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lita-tox
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lita-tox/ext/tox/tox.c

247 lines
5.8 KiB
C

#include <ruby.h>
#include <tox/tox.h>
#define TOX_IS_COMPATIBLE TOX_VERSION_IS_API_COMPATIBLE
TOX_VERSION_REQUIRE(0, 0, 0);
void Init_tox();
#define IP_LENGTH_MAX 15
typedef char IP[IP_LENGTH_MAX + 1];
typedef char Key[(TOX_PUBLIC_KEY_SIZE * 2) + 1];
typedef struct Node {
IP ip;
int port;
Key key;
} Node;
typedef uint8_t KeyBin[TOX_PUBLIC_KEY_SIZE];
static void Key_to_KeyBin(const char *key, uint8_t *key_bin);
typedef struct cTox_ {
Tox *tox;
} cTox_;
static VALUE cTox;
static VALUE cTox_alloc(VALUE klass);
static void cTox_free(void *ptr);
static VALUE cTox_initialize_with(VALUE self, VALUE options);
static VALUE cTox_savedata(VALUE self);
static VALUE cTox_id(VALUE self);
static VALUE cTox_bootstrap(VALUE self, VALUE options);
static VALUE cTox_kill(VALUE self);
typedef struct Tox_Options cTox_cOptions_;
static VALUE cTox_cOptions;
static VALUE cTox_cOptions_alloc(VALUE klass);
static void cTox_cOptions_free(void *ptr);
static VALUE cTox_cOptions_initialize(VALUE self);
static VALUE cTox_cOptions_data_EQUALS(VALUE self, VALUE data);
void Init_tox()
{
if (!TOX_VERSION_IS_ABI_COMPATIBLE())
rb_raise(rb_eLoadError, "incompatible Tox ABI version");
cTox = rb_define_class("Tox", rb_cObject);
rb_define_alloc_func(cTox, cTox_alloc);
rb_define_method(cTox, "initialize_with", cTox_initialize_with, 1);
rb_define_method(cTox, "savedata", cTox_savedata, 0);
rb_define_method(cTox, "id", cTox_id, 0);
rb_define_method(cTox, "bootstrap", cTox_bootstrap, 1);
rb_define_method(cTox, "kill", cTox_kill, 0);
cTox_cOptions = rb_define_class_under(cTox, "Options", rb_cObject);
rb_define_alloc_func(cTox_cOptions, cTox_cOptions_alloc);
rb_define_method(cTox_cOptions, "initialize", cTox_cOptions_initialize, 0);
rb_define_method(cTox_cOptions, "data=", cTox_cOptions_data_EQUALS, 1);
}
/******************************************************************************
* KeyBin
******************************************************************************/
void Key_to_KeyBin(const char *const key, uint8_t *const key_bin)
{
long i;
for (i = 0; i < TOX_PUBLIC_KEY_SIZE; ++i)
sscanf(&key[i * 2], "%2hhx", &key_bin[i]);
}
/******************************************************************************
* Tox
******************************************************************************/
VALUE cTox_alloc(const VALUE klass)
{
cTox_ *tox;
tox = ALLOC(cTox_);
return Data_Wrap_Struct(klass, NULL, cTox_free, tox);
}
void cTox_free(void *const ptr)
{
free(ptr);
}
VALUE cTox_initialize_with(const VALUE self, const VALUE options)
{
cTox_ *tox;
cTox_cOptions_ *tox_options;
TOX_ERR_NEW error;
// check if `options` is instance of `Tox::Options`
if (Qfalse == rb_funcall(options, rb_intern("is_a?"), 1, cTox_cOptions))
rb_raise(rb_eTypeError, "argument 1 should be Tox::Options");
Data_Get_Struct(self, cTox_, tox);
Data_Get_Struct(options, cTox_cOptions_, tox_options);
tox->tox = tox_new(tox_options, &error);
if (error != TOX_ERR_NEW_OK)
rb_raise(rb_eRuntimeError, "tox_new() failed");
return self;
}
VALUE cTox_savedata(const VALUE self)
{
cTox_ *tox;
size_t data_size;
char *data;
Data_Get_Struct(self, cTox_, tox);
data_size = tox_get_savedata_size(tox->tox);
data = ALLOC_N(char, data_size);
tox_get_savedata(tox->tox, (uint8_t*)data);
return rb_str_new(data, data_size);
}
VALUE cTox_id(const VALUE self)
{
cTox_ *tox;
char address[TOX_ADDRESS_SIZE];
char id[2 * TOX_ADDRESS_SIZE];
unsigned long i;
Data_Get_Struct(self, cTox_, tox);
tox_self_get_address(tox->tox, (uint8_t*)address);
for (i = 0; i < TOX_ADDRESS_SIZE; ++i)
sprintf(&id[2 * i], "%02X", address[i] & 0xFF);
return rb_str_new(id, 2 * TOX_ADDRESS_SIZE);
}
VALUE cTox_bootstrap(const VALUE self, const VALUE options)
{
cTox_ *tox;
VALUE ip;
VALUE port;
VALUE key;
Node node;
KeyBin key_bin;
TOX_ERR_BOOTSTRAP error;
Check_Type(options, T_HASH);
ip = rb_hash_aref(options, ID2SYM(rb_intern("ip")));
port = rb_hash_aref(options, ID2SYM(rb_intern("port")));
key = rb_hash_aref(options, ID2SYM(rb_intern("key")));
if (ip == Qnil) rb_raise(rb_eRuntimeError, "option \"ip\" is required");
if (port == Qnil) rb_raise(rb_eRuntimeError, "option \"port\" is required");
if (key == Qnil) rb_raise(rb_eRuntimeError, "option \"key\" is required");
Data_Get_Struct(self, cTox_, tox);
memcpy(node.ip, RSTRING_PTR(ip), RSTRING_LEN(ip) + 1);
node.port = NUM2INT(port);
memcpy(node.key, RSTRING_PTR(key), RSTRING_LEN(key) + 1);
Key_to_KeyBin(node.key, key_bin);
tox_bootstrap(tox->tox, node.ip, node.port, key_bin, &error);
if (error == TOX_ERR_BOOTSTRAP_OK)
return Qtrue;
else
return Qfalse;
}
VALUE cTox_kill(const VALUE self)
{
cTox_ *tox;
Data_Get_Struct(self, cTox_, tox);
tox_kill(tox->tox);
return self;
}
/******************************************************************************
* Tox::Options
******************************************************************************/
VALUE cTox_cOptions_alloc(const VALUE klass)
{
cTox_cOptions_ *tox_options;
tox_options = ALLOC(cTox_cOptions_);
return Data_Wrap_Struct(klass, NULL, cTox_cOptions_free, tox_options);
}
void cTox_cOptions_free(void *const ptr)
{
free(ptr);
}
VALUE cTox_cOptions_initialize(const VALUE self)
{
cTox_cOptions_ *tox_options;
Data_Get_Struct(self, cTox_cOptions_, tox_options);
tox_options_default(tox_options);
return self;
}
VALUE cTox_cOptions_data_EQUALS(const VALUE self, const VALUE savedata)
{
cTox_cOptions_ *tox_options;
Check_Type(savedata, T_STRING);
Data_Get_Struct(self, cTox_cOptions_, tox_options);
tox_options->savedata_type = TOX_SAVEDATA_TYPE_TOX_SAVE;
tox_options->savedata_data = (uint8_t*)RSTRING_PTR(savedata);
tox_options->savedata_length = RSTRING_LEN(savedata);
return savedata;
}