pccbb.c revision 1.156 1 1.156 jmcneill /* $NetBSD: pccbb.c,v 1.156 2007/12/09 20:28:11 jmcneill Exp $ */
2 1.2 haya
3 1.1 haya /*
4 1.21 haya * Copyright (c) 1998, 1999 and 2000
5 1.21 haya * HAYAKAWA Koichi. All rights reserved.
6 1.1 haya *
7 1.1 haya * Redistribution and use in source and binary forms, with or without
8 1.1 haya * modification, are permitted provided that the following conditions
9 1.1 haya * are met:
10 1.1 haya * 1. Redistributions of source code must retain the above copyright
11 1.1 haya * notice, this list of conditions and the following disclaimer.
12 1.1 haya * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 haya * notice, this list of conditions and the following disclaimer in the
14 1.1 haya * documentation and/or other materials provided with the distribution.
15 1.1 haya * 3. All advertising materials mentioning features or use of this software
16 1.1 haya * must display the following acknowledgement:
17 1.1 haya * This product includes software developed by HAYAKAWA Koichi.
18 1.1 haya * 4. The name of the author may not be used to endorse or promote products
19 1.1 haya * derived from this software without specific prior written permission.
20 1.1 haya *
21 1.1 haya * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 haya * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 haya * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 haya * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 haya * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 haya * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 haya * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 haya * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 haya * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 haya * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 haya */
32 1.71 lukem
33 1.71 lukem #include <sys/cdefs.h>
34 1.156 jmcneill __KERNEL_RCSID(0, "$NetBSD: pccbb.c,v 1.156 2007/12/09 20:28:11 jmcneill Exp $");
35 1.1 haya
36 1.1 haya /*
37 1.1 haya #define CBB_DEBUG
38 1.1 haya #define SHOW_REGS
39 1.1 haya */
40 1.1 haya
41 1.1 haya /*
42 1.132 christos * BROKEN!
43 1.132 christos #define PCCBB_PCMCIA_POLL
44 1.1 haya #define CB_PCMCIA_POLL
45 1.1 haya #define CB_PCMCIA_POLL_ONLY
46 1.1 haya #define LEVEL2
47 1.1 haya */
48 1.1 haya
49 1.1 haya #include <sys/param.h>
50 1.1 haya #include <sys/systm.h>
51 1.1 haya #include <sys/kernel.h>
52 1.1 haya #include <sys/errno.h>
53 1.1 haya #include <sys/ioctl.h>
54 1.54 augustss #include <sys/reboot.h> /* for bootverbose */
55 1.1 haya #include <sys/syslog.h>
56 1.1 haya #include <sys/device.h>
57 1.1 haya #include <sys/malloc.h>
58 1.55 haya #include <sys/proc.h>
59 1.1 haya
60 1.148 ad #include <sys/intr.h>
61 1.148 ad #include <sys/bus.h>
62 1.1 haya
63 1.1 haya #include <dev/pci/pcivar.h>
64 1.1 haya #include <dev/pci/pcireg.h>
65 1.1 haya #include <dev/pci/pcidevs.h>
66 1.1 haya
67 1.1 haya #include <dev/pci/pccbbreg.h>
68 1.1 haya
69 1.1 haya #include <dev/cardbus/cardslotvar.h>
70 1.1 haya
71 1.1 haya #include <dev/cardbus/cardbusvar.h>
72 1.1 haya
73 1.1 haya #include <dev/pcmcia/pcmciareg.h>
74 1.1 haya #include <dev/pcmcia/pcmciavar.h>
75 1.1 haya
76 1.1 haya #include <dev/ic/i82365reg.h>
77 1.1 haya #include <dev/ic/i82365var.h>
78 1.1 haya #include <dev/pci/pccbbvar.h>
79 1.1 haya
80 1.1 haya #include "locators.h"
81 1.1 haya
82 1.1 haya #ifndef __NetBSD_Version__
83 1.1 haya struct cfdriver cbb_cd = {
84 1.22 chopps NULL, "cbb", DV_DULL
85 1.1 haya };
86 1.1 haya #endif
87 1.1 haya
88 1.73 christos #ifdef CBB_DEBUG
89 1.1 haya #define DPRINTF(x) printf x
90 1.1 haya #define STATIC
91 1.1 haya #else
92 1.1 haya #define DPRINTF(x)
93 1.1 haya #define STATIC static
94 1.1 haya #endif
95 1.1 haya
96 1.151 dyoung int pccbb_burstup = 1;
97 1.151 dyoung
98 1.55 haya /*
99 1.142 dyoung * delay_ms() is wait in milliseconds. It should be used instead
100 1.140 dyoung * of delay() if you want to wait more than 1 ms.
101 1.55 haya */
102 1.142 dyoung static inline void
103 1.142 dyoung delay_ms(int millis, void *param)
104 1.142 dyoung {
105 1.142 dyoung if (cold)
106 1.142 dyoung delay(millis * 1000);
107 1.142 dyoung else
108 1.142 dyoung tsleep(param, PWAIT, "pccbb", MAX(2, hz * millis / 1000));
109 1.142 dyoung }
110 1.55 haya
111 1.116 perry int pcicbbmatch(struct device *, struct cfdata *, void *);
112 1.116 perry void pccbbattach(struct device *, struct device *, void *);
113 1.116 perry int pccbbintr(void *);
114 1.116 perry static void pci113x_insert(void *);
115 1.116 perry static int pccbbintr_function(struct pccbb_softc *);
116 1.1 haya
117 1.116 perry static int pccbb_detect_card(struct pccbb_softc *);
118 1.1 haya
119 1.116 perry static void pccbb_pcmcia_write(struct pcic_handle *, int, u_int8_t);
120 1.116 perry static u_int8_t pccbb_pcmcia_read(struct pcic_handle *, int);
121 1.1 haya #define Pcic_read(ph, reg) ((ph)->ph_read((ph), (reg)))
122 1.1 haya #define Pcic_write(ph, reg, val) ((ph)->ph_write((ph), (reg), (val)))
123 1.1 haya
124 1.116 perry STATIC int cb_reset(struct pccbb_softc *);
125 1.116 perry STATIC int cb_detect_voltage(struct pccbb_softc *);
126 1.116 perry STATIC int cbbprint(void *, const char *);
127 1.116 perry
128 1.116 perry static int cb_chipset(u_int32_t, int *);
129 1.116 perry STATIC void pccbb_pcmcia_attach_setup(struct pccbb_softc *,
130 1.116 perry struct pcmciabus_attach_args *);
131 1.1 haya #if 0
132 1.116 perry STATIC void pccbb_pcmcia_attach_card(struct pcic_handle *);
133 1.116 perry STATIC void pccbb_pcmcia_detach_card(struct pcic_handle *, int);
134 1.116 perry STATIC void pccbb_pcmcia_deactivate_card(struct pcic_handle *);
135 1.1 haya #endif
136 1.1 haya
137 1.116 perry STATIC int pccbb_ctrl(cardbus_chipset_tag_t, int);
138 1.116 perry STATIC int pccbb_power(cardbus_chipset_tag_t, int);
139 1.116 perry STATIC int pccbb_cardenable(struct pccbb_softc * sc, int function);
140 1.1 haya #if !rbus
141 1.116 perry static int pccbb_io_open(cardbus_chipset_tag_t, int, u_int32_t, u_int32_t);
142 1.116 perry static int pccbb_io_close(cardbus_chipset_tag_t, int);
143 1.116 perry static int pccbb_mem_open(cardbus_chipset_tag_t, int, u_int32_t, u_int32_t);
144 1.116 perry static int pccbb_mem_close(cardbus_chipset_tag_t, int);
145 1.1 haya #endif /* !rbus */
146 1.116 perry static void *pccbb_intr_establish(struct pccbb_softc *, int irq,
147 1.116 perry int level, int (*ih) (void *), void *sc);
148 1.116 perry static void pccbb_intr_disestablish(struct pccbb_softc *, void *ih);
149 1.116 perry
150 1.116 perry static void *pccbb_cb_intr_establish(cardbus_chipset_tag_t, int irq,
151 1.116 perry int level, int (*ih) (void *), void *sc);
152 1.116 perry static void pccbb_cb_intr_disestablish(cardbus_chipset_tag_t ct, void *ih);
153 1.116 perry
154 1.125 drochner static cardbustag_t pccbb_make_tag(cardbus_chipset_tag_t, int, int);
155 1.116 perry static void pccbb_free_tag(cardbus_chipset_tag_t, cardbustag_t);
156 1.116 perry static cardbusreg_t pccbb_conf_read(cardbus_chipset_tag_t, cardbustag_t, int);
157 1.116 perry static void pccbb_conf_write(cardbus_chipset_tag_t, cardbustag_t, int,
158 1.116 perry cardbusreg_t);
159 1.116 perry static void pccbb_chipinit(struct pccbb_softc *);
160 1.116 perry
161 1.116 perry STATIC int pccbb_pcmcia_mem_alloc(pcmcia_chipset_handle_t, bus_size_t,
162 1.116 perry struct pcmcia_mem_handle *);
163 1.116 perry STATIC void pccbb_pcmcia_mem_free(pcmcia_chipset_handle_t,
164 1.116 perry struct pcmcia_mem_handle *);
165 1.116 perry STATIC int pccbb_pcmcia_mem_map(pcmcia_chipset_handle_t, int, bus_addr_t,
166 1.116 perry bus_size_t, struct pcmcia_mem_handle *, bus_addr_t *, int *);
167 1.116 perry STATIC void pccbb_pcmcia_mem_unmap(pcmcia_chipset_handle_t, int);
168 1.116 perry STATIC int pccbb_pcmcia_io_alloc(pcmcia_chipset_handle_t, bus_addr_t,
169 1.116 perry bus_size_t, bus_size_t, struct pcmcia_io_handle *);
170 1.116 perry STATIC void pccbb_pcmcia_io_free(pcmcia_chipset_handle_t,
171 1.116 perry struct pcmcia_io_handle *);
172 1.116 perry STATIC int pccbb_pcmcia_io_map(pcmcia_chipset_handle_t, int, bus_addr_t,
173 1.116 perry bus_size_t, struct pcmcia_io_handle *, int *);
174 1.116 perry STATIC void pccbb_pcmcia_io_unmap(pcmcia_chipset_handle_t, int);
175 1.116 perry STATIC void *pccbb_pcmcia_intr_establish(pcmcia_chipset_handle_t,
176 1.116 perry struct pcmcia_function *, int, int (*)(void *), void *);
177 1.116 perry STATIC void pccbb_pcmcia_intr_disestablish(pcmcia_chipset_handle_t, void *);
178 1.116 perry STATIC void pccbb_pcmcia_socket_enable(pcmcia_chipset_handle_t);
179 1.116 perry STATIC void pccbb_pcmcia_socket_disable(pcmcia_chipset_handle_t);
180 1.116 perry STATIC void pccbb_pcmcia_socket_settype(pcmcia_chipset_handle_t, int);
181 1.116 perry STATIC int pccbb_pcmcia_card_detect(pcmcia_chipset_handle_t pch);
182 1.116 perry
183 1.116 perry static int pccbb_pcmcia_wait_ready(struct pcic_handle *);
184 1.116 perry static void pccbb_pcmcia_delay(struct pcic_handle *, int, const char *);
185 1.116 perry
186 1.116 perry static void pccbb_pcmcia_do_io_map(struct pcic_handle *, int);
187 1.116 perry static void pccbb_pcmcia_do_mem_map(struct pcic_handle *, int);
188 1.1 haya
189 1.32 enami /* bus-space allocation and deallocation functions */
190 1.1 haya #if rbus
191 1.1 haya
192 1.116 perry static int pccbb_rbus_cb_space_alloc(cardbus_chipset_tag_t, rbus_tag_t,
193 1.22 chopps bus_addr_t addr, bus_size_t size, bus_addr_t mask, bus_size_t align,
194 1.116 perry int flags, bus_addr_t * addrp, bus_space_handle_t * bshp);
195 1.116 perry static int pccbb_rbus_cb_space_free(cardbus_chipset_tag_t, rbus_tag_t,
196 1.116 perry bus_space_handle_t, bus_size_t);
197 1.1 haya
198 1.1 haya #endif /* rbus */
199 1.1 haya
200 1.1 haya #if rbus
201 1.1 haya
202 1.116 perry static int pccbb_open_win(struct pccbb_softc *, bus_space_tag_t,
203 1.116 perry bus_addr_t, bus_size_t, bus_space_handle_t, int flags);
204 1.116 perry static int pccbb_close_win(struct pccbb_softc *, bus_space_tag_t,
205 1.116 perry bus_space_handle_t, bus_size_t);
206 1.116 perry static int pccbb_winlist_insert(struct pccbb_win_chain_head *, bus_addr_t,
207 1.116 perry bus_size_t, bus_space_handle_t, int);
208 1.116 perry static int pccbb_winlist_delete(struct pccbb_win_chain_head *,
209 1.116 perry bus_space_handle_t, bus_size_t);
210 1.116 perry static void pccbb_winset(bus_addr_t align, struct pccbb_softc *,
211 1.116 perry bus_space_tag_t);
212 1.1 haya void pccbb_winlist_show(struct pccbb_win_chain *);
213 1.1 haya
214 1.1 haya #endif /* rbus */
215 1.1 haya
216 1.1 haya /* for config_defer */
217 1.116 perry static void pccbb_pci_callback(struct device *);
218 1.1 haya
219 1.156 jmcneill static bool pccbb_suspend(device_t);
220 1.156 jmcneill static bool pccbb_resume(device_t);
221 1.156 jmcneill
222 1.1 haya #if defined SHOW_REGS
223 1.116 perry static void cb_show_regs(pci_chipset_tag_t pc, pcitag_t tag,
224 1.116 perry bus_space_tag_t memt, bus_space_handle_t memh);
225 1.1 haya #endif
226 1.1 haya
227 1.79 thorpej CFATTACH_DECL(cbb_pci, sizeof(struct pccbb_softc),
228 1.82 thorpej pcicbbmatch, pccbbattach, NULL, NULL);
229 1.1 haya
230 1.1 haya static struct pcmcia_chip_functions pccbb_pcmcia_funcs = {
231 1.22 chopps pccbb_pcmcia_mem_alloc,
232 1.22 chopps pccbb_pcmcia_mem_free,
233 1.22 chopps pccbb_pcmcia_mem_map,
234 1.22 chopps pccbb_pcmcia_mem_unmap,
235 1.22 chopps pccbb_pcmcia_io_alloc,
236 1.22 chopps pccbb_pcmcia_io_free,
237 1.22 chopps pccbb_pcmcia_io_map,
238 1.22 chopps pccbb_pcmcia_io_unmap,
239 1.22 chopps pccbb_pcmcia_intr_establish,
240 1.22 chopps pccbb_pcmcia_intr_disestablish,
241 1.22 chopps pccbb_pcmcia_socket_enable,
242 1.22 chopps pccbb_pcmcia_socket_disable,
243 1.101 mycroft pccbb_pcmcia_socket_settype,
244 1.22 chopps pccbb_pcmcia_card_detect
245 1.1 haya };
246 1.1 haya
247 1.1 haya #if rbus
248 1.1 haya static struct cardbus_functions pccbb_funcs = {
249 1.22 chopps pccbb_rbus_cb_space_alloc,
250 1.22 chopps pccbb_rbus_cb_space_free,
251 1.26 haya pccbb_cb_intr_establish,
252 1.26 haya pccbb_cb_intr_disestablish,
253 1.22 chopps pccbb_ctrl,
254 1.22 chopps pccbb_power,
255 1.22 chopps pccbb_make_tag,
256 1.22 chopps pccbb_free_tag,
257 1.22 chopps pccbb_conf_read,
258 1.22 chopps pccbb_conf_write,
259 1.1 haya };
260 1.1 haya #else
261 1.1 haya static struct cardbus_functions pccbb_funcs = {
262 1.22 chopps pccbb_ctrl,
263 1.22 chopps pccbb_power,
264 1.22 chopps pccbb_mem_open,
265 1.22 chopps pccbb_mem_close,
266 1.22 chopps pccbb_io_open,
267 1.22 chopps pccbb_io_close,
268 1.26 haya pccbb_cb_intr_establish,
269 1.26 haya pccbb_cb_intr_disestablish,
270 1.22 chopps pccbb_make_tag,
271 1.22 chopps pccbb_conf_read,
272 1.22 chopps pccbb_conf_write,
273 1.1 haya };
274 1.1 haya #endif
275 1.1 haya
276 1.1 haya int
277 1.143 dyoung pcicbbmatch(struct device *parent, struct cfdata *match, void *aux)
278 1.1 haya {
279 1.22 chopps struct pci_attach_args *pa = (struct pci_attach_args *)aux;
280 1.1 haya
281 1.22 chopps if (PCI_CLASS(pa->pa_class) == PCI_CLASS_BRIDGE &&
282 1.22 chopps PCI_SUBCLASS(pa->pa_class) == PCI_SUBCLASS_BRIDGE_CARDBUS &&
283 1.22 chopps PCI_INTERFACE(pa->pa_class) == 0) {
284 1.22 chopps return 1;
285 1.22 chopps }
286 1.1 haya
287 1.22 chopps return 0;
288 1.1 haya }
289 1.1 haya
290 1.1 haya #define MAKEID(vendor, prod) (((vendor) << PCI_VENDOR_SHIFT) \
291 1.1 haya | ((prod) << PCI_PRODUCT_SHIFT))
292 1.1 haya
293 1.60 jdolecek const struct yenta_chipinfo {
294 1.22 chopps pcireg_t yc_id; /* vendor tag | product tag */
295 1.22 chopps int yc_chiptype;
296 1.22 chopps int yc_flags;
297 1.1 haya } yc_chipsets[] = {
298 1.22 chopps /* Texas Instruments chips */
299 1.22 chopps { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1130), CB_TI113X,
300 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
301 1.22 chopps { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1131), CB_TI113X,
302 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
303 1.96 nakayama { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1250), CB_TI125X,
304 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
305 1.22 chopps { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1220), CB_TI12XX,
306 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
307 1.22 chopps { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1221), CB_TI12XX,
308 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
309 1.22 chopps { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1225), CB_TI12XX,
310 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
311 1.96 nakayama { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1251), CB_TI125X,
312 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
313 1.96 nakayama { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1251B), CB_TI125X,
314 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
315 1.22 chopps { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1211), CB_TI12XX,
316 1.64 soren PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
317 1.64 soren { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1410), CB_TI12XX,
318 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
319 1.151 dyoung { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1420), CB_TI1420,
320 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
321 1.96 nakayama { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1450), CB_TI125X,
322 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
323 1.22 chopps { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1451), CB_TI12XX,
324 1.84 martin PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
325 1.99 he { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI1520), CB_TI12XX,
326 1.99 he PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
327 1.84 martin { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI4410YENTA), CB_TI12XX,
328 1.22 chopps PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
329 1.99 he { MAKEID(PCI_VENDOR_TI, PCI_PRODUCT_TI_PCI4520YENTA), CB_TI12XX,
330 1.99 he PCCBB_PCMCIA_IO_RELOC | PCCBB_PCMCIA_MEM_32},
331 1.22 chopps
332 1.22 chopps /* Ricoh chips */
333 1.22 chopps { MAKEID(PCI_VENDOR_RICOH, PCI_PRODUCT_RICOH_Rx5C475), CB_RX5C47X,
334 1.22 chopps PCCBB_PCMCIA_MEM_32},
335 1.22 chopps { MAKEID(PCI_VENDOR_RICOH, PCI_PRODUCT_RICOH_RL5C476), CB_RX5C47X,
336 1.22 chopps PCCBB_PCMCIA_MEM_32},
337 1.22 chopps { MAKEID(PCI_VENDOR_RICOH, PCI_PRODUCT_RICOH_Rx5C477), CB_RX5C47X,
338 1.22 chopps PCCBB_PCMCIA_MEM_32},
339 1.22 chopps { MAKEID(PCI_VENDOR_RICOH, PCI_PRODUCT_RICOH_Rx5C478), CB_RX5C47X,
340 1.22 chopps PCCBB_PCMCIA_MEM_32},
341 1.22 chopps { MAKEID(PCI_VENDOR_RICOH, PCI_PRODUCT_RICOH_Rx5C465), CB_RX5C46X,
342 1.22 chopps PCCBB_PCMCIA_MEM_32},
343 1.22 chopps { MAKEID(PCI_VENDOR_RICOH, PCI_PRODUCT_RICOH_Rx5C466), CB_RX5C46X,
344 1.22 chopps PCCBB_PCMCIA_MEM_32},
345 1.22 chopps
346 1.22 chopps /* Toshiba products */
347 1.22 chopps { MAKEID(PCI_VENDOR_TOSHIBA2, PCI_PRODUCT_TOSHIBA2_ToPIC95),
348 1.22 chopps CB_TOPIC95, PCCBB_PCMCIA_MEM_32},
349 1.22 chopps { MAKEID(PCI_VENDOR_TOSHIBA2, PCI_PRODUCT_TOSHIBA2_ToPIC95B),
350 1.22 chopps CB_TOPIC95B, PCCBB_PCMCIA_MEM_32},
351 1.22 chopps { MAKEID(PCI_VENDOR_TOSHIBA2, PCI_PRODUCT_TOSHIBA2_ToPIC97),
352 1.22 chopps CB_TOPIC97, PCCBB_PCMCIA_MEM_32},
353 1.22 chopps { MAKEID(PCI_VENDOR_TOSHIBA2, PCI_PRODUCT_TOSHIBA2_ToPIC100),
354 1.22 chopps CB_TOPIC97, PCCBB_PCMCIA_MEM_32},
355 1.22 chopps
356 1.22 chopps /* Cirrus Logic products */
357 1.22 chopps { MAKEID(PCI_VENDOR_CIRRUS, PCI_PRODUCT_CIRRUS_CL_PD6832),
358 1.22 chopps CB_CIRRUS, PCCBB_PCMCIA_MEM_32},
359 1.22 chopps { MAKEID(PCI_VENDOR_CIRRUS, PCI_PRODUCT_CIRRUS_CL_PD6833),
360 1.22 chopps CB_CIRRUS, PCCBB_PCMCIA_MEM_32},
361 1.1 haya
362 1.22 chopps /* sentinel, or Generic chip */
363 1.22 chopps { 0 /* null id */ , CB_UNKNOWN, PCCBB_PCMCIA_MEM_32},
364 1.1 haya };
365 1.1 haya
366 1.1 haya static int
367 1.143 dyoung cb_chipset(u_int32_t pci_id, int *flagp)
368 1.1 haya {
369 1.60 jdolecek const struct yenta_chipinfo *yc;
370 1.1 haya
371 1.35 enami /* Loop over except the last default entry. */
372 1.35 enami for (yc = yc_chipsets; yc < yc_chipsets +
373 1.35 enami sizeof(yc_chipsets) / sizeof(yc_chipsets[0]) - 1; yc++)
374 1.39 kleink if (pci_id == yc->yc_id)
375 1.35 enami break;
376 1.1 haya
377 1.35 enami if (flagp != NULL)
378 1.35 enami *flagp = yc->yc_flags;
379 1.1 haya
380 1.35 enami return (yc->yc_chiptype);
381 1.1 haya }
382 1.1 haya
383 1.1 haya void
384 1.137 christos pccbbattach(struct device *parent, struct device *self, void *aux)
385 1.22 chopps {
386 1.22 chopps struct pccbb_softc *sc = (void *)self;
387 1.22 chopps struct pci_attach_args *pa = aux;
388 1.22 chopps pci_chipset_tag_t pc = pa->pa_pc;
389 1.43 jhawk pcireg_t busreg, reg, sock_base;
390 1.22 chopps bus_addr_t sockbase;
391 1.22 chopps char devinfo[256];
392 1.22 chopps int flags;
393 1.22 chopps
394 1.88 nakayama #ifdef __HAVE_PCCBB_ATTACH_HOOK
395 1.88 nakayama pccbb_attach_hook(parent, self, pa);
396 1.88 nakayama #endif
397 1.88 nakayama
398 1.149 joerg callout_init(&sc->sc_insert_ch, 0);
399 1.149 joerg callout_setfunc(&sc->sc_insert_ch, pci113x_insert, sc);
400 1.149 joerg
401 1.22 chopps sc->sc_chipset = cb_chipset(pa->pa_id, &flags);
402 1.22 chopps
403 1.155 jmcneill aprint_naive("\n");
404 1.155 jmcneill
405 1.97 itojun pci_devinfo(pa->pa_id, 0, 0, devinfo, sizeof(devinfo));
406 1.155 jmcneill aprint_normal(": %s (rev. 0x%02x)", devinfo,
407 1.155 jmcneill PCI_REVISION(pa->pa_class));
408 1.133 christos DPRINTF((" (chipflags %x)", flags));
409 1.155 jmcneill aprint_normal("\n");
410 1.1 haya
411 1.27 thorpej TAILQ_INIT(&sc->sc_memwindow);
412 1.27 thorpej TAILQ_INIT(&sc->sc_iowindow);
413 1.27 thorpej
414 1.1 haya #if rbus
415 1.22 chopps sc->sc_rbus_iot = rbus_pccbb_parent_io(pa);
416 1.22 chopps sc->sc_rbus_memt = rbus_pccbb_parent_mem(pa);
417 1.65 mcr
418 1.65 mcr #if 0
419 1.65 mcr printf("pa->pa_memt: %08x vs rbus_mem->rb_bt: %08x\n",
420 1.65 mcr pa->pa_memt, sc->sc_rbus_memt->rb_bt);
421 1.65 mcr #endif
422 1.1 haya #endif /* rbus */
423 1.1 haya
424 1.88 nakayama sc->sc_flags &= ~CBB_MEMHMAPPED;
425 1.1 haya
426 1.117 perry /*
427 1.22 chopps * MAP socket registers and ExCA registers on memory-space
428 1.22 chopps * When no valid address is set on socket base registers (on pci
429 1.22 chopps * config space), get it not polite way.
430 1.22 chopps */
431 1.22 chopps sock_base = pci_conf_read(pc, pa->pa_tag, PCI_SOCKBASE);
432 1.22 chopps
433 1.22 chopps if (PCI_MAPREG_MEM_ADDR(sock_base) >= 0x100000 &&
434 1.22 chopps PCI_MAPREG_MEM_ADDR(sock_base) != 0xfffffff0) {
435 1.22 chopps /* The address must be valid. */
436 1.22 chopps if (pci_mapreg_map(pa, PCI_SOCKBASE, PCI_MAPREG_TYPE_MEM, 0,
437 1.22 chopps &sc->sc_base_memt, &sc->sc_base_memh, &sockbase, NULL)) {
438 1.155 jmcneill aprint_error("%s: can't map socket base address 0x%lx\n",
439 1.94 christos sc->sc_dev.dv_xname, (unsigned long)sock_base);
440 1.22 chopps /*
441 1.22 chopps * I think it's funny: socket base registers must be
442 1.22 chopps * mapped on memory space, but ...
443 1.22 chopps */
444 1.22 chopps if (pci_mapreg_map(pa, PCI_SOCKBASE, PCI_MAPREG_TYPE_IO,
445 1.22 chopps 0, &sc->sc_base_memt, &sc->sc_base_memh, &sockbase,
446 1.22 chopps NULL)) {
447 1.155 jmcneill aprint_error("%s: can't map socket base address"
448 1.22 chopps " 0x%lx: io mode\n", sc->sc_dev.dv_xname,
449 1.63 jmc (unsigned long)sockbase);
450 1.22 chopps /* give up... allocate reg space via rbus. */
451 1.22 chopps pci_conf_write(pc, pa->pa_tag, PCI_SOCKBASE, 0);
452 1.88 nakayama } else
453 1.88 nakayama sc->sc_flags |= CBB_MEMHMAPPED;
454 1.22 chopps } else {
455 1.22 chopps DPRINTF(("%s: socket base address 0x%lx\n",
456 1.94 christos sc->sc_dev.dv_xname, (unsigned long)sockbase));
457 1.88 nakayama sc->sc_flags |= CBB_MEMHMAPPED;
458 1.22 chopps }
459 1.22 chopps }
460 1.1 haya
461 1.22 chopps sc->sc_mem_start = 0; /* XXX */
462 1.22 chopps sc->sc_mem_end = 0xffffffff; /* XXX */
463 1.1 haya
464 1.22 chopps busreg = pci_conf_read(pc, pa->pa_tag, PCI_BUSNUM);
465 1.4 haya
466 1.22 chopps /* pccbb_machdep.c end */
467 1.1 haya
468 1.1 haya #if defined CBB_DEBUG
469 1.22 chopps {
470 1.121 sekiya static const char *intrname[] = { "NON", "A", "B", "C", "D" };
471 1.23 cgd printf("%s: intrpin %s, intrtag %d\n", sc->sc_dev.dv_xname,
472 1.23 cgd intrname[pa->pa_intrpin], pa->pa_intrline);
473 1.22 chopps }
474 1.1 haya #endif
475 1.1 haya
476 1.22 chopps /* setup softc */
477 1.22 chopps sc->sc_pc = pc;
478 1.22 chopps sc->sc_iot = pa->pa_iot;
479 1.22 chopps sc->sc_memt = pa->pa_memt;
480 1.22 chopps sc->sc_dmat = pa->pa_dmat;
481 1.22 chopps sc->sc_tag = pa->pa_tag;
482 1.22 chopps sc->sc_function = pa->pa_function;
483 1.22 chopps
484 1.51 sommerfe memcpy(&sc->sc_pa, pa, sizeof(*pa));
485 1.1 haya
486 1.22 chopps sc->sc_pcmcia_flags = flags; /* set PCMCIA facility */
487 1.1 haya
488 1.43 jhawk /* Disable legacy register mapping. */
489 1.43 jhawk switch (sc->sc_chipset) {
490 1.43 jhawk case CB_RX5C46X: /* fallthrough */
491 1.43 jhawk #if 0
492 1.44 jhawk /* The RX5C47X-series requires writes to the PCI_LEGACY register. */
493 1.43 jhawk case CB_RX5C47X:
494 1.43 jhawk #endif
495 1.117 perry /*
496 1.44 jhawk * The legacy pcic io-port on Ricoh RX5C46X CardBus bridges
497 1.44 jhawk * cannot be disabled by substituting 0 into PCI_LEGACY
498 1.44 jhawk * register. Ricoh CardBus bridges have special bits on Bridge
499 1.44 jhawk * control reg (addr 0x3e on PCI config space).
500 1.43 jhawk */
501 1.146 dyoung reg = pci_conf_read(pc, pa->pa_tag, PCI_BRIDGE_CONTROL_REG);
502 1.43 jhawk reg &= ~(CB_BCRI_RL_3E0_ENA | CB_BCRI_RL_3E2_ENA);
503 1.146 dyoung pci_conf_write(pc, pa->pa_tag, PCI_BRIDGE_CONTROL_REG, reg);
504 1.43 jhawk break;
505 1.43 jhawk
506 1.43 jhawk default:
507 1.43 jhawk /* XXX I don't know proper way to kill legacy I/O. */
508 1.43 jhawk pci_conf_write(pc, pa->pa_tag, PCI_LEGACY, 0x0);
509 1.43 jhawk break;
510 1.43 jhawk }
511 1.43 jhawk
512 1.156 jmcneill if (!pmf_device_register(self, pccbb_suspend, pccbb_resume))
513 1.156 jmcneill aprint_error_dev(self, "couldn't establish power handler\n");
514 1.156 jmcneill
515 1.22 chopps config_defer(self, pccbb_pci_callback);
516 1.1 haya }
517 1.1 haya
518 1.26 haya
519 1.26 haya
520 1.26 haya
521 1.26 haya /*
522 1.26 haya * static void pccbb_pci_callback(struct device *self)
523 1.26 haya *
524 1.26 haya * The actual attach routine: get memory space for YENTA register
525 1.26 haya * space, setup YENTA register and route interrupt.
526 1.26 haya *
527 1.26 haya * This function should be deferred because this device may obtain
528 1.26 haya * memory space dynamically. This function must avoid obtaining
529 1.43 jhawk * memory area which has already kept for another device.
530 1.26 haya */
531 1.1 haya static void
532 1.143 dyoung pccbb_pci_callback(struct device *self)
533 1.1 haya {
534 1.22 chopps struct pccbb_softc *sc = (void *)self;
535 1.22 chopps pci_chipset_tag_t pc = sc->sc_pc;
536 1.22 chopps pci_intr_handle_t ih;
537 1.22 chopps const char *intrstr = NULL;
538 1.22 chopps bus_addr_t sockbase;
539 1.22 chopps struct cbslot_attach_args cba;
540 1.22 chopps struct pcmciabus_attach_args paa;
541 1.22 chopps struct cardslot_attach_args caa;
542 1.22 chopps struct cardslot_softc *csc;
543 1.1 haya
544 1.88 nakayama if (!(sc->sc_flags & CBB_MEMHMAPPED)) {
545 1.22 chopps /* The socket registers aren't mapped correctly. */
546 1.1 haya #if rbus
547 1.22 chopps if (rbus_space_alloc(sc->sc_rbus_memt, 0, 0x1000, 0x0fff,
548 1.22 chopps (sc->sc_chipset == CB_RX5C47X
549 1.22 chopps || sc->sc_chipset == CB_TI113X) ? 0x10000 : 0x1000,
550 1.22 chopps 0, &sockbase, &sc->sc_base_memh)) {
551 1.22 chopps return;
552 1.22 chopps }
553 1.22 chopps sc->sc_base_memt = sc->sc_memt;
554 1.22 chopps pci_conf_write(pc, sc->sc_tag, PCI_SOCKBASE, sockbase);
555 1.120 sekiya DPRINTF(("%s: CardBus register address 0x%lx -> 0x%lx\n",
556 1.94 christos sc->sc_dev.dv_xname, (unsigned long)sockbase,
557 1.94 christos (unsigned long)pci_conf_read(pc, sc->sc_tag,
558 1.22 chopps PCI_SOCKBASE)));
559 1.1 haya #else
560 1.22 chopps sc->sc_base_memt = sc->sc_memt;
561 1.1 haya #if !defined CBB_PCI_BASE
562 1.1 haya #define CBB_PCI_BASE 0x20000000
563 1.1 haya #endif
564 1.22 chopps if (bus_space_alloc(sc->sc_base_memt, CBB_PCI_BASE, 0xffffffff,
565 1.22 chopps 0x1000, 0x1000, 0, 0, &sockbase, &sc->sc_base_memh)) {
566 1.22 chopps /* cannot allocate memory space */
567 1.22 chopps return;
568 1.22 chopps }
569 1.22 chopps pci_conf_write(pc, sc->sc_tag, PCI_SOCKBASE, sockbase);
570 1.120 sekiya DPRINTF(("%s: CardBus register address 0x%lx -> 0x%lx\n",
571 1.94 christos sc->sc_dev.dv_xname, (unsigned long)sock_base,
572 1.94 christos (unsigned long)pci_conf_read(pc,
573 1.22 chopps sc->sc_tag, PCI_SOCKBASE)));
574 1.1 haya #endif
575 1.88 nakayama sc->sc_flags |= CBB_MEMHMAPPED;
576 1.22 chopps }
577 1.19 haya
578 1.32 enami /* bus bridge initialization */
579 1.22 chopps pccbb_chipinit(sc);
580 1.1 haya
581 1.38 haya /* clear data structure for child device interrupt handlers */
582 1.80 haya LIST_INIT(&sc->sc_pil);
583 1.38 haya sc->sc_pil_intr_enable = 1;
584 1.38 haya
585 1.22 chopps /* Map and establish the interrupt. */
586 1.51 sommerfe if (pci_intr_map(&sc->sc_pa, &ih)) {
587 1.155 jmcneill aprint_error("%s: couldn't map interrupt\n",
588 1.155 jmcneill sc->sc_dev.dv_xname);
589 1.22 chopps return;
590 1.22 chopps }
591 1.22 chopps intrstr = pci_intr_string(pc, ih);
592 1.41 haya
593 1.41 haya /*
594 1.41 haya * XXX pccbbintr should be called under the priority lower
595 1.118 christos * than any other hard interupts.
596 1.41 haya */
597 1.22 chopps sc->sc_ih = pci_intr_establish(pc, ih, IPL_BIO, pccbbintr, sc);
598 1.1 haya
599 1.22 chopps if (sc->sc_ih == NULL) {
600 1.155 jmcneill aprint_error("%s: couldn't establish interrupt",
601 1.155 jmcneill sc->sc_dev.dv_xname);
602 1.22 chopps if (intrstr != NULL) {
603 1.155 jmcneill aprint_normal(" at %s", intrstr);
604 1.22 chopps }
605 1.155 jmcneill aprint_normal("\n");
606 1.22 chopps return;
607 1.22 chopps }
608 1.1 haya
609 1.155 jmcneill aprint_normal("%s: interrupting at %s\n", sc->sc_dev.dv_xname, intrstr);
610 1.1 haya
611 1.22 chopps {
612 1.69 haya u_int32_t sockstat;
613 1.69 haya
614 1.69 haya sockstat = bus_space_read_4(sc->sc_base_memt,
615 1.69 haya sc->sc_base_memh, CB_SOCKET_STAT);
616 1.22 chopps if (0 == (sockstat & CB_SOCKET_STAT_CD)) {
617 1.22 chopps sc->sc_flags |= CBB_CARDEXIST;
618 1.22 chopps }
619 1.22 chopps }
620 1.1 haya
621 1.117 perry /*
622 1.117 perry * attach cardbus
623 1.22 chopps */
624 1.98 mycroft {
625 1.22 chopps pcireg_t busreg = pci_conf_read(pc, sc->sc_tag, PCI_BUSNUM);
626 1.22 chopps pcireg_t bhlc = pci_conf_read(pc, sc->sc_tag, PCI_BHLC_REG);
627 1.22 chopps
628 1.32 enami /* initialize cbslot_attach */
629 1.22 chopps cba.cba_busname = "cardbus";
630 1.22 chopps cba.cba_iot = sc->sc_iot;
631 1.22 chopps cba.cba_memt = sc->sc_memt;
632 1.22 chopps cba.cba_dmat = sc->sc_dmat;
633 1.22 chopps cba.cba_bus = (busreg >> 8) & 0x0ff;
634 1.22 chopps cba.cba_cc = (void *)sc;
635 1.22 chopps cba.cba_cf = &pccbb_funcs;
636 1.51 sommerfe cba.cba_intrline = sc->sc_pa.pa_intrline;
637 1.1 haya
638 1.1 haya #if rbus
639 1.22 chopps cba.cba_rbus_iot = sc->sc_rbus_iot;
640 1.22 chopps cba.cba_rbus_memt = sc->sc_rbus_memt;
641 1.1 haya #endif
642 1.1 haya
643 1.22 chopps cba.cba_cacheline = PCI_CACHELINE(bhlc);
644 1.151 dyoung cba.cba_max_lattimer = PCI_LATTIMER(bhlc);
645 1.1 haya
646 1.52 augustss if (bootverbose) {
647 1.52 augustss printf("%s: cacheline 0x%x lattimer 0x%x\n",
648 1.52 augustss sc->sc_dev.dv_xname, cba.cba_cacheline,
649 1.151 dyoung cba.cba_max_lattimer);
650 1.147 dyoung printf("%s: bhlc 0x%x\n",
651 1.147 dyoung device_xname(&sc->sc_dev), bhlc);
652 1.52 augustss }
653 1.1 haya #if defined SHOW_REGS
654 1.22 chopps cb_show_regs(sc->sc_pc, sc->sc_tag, sc->sc_base_memt,
655 1.22 chopps sc->sc_base_memh);
656 1.1 haya #endif
657 1.22 chopps }
658 1.1 haya
659 1.22 chopps pccbb_pcmcia_attach_setup(sc, &paa);
660 1.22 chopps caa.caa_cb_attach = NULL;
661 1.98 mycroft if (cba.cba_bus == 0)
662 1.124 wiz printf("%s: secondary bus number uninitialized; try PCI_BUS_FIXUP\n", sc->sc_dev.dv_xname);
663 1.98 mycroft else
664 1.22 chopps caa.caa_cb_attach = &cba;
665 1.22 chopps caa.caa_16_attach = &paa;
666 1.22 chopps caa.caa_ph = &sc->sc_pcmcia_h;
667 1.1 haya
668 1.22 chopps if (NULL != (csc = (void *)config_found(self, &caa, cbbprint))) {
669 1.141 dyoung DPRINTF(("%s: found cardslot\n", __func__));
670 1.22 chopps sc->sc_csc = csc;
671 1.22 chopps }
672 1.1 haya
673 1.22 chopps return;
674 1.1 haya }
675 1.1 haya
676 1.26 haya
677 1.26 haya
678 1.26 haya
679 1.26 haya
680 1.26 haya /*
681 1.26 haya * static void pccbb_chipinit(struct pccbb_softc *sc)
682 1.26 haya *
683 1.32 enami * This function initialize YENTA chip registers listed below:
684 1.26 haya * 1) PCI command reg,
685 1.26 haya * 2) PCI and CardBus latency timer,
686 1.43 jhawk * 3) route PCI interrupt,
687 1.43 jhawk * 4) close all memory and io windows.
688 1.69 haya * 5) turn off bus power.
689 1.118 christos * 6) card detect and power cycle interrupts on.
690 1.69 haya * 7) clear interrupt
691 1.26 haya */
692 1.1 haya static void
693 1.143 dyoung pccbb_chipinit(struct pccbb_softc *sc)
694 1.1 haya {
695 1.22 chopps pci_chipset_tag_t pc = sc->sc_pc;
696 1.22 chopps pcitag_t tag = sc->sc_tag;
697 1.69 haya bus_space_tag_t bmt = sc->sc_base_memt;
698 1.69 haya bus_space_handle_t bmh = sc->sc_base_memh;
699 1.151 dyoung pcireg_t bcr, bhlc, cbctl, csr, lscp, mfunc, mrburst, slotctl, sockctl,
700 1.151 dyoung sockmask, sysctrl;
701 1.22 chopps
702 1.117 perry /*
703 1.22 chopps * Set PCI command reg.
704 1.22 chopps * Some laptop's BIOSes (i.e. TICO) do not enable CardBus chip.
705 1.22 chopps */
706 1.146 dyoung csr = pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG);
707 1.30 mycroft /* I believe it is harmless. */
708 1.146 dyoung csr |= (PCI_COMMAND_IO_ENABLE | PCI_COMMAND_MEM_ENABLE |
709 1.30 mycroft PCI_COMMAND_MASTER_ENABLE);
710 1.151 dyoung csr |= (PCI_COMMAND_PARITY_ENABLE|PCI_COMMAND_SERR_ENABLE);
711 1.146 dyoung pci_conf_write(pc, tag, PCI_COMMAND_STATUS_REG, csr);
712 1.1 haya
713 1.117 perry /*
714 1.30 mycroft * Set CardBus latency timer.
715 1.22 chopps */
716 1.146 dyoung lscp = pci_conf_read(pc, tag, PCI_CB_LSCP_REG);
717 1.146 dyoung if (PCI_CB_LATENCY(lscp) < 0x20) {
718 1.146 dyoung lscp &= ~(PCI_CB_LATENCY_MASK << PCI_CB_LATENCY_SHIFT);
719 1.146 dyoung lscp |= (0x20 << PCI_CB_LATENCY_SHIFT);
720 1.146 dyoung pci_conf_write(pc, tag, PCI_CB_LSCP_REG, lscp);
721 1.22 chopps }
722 1.30 mycroft DPRINTF(("CardBus latency timer 0x%x (%x)\n",
723 1.146 dyoung PCI_CB_LATENCY(lscp), pci_conf_read(pc, tag, PCI_CB_LSCP_REG)));
724 1.1 haya
725 1.117 perry /*
726 1.30 mycroft * Set PCI latency timer.
727 1.22 chopps */
728 1.146 dyoung bhlc = pci_conf_read(pc, tag, PCI_BHLC_REG);
729 1.146 dyoung if (PCI_LATTIMER(bhlc) < 0x10) {
730 1.146 dyoung bhlc &= ~(PCI_LATTIMER_MASK << PCI_LATTIMER_SHIFT);
731 1.146 dyoung bhlc |= (0x10 << PCI_LATTIMER_SHIFT);
732 1.146 dyoung pci_conf_write(pc, tag, PCI_BHLC_REG, bhlc);
733 1.22 chopps }
734 1.30 mycroft DPRINTF(("PCI latency timer 0x%x (%x)\n",
735 1.146 dyoung PCI_LATTIMER(bhlc), pci_conf_read(pc, tag, PCI_BHLC_REG)));
736 1.1 haya
737 1.1 haya
738 1.30 mycroft /* Route functional interrupts to PCI. */
739 1.146 dyoung bcr = pci_conf_read(pc, tag, PCI_BRIDGE_CONTROL_REG);
740 1.146 dyoung bcr |= CB_BCR_INTR_IREQ_ENABLE; /* disable PCI Intr */
741 1.146 dyoung bcr |= CB_BCR_WRITE_POST_ENABLE; /* enable write post */
742 1.146 dyoung /* assert reset */
743 1.146 dyoung bcr |= PCI_BRIDGE_CONTROL_SECBR << PCI_BRIDGE_CONTROL_SHIFT;
744 1.151 dyoung /* Set master abort mode to 1, forward SERR# from secondary
745 1.151 dyoung * to primary, and detect parity errors on secondary.
746 1.151 dyoung */
747 1.151 dyoung bcr |= PCI_BRIDGE_CONTROL_MABRT << PCI_BRIDGE_CONTROL_SHIFT;
748 1.151 dyoung bcr |= PCI_BRIDGE_CONTROL_SERR << PCI_BRIDGE_CONTROL_SHIFT;
749 1.151 dyoung bcr |= PCI_BRIDGE_CONTROL_PERE << PCI_BRIDGE_CONTROL_SHIFT;
750 1.146 dyoung pci_conf_write(pc, tag, PCI_BRIDGE_CONTROL_REG, bcr);
751 1.1 haya
752 1.30 mycroft switch (sc->sc_chipset) {
753 1.30 mycroft case CB_TI113X:
754 1.146 dyoung cbctl = pci_conf_read(pc, tag, PCI_CBCTRL);
755 1.30 mycroft /* This bit is shared, but may read as 0 on some chips, so set
756 1.30 mycroft it explicitly on both functions. */
757 1.146 dyoung cbctl |= PCI113X_CBCTRL_PCI_IRQ_ENA;
758 1.22 chopps /* CSC intr enable */
759 1.146 dyoung cbctl |= PCI113X_CBCTRL_PCI_CSC;
760 1.45 haya /* functional intr prohibit | prohibit ISA routing */
761 1.146 dyoung cbctl &= ~(PCI113X_CBCTRL_PCI_INTR | PCI113X_CBCTRL_INT_MASK);
762 1.146 dyoung pci_conf_write(pc, tag, PCI_CBCTRL, cbctl);
763 1.50 mycroft break;
764 1.50 mycroft
765 1.151 dyoung case CB_TI1420:
766 1.151 dyoung sysctrl = pci_conf_read(pc, tag, PCI_SYSCTRL);
767 1.151 dyoung mrburst = pccbb_burstup
768 1.151 dyoung ? PCI1420_SYSCTRL_MRBURST : PCI1420_SYSCTRL_MRBURSTDN;
769 1.151 dyoung if ((sysctrl & PCI1420_SYSCTRL_MRBURST) == mrburst) {
770 1.151 dyoung printf("%s: %swrite bursts enabled\n",
771 1.151 dyoung device_xname(&sc->sc_dev),
772 1.151 dyoung pccbb_burstup ? "read/" : "");
773 1.151 dyoung } else if (pccbb_burstup) {
774 1.151 dyoung printf("%s: enabling read/write bursts\n",
775 1.151 dyoung device_xname(&sc->sc_dev));
776 1.151 dyoung sysctrl |= PCI1420_SYSCTRL_MRBURST;
777 1.151 dyoung pci_conf_write(pc, tag, PCI_SYSCTRL, sysctrl);
778 1.151 dyoung } else {
779 1.151 dyoung printf("%s: disabling read bursts, "
780 1.151 dyoung "enabling write bursts\n",
781 1.151 dyoung device_xname(&sc->sc_dev));
782 1.151 dyoung sysctrl |= PCI1420_SYSCTRL_MRBURSTDN;
783 1.151 dyoung sysctrl &= ~PCI1420_SYSCTRL_MRBURSTUP;
784 1.151 dyoung pci_conf_write(pc, tag, PCI_SYSCTRL, sysctrl);
785 1.151 dyoung }
786 1.151 dyoung /*FALLTHROUGH*/
787 1.50 mycroft case CB_TI12XX:
788 1.96 nakayama /*
789 1.96 nakayama * Some TI 12xx (and [14][45]xx) based pci cards
790 1.96 nakayama * sometimes have issues with the MFUNC register not
791 1.96 nakayama * being initialized due to a bad EEPROM on board.
792 1.96 nakayama * Laptops that this matters on have this register
793 1.96 nakayama * properly initialized.
794 1.96 nakayama *
795 1.96 nakayama * The TI125X parts have a different register.
796 1.96 nakayama */
797 1.146 dyoung mfunc = pci_conf_read(pc, tag, PCI12XX_MFUNC);
798 1.146 dyoung if (mfunc == 0) {
799 1.146 dyoung mfunc &= ~PCI12XX_MFUNC_PIN0;
800 1.146 dyoung mfunc |= PCI12XX_MFUNC_PIN0_INTA;
801 1.96 nakayama if ((pci_conf_read(pc, tag, PCI_SYSCTRL) &
802 1.96 nakayama PCI12XX_SYSCTRL_INTRTIE) == 0) {
803 1.146 dyoung mfunc &= ~PCI12XX_MFUNC_PIN1;
804 1.146 dyoung mfunc |= PCI12XX_MFUNC_PIN1_INTB;
805 1.96 nakayama }
806 1.146 dyoung pci_conf_write(pc, tag, PCI12XX_MFUNC, mfunc);
807 1.96 nakayama }
808 1.96 nakayama /* fallthrough */
809 1.96 nakayama
810 1.96 nakayama case CB_TI125X:
811 1.96 nakayama /*
812 1.96 nakayama * Disable zoom video. Some machines initialize this
813 1.96 nakayama * improperly and experience has shown that this helps
814 1.96 nakayama * prevent strange behavior.
815 1.96 nakayama */
816 1.96 nakayama pci_conf_write(pc, tag, PCI12XX_MMCTRL, 0);
817 1.96 nakayama
818 1.146 dyoung sysctrl = pci_conf_read(pc, tag, PCI_SYSCTRL);
819 1.146 dyoung sysctrl |= PCI12XX_SYSCTRL_VCCPROT;
820 1.146 dyoung pci_conf_write(pc, tag, PCI_SYSCTRL, sysctrl);
821 1.146 dyoung cbctl = pci_conf_read(pc, tag, PCI_CBCTRL);
822 1.146 dyoung cbctl |= PCI12XX_CBCTRL_CSC;
823 1.146 dyoung pci_conf_write(pc, tag, PCI_CBCTRL, cbctl);
824 1.30 mycroft break;
825 1.30 mycroft
826 1.30 mycroft case CB_TOPIC95B:
827 1.146 dyoung sockctl = pci_conf_read(pc, tag, TOPIC_SOCKET_CTRL);
828 1.146 dyoung sockctl |= TOPIC_SOCKET_CTRL_SCR_IRQSEL;
829 1.146 dyoung pci_conf_write(pc, tag, TOPIC_SOCKET_CTRL, sockctl);
830 1.146 dyoung slotctl = pci_conf_read(pc, tag, TOPIC_SLOT_CTRL);
831 1.67 haya DPRINTF(("%s: topic slot ctrl reg 0x%x -> ",
832 1.146 dyoung sc->sc_dev.dv_xname, slotctl));
833 1.146 dyoung slotctl |= (TOPIC_SLOT_CTRL_SLOTON | TOPIC_SLOT_CTRL_SLOTEN |
834 1.67 haya TOPIC_SLOT_CTRL_ID_LOCK | TOPIC_SLOT_CTRL_CARDBUS);
835 1.146 dyoung slotctl &= ~TOPIC_SLOT_CTRL_SWDETECT;
836 1.146 dyoung DPRINTF(("0x%x\n", slotctl));
837 1.146 dyoung pci_conf_write(pc, tag, TOPIC_SLOT_CTRL, slotctl);
838 1.67 haya break;
839 1.22 chopps
840 1.67 haya case CB_TOPIC97:
841 1.146 dyoung slotctl = pci_conf_read(pc, tag, TOPIC_SLOT_CTRL);
842 1.22 chopps DPRINTF(("%s: topic slot ctrl reg 0x%x -> ",
843 1.146 dyoung sc->sc_dev.dv_xname, slotctl));
844 1.146 dyoung slotctl |= (TOPIC_SLOT_CTRL_SLOTON | TOPIC_SLOT_CTRL_SLOTEN |
845 1.30 mycroft TOPIC_SLOT_CTRL_ID_LOCK | TOPIC_SLOT_CTRL_CARDBUS);
846 1.146 dyoung slotctl &= ~TOPIC_SLOT_CTRL_SWDETECT;
847 1.146 dyoung slotctl |= TOPIC97_SLOT_CTRL_PCIINT;
848 1.146 dyoung slotctl &= ~(TOPIC97_SLOT_CTRL_STSIRQP | TOPIC97_SLOT_CTRL_IRQP);
849 1.146 dyoung DPRINTF(("0x%x\n", slotctl));
850 1.146 dyoung pci_conf_write(pc, tag, TOPIC_SLOT_CTRL, slotctl);
851 1.69 haya /* make sure to assert LV card support bits */
852 1.69 haya bus_space_write_1(sc->sc_base_memt, sc->sc_base_memh,
853 1.69 haya 0x800 + 0x3e,
854 1.69 haya bus_space_read_1(sc->sc_base_memt, sc->sc_base_memh,
855 1.69 haya 0x800 + 0x3e) | 0x03);
856 1.30 mycroft break;
857 1.22 chopps }
858 1.1 haya
859 1.30 mycroft /* Close all memory and I/O windows. */
860 1.22 chopps pci_conf_write(pc, tag, PCI_CB_MEMBASE0, 0xffffffff);
861 1.22 chopps pci_conf_write(pc, tag, PCI_CB_MEMLIMIT0, 0);
862 1.22 chopps pci_conf_write(pc, tag, PCI_CB_MEMBASE1, 0xffffffff);
863 1.22 chopps pci_conf_write(pc, tag, PCI_CB_MEMLIMIT1, 0);
864 1.22 chopps pci_conf_write(pc, tag, PCI_CB_IOBASE0, 0xffffffff);
865 1.22 chopps pci_conf_write(pc, tag, PCI_CB_IOLIMIT0, 0);
866 1.22 chopps pci_conf_write(pc, tag, PCI_CB_IOBASE1, 0xffffffff);
867 1.22 chopps pci_conf_write(pc, tag, PCI_CB_IOLIMIT1, 0);
868 1.46 haya
869 1.46 haya /* reset 16-bit pcmcia bus */
870 1.69 haya bus_space_write_1(bmt, bmh, 0x800 + PCIC_INTR,
871 1.69 haya bus_space_read_1(bmt, bmh, 0x800 + PCIC_INTR) & ~PCIC_INTR_RESET);
872 1.46 haya
873 1.69 haya /* turn off power */
874 1.46 haya pccbb_power((cardbus_chipset_tag_t)sc, CARDBUS_VCC_0V | CARDBUS_VPP_0V);
875 1.69 haya
876 1.118 christos /* CSC Interrupt: Card detect and power cycle interrupts on */
877 1.146 dyoung sockmask = bus_space_read_4(bmt, bmh, CB_SOCKET_MASK);
878 1.146 dyoung sockmask |= CB_SOCKET_MASK_CD | CB_SOCKET_MASK_POWER;
879 1.146 dyoung bus_space_write_4(bmt, bmh, CB_SOCKET_MASK, sockmask);
880 1.69 haya /* reset interrupt */
881 1.69 haya bus_space_write_4(bmt, bmh, CB_SOCKET_EVENT,
882 1.69 haya bus_space_read_4(bmt, bmh, CB_SOCKET_EVENT));
883 1.1 haya }
884 1.1 haya
885 1.26 haya
886 1.26 haya
887 1.26 haya
888 1.4 haya /*
889 1.26 haya * STATIC void pccbb_pcmcia_attach_setup(struct pccbb_softc *sc,
890 1.26 haya * struct pcmciabus_attach_args *paa)
891 1.26 haya *
892 1.26 haya * This function attaches 16-bit PCcard bus.
893 1.4 haya */
894 1.1 haya STATIC void
895 1.143 dyoung pccbb_pcmcia_attach_setup(struct pccbb_softc *sc,
896 1.143 dyoung struct pcmciabus_attach_args *paa)
897 1.1 haya {
898 1.22 chopps struct pcic_handle *ph = &sc->sc_pcmcia_h;
899 1.10 haya #if rbus
900 1.22 chopps rbus_tag_t rb;
901 1.10 haya #endif
902 1.1 haya
903 1.32 enami /* initialize pcmcia part in pccbb_softc */
904 1.22 chopps ph->ph_parent = (struct device *)sc;
905 1.22 chopps ph->sock = sc->sc_function;
906 1.22 chopps ph->flags = 0;
907 1.22 chopps ph->shutdown = 0;
908 1.51 sommerfe ph->ih_irq = sc->sc_pa.pa_intrline;
909 1.22 chopps ph->ph_bus_t = sc->sc_base_memt;
910 1.22 chopps ph->ph_bus_h = sc->sc_base_memh;
911 1.22 chopps ph->ph_read = pccbb_pcmcia_read;
912 1.22 chopps ph->ph_write = pccbb_pcmcia_write;
913 1.22 chopps sc->sc_pct = &pccbb_pcmcia_funcs;
914 1.22 chopps
915 1.31 mycroft /*
916 1.31 mycroft * We need to do a few things here:
917 1.31 mycroft * 1) Disable routing of CSC and functional interrupts to ISA IRQs by
918 1.31 mycroft * setting the IRQ numbers to 0.
919 1.31 mycroft * 2) Set bit 4 of PCIC_INTR, which is needed on some chips to enable
920 1.31 mycroft * routing of CSC interrupts (e.g. card removal) to PCI while in
921 1.31 mycroft * PCMCIA mode. We just leave this set all the time.
922 1.31 mycroft * 3) Enable card insertion/removal interrupts in case the chip also
923 1.31 mycroft * needs that while in PCMCIA mode.
924 1.31 mycroft * 4) Clear any pending CSC interrupt.
925 1.31 mycroft */
926 1.46 haya Pcic_write(ph, PCIC_INTR, PCIC_INTR_ENABLE);
927 1.45 haya if (sc->sc_chipset == CB_TI113X) {
928 1.45 haya Pcic_write(ph, PCIC_CSC_INTR, 0);
929 1.45 haya } else {
930 1.45 haya Pcic_write(ph, PCIC_CSC_INTR, PCIC_CSC_INTR_CD_ENABLE);
931 1.45 haya Pcic_read(ph, PCIC_CSC);
932 1.45 haya }
933 1.22 chopps
934 1.32 enami /* initialize pcmcia bus attachment */
935 1.22 chopps paa->paa_busname = "pcmcia";
936 1.22 chopps paa->pct = sc->sc_pct;
937 1.22 chopps paa->pch = ph;
938 1.22 chopps paa->iobase = 0; /* I don't use them */
939 1.22 chopps paa->iosize = 0;
940 1.10 haya #if rbus
941 1.22 chopps rb = ((struct pccbb_softc *)(ph->ph_parent))->sc_rbus_iot;
942 1.22 chopps paa->iobase = rb->rb_start + rb->rb_offset;
943 1.22 chopps paa->iosize = rb->rb_end - rb->rb_start;
944 1.10 haya #endif
945 1.1 haya
946 1.22 chopps return;
947 1.1 haya }
948 1.1 haya
949 1.1 haya #if 0
950 1.1 haya STATIC void
951 1.143 dyoung pccbb_pcmcia_attach_card(struct pcic_handle *ph)
952 1.1 haya {
953 1.22 chopps if (ph->flags & PCIC_FLAG_CARDP) {
954 1.22 chopps panic("pccbb_pcmcia_attach_card: already attached");
955 1.22 chopps }
956 1.1 haya
957 1.22 chopps /* call the MI attach function */
958 1.22 chopps pcmcia_card_attach(ph->pcmcia);
959 1.1 haya
960 1.22 chopps ph->flags |= PCIC_FLAG_CARDP;
961 1.1 haya }
962 1.1 haya
963 1.1 haya STATIC void
964 1.143 dyoung pccbb_pcmcia_detach_card(struct pcic_handle *ph, int flags)
965 1.1 haya {
966 1.22 chopps if (!(ph->flags & PCIC_FLAG_CARDP)) {
967 1.22 chopps panic("pccbb_pcmcia_detach_card: already detached");
968 1.22 chopps }
969 1.1 haya
970 1.22 chopps ph->flags &= ~PCIC_FLAG_CARDP;
971 1.1 haya
972 1.22 chopps /* call the MI detach function */
973 1.22 chopps pcmcia_card_detach(ph->pcmcia, flags);
974 1.1 haya }
975 1.1 haya #endif
976 1.1 haya
977 1.4 haya /*
978 1.4 haya * int pccbbintr(arg)
979 1.4 haya * void *arg;
980 1.4 haya * This routine handles the interrupt from Yenta PCI-CardBus bridge
981 1.4 haya * itself.
982 1.4 haya */
983 1.1 haya int
984 1.143 dyoung pccbbintr(void *arg)
985 1.1 haya {
986 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)arg;
987 1.31 mycroft u_int32_t sockevent, sockstate;
988 1.22 chopps bus_space_tag_t memt = sc->sc_base_memt;
989 1.22 chopps bus_space_handle_t memh = sc->sc_base_memh;
990 1.31 mycroft struct pcic_handle *ph = &sc->sc_pcmcia_h;
991 1.22 chopps
992 1.22 chopps sockevent = bus_space_read_4(memt, memh, CB_SOCKET_EVENT);
993 1.31 mycroft bus_space_write_4(memt, memh, CB_SOCKET_EVENT, sockevent);
994 1.31 mycroft Pcic_read(ph, PCIC_CSC);
995 1.31 mycroft
996 1.152 dyoung if (sockevent != 0) {
997 1.152 dyoung aprint_debug("%s: enter sockevent %" PRIx32 "\n", __func__,
998 1.152 dyoung sockevent);
999 1.152 dyoung }
1000 1.152 dyoung
1001 1.152 dyoung /* Sometimes a change of CSTSCHG# accompanies the first
1002 1.152 dyoung * interrupt from an Atheros WLAN. That generates a
1003 1.152 dyoung * CB_SOCKET_EVENT_CSTS event on the bridge. The event
1004 1.152 dyoung * isn't interesting to pccbb(4), so we used to ignore the
1005 1.152 dyoung * interrupt. Now, let the child devices try to handle
1006 1.152 dyoung * the interrupt, instead. The Atheros NIC produces
1007 1.152 dyoung * interrupts more reliably, now: used to be that it would
1008 1.152 dyoung * only interrupt if the driver avoided powering down the
1009 1.152 dyoung * NIC's cardslot, and then the NIC would only work after
1010 1.152 dyoung * it was reset a second time.
1011 1.152 dyoung */
1012 1.152 dyoung if (sockevent == 0 ||
1013 1.152 dyoung (sockevent & ~(CB_SOCKET_EVENT_POWER|CB_SOCKET_EVENT_CD)) != 0) {
1014 1.22 chopps /* This intr is not for me: it may be for my child devices. */
1015 1.38 haya if (sc->sc_pil_intr_enable) {
1016 1.38 haya return pccbbintr_function(sc);
1017 1.38 haya } else {
1018 1.38 haya return 0;
1019 1.38 haya }
1020 1.22 chopps }
1021 1.1 haya
1022 1.22 chopps if (sockevent & CB_SOCKET_EVENT_CD) {
1023 1.31 mycroft sockstate = bus_space_read_4(memt, memh, CB_SOCKET_STAT);
1024 1.90 msaitoh if (0x00 != (sockstate & CB_SOCKET_STAT_CD)) {
1025 1.22 chopps /* A card should be removed. */
1026 1.22 chopps if (sc->sc_flags & CBB_CARDEXIST) {
1027 1.22 chopps DPRINTF(("%s: 0x%08x", sc->sc_dev.dv_xname,
1028 1.22 chopps sockevent));
1029 1.22 chopps DPRINTF((" card removed, 0x%08x\n", sockstate));
1030 1.22 chopps sc->sc_flags &= ~CBB_CARDEXIST;
1031 1.33 enami if (sc->sc_csc->sc_status &
1032 1.33 enami CARDSLOT_STATUS_CARD_16) {
1033 1.1 haya #if 0
1034 1.22 chopps struct pcic_handle *ph =
1035 1.22 chopps &sc->sc_pcmcia_h;
1036 1.1 haya
1037 1.22 chopps pcmcia_card_deactivate(ph->pcmcia);
1038 1.22 chopps pccbb_pcmcia_socket_disable(ph);
1039 1.22 chopps pccbb_pcmcia_detach_card(ph,
1040 1.22 chopps DETACH_FORCE);
1041 1.22 chopps #endif
1042 1.22 chopps cardslot_event_throw(sc->sc_csc,
1043 1.22 chopps CARDSLOT_EVENT_REMOVAL_16);
1044 1.33 enami } else if (sc->sc_csc->sc_status &
1045 1.33 enami CARDSLOT_STATUS_CARD_CB) {
1046 1.22 chopps /* Cardbus intr removed */
1047 1.22 chopps cardslot_event_throw(sc->sc_csc,
1048 1.22 chopps CARDSLOT_EVENT_REMOVAL_CB);
1049 1.22 chopps }
1050 1.74 haya } else if (sc->sc_flags & CBB_INSERTING) {
1051 1.74 haya sc->sc_flags &= ~CBB_INSERTING;
1052 1.74 haya callout_stop(&sc->sc_insert_ch);
1053 1.22 chopps }
1054 1.34 enami } else if (0x00 == (sockstate & CB_SOCKET_STAT_CD) &&
1055 1.34 enami /*
1056 1.34 enami * The pccbbintr may called from powerdown hook when
1057 1.34 enami * the system resumed, to detect the card
1058 1.34 enami * insertion/removal during suspension.
1059 1.34 enami */
1060 1.34 enami (sc->sc_flags & CBB_CARDEXIST) == 0) {
1061 1.22 chopps if (sc->sc_flags & CBB_INSERTING) {
1062 1.37 thorpej callout_stop(&sc->sc_insert_ch);
1063 1.22 chopps }
1064 1.149 joerg callout_schedule(&sc->sc_insert_ch, hz / 5);
1065 1.22 chopps sc->sc_flags |= CBB_INSERTING;
1066 1.22 chopps }
1067 1.22 chopps }
1068 1.1 haya
1069 1.153 dyoung /* XXX sockevent == 9 does occur in the wild. handle it. */
1070 1.111 mycroft if (sockevent & CB_SOCKET_EVENT_POWER) {
1071 1.132 christos DPRINTF(("Powercycling because of socket event\n"));
1072 1.118 christos /* XXX: Does not happen when attaching a 16-bit card */
1073 1.111 mycroft sc->sc_pwrcycle++;
1074 1.111 mycroft wakeup(&sc->sc_pwrcycle);
1075 1.111 mycroft }
1076 1.111 mycroft
1077 1.33 enami return (1);
1078 1.1 haya }
1079 1.1 haya
1080 1.21 haya /*
1081 1.21 haya * static int pccbbintr_function(struct pccbb_softc *sc)
1082 1.21 haya *
1083 1.21 haya * This function calls each interrupt handler registered at the
1084 1.32 enami * bridge. The interrupt handlers are called in registered order.
1085 1.21 haya */
1086 1.21 haya static int
1087 1.143 dyoung pccbbintr_function(struct pccbb_softc *sc)
1088 1.21 haya {
1089 1.22 chopps int retval = 0, val;
1090 1.22 chopps struct pccbb_intrhand_list *pil;
1091 1.138 yamt int s;
1092 1.21 haya
1093 1.80 haya for (pil = LIST_FIRST(&sc->sc_pil); pil != NULL;
1094 1.80 haya pil = LIST_NEXT(pil, pil_next)) {
1095 1.138 yamt s = splraiseipl(pil->pil_icookie);
1096 1.41 haya val = (*pil->pil_func)(pil->pil_arg);
1097 1.138 yamt splx(s);
1098 1.41 haya
1099 1.22 chopps retval = retval == 1 ? 1 :
1100 1.22 chopps retval == 0 ? val : val != 0 ? val : retval;
1101 1.22 chopps }
1102 1.21 haya
1103 1.22 chopps return retval;
1104 1.21 haya }
1105 1.21 haya
1106 1.1 haya static void
1107 1.143 dyoung pci113x_insert(void *arg)
1108 1.1 haya {
1109 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)arg;
1110 1.22 chopps u_int32_t sockevent, sockstate;
1111 1.74 haya
1112 1.74 haya if (!(sc->sc_flags & CBB_INSERTING)) {
1113 1.74 haya /* We add a card only under inserting state. */
1114 1.74 haya return;
1115 1.74 haya }
1116 1.74 haya sc->sc_flags &= ~CBB_INSERTING;
1117 1.1 haya
1118 1.22 chopps sockevent = bus_space_read_4(sc->sc_base_memt, sc->sc_base_memh,
1119 1.22 chopps CB_SOCKET_EVENT);
1120 1.22 chopps sockstate = bus_space_read_4(sc->sc_base_memt, sc->sc_base_memh,
1121 1.22 chopps CB_SOCKET_STAT);
1122 1.22 chopps
1123 1.22 chopps if (0 == (sockstate & CB_SOCKET_STAT_CD)) { /* card exist */
1124 1.22 chopps DPRINTF(("%s: 0x%08x", sc->sc_dev.dv_xname, sockevent));
1125 1.22 chopps DPRINTF((" card inserted, 0x%08x\n", sockstate));
1126 1.22 chopps sc->sc_flags |= CBB_CARDEXIST;
1127 1.32 enami /* call pccard interrupt handler here */
1128 1.22 chopps if (sockstate & CB_SOCKET_STAT_16BIT) {
1129 1.22 chopps /* 16-bit card found */
1130 1.1 haya /* pccbb_pcmcia_attach_card(&sc->sc_pcmcia_h); */
1131 1.22 chopps cardslot_event_throw(sc->sc_csc,
1132 1.22 chopps CARDSLOT_EVENT_INSERTION_16);
1133 1.22 chopps } else if (sockstate & CB_SOCKET_STAT_CB) {
1134 1.32 enami /* cardbus card found */
1135 1.1 haya /* cardbus_attach_card(sc->sc_csc); */
1136 1.22 chopps cardslot_event_throw(sc->sc_csc,
1137 1.22 chopps CARDSLOT_EVENT_INSERTION_CB);
1138 1.22 chopps } else {
1139 1.22 chopps /* who are you? */
1140 1.22 chopps }
1141 1.22 chopps } else {
1142 1.149 joerg callout_schedule(&sc->sc_insert_ch, hz / 10);
1143 1.22 chopps }
1144 1.1 haya }
1145 1.1 haya
1146 1.1 haya #define PCCBB_PCMCIA_OFFSET 0x800
1147 1.1 haya static u_int8_t
1148 1.143 dyoung pccbb_pcmcia_read(struct pcic_handle *ph, int reg)
1149 1.1 haya {
1150 1.48 haya bus_space_barrier(ph->ph_bus_t, ph->ph_bus_h,
1151 1.48 haya PCCBB_PCMCIA_OFFSET + reg, 1, BUS_SPACE_BARRIER_READ);
1152 1.48 haya
1153 1.22 chopps return bus_space_read_1(ph->ph_bus_t, ph->ph_bus_h,
1154 1.22 chopps PCCBB_PCMCIA_OFFSET + reg);
1155 1.1 haya }
1156 1.1 haya
1157 1.1 haya static void
1158 1.143 dyoung pccbb_pcmcia_write(struct pcic_handle *ph, int reg, u_int8_t val)
1159 1.1 haya {
1160 1.22 chopps bus_space_write_1(ph->ph_bus_t, ph->ph_bus_h, PCCBB_PCMCIA_OFFSET + reg,
1161 1.22 chopps val);
1162 1.48 haya
1163 1.48 haya bus_space_barrier(ph->ph_bus_t, ph->ph_bus_h,
1164 1.48 haya PCCBB_PCMCIA_OFFSET + reg, 1, BUS_SPACE_BARRIER_WRITE);
1165 1.1 haya }
1166 1.1 haya
1167 1.4 haya /*
1168 1.4 haya * STATIC int pccbb_ctrl(cardbus_chipset_tag_t, int)
1169 1.4 haya */
1170 1.1 haya STATIC int
1171 1.143 dyoung pccbb_ctrl(cardbus_chipset_tag_t ct, int command)
1172 1.1 haya {
1173 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ct;
1174 1.1 haya
1175 1.22 chopps switch (command) {
1176 1.22 chopps case CARDBUS_CD:
1177 1.22 chopps if (2 == pccbb_detect_card(sc)) {
1178 1.22 chopps int retval = 0;
1179 1.22 chopps int status = cb_detect_voltage(sc);
1180 1.22 chopps if (PCCARD_VCC_5V & status) {
1181 1.22 chopps retval |= CARDBUS_5V_CARD;
1182 1.22 chopps }
1183 1.22 chopps if (PCCARD_VCC_3V & status) {
1184 1.22 chopps retval |= CARDBUS_3V_CARD;
1185 1.22 chopps }
1186 1.22 chopps if (PCCARD_VCC_XV & status) {
1187 1.22 chopps retval |= CARDBUS_XV_CARD;
1188 1.22 chopps }
1189 1.22 chopps if (PCCARD_VCC_YV & status) {
1190 1.22 chopps retval |= CARDBUS_YV_CARD;
1191 1.22 chopps }
1192 1.22 chopps return retval;
1193 1.22 chopps } else {
1194 1.22 chopps return 0;
1195 1.22 chopps }
1196 1.22 chopps case CARDBUS_RESET:
1197 1.22 chopps return cb_reset(sc);
1198 1.22 chopps case CARDBUS_IO_ENABLE: /* fallthrough */
1199 1.22 chopps case CARDBUS_IO_DISABLE: /* fallthrough */
1200 1.22 chopps case CARDBUS_MEM_ENABLE: /* fallthrough */
1201 1.22 chopps case CARDBUS_MEM_DISABLE: /* fallthrough */
1202 1.22 chopps case CARDBUS_BM_ENABLE: /* fallthrough */
1203 1.22 chopps case CARDBUS_BM_DISABLE: /* fallthrough */
1204 1.69 haya /* XXX: I think we don't need to call this function below. */
1205 1.22 chopps return pccbb_cardenable(sc, command);
1206 1.22 chopps }
1207 1.1 haya
1208 1.22 chopps return 0;
1209 1.1 haya }
1210 1.1 haya
1211 1.4 haya /*
1212 1.4 haya * STATIC int pccbb_power(cardbus_chipset_tag_t, int)
1213 1.4 haya * This function returns true when it succeeds and returns false when
1214 1.4 haya * it fails.
1215 1.4 haya */
1216 1.1 haya STATIC int
1217 1.143 dyoung pccbb_power(cardbus_chipset_tag_t ct, int command)
1218 1.1 haya {
1219 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ct;
1220 1.144 dyoung u_int32_t status, osock_ctrl, sock_ctrl, reg_ctrl;
1221 1.22 chopps bus_space_tag_t memt = sc->sc_base_memt;
1222 1.22 chopps bus_space_handle_t memh = sc->sc_base_memh;
1223 1.144 dyoung int on = 0, pwrcycle, s, times;
1224 1.144 dyoung struct timeval before, after, diff;
1225 1.22 chopps
1226 1.95 christos DPRINTF(("pccbb_power: %s and %s [0x%x]\n",
1227 1.22 chopps (command & CARDBUS_VCCMASK) == CARDBUS_VCC_UC ? "CARDBUS_VCC_UC" :
1228 1.22 chopps (command & CARDBUS_VCCMASK) == CARDBUS_VCC_5V ? "CARDBUS_VCC_5V" :
1229 1.22 chopps (command & CARDBUS_VCCMASK) == CARDBUS_VCC_3V ? "CARDBUS_VCC_3V" :
1230 1.22 chopps (command & CARDBUS_VCCMASK) == CARDBUS_VCC_XV ? "CARDBUS_VCC_XV" :
1231 1.22 chopps (command & CARDBUS_VCCMASK) == CARDBUS_VCC_YV ? "CARDBUS_VCC_YV" :
1232 1.22 chopps (command & CARDBUS_VCCMASK) == CARDBUS_VCC_0V ? "CARDBUS_VCC_0V" :
1233 1.22 chopps "UNKNOWN",
1234 1.22 chopps (command & CARDBUS_VPPMASK) == CARDBUS_VPP_UC ? "CARDBUS_VPP_UC" :
1235 1.22 chopps (command & CARDBUS_VPPMASK) == CARDBUS_VPP_12V ? "CARDBUS_VPP_12V" :
1236 1.22 chopps (command & CARDBUS_VPPMASK) == CARDBUS_VPP_VCC ? "CARDBUS_VPP_VCC" :
1237 1.22 chopps (command & CARDBUS_VPPMASK) == CARDBUS_VPP_0V ? "CARDBUS_VPP_0V" :
1238 1.22 chopps "UNKNOWN", command));
1239 1.22 chopps
1240 1.22 chopps status = bus_space_read_4(memt, memh, CB_SOCKET_STAT);
1241 1.144 dyoung osock_ctrl = sock_ctrl = bus_space_read_4(memt, memh, CB_SOCKET_CTRL);
1242 1.22 chopps
1243 1.22 chopps switch (command & CARDBUS_VCCMASK) {
1244 1.22 chopps case CARDBUS_VCC_UC:
1245 1.22 chopps break;
1246 1.22 chopps case CARDBUS_VCC_5V:
1247 1.111 mycroft on++;
1248 1.22 chopps if (CB_SOCKET_STAT_5VCARD & status) { /* check 5 V card */
1249 1.22 chopps sock_ctrl &= ~CB_SOCKET_CTRL_VCCMASK;
1250 1.22 chopps sock_ctrl |= CB_SOCKET_CTRL_VCC_5V;
1251 1.22 chopps } else {
1252 1.22 chopps printf("%s: BAD voltage request: no 5 V card\n",
1253 1.22 chopps sc->sc_dev.dv_xname);
1254 1.91 briggs return 0;
1255 1.22 chopps }
1256 1.22 chopps break;
1257 1.22 chopps case CARDBUS_VCC_3V:
1258 1.111 mycroft on++;
1259 1.22 chopps if (CB_SOCKET_STAT_3VCARD & status) {
1260 1.22 chopps sock_ctrl &= ~CB_SOCKET_CTRL_VCCMASK;
1261 1.22 chopps sock_ctrl |= CB_SOCKET_CTRL_VCC_3V;
1262 1.22 chopps } else {
1263 1.22 chopps printf("%s: BAD voltage request: no 3.3 V card\n",
1264 1.22 chopps sc->sc_dev.dv_xname);
1265 1.91 briggs return 0;
1266 1.22 chopps }
1267 1.22 chopps break;
1268 1.22 chopps case CARDBUS_VCC_0V:
1269 1.22 chopps sock_ctrl &= ~CB_SOCKET_CTRL_VCCMASK;
1270 1.22 chopps break;
1271 1.22 chopps default:
1272 1.22 chopps return 0; /* power NEVER changed */
1273 1.22 chopps }
1274 1.1 haya
1275 1.22 chopps switch (command & CARDBUS_VPPMASK) {
1276 1.22 chopps case CARDBUS_VPP_UC:
1277 1.22 chopps break;
1278 1.22 chopps case CARDBUS_VPP_0V:
1279 1.22 chopps sock_ctrl &= ~CB_SOCKET_CTRL_VPPMASK;
1280 1.22 chopps break;
1281 1.22 chopps case CARDBUS_VPP_VCC:
1282 1.22 chopps sock_ctrl &= ~CB_SOCKET_CTRL_VPPMASK;
1283 1.22 chopps sock_ctrl |= ((sock_ctrl >> 4) & 0x07);
1284 1.22 chopps break;
1285 1.22 chopps case CARDBUS_VPP_12V:
1286 1.22 chopps sock_ctrl &= ~CB_SOCKET_CTRL_VPPMASK;
1287 1.22 chopps sock_ctrl |= CB_SOCKET_CTRL_VPP_12V;
1288 1.22 chopps break;
1289 1.22 chopps }
1290 1.1 haya
1291 1.111 mycroft pwrcycle = sc->sc_pwrcycle;
1292 1.144 dyoung aprint_debug("%s: osock_ctrl %#" PRIx32 " sock_ctrl %#" PRIx32 "\n",
1293 1.144 dyoung device_xname(&sc->sc_dev), osock_ctrl, sock_ctrl);
1294 1.111 mycroft
1295 1.144 dyoung microtime(&before);
1296 1.144 dyoung s = splbio();
1297 1.22 chopps bus_space_write_4(memt, memh, CB_SOCKET_CTRL, sock_ctrl);
1298 1.111 mycroft
1299 1.144 dyoung /*
1300 1.144 dyoung * Wait as long as 200ms for a power-cycle interrupt. If
1301 1.144 dyoung * interrupts are enabled, but the socket has already
1302 1.144 dyoung * changed to the desired status, keep waiting for the
1303 1.144 dyoung * interrupt. "Consuming" the interrupt in this way keeps
1304 1.144 dyoung * the interrupt from prematurely waking some subsequent
1305 1.144 dyoung * pccbb_power call.
1306 1.144 dyoung *
1307 1.144 dyoung * XXX Not every bridge interrupts on the ->OFF transition.
1308 1.144 dyoung * XXX That's ok, we will time-out after 200ms.
1309 1.144 dyoung *
1310 1.144 dyoung * XXX The power cycle event will never happen when attaching
1311 1.144 dyoung * XXX a 16-bit card. That's ok, we will time-out after
1312 1.144 dyoung * XXX 200ms.
1313 1.144 dyoung */
1314 1.144 dyoung for (times = 5; --times >= 0; ) {
1315 1.144 dyoung if (cold)
1316 1.144 dyoung DELAY(40 * 1000);
1317 1.144 dyoung else {
1318 1.144 dyoung (void)tsleep(&sc->sc_pwrcycle, PWAIT, "pccpwr",
1319 1.144 dyoung hz / 25);
1320 1.144 dyoung if (pwrcycle == sc->sc_pwrcycle)
1321 1.144 dyoung continue;
1322 1.118 christos }
1323 1.144 dyoung status = bus_space_read_4(memt, memh, CB_SOCKET_STAT);
1324 1.144 dyoung if ((status & CB_SOCKET_STAT_PWRCYCLE) != 0 && on)
1325 1.144 dyoung break;
1326 1.144 dyoung if ((status & CB_SOCKET_STAT_PWRCYCLE) == 0 && !on)
1327 1.144 dyoung break;
1328 1.144 dyoung }
1329 1.144 dyoung splx(s);
1330 1.144 dyoung microtime(&after);
1331 1.144 dyoung timersub(&after, &before, &diff);
1332 1.144 dyoung aprint_debug("%s: wait took%s %ld.%06lds\n", sc->sc_dev.dv_xname,
1333 1.144 dyoung (on && times < 0) ? " too long" : "", diff.tv_sec, diff.tv_usec);
1334 1.133 christos
1335 1.144 dyoung /*
1336 1.144 dyoung * Ok, wait a bit longer for things to settle.
1337 1.144 dyoung */
1338 1.144 dyoung if (on && sc->sc_chipset == CB_TOPIC95B)
1339 1.144 dyoung delay_ms(100, sc);
1340 1.111 mycroft
1341 1.22 chopps status = bus_space_read_4(memt, memh, CB_SOCKET_STAT);
1342 1.1 haya
1343 1.132 christos if (on && sc->sc_chipset != CB_TOPIC95B) {
1344 1.111 mycroft if ((status & CB_SOCKET_STAT_PWRCYCLE) == 0)
1345 1.111 mycroft printf("%s: power on failed?\n", sc->sc_dev.dv_xname);
1346 1.111 mycroft }
1347 1.111 mycroft
1348 1.22 chopps if (status & CB_SOCKET_STAT_BADVCC) { /* bad Vcc request */
1349 1.104 mycroft printf("%s: bad Vcc request. sock_ctrl 0x%x, sock_status 0x%x\n",
1350 1.22 chopps sc->sc_dev.dv_xname, sock_ctrl, status);
1351 1.104 mycroft printf("%s: disabling socket\n", sc->sc_dev.dv_xname);
1352 1.104 mycroft sock_ctrl &= ~CB_SOCKET_CTRL_VCCMASK;
1353 1.104 mycroft sock_ctrl &= ~CB_SOCKET_CTRL_VPPMASK;
1354 1.104 mycroft bus_space_write_4(memt, memh, CB_SOCKET_CTRL, sock_ctrl);
1355 1.111 mycroft status &= ~CB_SOCKET_STAT_BADVCC;
1356 1.145 christos bus_space_write_4(memt, memh, CB_SOCKET_FORCE, status);
1357 1.104 mycroft printf("new status 0x%x\n", bus_space_read_4(memt, memh,
1358 1.104 mycroft CB_SOCKET_STAT));
1359 1.22 chopps return 0;
1360 1.77 mycroft }
1361 1.77 mycroft
1362 1.77 mycroft if (sc->sc_chipset == CB_TOPIC97) {
1363 1.77 mycroft reg_ctrl = pci_conf_read(sc->sc_pc, sc->sc_tag, TOPIC_REG_CTRL);
1364 1.77 mycroft reg_ctrl &= ~TOPIC97_REG_CTRL_TESTMODE;
1365 1.77 mycroft if ((command & CARDBUS_VCCMASK) == CARDBUS_VCC_0V)
1366 1.77 mycroft reg_ctrl &= ~TOPIC97_REG_CTRL_CLKRUN_ENA;
1367 1.77 mycroft else
1368 1.77 mycroft reg_ctrl |= TOPIC97_REG_CTRL_CLKRUN_ENA;
1369 1.77 mycroft pci_conf_write(sc->sc_pc, sc->sc_tag, TOPIC_REG_CTRL, reg_ctrl);
1370 1.22 chopps }
1371 1.48 haya
1372 1.22 chopps return 1; /* power changed correctly */
1373 1.1 haya }
1374 1.1 haya
1375 1.1 haya #if defined CB_PCMCIA_POLL
1376 1.1 haya struct cb_poll_str {
1377 1.22 chopps void *arg;
1378 1.116 perry int (*func)(void *);
1379 1.22 chopps int level;
1380 1.22 chopps pccard_chipset_tag_t ct;
1381 1.22 chopps int count;
1382 1.37 thorpej struct callout poll_ch;
1383 1.1 haya };
1384 1.1 haya
1385 1.1 haya static struct cb_poll_str cb_poll[10];
1386 1.1 haya static int cb_poll_n = 0;
1387 1.1 haya
1388 1.116 perry static void cb_pcmcia_poll(void *arg);
1389 1.1 haya
1390 1.1 haya static void
1391 1.143 dyoung cb_pcmcia_poll(void *arg)
1392 1.1 haya {
1393 1.22 chopps struct cb_poll_str *poll = arg;
1394 1.22 chopps struct cbb_pcmcia_softc *psc = (void *)poll->ct->v;
1395 1.22 chopps struct pccbb_softc *sc = psc->cpc_parent;
1396 1.22 chopps int s;
1397 1.22 chopps u_int32_t spsr; /* socket present-state reg */
1398 1.22 chopps
1399 1.37 thorpej callout_reset(&poll->poll_ch, hz / 10, cb_pcmcia_poll, poll);
1400 1.22 chopps switch (poll->level) {
1401 1.22 chopps case IPL_NET:
1402 1.22 chopps s = splnet();
1403 1.22 chopps break;
1404 1.22 chopps case IPL_BIO:
1405 1.22 chopps s = splbio();
1406 1.22 chopps break;
1407 1.22 chopps case IPL_TTY: /* fallthrough */
1408 1.22 chopps default:
1409 1.22 chopps s = spltty();
1410 1.22 chopps break;
1411 1.22 chopps }
1412 1.22 chopps
1413 1.22 chopps spsr =
1414 1.22 chopps bus_space_read_4(sc->sc_base_memt, sc->sc_base_memh,
1415 1.22 chopps CB_SOCKET_STAT);
1416 1.1 haya
1417 1.1 haya #if defined CB_PCMCIA_POLL_ONLY && defined LEVEL2
1418 1.22 chopps if (!(spsr & 0x40)) { /* CINT low */
1419 1.1 haya #else
1420 1.22 chopps if (1) {
1421 1.1 haya #endif
1422 1.22 chopps if ((*poll->func) (poll->arg) == 1) {
1423 1.22 chopps ++poll->count;
1424 1.22 chopps printf("intr: reported from poller, 0x%x\n", spsr);
1425 1.1 haya #if defined LEVEL2
1426 1.22 chopps } else {
1427 1.22 chopps printf("intr: miss! 0x%x\n", spsr);
1428 1.1 haya #endif
1429 1.22 chopps }
1430 1.22 chopps }
1431 1.22 chopps splx(s);
1432 1.1 haya }
1433 1.1 haya #endif /* defined CB_PCMCIA_POLL */
1434 1.1 haya
1435 1.4 haya /*
1436 1.4 haya * static int pccbb_detect_card(struct pccbb_softc *sc)
1437 1.4 haya * return value: 0 if no card exists.
1438 1.4 haya * 1 if 16-bit card exists.
1439 1.4 haya * 2 if cardbus card exists.
1440 1.4 haya */
1441 1.1 haya static int
1442 1.143 dyoung pccbb_detect_card(struct pccbb_softc *sc)
1443 1.1 haya {
1444 1.22 chopps bus_space_handle_t base_memh = sc->sc_base_memh;
1445 1.22 chopps bus_space_tag_t base_memt = sc->sc_base_memt;
1446 1.22 chopps u_int32_t sockstat =
1447 1.22 chopps bus_space_read_4(base_memt, base_memh, CB_SOCKET_STAT);
1448 1.22 chopps int retval = 0;
1449 1.22 chopps
1450 1.22 chopps /* CD1 and CD2 asserted */
1451 1.22 chopps if (0x00 == (sockstat & CB_SOCKET_STAT_CD)) {
1452 1.22 chopps /* card must be present */
1453 1.22 chopps if (!(CB_SOCKET_STAT_NOTCARD & sockstat)) {
1454 1.22 chopps /* NOTACARD DEASSERTED */
1455 1.22 chopps if (CB_SOCKET_STAT_CB & sockstat) {
1456 1.22 chopps /* CardBus mode */
1457 1.22 chopps retval = 2;
1458 1.22 chopps } else if (CB_SOCKET_STAT_16BIT & sockstat) {
1459 1.22 chopps /* 16-bit mode */
1460 1.22 chopps retval = 1;
1461 1.22 chopps }
1462 1.22 chopps }
1463 1.22 chopps }
1464 1.22 chopps return retval;
1465 1.1 haya }
1466 1.1 haya
1467 1.4 haya /*
1468 1.4 haya * STATIC int cb_reset(struct pccbb_softc *sc)
1469 1.4 haya * This function resets CardBus card.
1470 1.4 haya */
1471 1.1 haya STATIC int
1472 1.143 dyoung cb_reset(struct pccbb_softc *sc)
1473 1.1 haya {
1474 1.117 perry /*
1475 1.117 perry * Reset Assert at least 20 ms
1476 1.22 chopps * Some machines request longer duration.
1477 1.22 chopps */
1478 1.22 chopps int reset_duration =
1479 1.136 itohy (sc->sc_chipset == CB_RX5C47X ? 400 : 50);
1480 1.146 dyoung u_int32_t bcr = pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_BRIDGE_CONTROL_REG);
1481 1.153 dyoung aprint_debug("%s: enter bcr %" PRIx32 "\n", __func__, bcr);
1482 1.22 chopps
1483 1.40 haya /* Reset bit Assert (bit 6 at 0x3E) */
1484 1.153 dyoung bcr |= PCI_BRIDGE_CONTROL_SECBR << PCI_BRIDGE_CONTROL_SHIFT;
1485 1.146 dyoung pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_BRIDGE_CONTROL_REG, bcr);
1486 1.153 dyoung aprint_debug("%s: wrote bcr %" PRIx32 "\n", __func__, bcr);
1487 1.142 dyoung delay_ms(reset_duration, sc);
1488 1.22 chopps
1489 1.22 chopps if (CBB_CARDEXIST & sc->sc_flags) { /* A card exists. Reset it! */
1490 1.40 haya /* Reset bit Deassert (bit 6 at 0x3E) */
1491 1.153 dyoung bcr &= ~(PCI_BRIDGE_CONTROL_SECBR << PCI_BRIDGE_CONTROL_SHIFT);
1492 1.153 dyoung pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_BRIDGE_CONTROL_REG,
1493 1.153 dyoung bcr);
1494 1.153 dyoung aprint_debug("%s: wrote bcr %" PRIx32 "\n", __func__, bcr);
1495 1.142 dyoung delay_ms(reset_duration, sc);
1496 1.153 dyoung aprint_debug("%s: end of delay\n", __func__);
1497 1.22 chopps }
1498 1.22 chopps /* No card found on the slot. Keep Reset. */
1499 1.22 chopps return 1;
1500 1.1 haya }
1501 1.1 haya
1502 1.4 haya /*
1503 1.4 haya * STATIC int cb_detect_voltage(struct pccbb_softc *sc)
1504 1.4 haya * This function detect card Voltage.
1505 1.4 haya */
1506 1.1 haya STATIC int
1507 1.143 dyoung cb_detect_voltage(struct pccbb_softc *sc)
1508 1.1 haya {
1509 1.22 chopps u_int32_t psr; /* socket present-state reg */
1510 1.22 chopps bus_space_tag_t iot = sc->sc_base_memt;
1511 1.22 chopps bus_space_handle_t ioh = sc->sc_base_memh;
1512 1.22 chopps int vol = PCCARD_VCC_UKN; /* set 0 */
1513 1.22 chopps
1514 1.22 chopps psr = bus_space_read_4(iot, ioh, CB_SOCKET_STAT);
1515 1.1 haya
1516 1.22 chopps if (0x400u & psr) {
1517 1.22 chopps vol |= PCCARD_VCC_5V;
1518 1.22 chopps }
1519 1.22 chopps if (0x800u & psr) {
1520 1.22 chopps vol |= PCCARD_VCC_3V;
1521 1.22 chopps }
1522 1.1 haya
1523 1.22 chopps return vol;
1524 1.1 haya }
1525 1.1 haya
1526 1.1 haya STATIC int
1527 1.137 christos cbbprint(void *aux, const char *pcic)
1528 1.1 haya {
1529 1.135 christos #if 0
1530 1.135 christos struct cbslot_attach_args *cba = aux;
1531 1.1 haya
1532 1.135 christos if (cba->cba_slot >= 0) {
1533 1.135 christos aprint_normal(" slot %d", cba->cba_slot);
1534 1.135 christos }
1535 1.135 christos #endif
1536 1.22 chopps return UNCONF;
1537 1.1 haya }
1538 1.1 haya
1539 1.4 haya /*
1540 1.4 haya * STATIC int pccbb_cardenable(struct pccbb_softc *sc, int function)
1541 1.4 haya * This function enables and disables the card
1542 1.4 haya */
1543 1.1 haya STATIC int
1544 1.143 dyoung pccbb_cardenable(struct pccbb_softc *sc, int function)
1545 1.1 haya {
1546 1.22 chopps u_int32_t command =
1547 1.22 chopps pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_COMMAND_STATUS_REG);
1548 1.1 haya
1549 1.22 chopps DPRINTF(("pccbb_cardenable:"));
1550 1.22 chopps switch (function) {
1551 1.22 chopps case CARDBUS_IO_ENABLE:
1552 1.22 chopps command |= PCI_COMMAND_IO_ENABLE;
1553 1.22 chopps break;
1554 1.22 chopps case CARDBUS_IO_DISABLE:
1555 1.22 chopps command &= ~PCI_COMMAND_IO_ENABLE;
1556 1.22 chopps break;
1557 1.22 chopps case CARDBUS_MEM_ENABLE:
1558 1.22 chopps command |= PCI_COMMAND_MEM_ENABLE;
1559 1.22 chopps break;
1560 1.22 chopps case CARDBUS_MEM_DISABLE:
1561 1.22 chopps command &= ~PCI_COMMAND_MEM_ENABLE;
1562 1.22 chopps break;
1563 1.22 chopps case CARDBUS_BM_ENABLE:
1564 1.22 chopps command |= PCI_COMMAND_MASTER_ENABLE;
1565 1.22 chopps break;
1566 1.22 chopps case CARDBUS_BM_DISABLE:
1567 1.22 chopps command &= ~PCI_COMMAND_MASTER_ENABLE;
1568 1.22 chopps break;
1569 1.22 chopps default:
1570 1.22 chopps return 0;
1571 1.22 chopps }
1572 1.1 haya
1573 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_COMMAND_STATUS_REG, command);
1574 1.22 chopps DPRINTF((" command reg 0x%x\n", command));
1575 1.22 chopps return 1;
1576 1.1 haya }
1577 1.1 haya
1578 1.1 haya #if !rbus
1579 1.1 haya static int
1580 1.143 dyoung pccbb_io_open(cardbus_chipset_tag_t ct, int win, uint32_t start, uint32_t end)
1581 1.22 chopps {
1582 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ct;
1583 1.22 chopps int basereg;
1584 1.22 chopps int limitreg;
1585 1.1 haya
1586 1.22 chopps if ((win < 0) || (win > 2)) {
1587 1.1 haya #if defined DIAGNOSTIC
1588 1.22 chopps printf("cardbus_io_open: window out of range %d\n", win);
1589 1.1 haya #endif
1590 1.22 chopps return 0;
1591 1.22 chopps }
1592 1.1 haya
1593 1.22 chopps basereg = win * 8 + 0x2c;
1594 1.22 chopps limitreg = win * 8 + 0x30;
1595 1.1 haya
1596 1.22 chopps DPRINTF(("pccbb_io_open: 0x%x[0x%x] - 0x%x[0x%x]\n",
1597 1.22 chopps start, basereg, end, limitreg));
1598 1.1 haya
1599 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, basereg, start);
1600 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, limitreg, end);
1601 1.22 chopps return 1;
1602 1.1 haya }
1603 1.22 chopps
1604 1.4 haya /*
1605 1.4 haya * int pccbb_io_close(cardbus_chipset_tag_t, int)
1606 1.4 haya */
1607 1.1 haya static int
1608 1.143 dyoung pccbb_io_close(cardbus_chipset_tag_t ct, int win)
1609 1.1 haya {
1610 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ct;
1611 1.22 chopps int basereg;
1612 1.22 chopps int limitreg;
1613 1.1 haya
1614 1.22 chopps if ((win < 0) || (win > 2)) {
1615 1.1 haya #if defined DIAGNOSTIC
1616 1.22 chopps printf("cardbus_io_close: window out of range %d\n", win);
1617 1.1 haya #endif
1618 1.22 chopps return 0;
1619 1.22 chopps }
1620 1.1 haya
1621 1.22 chopps basereg = win * 8 + 0x2c;
1622 1.22 chopps limitreg = win * 8 + 0x30;
1623 1.1 haya
1624 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, basereg, 0);
1625 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, limitreg, 0);
1626 1.22 chopps return 1;
1627 1.1 haya }
1628 1.1 haya
1629 1.1 haya static int
1630 1.143 dyoung pccbb_mem_open(cardbus_chipset_tag_t ct, int win, uint32_t start, uint32_t end)
1631 1.22 chopps {
1632 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ct;
1633 1.22 chopps int basereg;
1634 1.22 chopps int limitreg;
1635 1.1 haya
1636 1.22 chopps if ((win < 0) || (win > 2)) {
1637 1.1 haya #if defined DIAGNOSTIC
1638 1.22 chopps printf("cardbus_mem_open: window out of range %d\n", win);
1639 1.1 haya #endif
1640 1.22 chopps return 0;
1641 1.22 chopps }
1642 1.1 haya
1643 1.22 chopps basereg = win * 8 + 0x1c;
1644 1.22 chopps limitreg = win * 8 + 0x20;
1645 1.1 haya
1646 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, basereg, start);
1647 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, limitreg, end);
1648 1.22 chopps return 1;
1649 1.1 haya }
1650 1.1 haya
1651 1.1 haya static int
1652 1.143 dyoung pccbb_mem_close(cardbus_chipset_tag_t ct, int win)
1653 1.1 haya {
1654 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ct;
1655 1.22 chopps int basereg;
1656 1.22 chopps int limitreg;
1657 1.1 haya
1658 1.22 chopps if ((win < 0) || (win > 2)) {
1659 1.1 haya #if defined DIAGNOSTIC
1660 1.22 chopps printf("cardbus_mem_close: window out of range %d\n", win);
1661 1.1 haya #endif
1662 1.22 chopps return 0;
1663 1.22 chopps }
1664 1.1 haya
1665 1.22 chopps basereg = win * 8 + 0x1c;
1666 1.22 chopps limitreg = win * 8 + 0x20;
1667 1.1 haya
1668 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, basereg, 0);
1669 1.22 chopps pci_conf_write(sc->sc_pc, sc->sc_tag, limitreg, 0);
1670 1.22 chopps return 1;
1671 1.1 haya }
1672 1.1 haya #endif
1673 1.1 haya
1674 1.21 haya /*
1675 1.26 haya * static void *pccbb_cb_intr_establish(cardbus_chipset_tag_t ct,
1676 1.26 haya * int irq,
1677 1.26 haya * int level,
1678 1.116 perry * int (* func)(void *),
1679 1.26 haya * void *arg)
1680 1.26 haya *
1681 1.26 haya * This function registers an interrupt handler at the bridge, in
1682 1.32 enami * order not to call the interrupt handlers of child devices when
1683 1.32 enami * a card-deletion interrupt occurs.
1684 1.26 haya *
1685 1.26 haya * The arguments irq and level are not used.
1686 1.26 haya */
1687 1.26 haya static void *
1688 1.143 dyoung pccbb_cb_intr_establish(cardbus_chipset_tag_t ct, int irq, int level,
1689 1.143 dyoung int (*func)(void *), void *arg)
1690 1.26 haya {
1691 1.26 haya struct pccbb_softc *sc = (struct pccbb_softc *)ct;
1692 1.26 haya
1693 1.26 haya return pccbb_intr_establish(sc, irq, level, func, arg);
1694 1.26 haya }
1695 1.26 haya
1696 1.26 haya
1697 1.26 haya /*
1698 1.26 haya * static void *pccbb_cb_intr_disestablish(cardbus_chipset_tag_t ct,
1699 1.26 haya * void *ih)
1700 1.26 haya *
1701 1.26 haya * This function removes an interrupt handler pointed by ih.
1702 1.26 haya */
1703 1.26 haya static void
1704 1.143 dyoung pccbb_cb_intr_disestablish(cardbus_chipset_tag_t ct, void *ih)
1705 1.26 haya {
1706 1.26 haya struct pccbb_softc *sc = (struct pccbb_softc *)ct;
1707 1.26 haya
1708 1.26 haya pccbb_intr_disestablish(sc, ih);
1709 1.26 haya }
1710 1.26 haya
1711 1.26 haya
1712 1.65 mcr void
1713 1.143 dyoung pccbb_intr_route(struct pccbb_softc *sc)
1714 1.65 mcr {
1715 1.143 dyoung pcireg_t bcr, cbctrl;
1716 1.65 mcr
1717 1.143 dyoung /* initialize bridge intr routing */
1718 1.146 dyoung bcr = pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_BRIDGE_CONTROL_REG);
1719 1.143 dyoung bcr &= ~CB_BCR_INTR_IREQ_ENABLE;
1720 1.146 dyoung pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_BRIDGE_CONTROL_REG, bcr);
1721 1.143 dyoung
1722 1.143 dyoung switch (sc->sc_chipset) {
1723 1.143 dyoung case CB_TI113X:
1724 1.143 dyoung cbctrl = pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_CBCTRL);
1725 1.143 dyoung /* functional intr enabled */
1726 1.143 dyoung cbctrl |= PCI113X_CBCTRL_PCI_INTR;
1727 1.143 dyoung pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_CBCTRL, cbctrl);
1728 1.143 dyoung break;
1729 1.143 dyoung default:
1730 1.143 dyoung break;
1731 1.143 dyoung }
1732 1.65 mcr }
1733 1.65 mcr
1734 1.26 haya /*
1735 1.26 haya * static void *pccbb_intr_establish(struct pccbb_softc *sc,
1736 1.21 haya * int irq,
1737 1.21 haya * int level,
1738 1.116 perry * int (* func)(void *),
1739 1.21 haya * void *arg)
1740 1.21 haya *
1741 1.21 haya * This function registers an interrupt handler at the bridge, in
1742 1.32 enami * order not to call the interrupt handlers of child devices when
1743 1.32 enami * a card-deletion interrupt occurs.
1744 1.21 haya *
1745 1.41 haya * The arguments irq is not used because pccbb selects intr vector.
1746 1.21 haya */
1747 1.1 haya static void *
1748 1.137 christos pccbb_intr_establish(struct pccbb_softc *sc, int irq, int level,
1749 1.135 christos int (*func)(void *), void *arg)
1750 1.22 chopps {
1751 1.22 chopps struct pccbb_intrhand_list *pil, *newpil;
1752 1.22 chopps
1753 1.81 onoe DPRINTF(("pccbb_intr_establish start. %p\n", LIST_FIRST(&sc->sc_pil)));
1754 1.26 haya
1755 1.80 haya if (LIST_EMPTY(&sc->sc_pil)) {
1756 1.80 haya pccbb_intr_route(sc);
1757 1.22 chopps }
1758 1.22 chopps
1759 1.117 perry /*
1760 1.32 enami * Allocate a room for interrupt handler structure.
1761 1.22 chopps */
1762 1.22 chopps if (NULL == (newpil =
1763 1.22 chopps (struct pccbb_intrhand_list *)malloc(sizeof(struct
1764 1.22 chopps pccbb_intrhand_list), M_DEVBUF, M_WAITOK))) {
1765 1.22 chopps return NULL;
1766 1.22 chopps }
1767 1.21 haya
1768 1.22 chopps newpil->pil_func = func;
1769 1.22 chopps newpil->pil_arg = arg;
1770 1.138 yamt newpil->pil_icookie = makeiplcookie(level);
1771 1.21 haya
1772 1.80 haya if (LIST_EMPTY(&sc->sc_pil)) {
1773 1.80 haya LIST_INSERT_HEAD(&sc->sc_pil, newpil, pil_next);
1774 1.22 chopps } else {
1775 1.80 haya for (pil = LIST_FIRST(&sc->sc_pil);
1776 1.80 haya LIST_NEXT(pil, pil_next) != NULL;
1777 1.80 haya pil = LIST_NEXT(pil, pil_next));
1778 1.80 haya LIST_INSERT_AFTER(pil, newpil, pil_next);
1779 1.21 haya }
1780 1.1 haya
1781 1.81 onoe DPRINTF(("pccbb_intr_establish add pil. %p\n",
1782 1.81 onoe LIST_FIRST(&sc->sc_pil)));
1783 1.26 haya
1784 1.22 chopps return newpil;
1785 1.1 haya }
1786 1.1 haya
1787 1.21 haya /*
1788 1.26 haya * static void *pccbb_intr_disestablish(struct pccbb_softc *sc,
1789 1.21 haya * void *ih)
1790 1.21 haya *
1791 1.80 haya * This function removes an interrupt handler pointed by ih. ih
1792 1.80 haya * should be the value returned by cardbus_intr_establish() or
1793 1.80 haya * NULL.
1794 1.80 haya *
1795 1.80 haya * When ih is NULL, this function will do nothing.
1796 1.21 haya */
1797 1.1 haya static void
1798 1.143 dyoung pccbb_intr_disestablish(struct pccbb_softc *sc, void *ih)
1799 1.1 haya {
1800 1.80 haya struct pccbb_intrhand_list *pil;
1801 1.48 haya pcireg_t reg;
1802 1.21 haya
1803 1.81 onoe DPRINTF(("pccbb_intr_disestablish start. %p\n",
1804 1.81 onoe LIST_FIRST(&sc->sc_pil)));
1805 1.26 haya
1806 1.80 haya if (ih == NULL) {
1807 1.80 haya /* intr handler is not set */
1808 1.80 haya DPRINTF(("pccbb_intr_disestablish: no ih\n"));
1809 1.80 haya return;
1810 1.80 haya }
1811 1.22 chopps
1812 1.80 haya #ifdef DIAGNOSTIC
1813 1.80 haya for (pil = LIST_FIRST(&sc->sc_pil); pil != NULL;
1814 1.80 haya pil = LIST_NEXT(pil, pil_next)) {
1815 1.83 atatat DPRINTF(("pccbb_intr_disestablish: pil %p\n", pil));
1816 1.22 chopps if (pil == ih) {
1817 1.26 haya DPRINTF(("pccbb_intr_disestablish frees one pil\n"));
1818 1.22 chopps break;
1819 1.22 chopps }
1820 1.21 haya }
1821 1.80 haya if (pil == NULL) {
1822 1.80 haya panic("pccbb_intr_disestablish: %s cannot find pil %p",
1823 1.80 haya sc->sc_dev.dv_xname, ih);
1824 1.80 haya }
1825 1.80 haya #endif
1826 1.80 haya
1827 1.80 haya pil = (struct pccbb_intrhand_list *)ih;
1828 1.80 haya LIST_REMOVE(pil, pil_next);
1829 1.80 haya free(pil, M_DEVBUF);
1830 1.80 haya DPRINTF(("pccbb_intr_disestablish frees one pil\n"));
1831 1.21 haya
1832 1.80 haya if (LIST_EMPTY(&sc->sc_pil)) {
1833 1.22 chopps /* No interrupt handlers */
1834 1.21 haya
1835 1.26 haya DPRINTF(("pccbb_intr_disestablish: no interrupt handler\n"));
1836 1.26 haya
1837 1.48 haya /* stop routing PCI intr */
1838 1.146 dyoung reg = pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_BRIDGE_CONTROL_REG);
1839 1.48 haya reg |= CB_BCR_INTR_IREQ_ENABLE;
1840 1.146 dyoung pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_BRIDGE_CONTROL_REG, reg);
1841 1.48 haya
1842 1.22 chopps switch (sc->sc_chipset) {
1843 1.22 chopps case CB_TI113X:
1844 1.48 haya reg = pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_CBCTRL);
1845 1.48 haya /* functional intr disabled */
1846 1.48 haya reg &= ~PCI113X_CBCTRL_PCI_INTR;
1847 1.48 haya pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_CBCTRL, reg);
1848 1.48 haya break;
1849 1.22 chopps default:
1850 1.22 chopps break;
1851 1.22 chopps }
1852 1.21 haya }
1853 1.1 haya }
1854 1.1 haya
1855 1.1 haya #if defined SHOW_REGS
1856 1.1 haya static void
1857 1.143 dyoung cb_show_regs(pci_chipset_tag_t pc, pcitag_t tag, bus_space_tag_t memt,
1858 1.143 dyoung bus_space_handle_t memh)
1859 1.22 chopps {
1860 1.22 chopps int i;
1861 1.22 chopps printf("PCI config regs:");
1862 1.22 chopps for (i = 0; i < 0x50; i += 4) {
1863 1.143 dyoung if (i % 16 == 0)
1864 1.22 chopps printf("\n 0x%02x:", i);
1865 1.22 chopps printf(" %08x", pci_conf_read(pc, tag, i));
1866 1.22 chopps }
1867 1.22 chopps for (i = 0x80; i < 0xb0; i += 4) {
1868 1.143 dyoung if (i % 16 == 0)
1869 1.22 chopps printf("\n 0x%02x:", i);
1870 1.22 chopps printf(" %08x", pci_conf_read(pc, tag, i));
1871 1.22 chopps }
1872 1.1 haya
1873 1.22 chopps if (memh == 0) {
1874 1.22 chopps printf("\n");
1875 1.22 chopps return;
1876 1.22 chopps }
1877 1.1 haya
1878 1.22 chopps printf("\nsocket regs:");
1879 1.143 dyoung for (i = 0; i <= 0x10; i += 0x04)
1880 1.22 chopps printf(" %08x", bus_space_read_4(memt, memh, i));
1881 1.22 chopps printf("\nExCA regs:");
1882 1.143 dyoung for (i = 0; i < 0x08; ++i)
1883 1.22 chopps printf(" %02x", bus_space_read_1(memt, memh, 0x800 + i));
1884 1.22 chopps printf("\n");
1885 1.22 chopps return;
1886 1.1 haya }
1887 1.1 haya #endif
1888 1.1 haya
1889 1.4 haya /*
1890 1.4 haya * static cardbustag_t pccbb_make_tag(cardbus_chipset_tag_t cc,
1891 1.125 drochner * int busno, int function)
1892 1.4 haya * This is the function to make a tag to access config space of
1893 1.4 haya * a CardBus Card. It works same as pci_conf_read.
1894 1.4 haya */
1895 1.1 haya static cardbustag_t
1896 1.143 dyoung pccbb_make_tag(cardbus_chipset_tag_t cc, int busno, int function)
1897 1.1 haya {
1898 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)cc;
1899 1.1 haya
1900 1.125 drochner return pci_make_tag(sc->sc_pc, busno, 0, function);
1901 1.1 haya }
1902 1.1 haya
1903 1.1 haya static void
1904 1.137 christos pccbb_free_tag(cardbus_chipset_tag_t cc, cardbustag_t tag)
1905 1.1 haya {
1906 1.1 haya }
1907 1.1 haya
1908 1.4 haya /*
1909 1.143 dyoung * pccbb_conf_read
1910 1.143 dyoung *
1911 1.143 dyoung * This is the function to read the config space of a CardBus card.
1912 1.143 dyoung * It works the same as pci_conf_read(9).
1913 1.4 haya */
1914 1.1 haya static cardbusreg_t
1915 1.143 dyoung pccbb_conf_read(cardbus_chipset_tag_t cc, cardbustag_t tag, int offset)
1916 1.1 haya {
1917 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)cc;
1918 1.1 haya
1919 1.22 chopps return pci_conf_read(sc->sc_pc, tag, offset);
1920 1.1 haya }
1921 1.1 haya
1922 1.4 haya /*
1923 1.143 dyoung * pccbb_conf_write
1924 1.143 dyoung *
1925 1.143 dyoung * This is the function to write the config space of a CardBus
1926 1.143 dyoung * card. It works the same as pci_conf_write(9).
1927 1.4 haya */
1928 1.1 haya static void
1929 1.143 dyoung pccbb_conf_write(cardbus_chipset_tag_t cc, cardbustag_t tag, int reg,
1930 1.143 dyoung cardbusreg_t val)
1931 1.1 haya {
1932 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)cc;
1933 1.1 haya
1934 1.22 chopps pci_conf_write(sc->sc_pc, tag, reg, val);
1935 1.1 haya }
1936 1.1 haya
1937 1.1 haya #if 0
1938 1.1 haya STATIC int
1939 1.1 haya pccbb_new_pcmcia_io_alloc(pcmcia_chipset_handle_t pch,
1940 1.22 chopps bus_addr_t start, bus_size_t size, bus_size_t align, bus_addr_t mask,
1941 1.22 chopps int speed, int flags,
1942 1.22 chopps bus_space_handle_t * iohp)
1943 1.1 haya #endif
1944 1.4 haya /*
1945 1.4 haya * STATIC int pccbb_pcmcia_io_alloc(pcmcia_chipset_handle_t pch,
1946 1.4 haya * bus_addr_t start, bus_size_t size,
1947 1.4 haya * bus_size_t align,
1948 1.4 haya * struct pcmcia_io_handle *pcihp
1949 1.4 haya *
1950 1.4 haya * This function only allocates I/O region for pccard. This function
1951 1.32 enami * never maps the allocated region to pccard I/O area.
1952 1.4 haya *
1953 1.4 haya * XXX: The interface of this function is not very good, I believe.
1954 1.4 haya */
1955 1.22 chopps STATIC int
1956 1.143 dyoung pccbb_pcmcia_io_alloc(pcmcia_chipset_handle_t pch, bus_addr_t start,
1957 1.143 dyoung bus_size_t size, bus_size_t align, struct pcmcia_io_handle *pcihp)
1958 1.22 chopps {
1959 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
1960 1.22 chopps bus_addr_t ioaddr;
1961 1.22 chopps int flags = 0;
1962 1.22 chopps bus_space_tag_t iot;
1963 1.22 chopps bus_space_handle_t ioh;
1964 1.57 haya bus_addr_t mask;
1965 1.1 haya #if rbus
1966 1.22 chopps rbus_tag_t rb;
1967 1.1 haya #endif
1968 1.22 chopps if (align == 0) {
1969 1.22 chopps align = size; /* XXX: funny??? */
1970 1.22 chopps }
1971 1.1 haya
1972 1.57 haya if (start != 0) {
1973 1.57 haya /* XXX: assume all card decode lower 10 bits by its hardware */
1974 1.57 haya mask = 0x3ff;
1975 1.75 haya /* enforce to use only masked address */
1976 1.75 haya start &= mask;
1977 1.57 haya } else {
1978 1.57 haya /*
1979 1.57 haya * calculate mask:
1980 1.57 haya * 1. get the most significant bit of size (call it msb).
1981 1.57 haya * 2. compare msb with the value of size.
1982 1.57 haya * 3. if size is larger, shift msb left once.
1983 1.57 haya * 4. obtain mask value to decrement msb.
1984 1.57 haya */
1985 1.57 haya bus_size_t size_tmp = size;
1986 1.57 haya int shifts = 0;
1987 1.57 haya
1988 1.57 haya mask = 1;
1989 1.57 haya while (size_tmp) {
1990 1.57 haya ++shifts;
1991 1.57 haya size_tmp >>= 1;
1992 1.57 haya }
1993 1.57 haya mask = (1 << shifts);
1994 1.57 haya if (mask < size) {
1995 1.57 haya mask <<= 1;
1996 1.57 haya }
1997 1.57 haya --mask;
1998 1.57 haya }
1999 1.57 haya
2000 1.117 perry /*
2001 1.22 chopps * Allocate some arbitrary I/O space.
2002 1.22 chopps */
2003 1.1 haya
2004 1.22 chopps iot = ((struct pccbb_softc *)(ph->ph_parent))->sc_iot;
2005 1.1 haya
2006 1.1 haya #if rbus
2007 1.22 chopps rb = ((struct pccbb_softc *)(ph->ph_parent))->sc_rbus_iot;
2008 1.57 haya if (rbus_space_alloc(rb, start, size, mask, align, 0, &ioaddr, &ioh)) {
2009 1.22 chopps return 1;
2010 1.22 chopps }
2011 1.95 christos DPRINTF(("pccbb_pcmcia_io_alloc alloc port 0x%lx+0x%lx\n",
2012 1.81 onoe (u_long) ioaddr, (u_long) size));
2013 1.22 chopps #else
2014 1.22 chopps if (start) {
2015 1.22 chopps ioaddr = start;
2016 1.22 chopps if (bus_space_map(iot, start, size, 0, &ioh)) {
2017 1.22 chopps return 1;
2018 1.22 chopps }
2019 1.95 christos DPRINTF(("pccbb_pcmcia_io_alloc map port 0x%lx+0x%lx\n",
2020 1.22 chopps (u_long) ioaddr, (u_long) size));
2021 1.22 chopps } else {
2022 1.22 chopps flags |= PCMCIA_IO_ALLOCATED;
2023 1.22 chopps if (bus_space_alloc(iot, 0x700 /* ph->sc->sc_iobase */ ,
2024 1.22 chopps 0x800, /* ph->sc->sc_iobase + ph->sc->sc_iosize */
2025 1.22 chopps size, align, 0, 0, &ioaddr, &ioh)) {
2026 1.22 chopps /* No room be able to be get. */
2027 1.22 chopps return 1;
2028 1.22 chopps }
2029 1.22 chopps DPRINTF(("pccbb_pcmmcia_io_alloc alloc port 0x%lx+0x%lx\n",
2030 1.22 chopps (u_long) ioaddr, (u_long) size));
2031 1.22 chopps }
2032 1.1 haya #endif
2033 1.1 haya
2034 1.22 chopps pcihp->iot = iot;
2035 1.22 chopps pcihp->ioh = ioh;
2036 1.22 chopps pcihp->addr = ioaddr;
2037 1.22 chopps pcihp->size = size;
2038 1.22 chopps pcihp->flags = flags;
2039 1.1 haya
2040 1.22 chopps return 0;
2041 1.1 haya }
2042 1.1 haya
2043 1.4 haya /*
2044 1.4 haya * STATIC int pccbb_pcmcia_io_free(pcmcia_chipset_handle_t pch,
2045 1.4 haya * struct pcmcia_io_handle *pcihp)
2046 1.4 haya *
2047 1.4 haya * This function only frees I/O region for pccard.
2048 1.4 haya *
2049 1.4 haya * XXX: The interface of this function is not very good, I believe.
2050 1.4 haya */
2051 1.22 chopps void
2052 1.143 dyoung pccbb_pcmcia_io_free(pcmcia_chipset_handle_t pch,
2053 1.143 dyoung struct pcmcia_io_handle *pcihp)
2054 1.1 haya {
2055 1.1 haya #if !rbus
2056 1.22 chopps bus_space_tag_t iot = pcihp->iot;
2057 1.1 haya #endif
2058 1.22 chopps bus_space_handle_t ioh = pcihp->ioh;
2059 1.22 chopps bus_size_t size = pcihp->size;
2060 1.1 haya
2061 1.1 haya #if rbus
2062 1.22 chopps struct pccbb_softc *sc =
2063 1.22 chopps (struct pccbb_softc *)((struct pcic_handle *)pch)->ph_parent;
2064 1.22 chopps rbus_tag_t rb = sc->sc_rbus_iot;
2065 1.1 haya
2066 1.22 chopps rbus_space_free(rb, ioh, size, NULL);
2067 1.1 haya #else
2068 1.22 chopps if (pcihp->flags & PCMCIA_IO_ALLOCATED)
2069 1.22 chopps bus_space_free(iot, ioh, size);
2070 1.22 chopps else
2071 1.22 chopps bus_space_unmap(iot, ioh, size);
2072 1.1 haya #endif
2073 1.1 haya }
2074 1.1 haya
2075 1.4 haya /*
2076 1.4 haya * STATIC int pccbb_pcmcia_io_map(pcmcia_chipset_handle_t pch, int width,
2077 1.4 haya * bus_addr_t offset, bus_size_t size,
2078 1.4 haya * struct pcmcia_io_handle *pcihp,
2079 1.4 haya * int *windowp)
2080 1.4 haya *
2081 1.4 haya * This function maps the allocated I/O region to pccard. This function
2082 1.4 haya * never allocates any I/O region for pccard I/O area. I don't
2083 1.4 haya * understand why the original authors of pcmciabus separated alloc and
2084 1.4 haya * map. I believe the two must be unite.
2085 1.4 haya *
2086 1.4 haya * XXX: no wait timing control?
2087 1.4 haya */
2088 1.22 chopps int
2089 1.143 dyoung pccbb_pcmcia_io_map(pcmcia_chipset_handle_t pch, int width, bus_addr_t offset,
2090 1.143 dyoung bus_size_t size, struct pcmcia_io_handle *pcihp, int *windowp)
2091 1.22 chopps {
2092 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2093 1.22 chopps bus_addr_t ioaddr = pcihp->addr + offset;
2094 1.22 chopps int i, win;
2095 1.1 haya #if defined CBB_DEBUG
2096 1.121 sekiya static const char *width_names[] = { "dynamic", "io8", "io16" };
2097 1.1 haya #endif
2098 1.1 haya
2099 1.22 chopps /* Sanity check I/O handle. */
2100 1.1 haya
2101 1.22 chopps if (((struct pccbb_softc *)ph->ph_parent)->sc_iot != pcihp->iot) {
2102 1.22 chopps panic("pccbb_pcmcia_io_map iot is bogus");
2103 1.22 chopps }
2104 1.1 haya
2105 1.22 chopps /* XXX Sanity check offset/size. */
2106 1.1 haya
2107 1.22 chopps win = -1;
2108 1.22 chopps for (i = 0; i < PCIC_IO_WINS; i++) {
2109 1.22 chopps if ((ph->ioalloc & (1 << i)) == 0) {
2110 1.22 chopps win = i;
2111 1.22 chopps ph->ioalloc |= (1 << i);
2112 1.22 chopps break;
2113 1.22 chopps }
2114 1.22 chopps }
2115 1.1 haya
2116 1.22 chopps if (win == -1) {
2117 1.22 chopps return 1;
2118 1.22 chopps }
2119 1.1 haya
2120 1.22 chopps *windowp = win;
2121 1.1 haya
2122 1.22 chopps /* XXX this is pretty gross */
2123 1.1 haya
2124 1.22 chopps DPRINTF(("pccbb_pcmcia_io_map window %d %s port %lx+%lx\n",
2125 1.22 chopps win, width_names[width], (u_long) ioaddr, (u_long) size));
2126 1.1 haya
2127 1.22 chopps /* XXX wtf is this doing here? */
2128 1.1 haya
2129 1.1 haya #if 0
2130 1.22 chopps printf(" port 0x%lx", (u_long) ioaddr);
2131 1.22 chopps if (size > 1) {
2132 1.22 chopps printf("-0x%lx", (u_long) ioaddr + (u_long) size - 1);
2133 1.22 chopps }
2134 1.1 haya #endif
2135 1.1 haya
2136 1.22 chopps ph->io[win].addr = ioaddr;
2137 1.22 chopps ph->io[win].size = size;
2138 1.22 chopps ph->io[win].width = width;
2139 1.1 haya
2140 1.22 chopps /* actual dirty register-value changing in the function below. */
2141 1.22 chopps pccbb_pcmcia_do_io_map(ph, win);
2142 1.1 haya
2143 1.22 chopps return 0;
2144 1.1 haya }
2145 1.1 haya
2146 1.4 haya /*
2147 1.4 haya * STATIC void pccbb_pcmcia_do_io_map(struct pcic_handle *h, int win)
2148 1.4 haya *
2149 1.4 haya * This function changes register-value to map I/O region for pccard.
2150 1.4 haya */
2151 1.22 chopps static void
2152 1.143 dyoung pccbb_pcmcia_do_io_map(struct pcic_handle *ph, int win)
2153 1.1 haya {
2154 1.22 chopps static u_int8_t pcic_iowidth[3] = {
2155 1.22 chopps PCIC_IOCTL_IO0_IOCS16SRC_CARD,
2156 1.22 chopps PCIC_IOCTL_IO0_IOCS16SRC_DATASIZE |
2157 1.22 chopps PCIC_IOCTL_IO0_DATASIZE_8BIT,
2158 1.22 chopps PCIC_IOCTL_IO0_IOCS16SRC_DATASIZE |
2159 1.22 chopps PCIC_IOCTL_IO0_DATASIZE_16BIT,
2160 1.22 chopps };
2161 1.1 haya
2162 1.1 haya #define PCIC_SIA_START_LOW 0
2163 1.1 haya #define PCIC_SIA_START_HIGH 1
2164 1.1 haya #define PCIC_SIA_STOP_LOW 2
2165 1.1 haya #define PCIC_SIA_STOP_HIGH 3
2166 1.1 haya
2167 1.22 chopps int regbase_win = 0x8 + win * 0x04;
2168 1.22 chopps u_int8_t ioctl, enable;
2169 1.1 haya
2170 1.95 christos DPRINTF(("pccbb_pcmcia_do_io_map win %d addr 0x%lx size 0x%lx "
2171 1.95 christos "width %d\n", win, (unsigned long)ph->io[win].addr,
2172 1.95 christos (unsigned long)ph->io[win].size, ph->io[win].width * 8));
2173 1.22 chopps
2174 1.22 chopps Pcic_write(ph, regbase_win + PCIC_SIA_START_LOW,
2175 1.22 chopps ph->io[win].addr & 0xff);
2176 1.22 chopps Pcic_write(ph, regbase_win + PCIC_SIA_START_HIGH,
2177 1.22 chopps (ph->io[win].addr >> 8) & 0xff);
2178 1.22 chopps
2179 1.22 chopps Pcic_write(ph, regbase_win + PCIC_SIA_STOP_LOW,
2180 1.22 chopps (ph->io[win].addr + ph->io[win].size - 1) & 0xff);
2181 1.22 chopps Pcic_write(ph, regbase_win + PCIC_SIA_STOP_HIGH,
2182 1.22 chopps ((ph->io[win].addr + ph->io[win].size - 1) >> 8) & 0xff);
2183 1.22 chopps
2184 1.22 chopps ioctl = Pcic_read(ph, PCIC_IOCTL);
2185 1.22 chopps enable = Pcic_read(ph, PCIC_ADDRWIN_ENABLE);
2186 1.22 chopps switch (win) {
2187 1.22 chopps case 0:
2188 1.22 chopps ioctl &= ~(PCIC_IOCTL_IO0_WAITSTATE | PCIC_IOCTL_IO0_ZEROWAIT |
2189 1.22 chopps PCIC_IOCTL_IO0_IOCS16SRC_MASK |
2190 1.22 chopps PCIC_IOCTL_IO0_DATASIZE_MASK);
2191 1.22 chopps ioctl |= pcic_iowidth[ph->io[win].width];
2192 1.22 chopps enable |= PCIC_ADDRWIN_ENABLE_IO0;
2193 1.22 chopps break;
2194 1.22 chopps case 1:
2195 1.22 chopps ioctl &= ~(PCIC_IOCTL_IO1_WAITSTATE | PCIC_IOCTL_IO1_ZEROWAIT |
2196 1.22 chopps PCIC_IOCTL_IO1_IOCS16SRC_MASK |
2197 1.22 chopps PCIC_IOCTL_IO1_DATASIZE_MASK);
2198 1.22 chopps ioctl |= (pcic_iowidth[ph->io[win].width] << 4);
2199 1.22 chopps enable |= PCIC_ADDRWIN_ENABLE_IO1;
2200 1.22 chopps break;
2201 1.22 chopps }
2202 1.22 chopps Pcic_write(ph, PCIC_IOCTL, ioctl);
2203 1.22 chopps Pcic_write(ph, PCIC_ADDRWIN_ENABLE, enable);
2204 1.133 christos #if defined(CBB_DEBUG)
2205 1.22 chopps {
2206 1.22 chopps u_int8_t start_low =
2207 1.22 chopps Pcic_read(ph, regbase_win + PCIC_SIA_START_LOW);
2208 1.22 chopps u_int8_t start_high =
2209 1.22 chopps Pcic_read(ph, regbase_win + PCIC_SIA_START_HIGH);
2210 1.22 chopps u_int8_t stop_low =
2211 1.22 chopps Pcic_read(ph, regbase_win + PCIC_SIA_STOP_LOW);
2212 1.22 chopps u_int8_t stop_high =
2213 1.22 chopps Pcic_read(ph, regbase_win + PCIC_SIA_STOP_HIGH);
2214 1.133 christos printf("pccbb_pcmcia_do_io_map start %02x %02x, "
2215 1.133 christos "stop %02x %02x, ioctl %02x enable %02x\n",
2216 1.22 chopps start_low, start_high, stop_low, stop_high, ioctl, enable);
2217 1.22 chopps }
2218 1.1 haya #endif
2219 1.1 haya }
2220 1.1 haya
2221 1.4 haya /*
2222 1.4 haya * STATIC void pccbb_pcmcia_io_unmap(pcmcia_chipset_handle_t *h, int win)
2223 1.4 haya *
2224 1.32 enami * This function unmaps I/O region. No return value.
2225 1.4 haya */
2226 1.22 chopps STATIC void
2227 1.143 dyoung pccbb_pcmcia_io_unmap(pcmcia_chipset_handle_t pch, int win)
2228 1.1 haya {
2229 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2230 1.22 chopps int reg;
2231 1.1 haya
2232 1.22 chopps if (win >= PCIC_IO_WINS || win < 0) {
2233 1.22 chopps panic("pccbb_pcmcia_io_unmap: window out of range");
2234 1.22 chopps }
2235 1.1 haya
2236 1.22 chopps reg = Pcic_read(ph, PCIC_ADDRWIN_ENABLE);
2237 1.22 chopps switch (win) {
2238 1.22 chopps case 0:
2239 1.22 chopps reg &= ~PCIC_ADDRWIN_ENABLE_IO0;
2240 1.22 chopps break;
2241 1.22 chopps case 1:
2242 1.22 chopps reg &= ~PCIC_ADDRWIN_ENABLE_IO1;
2243 1.22 chopps break;
2244 1.22 chopps }
2245 1.22 chopps Pcic_write(ph, PCIC_ADDRWIN_ENABLE, reg);
2246 1.1 haya
2247 1.22 chopps ph->ioalloc &= ~(1 << win);
2248 1.1 haya }
2249 1.1 haya
2250 1.91 briggs static int
2251 1.143 dyoung pccbb_pcmcia_wait_ready(struct pcic_handle *ph)
2252 1.1 haya {
2253 1.104 mycroft u_int8_t stat;
2254 1.22 chopps int i;
2255 1.1 haya
2256 1.104 mycroft /* wait an initial 10ms for quick cards */
2257 1.104 mycroft stat = Pcic_read(ph, PCIC_IF_STATUS);
2258 1.104 mycroft if (stat & PCIC_IF_STATUS_READY)
2259 1.104 mycroft return (0);
2260 1.104 mycroft pccbb_pcmcia_delay(ph, 10, "pccwr0");
2261 1.104 mycroft for (i = 0; i < 50; i++) {
2262 1.91 briggs stat = Pcic_read(ph, PCIC_IF_STATUS);
2263 1.91 briggs if (stat & PCIC_IF_STATUS_READY)
2264 1.104 mycroft return (0);
2265 1.91 briggs if ((stat & PCIC_IF_STATUS_CARDDETECT_MASK) !=
2266 1.91 briggs PCIC_IF_STATUS_CARDDETECT_PRESENT)
2267 1.104 mycroft return (ENXIO);
2268 1.104 mycroft /* wait .1s (100ms) each iteration now */
2269 1.104 mycroft pccbb_pcmcia_delay(ph, 100, "pccwr1");
2270 1.22 chopps }
2271 1.1 haya
2272 1.104 mycroft printf("pccbb_pcmcia_wait_ready: ready never happened, status=%02x\n", stat);
2273 1.104 mycroft return (EWOULDBLOCK);
2274 1.104 mycroft }
2275 1.104 mycroft
2276 1.104 mycroft /*
2277 1.143 dyoung * Perform long (msec order) delay. timo is in milliseconds.
2278 1.104 mycroft */
2279 1.104 mycroft static void
2280 1.143 dyoung pccbb_pcmcia_delay(struct pcic_handle *ph, int timo, const char *wmesg)
2281 1.104 mycroft {
2282 1.1 haya #ifdef DIAGNOSTIC
2283 1.104 mycroft if (timo <= 0)
2284 1.104 mycroft panic("pccbb_pcmcia_delay: called with timeout %d", timo);
2285 1.104 mycroft if (!curlwp)
2286 1.104 mycroft panic("pccbb_pcmcia_delay: called in interrupt context");
2287 1.104 mycroft #if 0
2288 1.104 mycroft if (!ph->event_thread)
2289 1.104 mycroft panic("pccbb_pcmcia_delay: no event thread");
2290 1.104 mycroft #endif
2291 1.1 haya #endif
2292 1.104 mycroft DPRINTF(("pccbb_pcmcia_delay: \"%s\" %p, sleep %d ms\n",
2293 1.110 mrg wmesg, ph->event_thread, timo));
2294 1.104 mycroft tsleep(pccbb_pcmcia_delay, PWAIT, wmesg, roundup(timo * hz, 1000) / 1000);
2295 1.1 haya }
2296 1.1 haya
2297 1.4 haya /*
2298 1.4 haya * STATIC void pccbb_pcmcia_socket_enable(pcmcia_chipset_handle_t pch)
2299 1.4 haya *
2300 1.4 haya * This function enables the card. All information is stored in
2301 1.4 haya * the first argument, pcmcia_chipset_handle_t.
2302 1.4 haya */
2303 1.1 haya STATIC void
2304 1.143 dyoung pccbb_pcmcia_socket_enable(pcmcia_chipset_handle_t pch)
2305 1.1 haya {
2306 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2307 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ph->ph_parent;
2308 1.104 mycroft pcireg_t spsr;
2309 1.104 mycroft int voltage;
2310 1.101 mycroft int win;
2311 1.22 chopps u_int8_t power, intr;
2312 1.104 mycroft #ifdef DIAGNOSTIC
2313 1.104 mycroft int reg;
2314 1.104 mycroft #endif
2315 1.1 haya
2316 1.22 chopps /* this bit is mostly stolen from pcic_attach_card */
2317 1.1 haya
2318 1.22 chopps DPRINTF(("pccbb_pcmcia_socket_enable: "));
2319 1.1 haya
2320 1.22 chopps /* get card Vcc info */
2321 1.22 chopps spsr =
2322 1.22 chopps bus_space_read_4(sc->sc_base_memt, sc->sc_base_memh,
2323 1.22 chopps CB_SOCKET_STAT);
2324 1.22 chopps if (spsr & CB_SOCKET_STAT_5VCARD) {
2325 1.22 chopps DPRINTF(("5V card\n"));
2326 1.22 chopps voltage = CARDBUS_VCC_5V | CARDBUS_VPP_VCC;
2327 1.22 chopps } else if (spsr & CB_SOCKET_STAT_3VCARD) {
2328 1.22 chopps DPRINTF(("3V card\n"));
2329 1.22 chopps voltage = CARDBUS_VCC_3V | CARDBUS_VPP_VCC;
2330 1.22 chopps } else {
2331 1.133 christos DPRINTF(("?V card, 0x%x\n", spsr)); /* XXX */
2332 1.22 chopps return;
2333 1.22 chopps }
2334 1.1 haya
2335 1.108 mycroft /* disable interrupts; assert RESET */
2336 1.104 mycroft intr = Pcic_read(ph, PCIC_INTR);
2337 1.109 mycroft intr &= PCIC_INTR_ENABLE;
2338 1.104 mycroft Pcic_write(ph, PCIC_INTR, intr);
2339 1.104 mycroft
2340 1.104 mycroft /* zero out the address windows */
2341 1.104 mycroft Pcic_write(ph, PCIC_ADDRWIN_ENABLE, 0);
2342 1.100 mycroft
2343 1.104 mycroft /* power down the socket to reset it, clear the card reset pin */
2344 1.104 mycroft pccbb_power(sc, CARDBUS_VCC_0V | CARDBUS_VPP_0V);
2345 1.1 haya
2346 1.108 mycroft /* power off; assert output enable bit */
2347 1.108 mycroft power = PCIC_PWRCTL_OE;
2348 1.108 mycroft Pcic_write(ph, PCIC_PWRCTL, power);
2349 1.1 haya
2350 1.106 mycroft /* power up the socket */
2351 1.104 mycroft if (pccbb_power(sc, voltage) == 0)
2352 1.104 mycroft return;
2353 1.104 mycroft
2354 1.112 mycroft /*
2355 1.112 mycroft * Table 4-18 and figure 4-6 of the PC Card specifiction say:
2356 1.112 mycroft * Vcc Rising Time (Tpr) = 100ms (handled in pccbb_power() above)
2357 1.112 mycroft * RESET Width (Th (Hi-z RESET)) = 1ms
2358 1.112 mycroft * RESET Width (Tw (RESET)) = 10us
2359 1.132 christos *
2360 1.132 christos * some machines require some more time to be settled
2361 1.132 christos * for example old toshiba topic bridges!
2362 1.132 christos * (100ms is added here).
2363 1.132 christos */
2364 1.132 christos pccbb_pcmcia_delay(ph, 200 + 1, "pccen1");
2365 1.112 mycroft
2366 1.108 mycroft /* negate RESET */
2367 1.22 chopps intr |= PCIC_INTR_RESET;
2368 1.22 chopps Pcic_write(ph, PCIC_INTR, intr);
2369 1.1 haya
2370 1.108 mycroft /*
2371 1.108 mycroft * RESET Setup Time (Tsu (RESET)) = 20ms
2372 1.108 mycroft */
2373 1.104 mycroft pccbb_pcmcia_delay(ph, 20, "pccen2");
2374 1.1 haya
2375 1.104 mycroft #ifdef DIAGNOSTIC
2376 1.104 mycroft reg = Pcic_read(ph, PCIC_IF_STATUS);
2377 1.104 mycroft if ((reg & PCIC_IF_STATUS_POWERACTIVE) == 0)
2378 1.104 mycroft printf("pccbb_pcmcia_socket_enable: no power, status=%x\n", reg);
2379 1.56 itohy #endif
2380 1.1 haya
2381 1.22 chopps /* wait for the chip to finish initializing */
2382 1.104 mycroft if (pccbb_pcmcia_wait_ready(ph)) {
2383 1.133 christos #ifdef DIAGNOSTIC
2384 1.133 christos printf("pccbb_pcmcia_socket_enable: never became ready\n");
2385 1.133 christos #endif
2386 1.104 mycroft /* XXX return a failure status?? */
2387 1.91 briggs pccbb_power(sc, CARDBUS_VCC_0V | CARDBUS_VPP_0V);
2388 1.104 mycroft Pcic_write(ph, PCIC_PWRCTL, 0);
2389 1.91 briggs return;
2390 1.91 briggs }
2391 1.1 haya
2392 1.22 chopps /* reinstall all the memory and io mappings */
2393 1.104 mycroft for (win = 0; win < PCIC_MEM_WINS; ++win)
2394 1.104 mycroft if (ph->memalloc & (1 << win))
2395 1.22 chopps pccbb_pcmcia_do_mem_map(ph, win);
2396 1.104 mycroft for (win = 0; win < PCIC_IO_WINS; ++win)
2397 1.104 mycroft if (ph->ioalloc & (1 << win))
2398 1.22 chopps pccbb_pcmcia_do_io_map(ph, win);
2399 1.1 haya }
2400 1.1 haya
2401 1.4 haya /*
2402 1.4 haya * STATIC void pccbb_pcmcia_socket_disable(pcmcia_chipset_handle_t *ph)
2403 1.4 haya *
2404 1.4 haya * This function disables the card. All information is stored in
2405 1.4 haya * the first argument, pcmcia_chipset_handle_t.
2406 1.4 haya */
2407 1.1 haya STATIC void
2408 1.143 dyoung pccbb_pcmcia_socket_disable(pcmcia_chipset_handle_t pch)
2409 1.1 haya {
2410 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2411 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ph->ph_parent;
2412 1.104 mycroft u_int8_t intr;
2413 1.22 chopps
2414 1.22 chopps DPRINTF(("pccbb_pcmcia_socket_disable\n"));
2415 1.22 chopps
2416 1.108 mycroft /* disable interrupts; assert RESET */
2417 1.103 mycroft intr = Pcic_read(ph, PCIC_INTR);
2418 1.109 mycroft intr &= PCIC_INTR_ENABLE;
2419 1.103 mycroft Pcic_write(ph, PCIC_INTR, intr);
2420 1.102 mycroft
2421 1.102 mycroft /* zero out the address windows */
2422 1.102 mycroft Pcic_write(ph, PCIC_ADDRWIN_ENABLE, 0);
2423 1.22 chopps
2424 1.108 mycroft /* power down the socket to reset it, clear the card reset pin */
2425 1.108 mycroft pccbb_power(sc, CARDBUS_VCC_0V | CARDBUS_VPP_0V);
2426 1.108 mycroft
2427 1.104 mycroft /* disable socket: negate output enable bit and power off */
2428 1.104 mycroft Pcic_write(ph, PCIC_PWRCTL, 0);
2429 1.104 mycroft
2430 1.108 mycroft /*
2431 1.108 mycroft * Vcc Falling Time (Tpf) = 300ms
2432 1.108 mycroft */
2433 1.104 mycroft pccbb_pcmcia_delay(ph, 300, "pccwr1");
2434 1.101 mycroft }
2435 1.101 mycroft
2436 1.101 mycroft STATIC void
2437 1.143 dyoung pccbb_pcmcia_socket_settype(pcmcia_chipset_handle_t pch, int type)
2438 1.101 mycroft {
2439 1.101 mycroft struct pcic_handle *ph = (struct pcic_handle *)pch;
2440 1.101 mycroft u_int8_t intr;
2441 1.101 mycroft
2442 1.101 mycroft /* set the card type */
2443 1.100 mycroft
2444 1.100 mycroft intr = Pcic_read(ph, PCIC_INTR);
2445 1.102 mycroft intr &= ~(PCIC_INTR_IRQ_MASK | PCIC_INTR_CARDTYPE_MASK);
2446 1.101 mycroft if (type == PCMCIA_IFTYPE_IO)
2447 1.101 mycroft intr |= PCIC_INTR_CARDTYPE_IO;
2448 1.101 mycroft else
2449 1.101 mycroft intr |= PCIC_INTR_CARDTYPE_MEM;
2450 1.100 mycroft Pcic_write(ph, PCIC_INTR, intr);
2451 1.101 mycroft
2452 1.101 mycroft DPRINTF(("%s: pccbb_pcmcia_socket_settype %02x type %s %02x\n",
2453 1.101 mycroft ph->ph_parent->dv_xname, ph->sock,
2454 1.101 mycroft ((type == PCMCIA_IFTYPE_IO) ? "io" : "mem"), intr));
2455 1.1 haya }
2456 1.1 haya
2457 1.4 haya /*
2458 1.1 haya * STATIC int pccbb_pcmcia_card_detect(pcmcia_chipset_handle_t *ph)
2459 1.1 haya *
2460 1.1 haya * This function detects whether a card is in the slot or not.
2461 1.1 haya * If a card is inserted, return 1. Otherwise, return 0.
2462 1.4 haya */
2463 1.1 haya STATIC int
2464 1.143 dyoung pccbb_pcmcia_card_detect(pcmcia_chipset_handle_t pch)
2465 1.1 haya {
2466 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2467 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ph->ph_parent;
2468 1.22 chopps
2469 1.22 chopps DPRINTF(("pccbb_pcmcia_card_detect\n"));
2470 1.22 chopps return pccbb_detect_card(sc) == 1 ? 1 : 0;
2471 1.1 haya }
2472 1.1 haya
2473 1.1 haya #if 0
2474 1.1 haya STATIC int
2475 1.1 haya pccbb_new_pcmcia_mem_alloc(pcmcia_chipset_handle_t pch,
2476 1.22 chopps bus_addr_t start, bus_size_t size, bus_size_t align, int speed, int flags,
2477 1.22 chopps bus_space_tag_t * memtp bus_space_handle_t * memhp)
2478 1.1 haya #endif
2479 1.4 haya /*
2480 1.4 haya * STATIC int pccbb_pcmcia_mem_alloc(pcmcia_chipset_handle_t pch,
2481 1.4 haya * bus_size_t size,
2482 1.4 haya * struct pcmcia_mem_handle *pcmhp)
2483 1.4 haya *
2484 1.4 haya * This function only allocates memory region for pccard. This
2485 1.32 enami * function never maps the allocated region to pccard memory area.
2486 1.4 haya *
2487 1.4 haya * XXX: Why the argument of start address is not in?
2488 1.4 haya */
2489 1.22 chopps STATIC int
2490 1.143 dyoung pccbb_pcmcia_mem_alloc(pcmcia_chipset_handle_t pch, bus_size_t size,
2491 1.143 dyoung struct pcmcia_mem_handle *pcmhp)
2492 1.22 chopps {
2493 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2494 1.22 chopps bus_space_handle_t memh;
2495 1.22 chopps bus_addr_t addr;
2496 1.22 chopps bus_size_t sizepg;
2497 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ph->ph_parent;
2498 1.1 haya #if rbus
2499 1.22 chopps rbus_tag_t rb;
2500 1.1 haya #endif
2501 1.1 haya
2502 1.91 briggs /* Check that the card is still there. */
2503 1.91 briggs if ((Pcic_read(ph, PCIC_IF_STATUS) & PCIC_IF_STATUS_CARDDETECT_MASK) !=
2504 1.91 briggs PCIC_IF_STATUS_CARDDETECT_PRESENT)
2505 1.91 briggs return 1;
2506 1.91 briggs
2507 1.22 chopps /* out of sc->memh, allocate as many pages as necessary */
2508 1.1 haya
2509 1.22 chopps /* convert size to PCIC pages */
2510 1.117 perry /*
2511 1.22 chopps * This is not enough; when the requested region is on the page
2512 1.22 chopps * boundaries, this may calculate wrong result.
2513 1.22 chopps */
2514 1.22 chopps sizepg = (size + (PCIC_MEM_PAGESIZE - 1)) / PCIC_MEM_PAGESIZE;
2515 1.1 haya #if 0
2516 1.22 chopps if (sizepg > PCIC_MAX_MEM_PAGES) {
2517 1.22 chopps return 1;
2518 1.22 chopps }
2519 1.1 haya #endif
2520 1.1 haya
2521 1.22 chopps if (!(sc->sc_pcmcia_flags & PCCBB_PCMCIA_MEM_32)) {
2522 1.22 chopps return 1;
2523 1.22 chopps }
2524 1.1 haya
2525 1.22 chopps addr = 0; /* XXX gcc -Wuninitialized */
2526 1.1 haya
2527 1.1 haya #if rbus
2528 1.22 chopps rb = sc->sc_rbus_memt;
2529 1.22 chopps if (rbus_space_alloc(rb, 0, sizepg * PCIC_MEM_PAGESIZE,
2530 1.22 chopps sizepg * PCIC_MEM_PAGESIZE - 1, PCIC_MEM_PAGESIZE, 0,
2531 1.22 chopps &addr, &memh)) {
2532 1.22 chopps return 1;
2533 1.22 chopps }
2534 1.1 haya #else
2535 1.22 chopps if (bus_space_alloc(sc->sc_memt, sc->sc_mem_start, sc->sc_mem_end,
2536 1.22 chopps sizepg * PCIC_MEM_PAGESIZE, PCIC_MEM_PAGESIZE,
2537 1.22 chopps 0, /* boundary */
2538 1.22 chopps 0, /* flags */
2539 1.22 chopps &addr, &memh)) {
2540 1.22 chopps return 1;
2541 1.22 chopps }
2542 1.1 haya #endif
2543 1.1 haya
2544 1.95 christos DPRINTF(("pccbb_pcmcia_alloc_mem: addr 0x%lx size 0x%lx, "
2545 1.95 christos "realsize 0x%lx\n", (unsigned long)addr, (unsigned long)size,
2546 1.95 christos (unsigned long)sizepg * PCIC_MEM_PAGESIZE));
2547 1.22 chopps
2548 1.22 chopps pcmhp->memt = sc->sc_memt;
2549 1.22 chopps pcmhp->memh = memh;
2550 1.22 chopps pcmhp->addr = addr;
2551 1.22 chopps pcmhp->size = size;
2552 1.22 chopps pcmhp->realsize = sizepg * PCIC_MEM_PAGESIZE;
2553 1.22 chopps /* What is mhandle? I feel it is very dirty and it must go trush. */
2554 1.22 chopps pcmhp->mhandle = 0;
2555 1.22 chopps /* No offset??? Funny. */
2556 1.1 haya
2557 1.22 chopps return 0;
2558 1.1 haya }
2559 1.1 haya
2560 1.4 haya /*
2561 1.4 haya * STATIC void pccbb_pcmcia_mem_free(pcmcia_chipset_handle_t pch,
2562 1.4 haya * struct pcmcia_mem_handle *pcmhp)
2563 1.4 haya *
2564 1.32 enami * This function release the memory space allocated by the function
2565 1.4 haya * pccbb_pcmcia_mem_alloc().
2566 1.4 haya */
2567 1.22 chopps STATIC void
2568 1.143 dyoung pccbb_pcmcia_mem_free(pcmcia_chipset_handle_t pch,
2569 1.143 dyoung struct pcmcia_mem_handle *pcmhp)
2570 1.1 haya {
2571 1.1 haya #if rbus
2572 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2573 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ph->ph_parent;
2574 1.1 haya
2575 1.22 chopps rbus_space_free(sc->sc_rbus_memt, pcmhp->memh, pcmhp->realsize, NULL);
2576 1.1 haya #else
2577 1.22 chopps bus_space_free(pcmhp->memt, pcmhp->memh, pcmhp->realsize);
2578 1.1 haya #endif
2579 1.1 haya }
2580 1.1 haya
2581 1.4 haya /*
2582 1.4 haya * STATIC void pccbb_pcmcia_do_mem_map(struct pcic_handle *ph, int win)
2583 1.4 haya *
2584 1.32 enami * This function release the memory space allocated by the function
2585 1.4 haya * pccbb_pcmcia_mem_alloc().
2586 1.4 haya */
2587 1.22 chopps STATIC void
2588 1.143 dyoung pccbb_pcmcia_do_mem_map(struct pcic_handle *ph, int win)
2589 1.1 haya {
2590 1.22 chopps int regbase_win;
2591 1.22 chopps bus_addr_t phys_addr;
2592 1.22 chopps bus_addr_t phys_end;
2593 1.1 haya
2594 1.1 haya #define PCIC_SMM_START_LOW 0
2595 1.1 haya #define PCIC_SMM_START_HIGH 1
2596 1.1 haya #define PCIC_SMM_STOP_LOW 2
2597 1.1 haya #define PCIC_SMM_STOP_HIGH 3
2598 1.1 haya #define PCIC_CMA_LOW 4
2599 1.1 haya #define PCIC_CMA_HIGH 5
2600 1.1 haya
2601 1.22 chopps u_int8_t start_low, start_high = 0;
2602 1.22 chopps u_int8_t stop_low, stop_high;
2603 1.22 chopps u_int8_t off_low, off_high;
2604 1.22 chopps u_int8_t mem_window;
2605 1.22 chopps int reg;
2606 1.22 chopps
2607 1.22 chopps int kind = ph->mem[win].kind & ~PCMCIA_WIDTH_MEM_MASK;
2608 1.22 chopps int mem8 =
2609 1.24 thorpej (ph->mem[win].kind & PCMCIA_WIDTH_MEM_MASK) == PCMCIA_WIDTH_MEM8
2610 1.24 thorpej || (kind == PCMCIA_MEM_ATTR);
2611 1.12 joda
2612 1.22 chopps regbase_win = 0x10 + win * 0x08;
2613 1.1 haya
2614 1.22 chopps phys_addr = ph->mem[win].addr;
2615 1.22 chopps phys_end = phys_addr + ph->mem[win].size;
2616 1.1 haya
2617 1.22 chopps DPRINTF(("pccbb_pcmcia_do_mem_map: start 0x%lx end 0x%lx off 0x%lx\n",
2618 1.95 christos (unsigned long)phys_addr, (unsigned long)phys_end,
2619 1.95 christos (unsigned long)ph->mem[win].offset));
2620 1.1 haya
2621 1.1 haya #define PCIC_MEMREG_LSB_SHIFT PCIC_SYSMEM_ADDRX_SHIFT
2622 1.1 haya #define PCIC_MEMREG_MSB_SHIFT (PCIC_SYSMEM_ADDRX_SHIFT + 8)
2623 1.1 haya #define PCIC_MEMREG_WIN_SHIFT (PCIC_SYSMEM_ADDRX_SHIFT + 12)
2624 1.1 haya
2625 1.22 chopps /* bit 19:12 */
2626 1.22 chopps start_low = (phys_addr >> PCIC_MEMREG_LSB_SHIFT) & 0xff;
2627 1.22 chopps /* bit 23:20 and bit 7 on */
2628 1.22 chopps start_high = ((phys_addr >> PCIC_MEMREG_MSB_SHIFT) & 0x0f)
2629 1.22 chopps |(mem8 ? 0 : PCIC_SYSMEM_ADDRX_START_MSB_DATASIZE_16BIT);
2630 1.22 chopps /* bit 31:24, for 32-bit address */
2631 1.22 chopps mem_window = (phys_addr >> PCIC_MEMREG_WIN_SHIFT) & 0xff;
2632 1.22 chopps
2633 1.22 chopps Pcic_write(ph, regbase_win + PCIC_SMM_START_LOW, start_low);
2634 1.22 chopps Pcic_write(ph, regbase_win + PCIC_SMM_START_HIGH, start_high);
2635 1.22 chopps
2636 1.22 chopps if (((struct pccbb_softc *)ph->
2637 1.22 chopps ph_parent)->sc_pcmcia_flags & PCCBB_PCMCIA_MEM_32) {
2638 1.22 chopps Pcic_write(ph, 0x40 + win, mem_window);
2639 1.22 chopps }
2640 1.1 haya
2641 1.22 chopps stop_low = (phys_end >> PCIC_MEMREG_LSB_SHIFT) & 0xff;
2642 1.22 chopps stop_high = ((phys_end >> PCIC_MEMREG_MSB_SHIFT) & 0x0f)
2643 1.22 chopps | PCIC_SYSMEM_ADDRX_STOP_MSB_WAIT2; /* wait 2 cycles */
2644 1.22 chopps /* XXX Geee, WAIT2!! Crazy!! I must rewrite this routine. */
2645 1.22 chopps
2646 1.22 chopps Pcic_write(ph, regbase_win + PCIC_SMM_STOP_LOW, stop_low);
2647 1.22 chopps Pcic_write(ph, regbase_win + PCIC_SMM_STOP_HIGH, stop_high);
2648 1.22 chopps
2649 1.22 chopps off_low = (ph->mem[win].offset >> PCIC_CARDMEM_ADDRX_SHIFT) & 0xff;
2650 1.22 chopps off_high = ((ph->mem[win].offset >> (PCIC_CARDMEM_ADDRX_SHIFT + 8))
2651 1.22 chopps & PCIC_CARDMEM_ADDRX_MSB_ADDR_MASK)
2652 1.22 chopps | ((kind == PCMCIA_MEM_ATTR) ?
2653 1.22 chopps PCIC_CARDMEM_ADDRX_MSB_REGACTIVE_ATTR : 0);
2654 1.22 chopps
2655 1.22 chopps Pcic_write(ph, regbase_win + PCIC_CMA_LOW, off_low);
2656 1.22 chopps Pcic_write(ph, regbase_win + PCIC_CMA_HIGH, off_high);
2657 1.22 chopps
2658 1.22 chopps reg = Pcic_read(ph, PCIC_ADDRWIN_ENABLE);
2659 1.22 chopps reg |= ((1 << win) | PCIC_ADDRWIN_ENABLE_MEMCS16);
2660 1.22 chopps Pcic_write(ph, PCIC_ADDRWIN_ENABLE, reg);
2661 1.1 haya
2662 1.133 christos #if defined(CBB_DEBUG)
2663 1.22 chopps {
2664 1.22 chopps int r1, r2, r3, r4, r5, r6, r7 = 0;
2665 1.1 haya
2666 1.22 chopps r1 = Pcic_read(ph, regbase_win + PCIC_SMM_START_LOW);
2667 1.22 chopps r2 = Pcic_read(ph, regbase_win + PCIC_SMM_START_HIGH);
2668 1.22 chopps r3 = Pcic_read(ph, regbase_win + PCIC_SMM_STOP_LOW);
2669 1.22 chopps r4 = Pcic_read(ph, regbase_win + PCIC_SMM_STOP_HIGH);
2670 1.22 chopps r5 = Pcic_read(ph, regbase_win + PCIC_CMA_LOW);
2671 1.22 chopps r6 = Pcic_read(ph, regbase_win + PCIC_CMA_HIGH);
2672 1.22 chopps if (((struct pccbb_softc *)(ph->
2673 1.22 chopps ph_parent))->sc_pcmcia_flags & PCCBB_PCMCIA_MEM_32) {
2674 1.22 chopps r7 = Pcic_read(ph, 0x40 + win);
2675 1.22 chopps }
2676 1.22 chopps
2677 1.133 christos printf("pccbb_pcmcia_do_mem_map window %d: %02x%02x %02x%02x "
2678 1.133 christos "%02x%02x", win, r1, r2, r3, r4, r5, r6);
2679 1.22 chopps if (((struct pccbb_softc *)(ph->
2680 1.22 chopps ph_parent))->sc_pcmcia_flags & PCCBB_PCMCIA_MEM_32) {
2681 1.133 christos printf(" %02x", r7);
2682 1.22 chopps }
2683 1.133 christos printf("\n");
2684 1.22 chopps }
2685 1.1 haya #endif
2686 1.1 haya }
2687 1.1 haya
2688 1.4 haya /*
2689 1.4 haya * STATIC int pccbb_pcmcia_mem_map(pcmcia_chipset_handle_t pch, int kind,
2690 1.4 haya * bus_addr_t card_addr, bus_size_t size,
2691 1.4 haya * struct pcmcia_mem_handle *pcmhp,
2692 1.4 haya * bus_addr_t *offsetp, int *windowp)
2693 1.4 haya *
2694 1.32 enami * This function maps memory space allocated by the function
2695 1.4 haya * pccbb_pcmcia_mem_alloc().
2696 1.4 haya */
2697 1.22 chopps STATIC int
2698 1.143 dyoung pccbb_pcmcia_mem_map(pcmcia_chipset_handle_t pch, int kind,
2699 1.143 dyoung bus_addr_t card_addr, bus_size_t size, struct pcmcia_mem_handle *pcmhp,
2700 1.143 dyoung bus_addr_t *offsetp, int *windowp)
2701 1.22 chopps {
2702 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2703 1.22 chopps bus_addr_t busaddr;
2704 1.22 chopps long card_offset;
2705 1.22 chopps int win;
2706 1.91 briggs
2707 1.91 briggs /* Check that the card is still there. */
2708 1.91 briggs if ((Pcic_read(ph, PCIC_IF_STATUS) & PCIC_IF_STATUS_CARDDETECT_MASK) !=
2709 1.91 briggs PCIC_IF_STATUS_CARDDETECT_PRESENT)
2710 1.91 briggs return 1;
2711 1.22 chopps
2712 1.22 chopps for (win = 0; win < PCIC_MEM_WINS; ++win) {
2713 1.22 chopps if ((ph->memalloc & (1 << win)) == 0) {
2714 1.22 chopps ph->memalloc |= (1 << win);
2715 1.22 chopps break;
2716 1.22 chopps }
2717 1.22 chopps }
2718 1.1 haya
2719 1.22 chopps if (win == PCIC_MEM_WINS) {
2720 1.22 chopps return 1;
2721 1.22 chopps }
2722 1.1 haya
2723 1.22 chopps *windowp = win;
2724 1.1 haya
2725 1.22 chopps /* XXX this is pretty gross */
2726 1.1 haya
2727 1.22 chopps if (((struct pccbb_softc *)ph->ph_parent)->sc_memt != pcmhp->memt) {
2728 1.22 chopps panic("pccbb_pcmcia_mem_map memt is bogus");
2729 1.22 chopps }
2730 1.1 haya
2731 1.22 chopps busaddr = pcmhp->addr;
2732 1.1 haya
2733 1.117 perry /*
2734 1.22 chopps * compute the address offset to the pcmcia address space for the
2735 1.22 chopps * pcic. this is intentionally signed. The masks and shifts below
2736 1.22 chopps * will cause TRT to happen in the pcic registers. Deal with making
2737 1.22 chopps * sure the address is aligned, and return the alignment offset.
2738 1.22 chopps */
2739 1.22 chopps
2740 1.22 chopps *offsetp = card_addr % PCIC_MEM_PAGESIZE;
2741 1.22 chopps card_addr -= *offsetp;
2742 1.22 chopps
2743 1.22 chopps DPRINTF(("pccbb_pcmcia_mem_map window %d bus %lx+%lx+%lx at card addr "
2744 1.22 chopps "%lx\n", win, (u_long) busaddr, (u_long) * offsetp, (u_long) size,
2745 1.22 chopps (u_long) card_addr));
2746 1.22 chopps
2747 1.117 perry /*
2748 1.22 chopps * include the offset in the size, and decrement size by one, since
2749 1.22 chopps * the hw wants start/stop
2750 1.22 chopps */
2751 1.22 chopps size += *offsetp - 1;
2752 1.22 chopps
2753 1.22 chopps card_offset = (((long)card_addr) - ((long)busaddr));
2754 1.22 chopps
2755 1.22 chopps ph->mem[win].addr = busaddr;
2756 1.22 chopps ph->mem[win].size = size;
2757 1.22 chopps ph->mem[win].offset = card_offset;
2758 1.22 chopps ph->mem[win].kind = kind;
2759 1.1 haya
2760 1.22 chopps pccbb_pcmcia_do_mem_map(ph, win);
2761 1.1 haya
2762 1.22 chopps return 0;
2763 1.1 haya }
2764 1.1 haya
2765 1.4 haya /*
2766 1.4 haya * STATIC int pccbb_pcmcia_mem_unmap(pcmcia_chipset_handle_t pch,
2767 1.4 haya * int window)
2768 1.4 haya *
2769 1.32 enami * This function unmaps memory space which mapped by the function
2770 1.4 haya * pccbb_pcmcia_mem_map().
2771 1.4 haya */
2772 1.22 chopps STATIC void
2773 1.143 dyoung pccbb_pcmcia_mem_unmap(pcmcia_chipset_handle_t pch, int window)
2774 1.1 haya {
2775 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2776 1.22 chopps int reg;
2777 1.1 haya
2778 1.22 chopps if (window >= PCIC_MEM_WINS) {
2779 1.22 chopps panic("pccbb_pcmcia_mem_unmap: window out of range");
2780 1.22 chopps }
2781 1.1 haya
2782 1.22 chopps reg = Pcic_read(ph, PCIC_ADDRWIN_ENABLE);
2783 1.22 chopps reg &= ~(1 << window);
2784 1.22 chopps Pcic_write(ph, PCIC_ADDRWIN_ENABLE, reg);
2785 1.1 haya
2786 1.22 chopps ph->memalloc &= ~(1 << window);
2787 1.1 haya }
2788 1.1 haya
2789 1.1 haya #if defined PCCBB_PCMCIA_POLL
2790 1.1 haya struct pccbb_poll_str {
2791 1.22 chopps void *arg;
2792 1.116 perry int (*func)(void *);
2793 1.22 chopps int level;
2794 1.22 chopps struct pcic_handle *ph;
2795 1.22 chopps int count;
2796 1.22 chopps int num;
2797 1.37 thorpej struct callout poll_ch;
2798 1.1 haya };
2799 1.1 haya
2800 1.1 haya static struct pccbb_poll_str pccbb_poll[10];
2801 1.1 haya static int pccbb_poll_n = 0;
2802 1.1 haya
2803 1.116 perry static void pccbb_pcmcia_poll(void *arg);
2804 1.1 haya
2805 1.1 haya static void
2806 1.143 dyoung pccbb_pcmcia_poll(void *arg)
2807 1.1 haya {
2808 1.22 chopps struct pccbb_poll_str *poll = arg;
2809 1.22 chopps struct pcic_handle *ph = poll->ph;
2810 1.22 chopps struct pccbb_softc *sc = ph->sc;
2811 1.22 chopps int s;
2812 1.22 chopps u_int32_t spsr; /* socket present-state reg */
2813 1.22 chopps
2814 1.37 thorpej callout_reset(&poll->poll_ch, hz * 2, pccbb_pcmcia_poll, arg);
2815 1.22 chopps switch (poll->level) {
2816 1.22 chopps case IPL_NET:
2817 1.22 chopps s = splnet();
2818 1.22 chopps break;
2819 1.22 chopps case IPL_BIO:
2820 1.22 chopps s = splbio();
2821 1.22 chopps break;
2822 1.22 chopps case IPL_TTY: /* fallthrough */
2823 1.22 chopps default:
2824 1.22 chopps s = spltty();
2825 1.22 chopps break;
2826 1.22 chopps }
2827 1.22 chopps
2828 1.145 christos spsr = bus_space_read_4(sc->sc_base_memt, sc->sc_base_memh,
2829 1.22 chopps CB_SOCKET_STAT);
2830 1.1 haya
2831 1.1 haya #if defined PCCBB_PCMCIA_POLL_ONLY && defined LEVEL2
2832 1.22 chopps if (!(spsr & 0x40)) /* CINT low */
2833 1.1 haya #else
2834 1.22 chopps if (1)
2835 1.1 haya #endif
2836 1.22 chopps {
2837 1.22 chopps if ((*poll->func) (poll->arg) > 0) {
2838 1.22 chopps ++poll->count;
2839 1.73 christos /* printf("intr: reported from poller, 0x%x\n", spsr); */
2840 1.1 haya #if defined LEVEL2
2841 1.22 chopps } else {
2842 1.22 chopps printf("intr: miss! 0x%x\n", spsr);
2843 1.1 haya #endif
2844 1.22 chopps }
2845 1.22 chopps }
2846 1.22 chopps splx(s);
2847 1.1 haya }
2848 1.1 haya #endif /* defined CB_PCMCIA_POLL */
2849 1.1 haya
2850 1.4 haya /*
2851 1.4 haya * STATIC void *pccbb_pcmcia_intr_establish(pcmcia_chipset_handle_t pch,
2852 1.4 haya * struct pcmcia_function *pf,
2853 1.4 haya * int ipl,
2854 1.4 haya * int (*func)(void *),
2855 1.4 haya * void *arg);
2856 1.4 haya *
2857 1.4 haya * This function enables PC-Card interrupt. PCCBB uses PCI interrupt line.
2858 1.4 haya */
2859 1.1 haya STATIC void *
2860 1.143 dyoung pccbb_pcmcia_intr_establish(pcmcia_chipset_handle_t pch,
2861 1.143 dyoung struct pcmcia_function *pf, int ipl, int (*func)(void *), void *arg)
2862 1.22 chopps {
2863 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2864 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ph->ph_parent;
2865 1.22 chopps
2866 1.22 chopps if (!(pf->cfe->flags & PCMCIA_CFE_IRQLEVEL)) {
2867 1.22 chopps /* what should I do? */
2868 1.22 chopps if ((pf->cfe->flags & PCMCIA_CFE_IRQLEVEL)) {
2869 1.95 christos DPRINTF(("%s does not provide edge nor pulse "
2870 1.95 christos "interrupt\n", sc->sc_dev.dv_xname));
2871 1.22 chopps return NULL;
2872 1.22 chopps }
2873 1.117 perry /*
2874 1.22 chopps * XXX Noooooo! The interrupt flag must set properly!!
2875 1.22 chopps * dumb pcmcia driver!!
2876 1.22 chopps */
2877 1.22 chopps }
2878 1.1 haya
2879 1.88 nakayama return pccbb_intr_establish(sc, 0, ipl, func, arg);
2880 1.1 haya }
2881 1.1 haya
2882 1.4 haya /*
2883 1.4 haya * STATIC void pccbb_pcmcia_intr_disestablish(pcmcia_chipset_handle_t pch,
2884 1.4 haya * void *ih)
2885 1.4 haya *
2886 1.4 haya * This function disables PC-Card interrupt.
2887 1.4 haya */
2888 1.1 haya STATIC void
2889 1.143 dyoung pccbb_pcmcia_intr_disestablish(pcmcia_chipset_handle_t pch, void *ih)
2890 1.1 haya {
2891 1.22 chopps struct pcic_handle *ph = (struct pcic_handle *)pch;
2892 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ph->ph_parent;
2893 1.1 haya
2894 1.26 haya pccbb_intr_disestablish(sc, ih);
2895 1.1 haya }
2896 1.1 haya
2897 1.1 haya #if rbus
2898 1.4 haya /*
2899 1.4 haya * static int
2900 1.4 haya * pccbb_rbus_cb_space_alloc(cardbus_chipset_tag_t ct, rbus_tag_t rb,
2901 1.4 haya * bus_addr_t addr, bus_size_t size,
2902 1.4 haya * bus_addr_t mask, bus_size_t align,
2903 1.4 haya * int flags, bus_addr_t *addrp;
2904 1.4 haya * bus_space_handle_t *bshp)
2905 1.4 haya *
2906 1.4 haya * This function allocates a portion of memory or io space for
2907 1.4 haya * clients. This function is called from CardBus card drivers.
2908 1.4 haya */
2909 1.1 haya static int
2910 1.143 dyoung pccbb_rbus_cb_space_alloc(cardbus_chipset_tag_t ct, rbus_tag_t rb,
2911 1.143 dyoung bus_addr_t addr, bus_size_t size, bus_addr_t mask, bus_size_t align,
2912 1.143 dyoung int flags, bus_addr_t *addrp, bus_space_handle_t *bshp)
2913 1.22 chopps {
2914 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ct;
2915 1.22 chopps
2916 1.95 christos DPRINTF(("pccbb_rbus_cb_space_alloc: addr 0x%lx, size 0x%lx, "
2917 1.95 christos "mask 0x%lx, align 0x%lx\n", (unsigned long)addr,
2918 1.95 christos (unsigned long)size, (unsigned long)mask, (unsigned long)align));
2919 1.1 haya
2920 1.22 chopps if (align == 0) {
2921 1.22 chopps align = size;
2922 1.22 chopps }
2923 1.1 haya
2924 1.22 chopps if (rb->rb_bt == sc->sc_memt) {
2925 1.22 chopps if (align < 16) {
2926 1.22 chopps return 1;
2927 1.68 yamt }
2928 1.76 haya /*
2929 1.76 haya * XXX: align more than 0x1000 to avoid overwrapping
2930 1.76 haya * memory windows for two or more devices. 0x1000
2931 1.76 haya * means memory window's granularity.
2932 1.76 haya *
2933 1.76 haya * Two or more devices should be able to share same
2934 1.76 haya * memory window region. However, overrapping memory
2935 1.76 haya * window is not good because some devices, such as
2936 1.76 haya * 3Com 3C575[BC], have a broken address decoder and
2937 1.76 haya * intrude other's memory region.
2938 1.76 haya */
2939 1.68 yamt if (align < 0x1000) {
2940 1.68 yamt align = 0x1000;
2941 1.22 chopps }
2942 1.22 chopps } else if (rb->rb_bt == sc->sc_iot) {
2943 1.22 chopps if (align < 4) {
2944 1.22 chopps return 1;
2945 1.22 chopps }
2946 1.36 haya /* XXX: hack for avoiding ISA image */
2947 1.36 haya if (mask < 0x0100) {
2948 1.36 haya mask = 0x3ff;
2949 1.36 haya addr = 0x300;
2950 1.36 haya }
2951 1.36 haya
2952 1.22 chopps } else {
2953 1.95 christos DPRINTF(("pccbb_rbus_cb_space_alloc: Bus space tag 0x%lx is "
2954 1.95 christos "NOT used. io: 0x%lx, mem: 0x%lx\n",
2955 1.95 christos (unsigned long)rb->rb_bt, (unsigned long)sc->sc_iot,
2956 1.95 christos (unsigned long)sc->sc_memt));
2957 1.22 chopps return 1;
2958 1.22 chopps /* XXX: panic here? */
2959 1.22 chopps }
2960 1.1 haya
2961 1.22 chopps if (rbus_space_alloc(rb, addr, size, mask, align, flags, addrp, bshp)) {
2962 1.22 chopps printf("%s: <rbus> no bus space\n", sc->sc_dev.dv_xname);
2963 1.22 chopps return 1;
2964 1.22 chopps }
2965 1.1 haya
2966 1.22 chopps pccbb_open_win(sc, rb->rb_bt, *addrp, size, *bshp, 0);
2967 1.1 haya
2968 1.22 chopps return 0;
2969 1.1 haya }
2970 1.1 haya
2971 1.4 haya /*
2972 1.4 haya * static int
2973 1.4 haya * pccbb_rbus_cb_space_free(cardbus_chipset_tag_t *ct, rbus_tag_t rb,
2974 1.4 haya * bus_space_handle_t *bshp, bus_size_t size);
2975 1.4 haya *
2976 1.4 haya * This function is called from CardBus card drivers.
2977 1.4 haya */
2978 1.1 haya static int
2979 1.143 dyoung pccbb_rbus_cb_space_free(cardbus_chipset_tag_t ct, rbus_tag_t rb,
2980 1.143 dyoung bus_space_handle_t bsh, bus_size_t size)
2981 1.22 chopps {
2982 1.22 chopps struct pccbb_softc *sc = (struct pccbb_softc *)ct;
2983 1.22 chopps bus_space_tag_t bt = rb->rb_bt;
2984 1.22 chopps
2985 1.22 chopps pccbb_close_win(sc, bt, bsh, size);
2986 1.22 chopps
2987 1.22 chopps if (bt == sc->sc_memt) {
2988 1.22 chopps } else if (bt == sc->sc_iot) {
2989 1.22 chopps } else {
2990 1.22 chopps return 1;
2991 1.22 chopps /* XXX: panic here? */
2992 1.22 chopps }
2993 1.1 haya
2994 1.22 chopps return rbus_space_free(rb, bsh, size, NULL);
2995 1.1 haya }
2996 1.1 haya #endif /* rbus */
2997 1.1 haya
2998 1.1 haya #if rbus
2999 1.1 haya
3000 1.1 haya static int
3001 1.143 dyoung pccbb_open_win(struct pccbb_softc *sc, bus_space_tag_t bst, bus_addr_t addr,
3002 1.143 dyoung bus_size_t size, bus_space_handle_t bsh, int flags)
3003 1.22 chopps {
3004 1.27 thorpej struct pccbb_win_chain_head *head;
3005 1.22 chopps bus_addr_t align;
3006 1.22 chopps
3007 1.27 thorpej head = &sc->sc_iowindow;
3008 1.22 chopps align = 0x04;
3009 1.22 chopps if (sc->sc_memt == bst) {
3010 1.27 thorpej head = &sc->sc_memwindow;
3011 1.22 chopps align = 0x1000;
3012 1.95 christos DPRINTF(("using memory window, 0x%lx 0x%lx 0x%lx\n\n",
3013 1.95 christos (unsigned long)sc->sc_iot, (unsigned long)sc->sc_memt,
3014 1.95 christos (unsigned long)bst));
3015 1.22 chopps }
3016 1.1 haya
3017 1.27 thorpej if (pccbb_winlist_insert(head, addr, size, bsh, flags)) {
3018 1.27 thorpej printf("%s: pccbb_open_win: %s winlist insert failed\n",
3019 1.27 thorpej sc->sc_dev.dv_xname,
3020 1.27 thorpej (head == &sc->sc_memwindow) ? "mem" : "io");
3021 1.22 chopps }
3022 1.22 chopps pccbb_winset(align, sc, bst);
3023 1.1 haya
3024 1.22 chopps return 0;
3025 1.1 haya }
3026 1.1 haya
3027 1.1 haya static int
3028 1.143 dyoung pccbb_close_win(struct pccbb_softc *sc, bus_space_tag_t bst,
3029 1.143 dyoung bus_space_handle_t bsh, bus_size_t size)
3030 1.22 chopps {
3031 1.27 thorpej struct pccbb_win_chain_head *head;
3032 1.22 chopps bus_addr_t align;
3033 1.22 chopps
3034 1.27 thorpej head = &sc->sc_iowindow;
3035 1.22 chopps align = 0x04;
3036 1.22 chopps if (sc->sc_memt == bst) {
3037 1.27 thorpej head = &sc->sc_memwindow;
3038 1.22 chopps align = 0x1000;
3039 1.22 chopps }
3040 1.1 haya
3041 1.27 thorpej if (pccbb_winlist_delete(head, bsh, size)) {
3042 1.27 thorpej printf("%s: pccbb_close_win: %s winlist delete failed\n",
3043 1.27 thorpej sc->sc_dev.dv_xname,
3044 1.27 thorpej (head == &sc->sc_memwindow) ? "mem" : "io");
3045 1.22 chopps }
3046 1.22 chopps pccbb_winset(align, sc, bst);
3047 1.1 haya
3048 1.22 chopps return 0;
3049 1.1 haya }
3050 1.1 haya
3051 1.1 haya static int
3052 1.143 dyoung pccbb_winlist_insert(struct pccbb_win_chain_head *head, bus_addr_t start,
3053 1.143 dyoung bus_size_t size, bus_space_handle_t bsh, int flags)
3054 1.22 chopps {
3055 1.27 thorpej struct pccbb_win_chain *chainp, *elem;
3056 1.22 chopps
3057 1.27 thorpej if ((elem = malloc(sizeof(struct pccbb_win_chain), M_DEVBUF,
3058 1.27 thorpej M_NOWAIT)) == NULL)
3059 1.35 enami return (1); /* fail */
3060 1.1 haya
3061 1.27 thorpej elem->wc_start = start;
3062 1.27 thorpej elem->wc_end = start + (size - 1);
3063 1.27 thorpej elem->wc_handle = bsh;
3064 1.27 thorpej elem->wc_flags = flags;
3065 1.1 haya
3066 1.154 dyoung TAILQ_FOREACH(chainp, head, wc_list) {
3067 1.154 dyoung if (chainp->wc_end >= start)
3068 1.154 dyoung break;
3069 1.154 dyoung }
3070 1.154 dyoung if (chainp != NULL)
3071 1.27 thorpej TAILQ_INSERT_AFTER(head, chainp, elem, wc_list);
3072 1.154 dyoung else
3073 1.154 dyoung TAILQ_INSERT_TAIL(head, elem, wc_list);
3074 1.35 enami return (0);
3075 1.1 haya }
3076 1.1 haya
3077 1.1 haya static int
3078 1.143 dyoung pccbb_winlist_delete(struct pccbb_win_chain_head *head, bus_space_handle_t bsh,
3079 1.143 dyoung bus_size_t size)
3080 1.1 haya {
3081 1.27 thorpej struct pccbb_win_chain *chainp;
3082 1.1 haya
3083 1.154 dyoung TAILQ_FOREACH(chainp, head, wc_list) {
3084 1.154 dyoung if (memcmp(&chainp->wc_handle, &bsh, sizeof(bsh)) == 0)
3085 1.154 dyoung break;
3086 1.154 dyoung }
3087 1.154 dyoung if (chainp == NULL)
3088 1.154 dyoung return 1; /* fail: no candidate to remove */
3089 1.1 haya
3090 1.154 dyoung if ((chainp->wc_end - chainp->wc_start) != (size - 1)) {
3091 1.154 dyoung printf("pccbb_winlist_delete: window 0x%lx size "
3092 1.154 dyoung "inconsistent: 0x%lx, 0x%lx\n",
3093 1.154 dyoung (unsigned long)chainp->wc_start,
3094 1.154 dyoung (unsigned long)(chainp->wc_end - chainp->wc_start),
3095 1.154 dyoung (unsigned long)(size - 1));
3096 1.154 dyoung return 1;
3097 1.154 dyoung }
3098 1.1 haya
3099 1.154 dyoung TAILQ_REMOVE(head, chainp, wc_list);
3100 1.154 dyoung free(chainp, M_DEVBUF);
3101 1.1 haya
3102 1.154 dyoung return 0;
3103 1.1 haya }
3104 1.1 haya
3105 1.1 haya static void
3106 1.143 dyoung pccbb_winset(bus_addr_t align, struct pccbb_softc *sc, bus_space_tag_t bst)
3107 1.22 chopps {
3108 1.22 chopps pci_chipset_tag_t pc;
3109 1.22 chopps pcitag_t tag;
3110 1.22 chopps bus_addr_t mask = ~(align - 1);
3111 1.22 chopps struct {
3112 1.22 chopps cardbusreg_t win_start;
3113 1.22 chopps cardbusreg_t win_limit;
3114 1.22 chopps int win_flags;
3115 1.22 chopps } win[2];
3116 1.22 chopps struct pccbb_win_chain *chainp;
3117 1.22 chopps int offs;
3118 1.22 chopps
3119 1.61 enami win[0].win_start = win[1].win_start = 0xffffffff;
3120 1.61 enami win[0].win_limit = win[1].win_limit = 0;
3121 1.61 enami win[0].win_flags = win[1].win_flags = 0;
3122 1.22 chopps
3123 1.27 thorpej chainp = TAILQ_FIRST(&sc->sc_iowindow);
3124 1.22 chopps offs = 0x2c;
3125 1.22 chopps if (sc->sc_memt == bst) {
3126 1.27 thorpej chainp = TAILQ_FIRST(&sc->sc_memwindow);
3127 1.22 chopps offs = 0x1c;
3128 1.22 chopps }
3129 1.1 haya
3130 1.27 thorpej if (chainp != NULL) {
3131 1.22 chopps win[0].win_start = chainp->wc_start & mask;
3132 1.22 chopps win[0].win_limit = chainp->wc_end & mask;
3133 1.22 chopps win[0].win_flags = chainp->wc_flags;
3134 1.27 thorpej chainp = TAILQ_NEXT(chainp, wc_list);
3135 1.1 haya }
3136 1.1 haya
3137 1.27 thorpej for (; chainp != NULL; chainp = TAILQ_NEXT(chainp, wc_list)) {
3138 1.22 chopps if (win[1].win_start == 0xffffffff) {
3139 1.22 chopps /* window 1 is not used */
3140 1.22 chopps if ((win[0].win_flags == chainp->wc_flags) &&
3141 1.22 chopps (win[0].win_limit + align >=
3142 1.22 chopps (chainp->wc_start & mask))) {
3143 1.27 thorpej /* concatenate */
3144 1.22 chopps win[0].win_limit = chainp->wc_end & mask;
3145 1.22 chopps } else {
3146 1.22 chopps /* make new window */
3147 1.22 chopps win[1].win_start = chainp->wc_start & mask;
3148 1.22 chopps win[1].win_limit = chainp->wc_end & mask;
3149 1.22 chopps win[1].win_flags = chainp->wc_flags;
3150 1.22 chopps }
3151 1.22 chopps continue;
3152 1.22 chopps }
3153 1.22 chopps
3154 1.32 enami /* Both windows are engaged. */
3155 1.22 chopps if (win[0].win_flags == win[1].win_flags) {
3156 1.22 chopps /* same flags */
3157 1.22 chopps if (win[0].win_flags == chainp->wc_flags) {
3158 1.22 chopps if (win[1].win_start - (win[0].win_limit +
3159 1.22 chopps align) <
3160 1.22 chopps (chainp->wc_start & mask) -
3161 1.22 chopps ((chainp->wc_end & mask) + align)) {
3162 1.22 chopps /*
3163 1.22 chopps * merge window 0 and 1, and set win1
3164 1.22 chopps * to chainp
3165 1.22 chopps */
3166 1.22 chopps win[0].win_limit = win[1].win_limit;
3167 1.22 chopps win[1].win_start =
3168 1.22 chopps chainp->wc_start & mask;
3169 1.22 chopps win[1].win_limit =
3170 1.22 chopps chainp->wc_end & mask;
3171 1.22 chopps } else {
3172 1.22 chopps win[1].win_limit =
3173 1.22 chopps chainp->wc_end & mask;
3174 1.22 chopps }
3175 1.22 chopps } else {
3176 1.22 chopps /* different flags */
3177 1.22 chopps
3178 1.27 thorpej /* concatenate win0 and win1 */
3179 1.22 chopps win[0].win_limit = win[1].win_limit;
3180 1.22 chopps /* allocate win[1] to new space */
3181 1.22 chopps win[1].win_start = chainp->wc_start & mask;
3182 1.22 chopps win[1].win_limit = chainp->wc_end & mask;
3183 1.22 chopps win[1].win_flags = chainp->wc_flags;
3184 1.22 chopps }
3185 1.22 chopps } else {
3186 1.22 chopps /* the flags of win[0] and win[1] is different */
3187 1.22 chopps if (win[0].win_flags == chainp->wc_flags) {
3188 1.22 chopps win[0].win_limit = chainp->wc_end & mask;
3189 1.22 chopps /*
3190 1.22 chopps * XXX this creates overlapping windows, so
3191 1.22 chopps * what should the poor bridge do if one is
3192 1.22 chopps * cachable, and the other is not?
3193 1.22 chopps */
3194 1.22 chopps printf("%s: overlapping windows\n",
3195 1.22 chopps sc->sc_dev.dv_xname);
3196 1.22 chopps } else {
3197 1.22 chopps win[1].win_limit = chainp->wc_end & mask;
3198 1.22 chopps }
3199 1.22 chopps }
3200 1.22 chopps }
3201 1.1 haya
3202 1.22 chopps pc = sc->sc_pc;
3203 1.22 chopps tag = sc->sc_tag;
3204 1.22 chopps pci_conf_write(pc, tag, offs, win[0].win_start);
3205 1.22 chopps pci_conf_write(pc, tag, offs + 4, win[0].win_limit);
3206 1.22 chopps pci_conf_write(pc, tag, offs + 8, win[1].win_start);
3207 1.22 chopps pci_conf_write(pc, tag, offs + 12, win[1].win_limit);
3208 1.95 christos DPRINTF(("--pccbb_winset: win0 [0x%lx, 0x%lx), win1 [0x%lx, 0x%lx)\n",
3209 1.95 christos (unsigned long)pci_conf_read(pc, tag, offs),
3210 1.95 christos (unsigned long)pci_conf_read(pc, tag, offs + 4) + align,
3211 1.95 christos (unsigned long)pci_conf_read(pc, tag, offs + 8),
3212 1.95 christos (unsigned long)pci_conf_read(pc, tag, offs + 12) + align));
3213 1.22 chopps
3214 1.22 chopps if (bst == sc->sc_memt) {
3215 1.146 dyoung pcireg_t bcr = pci_conf_read(pc, tag, PCI_BRIDGE_CONTROL_REG);
3216 1.61 enami
3217 1.61 enami bcr &= ~(CB_BCR_PREFETCH_MEMWIN0 | CB_BCR_PREFETCH_MEMWIN1);
3218 1.61 enami if (win[0].win_flags & PCCBB_MEM_CACHABLE)
3219 1.22 chopps bcr |= CB_BCR_PREFETCH_MEMWIN0;
3220 1.61 enami if (win[1].win_flags & PCCBB_MEM_CACHABLE)
3221 1.22 chopps bcr |= CB_BCR_PREFETCH_MEMWIN1;
3222 1.146 dyoung pci_conf_write(pc, tag, PCI_BRIDGE_CONTROL_REG, bcr);
3223 1.22 chopps }
3224 1.1 haya }
3225 1.1 haya
3226 1.1 haya #endif /* rbus */
3227 1.25 enami
3228 1.156 jmcneill static bool
3229 1.156 jmcneill pccbb_suspend(device_t dv)
3230 1.25 enami {
3231 1.156 jmcneill struct pccbb_softc *sc = device_private(dv);
3232 1.25 enami bus_space_tag_t base_memt = sc->sc_base_memt; /* socket regs memory */
3233 1.25 enami bus_space_handle_t base_memh = sc->sc_base_memh;
3234 1.156 jmcneill pcireg_t reg;
3235 1.25 enami
3236 1.156 jmcneill if (sc->sc_pil_intr_enable)
3237 1.156 jmcneill (void)pccbbintr_function(sc);
3238 1.156 jmcneill sc->sc_pil_intr_enable = 0;
3239 1.25 enami
3240 1.156 jmcneill reg = bus_space_read_4(base_memt, base_memh, CB_SOCKET_MASK);
3241 1.156 jmcneill /* Disable interrupts. */
3242 1.156 jmcneill reg &= ~(CB_SOCKET_MASK_CSTS | CB_SOCKET_MASK_CD | CB_SOCKET_MASK_POWER);
3243 1.156 jmcneill bus_space_write_4(base_memt, base_memh, CB_SOCKET_MASK, reg);
3244 1.156 jmcneill /* XXX joerg Disable power to the socket? */
3245 1.38 haya
3246 1.156 jmcneill if (sc->sc_chipset == CB_RX5C47X)
3247 1.156 jmcneill sc->sc_ricoh_misc_ctrl = pci_conf_read(sc->sc_pc,
3248 1.156 jmcneill sc->sc_tag, RICOH_PCI_MISC_CTRL);
3249 1.113 jmcneill
3250 1.156 jmcneill return true;
3251 1.156 jmcneill }
3252 1.129 jmcneill
3253 1.156 jmcneill static bool
3254 1.156 jmcneill pccbb_resume(device_t dv)
3255 1.156 jmcneill {
3256 1.156 jmcneill struct pccbb_softc *sc = device_private(dv);
3257 1.156 jmcneill bus_space_tag_t base_memt = sc->sc_base_memt; /* socket regs memory */
3258 1.156 jmcneill bus_space_handle_t base_memh = sc->sc_base_memh;
3259 1.156 jmcneill pcireg_t reg;
3260 1.38 haya
3261 1.156 jmcneill pccbb_chipinit(sc);
3262 1.156 jmcneill /* setup memory and io space window for CB */
3263 1.156 jmcneill pccbb_winset(0x1000, sc, sc->sc_memt);
3264 1.156 jmcneill pccbb_winset(0x04, sc, sc->sc_iot);
3265 1.156 jmcneill if (sc->sc_chipset == CB_RX5C47X)
3266 1.156 jmcneill pci_conf_write(sc->sc_pc, sc->sc_tag,
3267 1.156 jmcneill RICOH_PCI_MISC_CTRL, sc->sc_ricoh_misc_ctrl);
3268 1.156 jmcneill
3269 1.156 jmcneill /* CSC Interrupt: Card detect interrupt on */
3270 1.156 jmcneill reg = bus_space_read_4(base_memt, base_memh, CB_SOCKET_MASK);
3271 1.156 jmcneill /* Card detect intr is turned on. */
3272 1.156 jmcneill reg |= CB_SOCKET_MASK_CD | CB_SOCKET_MASK_POWER;
3273 1.156 jmcneill bus_space_write_4(base_memt, base_memh, CB_SOCKET_MASK, reg);
3274 1.156 jmcneill /* reset interrupt */
3275 1.156 jmcneill reg = bus_space_read_4(base_memt, base_memh, CB_SOCKET_EVENT);
3276 1.156 jmcneill bus_space_write_4(base_memt, base_memh, CB_SOCKET_EVENT, reg);
3277 1.70 haya
3278 1.156 jmcneill /*
3279 1.156 jmcneill * check for card insertion or removal during suspend period.
3280 1.156 jmcneill * XXX: the code can't cope with card swap (remove then
3281 1.156 jmcneill * insert). how can we detect such situation?
3282 1.156 jmcneill */
3283 1.156 jmcneill (void)pccbbintr(sc);
3284 1.129 jmcneill
3285 1.156 jmcneill sc->sc_pil_intr_enable = 1;
3286 1.25 enami
3287 1.156 jmcneill return true;
3288 1.25 enami }
3289