1#ifndef FS_ENET_H
2#define FS_ENET_H
3
4#include <linux/mii.h>
5#include <linux/netdevice.h>
6#include <linux/types.h>
7#include <linux/list.h>
8#include <linux/phy.h>
9#include <linux/dma-mapping.h>
10
11#include <linux/fs_enet_pd.h>
12#include <asm/fs_pd.h>
13
14#ifdef CONFIG_CPM1
15#include <asm/cpm1.h>
16#endif
17
18#if defined(CONFIG_FS_ENET_HAS_FEC)
19#include <asm/cpm.h>
20
21#if defined(CONFIG_FS_ENET_MPC5121_FEC)
22
23struct fec {
24 u32 fec_reserved0;
25 u32 fec_ievent;
26 u32 fec_imask;
27 u32 fec_reserved1;
28 u32 fec_r_des_active;
29 u32 fec_x_des_active;
30 u32 fec_reserved2[3];
31 u32 fec_ecntrl;
32 u32 fec_reserved3[6];
33 u32 fec_mii_data;
34 u32 fec_mii_speed;
35 u32 fec_reserved4[7];
36 u32 fec_mib_ctrlstat;
37 u32 fec_reserved5[7];
38 u32 fec_r_cntrl;
39 u32 fec_reserved6[15];
40 u32 fec_x_cntrl;
41 u32 fec_reserved7[7];
42 u32 fec_addr_low;
43 u32 fec_addr_high;
44 u32 fec_opd;
45 u32 fec_reserved8[10];
46 u32 fec_hash_table_high;
47 u32 fec_hash_table_low;
48 u32 fec_grp_hash_table_high;
49 u32 fec_grp_hash_table_low;
50 u32 fec_reserved9[7];
51 u32 fec_x_wmrk;
52 u32 fec_reserved10;
53 u32 fec_r_bound;
54 u32 fec_r_fstart;
55 u32 fec_reserved11[11];
56 u32 fec_r_des_start;
57 u32 fec_x_des_start;
58 u32 fec_r_buff_size;
59 u32 fec_reserved12[26];
60 u32 fec_dma_control;
61};
62#endif
63
64struct fec_info {
65 struct fec __iomem *fecp;
66 u32 mii_speed;
67};
68#endif
69
70#ifdef CONFIG_CPM2
71#include <asm/cpm2.h>
72#endif
73
74
75struct fs_ops {
76 int (*setup_data)(struct net_device *dev);
77 int (*allocate_bd)(struct net_device *dev);
78 void (*free_bd)(struct net_device *dev);
79 void (*cleanup_data)(struct net_device *dev);
80 void (*set_multicast_list)(struct net_device *dev);
81 void (*adjust_link)(struct net_device *dev);
82 void (*restart)(struct net_device *dev);
83 void (*stop)(struct net_device *dev);
84 void (*napi_clear_rx_event)(struct net_device *dev);
85 void (*napi_enable_rx)(struct net_device *dev);
86 void (*napi_disable_rx)(struct net_device *dev);
87 void (*rx_bd_done)(struct net_device *dev);
88 void (*tx_kickstart)(struct net_device *dev);
89 u32 (*get_int_events)(struct net_device *dev);
90 void (*clear_int_events)(struct net_device *dev, u32 int_events);
91 void (*ev_error)(struct net_device *dev, u32 int_events);
92 int (*get_regs)(struct net_device *dev, void *p, int *sizep);
93 int (*get_regs_len)(struct net_device *dev);
94 void (*tx_restart)(struct net_device *dev);
95};
96
97struct phy_info {
98 unsigned int id;
99 const char *name;
100 void (*startup) (struct net_device * dev);
101 void (*shutdown) (struct net_device * dev);
102 void (*ack_int) (struct net_device * dev);
103};
104
105
106
107#define MAX_MTU 1508
108#define MIN_MTU 46
109#define CRC_LEN 4
110
111#define PKT_MAXBUF_SIZE (MAX_MTU+ETH_HLEN+CRC_LEN)
112#define PKT_MINBUF_SIZE (MIN_MTU+ETH_HLEN+CRC_LEN)
113
114
115#define PKT_MAXBLR_SIZE ((PKT_MAXBUF_SIZE + 31) & ~31)
116
117#define ENET_RX_ALIGN 16
118#define ENET_RX_FRSIZE L1_CACHE_ALIGN(PKT_MAXBUF_SIZE + ENET_RX_ALIGN - 1)
119
120struct fs_enet_private {
121 struct napi_struct napi;
122 struct device *dev;
123 struct net_device *ndev;
124 spinlock_t lock;
125 spinlock_t tx_lock;
126 struct fs_platform_info *fpi;
127 const struct fs_ops *ops;
128 int rx_ring, tx_ring;
129 dma_addr_t ring_mem_addr;
130 void __iomem *ring_base;
131 struct sk_buff **rx_skbuff;
132 struct sk_buff **tx_skbuff;
133 cbd_t __iomem *rx_bd_base;
134 cbd_t __iomem *tx_bd_base;
135 cbd_t __iomem *dirty_tx;
136 cbd_t __iomem *cur_rx;
137 cbd_t __iomem *cur_tx;
138 int tx_free;
139 struct net_device_stats stats;
140 struct timer_list phy_timer_list;
141 const struct phy_info *phy;
142 u32 msg_enable;
143 struct mii_if_info mii_if;
144 unsigned int last_mii_status;
145 int interrupt;
146
147 struct phy_device *phydev;
148 int oldduplex, oldspeed, oldlink;
149
150
151 u32 ev_napi_rx;
152 u32 ev_rx;
153 u32 ev_tx;
154 u32 ev_err;
155
156 u16 bd_rx_empty;
157 u16 bd_rx_err;
158
159 union {
160 struct {
161 int idx;
162 void __iomem *fecp;
163 u32 hthi, htlo;
164 } fec;
165
166 struct {
167 int idx;
168 void __iomem *fccp;
169 void __iomem *ep;
170 void __iomem *fcccp;
171 void __iomem *mem;
172 u32 gaddrh, gaddrl;
173 } fcc;
174
175 struct {
176 int idx;
177 void __iomem *sccp;
178 void __iomem *ep;
179 u32 hthi, htlo;
180 } scc;
181
182 };
183};
184
185
186
187void fs_init_bds(struct net_device *dev);
188void fs_cleanup_bds(struct net_device *dev);
189
190
191
192#define DRV_MODULE_NAME "fs_enet"
193#define PFX DRV_MODULE_NAME ": "
194#define DRV_MODULE_VERSION "1.0"
195#define DRV_MODULE_RELDATE "Aug 8, 2005"
196
197
198
199int fs_enet_platform_init(void);
200void fs_enet_platform_cleanup(void);
201
202
203
204
205
206#if defined(CONFIG_CPM1)
207
208#define __cbd_out32(addr, x) __raw_writel(x, addr)
209#define __cbd_out16(addr, x) __raw_writew(x, addr)
210#define __cbd_in32(addr) __raw_readl(addr)
211#define __cbd_in16(addr) __raw_readw(addr)
212#else
213
214#define __cbd_out32(addr, x) out_be32(addr, x)
215#define __cbd_out16(addr, x) out_be16(addr, x)
216#define __cbd_in32(addr) in_be32(addr)
217#define __cbd_in16(addr) in_be16(addr)
218#endif
219
220
221#define CBDW_SC(_cbd, _sc) __cbd_out16(&(_cbd)->cbd_sc, (_sc))
222#define CBDW_DATLEN(_cbd, _datlen) __cbd_out16(&(_cbd)->cbd_datlen, (_datlen))
223#define CBDW_BUFADDR(_cbd, _bufaddr) __cbd_out32(&(_cbd)->cbd_bufaddr, (_bufaddr))
224
225
226#define CBDR_SC(_cbd) __cbd_in16(&(_cbd)->cbd_sc)
227#define CBDR_DATLEN(_cbd) __cbd_in16(&(_cbd)->cbd_datlen)
228#define CBDR_BUFADDR(_cbd) __cbd_in32(&(_cbd)->cbd_bufaddr)
229
230
231#define CBDS_SC(_cbd, _sc) CBDW_SC(_cbd, CBDR_SC(_cbd) | (_sc))
232
233
234#define CBDC_SC(_cbd, _sc) CBDW_SC(_cbd, CBDR_SC(_cbd) & ~(_sc))
235
236
237
238extern const struct fs_ops fs_fec_ops;
239extern const struct fs_ops fs_fcc_ops;
240extern const struct fs_ops fs_scc_ops;
241
242
243
244#endif
245