linux/drivers/net/ethernet/intel/ixgbe/ixgbe_ipsec.c
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   1// SPDX-License-Identifier: GPL-2.0
   2/* Copyright(c) 2017 Oracle and/or its affiliates. All rights reserved. */
   3
   4#include "ixgbe.h"
   5#include <net/xfrm.h>
   6#include <crypto/aead.h>
   7#include <linux/if_bridge.h>
   8
   9#define IXGBE_IPSEC_KEY_BITS  160
  10static const char aes_gcm_name[] = "rfc4106(gcm(aes))";
  11
  12static void ixgbe_ipsec_del_sa(struct xfrm_state *xs);
  13
  14/**
  15 * ixgbe_ipsec_set_tx_sa - set the Tx SA registers
  16 * @hw: hw specific details
  17 * @idx: register index to write
  18 * @key: key byte array
  19 * @salt: salt bytes
  20 **/
  21static void ixgbe_ipsec_set_tx_sa(struct ixgbe_hw *hw, u16 idx,
  22                                  u32 key[], u32 salt)
  23{
  24        u32 reg;
  25        int i;
  26
  27        for (i = 0; i < 4; i++)
  28                IXGBE_WRITE_REG(hw, IXGBE_IPSTXKEY(i),
  29                                (__force u32)cpu_to_be32(key[3 - i]));
  30        IXGBE_WRITE_REG(hw, IXGBE_IPSTXSALT, (__force u32)cpu_to_be32(salt));
  31        IXGBE_WRITE_FLUSH(hw);
  32
  33        reg = IXGBE_READ_REG(hw, IXGBE_IPSTXIDX);
  34        reg &= IXGBE_RXTXIDX_IPS_EN;
  35        reg |= idx << IXGBE_RXTXIDX_IDX_SHIFT | IXGBE_RXTXIDX_WRITE;
  36        IXGBE_WRITE_REG(hw, IXGBE_IPSTXIDX, reg);
  37        IXGBE_WRITE_FLUSH(hw);
  38}
  39
  40/**
  41 * ixgbe_ipsec_set_rx_item - set an Rx table item
  42 * @hw: hw specific details
  43 * @idx: register index to write
  44 * @tbl: table selector
  45 *
  46 * Trigger the device to store into a particular Rx table the
  47 * data that has already been loaded into the input register
  48 **/
  49static void ixgbe_ipsec_set_rx_item(struct ixgbe_hw *hw, u16 idx,
  50                                    enum ixgbe_ipsec_tbl_sel tbl)
  51{
  52        u32 reg;
  53
  54        reg = IXGBE_READ_REG(hw, IXGBE_IPSRXIDX);
  55        reg &= IXGBE_RXTXIDX_IPS_EN;
  56        reg |= tbl << IXGBE_RXIDX_TBL_SHIFT |
  57               idx << IXGBE_RXTXIDX_IDX_SHIFT |
  58               IXGBE_RXTXIDX_WRITE;
  59        IXGBE_WRITE_REG(hw, IXGBE_IPSRXIDX, reg);
  60        IXGBE_WRITE_FLUSH(hw);
  61}
  62
  63/**
  64 * ixgbe_ipsec_set_rx_sa - set up the register bits to save SA info
  65 * @hw: hw specific details
  66 * @idx: register index to write
  67 * @spi: security parameter index
  68 * @key: key byte array
  69 * @salt: salt bytes
  70 * @mode: rx decrypt control bits
  71 * @ip_idx: index into IP table for related IP address
  72 **/
  73static void ixgbe_ipsec_set_rx_sa(struct ixgbe_hw *hw, u16 idx, __be32 spi,
  74                                  u32 key[], u32 salt, u32 mode, u32 ip_idx)
  75{
  76        int i;
  77
  78        /* store the SPI (in bigendian) and IPidx */
  79        IXGBE_WRITE_REG(hw, IXGBE_IPSRXSPI,
  80                        (__force u32)cpu_to_le32((__force u32)spi));
  81        IXGBE_WRITE_REG(hw, IXGBE_IPSRXIPIDX, ip_idx);
  82        IXGBE_WRITE_FLUSH(hw);
  83
  84        ixgbe_ipsec_set_rx_item(hw, idx, ips_rx_spi_tbl);
  85
  86        /* store the key, salt, and mode */
  87        for (i = 0; i < 4; i++)
  88                IXGBE_WRITE_REG(hw, IXGBE_IPSRXKEY(i),
  89                                (__force u32)cpu_to_be32(key[3 - i]));
  90        IXGBE_WRITE_REG(hw, IXGBE_IPSRXSALT, (__force u32)cpu_to_be32(salt));
  91        IXGBE_WRITE_REG(hw, IXGBE_IPSRXMOD, mode);
  92        IXGBE_WRITE_FLUSH(hw);
  93
  94        ixgbe_ipsec_set_rx_item(hw, idx, ips_rx_key_tbl);
  95}
  96
  97/**
  98 * ixgbe_ipsec_set_rx_ip - set up the register bits to save SA IP addr info
  99 * @hw: hw specific details
 100 * @idx: register index to write
 101 * @addr: IP address byte array
 102 **/
 103static void ixgbe_ipsec_set_rx_ip(struct ixgbe_hw *hw, u16 idx, __be32 addr[])
 104{
 105        int i;
 106
 107        /* store the ip address */
 108        for (i = 0; i < 4; i++)
 109                IXGBE_WRITE_REG(hw, IXGBE_IPSRXIPADDR(i),
 110                                (__force u32)cpu_to_le32((__force u32)addr[i]));
 111        IXGBE_WRITE_FLUSH(hw);
 112
 113        ixgbe_ipsec_set_rx_item(hw, idx, ips_rx_ip_tbl);
 114}
 115
 116/**
 117 * ixgbe_ipsec_clear_hw_tables - because some tables don't get cleared on reset
 118 * @adapter: board private structure
 119 **/
 120static void ixgbe_ipsec_clear_hw_tables(struct ixgbe_adapter *adapter)
 121{
 122        struct ixgbe_hw *hw = &adapter->hw;
 123        u32 buf[4] = {0, 0, 0, 0};
 124        u16 idx;
 125
 126        /* disable Rx and Tx SA lookup */
 127        IXGBE_WRITE_REG(hw, IXGBE_IPSRXIDX, 0);
 128        IXGBE_WRITE_REG(hw, IXGBE_IPSTXIDX, 0);
 129
 130        /* scrub the tables - split the loops for the max of the IP table */
 131        for (idx = 0; idx < IXGBE_IPSEC_MAX_RX_IP_COUNT; idx++) {
 132                ixgbe_ipsec_set_tx_sa(hw, idx, buf, 0);
 133                ixgbe_ipsec_set_rx_sa(hw, idx, 0, buf, 0, 0, 0);
 134                ixgbe_ipsec_set_rx_ip(hw, idx, (__be32 *)buf);
 135        }
 136        for (; idx < IXGBE_IPSEC_MAX_SA_COUNT; idx++) {
 137                ixgbe_ipsec_set_tx_sa(hw, idx, buf, 0);
 138                ixgbe_ipsec_set_rx_sa(hw, idx, 0, buf, 0, 0, 0);
 139        }
 140}
 141
 142/**
 143 * ixgbe_ipsec_stop_data
 144 * @adapter: board private structure
 145 **/
 146static void ixgbe_ipsec_stop_data(struct ixgbe_adapter *adapter)
 147{
 148        struct ixgbe_hw *hw = &adapter->hw;
 149        bool link = adapter->link_up;
 150        u32 t_rdy, r_rdy;
 151        u32 limit;
 152        u32 reg;
 153
 154        /* halt data paths */
 155        reg = IXGBE_READ_REG(hw, IXGBE_SECTXCTRL);
 156        reg |= IXGBE_SECTXCTRL_TX_DIS;
 157        IXGBE_WRITE_REG(hw, IXGBE_SECTXCTRL, reg);
 158
 159        reg = IXGBE_READ_REG(hw, IXGBE_SECRXCTRL);
 160        reg |= IXGBE_SECRXCTRL_RX_DIS;
 161        IXGBE_WRITE_REG(hw, IXGBE_SECRXCTRL, reg);
 162
 163        /* If both Tx and Rx are ready there are no packets
 164         * that we need to flush so the loopback configuration
 165         * below is not necessary.
 166         */
 167        t_rdy = IXGBE_READ_REG(hw, IXGBE_SECTXSTAT) &
 168                IXGBE_SECTXSTAT_SECTX_RDY;
 169        r_rdy = IXGBE_READ_REG(hw, IXGBE_SECRXSTAT) &
 170                IXGBE_SECRXSTAT_SECRX_RDY;
 171        if (t_rdy && r_rdy)
 172                return;
 173
 174        /* If the tx fifo doesn't have link, but still has data,
 175         * we can't clear the tx sec block.  Set the MAC loopback
 176         * before block clear
 177         */
 178        if (!link) {
 179                reg = IXGBE_READ_REG(hw, IXGBE_MACC);
 180                reg |= IXGBE_MACC_FLU;
 181                IXGBE_WRITE_REG(hw, IXGBE_MACC, reg);
 182
 183                reg = IXGBE_READ_REG(hw, IXGBE_HLREG0);
 184                reg |= IXGBE_HLREG0_LPBK;
 185                IXGBE_WRITE_REG(hw, IXGBE_HLREG0, reg);
 186
 187                IXGBE_WRITE_FLUSH(hw);
 188                mdelay(3);
 189        }
 190
 191        /* wait for the paths to empty */
 192        limit = 20;
 193        do {
 194                mdelay(10);
 195                t_rdy = IXGBE_READ_REG(hw, IXGBE_SECTXSTAT) &
 196                        IXGBE_SECTXSTAT_SECTX_RDY;
 197                r_rdy = IXGBE_READ_REG(hw, IXGBE_SECRXSTAT) &
 198                        IXGBE_SECRXSTAT_SECRX_RDY;
 199        } while (!(t_rdy && r_rdy) && limit--);
 200
 201        /* undo loopback if we played with it earlier */
 202        if (!link) {
 203                reg = IXGBE_READ_REG(hw, IXGBE_MACC);
 204                reg &= ~IXGBE_MACC_FLU;
 205                IXGBE_WRITE_REG(hw, IXGBE_MACC, reg);
 206
 207                reg = IXGBE_READ_REG(hw, IXGBE_HLREG0);
 208                reg &= ~IXGBE_HLREG0_LPBK;
 209                IXGBE_WRITE_REG(hw, IXGBE_HLREG0, reg);
 210
 211                IXGBE_WRITE_FLUSH(hw);
 212        }
 213}
 214
 215/**
 216 * ixgbe_ipsec_stop_engine
 217 * @adapter: board private structure
 218 **/
 219static void ixgbe_ipsec_stop_engine(struct ixgbe_adapter *adapter)
 220{
 221        struct ixgbe_hw *hw = &adapter->hw;
 222        u32 reg;
 223
 224        ixgbe_ipsec_stop_data(adapter);
 225
 226        /* disable Rx and Tx SA lookup */
 227        IXGBE_WRITE_REG(hw, IXGBE_IPSTXIDX, 0);
 228        IXGBE_WRITE_REG(hw, IXGBE_IPSRXIDX, 0);
 229
 230        /* disable the Rx and Tx engines and full packet store-n-forward */
 231        reg = IXGBE_READ_REG(hw, IXGBE_SECTXCTRL);
 232        reg |= IXGBE_SECTXCTRL_SECTX_DIS;
 233        reg &= ~IXGBE_SECTXCTRL_STORE_FORWARD;
 234        IXGBE_WRITE_REG(hw, IXGBE_SECTXCTRL, reg);
 235
 236        reg = IXGBE_READ_REG(hw, IXGBE_SECRXCTRL);
 237        reg |= IXGBE_SECRXCTRL_SECRX_DIS;
 238        IXGBE_WRITE_REG(hw, IXGBE_SECRXCTRL, reg);
 239
 240        /* restore the "tx security buffer almost full threshold" to 0x250 */
 241        IXGBE_WRITE_REG(hw, IXGBE_SECTXBUFFAF, 0x250);
 242
 243        /* Set minimum IFG between packets back to the default 0x1 */
 244        reg = IXGBE_READ_REG(hw, IXGBE_SECTXMINIFG);
 245        reg = (reg & 0xfffffff0) | 0x1;
 246        IXGBE_WRITE_REG(hw, IXGBE_SECTXMINIFG, reg);
 247
 248        /* final set for normal (no ipsec offload) processing */
 249        IXGBE_WRITE_REG(hw, IXGBE_SECTXCTRL, IXGBE_SECTXCTRL_SECTX_DIS);
 250        IXGBE_WRITE_REG(hw, IXGBE_SECRXCTRL, IXGBE_SECRXCTRL_SECRX_DIS);
 251
 252        IXGBE_WRITE_FLUSH(hw);
 253}
 254
 255/**
 256 * ixgbe_ipsec_start_engine
 257 * @adapter: board private structure
 258 *
 259 * NOTE: this increases power consumption whether being used or not
 260 **/
 261static void ixgbe_ipsec_start_engine(struct ixgbe_adapter *adapter)
 262{
 263        struct ixgbe_hw *hw = &adapter->hw;
 264        u32 reg;
 265
 266        ixgbe_ipsec_stop_data(adapter);
 267
 268        /* Set minimum IFG between packets to 3 */
 269        reg = IXGBE_READ_REG(hw, IXGBE_SECTXMINIFG);
 270        reg = (reg & 0xfffffff0) | 0x3;
 271        IXGBE_WRITE_REG(hw, IXGBE_SECTXMINIFG, reg);
 272
 273        /* Set "tx security buffer almost full threshold" to 0x15 so that the
 274         * almost full indication is generated only after buffer contains at
 275         * least an entire jumbo packet.
 276         */
 277        reg = IXGBE_READ_REG(hw, IXGBE_SECTXBUFFAF);
 278        reg = (reg & 0xfffffc00) | 0x15;
 279        IXGBE_WRITE_REG(hw, IXGBE_SECTXBUFFAF, reg);
 280
 281        /* restart the data paths by clearing the DISABLE bits */
 282        IXGBE_WRITE_REG(hw, IXGBE_SECRXCTRL, 0);
 283        IXGBE_WRITE_REG(hw, IXGBE_SECTXCTRL, IXGBE_SECTXCTRL_STORE_FORWARD);
 284
 285        /* enable Rx and Tx SA lookup */
 286        IXGBE_WRITE_REG(hw, IXGBE_IPSTXIDX, IXGBE_RXTXIDX_IPS_EN);
 287        IXGBE_WRITE_REG(hw, IXGBE_IPSRXIDX, IXGBE_RXTXIDX_IPS_EN);
 288
 289        IXGBE_WRITE_FLUSH(hw);
 290}
 291
 292/**
 293 * ixgbe_ipsec_restore - restore the ipsec HW settings after a reset
 294 * @adapter: board private structure
 295 *
 296 * Reload the HW tables from the SW tables after they've been bashed
 297 * by a chip reset.
 298 *
 299 * Any VF entries are removed from the SW and HW tables since either
 300 * (a) the VF also gets reset on PF reset and will ask again for the
 301 * offloads, or (b) the VF has been removed by a change in the num_vfs.
 302 **/
 303void ixgbe_ipsec_restore(struct ixgbe_adapter *adapter)
 304{
 305        struct ixgbe_ipsec *ipsec = adapter->ipsec;
 306        struct ixgbe_hw *hw = &adapter->hw;
 307        int i;
 308
 309        if (!(adapter->flags2 & IXGBE_FLAG2_IPSEC_ENABLED))
 310                return;
 311
 312        /* clean up and restart the engine */
 313        ixgbe_ipsec_stop_engine(adapter);
 314        ixgbe_ipsec_clear_hw_tables(adapter);
 315        ixgbe_ipsec_start_engine(adapter);
 316
 317        /* reload the Rx and Tx keys */
 318        for (i = 0; i < IXGBE_IPSEC_MAX_SA_COUNT; i++) {
 319                struct rx_sa *r = &ipsec->rx_tbl[i];
 320                struct tx_sa *t = &ipsec->tx_tbl[i];
 321
 322                if (r->used) {
 323                        if (r->mode & IXGBE_RXTXMOD_VF)
 324                                ixgbe_ipsec_del_sa(r->xs);
 325                        else
 326                                ixgbe_ipsec_set_rx_sa(hw, i, r->xs->id.spi,
 327                                                      r->key, r->salt,
 328                                                      r->mode, r->iptbl_ind);
 329                }
 330
 331                if (t->used) {
 332                        if (t->mode & IXGBE_RXTXMOD_VF)
 333                                ixgbe_ipsec_del_sa(t->xs);
 334                        else
 335                                ixgbe_ipsec_set_tx_sa(hw, i, t->key, t->salt);
 336                }
 337        }
 338
 339        /* reload the IP addrs */
 340        for (i = 0; i < IXGBE_IPSEC_MAX_RX_IP_COUNT; i++) {
 341                struct rx_ip_sa *ipsa = &ipsec->ip_tbl[i];
 342
 343                if (ipsa->used)
 344                        ixgbe_ipsec_set_rx_ip(hw, i, ipsa->ipaddr);
 345        }
 346}
 347
 348/**
 349 * ixgbe_ipsec_find_empty_idx - find the first unused security parameter index
 350 * @ipsec: pointer to ipsec struct
 351 * @rxtable: true if we need to look in the Rx table
 352 *
 353 * Returns the first unused index in either the Rx or Tx SA table
 354 **/
 355static int ixgbe_ipsec_find_empty_idx(struct ixgbe_ipsec *ipsec, bool rxtable)
 356{
 357        u32 i;
 358
 359        if (rxtable) {
 360                if (ipsec->num_rx_sa == IXGBE_IPSEC_MAX_SA_COUNT)
 361                        return -ENOSPC;
 362
 363                /* search rx sa table */
 364                for (i = 0; i < IXGBE_IPSEC_MAX_SA_COUNT; i++) {
 365                        if (!ipsec->rx_tbl[i].used)
 366                                return i;
 367                }
 368        } else {
 369                if (ipsec->num_tx_sa == IXGBE_IPSEC_MAX_SA_COUNT)
 370                        return -ENOSPC;
 371
 372                /* search tx sa table */
 373                for (i = 0; i < IXGBE_IPSEC_MAX_SA_COUNT; i++) {
 374                        if (!ipsec->tx_tbl[i].used)
 375                                return i;
 376                }
 377        }
 378
 379        return -ENOSPC;
 380}
 381
 382/**
 383 * ixgbe_ipsec_find_rx_state - find the state that matches
 384 * @ipsec: pointer to ipsec struct
 385 * @daddr: inbound address to match
 386 * @proto: protocol to match
 387 * @spi: SPI to match
 388 * @ip4: true if using an ipv4 address
 389 *
 390 * Returns a pointer to the matching SA state information
 391 **/
 392static struct xfrm_state *ixgbe_ipsec_find_rx_state(struct ixgbe_ipsec *ipsec,
 393                                                    __be32 *daddr, u8 proto,
 394                                                    __be32 spi, bool ip4)
 395{
 396        struct rx_sa *rsa;
 397        struct xfrm_state *ret = NULL;
 398
 399        rcu_read_lock();
 400        hash_for_each_possible_rcu(ipsec->rx_sa_list, rsa, hlist,
 401                                   (__force u32)spi) {
 402                if (rsa->mode & IXGBE_RXTXMOD_VF)
 403                        continue;
 404                if (spi == rsa->xs->id.spi &&
 405                    ((ip4 && *daddr == rsa->xs->id.daddr.a4) ||
 406                      (!ip4 && !memcmp(daddr, &rsa->xs->id.daddr.a6,
 407                                       sizeof(rsa->xs->id.daddr.a6)))) &&
 408                    proto == rsa->xs->id.proto) {
 409                        ret = rsa->xs;
 410                        xfrm_state_hold(ret);
 411                        break;
 412                }
 413        }
 414        rcu_read_unlock();
 415        return ret;
 416}
 417
 418/**
 419 * ixgbe_ipsec_parse_proto_keys - find the key and salt based on the protocol
 420 * @xs: pointer to xfrm_state struct
 421 * @mykey: pointer to key array to populate
 422 * @mysalt: pointer to salt value to populate
 423 *
 424 * This copies the protocol keys and salt to our own data tables.  The
 425 * 82599 family only supports the one algorithm.
 426 **/
 427static int ixgbe_ipsec_parse_proto_keys(struct xfrm_state *xs,
 428                                        u32 *mykey, u32 *mysalt)
 429{
 430        struct net_device *dev = xs->xso.real_dev;
 431        unsigned char *key_data;
 432        char *alg_name = NULL;
 433        int key_len;
 434
 435        if (!xs->aead) {
 436                netdev_err(dev, "Unsupported IPsec algorithm\n");
 437                return -EINVAL;
 438        }
 439
 440        if (xs->aead->alg_icv_len != IXGBE_IPSEC_AUTH_BITS) {
 441                netdev_err(dev, "IPsec offload requires %d bit authentication\n",
 442                           IXGBE_IPSEC_AUTH_BITS);
 443                return -EINVAL;
 444        }
 445
 446        key_data = &xs->aead->alg_key[0];
 447        key_len = xs->aead->alg_key_len;
 448        alg_name = xs->aead->alg_name;
 449
 450        if (strcmp(alg_name, aes_gcm_name)) {
 451                netdev_err(dev, "Unsupported IPsec algorithm - please use %s\n",
 452                           aes_gcm_name);
 453                return -EINVAL;
 454        }
 455
 456        /* The key bytes come down in a bigendian array of bytes, so
 457         * we don't need to do any byteswapping.
 458         * 160 accounts for 16 byte key and 4 byte salt
 459         */
 460        if (key_len == IXGBE_IPSEC_KEY_BITS) {
 461                *mysalt = ((u32 *)key_data)[4];
 462        } else if (key_len != (IXGBE_IPSEC_KEY_BITS - (sizeof(*mysalt) * 8))) {
 463                netdev_err(dev, "IPsec hw offload only supports keys up to 128 bits with a 32 bit salt\n");
 464                return -EINVAL;
 465        } else {
 466                netdev_info(dev, "IPsec hw offload parameters missing 32 bit salt value\n");
 467                *mysalt = 0;
 468        }
 469        memcpy(mykey, key_data, 16);
 470
 471        return 0;
 472}
 473
 474/**
 475 * ixgbe_ipsec_check_mgmt_ip - make sure there is no clash with mgmt IP filters
 476 * @xs: pointer to transformer state struct
 477 **/
 478static int ixgbe_ipsec_check_mgmt_ip(struct xfrm_state *xs)
 479{
 480        struct net_device *dev = xs->xso.real_dev;
 481        struct ixgbe_adapter *adapter = netdev_priv(dev);
 482        struct ixgbe_hw *hw = &adapter->hw;
 483        u32 mfval, manc, reg;
 484        int num_filters = 4;
 485        bool manc_ipv4;
 486        u32 bmcipval;
 487        int i, j;
 488
 489#define MANC_EN_IPV4_FILTER      BIT(24)
 490#define MFVAL_IPV4_FILTER_SHIFT  16
 491#define MFVAL_IPV6_FILTER_SHIFT  24
 492#define MIPAF_ARR(_m, _n)        (IXGBE_MIPAF + ((_m) * 0x10) + ((_n) * 4))
 493
 494#define IXGBE_BMCIP(_n)          (0x5050 + ((_n) * 4))
 495#define IXGBE_BMCIPVAL           0x5060
 496#define BMCIP_V4                 0x2
 497#define BMCIP_V6                 0x3
 498#define BMCIP_MASK               0x3
 499
 500        manc = IXGBE_READ_REG(hw, IXGBE_MANC);
 501        manc_ipv4 = !!(manc & MANC_EN_IPV4_FILTER);
 502        mfval = IXGBE_READ_REG(hw, IXGBE_MFVAL);
 503        bmcipval = IXGBE_READ_REG(hw, IXGBE_BMCIPVAL);
 504
 505        if (xs->props.family == AF_INET) {
 506                /* are there any IPv4 filters to check? */
 507                if (manc_ipv4) {
 508                        /* the 4 ipv4 filters are all in MIPAF(3, i) */
 509                        for (i = 0; i < num_filters; i++) {
 510                                if (!(mfval & BIT(MFVAL_IPV4_FILTER_SHIFT + i)))
 511                                        continue;
 512
 513                                reg = IXGBE_READ_REG(hw, MIPAF_ARR(3, i));
 514                                if (reg == (__force u32)xs->id.daddr.a4)
 515                                        return 1;
 516                        }
 517                }
 518
 519                if ((bmcipval & BMCIP_MASK) == BMCIP_V4) {
 520                        reg = IXGBE_READ_REG(hw, IXGBE_BMCIP(3));
 521                        if (reg == (__force u32)xs->id.daddr.a4)
 522                                return 1;
 523                }
 524
 525        } else {
 526                /* if there are ipv4 filters, they are in the last ipv6 slot */
 527                if (manc_ipv4)
 528                        num_filters = 3;
 529
 530                for (i = 0; i < num_filters; i++) {
 531                        if (!(mfval & BIT(MFVAL_IPV6_FILTER_SHIFT + i)))
 532                                continue;
 533
 534                        for (j = 0; j < 4; j++) {
 535                                reg = IXGBE_READ_REG(hw, MIPAF_ARR(i, j));
 536                                if (reg != (__force u32)xs->id.daddr.a6[j])
 537                                        break;
 538                        }
 539                        if (j == 4)   /* did we match all 4 words? */
 540                                return 1;
 541                }
 542
 543                if ((bmcipval & BMCIP_MASK) == BMCIP_V6) {
 544                        for (j = 0; j < 4; j++) {
 545                                reg = IXGBE_READ_REG(hw, IXGBE_BMCIP(j));
 546                                if (reg != (__force u32)xs->id.daddr.a6[j])
 547                                        break;
 548                        }
 549                        if (j == 4)   /* did we match all 4 words? */
 550                                return 1;
 551                }
 552        }
 553
 554        return 0;
 555}
 556
 557/**
 558 * ixgbe_ipsec_add_sa - program device with a security association
 559 * @xs: pointer to transformer state struct
 560 **/
 561static int ixgbe_ipsec_add_sa(struct xfrm_state *xs)
 562{
 563        struct net_device *dev = xs->xso.real_dev;
 564        struct ixgbe_adapter *adapter = netdev_priv(dev);
 565        struct ixgbe_ipsec *ipsec = adapter->ipsec;
 566        struct ixgbe_hw *hw = &adapter->hw;
 567        int checked, match, first;
 568        u16 sa_idx;
 569        int ret;
 570        int i;
 571
 572        if (xs->id.proto != IPPROTO_ESP && xs->id.proto != IPPROTO_AH) {
 573                netdev_err(dev, "Unsupported protocol 0x%04x for ipsec offload\n",
 574                           xs->id.proto);
 575                return -EINVAL;
 576        }
 577
 578        if (xs->props.mode != XFRM_MODE_TRANSPORT) {
 579                netdev_err(dev, "Unsupported mode for ipsec offload\n");
 580                return -EINVAL;
 581        }
 582
 583        if (ixgbe_ipsec_check_mgmt_ip(xs)) {
 584                netdev_err(dev, "IPsec IP addr clash with mgmt filters\n");
 585                return -EINVAL;
 586        }
 587
 588        if (xs->xso.flags & XFRM_OFFLOAD_INBOUND) {
 589                struct rx_sa rsa;
 590
 591                if (xs->calg) {
 592                        netdev_err(dev, "Compression offload not supported\n");
 593                        return -EINVAL;
 594                }
 595
 596                /* find the first unused index */
 597                ret = ixgbe_ipsec_find_empty_idx(ipsec, true);
 598                if (ret < 0) {
 599                        netdev_err(dev, "No space for SA in Rx table!\n");
 600                        return ret;
 601                }
 602                sa_idx = (u16)ret;
 603
 604                memset(&rsa, 0, sizeof(rsa));
 605                rsa.used = true;
 606                rsa.xs = xs;
 607
 608                if (rsa.xs->id.proto & IPPROTO_ESP)
 609                        rsa.decrypt = xs->ealg || xs->aead;
 610
 611                /* get the key and salt */
 612                ret = ixgbe_ipsec_parse_proto_keys(xs, rsa.key, &rsa.salt);
 613                if (ret) {
 614                        netdev_err(dev, "Failed to get key data for Rx SA table\n");
 615                        return ret;
 616                }
 617
 618                /* get ip for rx sa table */
 619                if (xs->props.family == AF_INET6)
 620                        memcpy(rsa.ipaddr, &xs->id.daddr.a6, 16);
 621                else
 622                        memcpy(&rsa.ipaddr[3], &xs->id.daddr.a4, 4);
 623
 624                /* The HW does not have a 1:1 mapping from keys to IP addrs, so
 625                 * check for a matching IP addr entry in the table.  If the addr
 626                 * already exists, use it; else find an unused slot and add the
 627                 * addr.  If one does not exist and there are no unused table
 628                 * entries, fail the request.
 629                 */
 630
 631                /* Find an existing match or first not used, and stop looking
 632                 * after we've checked all we know we have.
 633                 */
 634                checked = 0;
 635                match = -1;
 636                first = -1;
 637                for (i = 0;
 638                     i < IXGBE_IPSEC_MAX_RX_IP_COUNT &&
 639                     (checked < ipsec->num_rx_sa || first < 0);
 640                     i++) {
 641                        if (ipsec->ip_tbl[i].used) {
 642                                if (!memcmp(ipsec->ip_tbl[i].ipaddr,
 643                                            rsa.ipaddr, sizeof(rsa.ipaddr))) {
 644                                        match = i;
 645                                        break;
 646                                }
 647                                checked++;
 648                        } else if (first < 0) {
 649                                first = i;  /* track the first empty seen */
 650                        }
 651                }
 652
 653                if (ipsec->num_rx_sa == 0)
 654                        first = 0;
 655
 656                if (match >= 0) {
 657                        /* addrs are the same, we should use this one */
 658                        rsa.iptbl_ind = match;
 659                        ipsec->ip_tbl[match].ref_cnt++;
 660
 661                } else if (first >= 0) {
 662                        /* no matches, but here's an empty slot */
 663                        rsa.iptbl_ind = first;
 664
 665                        memcpy(ipsec->ip_tbl[first].ipaddr,
 666                               rsa.ipaddr, sizeof(rsa.ipaddr));
 667                        ipsec->ip_tbl[first].ref_cnt = 1;
 668                        ipsec->ip_tbl[first].used = true;
 669
 670                        ixgbe_ipsec_set_rx_ip(hw, rsa.iptbl_ind, rsa.ipaddr);
 671
 672                } else {
 673                        /* no match and no empty slot */
 674                        netdev_err(dev, "No space for SA in Rx IP SA table\n");
 675                        memset(&rsa, 0, sizeof(rsa));
 676                        return -ENOSPC;
 677                }
 678
 679                rsa.mode = IXGBE_RXMOD_VALID;
 680                if (rsa.xs->id.proto & IPPROTO_ESP)
 681                        rsa.mode |= IXGBE_RXMOD_PROTO_ESP;
 682                if (rsa.decrypt)
 683                        rsa.mode |= IXGBE_RXMOD_DECRYPT;
 684                if (rsa.xs->props.family == AF_INET6)
 685                        rsa.mode |= IXGBE_RXMOD_IPV6;
 686
 687                /* the preparations worked, so save the info */
 688                memcpy(&ipsec->rx_tbl[sa_idx], &rsa, sizeof(rsa));
 689
 690                ixgbe_ipsec_set_rx_sa(hw, sa_idx, rsa.xs->id.spi, rsa.key,
 691                                      rsa.salt, rsa.mode, rsa.iptbl_ind);
 692                xs->xso.offload_handle = sa_idx + IXGBE_IPSEC_BASE_RX_INDEX;
 693
 694                ipsec->num_rx_sa++;
 695
 696                /* hash the new entry for faster search in Rx path */
 697                hash_add_rcu(ipsec->rx_sa_list, &ipsec->rx_tbl[sa_idx].hlist,
 698                             (__force u32)rsa.xs->id.spi);
 699        } else {
 700                struct tx_sa tsa;
 701
 702                if (adapter->num_vfs &&
 703                    adapter->bridge_mode != BRIDGE_MODE_VEPA)
 704                        return -EOPNOTSUPP;
 705
 706                /* find the first unused index */
 707                ret = ixgbe_ipsec_find_empty_idx(ipsec, false);
 708                if (ret < 0) {
 709                        netdev_err(dev, "No space for SA in Tx table\n");
 710                        return ret;
 711                }
 712                sa_idx = (u16)ret;
 713
 714                memset(&tsa, 0, sizeof(tsa));
 715                tsa.used = true;
 716                tsa.xs = xs;
 717
 718                if (xs->id.proto & IPPROTO_ESP)
 719                        tsa.encrypt = xs->ealg || xs->aead;
 720
 721                ret = ixgbe_ipsec_parse_proto_keys(xs, tsa.key, &tsa.salt);
 722                if (ret) {
 723                        netdev_err(dev, "Failed to get key data for Tx SA table\n");
 724                        memset(&tsa, 0, sizeof(tsa));
 725                        return ret;
 726                }
 727
 728                /* the preparations worked, so save the info */
 729                memcpy(&ipsec->tx_tbl[sa_idx], &tsa, sizeof(tsa));
 730
 731                ixgbe_ipsec_set_tx_sa(hw, sa_idx, tsa.key, tsa.salt);
 732
 733                xs->xso.offload_handle = sa_idx + IXGBE_IPSEC_BASE_TX_INDEX;
 734
 735                ipsec->num_tx_sa++;
 736        }
 737
 738        /* enable the engine if not already warmed up */
 739        if (!(adapter->flags2 & IXGBE_FLAG2_IPSEC_ENABLED)) {
 740                ixgbe_ipsec_start_engine(adapter);
 741                adapter->flags2 |= IXGBE_FLAG2_IPSEC_ENABLED;
 742        }
 743
 744        return 0;
 745}
 746
 747/**
 748 * ixgbe_ipsec_del_sa - clear out this specific SA
 749 * @xs: pointer to transformer state struct
 750 **/
 751static void ixgbe_ipsec_del_sa(struct xfrm_state *xs)
 752{
 753        struct net_device *dev = xs->xso.real_dev;
 754        struct ixgbe_adapter *adapter = netdev_priv(dev);
 755        struct ixgbe_ipsec *ipsec = adapter->ipsec;
 756        struct ixgbe_hw *hw = &adapter->hw;
 757        u32 zerobuf[4] = {0, 0, 0, 0};
 758        u16 sa_idx;
 759
 760        if (xs->xso.flags & XFRM_OFFLOAD_INBOUND) {
 761                struct rx_sa *rsa;
 762                u8 ipi;
 763
 764                sa_idx = xs->xso.offload_handle - IXGBE_IPSEC_BASE_RX_INDEX;
 765                rsa = &ipsec->rx_tbl[sa_idx];
 766
 767                if (!rsa->used) {
 768                        netdev_err(dev, "Invalid Rx SA selected sa_idx=%d offload_handle=%lu\n",
 769                                   sa_idx, xs->xso.offload_handle);
 770                        return;
 771                }
 772
 773                ixgbe_ipsec_set_rx_sa(hw, sa_idx, 0, zerobuf, 0, 0, 0);
 774                hash_del_rcu(&rsa->hlist);
 775
 776                /* if the IP table entry is referenced by only this SA,
 777                 * i.e. ref_cnt is only 1, clear the IP table entry as well
 778                 */
 779                ipi = rsa->iptbl_ind;
 780                if (ipsec->ip_tbl[ipi].ref_cnt > 0) {
 781                        ipsec->ip_tbl[ipi].ref_cnt--;
 782
 783                        if (!ipsec->ip_tbl[ipi].ref_cnt) {
 784                                memset(&ipsec->ip_tbl[ipi], 0,
 785                                       sizeof(struct rx_ip_sa));
 786                                ixgbe_ipsec_set_rx_ip(hw, ipi,
 787                                                      (__force __be32 *)zerobuf);
 788                        }
 789                }
 790
 791                memset(rsa, 0, sizeof(struct rx_sa));
 792                ipsec->num_rx_sa--;
 793        } else {
 794                sa_idx = xs->xso.offload_handle - IXGBE_IPSEC_BASE_TX_INDEX;
 795
 796                if (!ipsec->tx_tbl[sa_idx].used) {
 797                        netdev_err(dev, "Invalid Tx SA selected sa_idx=%d offload_handle=%lu\n",
 798                                   sa_idx, xs->xso.offload_handle);
 799                        return;
 800                }
 801
 802                ixgbe_ipsec_set_tx_sa(hw, sa_idx, zerobuf, 0);
 803                memset(&ipsec->tx_tbl[sa_idx], 0, sizeof(struct tx_sa));
 804                ipsec->num_tx_sa--;
 805        }
 806
 807        /* if there are no SAs left, stop the engine to save energy */
 808        if (ipsec->num_rx_sa == 0 && ipsec->num_tx_sa == 0) {
 809                adapter->flags2 &= ~IXGBE_FLAG2_IPSEC_ENABLED;
 810                ixgbe_ipsec_stop_engine(adapter);
 811        }
 812}
 813
 814/**
 815 * ixgbe_ipsec_offload_ok - can this packet use the xfrm hw offload
 816 * @skb: current data packet
 817 * @xs: pointer to transformer state struct
 818 **/
 819static bool ixgbe_ipsec_offload_ok(struct sk_buff *skb, struct xfrm_state *xs)
 820{
 821        if (xs->props.family == AF_INET) {
 822                /* Offload with IPv4 options is not supported yet */
 823                if (ip_hdr(skb)->ihl != 5)
 824                        return false;
 825        } else {
 826                /* Offload with IPv6 extension headers is not support yet */
 827                if (ipv6_ext_hdr(ipv6_hdr(skb)->nexthdr))
 828                        return false;
 829        }
 830
 831        return true;
 832}
 833
 834static const struct xfrmdev_ops ixgbe_xfrmdev_ops = {
 835        .xdo_dev_state_add = ixgbe_ipsec_add_sa,
 836        .xdo_dev_state_delete = ixgbe_ipsec_del_sa,
 837        .xdo_dev_offload_ok = ixgbe_ipsec_offload_ok,
 838};
 839
 840/**
 841 * ixgbe_ipsec_vf_clear - clear the tables of data for a VF
 842 * @adapter: board private structure
 843 * @vf: VF id to be removed
 844 **/
 845void ixgbe_ipsec_vf_clear(struct ixgbe_adapter *adapter, u32 vf)
 846{
 847        struct ixgbe_ipsec *ipsec = adapter->ipsec;
 848        int i;
 849
 850        if (!ipsec)
 851                return;
 852
 853        /* search rx sa table */
 854        for (i = 0; i < IXGBE_IPSEC_MAX_SA_COUNT && ipsec->num_rx_sa; i++) {
 855                if (!ipsec->rx_tbl[i].used)
 856                        continue;
 857                if (ipsec->rx_tbl[i].mode & IXGBE_RXTXMOD_VF &&
 858                    ipsec->rx_tbl[i].vf == vf)
 859                        ixgbe_ipsec_del_sa(ipsec->rx_tbl[i].xs);
 860        }
 861
 862        /* search tx sa table */
 863        for (i = 0; i < IXGBE_IPSEC_MAX_SA_COUNT && ipsec->num_tx_sa; i++) {
 864                if (!ipsec->tx_tbl[i].used)
 865                        continue;
 866                if (ipsec->tx_tbl[i].mode & IXGBE_RXTXMOD_VF &&
 867                    ipsec->tx_tbl[i].vf == vf)
 868                        ixgbe_ipsec_del_sa(ipsec->tx_tbl[i].xs);
 869        }
 870}
 871
 872/**
 873 * ixgbe_ipsec_vf_add_sa - translate VF request to SA add
 874 * @adapter: board private structure
 875 * @msgbuf: The message buffer
 876 * @vf: the VF index
 877 *
 878 * Make up a new xs and algorithm info from the data sent by the VF.
 879 * We only need to sketch in just enough to set up the HW offload.
 880 * Put the resulting offload_handle into the return message to the VF.
 881 *
 882 * Returns 0 or error value
 883 **/
 884int ixgbe_ipsec_vf_add_sa(struct ixgbe_adapter *adapter, u32 *msgbuf, u32 vf)
 885{
 886        struct ixgbe_ipsec *ipsec = adapter->ipsec;
 887        struct xfrm_algo_desc *algo;
 888        struct sa_mbx_msg *sam;
 889        struct xfrm_state *xs;
 890        size_t aead_len;
 891        u16 sa_idx;
 892        u32 pfsa;
 893        int err;
 894
 895        sam = (struct sa_mbx_msg *)(&msgbuf[1]);
 896        if (!adapter->vfinfo[vf].trusted ||
 897            !(adapter->flags2 & IXGBE_FLAG2_VF_IPSEC_ENABLED)) {
 898                e_warn(drv, "VF %d attempted to add an IPsec SA\n", vf);
 899                err = -EACCES;
 900                goto err_out;
 901        }
 902
 903        /* Tx IPsec offload doesn't seem to work on this
 904         * device, so block these requests for now.
 905         */
 906        if (!(sam->flags & XFRM_OFFLOAD_INBOUND)) {
 907                err = -EOPNOTSUPP;
 908                goto err_out;
 909        }
 910
 911        xs = kzalloc(sizeof(*xs), GFP_KERNEL);
 912        if (unlikely(!xs)) {
 913                err = -ENOMEM;
 914                goto err_out;
 915        }
 916
 917        xs->xso.flags = sam->flags;
 918        xs->id.spi = sam->spi;
 919        xs->id.proto = sam->proto;
 920        xs->props.family = sam->family;
 921        if (xs->props.family == AF_INET6)
 922                memcpy(&xs->id.daddr.a6, sam->addr, sizeof(xs->id.daddr.a6));
 923        else
 924                memcpy(&xs->id.daddr.a4, sam->addr, sizeof(xs->id.daddr.a4));
 925        xs->xso.dev = adapter->netdev;
 926
 927        algo = xfrm_aead_get_byname(aes_gcm_name, IXGBE_IPSEC_AUTH_BITS, 1);
 928        if (unlikely(!algo)) {
 929                err = -ENOENT;
 930                goto err_xs;
 931        }
 932
 933        aead_len = sizeof(*xs->aead) + IXGBE_IPSEC_KEY_BITS / 8;
 934        xs->aead = kzalloc(aead_len, GFP_KERNEL);
 935        if (unlikely(!xs->aead)) {
 936                err = -ENOMEM;
 937                goto err_xs;
 938        }
 939
 940        xs->props.ealgo = algo->desc.sadb_alg_id;
 941        xs->geniv = algo->uinfo.aead.geniv;
 942        xs->aead->alg_icv_len = IXGBE_IPSEC_AUTH_BITS;
 943        xs->aead->alg_key_len = IXGBE_IPSEC_KEY_BITS;
 944        memcpy(xs->aead->alg_key, sam->key, sizeof(sam->key));
 945        memcpy(xs->aead->alg_name, aes_gcm_name, sizeof(aes_gcm_name));
 946
 947        /* set up the HW offload */
 948        err = ixgbe_ipsec_add_sa(xs);
 949        if (err)
 950                goto err_aead;
 951
 952        pfsa = xs->xso.offload_handle;
 953        if (pfsa < IXGBE_IPSEC_BASE_TX_INDEX) {
 954                sa_idx = pfsa - IXGBE_IPSEC_BASE_RX_INDEX;
 955                ipsec->rx_tbl[sa_idx].vf = vf;
 956                ipsec->rx_tbl[sa_idx].mode |= IXGBE_RXTXMOD_VF;
 957        } else {
 958                sa_idx = pfsa - IXGBE_IPSEC_BASE_TX_INDEX;
 959                ipsec->tx_tbl[sa_idx].vf = vf;
 960                ipsec->tx_tbl[sa_idx].mode |= IXGBE_RXTXMOD_VF;
 961        }
 962
 963        msgbuf[1] = xs->xso.offload_handle;
 964
 965        return 0;
 966
 967err_aead:
 968        kfree_sensitive(xs->aead);
 969err_xs:
 970        kfree_sensitive(xs);
 971err_out:
 972        msgbuf[1] = err;
 973        return err;
 974}
 975
 976/**
 977 * ixgbe_ipsec_vf_del_sa - translate VF request to SA delete
 978 * @adapter: board private structure
 979 * @msgbuf: The message buffer
 980 * @vf: the VF index
 981 *
 982 * Given the offload_handle sent by the VF, look for the related SA table
 983 * entry and use its xs field to call for a delete of the SA.
 984 *
 985 * Note: We silently ignore requests to delete entries that are already
 986 *       set to unused because when a VF is set to "DOWN", the PF first
 987 *       gets a reset and clears all the VF's entries; then the VF's
 988 *       XFRM stack sends individual deletes for each entry, which the
 989 *       reset already removed.  In the future it might be good to try to
 990 *       optimize this so not so many unnecessary delete messages are sent.
 991 *
 992 * Returns 0 or error value
 993 **/
 994int ixgbe_ipsec_vf_del_sa(struct ixgbe_adapter *adapter, u32 *msgbuf, u32 vf)
 995{
 996        struct ixgbe_ipsec *ipsec = adapter->ipsec;
 997        struct xfrm_state *xs;
 998        u32 pfsa = msgbuf[1];
 999        u16 sa_idx;
1000
1001        if (!adapter->vfinfo[vf].trusted) {
1002                e_err(drv, "vf %d attempted to delete an SA\n", vf);
1003                return -EPERM;
1004        }
1005
1006        if (pfsa < IXGBE_IPSEC_BASE_TX_INDEX) {
1007                struct rx_sa *rsa;
1008
1009                sa_idx = pfsa - IXGBE_IPSEC_BASE_RX_INDEX;
1010                if (sa_idx >= IXGBE_IPSEC_MAX_SA_COUNT) {
1011                        e_err(drv, "vf %d SA index %d out of range\n",
1012                              vf, sa_idx);
1013                        return -EINVAL;
1014                }
1015
1016                rsa = &ipsec->rx_tbl[sa_idx];
1017
1018                if (!rsa->used)
1019                        return 0;
1020
1021                if (!(rsa->mode & IXGBE_RXTXMOD_VF) ||
1022                    rsa->vf != vf) {
1023                        e_err(drv, "vf %d bad Rx SA index %d\n", vf, sa_idx);
1024                        return -ENOENT;
1025                }
1026
1027                xs = ipsec->rx_tbl[sa_idx].xs;
1028        } else {
1029                struct tx_sa *tsa;
1030
1031                sa_idx = pfsa - IXGBE_IPSEC_BASE_TX_INDEX;
1032                if (sa_idx >= IXGBE_IPSEC_MAX_SA_COUNT) {
1033                        e_err(drv, "vf %d SA index %d out of range\n",
1034                              vf, sa_idx);
1035                        return -EINVAL;
1036                }
1037
1038                tsa = &ipsec->tx_tbl[sa_idx];
1039
1040                if (!tsa->used)
1041                        return 0;
1042
1043                if (!(tsa->mode & IXGBE_RXTXMOD_VF) ||
1044                    tsa->vf != vf) {
1045                        e_err(drv, "vf %d bad Tx SA index %d\n", vf, sa_idx);
1046                        return -ENOENT;
1047                }
1048
1049                xs = ipsec->tx_tbl[sa_idx].xs;
1050        }
1051
1052        ixgbe_ipsec_del_sa(xs);
1053
1054        /* remove the xs that was made-up in the add request */
1055        kfree_sensitive(xs);
1056
1057        return 0;
1058}
1059
1060/**
1061 * ixgbe_ipsec_tx - setup Tx flags for ipsec offload
1062 * @tx_ring: outgoing context
1063 * @first: current data packet
1064 * @itd: ipsec Tx data for later use in building context descriptor
1065 **/
1066int ixgbe_ipsec_tx(struct ixgbe_ring *tx_ring,
1067                   struct ixgbe_tx_buffer *first,
1068                   struct ixgbe_ipsec_tx_data *itd)
1069{
1070        struct ixgbe_adapter *adapter = netdev_priv(tx_ring->netdev);
1071        struct ixgbe_ipsec *ipsec = adapter->ipsec;
1072        struct xfrm_state *xs;
1073        struct sec_path *sp;
1074        struct tx_sa *tsa;
1075
1076        sp = skb_sec_path(first->skb);
1077        if (unlikely(!sp->len)) {
1078                netdev_err(tx_ring->netdev, "%s: no xfrm state len = %d\n",
1079                           __func__, sp->len);
1080                return 0;
1081        }
1082
1083        xs = xfrm_input_state(first->skb);
1084        if (unlikely(!xs)) {
1085                netdev_err(tx_ring->netdev, "%s: no xfrm_input_state() xs = %p\n",
1086                           __func__, xs);
1087                return 0;
1088        }
1089
1090        itd->sa_idx = xs->xso.offload_handle - IXGBE_IPSEC_BASE_TX_INDEX;
1091        if (unlikely(itd->sa_idx >= IXGBE_IPSEC_MAX_SA_COUNT)) {
1092                netdev_err(tx_ring->netdev, "%s: bad sa_idx=%d handle=%lu\n",
1093                           __func__, itd->sa_idx, xs->xso.offload_handle);
1094                return 0;
1095        }
1096
1097        tsa = &ipsec->tx_tbl[itd->sa_idx];
1098        if (unlikely(!tsa->used)) {
1099                netdev_err(tx_ring->netdev, "%s: unused sa_idx=%d\n",
1100                           __func__, itd->sa_idx);
1101                return 0;
1102        }
1103
1104        first->tx_flags |= IXGBE_TX_FLAGS_IPSEC | IXGBE_TX_FLAGS_CC;
1105
1106        if (xs->id.proto == IPPROTO_ESP) {
1107
1108                itd->flags |= IXGBE_ADVTXD_TUCMD_IPSEC_TYPE_ESP |
1109                              IXGBE_ADVTXD_TUCMD_L4T_TCP;
1110                if (first->protocol == htons(ETH_P_IP))
1111                        itd->flags |= IXGBE_ADVTXD_TUCMD_IPV4;
1112
1113                /* The actual trailer length is authlen (16 bytes) plus
1114                 * 2 bytes for the proto and the padlen values, plus
1115                 * padlen bytes of padding.  This ends up not the same
1116                 * as the static value found in xs->props.trailer_len (21).
1117                 *
1118                 * ... but if we're doing GSO, don't bother as the stack
1119                 * doesn't add a trailer for those.
1120                 */
1121                if (!skb_is_gso(first->skb)) {
1122                        /* The "correct" way to get the auth length would be
1123                         * to use
1124                         *    authlen = crypto_aead_authsize(xs->data);
1125                         * but since we know we only have one size to worry
1126                         * about * we can let the compiler use the constant
1127                         * and save us a few CPU cycles.
1128                         */
1129                        const int authlen = IXGBE_IPSEC_AUTH_BITS / 8;
1130                        struct sk_buff *skb = first->skb;
1131                        u8 padlen;
1132                        int ret;
1133
1134                        ret = skb_copy_bits(skb, skb->len - (authlen + 2),
1135                                            &padlen, 1);
1136                        if (unlikely(ret))
1137                                return 0;
1138                        itd->trailer_len = authlen + 2 + padlen;
1139                }
1140        }
1141        if (tsa->encrypt)
1142                itd->flags |= IXGBE_ADVTXD_TUCMD_IPSEC_ENCRYPT_EN;
1143
1144        return 1;
1145}
1146
1147/**
1148 * ixgbe_ipsec_rx - decode ipsec bits from Rx descriptor
1149 * @rx_ring: receiving ring
1150 * @rx_desc: receive data descriptor
1151 * @skb: current data packet
1152 *
1153 * Determine if there was an ipsec encapsulation noticed, and if so set up
1154 * the resulting status for later in the receive stack.
1155 **/
1156void ixgbe_ipsec_rx(struct ixgbe_ring *rx_ring,
1157                    union ixgbe_adv_rx_desc *rx_desc,
1158                    struct sk_buff *skb)
1159{
1160        struct ixgbe_adapter *adapter = netdev_priv(rx_ring->netdev);
1161        __le16 pkt_info = rx_desc->wb.lower.lo_dword.hs_rss.pkt_info;
1162        __le16 ipsec_pkt_types = cpu_to_le16(IXGBE_RXDADV_PKTTYPE_IPSEC_AH |
1163                                             IXGBE_RXDADV_PKTTYPE_IPSEC_ESP);
1164        struct ixgbe_ipsec *ipsec = adapter->ipsec;
1165        struct xfrm_offload *xo = NULL;
1166        struct xfrm_state *xs = NULL;
1167        struct ipv6hdr *ip6 = NULL;
1168        struct iphdr *ip4 = NULL;
1169        struct sec_path *sp;
1170        void *daddr;
1171        __be32 spi;
1172        u8 *c_hdr;
1173        u8 proto;
1174
1175        /* Find the ip and crypto headers in the data.
1176         * We can assume no vlan header in the way, b/c the
1177         * hw won't recognize the IPsec packet and anyway the
1178         * currently vlan device doesn't support xfrm offload.
1179         */
1180        if (pkt_info & cpu_to_le16(IXGBE_RXDADV_PKTTYPE_IPV4)) {
1181                ip4 = (struct iphdr *)(skb->data + ETH_HLEN);
1182                daddr = &ip4->daddr;
1183                c_hdr = (u8 *)ip4 + ip4->ihl * 4;
1184        } else if (pkt_info & cpu_to_le16(IXGBE_RXDADV_PKTTYPE_IPV6)) {
1185                ip6 = (struct ipv6hdr *)(skb->data + ETH_HLEN);
1186                daddr = &ip6->daddr;
1187                c_hdr = (u8 *)ip6 + sizeof(struct ipv6hdr);
1188        } else {
1189                return;
1190        }
1191
1192        switch (pkt_info & ipsec_pkt_types) {
1193        case cpu_to_le16(IXGBE_RXDADV_PKTTYPE_IPSEC_AH):
1194                spi = ((struct ip_auth_hdr *)c_hdr)->spi;
1195                proto = IPPROTO_AH;
1196                break;
1197        case cpu_to_le16(IXGBE_RXDADV_PKTTYPE_IPSEC_ESP):
1198                spi = ((struct ip_esp_hdr *)c_hdr)->spi;
1199                proto = IPPROTO_ESP;
1200                break;
1201        default:
1202                return;
1203        }
1204
1205        xs = ixgbe_ipsec_find_rx_state(ipsec, daddr, proto, spi, !!ip4);
1206        if (unlikely(!xs))
1207                return;
1208
1209        sp = secpath_set(skb);
1210        if (unlikely(!sp))
1211                return;
1212
1213        sp->xvec[sp->len++] = xs;
1214        sp->olen++;
1215        xo = xfrm_offload(skb);
1216        xo->flags = CRYPTO_DONE;
1217        xo->status = CRYPTO_SUCCESS;
1218
1219        adapter->rx_ipsec++;
1220}
1221
1222/**
1223 * ixgbe_init_ipsec_offload - initialize security registers for IPSec operation
1224 * @adapter: board private structure
1225 **/
1226void ixgbe_init_ipsec_offload(struct ixgbe_adapter *adapter)
1227{
1228        struct ixgbe_hw *hw = &adapter->hw;
1229        struct ixgbe_ipsec *ipsec;
1230        u32 t_dis, r_dis;
1231        size_t size;
1232
1233        if (hw->mac.type == ixgbe_mac_82598EB)
1234                return;
1235
1236        /* If there is no support for either Tx or Rx offload
1237         * we should not be advertising support for IPsec.
1238         */
1239        t_dis = IXGBE_READ_REG(hw, IXGBE_SECTXSTAT) &
1240                IXGBE_SECTXSTAT_SECTX_OFF_DIS;
1241        r_dis = IXGBE_READ_REG(hw, IXGBE_SECRXSTAT) &
1242                IXGBE_SECRXSTAT_SECRX_OFF_DIS;
1243        if (t_dis || r_dis)
1244                return;
1245
1246        ipsec = kzalloc(sizeof(*ipsec), GFP_KERNEL);
1247        if (!ipsec)
1248                goto err1;
1249        hash_init(ipsec->rx_sa_list);
1250
1251        size = sizeof(struct rx_sa) * IXGBE_IPSEC_MAX_SA_COUNT;
1252        ipsec->rx_tbl = kzalloc(size, GFP_KERNEL);
1253        if (!ipsec->rx_tbl)
1254                goto err2;
1255
1256        size = sizeof(struct tx_sa) * IXGBE_IPSEC_MAX_SA_COUNT;
1257        ipsec->tx_tbl = kzalloc(size, GFP_KERNEL);
1258        if (!ipsec->tx_tbl)
1259                goto err2;
1260
1261        size = sizeof(struct rx_ip_sa) * IXGBE_IPSEC_MAX_RX_IP_COUNT;
1262        ipsec->ip_tbl = kzalloc(size, GFP_KERNEL);
1263        if (!ipsec->ip_tbl)
1264                goto err2;
1265
1266        ipsec->num_rx_sa = 0;
1267        ipsec->num_tx_sa = 0;
1268
1269        adapter->ipsec = ipsec;
1270        ixgbe_ipsec_stop_engine(adapter);
1271        ixgbe_ipsec_clear_hw_tables(adapter);
1272
1273        adapter->netdev->xfrmdev_ops = &ixgbe_xfrmdev_ops;
1274
1275        return;
1276
1277err2:
1278        kfree(ipsec->ip_tbl);
1279        kfree(ipsec->rx_tbl);
1280        kfree(ipsec->tx_tbl);
1281        kfree(ipsec);
1282err1:
1283        netdev_err(adapter->netdev, "Unable to allocate memory for SA tables");
1284}
1285
1286/**
1287 * ixgbe_stop_ipsec_offload - tear down the ipsec offload
1288 * @adapter: board private structure
1289 **/
1290void ixgbe_stop_ipsec_offload(struct ixgbe_adapter *adapter)
1291{
1292        struct ixgbe_ipsec *ipsec = adapter->ipsec;
1293
1294        adapter->ipsec = NULL;
1295        if (ipsec) {
1296                kfree(ipsec->ip_tbl);
1297                kfree(ipsec->rx_tbl);
1298                kfree(ipsec->tx_tbl);
1299                kfree(ipsec);
1300        }
1301}
1302