struct ether_addr mac;
uint8_t u8[16];
} addr;
+ uint32_t scope;
uint16_t family;
int16_t bits;
} cidr_t;
static bool parse_cidr(const char *dest, cidr_t *pp)
{
- char *p, buf[INET6_ADDRSTRLEN * 2 + 2];
+ char *p, *s, buf[INET6_ADDRSTRLEN * 2 + 2];
strncpy(buf, dest, sizeof(buf) - 1);
if (p)
*p++ = 0;
+ s = strchr(buf, '%');
+
+ if (s)
+ *s++ = 0;
+
if (inet_pton(AF_INET, buf, &pp->addr.v4))
pp->family = AF_INET;
else if (inet_pton(AF_INET6, buf, &pp->addr.v6))
else
return false;
+ if (s)
+ {
+ if (pp->family != AF_INET6)
+ return false;
+
+ if (!(pp->addr.v6.s6_addr[0] == 0xFE &&
+ pp->addr.v6.s6_addr[1] >= 0x80 &&
+ pp->addr.v6.s6_addr[2] <= 0xBF))
+ return false;
+
+ pp->scope = if_nametoindex(s);
+
+ if (pp->scope == 0)
+ return false;
+ }
+
if (p)
{
if (!parse_mask(pp->family, p, &pp->bits))
static int format_cidr(lua_State *L, cidr_t *p)
{
- char buf[INET6_ADDRSTRLEN];
+ char *s, buf[INET6_ADDRSTRLEN + 1 + IF_NAMESIZE + 4];
if (p->family == AF_PACKET)
{
}
else
{
+ inet_ntop(p->family, &p->addr.v6, buf, sizeof(buf));
+
+ s = buf + strlen(buf);
+
+ if (p->scope != 0 && if_indextoname(p->scope, s + 1) != NULL) {
+ *s++ = '%';
+ s += strlen(s);
+ }
+
if (p->bits < AF_BITS(p->family))
- lua_pushfstring(L, "%s/%d",
- inet_ntop(p->family, &p->addr.v6, buf, sizeof(buf)),
- p->bits);
- else
- lua_pushstring(L,
- inet_ntop(p->family, &p->addr.v6, buf, sizeof(buf)));
+ s += sprintf(s, "/%d", p->bits);
+
+ lua_pushstring(L, buf);
}
return 1;
return 1;
}
+static int cidr_unscoped(lua_State *L)
+{
+ cidr_t *p1 = L_checkcidr(L, 1, NULL);
+ cidr_t *p2;
+
+ if (p1->family != AF_INET6)
+ return 0;
+
+ if (!(p2 = lua_newuserdata(L, sizeof(*p2))))
+ return 0;
+
+ *p2 = *p1;
+ p2->scope = 0;
+
+ luaL_getmetatable(L, LUCI_IP_CIDR);
+ lua_setmetatable(L, -2);
+ return 1;
+}
+
static int cidr_tolinklocal(lua_State *L)
{
cidr_t *p1 = L_checkcidr(L, 1, NULL);
{ "mask", cidr_mask },
{ "broadcast", cidr_broadcast },
{ "mapped4", cidr_mapped4 },
+ { "unscoped", cidr_unscoped },
{ "tomac", cidr_tomac },
{ "tolinklocal", cidr_tolinklocal },
{ "contains", cidr_contains },
print(addr:mapped4()) -- "172.16.19.1"`
]]
+---[[
+Derive unscoped IPv6 address of CIDR instance.
+
+Construct a copy of the given IPv6 CIDR instance and drop the associated
+address scope information.
+
+This function has no effect on IPv4 instances or MAC address instances,
+it will return nothing in this case.
+
+@class function
+@sort 19
+@name cidr.unscoped
+@return Return a new CIDR instance representing the unscoped IPv6 address.
+@usage `local addr = luci.ip.new("fe80::1234%eth0")
+print(addr:unscoped()) -- "fe80::1234"`
+]]
+
---[[
Derive MAC address of IPv6 link local CIDR instance.
case.
@class function
-@sort 19
+@sort 20
@name cidr.tomac
@return Return a new CIDR instance representing the MAC address if this
instance is an IPv6 link local address, else return nothing.
nothing in this case.
@class function
-@sort 20
+@sort 21
@name cidr.tolinklocal
@return Return a new CIDR instance representing the IPv6 link local address.
@usage `local mac = luci.ip.new("64:66:B3:47:E1:B9")
Test whether CIDR contains given range.
@class function
-@sort 21
+@sort 22
@name cidr.contains
@param addr A `luci.ip.cidr` instance or a string convertible by
`luci.ip.new()` to test.
address space, the result is set to the highest possible address.
@class function
-@sort 22
+@sort 23
@name cidr.add
@param amount A numeric value between 0 and 0xFFFFFFFF, a
`luci.ip.cidr` instance or a string convertible by
possible address is returned.
@class function
-@sort 23
+@sort 24
@name cidr.sub
@param amount A numeric value between 0 and 0xFFFFFFFF, a
`luci.ip.cidr` instance or a string convertible by
Calculate the lowest possible host address within this CIDR instance.
@class function
-@sort 24
+@sort 25
@name cidr.minhost
@return Returns a new CIDR instance representing the lowest host address
within this range.
Calculate the highest possible host address within this CIDR instance.
@class function
-@sort 25
+@sort 26
@name cidr.maxhost
@return Returns a new CIDR instance representing the highest host address
within this range.
define it as __tostring function in the associated metatable.
@class function
-@sort 26
+@sort 27
@name cidr.string
@return Returns a string representing the range or address of this CIDR instance
]]