npf_nbuf_test.c revision 1.3 1 1.3 rmind /* $NetBSD: npf_nbuf_test.c,v 1.3 2012/12/24 19:05:48 rmind Exp $ */
2 1.1 rmind
3 1.1 rmind /*
4 1.1 rmind * NPF nbuf interface test.
5 1.1 rmind *
6 1.1 rmind * Public Domain.
7 1.1 rmind */
8 1.1 rmind
9 1.1 rmind #include <sys/types.h>
10 1.1 rmind #include <sys/kmem.h>
11 1.1 rmind
12 1.1 rmind #include "npf_impl.h"
13 1.1 rmind #include "npf_test.h"
14 1.1 rmind
15 1.1 rmind #define MBUF_CHAIN_LEN 128
16 1.1 rmind
17 1.1 rmind CTASSERT((MBUF_CHAIN_LEN % sizeof(uint32_t)) == 0);
18 1.1 rmind
19 1.1 rmind static char *
20 1.3 rmind parse_nbuf_chain(struct mbuf *m)
21 1.1 rmind {
22 1.3 rmind const void *dummy_ifp = (void *)0xdeadbeef;
23 1.1 rmind char *s = kmem_zalloc(MBUF_CHAIN_LEN + 1, KM_SLEEP);
24 1.3 rmind nbuf_t nbuf;
25 1.3 rmind int n;
26 1.1 rmind
27 1.3 rmind nbuf_init(&nbuf, m, dummy_ifp);
28 1.1 rmind for (n = 0; ; ) {
29 1.3 rmind void *nptr;
30 1.1 rmind char d[4 + 1];
31 1.1 rmind
32 1.3 rmind nptr = nbuf_ensure_contig(&nbuf, sizeof(uint32_t));
33 1.3 rmind if (nptr == NULL) {
34 1.3 rmind break;
35 1.1 rmind }
36 1.3 rmind memcpy(&d, nptr, sizeof(uint32_t));
37 1.3 rmind
38 1.1 rmind d[sizeof(d) - 1] = '\0';
39 1.1 rmind strcat(s, d);
40 1.1 rmind
41 1.1 rmind if (n + sizeof(uint32_t) == MBUF_CHAIN_LEN) {
42 1.3 rmind assert(nbuf_advance(&nbuf, sizeof(uint32_t) - 1, 0));
43 1.3 rmind assert(!nbuf_advance(&nbuf, 1, 0));
44 1.1 rmind break;
45 1.1 rmind }
46 1.3 rmind if (!nbuf_advance(&nbuf, sizeof(uint32_t), 0)) {
47 1.3 rmind break;
48 1.1 rmind }
49 1.1 rmind n += sizeof(uint32_t);
50 1.1 rmind }
51 1.1 rmind return s;
52 1.1 rmind }
53 1.1 rmind
54 1.1 rmind static char *
55 1.1 rmind mbuf_getstring(struct mbuf *m)
56 1.1 rmind {
57 1.1 rmind char *s = kmem_zalloc(MBUF_CHAIN_LEN + 1, KM_SLEEP);
58 1.1 rmind u_int tlen = 0;
59 1.1 rmind
60 1.1 rmind while (m) {
61 1.1 rmind int len = m->m_len;
62 1.1 rmind char *d = m->m_data;
63 1.1 rmind while (len--) {
64 1.1 rmind s[tlen++] = *d++;
65 1.1 rmind }
66 1.1 rmind m = m->m_next;
67 1.1 rmind }
68 1.1 rmind return s;
69 1.1 rmind }
70 1.1 rmind
71 1.1 rmind static struct mbuf *
72 1.1 rmind mbuf_alloc_with_off(size_t off, int len)
73 1.1 rmind {
74 1.1 rmind struct mbuf *m;
75 1.1 rmind
76 1.3 rmind KASSERT(off + len < MLEN);
77 1.3 rmind m = m_get(M_WAITOK, MT_DATA);
78 1.3 rmind m->m_data = (char *)m->m_data + off;
79 1.1 rmind m->m_len = len;
80 1.1 rmind return m;
81 1.1 rmind }
82 1.1 rmind
83 1.1 rmind /*
84 1.1 rmind * Create an mbuf chain, each of 1 byte size.
85 1.1 rmind */
86 1.1 rmind static struct mbuf *
87 1.1 rmind mbuf_bytesize(size_t clen)
88 1.1 rmind {
89 1.1 rmind struct mbuf *m0 = NULL, *m = NULL;
90 1.1 rmind u_int i, n;
91 1.1 rmind
92 1.1 rmind /* Chain of clen (e.g. 128) mbufs, each storing 1 byte of data. */
93 1.1 rmind for (i = 0, n = 0; i < clen; i++) {
94 1.1 rmind /* Range of offset: 0 .. 15. */
95 1.1 rmind m0 = mbuf_alloc_with_off(n & 0xf, 1);
96 1.1 rmind
97 1.1 rmind /* Fill data with letters from 'a' to 'z'. */
98 1.1 rmind memset(m0->m_data, 'a' + n, 1);
99 1.3 rmind n = ('a' + n) < 'z' ? n + 1 : 0;
100 1.1 rmind
101 1.1 rmind /* Next mbuf.. */
102 1.1 rmind m0->m_next = m;
103 1.1 rmind m = m0;
104 1.1 rmind }
105 1.3 rmind
106 1.3 rmind m0 = m_gethdr(M_WAITOK, MT_HEADER);
107 1.3 rmind m0->m_pkthdr.len = clen;
108 1.3 rmind m0->m_len = 0;
109 1.3 rmind m0->m_next = m;
110 1.1 rmind return m0;
111 1.1 rmind }
112 1.1 rmind
113 1.1 rmind /*
114 1.1 rmind * Generate random amount of mbufs, with random offsets and lengths.
115 1.1 rmind */
116 1.1 rmind static struct mbuf *
117 1.1 rmind mbuf_random_len(size_t chain_len)
118 1.1 rmind {
119 1.1 rmind struct mbuf *m0 = NULL, *m = NULL;
120 1.1 rmind u_int tlen = 0, n = 0;
121 1.1 rmind
122 1.1 rmind while (tlen < chain_len) {
123 1.1 rmind u_int off, len;
124 1.1 rmind char *d;
125 1.1 rmind
126 1.1 rmind /* Random offset and length range: 1 .. 16. */
127 1.1 rmind off = (random() % 16) + 1;
128 1.1 rmind len = (random() % 16) + 1;
129 1.1 rmind
130 1.1 rmind /* Do not exceed 128 bytes of total length. */
131 1.1 rmind if (tlen + len > chain_len) {
132 1.1 rmind len = chain_len - tlen;
133 1.1 rmind }
134 1.1 rmind tlen += len;
135 1.1 rmind
136 1.1 rmind /* Consistently fill data with letters from 'a' to 'z'. */
137 1.1 rmind m0 = mbuf_alloc_with_off(off, len);
138 1.1 rmind d = m0->m_data;
139 1.1 rmind while (len--) {
140 1.1 rmind *d++ = ('a' + n);
141 1.3 rmind n = ('a' + n) < 'z' ? n + 1 : 0;
142 1.1 rmind }
143 1.1 rmind
144 1.1 rmind /* Next mbuf.. */
145 1.1 rmind m0->m_next = m;
146 1.1 rmind m = m0;
147 1.1 rmind }
148 1.3 rmind KASSERT(tlen == chain_len);
149 1.3 rmind
150 1.3 rmind m0 = m_gethdr(M_WAITOK, MT_HEADER);
151 1.3 rmind m0->m_pkthdr.len = tlen;
152 1.3 rmind m0->m_next = m;
153 1.3 rmind m0->m_len = 0;
154 1.1 rmind return m0;
155 1.1 rmind }
156 1.1 rmind
157 1.1 rmind static bool
158 1.3 rmind validate_mbuf_data(bool verbose, char *bufa, char *bufb)
159 1.1 rmind {
160 1.1 rmind bool ret = (strcmp(bufa, bufb) == 0);
161 1.1 rmind
162 1.1 rmind if (verbose) {
163 1.1 rmind printf("Buffer A: %s\nBuffer B: %s\n", bufa, bufb);
164 1.1 rmind }
165 1.1 rmind kmem_free(bufa, MBUF_CHAIN_LEN + 1);
166 1.1 rmind kmem_free(bufb, MBUF_CHAIN_LEN + 1);
167 1.1 rmind return ret;
168 1.1 rmind }
169 1.1 rmind
170 1.1 rmind bool
171 1.1 rmind npf_nbuf_test(bool verbose)
172 1.1 rmind {
173 1.1 rmind struct mbuf *m1, *m2;
174 1.1 rmind char *bufa, *bufb;
175 1.2 rmind bool fail = false;
176 1.1 rmind
177 1.1 rmind m1 = mbuf_random_len(MBUF_CHAIN_LEN);
178 1.1 rmind bufa = mbuf_getstring(m1);
179 1.3 rmind bufb = parse_nbuf_chain(m1);
180 1.3 rmind fail |= !validate_mbuf_data(verbose, bufa, bufb);
181 1.1 rmind
182 1.1 rmind m2 = mbuf_bytesize(MBUF_CHAIN_LEN);
183 1.1 rmind bufa = mbuf_getstring(m2);
184 1.3 rmind bufb = parse_nbuf_chain(m2);
185 1.3 rmind fail |= !validate_mbuf_data(verbose, bufa, bufb);
186 1.1 rmind
187 1.2 rmind return !fail;
188 1.1 rmind }
189