blob: 87323d8f79c5713cd9db729b38e693f6ad0e1962 [file] [log] [blame]
/*
*
* BlueZ - Bluetooth protocol stack for Linux
*
* Copyright (C) 2012 Intel Corporation. All rights reserved.
*
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*
*/
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#include <stdio.h>
#include <errno.h>
#include <unistd.h>
#include <stdlib.h>
#include <stdbool.h>
#include <wordexp.h>
#include <glib.h>
#include "src/shared/shell.h"
#include "src/shared/util.h"
#include "gdbus/gdbus.h"
#include "agent.h"
#include "gatt.h"
#include "advertising.h"
/* String display constants */
#define COLORED_NEW COLOR_GREEN "NEW" COLOR_OFF
#define COLORED_CHG COLOR_YELLOW "CHG" COLOR_OFF
#define COLORED_DEL COLOR_RED "DEL" COLOR_OFF
#define PROMPT_ON COLOR_BLUE "[bluetooth]" COLOR_OFF "# "
#define PROMPT_OFF "Waiting to connect to bluetoothd..."
static DBusConnection *dbus_conn;
static GDBusProxy *agent_manager;
static char *auto_register_agent = NULL;
struct adapter {
GDBusProxy *proxy;
GDBusProxy *ad_proxy;
GList *devices;
};
static struct adapter *default_ctrl;
static GDBusProxy *default_dev;
static GDBusProxy *default_attr;
static GList *ctrl_list;
static const char *agent_arguments[] = {
"on",
"off",
"DisplayOnly",
"DisplayYesNo",
"KeyboardDisplay",
"KeyboardOnly",
"NoInputNoOutput",
NULL
};
static const char *ad_arguments[] = {
"on",
"off",
"peripheral",
"broadcast",
NULL
};
static void proxy_leak(gpointer data)
{
printf("Leaking proxy %p\n", data);
}
static void setup_standard_input(void)
{
bt_shell_attach(fileno(stdin));
}
static void connect_handler(DBusConnection *connection, void *user_data)
{
bt_shell_set_prompt(PROMPT_ON);
}
static void disconnect_handler(DBusConnection *connection, void *user_data)
{
bt_shell_detach();
bt_shell_set_prompt(PROMPT_OFF);
g_list_free_full(ctrl_list, proxy_leak);
ctrl_list = NULL;
default_ctrl = NULL;
}
static void print_adapter(GDBusProxy *proxy, const char *description)
{
DBusMessageIter iter;
const char *address, *name;
if (g_dbus_proxy_get_property(proxy, "Address", &iter) == FALSE)
return;
dbus_message_iter_get_basic(&iter, &address);
if (g_dbus_proxy_get_property(proxy, "Alias", &iter) == TRUE)
dbus_message_iter_get_basic(&iter, &name);
else
name = "<unknown>";
bt_shell_printf("%s%s%sController %s %s %s\n",
description ? "[" : "",
description ? : "",
description ? "] " : "",
address, name,
default_ctrl &&
default_ctrl->proxy == proxy ?
"[default]" : "");
}
static void print_device(GDBusProxy *proxy, const char *description)
{
DBusMessageIter iter;
const char *address, *name;
if (g_dbus_proxy_get_property(proxy, "Address", &iter) == FALSE)
return;
dbus_message_iter_get_basic(&iter, &address);
if (g_dbus_proxy_get_property(proxy, "Alias", &iter) == TRUE)
dbus_message_iter_get_basic(&iter, &name);
else
name = "<unknown>";
bt_shell_printf("%s%s%sDevice %s %s\n",
description ? "[" : "",
description ? : "",
description ? "] " : "",
address, name);
}
static void print_fixed_iter(const char *label, const char *name,
DBusMessageIter *iter)
{
dbus_bool_t *valbool;
dbus_uint32_t *valu32;
dbus_uint16_t *valu16;
dbus_int16_t *vals16;
unsigned char *byte;
int len;
switch (dbus_message_iter_get_arg_type(iter)) {
case DBUS_TYPE_BOOLEAN:
dbus_message_iter_get_fixed_array(iter, &valbool, &len);
if (len <= 0)
return;
bt_shell_printf("%s%s:\n", label, name);
bt_shell_hexdump((void *)valbool, len * sizeof(*valbool));
break;
case DBUS_TYPE_UINT32:
dbus_message_iter_get_fixed_array(iter, &valu32, &len);
if (len <= 0)
return;
bt_shell_printf("%s%s:\n", label, name);
bt_shell_hexdump((void *)valu32, len * sizeof(*valu32));
break;
case DBUS_TYPE_UINT16:
dbus_message_iter_get_fixed_array(iter, &valu16, &len);
if (len <= 0)
return;
bt_shell_printf("%s%s:\n", label, name);
bt_shell_hexdump((void *)valu16, len * sizeof(*valu16));
break;
case DBUS_TYPE_INT16:
dbus_message_iter_get_fixed_array(iter, &vals16, &len);
if (len <= 0)
return;
bt_shell_printf("%s%s:\n", label, name);
bt_shell_hexdump((void *)vals16, len * sizeof(*vals16));
break;
case DBUS_TYPE_BYTE:
dbus_message_iter_get_fixed_array(iter, &byte, &len);
if (len <= 0)
return;
bt_shell_printf("%s%s:\n", label, name);
bt_shell_hexdump((void *)byte, len * sizeof(*byte));
break;
default:
return;
};
}
static void print_iter(const char *label, const char *name,
DBusMessageIter *iter)
{
dbus_bool_t valbool;
dbus_uint32_t valu32;
dbus_uint16_t valu16;
dbus_int16_t vals16;
unsigned char byte;
const char *valstr;
DBusMessageIter subiter;
char *entry;
if (iter == NULL) {
bt_shell_printf("%s%s is nil\n", label, name);
return;
}
switch (dbus_message_iter_get_arg_type(iter)) {
case DBUS_TYPE_INVALID:
bt_shell_printf("%s%s is invalid\n", label, name);
break;
case DBUS_TYPE_STRING:
case DBUS_TYPE_OBJECT_PATH:
dbus_message_iter_get_basic(iter, &valstr);
bt_shell_printf("%s%s: %s\n", label, name, valstr);
break;
case DBUS_TYPE_BOOLEAN:
dbus_message_iter_get_basic(iter, &valbool);
bt_shell_printf("%s%s: %s\n", label, name,
valbool == TRUE ? "yes" : "no");
break;
case DBUS_TYPE_UINT32:
dbus_message_iter_get_basic(iter, &valu32);
bt_shell_printf("%s%s: 0x%08x\n", label, name, valu32);
break;
case DBUS_TYPE_UINT16:
dbus_message_iter_get_basic(iter, &valu16);
bt_shell_printf("%s%s: 0x%04x\n", label, name, valu16);
break;
case DBUS_TYPE_INT16:
dbus_message_iter_get_basic(iter, &vals16);
bt_shell_printf("%s%s: %d\n", label, name, vals16);
break;
case DBUS_TYPE_BYTE:
dbus_message_iter_get_basic(iter, &byte);
bt_shell_printf("%s%s: 0x%02x\n", label, name, byte);
break;
case DBUS_TYPE_VARIANT:
dbus_message_iter_recurse(iter, &subiter);
print_iter(label, name, &subiter);
break;
case DBUS_TYPE_ARRAY:
dbus_message_iter_recurse(iter, &subiter);
if (dbus_type_is_fixed(
dbus_message_iter_get_arg_type(&subiter))) {
print_fixed_iter(label, name, &subiter);
break;
}
while (dbus_message_iter_get_arg_type(&subiter) !=
DBUS_TYPE_INVALID) {
print_iter(label, name, &subiter);
dbus_message_iter_next(&subiter);
}
break;
case DBUS_TYPE_DICT_ENTRY:
dbus_message_iter_recurse(iter, &subiter);
entry = g_strconcat(name, " Key", NULL);
print_iter(label, entry, &subiter);
g_free(entry);
entry = g_strconcat(name, " Value", NULL);
dbus_message_iter_next(&subiter);
print_iter(label, entry, &subiter);
g_free(entry);
break;
default:
bt_shell_printf("%s%s has unsupported type\n", label, name);
break;
}
}
static void print_property(GDBusProxy *proxy, const char *name)
{
DBusMessageIter iter;
if (g_dbus_proxy_get_property(proxy, name, &iter) == FALSE)
return;
print_iter("\t", name, &iter);
}
static void print_uuid(const char *uuid)
{
const char *text;
text = bt_uuidstr_to_str(uuid);
if (text) {
char str[26];
unsigned int n;
str[sizeof(str) - 1] = '\0';
n = snprintf(str, sizeof(str), "%s", text);
if (n > sizeof(str) - 1) {
str[sizeof(str) - 2] = '.';
str[sizeof(str) - 3] = '.';
if (str[sizeof(str) - 4] == ' ')
str[sizeof(str) - 4] = '.';
n = sizeof(str) - 1;
}
bt_shell_printf("\tUUID: %s%*c(%s)\n", str, 26 - n, ' ', uuid);
} else
bt_shell_printf("\tUUID: %*c(%s)\n", 26, ' ', uuid);
}
static void print_uuids(GDBusProxy *proxy)
{
DBusMessageIter iter, value;
if (g_dbus_proxy_get_property(proxy, "UUIDs", &iter) == FALSE)
return;
dbus_message_iter_recurse(&iter, &value);
while (dbus_message_iter_get_arg_type(&value) == DBUS_TYPE_STRING) {
const char *uuid;
dbus_message_iter_get_basic(&value, &uuid);
print_uuid(uuid);
dbus_message_iter_next(&value);
}
}
static gboolean device_is_child(GDBusProxy *device, GDBusProxy *master)
{
DBusMessageIter iter;
const char *adapter, *path;
if (!master)
return FALSE;
if (g_dbus_proxy_get_property(device, "Adapter", &iter) == FALSE)
return FALSE;
dbus_message_iter_get_basic(&iter, &adapter);
path = g_dbus_proxy_get_path(master);
if (!strcmp(path, adapter))
return TRUE;
return FALSE;
}
static gboolean service_is_child(GDBusProxy *service)
{
DBusMessageIter iter;
const char *device;
if (g_dbus_proxy_get_property(service, "Device", &iter) == FALSE)
return FALSE;
dbus_message_iter_get_basic(&iter, &device);
if (!default_ctrl)
return FALSE;
return g_dbus_proxy_lookup(default_ctrl->devices, NULL, device,
"org.bluez.Device1") != NULL;
}
static struct adapter *find_parent(GDBusProxy *device)
{
GList *list;
for (list = g_list_first(ctrl_list); list; list = g_list_next(list)) {
struct adapter *adapter = list->data;
if (device_is_child(device, adapter->proxy) == TRUE)
return adapter;
}
return NULL;
}
static void set_default_device(GDBusProxy *proxy, const char *attribute)
{
char *desc = NULL;
DBusMessageIter iter;
const char *path;
default_dev = proxy;
if (proxy == NULL) {
default_attr = NULL;
goto done;
}
if (!g_dbus_proxy_get_property(proxy, "Alias", &iter)) {
if (!g_dbus_proxy_get_property(proxy, "Address", &iter))
goto done;
}
path = g_dbus_proxy_get_path(proxy);
dbus_message_iter_get_basic(&iter, &desc);
desc = g_strdup_printf(COLOR_BLUE "[%s%s%s]" COLOR_OFF "# ", desc,
attribute ? ":" : "",
attribute ? attribute + strlen(path) : "");
done:
bt_shell_set_prompt(desc ? desc : PROMPT_ON);
g_free(desc);
}
static void device_added(GDBusProxy *proxy)
{
DBusMessageIter iter;
struct adapter *adapter = find_parent(proxy);
if (!adapter) {
/* TODO: Error */
return;
}
adapter->devices = g_list_append(adapter->devices, proxy);
print_device(proxy, COLORED_NEW);
bt_shell_set_env(g_dbus_proxy_get_path(proxy), proxy);
if (default_dev)
return;
if (g_dbus_proxy_get_property(proxy, "Connected", &iter)) {
dbus_bool_t connected;
dbus_message_iter_get_basic(&iter, &connected);
if (connected)
set_default_device(proxy, NULL);
}
}
static struct adapter *find_ctrl(GList *source, const char *path);
static struct adapter *adapter_new(GDBusProxy *proxy)
{
struct adapter *adapter = g_malloc0(sizeof(struct adapter));
ctrl_list = g_list_append(ctrl_list, adapter);
if (!default_ctrl)
default_ctrl = adapter;
return adapter;
}
static void adapter_added(GDBusProxy *proxy)
{
struct adapter *adapter;
adapter = find_ctrl(ctrl_list, g_dbus_proxy_get_path(proxy));
if (!adapter)
adapter = adapter_new(proxy);
adapter->proxy = proxy;
print_adapter(proxy, COLORED_NEW);
bt_shell_set_env(g_dbus_proxy_get_path(proxy), proxy);
}
static void ad_manager_added(GDBusProxy *proxy)
{
struct adapter *adapter;
adapter = find_ctrl(ctrl_list, g_dbus_proxy_get_path(proxy));
if (!adapter)
adapter = adapter_new(proxy);
adapter->ad_proxy = proxy;
}
static void proxy_added(GDBusProxy *proxy, void *user_data)
{
const char *interface;
interface = g_dbus_proxy_get_interface(proxy);
if (!strcmp(interface, "org.bluez.Device1")) {
device_added(proxy);
} else if (!strcmp(interface, "org.bluez.Adapter1")) {
adapter_added(proxy);
} else if (!strcmp(interface, "org.bluez.AgentManager1")) {
if (!agent_manager) {
agent_manager = proxy;
if (auto_register_agent &&
!bt_shell_get_env("NON_INTERACTIVE"))
agent_register(dbus_conn, agent_manager,
auto_register_agent);
}
} else if (!strcmp(interface, "org.bluez.GattService1")) {
if (service_is_child(proxy))
gatt_add_service(proxy);
} else if (!strcmp(interface, "org.bluez.GattCharacteristic1")) {
gatt_add_characteristic(proxy);
} else if (!strcmp(interface, "org.bluez.GattDescriptor1")) {
gatt_add_descriptor(proxy);
} else if (!strcmp(interface, "org.bluez.GattManager1")) {
gatt_add_manager(proxy);
} else if (!strcmp(interface, "org.bluez.LEAdvertisingManager1")) {
ad_manager_added(proxy);
}
}
static void set_default_attribute(GDBusProxy *proxy)
{
const char *path;
default_attr = proxy;
path = g_dbus_proxy_get_path(proxy);
set_default_device(default_dev, path);
}
static void device_removed(GDBusProxy *proxy)
{
struct adapter *adapter = find_parent(proxy);
if (!adapter) {
/* TODO: Error */
return;
}
adapter->devices = g_list_remove(adapter->devices, proxy);
print_device(proxy, COLORED_DEL);
bt_shell_set_env(g_dbus_proxy_get_path(proxy), NULL);
if (default_dev == proxy)
set_default_device(NULL, NULL);
}
static void adapter_removed(GDBusProxy *proxy)
{
GList *ll;
for (ll = g_list_first(ctrl_list); ll; ll = g_list_next(ll)) {
struct adapter *adapter = ll->data;
if (adapter->proxy == proxy) {
print_adapter(proxy, COLORED_DEL);
bt_shell_set_env(g_dbus_proxy_get_path(proxy), NULL);
if (default_ctrl && default_ctrl->proxy == proxy) {
default_ctrl = NULL;
set_default_device(NULL, NULL);
}
ctrl_list = g_list_remove_link(ctrl_list, ll);
g_list_free(adapter->devices);
g_free(adapter);
g_list_free(ll);
return;
}
}
}
static void proxy_removed(GDBusProxy *proxy, void *user_data)
{
const char *interface;
interface = g_dbus_proxy_get_interface(proxy);
if (!strcmp(interface, "org.bluez.Device1")) {
device_removed(proxy);
} else if (!strcmp(interface, "org.bluez.Adapter1")) {
adapter_removed(proxy);
} else if (!strcmp(interface, "org.bluez.AgentManager1")) {
if (agent_manager == proxy) {
agent_manager = NULL;
if (auto_register_agent)
agent_unregister(dbus_conn, NULL);
}
} else if (!strcmp(interface, "org.bluez.GattService1")) {
gatt_remove_service(proxy);
if (default_attr == proxy)
set_default_attribute(NULL);
} else if (!strcmp(interface, "org.bluez.GattCharacteristic1")) {
gatt_remove_characteristic(proxy);
if (default_attr == proxy)
set_default_attribute(NULL);
} else if (!strcmp(interface, "org.bluez.GattDescriptor1")) {
gatt_remove_descriptor(proxy);
if (default_attr == proxy)
set_default_attribute(NULL);
} else if (!strcmp(interface, "org.bluez.GattManager1")) {
gatt_remove_manager(proxy);
} else if (!strcmp(interface, "org.bluez.LEAdvertisingManager1")) {
ad_unregister(dbus_conn, NULL);
}
}
static struct adapter *find_ctrl(GList *source, const char *path)
{
GList *list;
for (list = g_list_first(source); list; list = g_list_next(list)) {
struct adapter *adapter = list->data;
if (!strcasecmp(g_dbus_proxy_get_path(adapter->proxy), path))
return adapter;
}
return NULL;
}
static void property_changed(GDBusProxy *proxy, const char *name,
DBusMessageIter *iter, void *user_data)
{
const char *interface;
struct adapter *ctrl;
interface = g_dbus_proxy_get_interface(proxy);
if (!strcmp(interface, "org.bluez.Device1")) {
if (default_ctrl && device_is_child(proxy,
default_ctrl->proxy) == TRUE) {
DBusMessageIter addr_iter;
char *str;
if (g_dbus_proxy_get_property(proxy, "Address",
&addr_iter) == TRUE) {
const char *address;
dbus_message_iter_get_basic(&addr_iter,
&address);
str = g_strdup_printf("[" COLORED_CHG
"] Device %s ", address);
} else
str = g_strdup("");
if (strcmp(name, "Connected") == 0) {
dbus_bool_t connected;
dbus_message_iter_get_basic(iter, &connected);
if (connected && default_dev == NULL)
set_default_device(proxy, NULL);
else if (!connected && default_dev == proxy)
set_default_device(NULL, NULL);
}
print_iter(str, name, iter);
g_free(str);
}
} else if (!strcmp(interface, "org.bluez.Adapter1")) {
DBusMessageIter addr_iter;
char *str;
if (g_dbus_proxy_get_property(proxy, "Address",
&addr_iter) == TRUE) {
const char *address;
dbus_message_iter_get_basic(&addr_iter, &address);
str = g_strdup_printf("[" COLORED_CHG
"] Controller %s ", address);
} else
str = g_strdup("");
print_iter(str, name, iter);
g_free(str);
} else if (!strcmp(interface, "org.bluez.LEAdvertisingManager1")) {
DBusMessageIter addr_iter;
char *str;
ctrl = find_ctrl(ctrl_list, g_dbus_proxy_get_path(proxy));
if (!ctrl)
return;
if (g_dbus_proxy_get_property(ctrl->proxy, "Address",
&addr_iter) == TRUE) {
const char *address;
dbus_message_iter_get_basic(&addr_iter, &address);
str = g_strdup_printf("[" COLORED_CHG
"] Controller %s ",
address);
} else
str = g_strdup("");
print_iter(str, name, iter);
g_free(str);
} else if (proxy == default_attr) {
char *str;
str = g_strdup_printf("[" COLORED_CHG "] Attribute %s ",
g_dbus_proxy_get_path(proxy));
print_iter(str, name, iter);
g_free(str);
}
}
static void message_handler(DBusConnection *connection,
DBusMessage *message, void *user_data)
{
bt_shell_printf("[SIGNAL] %s.%s\n", dbus_message_get_interface(message),
dbus_message_get_member(message));
}
static struct adapter *find_ctrl_by_address(GList *source, const char *address)
{
GList *list;
for (list = g_list_first(source); list; list = g_list_next(list)) {
struct adapter *adapter = list->data;
DBusMessageIter iter;
const char *str;
if (g_dbus_proxy_get_property(adapter->proxy,
"Address", &iter) == FALSE)
continue;
dbus_message_iter_get_basic(&iter, &str);
if (!strcasecmp(str, address))
return adapter;
}
return NULL;
}
static GDBusProxy *find_proxy_by_address(GList *source, const char *address)
{
GList *list;
for (list = g_list_first(source); list; list = g_list_next(list)) {
GDBusProxy *proxy = list->data;
DBusMessageIter iter;
const char *str;
if (g_dbus_proxy_get_property(proxy, "Address", &iter) == FALSE)
continue;
dbus_message_iter_get_basic(&iter, &str);
if (!strcasecmp(str, address))
return proxy;
}
return NULL;
}
static gboolean check_default_ctrl(void)
{
if (!default_ctrl) {
bt_shell_printf("No default controller available\n");
return FALSE;
}
return TRUE;
}
static gboolean parse_argument(int argc, char *argv[], const char **arg_table,
const char *msg, dbus_bool_t *value,
const char **option)
{
const char **opt;
if (!strcmp(argv[1], "on") || !strcmp(argv[1], "yes")) {
*value = TRUE;
if (option)
*option = "";
return TRUE;
}
if (!strcmp(argv[1], "off") || !strcmp(argv[1], "no")) {
*value = FALSE;
return TRUE;
}
for (opt = arg_table; opt && *opt; opt++) {
if (strcmp(argv[1], *opt) == 0) {
*value = TRUE;
*option = *opt;
return TRUE;
}
}
bt_shell_printf("Invalid argument %s\n", argv[1]);
return FALSE;
}
static void cmd_list(int argc, char *argv[])
{
GList *list;
for (list = g_list_first(ctrl_list); list; list = g_list_next(list)) {
struct adapter *adapter = list->data;
print_adapter(adapter->proxy, NULL);
}
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_show(int argc, char *argv[])
{
struct adapter *adapter;
GDBusProxy *proxy;
DBusMessageIter iter;
const char *address;
if (argc < 2 || !strlen(argv[1])) {
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
proxy = default_ctrl->proxy;
} else {
adapter = find_ctrl_by_address(ctrl_list, argv[1]);
if (!adapter) {
bt_shell_printf("Controller %s not available\n",
argv[1]);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
proxy = adapter->proxy;
}
if (g_dbus_proxy_get_property(proxy, "Address", &iter) == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
dbus_message_iter_get_basic(&iter, &address);
if (g_dbus_proxy_get_property(proxy, "AddressType", &iter) == TRUE) {
const char *type;
dbus_message_iter_get_basic(&iter, &type);
bt_shell_printf("Controller %s (%s)\n", address, type);
} else {
bt_shell_printf("Controller %s\n", address);
}
print_property(proxy, "Name");
print_property(proxy, "Alias");
print_property(proxy, "Class");
print_property(proxy, "Powered");
print_property(proxy, "Discoverable");
print_property(proxy, "Pairable");
print_uuids(proxy);
print_property(proxy, "Modalias");
print_property(proxy, "Discovering");
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_select(int argc, char *argv[])
{
struct adapter *adapter;
adapter = find_ctrl_by_address(ctrl_list, argv[1]);
if (!adapter) {
bt_shell_printf("Controller %s not available\n", argv[1]);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
if (default_ctrl && default_ctrl->proxy == adapter->proxy)
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
default_ctrl = adapter;
print_adapter(adapter->proxy, NULL);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_devices(int argc, char *argv[])
{
GList *ll;
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
for (ll = g_list_first(default_ctrl->devices);
ll; ll = g_list_next(ll)) {
GDBusProxy *proxy = ll->data;
print_device(proxy, NULL);
}
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_paired_devices(int argc, char *argv[])
{
GList *ll;
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
for (ll = g_list_first(default_ctrl->devices);
ll; ll = g_list_next(ll)) {
GDBusProxy *proxy = ll->data;
DBusMessageIter iter;
dbus_bool_t paired;
if (g_dbus_proxy_get_property(proxy, "Paired", &iter) == FALSE)
continue;
dbus_message_iter_get_basic(&iter, &paired);
if (!paired)
continue;
print_device(proxy, NULL);
}
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void generic_callback(const DBusError *error, void *user_data)
{
char *str = user_data;
if (dbus_error_is_set(error)) {
bt_shell_printf("Failed to set %s: %s\n", str, error->name);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
} else {
bt_shell_printf("Changing %s succeeded\n", str);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
}
static void cmd_system_alias(int argc, char *argv[])
{
char *name;
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
name = g_strdup(argv[1]);
if (g_dbus_proxy_set_property_basic(default_ctrl->proxy, "Alias",
DBUS_TYPE_STRING, &name,
generic_callback, name, g_free) == TRUE)
return;
g_free(name);
}
static void cmd_reset_alias(int argc, char *argv[])
{
char *name;
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
name = g_strdup("");
if (g_dbus_proxy_set_property_basic(default_ctrl->proxy, "Alias",
DBUS_TYPE_STRING, &name,
generic_callback, name, g_free) == TRUE)
return;
g_free(name);
}
static void cmd_power(int argc, char *argv[])
{
dbus_bool_t powered;
char *str;
if (!parse_argument(argc, argv, NULL, NULL, &powered, NULL))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
str = g_strdup_printf("power %s", powered == TRUE ? "on" : "off");
if (g_dbus_proxy_set_property_basic(default_ctrl->proxy, "Powered",
DBUS_TYPE_BOOLEAN, &powered,
generic_callback, str, g_free) == TRUE)
return;
g_free(str);
}
static void cmd_pairable(int argc, char *argv[])
{
dbus_bool_t pairable;
char *str;
if (!parse_argument(argc, argv, NULL, NULL, &pairable, NULL))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
str = g_strdup_printf("pairable %s", pairable == TRUE ? "on" : "off");
if (g_dbus_proxy_set_property_basic(default_ctrl->proxy, "Pairable",
DBUS_TYPE_BOOLEAN, &pairable,
generic_callback, str, g_free) == TRUE)
return;
g_free(str);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static void cmd_discoverable(int argc, char *argv[])
{
dbus_bool_t discoverable;
char *str;
if (!parse_argument(argc, argv, NULL, NULL, &discoverable, NULL))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
str = g_strdup_printf("discoverable %s",
discoverable == TRUE ? "on" : "off");
if (g_dbus_proxy_set_property_basic(default_ctrl->proxy, "Discoverable",
DBUS_TYPE_BOOLEAN, &discoverable,
generic_callback, str, g_free) == TRUE)
return;
g_free(str);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static void cmd_agent(int argc, char *argv[])
{
dbus_bool_t enable;
const char *capability;
if (!parse_argument(argc, argv, agent_arguments, "capability",
&enable, &capability))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (enable == TRUE) {
g_free(auto_register_agent);
auto_register_agent = g_strdup(capability);
if (agent_manager)
agent_register(dbus_conn, agent_manager,
auto_register_agent);
else
bt_shell_printf("Agent registration enabled\n");
} else {
g_free(auto_register_agent);
auto_register_agent = NULL;
if (agent_manager)
agent_unregister(dbus_conn, agent_manager);
else
bt_shell_printf("Agent registration disabled\n");
}
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_default_agent(int argc, char *argv[])
{
agent_default(dbus_conn, agent_manager);
}
static void start_discovery_reply(DBusMessage *message, void *user_data)
{
dbus_bool_t enable = GPOINTER_TO_UINT(user_data);
DBusError error;
dbus_error_init(&error);
if (dbus_set_error_from_message(&error, message) == TRUE) {
bt_shell_printf("Failed to %s discovery: %s\n",
enable == TRUE ? "start" : "stop", error.name);
dbus_error_free(&error);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
bt_shell_printf("Discovery %s\n", enable ? "started" : "stopped");
/* Leave the discovery running even on noninteractive mode */
}
#define DISTANCE_VAL_INVALID 0x7FFF
static struct set_discovery_filter_args {
char *transport;
dbus_uint16_t rssi;
dbus_int16_t pathloss;
char **uuids;
size_t uuids_len;
dbus_bool_t duplicate;
bool set;
} filter = {
.rssi = DISTANCE_VAL_INVALID,
.pathloss = DISTANCE_VAL_INVALID,
.set = true,
};
static void set_discovery_filter_setup(DBusMessageIter *iter, void *user_data)
{
struct set_discovery_filter_args *args = user_data;
DBusMessageIter dict;
dbus_message_iter_open_container(iter, DBUS_TYPE_ARRAY,
DBUS_DICT_ENTRY_BEGIN_CHAR_AS_STRING
DBUS_TYPE_STRING_AS_STRING
DBUS_TYPE_VARIANT_AS_STRING
DBUS_DICT_ENTRY_END_CHAR_AS_STRING, &dict);
g_dbus_dict_append_array(&dict, "UUIDs", DBUS_TYPE_STRING,
&args->uuids,
args->uuids_len);
if (args->pathloss != DISTANCE_VAL_INVALID)
g_dbus_dict_append_entry(&dict, "Pathloss", DBUS_TYPE_UINT16,
&args->pathloss);
if (args->rssi != DISTANCE_VAL_INVALID)
g_dbus_dict_append_entry(&dict, "RSSI", DBUS_TYPE_INT16,
&args->rssi);
if (args->transport != NULL)
g_dbus_dict_append_entry(&dict, "Transport", DBUS_TYPE_STRING,
&args->transport);
if (args->duplicate)
g_dbus_dict_append_entry(&dict, "DuplicateData",
DBUS_TYPE_BOOLEAN,
&args->duplicate);
dbus_message_iter_close_container(iter, &dict);
}
static void set_discovery_filter_reply(DBusMessage *message, void *user_data)
{
DBusError error;
dbus_error_init(&error);
if (dbus_set_error_from_message(&error, message) == TRUE) {
bt_shell_printf("SetDiscoveryFilter failed: %s\n", error.name);
dbus_error_free(&error);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
filter.set = true;
bt_shell_printf("SetDiscoveryFilter success\n");
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void set_discovery_filter(void)
{
if (check_default_ctrl() == FALSE || filter.set)
return;
if (g_dbus_proxy_method_call(default_ctrl->proxy, "SetDiscoveryFilter",
set_discovery_filter_setup, set_discovery_filter_reply,
&filter, NULL) == FALSE) {
bt_shell_printf("Failed to set discovery filter\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
filter.set = true;
}
static void cmd_scan(int argc, char *argv[])
{
dbus_bool_t enable;
const char *method;
if (!parse_argument(argc, argv, NULL, NULL, &enable, NULL))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (enable == TRUE) {
set_discovery_filter();
method = "StartDiscovery";
} else
method = "StopDiscovery";
if (g_dbus_proxy_method_call(default_ctrl->proxy, method,
NULL, start_discovery_reply,
GUINT_TO_POINTER(enable), NULL) == FALSE) {
bt_shell_printf("Failed to %s discovery\n",
enable == TRUE ? "start" : "stop");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
}
static void cmd_scan_filter_uuids(int argc, char *argv[])
{
if (argc < 2 || !strlen(argv[1])) {
char **uuid;
for (uuid = filter.uuids; uuid && *uuid; uuid++)
print_uuid(*uuid);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
g_strfreev(filter.uuids);
filter.uuids = NULL;
filter.uuids_len = 0;
if (!strcmp(argv[1], "all"))
goto commit;
filter.uuids = g_strdupv(&argv[1]);
if (!filter.uuids) {
bt_shell_printf("Failed to parse input\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
filter.uuids_len = g_strv_length(filter.uuids);
commit:
filter.set = false;
}
static void cmd_scan_filter_rssi(int argc, char *argv[])
{
if (argc < 2 || !strlen(argv[1])) {
if (filter.rssi != DISTANCE_VAL_INVALID)
bt_shell_printf("RSSI: %d\n", filter.rssi);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
filter.pathloss = DISTANCE_VAL_INVALID;
filter.rssi = atoi(argv[1]);
filter.set = false;
}
static void cmd_scan_filter_pathloss(int argc, char *argv[])
{
if (argc < 2 || !strlen(argv[1])) {
if (filter.pathloss != DISTANCE_VAL_INVALID)
bt_shell_printf("Pathloss: %d\n",
filter.pathloss);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
filter.rssi = DISTANCE_VAL_INVALID;
filter.pathloss = atoi(argv[1]);
filter.set = false;
}
static void cmd_scan_filter_transport(int argc, char *argv[])
{
if (argc < 2 || !strlen(argv[1])) {
if (filter.transport)
bt_shell_printf("Transport: %s\n",
filter.transport);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
g_free(filter.transport);
filter.transport = g_strdup(argv[1]);
filter.set = false;
}
static void cmd_scan_filter_duplicate_data(int argc, char *argv[])
{
if (argc < 2 || !strlen(argv[1])) {
bt_shell_printf("DuplicateData: %s\n",
filter.duplicate ? "on" : "off");
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
if (!strcmp(argv[1], "on"))
filter.duplicate = true;
else if (!strcmp(argv[1], "off"))
filter.duplicate = false;
else {
bt_shell_printf("Invalid option: %s\n", argv[1]);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
filter.set = false;
}
static void filter_clear_uuids(void)
{
g_strfreev(filter.uuids);
filter.uuids = NULL;
filter.uuids_len = 0;
}
static void filter_clear_rssi(void)
{
filter.rssi = DISTANCE_VAL_INVALID;
}
static void filter_clear_pathloss(void)
{
filter.pathloss = DISTANCE_VAL_INVALID;
}
static void filter_clear_transport(void)
{
g_free(filter.transport);
filter.transport = NULL;
}
static void filter_clear_duplicate(void)
{
filter.duplicate = false;
}
struct clear_entry {
const char *name;
void (*clear) (void);
};
static const struct clear_entry filter_clear[] = {
{ "uuids", filter_clear_uuids },
{ "rssi", filter_clear_rssi },
{ "pathloss", filter_clear_pathloss },
{ "transport", filter_clear_transport },
{ "duplicate-data", filter_clear_duplicate },
{}
};
static char *filter_clear_generator(const char *text, int state)
{
static int index, len;
const char *arg;
if (!state) {
index = 0;
len = strlen(text);
}
while ((arg = filter_clear[index].name)) {
index++;
if (!strncmp(arg, text, len))
return strdup(arg);
}
return NULL;
}
static gboolean data_clear(const struct clear_entry *entry_table,
const char *name)
{
const struct clear_entry *entry;
bool all = false;
if (!name || !strlen(name) || !strcmp("all", name))
all = true;
for (entry = entry_table; entry && entry->name; entry++) {
if (all || !strcmp(entry->name, name)) {
entry->clear();
if (!all)
goto done;
}
}
if (!all) {
bt_shell_printf("Invalid argument %s\n", name);
return FALSE;
}
done:
return TRUE;
}
static void cmd_scan_filter_clear(int argc, char *argv[])
{
bool all = false;
if (argc < 2 || !strlen(argv[1]))
all = true;
if (!data_clear(filter_clear, all ? "all" : argv[1]))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
filter.set = false;
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
set_discovery_filter();
}
static struct GDBusProxy *find_device(int argc, char *argv[])
{
GDBusProxy *proxy;
if (argc < 2 || !strlen(argv[1])) {
if (default_dev)
return default_dev;
bt_shell_printf("Missing device address argument\n");
return NULL;
}
if (check_default_ctrl() == FALSE)
return NULL;
proxy = find_proxy_by_address(default_ctrl->devices, argv[1]);
if (!proxy) {
bt_shell_printf("Device %s not available\n", argv[1]);
return NULL;
}
return proxy;
}
static void cmd_info(int argc, char *argv[])
{
GDBusProxy *proxy;
DBusMessageIter iter;
const char *address;
proxy = find_device(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (g_dbus_proxy_get_property(proxy, "Address", &iter) == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
dbus_message_iter_get_basic(&iter, &address);
if (g_dbus_proxy_get_property(proxy, "AddressType", &iter) == TRUE) {
const char *type;
dbus_message_iter_get_basic(&iter, &type);
bt_shell_printf("Device %s (%s)\n", address, type);
} else {
bt_shell_printf("Device %s\n", address);
}
print_property(proxy, "Name");
print_property(proxy, "Alias");
print_property(proxy, "Class");
print_property(proxy, "Appearance");
print_property(proxy, "Icon");
print_property(proxy, "Paired");
print_property(proxy, "Trusted");
print_property(proxy, "Blocked");
print_property(proxy, "Connected");
print_property(proxy, "LegacyPairing");
print_uuids(proxy);
print_property(proxy, "Modalias");
print_property(proxy, "ManufacturerData");
print_property(proxy, "ServiceData");
print_property(proxy, "RSSI");
print_property(proxy, "TxPower");
print_property(proxy, "AdvertisingFlags");
print_property(proxy, "AdvertisingData");
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void pair_reply(DBusMessage *message, void *user_data)
{
DBusError error;
dbus_error_init(&error);
if (dbus_set_error_from_message(&error, message) == TRUE) {
bt_shell_printf("Failed to pair: %s\n", error.name);
dbus_error_free(&error);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
bt_shell_printf("Pairing successful\n");
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static const char *proxy_address(GDBusProxy *proxy)
{
DBusMessageIter iter;
const char *addr;
if (!g_dbus_proxy_get_property(proxy, "Address", &iter))
return NULL;
dbus_message_iter_get_basic(&iter, &addr);
return addr;
}
static void cmd_pair(int argc, char *argv[])
{
GDBusProxy *proxy;
proxy = find_device(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (g_dbus_proxy_method_call(proxy, "Pair", NULL, pair_reply,
NULL, NULL) == FALSE) {
bt_shell_printf("Failed to pair\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
bt_shell_printf("Attempting to pair with %s\n", proxy_address(proxy));
}
static void cmd_trust(int argc, char *argv[])
{
GDBusProxy *proxy;
dbus_bool_t trusted;
char *str;
proxy = find_device(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
trusted = TRUE;
str = g_strdup_printf("%s trust", proxy_address(proxy));
if (g_dbus_proxy_set_property_basic(proxy, "Trusted",
DBUS_TYPE_BOOLEAN, &trusted,
generic_callback, str, g_free) == TRUE)
return;
g_free(str);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static void cmd_untrust(int argc, char *argv[])
{
GDBusProxy *proxy;
dbus_bool_t trusted;
char *str;
proxy = find_device(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
trusted = FALSE;
str = g_strdup_printf("%s untrust", proxy_address(proxy));
if (g_dbus_proxy_set_property_basic(proxy, "Trusted",
DBUS_TYPE_BOOLEAN, &trusted,
generic_callback, str, g_free) == TRUE)
return;
g_free(str);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static void cmd_block(int argc, char *argv[])
{
GDBusProxy *proxy;
dbus_bool_t blocked;
char *str;
proxy = find_device(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
blocked = TRUE;
str = g_strdup_printf("%s block", proxy_address(proxy));
if (g_dbus_proxy_set_property_basic(proxy, "Blocked",
DBUS_TYPE_BOOLEAN, &blocked,
generic_callback, str, g_free) == TRUE)
return;
g_free(str);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static void cmd_unblock(int argc, char *argv[])
{
GDBusProxy *proxy;
dbus_bool_t blocked;
char *str;
proxy = find_device(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
blocked = FALSE;
str = g_strdup_printf("%s unblock", proxy_address(proxy));
if (g_dbus_proxy_set_property_basic(proxy, "Blocked",
DBUS_TYPE_BOOLEAN, &blocked,
generic_callback, str, g_free) == TRUE)
return;
g_free(str);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static void remove_device_reply(DBusMessage *message, void *user_data)
{
DBusError error;
dbus_error_init(&error);
if (dbus_set_error_from_message(&error, message) == TRUE) {
bt_shell_printf("Failed to remove device: %s\n", error.name);
dbus_error_free(&error);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
bt_shell_printf("Device has been removed\n");
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void remove_device_setup(DBusMessageIter *iter, void *user_data)
{
const char *path = user_data;
dbus_message_iter_append_basic(iter, DBUS_TYPE_OBJECT_PATH, &path);
}
static void remove_device(GDBusProxy *proxy)
{
char *path;
path = g_strdup(g_dbus_proxy_get_path(proxy));
if (!default_ctrl)
return;
if (g_dbus_proxy_method_call(default_ctrl->proxy, "RemoveDevice",
remove_device_setup,
remove_device_reply,
path, g_free) == FALSE) {
bt_shell_printf("Failed to remove device\n");
g_free(path);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
}
static void cmd_remove(int argc, char *argv[])
{
GDBusProxy *proxy;
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (strcmp(argv[1], "*") == 0) {
GList *list;
for (list = default_ctrl->devices; list;
list = g_list_next(list)) {
GDBusProxy *proxy = list->data;
remove_device(proxy);
}
return;
}
proxy = find_proxy_by_address(default_ctrl->devices, argv[1]);
if (!proxy) {
bt_shell_printf("Device %s not available\n", argv[1]);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
remove_device(proxy);
}
static void connect_reply(DBusMessage *message, void *user_data)
{
GDBusProxy *proxy = user_data;
DBusError error;
dbus_error_init(&error);
if (dbus_set_error_from_message(&error, message) == TRUE) {
bt_shell_printf("Failed to connect: %s\n", error.name);
dbus_error_free(&error);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
bt_shell_printf("Connection successful\n");
set_default_device(proxy, NULL);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_connect(int argc, char *argv[])
{
GDBusProxy *proxy;
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
proxy = find_proxy_by_address(default_ctrl->devices, argv[1]);
if (!proxy) {
bt_shell_printf("Device %s not available\n", argv[1]);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
if (g_dbus_proxy_method_call(proxy, "Connect", NULL, connect_reply,
proxy, NULL) == FALSE) {
bt_shell_printf("Failed to connect\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
bt_shell_printf("Attempting to connect to %s\n", argv[1]);
}
static void disconn_reply(DBusMessage *message, void *user_data)
{
GDBusProxy *proxy = user_data;
DBusError error;
dbus_error_init(&error);
if (dbus_set_error_from_message(&error, message) == TRUE) {
bt_shell_printf("Failed to disconnect: %s\n", error.name);
dbus_error_free(&error);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
bt_shell_printf("Successful disconnected\n");
if (proxy == default_dev)
set_default_device(NULL, NULL);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_disconn(int argc, char *argv[])
{
GDBusProxy *proxy;
proxy = find_device(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (g_dbus_proxy_method_call(proxy, "Disconnect", NULL, disconn_reply,
proxy, NULL) == FALSE) {
bt_shell_printf("Failed to disconnect\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
bt_shell_printf("Attempting to disconnect from %s\n",
proxy_address(proxy));
}
static void cmd_list_attributes(int argc, char *argv[])
{
GDBusProxy *proxy;
proxy = find_device(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_list_attributes(g_dbus_proxy_get_path(proxy));
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_set_alias(int argc, char *argv[])
{
char *name;
if (!default_dev) {
bt_shell_printf("No device connected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
name = g_strdup(argv[1]);
if (g_dbus_proxy_set_property_basic(default_dev, "Alias",
DBUS_TYPE_STRING, &name,
generic_callback, name, g_free) == TRUE)
return;
g_free(name);
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static void cmd_select_attribute(int argc, char *argv[])
{
GDBusProxy *proxy;
if (!default_dev) {
bt_shell_printf("No device connected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
proxy = gatt_select_attribute(default_attr, argv[1]);
if (proxy) {
set_default_attribute(proxy);
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static struct GDBusProxy *find_attribute(int argc, char *argv[])
{
GDBusProxy *proxy;
if (argc < 2 || !strlen(argv[1])) {
if (default_attr)
return default_attr;
bt_shell_printf("Missing attribute argument\n");
return NULL;
}
proxy = gatt_select_attribute(default_attr, argv[1]);
if (!proxy) {
bt_shell_printf("Attribute %s not available\n", argv[1]);
return NULL;
}
return proxy;
}
static void cmd_attribute_info(int argc, char *argv[])
{
GDBusProxy *proxy;
DBusMessageIter iter;
const char *iface, *uuid, *text;
proxy = find_attribute(argc, argv);
if (!proxy)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (g_dbus_proxy_get_property(proxy, "UUID", &iter) == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
dbus_message_iter_get_basic(&iter, &uuid);
text = bt_uuidstr_to_str(uuid);
if (!text)
text = g_dbus_proxy_get_path(proxy);
iface = g_dbus_proxy_get_interface(proxy);
if (!strcmp(iface, "org.bluez.GattService1")) {
bt_shell_printf("Service - %s\n", text);
print_property(proxy, "UUID");
print_property(proxy, "Primary");
print_property(proxy, "Characteristics");
print_property(proxy, "Includes");
} else if (!strcmp(iface, "org.bluez.GattCharacteristic1")) {
bt_shell_printf("Characteristic - %s\n", text);
print_property(proxy, "UUID");
print_property(proxy, "Service");
print_property(proxy, "Value");
print_property(proxy, "Notifying");
print_property(proxy, "Flags");
print_property(proxy, "Descriptors");
} else if (!strcmp(iface, "org.bluez.GattDescriptor1")) {
bt_shell_printf("Descriptor - %s\n", text);
print_property(proxy, "UUID");
print_property(proxy, "Characteristic");
print_property(proxy, "Value");
}
return bt_shell_noninteractive_quit(EXIT_SUCCESS);
}
static void cmd_read(int argc, char *argv[])
{
if (!default_attr) {
bt_shell_printf("No attribute selected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
gatt_read_attribute(default_attr, argc, argv);
}
static void cmd_write(int argc, char *argv[])
{
if (!default_attr) {
bt_shell_printf("No attribute selected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
gatt_write_attribute(default_attr, argc, argv);
}
static void cmd_acquire_write(int argc, char *argv[])
{
if (!default_attr) {
bt_shell_printf("No attribute selected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
gatt_acquire_write(default_attr, argv[1]);
}
static void cmd_release_write(int argc, char *argv[])
{
if (!default_attr) {
bt_shell_printf("No attribute selected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
gatt_release_write(default_attr, argv[1]);
}
static void cmd_acquire_notify(int argc, char *argv[])
{
if (!default_attr) {
bt_shell_printf("No attribute selected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
gatt_acquire_notify(default_attr, argv[1]);
}
static void cmd_release_notify(int argc, char *argv[])
{
if (!default_attr) {
bt_shell_printf("No attribute selected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
gatt_release_notify(default_attr, argv[1]);
}
static void cmd_notify(int argc, char *argv[])
{
dbus_bool_t enable;
if (!parse_argument(argc, argv, NULL, NULL, &enable, NULL))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (!default_attr) {
bt_shell_printf("No attribute selected\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
gatt_notify_attribute(default_attr, enable ? true : false);
}
static void cmd_register_app(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_register_app(dbus_conn, default_ctrl->proxy, argc, argv);
}
static void cmd_unregister_app(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_unregister_app(dbus_conn, default_ctrl->proxy);
}
static void cmd_register_service(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_register_service(dbus_conn, default_ctrl->proxy, argc, argv);
}
static void cmd_register_includes(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_register_include(dbus_conn, default_ctrl->proxy, argc, argv);
}
static void cmd_unregister_includes(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_unregister_include(dbus_conn, default_ctrl->proxy, argc, argv);
}
static void cmd_unregister_service(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_unregister_service(dbus_conn, default_ctrl->proxy, argc, argv);
}
static void cmd_register_characteristic(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_register_chrc(dbus_conn, default_ctrl->proxy, argc, argv);
}
static void cmd_unregister_characteristic(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_unregister_chrc(dbus_conn, default_ctrl->proxy, argc, argv);
}
static void cmd_register_descriptor(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_register_desc(dbus_conn, default_ctrl->proxy, argc, argv);
}
static void cmd_unregister_descriptor(int argc, char *argv[])
{
if (check_default_ctrl() == FALSE)
return bt_shell_noninteractive_quit(EXIT_FAILURE);
gatt_unregister_desc(dbus_conn, default_ctrl->proxy, argc, argv);
}
static char *generic_generator(const char *text, int state,
GList *source, const char *property)
{
static int index, len;
GList *list;
if (!state) {
index = 0;
len = strlen(text);
}
for (list = g_list_nth(source, index); list;
list = g_list_next(list)) {
GDBusProxy *proxy = list->data;
DBusMessageIter iter;
const char *str;
index++;
if (g_dbus_proxy_get_property(proxy, property, &iter) == FALSE)
continue;
dbus_message_iter_get_basic(&iter, &str);
if (!strncasecmp(str, text, len))
return strdup(str);
}
return NULL;
}
static char *ctrl_generator(const char *text, int state)
{
static int index = 0;
static int len = 0;
GList *list;
if (!state) {
index = 0;
len = strlen(text);
}
for (list = g_list_nth(ctrl_list, index); list;
list = g_list_next(list)) {
struct adapter *adapter = list->data;
DBusMessageIter iter;
const char *str;
index++;
if (g_dbus_proxy_get_property(adapter->proxy,
"Address", &iter) == FALSE)
continue;
dbus_message_iter_get_basic(&iter, &str);
if (!strncasecmp(str, text, len))
return strdup(str);
}
return NULL;
}
static char *dev_generator(const char *text, int state)
{
return generic_generator(text, state,
default_ctrl ? default_ctrl->devices : NULL, "Address");
}
static char *attribute_generator(const char *text, int state)
{
return gatt_attribute_generator(text, state);
}
static char *argument_generator(const char *text, int state,
const char *args_list[])
{
static int index, len;
const char *arg;
if (!state) {
index = 0;
len = strlen(text);
}
while ((arg = args_list[index])) {
index++;
if (!strncmp(arg, text, len))
return strdup(arg);
}
return NULL;
}
static char *capability_generator(const char *text, int state)
{
return argument_generator(text, state, agent_arguments);
}
static void cmd_advertise(int argc, char *argv[])
{
dbus_bool_t enable;
const char *type;
if (!parse_argument(argc, argv, ad_arguments, "type",
&enable, &type))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
if (!default_ctrl || !default_ctrl->ad_proxy) {
bt_shell_printf("LEAdvertisingManager not found\n");
bt_shell_noninteractive_quit(EXIT_FAILURE);
}
if (enable == TRUE)
ad_register(dbus_conn, default_ctrl->ad_proxy, type);
else
ad_unregister(dbus_conn, default_ctrl->ad_proxy);
}
static char *ad_generator(const char *text, int state)
{
return argument_generator(text, state, ad_arguments);
}
static void cmd_advertise_uuids(int argc, char *argv[])
{
ad_advertise_uuids(dbus_conn, argc, argv);
}
static void cmd_advertise_service(int argc, char *argv[])
{
ad_advertise_service(dbus_conn, argc, argv);
}
static void cmd_advertise_manufacturer(int argc, char *argv[])
{
ad_advertise_manufacturer(dbus_conn, argc, argv);
}
static void cmd_advertise_data(int argc, char *argv[])
{
ad_advertise_data(dbus_conn, argc, argv);
}
static void cmd_advertise_discoverable(int argc, char *argv[])
{
dbus_bool_t discoverable;
if (argc < 2) {
ad_advertise_discoverable(dbus_conn, NULL);
return;
}
if (!parse_argument(argc, argv, NULL, NULL, &discoverable, NULL))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
ad_advertise_discoverable(dbus_conn, &discoverable);
}
static void cmd_advertise_discoverable_timeout(int argc, char *argv[])
{
long int value;
char *endptr = NULL;
if (argc < 2) {
ad_advertise_discoverable_timeout(dbus_conn, NULL);
return;
}
value = strtol(argv[1], &endptr, 0);
if (!endptr || *endptr != '\0' || value > UINT16_MAX) {
bt_shell_printf("Invalid argument\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
ad_advertise_discoverable_timeout(dbus_conn, &value);
}
static void cmd_advertise_tx_power(int argc, char *argv[])
{
dbus_bool_t powered;
if (argc < 2) {
ad_advertise_tx_power(dbus_conn, NULL);
return;
}
if (!parse_argument(argc, argv, NULL, NULL, &powered, NULL))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
ad_advertise_tx_power(dbus_conn, &powered);
}
static void cmd_advertise_name(int argc, char *argv[])
{
if (argc < 2) {
ad_advertise_local_name(dbus_conn, NULL);
return;
}
if (strcmp(argv[1], "on") == 0 || strcmp(argv[1], "yes") == 0) {
ad_advertise_name(dbus_conn, true);
return;
}
if (strcmp(argv[1], "off") == 0 || strcmp(argv[1], "no") == 0) {
ad_advertise_name(dbus_conn, false);
return;
}
ad_advertise_local_name(dbus_conn, argv[1]);
}
static void cmd_advertise_appearance(int argc, char *argv[])
{
long int value;
char *endptr = NULL;
if (argc < 2) {
ad_advertise_local_appearance(dbus_conn, NULL);
return;
}
if (strcmp(argv[1], "on") == 0 || strcmp(argv[1], "yes") == 0) {
ad_advertise_appearance(dbus_conn, true);
return;
}
if (strcmp(argv[1], "off") == 0 || strcmp(argv[1], "no") == 0) {
ad_advertise_appearance(dbus_conn, false);
return;
}
value = strtol(argv[1], &endptr, 0);
if (!endptr || *endptr != '\0' || value > UINT16_MAX) {
bt_shell_printf("Invalid argument\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
ad_advertise_local_appearance(dbus_conn, &value);
}
static void cmd_advertise_duration(int argc, char *argv[])
{
long int value;
char *endptr = NULL;
if (argc < 2) {
ad_advertise_duration(dbus_conn, NULL);
return;
}
value = strtol(argv[1], &endptr, 0);
if (!endptr || *endptr != '\0' || value > UINT16_MAX) {
bt_shell_printf("Invalid argument\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
ad_advertise_duration(dbus_conn, &value);
}
static void cmd_advertise_timeout(int argc, char *argv[])
{
long int value;
char *endptr = NULL;
if (argc < 2) {
ad_advertise_timeout(dbus_conn, NULL);
return;
}
value = strtol(argv[1], &endptr, 0);
if (!endptr || *endptr != '\0' || value > UINT16_MAX) {
bt_shell_printf("Invalid argument\n");
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
ad_advertise_timeout(dbus_conn, &value);
}
static void ad_clear_uuids(void)
{
ad_disable_uuids(dbus_conn);
}
static void ad_clear_service(void)
{
ad_disable_service(dbus_conn);
}
static void ad_clear_manufacturer(void)
{
ad_disable_manufacturer(dbus_conn);
}
static void ad_clear_data(void)
{
ad_disable_data(dbus_conn);
}
static void ad_clear_tx_power(void)
{
dbus_bool_t powered = false;
ad_advertise_tx_power(dbus_conn, &powered);
}
static void ad_clear_name(void)
{
ad_advertise_name(dbus_conn, false);
}
static void ad_clear_appearance(void)
{
ad_advertise_appearance(dbus_conn, false);
}
static void ad_clear_duration(void)
{
long int value = 0;
ad_advertise_duration(dbus_conn, &value);
}
static void ad_clear_timeout(void)
{
long int value = 0;
ad_advertise_timeout(dbus_conn, &value);
}
static const struct clear_entry ad_clear[] = {
{ "uuids", ad_clear_uuids },
{ "service", ad_clear_service },
{ "manufacturer", ad_clear_manufacturer },
{ "data", ad_clear_data },
{ "tx-power", ad_clear_tx_power },
{ "name", ad_clear_name },
{ "appearance", ad_clear_appearance },
{ "duration", ad_clear_duration },
{ "timeout", ad_clear_timeout },
{}
};
static void cmd_ad_clear(int argc, char *argv[])
{
bool all = false;
if (argc < 2 || !strlen(argv[1]))
all = true;
if(!data_clear(ad_clear, all ? "all" : argv[1]))
return bt_shell_noninteractive_quit(EXIT_FAILURE);
}
static const struct bt_shell_menu advertise_menu = {
.name = "advertise",
.desc = "Advertise Options Submenu",
.entries = {
{ "uuids", "[uuid1 uuid2 ...]", cmd_advertise_uuids,
"Set/Get advertise uuids" },
{ "service", "[uuid] [data=xx xx ...]", cmd_advertise_service,
"Set/Get advertise service data" },
{ "manufacturer", "[id] [data=xx xx ...]",
cmd_advertise_manufacturer,
"Set/Get advertise manufacturer data" },
{ "data", "[type] [data=xx xx ...]", cmd_advertise_data,
"Set/Get advertise data" },
{ "discoverable", "[on/off]", cmd_advertise_discoverable,
"Set/Get advertise discoverable" },
{ "discoverable-timeout", "[seconds]",
cmd_advertise_discoverable_timeout,
"Set/Get advertise discoverable timeout" },
{ "tx-power", "[on/off]", cmd_advertise_tx_power,
"Show/Enable/Disable TX power to be advertised",
NULL },
{ "name", "[on/off/name]", cmd_advertise_name,
"Configure local name to be advertised" },
{ "appearance", "[on/off/value]", cmd_advertise_appearance,
"Configure custom appearance to be advertised" },
{ "duration", "[seconds]", cmd_advertise_duration,
"Set/Get advertise duration" },
{ "timeout", "[seconds]", cmd_advertise_timeout,
"Set/Get advertise timeout" },
{ "clear", "[uuids/service/manufacturer/config-name...]", cmd_ad_clear,
"Clear advertise config" },
{ } },
};
static const struct bt_shell_menu scan_menu = {
.name = "scan",
.desc = "Scan Options Submenu",
.entries = {
{ "uuids", "[all/uuid1 uuid2 ...]", cmd_scan_filter_uuids,
"Set/Get UUIDs filter" },
{ "rssi", "[rssi]", cmd_scan_filter_rssi,
"Set/Get RSSI filter, and clears pathloss" },
{ "pathloss", "[pathloss]", cmd_scan_filter_pathloss,
"Set/Get Pathloss filter, and clears RSSI" },
{ "transport", "[transport]", cmd_scan_filter_transport,
"Set/Get transport filter" },
{ "duplicate-data", "[on/off]", cmd_scan_filter_duplicate_data,
"Set/Get duplicate data filter",
NULL },
{ "clear", "[uuids/rssi/pathloss/transport/duplicate-data]",
cmd_scan_filter_clear,
"Clears discovery filter.",
filter_clear_generator },
{ } },
};
static const struct bt_shell_menu gatt_menu = {
.name = "gatt",
.desc = "Generic Attribute Submenu",
.entries = {
{ "list-attributes", "[dev]", cmd_list_attributes, "List attributes",
dev_generator },
{ "select-attribute", "<attribute/UUID>", cmd_select_attribute,
"Select attribute", attribute_generator },
{ "attribute-info", "[attribute/UUID]", cmd_attribute_info,
"Select attribute", attribute_generator },
{ "read", "[offset]", cmd_read, "Read attribute value" },
{ "write", "<data=xx xx ...> [offset]", cmd_write,
"Write attribute value" },
{ "acquire-write", NULL, cmd_acquire_write,
"Acquire Write file descriptor" },
{ "release-write", NULL, cmd_release_write,
"Release Write file descriptor" },
{ "acquire-notify", NULL, cmd_acquire_notify,
"Acquire Notify file descriptor" },
{ "release-notify", NULL, cmd_release_notify,
"Release Notify file descriptor" },
{ "notify", "<on/off>", cmd_notify, "Notify attribute value",
NULL },
{ "register-application", "[UUID ...]", cmd_register_app,
"Register profile to connect" },
{ "unregister-application", NULL, cmd_unregister_app,
"Unregister profile" },
{ "register-service", "<UUID>", cmd_register_service,
"Register application service." },
{ "unregister-service", "<UUID/object>", cmd_unregister_service,
"Unregister application service" },
{ "register-includes", "<UUID>", cmd_register_includes,
"Register as Included service in." },
{ "unregister-includes", "<Service-UUID><Inc-UUID>",
cmd_unregister_includes,
"Unregister Included service." },
{ "register-characteristic", "<UUID> <Flags=read,write,notify...> "
, cmd_register_characteristic,
"Register application characteristic" },
{ "unregister-characteristic", "<UUID/object>",
cmd_unregister_characteristic,
"Unregister application characteristic" },
{ "register-descriptor", "<UUID> <Flags=read,write...>",
cmd_register_descriptor,
"Register application descriptor" },
{ "unregister-descriptor", "<UUID/object>",
cmd_unregister_descriptor,
"Unregister application descriptor" },
{ } },
};
static const struct bt_shell_menu main_menu = {
.name = "main",
.entries = {
{ "list", NULL, cmd_list, "List available controllers" },
{ "show", "[ctrl]", cmd_show, "Controller information",
ctrl_generator },
{ "select", "<ctrl>", cmd_select, "Select default controller",
ctrl_generator },
{ "devices", NULL, cmd_devices, "List available devices" },
{ "paired-devices", NULL, cmd_paired_devices,
"List paired devices"},
{ "system-alias", "<name>", cmd_system_alias,
"Set controller alias" },
{ "reset-alias", NULL, cmd_reset_alias,
"Reset controller alias" },
{ "power", "<on/off>", cmd_power, "Set controller power",
NULL },
{ "pairable", "<on/off>", cmd_pairable,
"Set controller pairable mode",
NULL },
{ "discoverable", "<on/off>", cmd_discoverable,
"Set controller discoverable mode",
NULL },
{ "agent", "<on/off/capability>", cmd_agent,
"Enable/disable agent with given capability",
capability_generator},
{ "default-agent",NULL, cmd_default_agent,
"Set agent as the default one" },
{ "advertise", "<on/off/type>", cmd_advertise,
"Enable/disable advertising with given type",
ad_generator},
{ "set-alias", "<alias>", cmd_set_alias, "Set device alias" },
{ "scan", "<on/off>", cmd_scan, "Scan for devices", NULL },
{ "info", "[dev]", cmd_info, "Device information",
dev_generator },
{ "pair", "[dev]", cmd_pair, "Pair with device",
dev_generator },
{ "trust", "[dev]", cmd_trust, "Trust device",
dev_generator },
{ "untrust", "[dev]", cmd_untrust, "Untrust device",
dev_generator },
{ "block", "[dev]", cmd_block, "Block device",
dev_generator },
{ "unblock", "[dev]", cmd_unblock, "Unblock device",
dev_generator },
{ "remove", "<dev>", cmd_remove, "Remove device",
dev_generator },
{ "connect", "<dev>", cmd_connect, "Connect device",
dev_generator },
{ "disconnect", "[dev]", cmd_disconn, "Disconnect device",
dev_generator },
{ } },
};
static const struct option options[] = {
{ "agent", required_argument, 0, 'a' },
{ 0, 0, 0, 0 }
};
static const char *agent_option;
static const char **optargs[] = {
&agent_option
};
static const char *help[] = {
"Register agent handler: <capability>"
};
static const struct bt_shell_opt opt = {
.options = options,
.optno = sizeof(options) / sizeof(struct option),
.optstr = "a:",
.optarg = optargs,
.help = help,
};
static void client_ready(GDBusClient *client, void *user_data)
{
setup_standard_input();
}
int main(int argc, char *argv[])
{
GDBusClient *client;
int status;
bt_shell_init(argc, argv, &opt);
bt_shell_set_menu(&main_menu);
bt_shell_add_submenu(&advertise_menu);
bt_shell_add_submenu(&scan_menu);
bt_shell_add_submenu(&gatt_menu);
bt_shell_set_prompt(PROMPT_OFF);
if (agent_option)
auto_register_agent = g_strdup(agent_option);
else
auto_register_agent = g_strdup("");
dbus_conn = g_dbus_setup_bus(DBUS_BUS_SYSTEM, NULL, NULL);
g_dbus_attach_object_manager(dbus_conn);
client = g_dbus_client_new(dbus_conn, "org.bluez", "/org/bluez");
g_dbus_client_set_connect_watch(client, connect_handler, NULL);
g_dbus_client_set_disconnect_watch(client, disconnect_handler, NULL);
g_dbus_client_set_signal_watch(client, message_handler, NULL);
g_dbus_client_set_proxy_handlers(client, proxy_added, proxy_removed,
property_changed, NULL);
g_dbus_client_set_ready_watch(client, client_ready, NULL);
status = bt_shell_run();
g_dbus_client_unref(client);
dbus_connection_unref(dbus_conn);
g_list_free_full(ctrl_list, proxy_leak);
g_free(auto_register_agent);
return status;
}