mirror of
https://github.com/edeproject/ede.git
synced 2023-08-10 21:13:03 +03:00
460 lines
12 KiB
C++
460 lines
12 KiB
C++
/*
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* $Id$
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*
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* emountd, mount/unmount notifier
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* Part of Equinox Desktop Environment (EDE).
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* Copyright (c) 2008 Sanel Zukan <karijes@equinox-project.org>
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*
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* This program is licensed under the terms of the
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* GNU General Public License version 2 or later.
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* See COPYING for the details.
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*/
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/*
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* A bunch of this code is inspired from Thunar (http://thunar.xfce.org)
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* since HAL documentation pretty sucks.
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*/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <stdio.h>
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#include <string.h>
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#ifdef HAVE_HAL
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#include <unistd.h>
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#include <stdlib.h>
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#include <signal.h>
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#include <libhal-storage.h>
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#include <edelib/List.h>
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/* HAL can return NULL as error message if not checked */
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#define CHECK_STR(s) ((s != NULL) ? s : "<unknown>")
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#define EMOUNTD_INTERFACE "org.equinoxproject.Emountd"
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#define EMOUNTD_OBJECT_PATH "/org/equinoxproject/Emountd"
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#define EDE_SHUTDOWN_INTERFACE "org.equinoxproject.Shutdown"
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#define EDE_SHUTDOWN_MEMBER "Shutdown"
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struct DeviceInfo {
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unsigned int udi_hash;
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const char* label;
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const char* mount_point;
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const char* device_file;
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LibHalDriveType drive_type;
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LibHalVolumeDiscType cdrom_type; /* Valid only if drive_type == LIBHAL_DRIVE_TYPE_CDROM */
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int read_only;
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};
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/* audio CD are special */
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struct DeviceAudioInfo {
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unsigned int udi_hash;
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const char* label;
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const char* device_file;
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};
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typedef edelib::list<unsigned int> UIntList;
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typedef edelib::list<unsigned int>::iterator UIntListIter;
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static int quit_signaled = 0;
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static DBusConnection* bus_connection = NULL;
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static UIntList known_audio_udis;
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void quit_signal(int sig) {
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quit_signaled = 1;
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}
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/* A hash function from Dr.Dobbs Journal. */
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unsigned int do_hash(const char* key, int keylen) {
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unsigned hash ;
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int i;
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for (i = 0, hash = 0; i < keylen ;i++) {
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hash += (long)key[i] ;
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hash += (hash<<10);
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hash ^= (hash>>6) ;
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}
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hash += (hash <<3);
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hash ^= (hash >>11);
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hash += (hash <<15);
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return hash ;
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}
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void send_dbus_signal_mounted(DeviceInfo* info) {
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int vi;
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dbus_bool_t vb;
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const char* vs;
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DBusMessage* msg = dbus_message_new_signal(EMOUNTD_OBJECT_PATH, EMOUNTD_INTERFACE, "Mounted");
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DBusMessageIter it;
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dbus_message_iter_init_append(msg, &it);
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/* open sub-iterator */
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DBusMessageIter sub;
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dbus_message_iter_open_container(&it, DBUS_TYPE_STRUCT, NULL, &sub);
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/* hash UDI is first member*/
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_UINT32, &info->udi_hash);
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vs = info->label;
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_STRING, &vs);
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vs = info->mount_point;
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_STRING, &vs);
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vs = info->device_file;
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_STRING, &vs);
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vb = (dbus_bool_t)info->read_only;
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_BOOLEAN, &vb);
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vi = (int)info->drive_type;
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_INT32, &vi);
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vi = (int)info->cdrom_type;
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_INT32, &vi);
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/* close sub-iterator */
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dbus_message_iter_close_container(&it, &sub);
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dbus_uint32_t serial;
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if(!dbus_connection_send(bus_connection, msg, &serial))
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printf("Failed to send message (%i)\n", serial);
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dbus_connection_flush(bus_connection);
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dbus_message_unref(msg);
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}
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void send_dbus_signal_audio_cd_added(DeviceAudioInfo* info) {
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const char* vs;
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DBusMessage* msg = dbus_message_new_signal(EMOUNTD_OBJECT_PATH, EMOUNTD_INTERFACE, "AudioCDAdded");
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DBusMessageIter it;
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dbus_message_iter_init_append(msg, &it);
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/* open sub-iterator */
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DBusMessageIter sub;
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dbus_message_iter_open_container(&it, DBUS_TYPE_STRUCT, NULL, &sub);
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/* hash UDI is first member*/
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_UINT32, &info->udi_hash);
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vs = info->label;
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_STRING, &vs);
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vs = info->device_file;
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dbus_message_iter_append_basic(&sub, DBUS_TYPE_STRING, &vs);
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/* close sub-iterator */
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dbus_message_iter_close_container(&it, &sub);
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dbus_uint32_t serial;
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if(!dbus_connection_send(bus_connection, msg, &serial))
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printf("Failed to send message (%i)\n", serial);
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dbus_connection_flush(bus_connection);
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dbus_message_unref(msg);
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}
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void send_dbus_signal_removed(unsigned int udi_hash, int is_audio) {
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const char* sig;
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if(is_audio)
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sig = "AudioCDRemoved";
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else
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sig = "Unmounted";
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DBusMessage* msg = dbus_message_new_signal(EMOUNTD_OBJECT_PATH, EMOUNTD_INTERFACE, sig);
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DBusMessageIter it;
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dbus_message_iter_init_append(msg, &it);
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dbus_message_iter_append_basic(&it, DBUS_TYPE_UINT32, &udi_hash);
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dbus_uint32_t serial;
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if(!dbus_connection_send(bus_connection, msg, &serial))
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printf("Failed to send message (%i)\n", serial);
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dbus_connection_flush(bus_connection);
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dbus_message_unref(msg);
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}
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void device_info_init(DeviceInfo* i) {
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i->udi_hash = 0;
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i->label = 0;
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i->mount_point = 0;
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i->device_file = 0;
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i->drive_type = (LibHalDriveType)-1; /* 0 is LIBHAL_DRIVE_TYPE_REMOVABLE_DISK */
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i->cdrom_type = (LibHalVolumeDiscType)-1;
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i->read_only = 0;
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}
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void device_audio_info_init(DeviceAudioInfo* i) {
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i->udi_hash = 0;
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i->label = 0;
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i->device_file = 0;
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}
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void device_info_send(LibHalContext* ctx, const char* udi) {
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/* spec said devices with this property should be ignored */
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if(libhal_device_get_property_bool(ctx, udi, "volume.ignore", 0))
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return;
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/* check volume */
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LibHalVolume* vol = libhal_volume_from_udi(ctx, udi);
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if(!vol)
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return;
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/* determine udi of the drive this volume belongs to */
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const char* drive_udi = libhal_volume_get_storage_device_udi(vol);
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if(drive_udi) {
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/* determine the drive for the volume */
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LibHalDrive* drive = libhal_drive_from_udi(ctx, drive_udi);
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if(drive) {
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const char* label = libhal_device_get_property_string(ctx, udi, "volume.label", 0);
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const char* dev = libhal_drive_get_device_file(drive);
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unsigned int udi_hash = do_hash(udi, strlen(udi));
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/* for audio CD's we send special signals */
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if(libhal_volume_disc_has_audio(vol) && !libhal_volume_disc_has_data(vol)) {
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DeviceAudioInfo d;
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device_audio_info_init(&d);
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d.udi_hash = udi_hash;
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d.label = label;
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d.device_file = dev;
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/*
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* register hash so when Audio CD is ejected (device_removed() will be called)
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* we knows should we send AudioCDRemoved signal
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*/
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known_audio_udis.push_back(udi_hash);
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/* send signal about Audio CD */
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send_dbus_signal_audio_cd_added(&d);
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} else {
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/*
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* Check if volume is mounted, since device_info_send() is called at emountd startup
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* and collects known volumes. Also, this function is called from device_property_modified()
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* and that will be when device mounts/unmounts. In either case, we send unmount signal
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*/
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if(!libhal_device_get_property_bool(ctx, udi, "volume.is_mounted", 0)) {
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send_dbus_signal_removed(udi_hash, 0); /* TODO: or to send drive_udi? */
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} else {
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DeviceInfo d;
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device_info_init(&d);
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d.udi_hash = udi_hash;
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d.label = label;
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d.device_file = dev;
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d.mount_point = libhal_device_get_property_string(ctx, udi, "volume.mount_point", 0);
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d.read_only = (int)libhal_device_get_property_bool(ctx, udi, "volume.is_mounted_read_only", 0);
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d.drive_type = libhal_drive_get_type(drive);
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/* determine CD type if we got it */
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if(d.drive_type == LIBHAL_DRIVE_TYPE_CDROM)
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d.cdrom_type = libhal_volume_get_disc_type(vol);
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/* send signal about mounted device*/
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send_dbus_signal_mounted(&d);
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libhal_free_string((char*)d.mount_point);
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}
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}
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libhal_free_string((char*)label);
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libhal_drive_free(drive);
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}
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}
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libhal_volume_free(vol);
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}
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void device_added(LibHalContext* ctx, const char* udi) {
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/* only used for Audio CD's */
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device_info_send(ctx, udi);
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}
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void device_removed(LibHalContext* ctx, const char* udi) {
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unsigned int udi_hash = do_hash(udi, strlen(udi));
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/* signal audio CD removal if udi match ours */
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UIntListIter it = known_audio_udis.begin(), it_end = known_audio_udis.end();
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for(; it != it_end; ++it) {
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if((*it) == udi_hash) {
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send_dbus_signal_removed(udi_hash, 1);
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known_audio_udis.erase(it);
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break;
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}
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}
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}
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void device_property_modified(LibHalContext* ctx, const char* udi, const char* key, dbus_bool_t is_rem, dbus_bool_t is_added) {
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/*
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* we watch only 'volume.mount_point' property;
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* it is always set after 'volue.is_mounted' property so we can check it manualy
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*/
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if(strcmp(key, "volume.mount_point") == 0)
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device_info_send(ctx, udi);
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}
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#endif // HAVE_HAL
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void help(void) {
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puts("Usage: emountd [--no-daemon]");
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puts("EDE mount/unmount notify manager");
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}
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int main(int argc, char** argv) {
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int go_daemon = 1;
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if(argc > 1) {
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if(strcmp(argv[1], "--no-daemon") == 0)
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go_daemon = 0;
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else {
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help();
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return 1;
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}
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}
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#ifndef HAVE_HAL
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printf("HAL support not enabled!\n");
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printf("Make sure you have system supporting HAL and installed HAL package and libraries\n");
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printf("For more details, please visit: 'http://freedesktop.org/HAL'\n");
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return 1;
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#else
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/* run in background */
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if(go_daemon)
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daemon(0, 0);
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DBusError err;
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DBusConnection* conn = NULL, *session_conn = NULL;
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DBusMessage* down_msg = NULL;
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LibHalContext* ctx = NULL;
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LibHalDrive* hd;
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char** drive_udis;
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int n_drive_udis;
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char** udis;
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int n_udis;
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signal(SIGINT, quit_signal);
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signal(SIGTERM, quit_signal);
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signal(SIGKILL, quit_signal);
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signal(SIGQUIT, quit_signal);
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ctx = libhal_ctx_new();
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if(!ctx) {
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puts("Unable to get libhal context");
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goto error;
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}
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dbus_error_init(&err);
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/* open system bus for HAL */
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conn = dbus_bus_get(DBUS_BUS_SYSTEM, &err);
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if(dbus_error_is_set(&err)) {
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printf("Unable to connect to system bus %s : %s\n", err.name, err.message);
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dbus_error_free(&err);
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goto error;
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}
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/* open session bus for EDE */
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session_conn = dbus_bus_get(DBUS_BUS_SESSION, &err);
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if(dbus_error_is_set(&err)) {
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printf("Unable to connect to session bus %s : %s\n", err.name, err.message);
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dbus_error_free(&err);
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goto error;
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}
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bus_connection = session_conn;
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/* let libhal use our system bus connection */
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libhal_ctx_set_dbus_connection(ctx, conn);
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if(!libhal_ctx_init(ctx, &err)) {
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printf("Unable to init libhal context %s : %s\n", CHECK_STR(err.name), CHECK_STR(err.message));
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printf("Does hald daemon is running?\n");
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dbus_error_free(&err);
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goto error;
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}
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libhal_ctx_set_device_added(ctx, device_added);
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libhal_ctx_set_device_removed(ctx, device_removed);
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libhal_ctx_set_device_property_modified(ctx, device_property_modified);
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/* explicitly state to watch all properties or nothing will be received */
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if(!libhal_device_property_watch_all(ctx, &err)) {
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printf("Unable to watch properties %s : %s\n", CHECK_STR(err.name), CHECK_STR(err.message));
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dbus_error_free(&err);
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goto error;
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}
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/* now lookup storage devices already known by HAL */
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drive_udis = libhal_find_device_by_capability(ctx, "storage", &n_drive_udis, &err);
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if(drive_udis) {
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for(int i = 0; i < n_drive_udis; i++) {
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hd = libhal_drive_from_udi(ctx, drive_udis[i]);
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if(!hd)
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continue;
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/* check for floppy since it does not have volumes */
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if(libhal_drive_get_type(hd) == LIBHAL_DRIVE_TYPE_FLOPPY) {
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device_info_send(ctx, drive_udis[i]);
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} else {
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/* determine all volumes for the given drive */
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udis = libhal_drive_find_all_volumes(ctx, hd, &n_udis);
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if(udis) {
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for(int j = 0; j < n_udis; j++) {
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device_info_send(ctx, udis[j]);
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/* HAL bug #5279 */
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free(udis[j]);
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}
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/* HAL bug #5279 */
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free(udis);
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}
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}
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libhal_drive_free(hd);
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}
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libhal_free_string_array(drive_udis);
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}
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/* add matcher for quit dbus signal */
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dbus_bus_add_match(bus_connection, "type='signal',interface='"EDE_SHUTDOWN_INTERFACE"'", 0);
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/*
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* Now handle both system and session bus messages: system messages
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* are to receive HAL notifications and bus messages are to dispatch them to EDE clients
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* and to receive Shutdown signal
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*/
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while(1) {
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if(quit_signaled)
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break;
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/* fetch and dispatch system bus messages */
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dbus_connection_read_write_dispatch(conn, 10);
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/* but only fetch session bus messages; they are processed here */
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dbus_connection_read_write(bus_connection, 10);
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down_msg = dbus_connection_pop_message(bus_connection);
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if(down_msg && dbus_message_is_signal(down_msg, EDE_SHUTDOWN_INTERFACE, EDE_SHUTDOWN_MEMBER))
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break;
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sleep(1);
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}
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error:
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if(!ctx)
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libhal_ctx_free(ctx);
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return 0;
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#endif // HAVE_HAL
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}
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