unref (supported_mode);
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g_array_unref (supported_mt);
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g_array_unref (supported_bm);
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g_array_unref (supported_ds);
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g_array_unref (supported_bfr);
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}
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static void
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test_cnmi_phs8 (void)
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{
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GArray *expected_mode;
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GArray *expected_mt;
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GArray *expected_bm;
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GArray *expected_ds;
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GArray *expected_bfr;
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guint val;
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const gchar *response =
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"+CNMI: (0,1,2),(0,1),(0,2),(0),(1)\r\n"
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"\r\n";
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expected_mode = g_array_sized_new (FALSE, FALSE, sizeof (guint), 3);
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val = 0, g_array_append_val (expected_mode, val);
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val = 1, g_array_append_val (expected_mode, val);
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val = 2, g_array_append_val (expected_mode, val);
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expected_mt = g_array_sized_new (FALSE, FALSE, sizeof (guint), 2);
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val = 0, g_array_append_val (expected_mt, val);
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val = 1, g_array_append_val (expected_mt, val);
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expected_bm = g_array_sized_new (FALSE, FALSE, sizeof (guint), 2);
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val = 0, g_array_append_val (expected_bm, val);
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val = 2, g_array_append_val (expected_bm, val);
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expected_ds = g_array_sized_new (FALSE, FALSE, sizeof (guint), 1);
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val = 0, g_array_append_val (expected_ds, val);
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expected_bfr = g_array_sized_new (FALSE, FALSE, sizeof (guint), 1);
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val = 1, g_array_append_val (expected_bfr, val);
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common_test_cnmi (response,
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expected_mode,
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expected_mt,
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expected_bm,
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expected_ds,
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expected_bfr);
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g_array_unref (expected_mode);
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g_array_unref (expected_mt);
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g_array_unref (expected_bm);
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g_array_unref (expected_ds);
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g_array_unref (expected_bfr);}
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/*****************************************************************************/
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/* Test ^SIND responses */
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static void
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common_test_sind_response (const gchar *response,
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const gchar *expected_description,
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guint expected_mode,
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guint expected_value)
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{
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GError *error = NULL;
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gboolean res;
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gchar *description;
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guint mode;
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guint value;
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res = mm_cinterion_parse_sind_response (response,
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&description,
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&mode,
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&value,
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&error);
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g_assert_no_error (error);
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g_assert (res == TRUE);
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g_assert_cmpstr (description, ==, expected_description);
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g_assert_cmpuint (mode, ==, expected_mode);
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g_assert_cmpuint (value, ==, expected_value);
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g_free (description);
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}
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static void
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test_sind_response_simstatus (void)
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{
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common_test_sind_response ("^SIND: simstatus,1,5", "simstatus", 1, 5);
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}
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/*****************************************************************************/
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void
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_mm_log (const char *loc,
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const char *func,
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guint32 level,
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const char *fmt,
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...)
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{
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#if defined ENABLE_TEST_MESSAGE_TRACES
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/* Dummy log function */
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va_list args;
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gchar *msg;
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va_start (args, fmt);
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msg = g_strdup_vprintf (fmt, args);
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va_end (args);
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g_print ("%s\n", msg);
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g_free (msg);
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#endif
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}
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int main (int argc, char **argv)
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{
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setlocale (LC_ALL, "");
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g_type_init ();
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g_test_init (&argc, &argv, NULL);
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g_test_add_func ("/MM/cinterion/scfg", test_scfg);
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g_test_add_func ("/MM/cinterion/scfg/response/3g", test_scfg_response_3g);
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g_test_add_func ("/MM/cinterion/scfg/response/2g", test_scfg_response_2g);
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g_test_add_func ("/MM/cinterion/scfg/response/2g/ucs2", test_scfg_response_2g_ucs2);
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g_test_add_func ("/MM/cinterion/cnmi/phs8", test_cnmi_phs8);
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g_test_add_func ("/MM/cinterion/sind/response/simstatus", test_sind_response_simstatus);
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return g_test_run ();
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}
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