Home | History | Annotate | Download | only in src
      1 /******************************************************************************
      2  *
      3  *  Copyright (C) 2014 Google, Inc.
      4  *
      5  *  Licensed under the Apache License, Version 2.0 (the "License");
      6  *  you may not use this file except in compliance with the License.
      7  *  You may obtain a copy of the License at:
      8  *
      9  *  http://www.apache.org/licenses/LICENSE-2.0
     10  *
     11  *  Unless required by applicable law or agreed to in writing, software
     12  *  distributed under the License is distributed on an "AS IS" BASIS,
     13  *  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     14  *  See the License for the specific language governing permissions and
     15  *  limitations under the License.
     16  *
     17  ******************************************************************************/
     18 
     19 #include "btcore/include/property.h"
     20 #include <base/logging.h>
     21 #include <string.h>
     22 #include "btcore/include/bdaddr.h"
     23 #include "btcore/include/device_class.h"
     24 #include "btcore/include/uuid.h"
     25 #include "osi/include/allocator.h"
     26 
     27 static bt_property_t* property_new_(void* val, size_t len,
     28                                     bt_property_type_t type);
     29 
     30 bt_property_t* property_copy_array(const bt_property_t* properties,
     31                                    size_t count) {
     32   CHECK(properties != NULL);
     33   bt_property_t* clone =
     34       static_cast<bt_property_t*>(osi_calloc(sizeof(bt_property_t) * count));
     35 
     36   memcpy(&clone[0], &properties[0], sizeof(bt_property_t) * count);
     37   for (size_t i = 0; i < count; ++i) {
     38     clone[i].val = osi_calloc(clone[i].len);
     39     memcpy(clone[i].val, properties[i].val, clone[i].len);
     40   }
     41 
     42   return clone;
     43 }
     44 
     45 bt_property_t* property_copy(bt_property_t* dest, const bt_property_t* src) {
     46   CHECK(dest != NULL);
     47   CHECK(src != NULL);
     48   return (bt_property_t*)memcpy(dest, src, sizeof(bt_property_t));
     49 }
     50 
     51 bool property_equals(const bt_property_t* p1, const bt_property_t* p2) {
     52   // Two null properties are not the same. May need to revisit that
     53   // decision when we have a test case that exercises that condition.
     54   if (!p1 || !p2 || p1->type != p2->type) {
     55     return false;
     56   }
     57 
     58   // Although the Bluetooth name is a 249-byte array, the implementation
     59   // treats it like a variable-length array with its size specified in the
     60   // property's `len` field. We special-case the equivalence of BDNAME
     61   // types here by truncating the larger, zero-padded name to its string
     62   // length and comparing against the shorter name.
     63   //
     64   // Note: it may be the case that both strings are zero-padded but that
     65   // hasn't come up yet so this implementation doesn't handle it.
     66   if (p1->type == BT_PROPERTY_BDNAME && p1->len != p2->len) {
     67     const bt_property_t *shorter = p1, *longer = p2;
     68     if (p1->len > p2->len) {
     69       shorter = p2;
     70       longer = p1;
     71     }
     72     return strlen((const char*)longer->val) == (size_t)shorter->len &&
     73            !memcmp(longer->val, shorter->val, shorter->len);
     74   }
     75 
     76   return p1->len == p2->len && !memcmp(p1->val, p2->val, p1->len);
     77 }
     78 
     79 bt_property_t* property_new_addr(const bt_bdaddr_t* addr) {
     80   CHECK(addr != NULL);
     81   return property_new_((void*)addr, sizeof(bt_bdaddr_t), BT_PROPERTY_BDADDR);
     82 }
     83 
     84 bt_property_t* property_new_device_class(const bt_device_class_t* dc) {
     85   CHECK(dc != NULL);
     86   return property_new_((void*)dc, sizeof(bt_device_class_t),
     87                        BT_PROPERTY_CLASS_OF_DEVICE);
     88 }
     89 
     90 bt_property_t* property_new_device_type(bt_device_type_t type) {
     91   return property_new_((void*)&type, sizeof(bt_device_type_t),
     92                        BT_PROPERTY_TYPE_OF_DEVICE);
     93 }
     94 
     95 bt_property_t* property_new_discovery_timeout(const uint32_t timeout) {
     96   return property_new_((void*)&timeout, sizeof(uint32_t),
     97                        BT_PROPERTY_ADAPTER_DISCOVERY_TIMEOUT);
     98 }
     99 
    100 bt_property_t* property_new_name(const char* name) {
    101   CHECK(name != NULL);
    102   return property_new_((void*)name, sizeof(bt_bdname_t), BT_PROPERTY_BDNAME);
    103 }
    104 
    105 bt_property_t* property_new_rssi(int8_t rssi) {
    106   return property_new_((void*)&rssi, sizeof(int8_t), BT_PROPERTY_REMOTE_RSSI);
    107 }
    108 
    109 bt_property_t* property_new_scan_mode(bt_scan_mode_t scan_mode) {
    110   return property_new_((void*)&scan_mode, sizeof(bt_scan_mode_t),
    111                        BT_PROPERTY_ADAPTER_SCAN_MODE);
    112 }
    113 
    114 bt_property_t* property_new_uuids(const bt_uuid_t* uuid, size_t count) {
    115   CHECK(uuid != NULL);
    116   return property_new_((void*)uuid, sizeof(bt_uuid_t) * count,
    117                        BT_PROPERTY_UUIDS);
    118 }
    119 
    120 void property_free(bt_property_t* property) {
    121   property_free_array(property, 1);
    122 }
    123 
    124 void property_free_array(bt_property_t* properties, size_t count) {
    125   if (properties == NULL) return;
    126 
    127   for (size_t i = 0; i < count; ++i) {
    128     osi_free(properties[i].val);
    129   }
    130 
    131   osi_free(properties);
    132 }
    133 
    134 bool property_is_addr(const bt_property_t* property) {
    135   CHECK(property != NULL);
    136   return property->type == BT_PROPERTY_BDADDR;
    137 }
    138 
    139 bool property_is_device_class(const bt_property_t* property) {
    140   CHECK(property != NULL);
    141   return property->type == BT_PROPERTY_CLASS_OF_DEVICE;
    142 }
    143 
    144 bool property_is_device_type(const bt_property_t* property) {
    145   CHECK(property != NULL);
    146   return property->type == BT_PROPERTY_TYPE_OF_DEVICE;
    147 }
    148 
    149 bool property_is_discovery_timeout(const bt_property_t* property) {
    150   CHECK(property != NULL);
    151   return property->type == BT_PROPERTY_ADAPTER_DISCOVERY_TIMEOUT;
    152 }
    153 
    154 bool property_is_name(const bt_property_t* property) {
    155   CHECK(property != NULL);
    156   return property->type == BT_PROPERTY_BDNAME;
    157 }
    158 
    159 bool property_is_rssi(const bt_property_t* property) {
    160   CHECK(property != NULL);
    161   return property->type == BT_PROPERTY_REMOTE_RSSI;
    162 }
    163 
    164 bool property_is_scan_mode(const bt_property_t* property) {
    165   CHECK(property != NULL);
    166   return property->type == BT_PROPERTY_ADAPTER_SCAN_MODE;
    167 }
    168 
    169 bool property_is_uuids(const bt_property_t* property) {
    170   CHECK(property != NULL);
    171   return property->type == BT_PROPERTY_UUIDS;
    172 }
    173 
    174 // Convenience conversion methods to property values
    175 const bt_bdaddr_t* property_as_addr(const bt_property_t* property) {
    176   CHECK(property_is_addr(property));
    177   return (const bt_bdaddr_t*)property->val;
    178 }
    179 
    180 const bt_device_class_t* property_as_device_class(
    181     const bt_property_t* property) {
    182   CHECK(property_is_device_class(property));
    183   return (const bt_device_class_t*)property->val;
    184 }
    185 
    186 bt_device_type_t property_as_device_type(const bt_property_t* property) {
    187   CHECK(property_is_device_type(property));
    188   return *(const bt_device_type_t*)property->val;
    189 }
    190 
    191 uint32_t property_as_discovery_timeout(const bt_property_t* property) {
    192   CHECK(property_is_discovery_timeout(property));
    193   return *(const uint32_t*)property->val;
    194 }
    195 
    196 const bt_bdname_t* property_as_name(const bt_property_t* property) {
    197   CHECK(property_is_name(property));
    198   return (const bt_bdname_t*)property->val;
    199 }
    200 
    201 int8_t property_as_rssi(const bt_property_t* property) {
    202   CHECK(property_is_rssi(property));
    203   return *(const int8_t*)property->val;
    204 }
    205 
    206 bt_scan_mode_t property_as_scan_mode(const bt_property_t* property) {
    207   CHECK(property_is_scan_mode(property));
    208   return *(const bt_scan_mode_t*)property->val;
    209 }
    210 
    211 const bt_uuid_t* property_as_uuids(const bt_property_t* property,
    212                                    size_t* count) {
    213   CHECK(property_is_uuids(property));
    214   *count = sizeof(bt_uuid_t) / property->len;
    215   return (const bt_uuid_t*)property->val;
    216 }
    217 
    218 static bt_property_t* property_new_(void* val, size_t len,
    219                                     bt_property_type_t type) {
    220   bt_property_t* property =
    221       static_cast<bt_property_t*>(osi_calloc(sizeof(bt_property_t)));
    222 
    223   property->val = osi_malloc(len);
    224   memcpy(property->val, val, len);
    225 
    226   property->type = type;
    227   property->len = len;
    228 
    229   return property;
    230 }
    231