2 * This program is free software; you can redistribute it and/or modify
3 * it under the terms of the GNU General Public License as published by
4 * the Free Software Foundation; either version 2 of the License, or
5 * (at your option) any later version.
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
12 * You should have received a copy of the GNU General Public License
13 * along with this program; if not, write to the Free Software
14 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA.
16 * Copyright (C) 2009 John Crispin <blogic@openwrt.org>
19 #include <linux/module.h>
20 #include <linux/version.h>
21 #include <linux/kernel.h>
22 #include <linux/types.h>
23 #include <linux/pci.h>
24 #include <linux/init.h>
25 #include <linux/skbuff.h>
26 #include <linux/if_vlan.h>
27 #include <linux/if_ether.h>
28 #include <asm/uaccess.h>
30 #include <asm/uaccess.h>
33 #include <rt305x_regs.h>
36 #define TX_TIMEOUT (20 * HZ / 100)
37 #define MAX_RX_LENGTH 1500
39 #ifdef CONFIG_RALINK_RT305X
40 #include "ramips_esw.c"
43 static struct net_device
* ramips_dev
;
44 static void __iomem
*ramips_fe_base
= 0;
47 ramips_fe_wr(u32 val
, unsigned reg
)
49 __raw_writel(val
, ramips_fe_base
+ reg
);
53 ramips_fe_rr(unsigned reg
)
55 return __raw_readl(ramips_fe_base
+ reg
);
59 ramips_alloc_dma(struct net_device
*dev
)
61 #define phys_to_bus(a) (a & 0x1FFFFFFF)
62 struct raeth_priv
*priv
= (struct raeth_priv
*)netdev_priv(dev
);
65 priv
->skb_free_idx
= 0;
68 priv
->tx
= pci_alloc_consistent(NULL
,
69 NUM_TX_DESC
* sizeof(struct ramips_tx_dma
), &priv
->phy_tx
);
70 for(i
= 0; i
< NUM_TX_DESC
; i
++)
72 memset(&priv
->tx
[i
], 0, sizeof(struct ramips_tx_dma
));
73 priv
->tx
[i
].txd2
|= TX_DMA_LSO
| TX_DMA_DONE
;
74 priv
->tx
[i
].txd4
&= (TX_DMA_QN_MASK
| TX_DMA_PN_MASK
);
75 priv
->tx
[i
].txd4
|= TX_DMA_QN(3) | TX_DMA_PN(1);
77 ramips_fe_wr(phys_to_bus(priv
->phy_tx
), RAMIPS_TX_BASE_PTR0
);
78 ramips_fe_wr(NUM_TX_DESC
, RAMIPS_TX_MAX_CNT0
);
79 ramips_fe_wr(0, RAMIPS_TX_CTX_IDX0
);
80 ramips_fe_wr(RAMIPS_PST_DTX_IDX0
, RAMIPS_PDMA_RST_CFG
);
83 priv
->rx
= pci_alloc_consistent(NULL
,
84 NUM_RX_DESC
* sizeof(struct ramips_rx_dma
), &priv
->phy_rx
);
85 memset(priv
->rx
, 0, sizeof(struct ramips_rx_dma
) * NUM_RX_DESC
);
86 for(i
= 0; i
< NUM_RX_DESC
; i
++)
88 struct sk_buff
*new_skb
= dev_alloc_skb(MAX_RX_LENGTH
+ 2);
90 skb_reserve(new_skb
, 2);
92 dma_map_single(NULL
, skb_put(new_skb
, 2), MAX_RX_LENGTH
+ 2,
94 priv
->rx
[i
].rxd2
|= RX_DMA_LSO
;
95 priv
->rx
[i
].rxd3
= (unsigned int)new_skb
;
97 dma_cache_wback_inv((unsigned long)priv
->rx
,
98 NUM_RX_DESC
* (sizeof(struct ramips_rx_dma
)));
100 ramips_fe_wr(phys_to_bus(priv
->phy_rx
), RAMIPS_RX_BASE_PTR0
);
101 ramips_fe_wr(NUM_RX_DESC
, RAMIPS_RX_MAX_CNT0
);
102 ramips_fe_wr((NUM_RX_DESC
- 1), RAMIPS_RX_CALC_IDX0
);
103 ramips_fe_wr(RAMIPS_PST_DRX_IDX0
, RAMIPS_PDMA_RST_CFG
);
109 ramips_eth_hard_start_xmit(struct sk_buff
* skb
, struct net_device
*dev
)
111 struct raeth_priv
*priv
= (struct raeth_priv
*)netdev_priv(dev
);
113 unsigned int tx_next
;
115 #ifdef CONFIG_RALINK_RT305X
116 #define MIN_PKT_LEN 64
117 if(skb
->len
< MIN_PKT_LEN
)
119 if(skb_padto(skb
, MIN_PKT_LEN
))
121 printk(KERN_ERR
"ramips_eth: skb_padto failed\n");
125 skb_put(skb
, MIN_PKT_LEN
- skb
->len
);
128 dev
->trans_start
= jiffies
;
129 dma_cache_wback_inv((unsigned long)skb
->data
, skb
->len
);
130 tx
= ramips_fe_rr(RAMIPS_TX_CTX_IDX0
);
131 if(tx
== NUM_TX_DESC
- 1)
135 if((priv
->tx
[tx
].txd3
== 0) && (priv
->tx
[tx_next
].txd3
== 0))
137 if(!(priv
->tx
[tx
].txd2
& TX_DMA_DONE
))
140 priv
->stat
.tx_dropped
++;
141 printk(KERN_ERR
"%s: dropping\n", dev
->name
);
144 priv
->tx
[tx
].txd1
= virt_to_phys(skb
->data
);
145 priv
->tx
[tx
].txd2
&= ~(TX_DMA_PLEN0_MASK
| TX_DMA_DONE
);
146 priv
->tx
[tx
].txd2
|= TX_DMA_PLEN0(skb
->len
);
147 ramips_fe_wr((tx
+ 1) % NUM_TX_DESC
, RAMIPS_TX_CTX_IDX0
);
148 priv
->stat
.tx_packets
++;
149 priv
->stat
.tx_bytes
+= skb
->len
;
150 priv
->tx
[tx
].txd3
= (unsigned int)skb
;
151 ramips_fe_wr((tx
+ 1) % NUM_TX_DESC
, RAMIPS_TX_CTX_IDX0
);
153 priv
->stat
.tx_dropped
++;
160 ramips_eth_rx_hw(unsigned long ptr
)
162 struct net_device
*dev
= (struct net_device
*)ptr
;
163 struct raeth_priv
*priv
= (struct raeth_priv
*)netdev_priv(dev
);
169 struct sk_buff
*rx_skb
, *new_skb
;
171 rx
= (ramips_fe_rr(RAMIPS_RX_CALC_IDX0
) + 1) % NUM_RX_DESC
;
172 if(!(priv
->rx
[rx
].rxd2
& RX_DMA_DONE
))
176 rx_skb
= (struct sk_buff
*)priv
->rx
[rx
].rxd3
;
177 rx_skb
->len
= RX_DMA_PLEN0(priv
->rx
[rx
].rxd2
);
178 rx_skb
->tail
= rx_skb
->data
+ rx_skb
->len
;
180 rx_skb
->protocol
= eth_type_trans(rx_skb
, dev
);
181 rx_skb
->ip_summed
= CHECKSUM_NONE
;
182 priv
->stat
.rx_packets
++;
183 priv
->stat
.rx_bytes
+= rx_skb
->len
;
186 new_skb
= __dev_alloc_skb(MAX_RX_LENGTH
+ 2, GFP_DMA
| GFP_ATOMIC
);
187 priv
->rx
[rx
].rxd3
= (unsigned int)new_skb
;
189 skb_reserve(new_skb
, 2);
191 dma_map_single(NULL
, new_skb
->data
, MAX_RX_LENGTH
+ 2,
193 priv
->rx
[rx
].rxd2
&= ~RX_DMA_DONE
;
194 dma_cache_wback_inv((unsigned long)&priv
->rx
[rx
],
195 sizeof(struct ramips_rx_dma
));
196 ramips_fe_wr(rx
, RAMIPS_RX_CALC_IDX0
);
199 tasklet_schedule(&priv
->rx_tasklet
);
201 ramips_fe_wr(ramips_fe_rr(RAMIPS_FE_INT_ENABLE
) | RAMIPS_RX_DLY_INT
,
202 RAMIPS_FE_INT_ENABLE
);
206 ramips_eth_tx_housekeeping(unsigned long ptr
)
208 struct net_device
*dev
= (struct net_device
*)ptr
;
209 struct raeth_priv
*priv
= (struct raeth_priv
*)netdev_priv(dev
);
211 while((priv
->tx
[priv
->skb_free_idx
].txd2
& TX_DMA_DONE
) &&
212 (priv
->tx
[priv
->skb_free_idx
].txd3
))
214 dev_kfree_skb_irq((struct sk_buff
*)priv
->tx
[priv
->skb_free_idx
].txd3
);
215 priv
->tx
[priv
->skb_free_idx
].txd3
= 0;
216 priv
->skb_free_idx
++;
217 if(priv
->skb_free_idx
>= NUM_TX_DESC
)
218 priv
->skb_free_idx
= 0;
220 ramips_fe_wr(ramips_fe_rr(RAMIPS_FE_INT_ENABLE
) | RAMIPS_TX_DLY_INT
,
221 RAMIPS_FE_INT_ENABLE
);
224 static struct net_device_stats
*
225 ramips_eth_get_stats(struct net_device
*dev
)
227 return &((struct raeth_priv
*)netdev_priv(dev
))->stat
;
231 ramips_eth_set_mac_addr(struct net_device
*dev
, void *priv
)
233 unsigned char *mac
= (unsigned char*)priv
;
235 if(netif_running(dev
))
237 memcpy(dev
->dev_addr
, ((struct sockaddr
*)priv
)->sa_data
, dev
->addr_len
);
238 ramips_fe_wr((mac
[0] << 8) | mac
[1], RAMIPS_GDMA1_MAC_ADRH
);
239 ramips_fe_wr(RAMIPS_GDMA1_MAC_ADRL
,
240 (mac
[2] << 24) | (mac
[3] << 16) | (mac
[4] << 8) | mac
[5]);
245 ramips_eth_timeout(struct net_device
*dev
)
248 &((struct raeth_priv
*)netdev_priv(dev
))->tx_housekeeping_tasklet
);
252 ramips_eth_irq(int irq
, void *dev
)
254 struct raeth_priv
*priv
= (struct raeth_priv
*)netdev_priv(dev
);
255 unsigned long fe_int
= ramips_fe_rr(RAMIPS_FE_INT_STATUS
);
257 if(fe_int
& RAMIPS_RX_DLY_INT
)
259 ramips_fe_wr(ramips_fe_rr(RAMIPS_FE_INT_ENABLE
) & ~(RAMIPS_RX_DLY_INT
),
260 RAMIPS_FE_INT_ENABLE
);
261 tasklet_schedule(&priv
->rx_tasklet
);
263 if(fe_int
& RAMIPS_TX_DLY_INT
)
264 tasklet_schedule(&priv
->tx_housekeeping_tasklet
);
265 ramips_fe_wr(0xFFFFFFFF, RAMIPS_FE_INT_STATUS
);
270 ramips_eth_open(struct net_device
*dev
)
272 struct raeth_priv
*priv
= (struct raeth_priv
*)netdev_priv(dev
);
274 ramips_alloc_dma(dev
);
275 ramips_fe_wr((ramips_fe_rr(RAMIPS_PDMA_GLO_CFG
) & 0xff) |
276 (RAMIPS_TX_WB_DDONE
| RAMIPS_RX_DMA_EN
|
277 RAMIPS_TX_DMA_EN
| RAMIPS_PDMA_SIZE_4DWORDS
),
278 RAMIPS_PDMA_GLO_CFG
);
279 ramips_fe_wr((ramips_fe_rr(RAMIPS_FE_GLO_CFG
) &
280 ~(RAMIPS_US_CYC_CNT_MASK
<< RAMIPS_US_CYC_CNT_SHIFT
)) |
281 ((rt305x_sys_freq
/ RAMIPS_US_CYC_CNT_DIVISOR
) << RAMIPS_US_CYC_CNT_SHIFT
),
283 request_irq(dev
->irq
, ramips_eth_irq
, IRQF_DISABLED
, dev
->name
, dev
);
284 tasklet_init(&priv
->tx_housekeeping_tasklet
, ramips_eth_tx_housekeeping
,
286 tasklet_init(&priv
->rx_tasklet
, ramips_eth_rx_hw
, (unsigned long)dev
);
287 ramips_fe_wr(RAMIPS_DELAY_INIT
, RAMIPS_DLY_INT_CFG
);
288 ramips_fe_wr(RAMIPS_TX_DLY_INT
| RAMIPS_RX_DLY_INT
, RAMIPS_FE_INT_ENABLE
);
289 ramips_fe_wr(ramips_fe_rr(RAMIPS_GDMA1_FWD_CFG
) &
290 ~(RAMIPS_GDM1_ICS_EN
| RAMIPS_GDM1_TCS_EN
| RAMIPS_GDM1_UCS_EN
| 0xffff),
291 RAMIPS_GDMA1_FWD_CFG
);
292 ramips_fe_wr(ramips_fe_rr(RAMIPS_CDMA_CSG_CFG
) &
293 ~(RAMIPS_ICS_GEN_EN
| RAMIPS_TCS_GEN_EN
| RAMIPS_UCS_GEN_EN
),
294 RAMIPS_CDMA_CSG_CFG
);
295 ramips_fe_wr(RAMIPS_PSE_FQFC_CFG_INIT
, RAMIPS_PSE_FQ_CFG
);
296 ramips_fe_wr(1, RAMIPS_FE_RST_GL
);
297 ramips_fe_wr(0, RAMIPS_FE_RST_GL
);
298 netif_start_queue(dev
);
303 ramips_eth_stop(struct net_device
*dev
)
305 struct raeth_priv
*priv
= (struct raeth_priv
*)netdev_priv(dev
);
307 ramips_fe_wr(RAMIPS_PDMA_GLO_CFG
, ramips_fe_rr(RAMIPS_PDMA_GLO_CFG
) &
308 ~(RAMIPS_TX_WB_DDONE
| RAMIPS_RX_DMA_EN
| RAMIPS_TX_DMA_EN
));
309 free_irq(dev
->irq
, dev
);
310 netif_stop_queue(dev
);
311 tasklet_kill(&priv
->tx_housekeeping_tasklet
);
312 tasklet_kill(&priv
->rx_tasklet
);
313 pci_free_consistent(NULL
, NUM_TX_DESC
* sizeof(struct ramips_tx_dma
),
314 priv
->tx
, priv
->phy_tx
);
315 pci_free_consistent(NULL
, NUM_RX_DESC
* sizeof(struct ramips_rx_dma
),
316 priv
->rx
, priv
->phy_rx
);
317 printk(KERN_INFO
"ramips_eth: stopped\n");
322 ramips_eth_probe(struct net_device
*dev
)
324 struct sockaddr addr
;
325 unsigned char mac_addr01234
[5] = {0x00, 0x0C, 0x43, 0x28, 0x80};
327 /* reset frame engine */
328 rt305x_sysc_wr(RAMIPS_FE_RESET_BIT
, RAMIPS_FE_RESET
);
329 rt305x_sysc_wr(0, RAMIPS_FE_RESET
);
331 net_srandom(jiffies
);
332 memcpy(addr
.sa_data
, mac_addr01234
, 5);
333 addr
.sa_data
[5] = net_random()&0xFF;
334 ramips_eth_set_mac_addr(dev
, &addr
);
337 dev
->open
= ramips_eth_open
;
338 dev
->stop
= ramips_eth_stop
;
339 dev
->hard_start_xmit
= ramips_eth_hard_start_xmit
;
340 dev
->get_stats
= ramips_eth_get_stats
;
341 dev
->set_mac_address
= ramips_eth_set_mac_addr
;
342 dev
->mtu
= MAX_RX_LENGTH
;
343 dev
->tx_timeout
= ramips_eth_timeout
;
344 dev
->watchdog_timeo
= TX_TIMEOUT
;
349 ramips_eth_init(void)
351 ramips_fe_base
= ioremap_nocache(RT305X_FE_BASE
, PAGE_SIZE
);
354 ramips_dev
= alloc_etherdev(sizeof(struct raeth_priv
));
357 strcpy(ramips_dev
->name
, "eth%d");
358 ramips_dev
->irq
= RT305X_CPU_IRQ_FE
;
359 ramips_dev
->addr_len
= ETH_ALEN
;
360 ramips_dev
->base_addr
= (unsigned long)ramips_fe_base
;
361 ramips_dev
->init
= ramips_eth_probe
;
362 if(register_netdev(ramips_dev
))
364 printk(KERN_ERR
"ramips_eth: error bringing up device\n");
367 #ifdef CONFIG_RALINK_RT305X
370 printk(KERN_INFO
"ramips_eth: loaded\n");
375 ramips_eth_cleanup(void)
377 unregister_netdev(ramips_dev
);
378 free_netdev(ramips_dev
);
379 printk(KERN_INFO
"ramips_eth: unloaded");
382 module_init(ramips_eth_init
);
383 module_exit(ramips_eth_cleanup
);
385 MODULE_LICENSE("GPL");
386 MODULE_AUTHOR("John Crispin <blogic@openwrt.org>");
387 MODULE_DESCRIPTION("ethernet driver for ramips boards");