Track ports valid directly - as LLVM will | pointers which BPF wont allow
[flowspec-xdp] / genrules.py
1 #!/usr/bin/env python3
2
3 import sys
4 import ipaddress
5 from enum import Enum
6 import argparse
7
8
9 IP_PROTO_ICMP = 1
10 IP_PROTO_ICMPV6 = 58
11 IP_PROTO_TCP = 6
12 IP_PROTO_UDP = 17
13
14 class ASTAction(Enum):
15     OR = 1
16     AND = 2
17     NOT = 3
18     FALSE = 4
19     TRUE = 5
20     EXPR = 6
21 class ASTNode:
22     def __init__(self, action, left, right=None):
23         self.action = action
24         if action == ASTAction.FALSE or action == ASTAction.TRUE:
25             assert left is None and right is None
26             return
27         self.left = left
28         if right is None:
29             assert action == ASTAction.EXPR or action == ASTAction.NOT
30         else:
31             self.right = right
32
33     def write(self, expr_param, expr_param2=None):
34         if self.action == ASTAction.OR:
35             return "(" + self.left.write(expr_param, expr_param2) + ") || (" + self.right.write(expr_param, expr_param2) + ")"
36         if self.action == ASTAction.AND:
37             return "(" + self.left.write(expr_param, expr_param2) + ") && (" + self.right.write(expr_param, expr_param2) + ")"
38         if self.action == ASTAction.NOT:
39             return "!(" + self.left.write(expr_param, expr_param2) + ")"
40         if self.action == ASTAction.FALSE:
41             return "0"
42         if self.action == ASTAction.TRUE:
43             return "1"
44         if self.action == ASTAction.EXPR:
45             return self.left.write(expr_param, expr_param2)
46
47 def parse_ast(expr, parse_expr):
48     expr = expr.strip()
49
50     comma_split = expr.split(",", 1)
51     or_split = expr.split("||", 1)
52     if len(comma_split) > 1 and not "||" in comma_split[0]:
53         return ASTNode(ASTAction.OR, parse_ast(comma_split[0], parse_expr), parse_ast(comma_split[1], parse_expr))
54     if len(or_split) > 1:
55         assert not "," in or_split[0]
56         return ASTNode(ASTAction.OR, parse_ast(or_split[0], parse_expr), parse_ast(or_split[1], parse_expr))
57
58     and_split = expr.split("&&", 1)
59     if len(and_split) > 1:
60         return ASTNode(ASTAction.AND, parse_ast(and_split[0], parse_expr), parse_ast(and_split[1], parse_expr))
61
62     if expr.strip() == "true":
63         return ASTNode(ASTAction.TRUE, None)
64     if expr.strip() == "false":
65         return ASTNode(ASTAction.FALSE, None)
66
67     if expr.startswith("!"):
68         return ASTNode(ASTAction.NOT, parse_ast(expr[1:], parse_expr))
69
70     return parse_expr(expr)
71
72
73 class NumbersAction(Enum):
74     EQ = "=="
75     GT = ">"
76     GTOE = ">="
77     LT = "<"
78     LTOE = "<="
79 class NumbersExpr:
80     def __init__(self, action, val):
81         self.action = action
82         self.val = val
83
84     def write(self, param, param2):
85         if param2 is not None:
86             return "(" + param + self.action.value + self.val + ") || (" + param2 + self.action.value + self.val + ")"
87         return param + self.action.value + self.val
88
89 def parse_numbers_expr(expr):
90     space_split = expr.split(" ")
91     if expr.startswith(">="):
92         assert len(space_split) == 2
93         return ASTNode(ASTAction.EXPR, NumbersExpr(NumbersAction.GTOE, space_split[1]))
94     if expr.startswith(">"):
95         assert len(space_split) == 2
96         return ASTNode(ASTAction.EXPR, NumbersExpr(NumbersAction.GT, space_split[1]))
97     if expr.startswith("<="):
98         assert len(space_split) == 2
99         return ASTNode(ASTAction.EXPR, NumbersExpr(NumbersAction.LTOE, space_split[1]))
100     if expr.startswith("<"):
101         assert len(space_split) == 2
102         return ASTNode(ASTAction.EXPR, NumbersExpr(NumbersAction.LT, space_split[1]))
103     if ".." in expr:
104         rangesplit = expr.split("..")
105         assert len(rangesplit) == 2
106         #XXX: Are ranges really inclusive,inclusive?
107         left = ASTNode(ASTAction.EXPR, NumbersExpr(NumbersAction.GTOE, rangesplit[0]))
108         right = ASTNode(ASTAction.EXPR, NumbersExpr(NumbersAction.LTOE, rangesplit[1]))
109         return ASTNode(ASTAction.AND, left, right)
110     
111     if expr.startswith("= "):
112         expr = expr[2:]
113     return ASTNode(ASTAction.EXPR, NumbersExpr(NumbersAction.EQ, expr))
114
115 class FragExpr(Enum):
116     IF = 1
117     FF = 2
118     DF = 3
119     LF = 4
120
121     def write(self, ipproto, _param2):
122         if ipproto == 4:
123             if self == FragExpr.IF:
124                 return "(ip->frag_off & BE16(IP_MF|IP_OFFSET)) != 0"
125             elif self == FragExpr.FF:
126                 return "((ip->frag_off & BE16(IP_MF)) != 0 && (ip->frag_off & BE16(IP_OFFSET)) == 0)"
127             elif self == FragExpr.DF:
128                 return "(ip->frag_off & BE16(IP_DF)) != 0"
129             elif self == FragExpr.LF:
130                 return "((ip->frag_off & BE16(IP_MF)) == 0 && (ip->frag_off & BE16(IP_OFFSET)) != 0)"
131             else:
132                 assert False
133         else:
134             if self == FragExpr.IF:
135                 return "frag6 != NULL"
136             elif self == FragExpr.FF:
137                 return "(frag6 != NULL && (frag6->frag_off & BE16(IP6_MF)) != 0 && (frag6->frag_off & BE16(IP6_FRAGOFF)) == 0)"
138             elif self == FragExpr.DF:
139                 assert False # No such thing in v6
140             elif self == FragExpr.LF:
141                 return "(frag6 != NULL && (frag6->frag_off & BE16(IP6_MF)) == 0 && (frag6->frag_off & BE16(IP6_FRAGOFF)) != 0)"
142             else:
143                 assert False
144
145 def parse_frag_expr(expr):
146     if expr == "is_fragment":
147         return ASTNode(ASTAction.EXPR, FragExpr.IF)
148     elif expr == "first_fragment":
149         return ASTNode(ASTAction.EXPR, FragExpr.FF)
150     elif expr == "dont_fragment":
151         return ASTNode(ASTAction.EXPR, FragExpr.DF)
152     elif expr == "last_fragment":
153         return ASTNode(ASTAction.EXPR, FragExpr.LF)
154     else:
155         assert False
156
157 class BitExpr:
158     def __init__(self, val):
159         s = val.split("/")
160         assert len(s) == 2
161         self.match = s[0]
162         self.mask = s[1]
163
164     def write(self, param, _param2):
165         return f"({param} & {self.mask}) == {self.match}"
166
167 def parse_bit_expr(expr):
168     return ASTNode(ASTAction.EXPR, BitExpr(expr))
169
170
171 def ip_to_rule(proto, inip, ty, offset):
172     if proto == 4:
173         assert offset is None
174         net = ipaddress.IPv4Network(inip.strip())
175         if net.prefixlen == 0:
176             return ""
177         return f"""if ((ip->{ty} & MASK4({net.prefixlen})) != BIGEND32({int(net.network_address)}ULL))
178         break;"""
179     else:
180         net = ipaddress.IPv6Network(inip.strip())
181         if net.prefixlen == 0:
182             return ""
183         u32s = [(int(net.network_address) >> (3*32)) & 0xffffffff,
184                 (int(net.network_address) >> (2*32)) & 0xffffffff,
185                 (int(net.network_address) >> (1*32)) & 0xffffffff,
186                 (int(net.network_address) >> (0*32)) & 0xffffffff]
187         if offset is None:
188             mask = f"MASK6({net.prefixlen})"
189         else:
190             mask = f"MASK6_OFFS({offset}, {net.prefixlen})"
191         return f"""if ((ip6->{ty} & {mask}) != (BIGEND128({u32s[0]}ULL, {u32s[1]}ULL, {u32s[2]}ULL, {u32s[3]}ULL) & {mask}))
192         break;"""
193
194 def fragment_to_rule(ipproto, rules):
195     ast = parse_ast(rules, parse_frag_expr)
196     return "if (!( " + ast.write(ipproto) + " )) break;"
197
198 def len_to_rule(rules):
199     ast = parse_ast(rules, parse_numbers_expr)
200     return "if (!( " + ast.write("(data_end - pktdata)") + " )) break;"
201  
202 def proto_to_rule(ipproto, proto):
203     ast = parse_ast(proto, parse_numbers_expr)
204
205     if ipproto == 4:
206         return "if (!( " + ast.write("ip->protocol") + " )) break;"
207     else:
208         return "if (!( " + ast.write("ip6->nexthdr") + " )) break;"
209
210 def icmp_type_to_rule(proto, ty):
211     ast = parse_ast(ty, parse_numbers_expr)
212     if proto == 4:
213         return "if (icmp == NULL) break;\nif (!( " + ast.write("icmp->type") + " )) break;"
214     else:
215         return "if (icmpv6 == NULL) break;\nif (!( " + ast.write("icmpv6->icmp6_type") + " )) break;"
216
217 def icmp_code_to_rule(proto, code):
218     ast = parse_ast(code, parse_numbers_expr)
219     if proto == 4:
220         return "if (icmp == NULL) break;\nif (!( " + ast.write("icmp->code") + " )) break;"
221     else:
222         return "if (icmpv6 == NULL) break;\nif (!( " + ast.write("icmpv6->icmp6_code") + " )) break;"
223
224 def dscp_to_rule(proto, rules):
225     ast = parse_ast(rules, parse_numbers_expr)
226
227     if proto == 4:
228         return "if (!( " + ast.write("((ip->tos & 0xfc) >> 2)") + " )) break;"
229     else:
230         return "if (!( " + ast.write("((ip6->priority << 4) | ((ip6->flow_lbl[0] & 0xc0) >> 4) >> 2)") + " )) break;"
231
232 def port_to_rule(ty, rules):
233     if ty == "port" :
234         ast = parse_ast(rules, parse_numbers_expr)
235         return "if (!ports_valid) break;\nif (!( " + ast.write("sport", "dport") + " )) break;"
236
237     ast = parse_ast(rules, parse_numbers_expr)
238     return "if (!ports_valid) break;\nif (!( " + ast.write(ty) + " )) break;"
239
240 def tcp_flags_to_rule(rules):
241     ast = parse_ast(rules, parse_bit_expr)
242
243     return f"""if (tcp == NULL) break;
244 if (!( {ast.write("(ntohs(tcp->flags) & 0xfff)")} )) break;"""
245
246 def flow_label_to_rule(rules):
247     ast = parse_ast(rules, parse_bit_expr)
248
249     return f"""if (ip6 == NULL) break;
250 if (!( {ast.write("((((uint32_t)(ip6->flow_lbl[0] & 0xf)) << 2*8) | (((uint32_t)ip6->flow_lbl[1]) << 1*8) | (uint32_t)ip6->flow_lbl[0])")} )) break;"""
251
252 with open("rules.h", "w") as out:
253     parse = argparse.ArgumentParser()
254     parse.add_argument("--ihl", dest="ihl", required=True, choices=["drop-options","accept-options","parse-options"])
255     parse.add_argument("--v6frag", dest="v6frag", required=True, choices=["drop-frags","ignore","parse-frags","ignore-parse-if-rule"])
256     parse.add_argument("--8021q", dest="vlan", required=True, choices=["drop-vlan","accept-vlan","parse-vlan"])
257     parse.add_argument("--require-8021q", dest="vlan_tag")
258     args = parse.parse_args(sys.argv[1:])
259
260     if args.ihl == "drop-options":
261         out.write("#define PARSE_IHL XDP_DROP\n")
262     elif args.ihl == "accept-options":
263         out.write("#define PARSE_IHL XDP_PASS\n")
264     elif args.ihl == "parse-options":
265         out.write("#define PARSE_IHL PARSE\n")
266
267     if args.v6frag == "drop-frags":
268         out.write("#define PARSE_V6_FRAG XDP_DROP\n")
269     elif args.v6frag == "ignore":
270         pass
271     elif args.v6frag == "parse-frags":
272         out.write("#define PARSE_V6_FRAG PARSE\n")
273
274     if args.vlan == "drop-vlan":
275         out.write("#define PARSE_8021Q XDP_DROP\n")
276     elif args.vlan == "accept-vlan":
277         out.write("#define PARSE_8021Q XDP_PASS\n")
278     elif args.vlan == "parse-vlan":
279         out.write("#define PARSE_8021Q PARSE\n")
280
281     if args.vlan_tag is not None:
282         if args.vlan != "parse-vlan":
283             assert False
284         out.write("#define REQ_8021Q " + args.vlan_tag + "\n")
285
286     rules6 = ""
287     rules4 = ""
288     use_v6_frags = False
289     rulecnt = 0
290
291     for line in sys.stdin.readlines():
292         t = line.split("{")
293         if len(t) != 2:
294             continue
295         if t[0].strip() == "flow4":
296             proto = 4
297             rules4 += "\tdo {\\\n"
298         elif t[0].strip() == "flow6":
299             proto = 6
300             rules6 += "\tdo {\\\n"
301         else:
302             continue
303
304         def write_rule(r):
305             global rules4, rules6
306             if proto == 6:
307                 rules6 += "\t\t" + r.replace("\n", " \\\n\t\t") + " \\\n"
308             else:
309                 rules4 += "\t\t" + r.replace("\n", " \\\n\t\t") + " \\\n"
310
311         rule = t[1].split("}")[0].strip()
312         for step in rule.split(";"):
313             if step.strip().startswith("src") or step.strip().startswith("dst"):
314                 nets = step.strip()[3:].strip().split(" ")
315                 if len(nets) > 1:
316                     assert nets[1] == "offset"
317                     offset = nets[2]
318                 else:
319                     offset = None
320                 if step.strip().startswith("src"):
321                     write_rule(ip_to_rule(proto, nets[0], "saddr", offset))
322                 else:
323                     write_rule(ip_to_rule(proto, nets[0], "daddr", offset))
324             elif step.strip().startswith("proto") and proto == 4:
325                 write_rule(proto_to_rule(4, step.strip()[6:]))
326             elif step.strip().startswith("next header") and proto == 6:
327                 write_rule(proto_to_rule(6, step.strip()[12:]))
328             elif step.strip().startswith("icmp type"):
329                 write_rule(icmp_type_to_rule(proto, step.strip()[10:]))
330             elif step.strip().startswith("icmp code"):
331                 write_rule(icmp_code_to_rule(proto, step.strip()[10:]))
332             elif step.strip().startswith("sport") or step.strip().startswith("dport") or step.strip().startswith("port"):
333                 write_rule(port_to_rule(step.strip().split(" ")[0], step.strip().split(" ", 1)[1]))
334             elif step.strip().startswith("length"):
335                 write_rule(len_to_rule(step.strip()[7:]))
336             elif step.strip().startswith("dscp"):
337                 write_rule(dscp_to_rule(proto, step.strip()[5:]))
338             elif step.strip().startswith("tcp flags"):
339                 write_rule(tcp_flags_to_rule(step.strip()[10:]))
340             elif step.strip().startswith("label"):
341                 write_rule(flow_label_to_rule(step.strip()[6:]))
342             elif step.strip().startswith("fragment"):
343                 if proto == 6:
344                     use_v6_frags = True
345                 write_rule(fragment_to_rule(proto, step.strip()[9:]))
346             elif step.strip() == "":
347                 pass
348             else:
349                 assert False
350         write_rule(f"const uint32_t ruleidx = STATIC_RULE_CNT + {rulecnt};")
351         write_rule("DO_RETURN(ruleidx, XDP_DROP);")
352         if proto == 6:
353             rules6 += "\t} while(0);\\\n"
354         else:
355             rules4 += "\t} while(0);\\\n"
356         rulecnt += 1
357
358     out.write("\n")
359     out.write(f"#define RULECNT {rulecnt}\n")
360     if rules4 != "":
361         out.write("#define NEED_V4_PARSE\n")
362         out.write("#define RULES4 {\\\n" + rules4 + "}\n")
363     if rules6:
364         out.write("#define NEED_V6_PARSE\n")
365         out.write("#define RULES6 {\\\n" + rules6 + "}\n")
366     if args.v6frag == "ignore-parse-if-rule":
367         if use_v6_frags:
368             out.write("#define PARSE_V6_FRAG PARSE\n")