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authorErlang/OTP <[email protected]>2019-06-17 16:50:17 +0200
committerErlang/OTP <[email protected]>2019-06-17 16:50:17 +0200
commitf9baed99a1fef1a86d23542b6255a03c799db176 (patch)
tree37fffea40f957b5b21187b5a52c906a961bdc6e3 /erts/emulator
parent4de5fe7670528ccf57739781316c25eb3dc0d33d (diff)
parentabf6018726321a920948d9ba6dcea7f4047a4e4a (diff)
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Merge branch 'ingela/raimo/udp-send-TOS/ERIERL-294/OTP-15747' into maint-21
* ingela/raimo/udp-send-TOS/ERIERL-294/OTP-15747: Introduce udp send ancillary data argument down to inet_drv Fix old warnings
Diffstat (limited to 'erts/emulator')
-rw-r--r--erts/emulator/drivers/common/inet_drv.c182
1 files changed, 154 insertions, 28 deletions
diff --git a/erts/emulator/drivers/common/inet_drv.c b/erts/emulator/drivers/common/inet_drv.c
index becc04950e..d6ceab680b 100644
--- a/erts/emulator/drivers/common/inet_drv.c
+++ b/erts/emulator/drivers/common/inet_drv.c
@@ -3379,6 +3379,71 @@ static int udp_parse_ancillary_data(ErlDrvTermData *spec, int i,
i = LOAD_NIL(spec, i);
return LOAD_LIST(spec, i, n+1);
}
+
+static int compile_ancillary_data(struct msghdr *mhdr,
+ char *ptr, ErlDrvSizeT anc_len) {
+ struct cmsghdr *cmsg;
+ size_t controllen = 0;
+ cmsg = CMSG_FIRSTHDR(mhdr);
+ for (;;) {
+ if (anc_len == 0) {
+ /* End of options to compile */
+ mhdr->msg_controllen = controllen;
+ return 0;
+ }
+ if (cmsg == NULL) {
+ /* End of destination before end of options */
+ return 1;
+ }
+
+#define COMPILE_ANCILLARY_DATA_ITEM(Level, Opt, Type, Get, Size) \
+ do { \
+ if (anc_len < (Size)) return 1; \
+ sys_memset(cmsg, '\0', CMSG_SPACE(sizeof(Type))); \
+ cmsg->cmsg_level = Level; \
+ cmsg->cmsg_type = Opt; \
+ cmsg->cmsg_len = CMSG_LEN(sizeof(Type)); \
+ *((Type *) CMSG_DATA(cmsg)) = Get(ptr); \
+ controllen += CMSG_SPACE(sizeof(Type)); \
+ cmsg = CMSG_NXTHDR(mhdr, cmsg); \
+ ptr += 4; \
+ anc_len -= 4; \
+ } while (0)
+#define SIZEOF_ANCILLARY_DATA (2 * CMSG_SPACE(sizeof(int)))
+ /* (IP_TOS | IPV6_TCLASS) + IP_TTL */
+
+ switch (anc_len--, *ptr++) {
+ case INET_OPT_TOS: {
+#if defined(IPPROTO_IP) && defined(IP_TOS)
+ COMPILE_ANCILLARY_DATA_ITEM(IPPROTO_IP, IP_TOS, int, get_int32, 4);
+#else
+ return 1; /* Socket option not implemented */
+#endif
+ break;
+ }
+ case INET_OPT_TTL: {
+#if defined(IPPROTO_IP) && defined(IP_TTL)
+ COMPILE_ANCILLARY_DATA_ITEM(IPPROTO_IP, IP_TTL, int, get_int32, 4);
+#else
+ return 1; /* Socket option not implemented */
+#endif
+ break;
+ }
+ case INET_OPT_TCLASS: {
+#if defined(IPPROTO_IPV6) && defined(IPV6_TCLASS)
+ COMPILE_ANCILLARY_DATA_ITEM(IPPROTO_IPV6, IPV6_TCLASS, int, get_int32, 4);
+#else
+ return 1; /* Socket option not implemented */
+#endif
+ break;
+ }
+ default:
+ /* Unknow socket option */
+ return 1;
+ }
+#undef COMPILE_ANCILLARY_DATA_ITEM
+ }
+}
#endif /* ifndef __WIN32__ */
/*
@@ -11384,7 +11449,7 @@ static int tcp_shutdown_error(tcp_descriptor* desc, int err)
static void tcp_inet_delay_send(ErlDrvData data, ErlDrvTermData dummy)
{
tcp_descriptor *desc = (tcp_descriptor*)data;
- (void)tcp_inet_output(desc, INETP(desc)->s);
+ (void)tcp_inet_output(desc, (HANDLE) INETP(desc)->s);
}
/*
@@ -12551,7 +12616,7 @@ static void packet_inet_timeout(ErlDrvData e)
sock_select(desc, FD_READ, 0);
async_error_am (desc, am_timeout);
} else {
- (void)packet_inet_input(udesc, desc->s);
+ (void)packet_inet_input(udesc, (HANDLE) desc->s);
}
}
@@ -12595,11 +12660,8 @@ static void packet_inet_command(ErlDrvData e, char* buf, ErlDrvSizeT len)
char ancd[CMSG_SPACE(sizeof(*sri))];
} cmsg;
- if (len < SCTP_GET_SENDPARAMS_LEN) {
- inet_reply_error(desc, EINVAL);
- return;
- }
-
+ if (len < SCTP_GET_SENDPARAMS_LEN) goto return_einval;
+
/* The ancillary data */
sri = (struct sctp_sndrcvinfo *) (CMSG_DATA(&cmsg.hdr));
/* Get the "sndrcvinfo" from the buffer, advancing the "ptr": */
@@ -12632,28 +12694,85 @@ static void packet_inet_command(ErlDrvData e, char* buf, ErlDrvSizeT len)
goto check_result_code;
}
#endif
- /* UDP socket. Even if it is connected, there is an address prefix
- here -- ignored for connected sockets: */
- sz = len;
- qtr = ptr;
- xerror = inet_set_faddress(desc->sfamily, &other, &qtr, &sz);
- if (xerror != NULL) {
- inet_reply_error_am(desc, driver_mk_atom(xerror));
- return;
- }
- len -= (qtr - ptr);
- ptr = qtr;
- /* Now "ptr" is the user data ptr, "len" is data length: */
- inet_output_count(desc, len);
-
- if (desc->state & INET_F_ACTIVE) { /* connected (ignore address) */
- code = sock_send(desc->s, ptr, len, 0);
- }
- else {
- code = sock_sendto(desc->s, ptr, len, 0, &other.sa, sz);
+ {
+ ErlDrvSizeT anc_len;
+
+ /* UDP socket. Even if it is connected, there is an address prefix
+ here -- ignored for connected sockets: */
+ sz = len;
+ qtr = ptr;
+ xerror = inet_set_faddress(desc->sfamily, &other, &qtr, &sz);
+ if (xerror != NULL) {
+ inet_reply_error_am(desc, driver_mk_atom(xerror));
+ return;
+ }
+ len -= (qtr - ptr);
+ ptr = qtr;
+
+ /* Here comes ancillary data */
+ if (len < 4) goto return_einval;
+ anc_len = get_int32(ptr);
+ len -= 4; ptr += 4;
+ if (len < anc_len) goto return_einval;
+
+ if (anc_len == 0 && !!0/*XXX-short-circuit-for-testing*/) {
+ /* Empty ancillary data */
+ /* Now "ptr" is the user data ptr, "len" is data length: */
+ inet_output_count(desc, len);
+ if (desc->state & INET_F_ACTIVE) {
+ /* connected (ignore address) */
+ code = sock_send(desc->s, ptr, len, 0);
+ }
+ else {
+ code = sock_sendto(desc->s, ptr, len, 0, &other.sa, sz);
+ }
+ }
+ else {
+#ifdef __WIN32__
+ goto return_einval; /* Can not send ancillary data on Windows */
+#else
+ struct iovec iov[1];
+ struct msghdr mhdr;
+ union { /* For ancillary data */
+ struct cmsghdr hdr;
+ char ancd[SIZEOF_ANCILLARY_DATA];
+ } cmsg;
+ sys_memset(&iov, '\0', sizeof(iov));
+ sys_memset(&mhdr, '\0', sizeof(mhdr));
+ sys_memset(&cmsg, '\0', sizeof(cmsg));
+ if (desc->state & INET_F_ACTIVE) {
+ /* connected (ignore address) */
+ mhdr.msg_name = NULL;
+ mhdr.msg_namelen = 0;
+ }
+ else {
+ mhdr.msg_name = &other;
+ mhdr.msg_namelen = sz;
+ }
+ mhdr.msg_control = cmsg.ancd;
+ mhdr.msg_controllen = sizeof(cmsg.ancd);
+ if (compile_ancillary_data(&mhdr, ptr, anc_len) != 0) {
+ goto return_einval;
+ }
+ if (mhdr.msg_controllen == 0) {
+ /* XXX Testing - only possible for anc_len == 0 */
+ mhdr.msg_control = NULL;
+ }
+ len -= anc_len;
+ ptr += anc_len;
+ /* Now "ptr" is the user data ptr, "len" is data length: */
+ iov[0].iov_len = len;
+ iov[0].iov_base = ptr;
+ mhdr.msg_iov = iov;
+ mhdr.msg_iovlen = 1;
+ mhdr.msg_flags = 0;
+ inet_output_count(desc, len);
+ code = sock_sendmsg(desc->s, &mhdr, 0);
+#endif
+ }
}
-#ifdef HAVE_SCTP
+#ifdef HAVE_SCTP
check_result_code:
/* "code" analysis is the same for both SCTP and UDP cases above: */
#endif
@@ -12663,8 +12782,15 @@ static void packet_inet_command(ErlDrvData e, char* buf, ErlDrvSizeT len)
}
else
inet_reply_ok(desc);
+ return;
+
+ return_einval:
+ inet_reply_error(desc, EINVAL);
+ return;
}
-#endif
+
+#endif /* HAVE_UDP */
+
#ifdef __WIN32__
static void packet_inet_event(ErlDrvData e, ErlDrvEvent event)