FD.io VPP  v16.09
Vector Packet Processing
rewrite.h
Go to the documentation of this file.
1 /*
2  * Copyright (c) 2015 Cisco and/or its affiliates.
3  * Licensed under the Apache License, Version 2.0 (the "License");
4  * you may not use this file except in compliance with the License.
5  * You may obtain a copy of the License at:
6  *
7  * http://www.apache.org/licenses/LICENSE-2.0
8  *
9  * Unless required by applicable law or agreed to in writing, software
10  * distributed under the License is distributed on an "AS IS" BASIS,
11  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12  * See the License for the specific language governing permissions and
13  * limitations under the License.
14  */
15 /*
16  * rewrite.h: packet rewrite
17  *
18  * Copyright (c) 2008 Eliot Dresselhaus
19  *
20  * Permission is hereby granted, free of charge, to any person obtaining
21  * a copy of this software and associated documentation files (the
22  * "Software"), to deal in the Software without restriction, including
23  * without limitation the rights to use, copy, modify, merge, publish,
24  * distribute, sublicense, and/or sell copies of the Software, and to
25  * permit persons to whom the Software is furnished to do so, subject to
26  * the following conditions:
27  *
28  * The above copyright notice and this permission notice shall be
29  * included in all copies or substantial portions of the Software.
30  *
31  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
32  * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
33  * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
34  * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
35  * LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
36  * OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
37  * WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
38  */
39 
40 #ifndef included_vnet_rewrite_h
41 #define included_vnet_rewrite_h
42 
43 #include <vlib/vlib.h>
44 #include <vnet/l3_types.h>
45 
46 /* Consider using vector types for speed? */
48 
49 /* *INDENT-OFF* */
50 typedef CLIB_PACKED (struct {
51  /* Interface to mark re-written packets with. */
52  u32 sw_if_index;
53 
54  /* Packet processing node where rewrite happens. */
55  u32 node_index;
56 
57  /* Next node to feed after packet rewrite is done. */
58  u16 next_index;
59 
60  /* Number of bytes in rewrite data. */
61  u16 data_bytes;
62 
63  /* Max packet size layer 3 (MTU) for output interface.
64  Used for MTU check after packet rewrite. */
65  u16 max_l3_packet_bytes;
66 
67  /* Rewrite string starting at end and going backwards. */
68  u8 data[0];
69 }) vnet_rewrite_header_t;
70 /* *INDENT-ON* */
71 
72 /*
73  Helper macro for declaring rewrite string w/ given max-size.
74 
75  Typical usage:
76  typedef struct {
77  //
78  int a, b;
79 
80  // Total adjacency is 64 bytes.
81  vnet_rewrite_declare(64 - 2*sizeof(int)) rw;
82  } my_adjacency_t;
83 */
84 #define vnet_declare_rewrite(total_bytes) \
85 struct { \
86  vnet_rewrite_header_t rewrite_header; \
87  \
88  u8 rewrite_data[(total_bytes) - sizeof (vnet_rewrite_header_t)]; \
89 }
90 
91 always_inline void
92 vnet_rewrite_set_data_internal (vnet_rewrite_header_t * rw,
93  int max_size, void *data, int data_bytes)
94 {
95  /* Sanity check values carefully for this memset operation */
96  ASSERT ((max_size > 0) && (max_size < VLIB_BUFFER_PRE_DATA_SIZE));
97  ASSERT ((data_bytes >= 0) && (data_bytes < max_size));
98 
99  rw->data_bytes = data_bytes;
100  clib_memcpy (rw->data + max_size - data_bytes, data, data_bytes);
101  memset (rw->data, 0xfe, max_size - data_bytes);
102 }
103 
104 #define vnet_rewrite_set_data(rw,data,data_bytes) \
105  vnet_rewrite_set_data_internal (&((rw).rewrite_header), \
106  sizeof ((rw).rewrite_data), \
107  (data), \
108  (data_bytes))
109 
110 always_inline void *
111 vnet_rewrite_get_data_internal (vnet_rewrite_header_t * rw, int max_size)
112 {
113  ASSERT (rw->data_bytes <= max_size);
114  return rw->data + max_size - rw->data_bytes;
115 }
116 
117 #define vnet_rewrite_get_data(rw) \
118  vnet_rewrite_get_data_internal (&((rw).rewrite_header), sizeof ((rw).rewrite_data))
119 
120 always_inline void
121 vnet_rewrite_copy_one (vnet_rewrite_data_t * p0, vnet_rewrite_data_t * rw0,
122  int i)
123 {
124  p0[-i] = rw0[-i];
125 }
126 
127 void vnet_rewrite_copy_slow_path (vnet_rewrite_data_t * p0,
128  vnet_rewrite_data_t * rw0,
129  word n_left, uword most_likely_size);
130 
131 /* *INDENT-OFF* */
132 typedef CLIB_PACKED (struct {
133  u64 a;
134  u32 b;
135  u16 c;
136 }) eh_copy_t;
137 /* *INDENT-ON* */
138 
139 always_inline void
140 _vnet_rewrite_one_header (vnet_rewrite_header_t * h0,
141  void *packet0, int max_size, int most_likely_size)
142 {
143  vnet_rewrite_data_t *p0 = packet0;
144  vnet_rewrite_data_t *rw0 = (vnet_rewrite_data_t *) (h0->data + max_size);
145  word n_left0;
146 
147  /* 0xfefe => poisoned adjacency => crash */
148  ASSERT (h0->data_bytes != 0xfefe);
149 
150  if (PREDICT_TRUE (h0->data_bytes == sizeof (eh_copy_t)))
151  {
152  eh_copy_t *s, *d;
153  s = (eh_copy_t *) (h0->data + max_size - sizeof (eh_copy_t));
154  d = (eh_copy_t *) (((u8 *) packet0) - sizeof (eh_copy_t));
155  clib_memcpy (d, s, sizeof (eh_copy_t));
156  return;
157  }
158 
159 
160 #define _(i) \
161  do { \
162  if (most_likely_size > ((i)-1)*sizeof (vnet_rewrite_data_t)) \
163  vnet_rewrite_copy_one (p0, rw0, (i)); \
164  } while (0)
165 
166  _(4);
167  _(3);
168  _(2);
169  _(1);
170 
171 #undef _
172 
173  n_left0 = (int)
174  (((int) h0->data_bytes - most_likely_size) + (sizeof (rw0[0]) - 1))
175  / (int) sizeof (rw0[0]);
176  if (PREDICT_FALSE (n_left0 > 0))
177  vnet_rewrite_copy_slow_path (p0, rw0, n_left0, most_likely_size);
178 }
179 
180 always_inline void
181 _vnet_rewrite_two_headers (vnet_rewrite_header_t * h0,
182  vnet_rewrite_header_t * h1,
183  void *packet0,
184  void *packet1, int max_size, int most_likely_size)
185 {
186  vnet_rewrite_data_t *p0 = packet0;
187  vnet_rewrite_data_t *p1 = packet1;
188  vnet_rewrite_data_t *rw0 = (vnet_rewrite_data_t *) (h0->data + max_size);
189  vnet_rewrite_data_t *rw1 = (vnet_rewrite_data_t *) (h1->data + max_size);
190  word n_left0, n_left1;
191  int slow_path;
192 
193  /* 0xfefe => poisoned adjacency => crash */
194  ASSERT (h0->data_bytes != 0xfefe);
195  ASSERT (h1->data_bytes != 0xfefe);
196 
197  /* Arithmetic calculation: bytes0 == bytes1 == 14 */
198  slow_path = h0->data_bytes ^ h1->data_bytes;
199  slow_path += h0->data_bytes ^ sizeof (eh_copy_t);
200 
201  if (PREDICT_TRUE (slow_path == 0))
202  {
203  eh_copy_t *s0, *d0, *s1, *d1;
204  s0 = (eh_copy_t *) (h0->data + max_size - sizeof (eh_copy_t));
205  d0 = (eh_copy_t *) (((u8 *) packet0) - sizeof (eh_copy_t));
206  clib_memcpy (d0, s0, sizeof (eh_copy_t));
207  s1 = (eh_copy_t *) (h1->data + max_size - sizeof (eh_copy_t));
208  d1 = (eh_copy_t *) (((u8 *) packet1) - sizeof (eh_copy_t));
209  clib_memcpy (d1, s1, sizeof (eh_copy_t));
210  return;
211  }
212 
213 #define _(i) \
214  do { \
215  if (most_likely_size > ((i)-1)*sizeof (vnet_rewrite_data_t)) \
216  { \
217  vnet_rewrite_copy_one (p0, rw0, (i)); \
218  vnet_rewrite_copy_one (p1, rw1, (i)); \
219  } \
220  } while (0)
221 
222  _(4);
223  _(3);
224  _(2);
225  _(1);
226 
227 #undef _
228 
229  n_left0 = (int)
230  (((int) h0->data_bytes - most_likely_size) + (sizeof (rw0[0]) - 1))
231  / (int) sizeof (rw0[0]);
232  n_left1 = (int)
233  (((int) h1->data_bytes - most_likely_size) + (sizeof (rw1[0]) - 1))
234  / (int) sizeof (rw1[0]);
235 
236  if (PREDICT_FALSE (n_left0 > 0 || n_left1 > 0))
237  {
238  vnet_rewrite_copy_slow_path (p0, rw0, n_left0, most_likely_size);
239  vnet_rewrite_copy_slow_path (p1, rw1, n_left1, most_likely_size);
240  }
241 }
242 
243 #define vnet_rewrite_one_header(rw0,p0,most_likely_size) \
244  _vnet_rewrite_one_header (&((rw0).rewrite_header), (p0), \
245  sizeof ((rw0).rewrite_data), \
246  (most_likely_size))
247 
248 #define vnet_rewrite_two_headers(rw0,rw1,p0,p1,most_likely_size) \
249  _vnet_rewrite_two_headers (&((rw0).rewrite_header), &((rw1).rewrite_header), \
250  (p0), (p1), \
251  sizeof ((rw0).rewrite_data), \
252  (most_likely_size))
253 
254 #define VNET_REWRITE_FOR_SW_INTERFACE_ADDRESS_BROADCAST ((void *) 0)
256  vnet_l3_packet_type_t packet_type,
257  u32 sw_if_index,
258  u32 node_index,
259  void *dst_address,
260  vnet_rewrite_header_t * rw,
261  u32 max_rewrite_bytes);
262 
263 void vnet_rewrite_for_tunnel (struct vnet_main_t *vnm,
264  u32 tx_sw_if_index,
265  u32 rewrite_node_index,
266  u32 post_rewrite_node_index,
267  vnet_rewrite_header_t * rw,
268  u8 * rewrite_data, u32 rewrite_length);
269 
270 /* Parser for unformat header & rewrite string. */
272 
275 
277 
278 #endif /* included_vnet_rewrite_h */
279 
280 /*
281  * fd.io coding-style-patch-verification: ON
282  *
283  * Local Variables:
284  * eval: (c-set-style "gnu")
285  * End:
286  */
sll srl srl sll sra u16x4 i
Definition: vector_sse2.h:343
uword( unformat_function_t)(unformat_input_t *input, va_list *args)
Definition: format.h:231
a
Definition: bitmap.h:516
serialize_function_t unserialize_vnet_rewrite
Definition: rewrite.h:276
#define PREDICT_TRUE(x)
Definition: clib.h:98
uword vnet_rewrite_data_t
Definition: rewrite.h:47
vnet_l3_packet_type_t
Definition: l3_types.h:44
#define always_inline
Definition: clib.h:84
static void vnet_rewrite_copy_one(vnet_rewrite_data_t *p0, vnet_rewrite_data_t *rw0, int i)
Definition: rewrite.h:121
unsigned long u64
Definition: types.h:89
format_function_t format_vnet_rewrite
Definition: rewrite.h:273
#define VLIB_BUFFER_PRE_DATA_SIZE
Definition: buffer.h:52
void vnet_rewrite_for_sw_interface(struct vnet_main_t *vnm, vnet_l3_packet_type_t packet_type, u32 sw_if_index, u32 node_index, void *dst_address, vnet_rewrite_header_t *rw, u32 max_rewrite_bytes)
Definition: rewrite.c:190
serialize_function_t serialize_vnet_rewrite
Definition: rewrite.h:276
static void * vnet_rewrite_get_data_internal(vnet_rewrite_header_t *rw, int max_size)
Definition: rewrite.h:111
#define PREDICT_FALSE(x)
Definition: clib.h:97
void vnet_rewrite_copy_slow_path(vnet_rewrite_data_t *p0, vnet_rewrite_data_t *rw0, word n_left, uword most_likely_size)
Definition: rewrite.c:44
unformat_function_t unformat_vnet_rewrite
Definition: rewrite.h:271
svmdb_client_t * c
typedef CLIB_PACKED(struct{u32 sw_if_index;u32 node_index;u16 next_index;u16 data_bytes;u16 max_l3_packet_bytes;u8 data[0];}) vnet_rewrite_header_t
static void vnet_rewrite_set_data_internal(vnet_rewrite_header_t *rw, int max_size, void *data, int data_bytes)
Definition: rewrite.h:92
#define clib_memcpy(a, b, c)
Definition: string.h:63
format_function_t format_vnet_rewrite_header
Definition: rewrite.h:274
#define ASSERT(truth)
unsigned int u32
Definition: types.h:88
void vnet_rewrite_for_tunnel(struct vnet_main_t *vnm, u32 tx_sw_if_index, u32 rewrite_node_index, u32 post_rewrite_node_index, vnet_rewrite_header_t *rw, u8 *rewrite_data, u32 rewrite_length)
Definition: rewrite.c:224
u8 *( format_function_t)(u8 *s, va_list *args)
Definition: format.h:48
u64 uword
Definition: types.h:112
unsigned short u16
Definition: types.h:57
i64 word
Definition: types.h:111
void( serialize_function_t)(serialize_main_t *m, va_list *va)
Definition: serialize.h:168
unsigned char u8
Definition: types.h:56
static never_inline u32 slow_path(vlib_main_t *vm, u32 bi, vlib_buffer_t *b, u32 n_left_to_tx, u32 *to_tx, u32 *n_slow_bytes_result)