#include <stdio.h>
#include <errno.h>
#include "../ssl_local.h"
#include <openssl/evp.h>
#include <openssl/buffer.h>
#include "record_local.h"
#include "internal/packet.h"
#include "internal/cryptlib.h"
#include "internal/ssl_unwrap.h"
int DTLS_RECORD_LAYER_new(RECORD_LAYER *rl)
{
DTLS_RECORD_LAYER *d;
if ((d = OPENSSL_malloc(sizeof(*d))) == NULL)
return 0;
rl->d = d;
d->buffered_app_data = pqueue_new();
if (d->buffered_app_data == NULL) {
OPENSSL_free(d);
rl->d = NULL;
return 0;
}
return 1;
}
void DTLS_RECORD_LAYER_free(RECORD_LAYER *rl)
{
if (rl->d == NULL)
return;
DTLS_RECORD_LAYER_clear(rl);
pqueue_free(rl->d->buffered_app_data);
OPENSSL_free(rl->d);
rl->d = NULL;
}
void DTLS_RECORD_LAYER_clear(RECORD_LAYER *rl)
{
DTLS_RECORD_LAYER *d;
pitem *item = NULL;
TLS_RECORD *rec;
pqueue *buffered_app_data;
d = rl->d;
while ((item = pqueue_pop(d->buffered_app_data)) != NULL) {
rec = (TLS_RECORD *)item->data;
if (rl->s->options & SSL_OP_CLEANSE_PLAINTEXT)
OPENSSL_cleanse(rec->allocdata, rec->length);
OPENSSL_free(rec->allocdata);
OPENSSL_free(item->data);
pitem_free(item);
}
buffered_app_data = d->buffered_app_data;
memset(d, 0, sizeof(*d));
d->buffered_app_data = buffered_app_data;
}
static int dtls_buffer_record(SSL_CONNECTION *s, TLS_RECORD *rec)
{
TLS_RECORD *rdata;
pitem *item;
struct pqueue_st *queue = s->rlayer.d->buffered_app_data;
if (pqueue_size(queue) >= 100)
return 0;
if (!ossl_assert(rec->off == 0))
return -1;
rdata = OPENSSL_malloc(sizeof(*rdata));
item = pitem_new(rec->seq_num, rdata);
if (rdata == NULL || item == NULL) {
OPENSSL_free(rdata);
pitem_free(item);
SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
return -1;
}
*rdata = *rec;
rdata->data = rdata->allocdata = OPENSSL_memdup(rec->data, rec->length);
if (rdata->data == NULL) {
OPENSSL_free(rdata);
pitem_free(item);
SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_CRYPTO_LIB);
return -1;
}
rdata->rechandle = NULL;
item->data = rdata;
#ifndef OPENSSL_NO_SCTP
if (BIO_dgram_is_sctp(s->rbio) && (ossl_statem_get_state(s) == TLS_ST_SR_FINISHED || ossl_statem_get_state(s) == TLS_ST_CR_FINISHED)) {
BIO_ctrl(s->rbio, BIO_CTRL_DGRAM_SCTP_GET_RCVINFO,
sizeof(rdata->recordinfo), &rdata->recordinfo);
}
#endif
if (pqueue_insert(queue, item) == NULL) {
OPENSSL_free(rdata->allocdata);
OPENSSL_free(rdata);
pitem_free(item);
}
return 1;
}
static void dtls_unbuffer_record(SSL_CONNECTION *s)
{
TLS_RECORD *rdata;
pitem *item;
if (s->rlayer.curr_rec < s->rlayer.num_recs)
return;
item = pqueue_pop(s->rlayer.d->buffered_app_data);
if (item != NULL) {
rdata = (TLS_RECORD *)item->data;
s->rlayer.tlsrecs[0] = *rdata;
s->rlayer.num_recs = 1;
s->rlayer.curr_rec = 0;
#ifndef OPENSSL_NO_SCTP
if (BIO_dgram_is_sctp(s->rbio)) {
BIO_ctrl(s->rbio, BIO_CTRL_DGRAM_SCTP_SET_RCVINFO,
sizeof(rdata->recordinfo), &rdata->recordinfo);
}
#endif
OPENSSL_free(item->data);
pitem_free(item);
}
}
int dtls1_read_bytes(SSL *s, uint8_t type, uint8_t *recvd_type,
unsigned char *buf, size_t len,
int peek, size_t *readbytes)
{
int i, j, ret;
size_t n;
TLS_RECORD *rr;
void (*cb)(const SSL *ssl, int type2, int val) = NULL;
SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(s);
if (sc == NULL)
return -1;
if ((type && (type != SSL3_RT_APPLICATION_DATA) && (type != SSL3_RT_HANDSHAKE)) || (peek && (type != SSL3_RT_APPLICATION_DATA))) {
SSLfatal(sc, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
return -1;
}
if (!ossl_statem_get_in_handshake(sc) && SSL_in_init(s)) {
i = sc->handshake_func(s);
if (i < 0)
return i;
if (i == 0)
return -1;
}
start:
sc->rwstate = SSL_NOTHING;
if (SSL_is_init_finished(s))
dtls_unbuffer_record(sc);
if (dtls1_handle_timeout(sc) > 0) {
goto start;
} else if (ossl_statem_in_error(sc)) {
return -1;
}
if (sc->rlayer.curr_rec >= sc->rlayer.num_recs) {
sc->rlayer.curr_rec = sc->rlayer.num_recs = 0;
do {
rr = &sc->rlayer.tlsrecs[sc->rlayer.num_recs];
ret = HANDLE_RLAYER_READ_RETURN(sc,
sc->rlayer.rrlmethod->read_record(sc->rlayer.rrl,
&rr->rechandle,
&rr->version, &rr->type,
&rr->data, &rr->length,
&rr->epoch, rr->seq_num));
if (ret <= 0) {
ret = dtls1_read_failed(sc, ret);
if (ret <= 0)
return ret;
else
goto start;
}
rr->off = 0;
sc->rlayer.num_recs++;
} while (sc->rlayer.rrlmethod->processed_read_pending(sc->rlayer.rrl)
&& sc->rlayer.num_recs < SSL_MAX_PIPELINES);
}
rr = &sc->rlayer.tlsrecs[sc->rlayer.curr_rec];
if (rr->type != SSL3_RT_ALERT && rr->length != 0)
sc->rlayer.alert_count = 0;
if (sc->s3.change_cipher_spec
&& (rr->type != SSL3_RT_HANDSHAKE)) {
if (dtls_buffer_record(sc, rr) < 0) {
return -1;
}
if (!ssl_release_record(sc, rr, 0))
return -1;
goto start;
}
if (sc->shutdown & SSL_RECEIVED_SHUTDOWN) {
if (!ssl_release_record(sc, rr, 0))
return -1;
sc->rwstate = SSL_NOTHING;
return 0;
}
if (type == rr->type
|| (rr->type == SSL3_RT_CHANGE_CIPHER_SPEC
&& type == SSL3_RT_HANDSHAKE && recvd_type != NULL)) {
if (SSL_in_init(s) && (type == SSL3_RT_APPLICATION_DATA)
&& (SSL_IS_FIRST_HANDSHAKE(sc))) {
SSLfatal(sc, SSL_AD_UNEXPECTED_MESSAGE,
SSL_R_APP_DATA_IN_HANDSHAKE);
return -1;
}
if (recvd_type != NULL)
*recvd_type = rr->type;
if (len == 0) {
if (rr->length == 0 && !ssl_release_record(sc, rr, 0))
return -1;
return 0;
}
if (len > rr->length)
n = rr->length;
else
n = len;
memcpy(buf, &(rr->data[rr->off]), n);
if (peek) {
if (rr->length == 0 && !ssl_release_record(sc, rr, 0))
return -1;
} else {
if (!ssl_release_record(sc, rr, n))
return -1;
}
#ifndef OPENSSL_NO_SCTP
if (BIO_dgram_is_sctp(SSL_get_rbio(s)) && sc->d1->shutdown_received
&& BIO_dgram_sctp_msg_waiting(SSL_get_rbio(s)) <= 0) {
sc->shutdown |= SSL_RECEIVED_SHUTDOWN;
return 0;
}
#endif
*readbytes = n;
return 1;
}
if (rr->type == SSL3_RT_ALERT) {
unsigned int alert_level, alert_descr;
const unsigned char *alert_bytes = rr->data + rr->off;
PACKET alert;
if (!PACKET_buf_init(&alert, alert_bytes, rr->length)
|| !PACKET_get_1(&alert, &alert_level)
|| !PACKET_get_1(&alert, &alert_descr)
|| PACKET_remaining(&alert) != 0) {
SSLfatal(sc, SSL_AD_UNEXPECTED_MESSAGE, SSL_R_INVALID_ALERT);
return -1;
}
if (sc->msg_callback)
sc->msg_callback(0, sc->version, SSL3_RT_ALERT, alert_bytes, 2, s,
sc->msg_callback_arg);
if (sc->info_callback != NULL)
cb = sc->info_callback;
else if (s->ctx->info_callback != NULL)
cb = s->ctx->info_callback;
if (cb != NULL) {
j = (alert_level << 8) | alert_descr;
cb(s, SSL_CB_READ_ALERT, j);
}
if (alert_level == SSL3_AL_WARNING) {
sc->s3.warn_alert = alert_descr;
if (!ssl_release_record(sc, rr, 0))
return -1;
sc->rlayer.alert_count++;
if (sc->rlayer.alert_count == MAX_WARN_ALERT_COUNT) {
SSLfatal(sc, SSL_AD_UNEXPECTED_MESSAGE,
SSL_R_TOO_MANY_WARN_ALERTS);
return -1;
}
if (alert_descr == SSL_AD_CLOSE_NOTIFY) {
#ifndef OPENSSL_NO_SCTP
if (BIO_dgram_is_sctp(SSL_get_rbio(s)) && BIO_dgram_sctp_msg_waiting(SSL_get_rbio(s)) > 0) {
sc->d1->shutdown_received = 1;
sc->rwstate = SSL_READING;
BIO_clear_retry_flags(SSL_get_rbio(s));
BIO_set_retry_read(SSL_get_rbio(s));
return -1;
}
#endif
sc->shutdown |= SSL_RECEIVED_SHUTDOWN;
return 0;
} else if (alert_descr == SSL_AD_NO_RENEGOTIATION) {
SSLfatal(sc, SSL_AD_HANDSHAKE_FAILURE, SSL_R_NO_RENEGOTIATION);
return -1;
}
} else if (alert_level == SSL3_AL_FATAL) {
sc->rwstate = SSL_NOTHING;
sc->s3.fatal_alert = alert_descr;
SSLfatal_data(sc, SSL_AD_NO_ALERT,
SSL_AD_REASON_OFFSET + alert_descr,
"SSL alert number %d", alert_descr);
sc->shutdown |= SSL_RECEIVED_SHUTDOWN;
if (!ssl_release_record(sc, rr, 0))
return -1;
SSL_CTX_remove_session(sc->session_ctx, sc->session);
return 0;
} else {
SSLfatal(sc, SSL_AD_ILLEGAL_PARAMETER, SSL_R_UNKNOWN_ALERT_TYPE);
return -1;
}
goto start;
}
if (sc->shutdown & SSL_SENT_SHUTDOWN) {
sc->rwstate = SSL_NOTHING;
if (!ssl_release_record(sc, rr, 0))
return -1;
return 0;
}
if (rr->type == SSL3_RT_CHANGE_CIPHER_SPEC) {
if (!ssl_release_record(sc, rr, 0))
return -1;
goto start;
}
if (rr->type == SSL3_RT_HANDSHAKE && !ossl_statem_get_in_handshake(sc)) {
struct hm_header_st msg_hdr;
if (rr->epoch != sc->rlayer.d->r_epoch
|| rr->length < DTLS1_HM_HEADER_LENGTH) {
if (!ssl_release_record(sc, rr, 0))
return -1;
goto start;
}
dtls1_get_message_header(rr->data, &msg_hdr);
if (msg_hdr.type == SSL3_MT_FINISHED) {
if (dtls1_check_timeout_num(sc) < 0) {
return -1;
}
if (dtls1_retransmit_buffered_messages(sc) <= 0) {
if (ossl_statem_in_error(sc))
return -1;
}
if (!ssl_release_record(sc, rr, 0))
return -1;
if (!(sc->mode & SSL_MODE_AUTO_RETRY)) {
if (!sc->rlayer.rrlmethod->unprocessed_read_pending(sc->rlayer.rrl)) {
BIO *bio;
sc->rwstate = SSL_READING;
bio = SSL_get_rbio(s);
BIO_clear_retry_flags(bio);
BIO_set_retry_read(bio);
return -1;
}
}
goto start;
}
if (!ossl_assert(SSL_is_init_finished(s))) {
SSLfatal(sc, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
return -1;
}
ossl_statem_set_in_init(sc, 1);
i = sc->handshake_func(s);
if (i < 0)
return i;
if (i == 0)
return -1;
if (!(sc->mode & SSL_MODE_AUTO_RETRY)) {
if (!sc->rlayer.rrlmethod->unprocessed_read_pending(sc->rlayer.rrl)) {
BIO *bio;
sc->rwstate = SSL_READING;
bio = SSL_get_rbio(s);
BIO_clear_retry_flags(bio);
BIO_set_retry_read(bio);
return -1;
}
}
goto start;
}
switch (rr->type) {
default:
SSLfatal(sc, SSL_AD_UNEXPECTED_MESSAGE, SSL_R_UNEXPECTED_RECORD);
return -1;
case SSL3_RT_CHANGE_CIPHER_SPEC:
case SSL3_RT_ALERT:
case SSL3_RT_HANDSHAKE:
SSLfatal(sc, SSL_AD_UNEXPECTED_MESSAGE, ERR_R_INTERNAL_ERROR);
return -1;
case SSL3_RT_APPLICATION_DATA:
if (sc->s3.in_read_app_data && (sc->s3.total_renegotiations != 0) && ossl_statem_app_data_allowed(sc)) {
sc->s3.in_read_app_data = 2;
return -1;
} else {
SSLfatal(sc, SSL_AD_UNEXPECTED_MESSAGE, SSL_R_UNEXPECTED_RECORD);
return -1;
}
}
}
int dtls1_write_bytes(SSL_CONNECTION *s, uint8_t type, const void *buf,
size_t len, size_t *written)
{
int i;
if (!ossl_assert(len <= SSL3_RT_MAX_PLAIN_LENGTH)) {
SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
return -1;
}
s->rwstate = SSL_NOTHING;
i = do_dtls1_write(s, type, buf, len, written);
return i;
}
int do_dtls1_write(SSL_CONNECTION *sc, uint8_t type, const unsigned char *buf,
size_t len, size_t *written)
{
int i;
OSSL_RECORD_TEMPLATE tmpl;
SSL *s = SSL_CONNECTION_GET_SSL(sc);
int ret;
if (sc->s3.alert_dispatch > 0) {
i = s->method->ssl_dispatch_alert(s);
if (i <= 0)
return i;
}
if (len == 0)
return 0;
if (len > ssl_get_max_send_fragment(sc)) {
SSLfatal(sc, SSL_AD_INTERNAL_ERROR, SSL_R_EXCEEDS_MAX_FRAGMENT_SIZE);
return 0;
}
tmpl.type = type;
if (s->method->version == DTLS_ANY_VERSION
&& sc->max_proto_version != DTLS1_BAD_VER)
tmpl.version = DTLS1_VERSION;
else
tmpl.version = sc->version;
tmpl.buf = buf;
tmpl.buflen = len;
ret = HANDLE_RLAYER_WRITE_RETURN(sc,
sc->rlayer.wrlmethod->write_records(sc->rlayer.wrl, &tmpl, 1));
if (ret > 0)
*written = (int)len;
return ret;
}
void dtls1_increment_epoch(SSL_CONNECTION *s, int rw)
{
if (rw & SSL3_CC_READ) {
s->rlayer.d->r_epoch++;
dtls1_clear_received_buffer(s);
} else {
s->rlayer.d->w_epoch++;
}
}
uint16_t dtls1_get_epoch(SSL_CONNECTION *s, int rw)
{
uint16_t epoch;
if (rw & SSL3_CC_READ)
epoch = s->rlayer.d->r_epoch;
else
epoch = s->rlayer.d->w_epoch;
return epoch;
}