pcmciavar.h revision 1.21 1 /* $NetBSD: pcmciavar.h,v 1.21 2004/08/08 23:17:13 mycroft Exp $ */
2
3 /*
4 * Copyright (c) 1997 Marc Horowitz. All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * 3. All advertising materials mentioning features or use of this software
15 * must display the following acknowledgement:
16 * This product includes software developed by Marc Horowitz.
17 * 4. The name of the author may not be used to endorse or promote products
18 * derived from this software without specific prior written permission.
19 *
20 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
21 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
22 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
23 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
24 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
25 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
26 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
27 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
28 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
29 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30 */
31
32 #include <sys/types.h>
33 #include <sys/queue.h>
34
35 #include <dev/pcmcia/pcmciachip.h>
36
37 extern int pcmcia_verbose;
38
39 /*
40 * Contains information about mapped/allocated i/o spaces.
41 */
42 struct pcmcia_io_handle {
43 bus_space_tag_t iot; /* bus space tag (from chipset) */
44 bus_space_handle_t ioh; /* mapped space handle */
45 bus_addr_t addr; /* resulting address in bus space */
46 bus_size_t size; /* size of i/o space */
47 int flags; /* misc. information */
48 };
49
50 #define PCMCIA_IO_ALLOCATED 0x01 /* i/o space was allocated */
51
52 /*
53 * Contains information about allocated memory space.
54 */
55 struct pcmcia_mem_handle {
56 bus_space_tag_t memt; /* bus space tag (from chipset) */
57 bus_space_handle_t memh; /* mapped space handle */
58 bus_addr_t addr; /* resulting address in bus space */
59 bus_size_t size; /* size of mem space */
60 pcmcia_mem_handle_t mhandle; /* opaque memory handle */
61 bus_size_t realsize; /* how much we really allocated */
62 };
63
64 /* pcmcia itself */
65
66 #define PCMCIA_CFE_MWAIT_REQUIRED 0x0001
67 #define PCMCIA_CFE_RDYBSY_ACTIVE 0x0002
68 #define PCMCIA_CFE_WP_ACTIVE 0x0004
69 #define PCMCIA_CFE_BVD_ACTIVE 0x0008
70 #define PCMCIA_CFE_IO8 0x0010
71 #define PCMCIA_CFE_IO16 0x0020
72 #define PCMCIA_CFE_IRQSHARE 0x0040
73 #define PCMCIA_CFE_IRQPULSE 0x0080
74 #define PCMCIA_CFE_IRQLEVEL 0x0100
75 #define PCMCIA_CFE_POWERDOWN 0x0200
76 #define PCMCIA_CFE_READONLY 0x0400
77 #define PCMCIA_CFE_AUDIO 0x0800
78
79 struct pcmcia_config_entry {
80 int number;
81 u_int32_t flags;
82 int iftype;
83 int num_iospace;
84
85 /*
86 * The card will only decode this mask in any case, so we can
87 * do dynamic allocation with this in mind, in case the suggestions
88 * below are no good.
89 */
90 u_long iomask;
91 struct {
92 u_long length;
93 u_long start;
94 } iospace[4]; /* XXX this could be as high as 16 */
95 u_int16_t irqmask;
96 int num_memspace;
97 struct {
98 u_long length;
99 u_long cardaddr;
100 u_long hostaddr;
101 } memspace[2]; /* XXX this could be as high as 8 */
102 int maxtwins;
103 SIMPLEQ_ENTRY(pcmcia_config_entry) cfe_list;
104 };
105
106
107 struct pcmcia_funce_disk {
108 int pfd_interface;
109 };
110
111 struct pcmcia_funce_lan {
112 int pfl_nidlen;
113 u_int8_t pfl_nid[8];
114 };
115
116 union pcmcia_funce {
117 struct pcmcia_funce_disk pfv_disk;
118 struct pcmcia_funce_lan pfv_lan;
119 };
120
121
122 struct pcmcia_function {
123 /* read off the card */
124 int number;
125 int function;
126 int last_config_index;
127 u_long ccr_base;
128 u_long ccr_mask;
129 SIMPLEQ_HEAD(, pcmcia_config_entry) cfe_head;
130 SIMPLEQ_ENTRY(pcmcia_function) pf_list;
131 /* run-time state */
132 struct pcmcia_softc *sc;
133 struct device *child;
134 struct pcmcia_config_entry *cfe;
135 struct pcmcia_mem_handle pf_pcmh;
136 #define pf_ccrt pf_pcmh.memt
137 #define pf_ccrh pf_pcmh.memh
138 #define pf_ccr_mhandle pf_pcmh.mhandle
139 #define pf_ccr_realsize pf_pcmh.realsize
140 bus_size_t pf_ccr_offset;
141 int pf_ccr_window;
142 bus_addr_t pf_mfc_iobase[2];
143 bus_size_t pf_mfc_iomask;
144 int pf_mfc_windows;
145 int (*ih_fct) __P((void *));
146 void *ih_arg;
147 int ih_ipl;
148 int pf_flags;
149
150 union pcmcia_funce pf_funce; /* CISTPL_FUNCE */
151 #define pf_funce_disk_interface pf_funce.pfv_disk.pfd_interface
152 #define pf_funce_lan_nid pf_funce.pfv_lan.pfl_nid
153 #define pf_funce_lan_nidlen pf_funce.pfv_lan.pfl_nidlen
154 };
155
156 /* pf_flags */
157 #define PFF_ENABLED 0x0001 /* function is enabled */
158
159 SIMPLEQ_HEAD(pcmcia_function_head, pcmcia_function);
160
161 struct pcmcia_card {
162 int cis1_major;
163 int cis1_minor;
164 /* XXX waste of space? */
165 char cis1_info_buf[256];
166 char *cis1_info[4];
167 /*
168 * Use int32_t for manufacturer and product so that they can
169 * hold the id value found in card CIS and special value that
170 * indicates no id was found.
171 */
172 int32_t manufacturer;
173 #define PCMCIA_VENDOR_INVALID -1
174 int32_t product;
175 #define PCMCIA_PRODUCT_INVALID -1
176 u_int16_t error;
177 #define PCMCIA_CIS_INVALID { NULL, NULL, NULL, NULL }
178 struct pcmcia_function_head pf_head;
179 };
180
181 struct pcmcia_softc {
182 struct device dev;
183
184 /* this stuff is for the socket */
185 pcmcia_chipset_tag_t pct;
186 pcmcia_chipset_handle_t pch;
187
188 /* this stuff is for the card */
189 struct pcmcia_card card;
190 void *ih;
191 int sc_enabled_count; /* how many functions are
192 enabled */
193
194 /*
195 * These are passed down from the PCMCIA chip, and exist only
196 * so that cards with Very Special address allocation needs
197 * know what range they should be dealing with.
198 */
199 bus_addr_t iobase; /* start i/o space allocation here */
200 bus_size_t iosize; /* size of the i/o space range */
201 };
202
203 struct pcmcia_cis_quirk {
204 int32_t manufacturer;
205 int32_t product;
206 const char *cis1_info[4];
207 const struct pcmcia_function *pf;
208 const struct pcmcia_config_entry *cfe;
209 };
210
211 struct pcmcia_attach_args {
212 int32_t manufacturer;
213 int32_t product;
214 struct pcmcia_card *card;
215 struct pcmcia_function *pf;
216 };
217
218 struct pcmcia_tuple {
219 unsigned int code;
220 unsigned int length;
221 u_long mult;
222 bus_size_t ptr;
223 bus_space_tag_t memt;
224 bus_space_handle_t memh;
225 };
226
227 struct pcmcia_product {
228 const char *pp_name; /* NULL if end of table */
229 u_int32_t pp_vendor;
230 u_int32_t pp_product;
231 int pp_expfunc;
232 };
233
234 typedef int (*pcmcia_product_match_fn) __P((struct pcmcia_attach_args *,
235 const struct pcmcia_product *, int));
236
237 const struct pcmcia_product
238 *pcmcia_product_lookup __P((struct pcmcia_attach_args *,
239 const struct pcmcia_product *, size_t, pcmcia_product_match_fn));
240
241 void pcmcia_devinfo __P((struct pcmcia_card *, int, char *, size_t));
242
243 void pcmcia_read_cis __P((struct pcmcia_softc *));
244 void pcmcia_check_cis_quirks __P((struct pcmcia_softc *));
245 void pcmcia_print_cis __P((struct pcmcia_softc *));
246 int pcmcia_scan_cis __P((struct device *,
247 int (*) (struct pcmcia_tuple *, void *), void *));
248
249 #define pcmcia_cis_read_1(tuple, idx0) \
250 (bus_space_read_1((tuple)->memt, (tuple)->memh, (tuple)->mult*(idx0)))
251
252 #define pcmcia_tuple_read_1(tuple, idx1) \
253 (pcmcia_cis_read_1((tuple), ((tuple)->ptr+(2+(idx1)))))
254
255 #define pcmcia_tuple_read_2(tuple, idx2) \
256 (pcmcia_tuple_read_1((tuple), (idx2)) | \
257 (pcmcia_tuple_read_1((tuple), (idx2)+1)<<8))
258
259 #define pcmcia_tuple_read_3(tuple, idx3) \
260 (pcmcia_tuple_read_1((tuple), (idx3)) | \
261 (pcmcia_tuple_read_1((tuple), (idx3)+1)<<8) | \
262 (pcmcia_tuple_read_1((tuple), (idx3)+2)<<16))
263
264 #define pcmcia_tuple_read_4(tuple, idx4) \
265 (pcmcia_tuple_read_1((tuple), (idx4)) | \
266 (pcmcia_tuple_read_1((tuple), (idx4)+1)<<8) | \
267 (pcmcia_tuple_read_1((tuple), (idx4)+2)<<16) | \
268 (pcmcia_tuple_read_1((tuple), (idx4)+3)<<24))
269
270 #define pcmcia_tuple_read_n(tuple, n, idxn) \
271 (((n)==1)?pcmcia_tuple_read_1((tuple), (idxn)) : \
272 (((n)==2)?pcmcia_tuple_read_2((tuple), (idxn)) : \
273 (((n)==3)?pcmcia_tuple_read_3((tuple), (idxn)) : \
274 /* n == 4 */ pcmcia_tuple_read_4((tuple), (idxn)))))
275
276 #define PCMCIA_SPACE_MEMORY 1
277 #define PCMCIA_SPACE_IO 2
278
279 int pcmcia_ccr_read __P((struct pcmcia_function *, int));
280 void pcmcia_ccr_write __P((struct pcmcia_function *, int, int));
281
282 #define pcmcia_mfc(sc) (! SIMPLEQ_EMPTY(&(sc)->card.pf_head) && \
283 SIMPLEQ_NEXT(SIMPLEQ_FIRST(&(sc)->card.pf_head), pf_list))
284
285 void pcmcia_socket_enable __P((struct device *));
286 void pcmcia_socket_disable __P((struct device *));
287
288 void pcmcia_function_init __P((struct pcmcia_function *,
289 struct pcmcia_config_entry *));
290 int pcmcia_function_enable __P((struct pcmcia_function *));
291 void pcmcia_function_disable __P((struct pcmcia_function *));
292
293 #define pcmcia_io_alloc(pf, start, size, align, pciop) \
294 (pcmcia_chip_io_alloc((pf)->sc->pct, pf->sc->pch, (start), \
295 (size), (align), (pciop)))
296
297 #define pcmcia_io_free(pf, pciohp) \
298 (pcmcia_chip_io_free((pf)->sc->pct, (pf)->sc->pch, (pciohp)))
299
300 int pcmcia_io_map __P((struct pcmcia_function *, int,
301 struct pcmcia_io_handle *, int *));
302 void pcmcia_io_unmap __P((struct pcmcia_function *, int));
303
304 void pcmcia_free_pf __P((struct pcmcia_function_head *));
305
306 #define pcmcia_mem_alloc(pf, size, pcmhp) \
307 (pcmcia_chip_mem_alloc((pf)->sc->pct, (pf)->sc->pch, (size), (pcmhp)))
308
309 #define pcmcia_mem_free(pf, pcmhp) \
310 (pcmcia_chip_mem_free((pf)->sc->pct, (pf)->sc->pch, (pcmhp)))
311
312 #define pcmcia_mem_map(pf, kind, card_addr, size, pcmhp, offsetp, windowp) \
313 (pcmcia_chip_mem_map((pf)->sc->pct, (pf)->sc->pch, (kind), \
314 (card_addr), (size), (pcmhp), (offsetp), (windowp)))
315
316 #define pcmcia_mem_unmap(pf, window) \
317 (pcmcia_chip_mem_unmap((pf)->sc->pct, (pf)->sc->pch, (window)))
318
319 void *pcmcia_intr_establish __P((struct pcmcia_function *, int,
320 int (*) (void *), void *));
321 void pcmcia_intr_disestablish __P((struct pcmcia_function *, void *));
322