refactor iwp, get rid of dtls

pull/1/head
Jeff Becker 6 years ago
parent cb53d66869
commit cb351ae9ff
No known key found for this signature in database
GPG Key ID: F357B3B42F6F9B05

@ -10,7 +10,7 @@ find_package(sodium)
set(EXE llarpd)
set(EXE_SRC daemon/main.c)
set(LIBS ${sodium_LIBRARY_RELEASE} pthread stdc++fs jemalloc mbedtls)
set(LIBS ${sodium_LIBRARY_RELEASE} pthread stdc++fs jemalloc mbedx509 mbedcrypto mbedtls)
set(LIB llarp)
@ -20,11 +20,10 @@ set(LIB_SRC
llarp/config.cpp
llarp/crypto_async.c
llarp/crypto_libsodium.cpp
llarp/dtls_link.cpp
llarp/ev.cpp
llarp/exit_info.c
llarp/exit_route.c
llarp/iwp_link.c
llarp/iwp_link.cpp
llarp/link.c
llarp/link_intro.cpp
llarp/link_relay_down.cpp

@ -9,13 +9,13 @@
extern "C" {
#endif
struct iwp_configure_args {
struct llarp_iwp_args {
struct llarp_alloc * mem;
struct llarp_crypto* crypto;
const char * keyfile;
};
void iwp_link_init(struct llarp_link* link, struct iwp_configure_args args,
void iwp_link_init(struct llarp_link* link, struct llarp_iwp_args args,
struct llarp_msg_muxer* muxer);
#ifdef __cplusplus

@ -1,12 +1,15 @@
#include <llarp/dtls.h>
#include <llarp/net.h>
#include <mbedtls/ssl.h>
#include <map>
#include "crypto.hpp"
#include "fs.hpp"
#include "net.hpp"
namespace iwp
{
struct dtls_session
{
};
@ -23,6 +26,21 @@ struct dtls_link
uint32_t timeout_job_id;
std::map<llarp::Addr, llarp_link_session> sessions;
dtls_link()
{
mbedtls_x509_crt_init( &servercert );
mbedtls_pk_init( &privkey );
}
entropy_context entropy;
ecdsa_context ecdsa;
mbedtls_ssl_context ssl;
mbedtls_ssl_cookie_ctx cookie_ctx;
mbedtls_x509_crt servercert;
mbedtls_ssl_config conf;
mbedtls_pk_context privkey;
mbedtls_timing_delay_context timer;
void inbound_session(llarp::Addr & src)
{
@ -79,6 +97,15 @@ void dtls_recvfrom(struct llarp_udp_io * udp, const struct sockaddr *saddr, void
static bool dtls_link_configure(struct llarp_link * l, struct llarp_ev_loop * netloop, const char * ifname, int af, uint16_t port)
{
dtls_link * link = static_cast<dtls_link*>(l->impl);
if(!link->ensure_privkey())
return false;
if(!link->ensure_certfile())
return false;
// bind
link->udp.addr.sa_family = af;
if(!llarp_getifaddr(ifname, af, &link->udp.addr))
return false;
@ -177,22 +204,22 @@ void dtls_link_free(struct llarp_link *l)
link->~dtls_link();
mem->free(mem, link);
}
}
extern "C" {
void dtls_link_init(struct llarp_link * link, struct llarp_dtls_args args, struct llarp_msg_muxer * muxer)
{
link->impl = dtls_link_alloc(args.mem, muxer, args.keyfile, args.certfile);
link->name = dtls_link_name;
link->configure = dtls_link_configure;
link->start_link = dtls_link_start;
link->stop_link = dtls_link_stop;
link->iter_sessions = dtls_link_iter_sessions;
link->try_establish = dtls_link_try_establish;
link->acquire_session_for_addr = dtls_link_session_for_addr;
link->mark_session_active = dtls_link_mark_session_active;
link->free_impl = dtls_link_free;
void iwp_link_init(struct llarp_link * link, struct llarp_iwp_args args, struct llarp_msg_muxer * muxer)
{
link->impl = iwp::link_alloc(args.mem, muxer, args.keyfile, args.certfile);
link->name = iwp::link_name;
link->configure = iwp::link_configure;
link->start_link = iwp::link_start;
link->stop_link = iwp::link_stop;
link->iter_sessions = iwp::link_iter_sessions;
link->try_establish = iwp::link_try_establish;
link->acquire_session_for_addr = iwp::link_session_for_addr;
link->mark_session_active = iwp::link_mark_session_active;
link->free_impl = iwp::link_free;
}
}

@ -1,40 +0,0 @@
#include <llarp/iwp.h>
#include <llarp/ev.h>
struct iwp_link
{
struct llarp_alloc * alloc;
struct llarp_ev_loop *netloop;
const char * keyfile;
struct llarp_udp_io udp;
};
static const char * iwp_link_name()
{
return "IWP";
}
static bool iwp_link_configure(struct llarp_link * l, struct llarp_ev_loop * netloop, const char * ifname, int af, uint16_t port)
{
struct iwp_link * link = l->impl;
link->udp.user = link;
link->netloop = netloop;
return llarp_ev_add_udp(link->netloop, &link->udp) != -1;
}
static struct iwp_link * iwp_link_alloc(struct iwp_configure_args * args)
{
struct iwp_link * l = args->mem->alloc(args->mem, sizeof(struct iwp_link), 16);
l->alloc = args->mem;
l->keyfile = args->keyfile;
return l;
}
void iwp_link_init(struct llarp_link * link, struct iwp_configure_args args,
struct llarp_msg_muxer * muxer)
{
link->impl = iwp_link_alloc(&args);
link->name = iwp_link_name;
link->configure = iwp_link_configure;
}

@ -0,0 +1,212 @@
#include <llarp/iwp.h>
#include <llarp/net.h>
#include <map>
#include "crypto.hpp"
#include "fs.hpp"
#include "net.hpp"
namespace iwp
{
struct session
{
};
struct server
{
struct llarp_alloc * mem;
struct llarp_logic * logic;
struct llarp_ev_loop * netloop;
struct llarp_msg_muxer * muxer;
struct llarp_udp_io udp;
char keyfile[255];
uint32_t timeout_job_id;
std::map<llarp::Addr, llarp_link_session> sessions;
void inbound_session(llarp::Addr & src)
{
}
void cleanup_dead()
{
// todo: implement
}
bool ensure_privkey()
{
return false;
}
static void handle_cleanup_timer(void * l, uint64_t orig, uint64_t left)
{
server * link = static_cast<server *>(l);
link->timeout_job_id = 0;
if(!left)
{
link->cleanup_dead();
//TODO: exponential backoff for cleanup timer ?
link->issue_cleanup_timer(orig);
}
}
static void handle_recvfrom(struct llarp_udp_io * udp, const struct sockaddr *saddr, void * buf, ssize_t sz)
{
server * link = static_cast<server *>(udp->user);
llarp::Addr src = *saddr;
auto itr = link->sessions.find(src);
if (itr == link->sessions.end())
{
link->inbound_session(src);
}
}
void cancel_timer()
{
if(timeout_job_id)
{
llarp_logic_cancel_call(logic, timeout_job_id);
}
timeout_job_id = 0;
}
void issue_cleanup_timer(uint64_t timeout)
{
llarp_timeout_job job = {
.timeout = timeout,
.user = this,
.handler = &server::handle_cleanup_timer
};
timeout_job_id = llarp_logic_call_later(logic, job);
}
};
server * link_alloc(struct llarp_alloc * mem, struct llarp_msg_muxer * muxer, const char * keyfile)
{
void * ptr = mem->alloc(mem, sizeof(struct server), 8);
if(ptr)
{
server * link = new (ptr) server;
link->mem = mem;
link->muxer = muxer;
strncpy(link->keyfile, keyfile, sizeof(link->keyfile));
return link;
}
return nullptr;
}
const char * link_name()
{
return "dtls";
}
bool link_configure(struct llarp_link * l, struct llarp_ev_loop * netloop, const char * ifname, int af, uint16_t port)
{
server * link = static_cast<server*>(l->impl);
if(!link->ensure_privkey())
return false;
// bind
link->udp.addr.sa_family = af;
if(!llarp_getifaddr(ifname, af, &link->udp.addr))
return false;
switch(af)
{
case AF_INET:
((sockaddr_in *)&link->udp.addr)->sin_port = htons(port);
break;
case AF_INET6:
((sockaddr_in6 *)(&link->udp.addr))->sin6_port = htons(port);
break;
// TODO: AF_PACKET
default:
return false;
}
link->netloop = netloop;
link->udp.recvfrom = &server::handle_recvfrom;
link->udp.user = link;
return llarp_ev_add_udp(link->netloop, &link->udp) != -1;
}
bool link_start(struct llarp_link * l, struct llarp_logic * logic)
{
server * link = static_cast<server*>(l->impl);
link->timeout_job_id = 0;
link->logic = logic;
// start cleanup timer
link->issue_cleanup_timer(1000);
return true;
}
bool link_stop(struct llarp_link *l)
{
server * link = static_cast<server*>(l->impl);
link->cancel_timer();
return true;
}
void link_iter_sessions(struct llarp_link * l, struct llarp_link_session_iter * iter)
{
server * link = static_cast<server*>(l->impl);
iter->link = l;
for (auto & item : link->sessions)
if(!iter->visit(iter, &item.second)) return;
}
void link_try_establish(struct llarp_link * link, struct llarp_link_establish_job job, struct llarp_link_session_listener l)
{
}
void link_mark_session_active(struct llarp_link * link, struct llarp_link_session * s)
{
}
struct llarp_link_session * link_session_for_addr(struct llarp_link * l, const struct sockaddr * saddr)
{
if(saddr)
{
server * link = static_cast<server*>(l->impl);
for(auto & session : link->sessions)
{
if(session.second.addr == *saddr) return &link->sessions[session.first];
}
}
return nullptr;
}
void link_free(struct llarp_link *l)
{
server * link = static_cast<server*>(l->impl);
struct llarp_alloc * mem = link->mem;
link->~server();
mem->free(mem, link);
}
}
extern "C" {
void iwp_link_init(struct llarp_link * link, struct llarp_iwp_args args, struct llarp_msg_muxer * muxer)
{
link->impl = iwp::link_alloc(args.mem, muxer, args.keyfile);
link->name = iwp::link_name;
link->configure = iwp::link_configure;
link->start_link = iwp::link_start;
link->stop_link = iwp::link_stop;
link->iter_sessions = iwp::link_iter_sessions;
link->try_establish = iwp::link_try_establish;
link->acquire_session_for_addr = iwp::link_session_for_addr;
link->mark_session_active = iwp::link_mark_session_active;
link->free_impl = iwp::link_free;
}
}

@ -112,23 +112,12 @@ void router_iter_config(llarp_config_iterator *iter, const char *section,
}
struct llarp_link *link;
if (StrEq(section, "dtls-links"))
{
link = llarp::Alloc<llarp_link>(self->mem);
llarp::Zero(link, sizeof(*link));
llarp_dtls_args args = {
.mem = self->mem,
.keyfile=self->transport_keyfile,
.certfile=self->transport_certfile,
};
dtls_link_init(link, args, &self->muxer);
}
else if (StrEq(section, "iwp-links"))
if (StrEq(section, "iwp-links"))
{
link = llarp::Alloc<llarp_link>(self->mem);
llarp::Zero(link, sizeof(*link));
iwp_configure_args args = {
llarp_iwp_args args = {
.mem = self->mem,
.crypto = &self->crypto,
.keyfile=self->transport_keyfile,

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