1 // SPDX-License-Identifier: GPL-2.0-or-later << 2 /* 1 /* 3 * Copyright Gavin Shan, IBM Corporation 2016. 2 * Copyright Gavin Shan, IBM Corporation 2016. >> 3 * >> 4 * This program is free software; you can redistribute it and/or modify >> 5 * it under the terms of the GNU General Public License as published by >> 6 * the Free Software Foundation; either version 2 of the License, or >> 7 * (at your option) any later version. 4 */ 8 */ 5 9 6 #include <linux/module.h> 10 #include <linux/module.h> 7 #include <linux/kernel.h> 11 #include <linux/kernel.h> 8 #include <linux/init.h> 12 #include <linux/init.h> 9 #include <linux/etherdevice.h> 13 #include <linux/etherdevice.h> 10 #include <linux/netdevice.h> 14 #include <linux/netdevice.h> 11 #include <linux/skbuff.h> 15 #include <linux/skbuff.h> 12 16 13 #include <net/ncsi.h> 17 #include <net/ncsi.h> 14 #include <net/net_namespace.h> 18 #include <net/net_namespace.h> 15 #include <net/sock.h> 19 #include <net/sock.h> 16 #include <net/genetlink.h> << 17 20 18 #include "internal.h" 21 #include "internal.h" 19 #include "ncsi-pkt.h" 22 #include "ncsi-pkt.h" 20 23 21 static const int padding_bytes = 26; << 22 << 23 u32 ncsi_calculate_checksum(unsigned char *dat 24 u32 ncsi_calculate_checksum(unsigned char *data, int len) 24 { 25 { 25 u32 checksum = 0; 26 u32 checksum = 0; 26 int i; 27 int i; 27 28 28 for (i = 0; i < len; i += 2) 29 for (i = 0; i < len; i += 2) 29 checksum += (((u32)data[i] << 30 checksum += (((u32)data[i] << 8) | data[i + 1]); 30 31 31 checksum = (~checksum + 1); 32 checksum = (~checksum + 1); 32 return checksum; 33 return checksum; 33 } 34 } 34 35 35 /* This function should be called after the da 36 /* This function should be called after the data area has been 36 * populated completely. 37 * populated completely. 37 */ 38 */ 38 static void ncsi_cmd_build_header(struct ncsi_ 39 static void ncsi_cmd_build_header(struct ncsi_pkt_hdr *h, 39 struct ncsi_ 40 struct ncsi_cmd_arg *nca) 40 { 41 { 41 u32 checksum; 42 u32 checksum; 42 __be32 *pchecksum; 43 __be32 *pchecksum; 43 44 44 h->mc_id = 0; 45 h->mc_id = 0; 45 h->revision = NCSI_PKT_REVISION; 46 h->revision = NCSI_PKT_REVISION; 46 h->reserved = 0; 47 h->reserved = 0; 47 h->id = nca->id; 48 h->id = nca->id; 48 h->type = nca->type; 49 h->type = nca->type; 49 h->channel = NCSI_TO_CHANNEL(nca- 50 h->channel = NCSI_TO_CHANNEL(nca->package, 50 nca- 51 nca->channel); 51 h->length = htons(nca->payload); 52 h->length = htons(nca->payload); 52 h->reserved1[0] = 0; 53 h->reserved1[0] = 0; 53 h->reserved1[1] = 0; 54 h->reserved1[1] = 0; 54 55 55 /* Fill with calculated checksum */ 56 /* Fill with calculated checksum */ 56 checksum = ncsi_calculate_checksum((un 57 checksum = ncsi_calculate_checksum((unsigned char *)h, 57 siz 58 sizeof(*h) + nca->payload); 58 pchecksum = (__be32 *)((void *)h + siz 59 pchecksum = (__be32 *)((void *)h + sizeof(struct ncsi_pkt_hdr) + 59 ALIGN(nca->payload, 4)); !! 60 nca->payload); 60 *pchecksum = htonl(checksum); 61 *pchecksum = htonl(checksum); 61 } 62 } 62 63 63 static int ncsi_cmd_handler_default(struct sk_ 64 static int ncsi_cmd_handler_default(struct sk_buff *skb, 64 struct ncs 65 struct ncsi_cmd_arg *nca) 65 { 66 { 66 struct ncsi_cmd_pkt *cmd; 67 struct ncsi_cmd_pkt *cmd; 67 68 68 cmd = skb_put_zero(skb, sizeof(*cmd)); 69 cmd = skb_put_zero(skb, sizeof(*cmd)); 69 ncsi_cmd_build_header(&cmd->cmd.common 70 ncsi_cmd_build_header(&cmd->cmd.common, nca); 70 71 71 return 0; 72 return 0; 72 } 73 } 73 74 74 static int ncsi_cmd_handler_sp(struct sk_buff 75 static int ncsi_cmd_handler_sp(struct sk_buff *skb, 75 struct ncsi_cmd 76 struct ncsi_cmd_arg *nca) 76 { 77 { 77 struct ncsi_cmd_sp_pkt *cmd; 78 struct ncsi_cmd_sp_pkt *cmd; 78 79 79 cmd = skb_put_zero(skb, sizeof(*cmd)); 80 cmd = skb_put_zero(skb, sizeof(*cmd)); 80 cmd->hw_arbitration = nca->bytes[0]; 81 cmd->hw_arbitration = nca->bytes[0]; 81 ncsi_cmd_build_header(&cmd->cmd.common 82 ncsi_cmd_build_header(&cmd->cmd.common, nca); 82 83 83 return 0; 84 return 0; 84 } 85 } 85 86 86 static int ncsi_cmd_handler_dc(struct sk_buff 87 static int ncsi_cmd_handler_dc(struct sk_buff *skb, 87 struct ncsi_cmd 88 struct ncsi_cmd_arg *nca) 88 { 89 { 89 struct ncsi_cmd_dc_pkt *cmd; 90 struct ncsi_cmd_dc_pkt *cmd; 90 91 91 cmd = skb_put_zero(skb, sizeof(*cmd)); 92 cmd = skb_put_zero(skb, sizeof(*cmd)); 92 cmd->ald = nca->bytes[0]; 93 cmd->ald = nca->bytes[0]; 93 ncsi_cmd_build_header(&cmd->cmd.common 94 ncsi_cmd_build_header(&cmd->cmd.common, nca); 94 95 95 return 0; 96 return 0; 96 } 97 } 97 98 98 static int ncsi_cmd_handler_rc(struct sk_buff 99 static int ncsi_cmd_handler_rc(struct sk_buff *skb, 99 struct ncsi_cmd 100 struct ncsi_cmd_arg *nca) 100 { 101 { 101 struct ncsi_cmd_rc_pkt *cmd; 102 struct ncsi_cmd_rc_pkt *cmd; 102 103 103 cmd = skb_put_zero(skb, sizeof(*cmd)); 104 cmd = skb_put_zero(skb, sizeof(*cmd)); 104 ncsi_cmd_build_header(&cmd->cmd.common 105 ncsi_cmd_build_header(&cmd->cmd.common, nca); 105 106 106 return 0; 107 return 0; 107 } 108 } 108 109 109 static int ncsi_cmd_handler_ae(struct sk_buff 110 static int ncsi_cmd_handler_ae(struct sk_buff *skb, 110 struct ncsi_cmd 111 struct ncsi_cmd_arg *nca) 111 { 112 { 112 struct ncsi_cmd_ae_pkt *cmd; 113 struct ncsi_cmd_ae_pkt *cmd; 113 114 114 cmd = skb_put_zero(skb, sizeof(*cmd)); 115 cmd = skb_put_zero(skb, sizeof(*cmd)); 115 cmd->mc_id = nca->bytes[0]; 116 cmd->mc_id = nca->bytes[0]; 116 cmd->mode = htonl(nca->dwords[1]); 117 cmd->mode = htonl(nca->dwords[1]); 117 ncsi_cmd_build_header(&cmd->cmd.common 118 ncsi_cmd_build_header(&cmd->cmd.common, nca); 118 119 119 return 0; 120 return 0; 120 } 121 } 121 122 122 static int ncsi_cmd_handler_sl(struct sk_buff 123 static int ncsi_cmd_handler_sl(struct sk_buff *skb, 123 struct ncsi_cmd 124 struct ncsi_cmd_arg *nca) 124 { 125 { 125 struct ncsi_cmd_sl_pkt *cmd; 126 struct ncsi_cmd_sl_pkt *cmd; 126 127 127 cmd = skb_put_zero(skb, sizeof(*cmd)); 128 cmd = skb_put_zero(skb, sizeof(*cmd)); 128 cmd->mode = htonl(nca->dwords[0]); 129 cmd->mode = htonl(nca->dwords[0]); 129 cmd->oem_mode = htonl(nca->dwords[1]); 130 cmd->oem_mode = htonl(nca->dwords[1]); 130 ncsi_cmd_build_header(&cmd->cmd.common 131 ncsi_cmd_build_header(&cmd->cmd.common, nca); 131 132 132 return 0; 133 return 0; 133 } 134 } 134 135 135 static int ncsi_cmd_handler_svf(struct sk_buff 136 static int ncsi_cmd_handler_svf(struct sk_buff *skb, 136 struct ncsi_cm 137 struct ncsi_cmd_arg *nca) 137 { 138 { 138 struct ncsi_cmd_svf_pkt *cmd; 139 struct ncsi_cmd_svf_pkt *cmd; 139 140 140 cmd = skb_put_zero(skb, sizeof(*cmd)); 141 cmd = skb_put_zero(skb, sizeof(*cmd)); 141 cmd->vlan = htons(nca->words[1]); 142 cmd->vlan = htons(nca->words[1]); 142 cmd->index = nca->bytes[6]; 143 cmd->index = nca->bytes[6]; 143 cmd->enable = nca->bytes[7]; 144 cmd->enable = nca->bytes[7]; 144 ncsi_cmd_build_header(&cmd->cmd.common 145 ncsi_cmd_build_header(&cmd->cmd.common, nca); 145 146 146 return 0; 147 return 0; 147 } 148 } 148 149 149 static int ncsi_cmd_handler_ev(struct sk_buff 150 static int ncsi_cmd_handler_ev(struct sk_buff *skb, 150 struct ncsi_cmd 151 struct ncsi_cmd_arg *nca) 151 { 152 { 152 struct ncsi_cmd_ev_pkt *cmd; 153 struct ncsi_cmd_ev_pkt *cmd; 153 154 154 cmd = skb_put_zero(skb, sizeof(*cmd)); 155 cmd = skb_put_zero(skb, sizeof(*cmd)); 155 cmd->mode = nca->bytes[3]; 156 cmd->mode = nca->bytes[3]; 156 ncsi_cmd_build_header(&cmd->cmd.common 157 ncsi_cmd_build_header(&cmd->cmd.common, nca); 157 158 158 return 0; 159 return 0; 159 } 160 } 160 161 161 static int ncsi_cmd_handler_sma(struct sk_buff 162 static int ncsi_cmd_handler_sma(struct sk_buff *skb, 162 struct ncsi_cm 163 struct ncsi_cmd_arg *nca) 163 { 164 { 164 struct ncsi_cmd_sma_pkt *cmd; 165 struct ncsi_cmd_sma_pkt *cmd; 165 int i; 166 int i; 166 167 167 cmd = skb_put_zero(skb, sizeof(*cmd)); 168 cmd = skb_put_zero(skb, sizeof(*cmd)); 168 for (i = 0; i < 6; i++) 169 for (i = 0; i < 6; i++) 169 cmd->mac[i] = nca->bytes[i]; 170 cmd->mac[i] = nca->bytes[i]; 170 cmd->index = nca->bytes[6]; 171 cmd->index = nca->bytes[6]; 171 cmd->at_e = nca->bytes[7]; 172 cmd->at_e = nca->bytes[7]; 172 ncsi_cmd_build_header(&cmd->cmd.common 173 ncsi_cmd_build_header(&cmd->cmd.common, nca); 173 174 174 return 0; 175 return 0; 175 } 176 } 176 177 177 static int ncsi_cmd_handler_ebf(struct sk_buff 178 static int ncsi_cmd_handler_ebf(struct sk_buff *skb, 178 struct ncsi_cm 179 struct ncsi_cmd_arg *nca) 179 { 180 { 180 struct ncsi_cmd_ebf_pkt *cmd; 181 struct ncsi_cmd_ebf_pkt *cmd; 181 182 182 cmd = skb_put_zero(skb, sizeof(*cmd)); 183 cmd = skb_put_zero(skb, sizeof(*cmd)); 183 cmd->mode = htonl(nca->dwords[0]); 184 cmd->mode = htonl(nca->dwords[0]); 184 ncsi_cmd_build_header(&cmd->cmd.common 185 ncsi_cmd_build_header(&cmd->cmd.common, nca); 185 186 186 return 0; 187 return 0; 187 } 188 } 188 189 189 static int ncsi_cmd_handler_egmf(struct sk_buf 190 static int ncsi_cmd_handler_egmf(struct sk_buff *skb, 190 struct ncsi_c 191 struct ncsi_cmd_arg *nca) 191 { 192 { 192 struct ncsi_cmd_egmf_pkt *cmd; 193 struct ncsi_cmd_egmf_pkt *cmd; 193 194 194 cmd = skb_put_zero(skb, sizeof(*cmd)); 195 cmd = skb_put_zero(skb, sizeof(*cmd)); 195 cmd->mode = htonl(nca->dwords[0]); 196 cmd->mode = htonl(nca->dwords[0]); 196 ncsi_cmd_build_header(&cmd->cmd.common 197 ncsi_cmd_build_header(&cmd->cmd.common, nca); 197 198 198 return 0; 199 return 0; 199 } 200 } 200 201 201 static int ncsi_cmd_handler_snfc(struct sk_buf 202 static int ncsi_cmd_handler_snfc(struct sk_buff *skb, 202 struct ncsi_c 203 struct ncsi_cmd_arg *nca) 203 { 204 { 204 struct ncsi_cmd_snfc_pkt *cmd; 205 struct ncsi_cmd_snfc_pkt *cmd; 205 206 206 cmd = skb_put_zero(skb, sizeof(*cmd)); 207 cmd = skb_put_zero(skb, sizeof(*cmd)); 207 cmd->mode = nca->bytes[0]; 208 cmd->mode = nca->bytes[0]; 208 ncsi_cmd_build_header(&cmd->cmd.common 209 ncsi_cmd_build_header(&cmd->cmd.common, nca); 209 210 210 return 0; 211 return 0; 211 } 212 } 212 213 213 static int ncsi_cmd_handler_oem(struct sk_buff << 214 struct ncsi_cm << 215 { << 216 struct ncsi_cmd_oem_pkt *cmd; << 217 unsigned int len; << 218 int payload; << 219 /* NC-SI spec DSP_0222_1.2.0, section << 220 * requires payload to be padded with << 221 * 32-bit boundary before the checksum << 222 * Ensure the padding bytes are accoun << 223 * skb allocation << 224 */ << 225 << 226 payload = ALIGN(nca->payload, 4); << 227 len = sizeof(struct ncsi_cmd_pkt_hdr) << 228 len += max(payload, padding_bytes); << 229 << 230 cmd = skb_put_zero(skb, len); << 231 unsafe_memcpy(&cmd->mfr_id, nca->data, << 232 /* skb allocated with en << 233 ncsi_cmd_build_header(&cmd->cmd.common << 234 << 235 return 0; << 236 } << 237 << 238 static struct ncsi_cmd_handler { 214 static struct ncsi_cmd_handler { 239 unsigned char type; 215 unsigned char type; 240 int payload; 216 int payload; 241 int (*handler)(struct sk_buf 217 int (*handler)(struct sk_buff *skb, 242 struct ncsi_c 218 struct ncsi_cmd_arg *nca); 243 } ncsi_cmd_handlers[] = { 219 } ncsi_cmd_handlers[] = { 244 { NCSI_PKT_CMD_CIS, 0, ncsi_cmd_han 220 { NCSI_PKT_CMD_CIS, 0, ncsi_cmd_handler_default }, 245 { NCSI_PKT_CMD_SP, 4, ncsi_cmd_han 221 { NCSI_PKT_CMD_SP, 4, ncsi_cmd_handler_sp }, 246 { NCSI_PKT_CMD_DP, 0, ncsi_cmd_han 222 { NCSI_PKT_CMD_DP, 0, ncsi_cmd_handler_default }, 247 { NCSI_PKT_CMD_EC, 0, ncsi_cmd_han 223 { NCSI_PKT_CMD_EC, 0, ncsi_cmd_handler_default }, 248 { NCSI_PKT_CMD_DC, 4, ncsi_cmd_han 224 { NCSI_PKT_CMD_DC, 4, ncsi_cmd_handler_dc }, 249 { NCSI_PKT_CMD_RC, 4, ncsi_cmd_han 225 { NCSI_PKT_CMD_RC, 4, ncsi_cmd_handler_rc }, 250 { NCSI_PKT_CMD_ECNT, 0, ncsi_cmd_han 226 { NCSI_PKT_CMD_ECNT, 0, ncsi_cmd_handler_default }, 251 { NCSI_PKT_CMD_DCNT, 0, ncsi_cmd_han 227 { NCSI_PKT_CMD_DCNT, 0, ncsi_cmd_handler_default }, 252 { NCSI_PKT_CMD_AE, 8, ncsi_cmd_han 228 { NCSI_PKT_CMD_AE, 8, ncsi_cmd_handler_ae }, 253 { NCSI_PKT_CMD_SL, 8, ncsi_cmd_han 229 { NCSI_PKT_CMD_SL, 8, ncsi_cmd_handler_sl }, 254 { NCSI_PKT_CMD_GLS, 0, ncsi_cmd_han 230 { NCSI_PKT_CMD_GLS, 0, ncsi_cmd_handler_default }, 255 { NCSI_PKT_CMD_SVF, 8, ncsi_cmd_han 231 { NCSI_PKT_CMD_SVF, 8, ncsi_cmd_handler_svf }, 256 { NCSI_PKT_CMD_EV, 4, ncsi_cmd_han 232 { NCSI_PKT_CMD_EV, 4, ncsi_cmd_handler_ev }, 257 { NCSI_PKT_CMD_DV, 0, ncsi_cmd_han 233 { NCSI_PKT_CMD_DV, 0, ncsi_cmd_handler_default }, 258 { NCSI_PKT_CMD_SMA, 8, ncsi_cmd_han 234 { NCSI_PKT_CMD_SMA, 8, ncsi_cmd_handler_sma }, 259 { NCSI_PKT_CMD_EBF, 4, ncsi_cmd_han 235 { NCSI_PKT_CMD_EBF, 4, ncsi_cmd_handler_ebf }, 260 { NCSI_PKT_CMD_DBF, 0, ncsi_cmd_han 236 { NCSI_PKT_CMD_DBF, 0, ncsi_cmd_handler_default }, 261 { NCSI_PKT_CMD_EGMF, 4, ncsi_cmd_han 237 { NCSI_PKT_CMD_EGMF, 4, ncsi_cmd_handler_egmf }, 262 { NCSI_PKT_CMD_DGMF, 0, ncsi_cmd_han 238 { NCSI_PKT_CMD_DGMF, 0, ncsi_cmd_handler_default }, 263 { NCSI_PKT_CMD_SNFC, 4, ncsi_cmd_han 239 { NCSI_PKT_CMD_SNFC, 4, ncsi_cmd_handler_snfc }, 264 { NCSI_PKT_CMD_GVI, 0, ncsi_cmd_han 240 { NCSI_PKT_CMD_GVI, 0, ncsi_cmd_handler_default }, 265 { NCSI_PKT_CMD_GC, 0, ncsi_cmd_han 241 { NCSI_PKT_CMD_GC, 0, ncsi_cmd_handler_default }, 266 { NCSI_PKT_CMD_GP, 0, ncsi_cmd_han 242 { NCSI_PKT_CMD_GP, 0, ncsi_cmd_handler_default }, 267 { NCSI_PKT_CMD_GCPS, 0, ncsi_cmd_han 243 { NCSI_PKT_CMD_GCPS, 0, ncsi_cmd_handler_default }, 268 { NCSI_PKT_CMD_GNS, 0, ncsi_cmd_han 244 { NCSI_PKT_CMD_GNS, 0, ncsi_cmd_handler_default }, 269 { NCSI_PKT_CMD_GNPTS, 0, ncsi_cmd_han 245 { NCSI_PKT_CMD_GNPTS, 0, ncsi_cmd_handler_default }, 270 { NCSI_PKT_CMD_GPS, 0, ncsi_cmd_han 246 { NCSI_PKT_CMD_GPS, 0, ncsi_cmd_handler_default }, 271 { NCSI_PKT_CMD_OEM, -1, ncsi_cmd_han !! 247 { NCSI_PKT_CMD_OEM, 0, NULL }, 272 { NCSI_PKT_CMD_PLDM, 0, NULL 248 { NCSI_PKT_CMD_PLDM, 0, NULL }, 273 { NCSI_PKT_CMD_GPUUID, 0, ncsi_cmd_han !! 249 { NCSI_PKT_CMD_GPUUID, 0, ncsi_cmd_handler_default } 274 { NCSI_PKT_CMD_GMCMA, 0, ncsi_cmd_han << 275 }; 250 }; 276 251 277 static struct ncsi_request *ncsi_alloc_command 252 static struct ncsi_request *ncsi_alloc_command(struct ncsi_cmd_arg *nca) 278 { 253 { 279 struct ncsi_dev_priv *ndp = nca->ndp; 254 struct ncsi_dev_priv *ndp = nca->ndp; 280 struct ncsi_dev *nd = &ndp->ndev; 255 struct ncsi_dev *nd = &ndp->ndev; 281 struct net_device *dev = nd->dev; 256 struct net_device *dev = nd->dev; 282 int hlen = LL_RESERVED_SPACE(dev); 257 int hlen = LL_RESERVED_SPACE(dev); 283 int tlen = dev->needed_tailroom; 258 int tlen = dev->needed_tailroom; 284 int payload; << 285 int len = hlen + tlen; 259 int len = hlen + tlen; 286 struct sk_buff *skb; 260 struct sk_buff *skb; 287 struct ncsi_request *nr; 261 struct ncsi_request *nr; 288 262 289 nr = ncsi_alloc_request(ndp, nca->req_ 263 nr = ncsi_alloc_request(ndp, nca->req_flags); 290 if (!nr) 264 if (!nr) 291 return NULL; 265 return NULL; 292 266 293 /* NCSI command packet has 16-bytes he 267 /* NCSI command packet has 16-bytes header, payload, 4 bytes checksum. 294 * Payload needs padding so that the c << 295 * aligned to 32-bit boundary. << 296 * The packet needs padding if its pay 268 * The packet needs padding if its payload is less than 26 bytes to 297 * meet 64 bytes minimal ethernet fram 269 * meet 64 bytes minimal ethernet frame length. 298 */ 270 */ 299 len += sizeof(struct ncsi_cmd_pkt_hdr) 271 len += sizeof(struct ncsi_cmd_pkt_hdr) + 4; 300 payload = ALIGN(nca->payload, 4); !! 272 if (nca->payload < 26) 301 len += max(payload, padding_bytes); !! 273 len += 26; >> 274 else >> 275 len += nca->payload; 302 276 303 /* Allocate skb */ 277 /* Allocate skb */ 304 skb = alloc_skb(len, GFP_ATOMIC); 278 skb = alloc_skb(len, GFP_ATOMIC); 305 if (!skb) { 279 if (!skb) { 306 ncsi_free_request(nr); 280 ncsi_free_request(nr); 307 return NULL; 281 return NULL; 308 } 282 } 309 283 310 nr->cmd = skb; 284 nr->cmd = skb; 311 skb_reserve(skb, hlen); 285 skb_reserve(skb, hlen); 312 skb_reset_network_header(skb); 286 skb_reset_network_header(skb); 313 287 314 skb->dev = dev; 288 skb->dev = dev; 315 skb->protocol = htons(ETH_P_NCSI); 289 skb->protocol = htons(ETH_P_NCSI); 316 290 317 return nr; 291 return nr; 318 } 292 } 319 293 320 int ncsi_xmit_cmd(struct ncsi_cmd_arg *nca) 294 int ncsi_xmit_cmd(struct ncsi_cmd_arg *nca) 321 { 295 { 322 struct ncsi_cmd_handler *nch = NULL; << 323 struct ncsi_request *nr; 296 struct ncsi_request *nr; 324 unsigned char type; << 325 struct ethhdr *eh; 297 struct ethhdr *eh; >> 298 struct ncsi_cmd_handler *nch = NULL; 326 int i, ret; 299 int i, ret; 327 300 328 /* Use OEM generic handler for Netlink << 329 if (nca->req_flags == NCSI_REQ_FLAG_NE << 330 type = NCSI_PKT_CMD_OEM; << 331 else << 332 type = nca->type; << 333 << 334 /* Search for the handler */ 301 /* Search for the handler */ 335 for (i = 0; i < ARRAY_SIZE(ncsi_cmd_ha 302 for (i = 0; i < ARRAY_SIZE(ncsi_cmd_handlers); i++) { 336 if (ncsi_cmd_handlers[i].type !! 303 if (ncsi_cmd_handlers[i].type == nca->type) { 337 if (ncsi_cmd_handlers[ 304 if (ncsi_cmd_handlers[i].handler) 338 nch = &ncsi_cm 305 nch = &ncsi_cmd_handlers[i]; 339 else 306 else 340 nch = NULL; 307 nch = NULL; 341 308 342 break; 309 break; 343 } 310 } 344 } 311 } 345 312 346 if (!nch) { 313 if (!nch) { 347 netdev_err(nca->ndp->ndev.dev, 314 netdev_err(nca->ndp->ndev.dev, 348 "Cannot send packet 315 "Cannot send packet with type 0x%02x\n", nca->type); 349 return -ENOENT; 316 return -ENOENT; 350 } 317 } 351 318 352 /* Get packet payload length and alloc !! 319 /* Get packet payload length and allocate the request */ 353 * It is expected that if length set a !! 320 nca->payload = nch->payload; 354 * handler structure means caller is i << 355 * and setting length in nca before ca << 356 */ << 357 if (nch->payload >= 0) << 358 nca->payload = nch->payload; << 359 nr = ncsi_alloc_command(nca); 321 nr = ncsi_alloc_command(nca); 360 if (!nr) 322 if (!nr) 361 return -ENOMEM; 323 return -ENOMEM; 362 324 363 /* track netlink information */ << 364 if (nca->req_flags == NCSI_REQ_FLAG_NE << 365 nr->snd_seq = nca->info->snd_s << 366 nr->snd_portid = nca->info->sn << 367 nr->nlhdr = *nca->info->nlhdr; << 368 } << 369 << 370 /* Prepare the packet */ 325 /* Prepare the packet */ 371 nca->id = nr->id; 326 nca->id = nr->id; 372 ret = nch->handler(nr->cmd, nca); 327 ret = nch->handler(nr->cmd, nca); 373 if (ret) { 328 if (ret) { 374 ncsi_free_request(nr); 329 ncsi_free_request(nr); 375 return ret; 330 return ret; 376 } 331 } 377 332 378 /* Fill the ethernet header */ 333 /* Fill the ethernet header */ 379 eh = skb_push(nr->cmd, sizeof(*eh)); 334 eh = skb_push(nr->cmd, sizeof(*eh)); 380 eh->h_proto = htons(ETH_P_NCSI); 335 eh->h_proto = htons(ETH_P_NCSI); 381 eth_broadcast_addr(eh->h_dest); 336 eth_broadcast_addr(eh->h_dest); 382 !! 337 eth_broadcast_addr(eh->h_source); 383 /* If mac address received from device << 384 * source address as unicast address e << 385 * address as source address << 386 */ << 387 if (nca->ndp->gma_flag == 1) << 388 memcpy(eh->h_source, nca->ndp- << 389 else << 390 eth_broadcast_addr(eh->h_sourc << 391 338 392 /* Start the timer for the request tha 339 /* Start the timer for the request that might not have 393 * corresponding response. Given NCSI 340 * corresponding response. Given NCSI is an internal 394 * connection a 1 second delay should 341 * connection a 1 second delay should be sufficient. 395 */ 342 */ 396 nr->enabled = true; 343 nr->enabled = true; 397 mod_timer(&nr->timer, jiffies + 1 * HZ 344 mod_timer(&nr->timer, jiffies + 1 * HZ); 398 345 399 /* Send NCSI packet */ 346 /* Send NCSI packet */ 400 skb_get(nr->cmd); 347 skb_get(nr->cmd); 401 ret = dev_queue_xmit(nr->cmd); 348 ret = dev_queue_xmit(nr->cmd); 402 if (ret < 0) { 349 if (ret < 0) { 403 ncsi_free_request(nr); 350 ncsi_free_request(nr); 404 return ret; 351 return ret; 405 } 352 } 406 353 407 return 0; 354 return 0; 408 } 355 } 409 356
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