pm_direct.c revision 1.36 1 1.36 riastrad /* $NetBSD: pm_direct.c,v 1.36 2024/09/26 01:16:50 riastradh Exp $ */
2 1.1 scottr
3 1.1 scottr /*
4 1.33 nat * Copyright (c) 2024 Nathanial Sloss <nathanialsloss (at) yahoo.com.au>
5 1.33 nat * All rights reserved.
6 1.33 nat *
7 1.1 scottr * Copyright (C) 1997 Takashi Hamada
8 1.1 scottr * All rights reserved.
9 1.1 scottr *
10 1.1 scottr * Redistribution and use in source and binary forms, with or without
11 1.1 scottr * modification, are permitted provided that the following conditions
12 1.1 scottr * are met:
13 1.1 scottr * 1. Redistributions of source code must retain the above copyright
14 1.1 scottr * notice, this list of conditions and the following disclaimer.
15 1.1 scottr * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 scottr * notice, this list of conditions and the following disclaimer in the
17 1.1 scottr * documentation and/or other materials provided with the distribution.
18 1.1 scottr * 3. All advertising materials mentioning features or use of this software
19 1.1 scottr * must display the following acknowledgement:
20 1.5 scottr * This product includes software developed by Takashi Hamada
21 1.1 scottr * 4. The name of the author may not be used to endorse or promote products
22 1.1 scottr * derived from this software without specific prior written permission.
23 1.1 scottr *
24 1.1 scottr * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25 1.1 scottr * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26 1.1 scottr * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27 1.1 scottr * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
28 1.1 scottr * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
29 1.1 scottr * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30 1.1 scottr * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31 1.1 scottr * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32 1.1 scottr * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
33 1.1 scottr * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 1.1 scottr */
35 1.5 scottr /* From: pm_direct.c 1.3 03/18/98 Takashi Hamada */
36 1.22 lukem
37 1.22 lukem #include <sys/cdefs.h>
38 1.36 riastrad __KERNEL_RCSID(0, "$NetBSD: pm_direct.c,v 1.36 2024/09/26 01:16:50 riastradh Exp $");
39 1.1 scottr
40 1.3 scottr #include "opt_adb.h"
41 1.3 scottr
42 1.3 scottr #ifdef DEBUG
43 1.3 scottr #ifndef ADB_DEBUG
44 1.3 scottr #define ADB_DEBUG
45 1.3 scottr #endif
46 1.3 scottr #endif
47 1.1 scottr
48 1.1 scottr /* #define PM_GRAB_SI 1 */
49 1.1 scottr
50 1.1 scottr #include <sys/types.h>
51 1.3 scottr #include <sys/systm.h>
52 1.1 scottr
53 1.35 nat #include <dev/sysmon/sysmonvar.h>
54 1.35 nat
55 1.1 scottr #include <machine/viareg.h>
56 1.1 scottr #include <machine/param.h>
57 1.1 scottr #include <machine/cpu.h>
58 1.1 scottr #include <machine/adbsys.h>
59 1.1 scottr
60 1.2 scottr #include <mac68k/mac68k/macrom.h>
61 1.2 scottr #include <mac68k/dev/adbvar.h>
62 1.2 scottr #include <mac68k/dev/pm_direct.h>
63 1.1 scottr
64 1.1 scottr /* hardware dependent values */
65 1.1 scottr extern u_short ADBDelay;
66 1.1 scottr extern u_int32_t HwCfgFlags3;
67 1.1 scottr extern struct mac68k_machine_S mac68k_machine;
68 1.1 scottr
69 1.1 scottr
70 1.1 scottr /* define the types of the Power Manager */
71 1.1 scottr #define PM_HW_UNKNOWN 0x00 /* don't know */
72 1.1 scottr #define PM_HW_PB1XX 0x01 /* PowerBook 1XX series */
73 1.1 scottr #define PM_HW_PB5XX 0x02 /* PowerBook Duo and 5XX series */
74 1.1 scottr
75 1.1 scottr /* useful macros */
76 1.1 scottr #define PM_SR() via_reg(VIA1, vSR)
77 1.1 scottr #define PM_VIA_INTR_ENABLE() via_reg(VIA1, vIER) = 0x90
78 1.1 scottr #define PM_VIA_INTR_DISABLE() via_reg(VIA1, vIER) = 0x10
79 1.1 scottr #define PM_VIA_CLR_INTR() via_reg(VIA1, vIFR) = 0x90
80 1.1 scottr #define PM_SET_STATE_ACKON() via_reg(VIA2, vBufB) |= 0x04
81 1.1 scottr #define PM_SET_STATE_ACKOFF() via_reg(VIA2, vBufB) &= ~0x04
82 1.4 scottr #define PM_IS_ON (0x02 == (via_reg(VIA2, vBufB) & 0x02))
83 1.4 scottr #define PM_IS_OFF (0x00 == (via_reg(VIA2, vBufB) & 0x02))
84 1.1 scottr
85 1.4 scottr /*
86 1.4 scottr * Variables for internal use
87 1.1 scottr */
88 1.1 scottr int pmHardware = PM_HW_UNKNOWN;
89 1.1 scottr u_short pm_existent_ADB_devices = 0x0; /* each bit expresses the existent ADB device */
90 1.1 scottr u_int pm_LCD_brightness = 0x0;
91 1.1 scottr u_int pm_LCD_contrast = 0x0;
92 1.1 scottr u_int pm_counter = 0; /* clock count */
93 1.35 nat struct sysmon_pswitch pbutton;
94 1.1 scottr
95 1.1 scottr /* these values shows that number of data returned after 'send' cmd is sent */
96 1.1 scottr char pm_send_cmd_type[] = {
97 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
98 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
99 1.4 scottr 0x01, 0x01, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
100 1.4 scottr 0x00, 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0x00,
101 1.4 scottr 0xff, 0x00, 0x02, 0x01, 0x01, 0xff, 0xff, 0xff,
102 1.4 scottr 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
103 1.4 scottr 0x04, 0x14, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
104 1.4 scottr 0x00, 0x00, 0x02, 0xff, 0xff, 0xff, 0xff, 0xff,
105 1.4 scottr 0x01, 0x01, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
106 1.4 scottr 0x00, 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
107 1.4 scottr 0x01, 0x00, 0x02, 0x02, 0xff, 0x01, 0x03, 0x01,
108 1.4 scottr 0x00, 0x01, 0x00, 0x00, 0x00, 0xff, 0xff, 0xff,
109 1.4 scottr 0x02, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
110 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xff, 0xff,
111 1.4 scottr 0x01, 0x01, 0x01, 0xff, 0xff, 0xff, 0xff, 0xff,
112 1.4 scottr 0x00, 0x00, 0xff, 0xff, 0xff, 0xff, 0x04, 0x04,
113 1.4 scottr 0x04, 0xff, 0x00, 0xff, 0xff, 0xff, 0xff, 0xff,
114 1.4 scottr 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
115 1.4 scottr 0x01, 0x02, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
116 1.4 scottr 0x00, 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
117 1.4 scottr 0x02, 0x02, 0x02, 0x04, 0xff, 0x00, 0xff, 0xff,
118 1.4 scottr 0x01, 0x01, 0x03, 0x02, 0xff, 0xff, 0xff, 0xff,
119 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
120 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
121 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
122 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
123 1.4 scottr 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
124 1.4 scottr 0x01, 0x01, 0xff, 0xff, 0x00, 0x00, 0xff, 0xff,
125 1.4 scottr 0xff, 0x04, 0x00, 0xff, 0xff, 0xff, 0xff, 0xff,
126 1.4 scottr 0x03, 0xff, 0x00, 0xff, 0x00, 0xff, 0xff, 0x00,
127 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
128 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff
129 1.1 scottr };
130 1.1 scottr
131 1.1 scottr /* these values shows that number of data returned after 'receive' cmd is sent */
132 1.1 scottr char pm_receive_cmd_type[] = {
133 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
134 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
135 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
136 1.4 scottr 0x02, 0x02, 0xff, 0xff, 0xff, 0xff, 0xff, 0x00,
137 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
138 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
139 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
140 1.4 scottr 0x05, 0x15, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
141 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
142 1.4 scottr 0x02, 0x02, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
143 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
144 1.4 scottr 0x02, 0x00, 0x03, 0x03, 0xff, 0xff, 0xff, 0xff,
145 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
146 1.4 scottr 0x04, 0x04, 0x03, 0x09, 0xff, 0xff, 0xff, 0xff,
147 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
148 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x01, 0x01,
149 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
150 1.4 scottr 0x06, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
151 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
152 1.4 scottr 0x02, 0x02, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
153 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
154 1.4 scottr 0x02, 0x00, 0x00, 0x00, 0xff, 0xff, 0xff, 0xff,
155 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
156 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
157 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
158 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
159 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
160 1.4 scottr 0x02, 0x02, 0xff, 0xff, 0x02, 0xff, 0xff, 0xff,
161 1.4 scottr 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00,
162 1.4 scottr 0xff, 0xff, 0x02, 0xff, 0xff, 0xff, 0xff, 0x00,
163 1.4 scottr 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
164 1.4 scottr 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
165 1.1 scottr };
166 1.1 scottr
167 1.1 scottr
168 1.1 scottr /*
169 1.1 scottr * Define the private functions
170 1.1 scottr */
171 1.1 scottr
172 1.1 scottr /* for debugging */
173 1.3 scottr #ifdef ADB_DEBUG
174 1.25 christos void pm_printerr(const char *, int, int, char *);
175 1.1 scottr #endif
176 1.1 scottr
177 1.23 chs int pm_wait_busy(int);
178 1.23 chs int pm_wait_free(int);
179 1.1 scottr
180 1.1 scottr /* these functions are for the PB1XX series */
181 1.23 chs int pm_receive_pm1(u_char *);
182 1.23 chs int pm_send_pm1(u_char, int);
183 1.23 chs int pm_pmgrop_pm1(PMData *);
184 1.23 chs void pm_intr_pm1(void *);
185 1.1 scottr
186 1.1 scottr /* these functions are for the PB Duo series and the PB 5XX series */
187 1.23 chs int pm_receive_pm2(u_char *);
188 1.23 chs int pm_send_pm2(u_char);
189 1.23 chs int pm_pmgrop_pm2(PMData *);
190 1.23 chs void pm_intr_pm2(void *);
191 1.1 scottr
192 1.1 scottr /* this function is MRG-Based (for testing) */
193 1.23 chs int pm_pmgrop_mrg(PMData *);
194 1.1 scottr
195 1.1 scottr /* these functions are called from adb_direct.c */
196 1.23 chs void pm_setup_adb(void);
197 1.23 chs void pm_check_adb_devices(int);
198 1.23 chs void pm_intr(void *);
199 1.23 chs int pm_adb_op(u_char *, void *, void *, int);
200 1.23 chs void pm_hw_setup(void);
201 1.1 scottr
202 1.1 scottr /* these functions also use the variables of adb_direct.c */
203 1.23 chs void pm_adb_get_TALK_result(PMData *);
204 1.23 chs void pm_adb_get_ADB_data(PMData *);
205 1.23 chs void pm_adb_poll_next_device_pm1(PMData *);
206 1.1 scottr
207 1.1 scottr
208 1.1 scottr /*
209 1.1 scottr * These variables are in adb_direct.c.
210 1.1 scottr */
211 1.1 scottr extern u_char *adbBuffer; /* pointer to user data area */
212 1.1 scottr extern void *adbCompRout; /* pointer to the completion routine */
213 1.1 scottr extern void *adbCompData; /* pointer to the completion routine data */
214 1.1 scottr extern int adbWaiting; /* waiting for return data from the device */
215 1.1 scottr extern int adbWaitingCmd; /* ADB command we are waiting for */
216 1.1 scottr extern int adbStarting; /* doing ADB reinit, so do "polling" differently */
217 1.1 scottr
218 1.5 scottr #define ADB_MAX_MSG_LENGTH 16
219 1.5 scottr #define ADB_MAX_HDR_LENGTH 8
220 1.5 scottr struct adbCommand {
221 1.5 scottr u_char header[ADB_MAX_HDR_LENGTH]; /* not used yet */
222 1.5 scottr u_char data[ADB_MAX_MSG_LENGTH]; /* packet data only */
223 1.5 scottr u_char *saveBuf; /* where to save result */
224 1.5 scottr u_char *compRout; /* completion routine pointer */
225 1.5 scottr u_char *compData; /* completion routine data pointer */
226 1.5 scottr u_int cmd; /* the original command for this data */
227 1.5 scottr u_int unsol; /* 1 if packet was unsolicited */
228 1.5 scottr u_int ack_only; /* 1 for no special processing */
229 1.5 scottr };
230 1.23 chs extern void adb_pass_up(struct adbCommand *);
231 1.5 scottr
232 1.3 scottr #ifdef ADB_DEBUG
233 1.1 scottr /*
234 1.1 scottr * This function dumps contents of the PMData
235 1.1 scottr */
236 1.1 scottr void
237 1.25 christos pm_printerr(const char *ttl, int rval, int num, char *data)
238 1.1 scottr {
239 1.1 scottr int i;
240 1.1 scottr
241 1.4 scottr printf("pm: %s:%04x %02x ", ttl, rval, num);
242 1.4 scottr for (i = 0; i < num; i++)
243 1.4 scottr printf("%02x ", data[i]);
244 1.4 scottr printf("\n");
245 1.1 scottr }
246 1.1 scottr #endif
247 1.1 scottr
248 1.1 scottr
249 1.1 scottr
250 1.1 scottr /*
251 1.1 scottr * Check the hardware type of the Power Manager
252 1.1 scottr */
253 1.1 scottr void
254 1.23 chs pm_setup_adb(void)
255 1.1 scottr {
256 1.1 scottr switch (mac68k_machine.machineid) {
257 1.1 scottr case MACH_MACPB140:
258 1.1 scottr case MACH_MACPB145:
259 1.1 scottr case MACH_MACPB160:
260 1.1 scottr case MACH_MACPB165:
261 1.1 scottr case MACH_MACPB165C:
262 1.1 scottr case MACH_MACPB170:
263 1.1 scottr case MACH_MACPB180:
264 1.1 scottr case MACH_MACPB180C:
265 1.1 scottr pmHardware = PM_HW_PB1XX;
266 1.35 nat
267 1.35 nat memset(&pbutton, 0, sizeof(struct sysmon_pswitch));
268 1.35 nat pbutton.smpsw_name = "PB";
269 1.35 nat pbutton.smpsw_type = PSWITCH_TYPE_POWER;
270 1.35 nat if (sysmon_pswitch_register(&pbutton) != 0)
271 1.35 nat printf("Unable to register soft power\n");
272 1.1 scottr break;
273 1.19 shiba case MACH_MACPB150:
274 1.1 scottr case MACH_MACPB210:
275 1.1 scottr case MACH_MACPB230:
276 1.1 scottr case MACH_MACPB250:
277 1.1 scottr case MACH_MACPB270:
278 1.1 scottr case MACH_MACPB280:
279 1.1 scottr case MACH_MACPB280C:
280 1.1 scottr case MACH_MACPB500:
281 1.21 shiba case MACH_MACPB190:
282 1.21 shiba case MACH_MACPB190CS:
283 1.1 scottr pmHardware = PM_HW_PB5XX;
284 1.35 nat #if notyet
285 1.35 nat memset(&pbutton, 0, sizeof(struct sysmon_pswitch));
286 1.35 nat pbutton.smpsw_name = "PB";
287 1.35 nat pbutton.smpsw_type = PSWITCH_TYPE_POWER;
288 1.35 nat if (sysmon_pswitch_register(&pbutton) != 0)
289 1.35 nat printf("Unable to register soft power\n");
290 1.35 nat #endif
291 1.1 scottr break;
292 1.1 scottr default:
293 1.1 scottr break;
294 1.1 scottr }
295 1.1 scottr }
296 1.1 scottr
297 1.1 scottr
298 1.1 scottr /*
299 1.1 scottr * Check the existent ADB devices
300 1.1 scottr */
301 1.1 scottr void
302 1.23 chs pm_check_adb_devices(int id)
303 1.1 scottr {
304 1.1 scottr u_short ed = 0x1;
305 1.1 scottr
306 1.1 scottr ed <<= id;
307 1.1 scottr pm_existent_ADB_devices |= ed;
308 1.1 scottr }
309 1.1 scottr
310 1.1 scottr
311 1.1 scottr /*
312 1.1 scottr * Wait until PM IC is busy
313 1.1 scottr */
314 1.1 scottr int
315 1.24 jmc pm_wait_busy(int xdelay)
316 1.1 scottr {
317 1.4 scottr while (PM_IS_ON) {
318 1.1 scottr #ifdef PM_GRAB_SI
319 1.15 scottr (void)intr_dispatch(0x70); /* grab any serial interrupts */
320 1.1 scottr #endif
321 1.24 jmc if ((--xdelay) < 0)
322 1.5 scottr return 1; /* timeout */
323 1.1 scottr }
324 1.5 scottr return 0;
325 1.1 scottr }
326 1.1 scottr
327 1.1 scottr
328 1.1 scottr /*
329 1.1 scottr * Wait until PM IC is free
330 1.1 scottr */
331 1.1 scottr int
332 1.24 jmc pm_wait_free(int xdelay)
333 1.1 scottr {
334 1.4 scottr while (PM_IS_OFF) {
335 1.1 scottr #ifdef PM_GRAB_SI
336 1.15 scottr (void)intr_dispatch(0x70); /* grab any serial interrupts */
337 1.1 scottr #endif
338 1.24 jmc if ((--xdelay) < 0)
339 1.5 scottr return 0; /* timeout */
340 1.1 scottr }
341 1.5 scottr return 1;
342 1.1 scottr }
343 1.1 scottr
344 1.1 scottr
345 1.1 scottr
346 1.1 scottr /*
347 1.1 scottr * Functions for the PB1XX series
348 1.1 scottr */
349 1.1 scottr
350 1.1 scottr /*
351 1.1 scottr * Receive data from PM for the PB1XX series
352 1.1 scottr */
353 1.1 scottr int
354 1.23 chs pm_receive_pm1(u_char *data)
355 1.1 scottr {
356 1.1 scottr int rval = 0xffffcd34;
357 1.1 scottr
358 1.1 scottr via_reg(VIA2, vDirA) = 0x00;
359 1.1 scottr
360 1.4 scottr switch (1) {
361 1.1 scottr default:
362 1.4 scottr if (pm_wait_busy(0x40) != 0)
363 1.1 scottr break; /* timeout */
364 1.1 scottr
365 1.1 scottr PM_SET_STATE_ACKOFF();
366 1.1 scottr *data = via_reg(VIA2, 0x200);
367 1.1 scottr
368 1.1 scottr rval = 0xffffcd33;
369 1.4 scottr if (pm_wait_free(0x40) == 0)
370 1.1 scottr break; /* timeout */
371 1.1 scottr
372 1.1 scottr rval = 0x00;
373 1.1 scottr break;
374 1.1 scottr }
375 1.1 scottr
376 1.1 scottr PM_SET_STATE_ACKON();
377 1.1 scottr via_reg(VIA2, vDirA) = 0x00;
378 1.1 scottr
379 1.5 scottr return rval;
380 1.1 scottr }
381 1.1 scottr
382 1.1 scottr
383 1.1 scottr
384 1.1 scottr /*
385 1.1 scottr * Send data to PM for the PB1XX series
386 1.1 scottr */
387 1.1 scottr int
388 1.23 chs pm_send_pm1(u_char data, int timo)
389 1.1 scottr {
390 1.4 scottr int rval;
391 1.1 scottr
392 1.1 scottr via_reg(VIA2, vDirA) = 0xff;
393 1.1 scottr via_reg(VIA2, 0x200) = data;
394 1.1 scottr
395 1.1 scottr PM_SET_STATE_ACKOFF();
396 1.14 scottr #if 0
397 1.14 scottr if (pm_wait_busy(0x400) == 0) {
398 1.14 scottr #else
399 1.14 scottr if (pm_wait_busy(timo) == 0) {
400 1.14 scottr #endif
401 1.1 scottr PM_SET_STATE_ACKON();
402 1.14 scottr if (pm_wait_free(0x40) != 0)
403 1.14 scottr rval = 0x0;
404 1.14 scottr else
405 1.14 scottr rval = 0xffffcd35;
406 1.14 scottr } else {
407 1.14 scottr rval = 0xffffcd36;
408 1.1 scottr }
409 1.1 scottr
410 1.1 scottr PM_SET_STATE_ACKON();
411 1.1 scottr via_reg(VIA2, vDirA) = 0x00;
412 1.1 scottr
413 1.5 scottr return rval;
414 1.1 scottr }
415 1.1 scottr
416 1.1 scottr
417 1.1 scottr /*
418 1.1 scottr * My PMgrOp routine for the PB1XX series
419 1.1 scottr */
420 1.1 scottr int
421 1.23 chs pm_pmgrop_pm1(PMData *pmdata)
422 1.1 scottr {
423 1.4 scottr int i;
424 1.4 scottr int s = 0x81815963;
425 1.4 scottr u_char via1_vIER, via1_vDirA;
426 1.4 scottr int rval = 0;
427 1.4 scottr int num_pm_data = 0;
428 1.36 riastrad u_char pm_cmd;
429 1.4 scottr u_char pm_data;
430 1.4 scottr u_char *pm_buf;
431 1.1 scottr
432 1.32 andvar /* disable all interrupts but PM */
433 1.1 scottr via1_vIER = via_reg(VIA1, vIER);
434 1.1 scottr PM_VIA_INTR_DISABLE();
435 1.1 scottr
436 1.1 scottr via1_vDirA = via_reg(VIA1, vDirA);
437 1.1 scottr
438 1.4 scottr switch (pmdata->command) {
439 1.1 scottr default:
440 1.4 scottr for (i = 0; i < 7; i++) {
441 1.36 riastrad via_reg(VIA2, vDirA) = 0x00;
442 1.1 scottr
443 1.1 scottr /* wait until PM is free */
444 1.4 scottr if (pm_wait_free(ADBDelay) == 0) { /* timeout */
445 1.1 scottr via_reg(VIA2, vDirA) = 0x00;
446 1.1 scottr /* restore formar value */
447 1.1 scottr via_reg(VIA1, vDirA) = via1_vDirA;
448 1.1 scottr via_reg(VIA1, vIER) = via1_vIER;
449 1.5 scottr return 0xffffcd38;
450 1.1 scottr }
451 1.1 scottr
452 1.4 scottr switch (mac68k_machine.machineid) {
453 1.1 scottr case MACH_MACPB160:
454 1.1 scottr case MACH_MACPB165:
455 1.1 scottr case MACH_MACPB165C:
456 1.8 scottr case MACH_MACPB170:
457 1.1 scottr case MACH_MACPB180:
458 1.1 scottr case MACH_MACPB180C:
459 1.1 scottr {
460 1.24 jmc int xdelay = ADBDelay * 16;
461 1.1 scottr
462 1.1 scottr via_reg(VIA2, vDirA) = 0x00;
463 1.24 jmc while ((via_reg(VIA2, 0x200) == 0x7f) && (xdelay >= 0))
464 1.24 jmc xdelay--;
465 1.1 scottr
466 1.24 jmc if (xdelay < 0) { /* timeout */
467 1.1 scottr via_reg(VIA2, vDirA) = 0x00;
468 1.1 scottr /* restore formar value */
469 1.1 scottr via_reg(VIA1, vIER) = via1_vIER;
470 1.5 scottr return 0xffffcd38;
471 1.1 scottr }
472 1.1 scottr }
473 1.1 scottr } /* end switch */
474 1.1 scottr
475 1.4 scottr s = splhigh();
476 1.1 scottr
477 1.1 scottr via1_vDirA = via_reg(VIA1, vDirA);
478 1.1 scottr via_reg(VIA1, vDirA) &= 0x7f;
479 1.1 scottr
480 1.1 scottr pm_cmd = (u_char)(pmdata->command & 0xff);
481 1.4 scottr if ((rval = pm_send_pm1(pm_cmd, ADBDelay * 8)) == 0)
482 1.4 scottr break; /* send command succeeded */
483 1.1 scottr
484 1.1 scottr via_reg(VIA1, vDirA) = via1_vDirA;
485 1.1 scottr splx(s);
486 1.1 scottr } /* end for */
487 1.1 scottr
488 1.1 scottr /* failed to send a command */
489 1.1 scottr if (i == 7) {
490 1.1 scottr via_reg(VIA2, vDirA) = 0x00;
491 1.1 scottr /* restore formar value */
492 1.1 scottr via_reg(VIA1, vDirA) = via1_vDirA;
493 1.1 scottr via_reg(VIA1, vIER) = via1_vIER;
494 1.13 scottr if (s != 0x81815963)
495 1.13 scottr splx(s);
496 1.13 scottr return 0xffffcd38;
497 1.1 scottr }
498 1.1 scottr
499 1.1 scottr /* send # of PM data */
500 1.1 scottr num_pm_data = pmdata->num_data;
501 1.4 scottr if ((rval = pm_send_pm1((u_char)(num_pm_data & 0xff), ADBDelay * 8)) != 0)
502 1.1 scottr break; /* timeout */
503 1.1 scottr
504 1.1 scottr /* send PM data */
505 1.1 scottr pm_buf = (u_char *)pmdata->s_buf;
506 1.4 scottr for (i = 0; i < num_pm_data; i++)
507 1.4 scottr if ((rval = pm_send_pm1(pm_buf[i], ADBDelay * 8)) != 0)
508 1.4 scottr break; /* timeout */
509 1.1 scottr if ((i != num_pm_data) && (num_pm_data != 0))
510 1.4 scottr break; /* timeout */
511 1.1 scottr
512 1.1 scottr /* Will PM IC return data? */
513 1.1 scottr if ((pm_cmd & 0x08) == 0) {
514 1.1 scottr rval = 0;
515 1.4 scottr break; /* no returned data */
516 1.1 scottr }
517 1.1 scottr
518 1.1 scottr rval = 0xffffcd37;
519 1.4 scottr if (pm_wait_busy(ADBDelay) != 0)
520 1.1 scottr break; /* timeout */
521 1.1 scottr
522 1.1 scottr /* receive PM command */
523 1.4 scottr if ((rval = pm_receive_pm1(&pm_data)) != 0)
524 1.1 scottr break;
525 1.1 scottr
526 1.1 scottr pmdata->command = pm_data;
527 1.1 scottr
528 1.1 scottr /* receive number of PM data */
529 1.4 scottr if ((rval = pm_receive_pm1(&pm_data)) != 0)
530 1.4 scottr break; /* timeout */
531 1.1 scottr num_pm_data = pm_data;
532 1.1 scottr pmdata->num_data = num_pm_data;
533 1.1 scottr
534 1.1 scottr /* receive PM data */
535 1.1 scottr pm_buf = (u_char *)pmdata->r_buf;
536 1.4 scottr for (i = 0; i < num_pm_data; i++) {
537 1.4 scottr if ((rval = pm_receive_pm1(&pm_data)) != 0)
538 1.12 scottr break; /* timeout */
539 1.1 scottr pm_buf[i] = pm_data;
540 1.1 scottr }
541 1.1 scottr
542 1.1 scottr rval = 0;
543 1.1 scottr }
544 1.1 scottr
545 1.36 riastrad via_reg(VIA2, vDirA) = 0x00;
546 1.1 scottr
547 1.1 scottr /* restore formar value */
548 1.1 scottr via_reg(VIA1, vDirA) = via1_vDirA;
549 1.1 scottr via_reg(VIA1, vIER) = via1_vIER;
550 1.1 scottr if (s != 0x81815963)
551 1.1 scottr splx(s);
552 1.1 scottr
553 1.5 scottr return rval;
554 1.1 scottr }
555 1.1 scottr
556 1.1 scottr
557 1.1 scottr /*
558 1.5 scottr * My PM interrupt routine for PB1XX series
559 1.1 scottr */
560 1.1 scottr void
561 1.23 chs pm_intr_pm1(void *arg)
562 1.1 scottr {
563 1.4 scottr int s;
564 1.4 scottr int rval;
565 1.4 scottr PMData pmdata;
566 1.1 scottr
567 1.1 scottr s = splhigh();
568 1.1 scottr
569 1.1 scottr PM_VIA_CLR_INTR(); /* clear VIA1 interrupt */
570 1.1 scottr
571 1.30 andvar /* ask PM what happened */
572 1.1 scottr pmdata.command = 0x78;
573 1.1 scottr pmdata.num_data = 0;
574 1.1 scottr pmdata.data[0] = pmdata.data[1] = 0;
575 1.1 scottr pmdata.s_buf = &pmdata.data[2];
576 1.1 scottr pmdata.r_buf = &pmdata.data[2];
577 1.4 scottr rval = pm_pmgrop_pm1(&pmdata);
578 1.1 scottr if (rval != 0) {
579 1.3 scottr #ifdef ADB_DEBUG
580 1.3 scottr if (adb_debug)
581 1.3 scottr printf("pm: PM is not ready. error code=%08x\n", rval);
582 1.1 scottr #endif
583 1.1 scottr splx(s);
584 1.31 nat return;
585 1.1 scottr }
586 1.1 scottr
587 1.1 scottr if ((pmdata.data[2] & 0x10) == 0x10) {
588 1.4 scottr if ((pmdata.data[2] & 0x0f) == 0) {
589 1.4 scottr /* ADB data that were requested by TALK command */
590 1.1 scottr pm_adb_get_TALK_result(&pmdata);
591 1.4 scottr } else if ((pmdata.data[2] & 0x08) == 0x8) {
592 1.4 scottr /* PM is requesting to poll */
593 1.1 scottr pm_adb_poll_next_device_pm1(&pmdata);
594 1.4 scottr } else if ((pmdata.data[2] & 0x04) == 0x4) {
595 1.4 scottr /* ADB device event */
596 1.1 scottr pm_adb_get_ADB_data(&pmdata);
597 1.1 scottr }
598 1.35 nat } else if ((pmdata.num_data == 0x1) && (pmdata.data[0] == 0)) {
599 1.35 nat /* PowerBook 160/180 Power button. */
600 1.35 nat sysmon_pswitch_event(&pbutton, PSWITCH_EVENT_PRESSED);
601 1.1 scottr } else {
602 1.3 scottr #ifdef ADB_DEBUG
603 1.3 scottr if (adb_debug)
604 1.3 scottr pm_printerr("driver does not supported this event.",
605 1.3 scottr rval, pmdata.num_data, pmdata.data);
606 1.1 scottr #endif
607 1.1 scottr }
608 1.1 scottr
609 1.1 scottr splx(s);
610 1.1 scottr }
611 1.1 scottr
612 1.1 scottr
613 1.1 scottr
614 1.1 scottr /*
615 1.1 scottr * Functions for the PB Duo series and the PB 5XX series
616 1.1 scottr */
617 1.1 scottr
618 1.1 scottr /*
619 1.1 scottr * Receive data from PM for the PB Duo series and the PB 5XX series
620 1.1 scottr */
621 1.1 scottr int
622 1.23 chs pm_receive_pm2(u_char *data)
623 1.1 scottr {
624 1.4 scottr int rval;
625 1.1 scottr
626 1.1 scottr rval = 0xffffcd34;
627 1.1 scottr
628 1.4 scottr switch (1) {
629 1.1 scottr default:
630 1.1 scottr /* set VIA SR to input mode */
631 1.1 scottr via_reg(VIA1, vACR) |= 0x0c;
632 1.1 scottr via_reg(VIA1, vACR) &= ~0x10;
633 1.29 martin PM_SR();
634 1.1 scottr
635 1.1 scottr PM_SET_STATE_ACKOFF();
636 1.1 scottr if (pm_wait_busy((int)ADBDelay*32) != 0)
637 1.1 scottr break; /* timeout */
638 1.1 scottr
639 1.1 scottr PM_SET_STATE_ACKON();
640 1.1 scottr rval = 0xffffcd33;
641 1.1 scottr if (pm_wait_free((int)ADBDelay*32) == 0)
642 1.1 scottr break; /* timeout */
643 1.1 scottr
644 1.1 scottr *data = PM_SR();
645 1.1 scottr rval = 0;
646 1.1 scottr
647 1.1 scottr break;
648 1.1 scottr }
649 1.1 scottr
650 1.1 scottr PM_SET_STATE_ACKON();
651 1.1 scottr via_reg(VIA1, vACR) |= 0x1c;
652 1.1 scottr
653 1.5 scottr return rval;
654 1.36 riastrad }
655 1.1 scottr
656 1.1 scottr
657 1.1 scottr
658 1.1 scottr /*
659 1.1 scottr * Send data to PM for the PB Duo series and the PB 5XX series
660 1.1 scottr */
661 1.1 scottr int
662 1.23 chs pm_send_pm2(u_char data)
663 1.1 scottr {
664 1.4 scottr int rval;
665 1.1 scottr
666 1.1 scottr via_reg(VIA1, vACR) |= 0x1c;
667 1.1 scottr PM_SR() = data;
668 1.1 scottr
669 1.1 scottr PM_SET_STATE_ACKOFF();
670 1.14 scottr if (pm_wait_busy((int)ADBDelay*32) == 0) {
671 1.1 scottr PM_SET_STATE_ACKON();
672 1.14 scottr if (pm_wait_free((int)ADBDelay*32) != 0)
673 1.14 scottr rval = 0;
674 1.14 scottr else
675 1.14 scottr rval = 0xffffcd35;
676 1.14 scottr } else {
677 1.14 scottr rval = 0xffffcd36;
678 1.1 scottr }
679 1.1 scottr
680 1.1 scottr PM_SET_STATE_ACKON();
681 1.1 scottr via_reg(VIA1, vACR) |= 0x1c;
682 1.1 scottr
683 1.5 scottr return rval;
684 1.1 scottr }
685 1.1 scottr
686 1.1 scottr
687 1.1 scottr
688 1.1 scottr /*
689 1.1 scottr * My PMgrOp routine for the PB Duo series and the PB 5XX series
690 1.1 scottr */
691 1.1 scottr int
692 1.23 chs pm_pmgrop_pm2(PMData *pmdata)
693 1.1 scottr {
694 1.4 scottr int i;
695 1.4 scottr int s;
696 1.4 scottr u_char via1_vIER;
697 1.4 scottr int rval = 0;
698 1.4 scottr int num_pm_data = 0;
699 1.36 riastrad u_char pm_cmd;
700 1.4 scottr short pm_num_rx_data;
701 1.4 scottr u_char pm_data;
702 1.4 scottr u_char *pm_buf;
703 1.1 scottr
704 1.4 scottr s = splhigh();
705 1.1 scottr
706 1.32 andvar /* disable all interrupts but PM */
707 1.1 scottr via1_vIER = 0x10;
708 1.1 scottr via1_vIER &= via_reg(VIA1, vIER);
709 1.1 scottr via_reg(VIA1, vIER) = via1_vIER;
710 1.1 scottr if (via1_vIER != 0x0)
711 1.1 scottr via1_vIER |= 0x80;
712 1.1 scottr
713 1.4 scottr switch (pmdata->command) {
714 1.1 scottr default:
715 1.1 scottr /* wait until PM is free */
716 1.1 scottr pm_cmd = (u_char)(pmdata->command & 0xff);
717 1.1 scottr rval = 0xcd38;
718 1.4 scottr if (pm_wait_free(ADBDelay * 4) == 0)
719 1.1 scottr break; /* timeout */
720 1.1 scottr
721 1.36 riastrad if (HwCfgFlags3 & 0x00200000) {
722 1.4 scottr /* PB 160, PB 165(c), PB 180(c)? */
723 1.24 jmc int xdelay = ADBDelay * 16;
724 1.1 scottr
725 1.1 scottr via_reg(VIA2, vDirA) = 0x00;
726 1.4 scottr while ((via_reg(VIA2, 0x200) == 0x07) &&
727 1.24 jmc (xdelay >= 0))
728 1.24 jmc xdelay--;
729 1.1 scottr
730 1.24 jmc if (xdelay < 0) {
731 1.1 scottr rval = 0xffffcd38;
732 1.1 scottr break; /* timeout */
733 1.1 scottr }
734 1.1 scottr }
735 1.1 scottr
736 1.1 scottr /* send PM command */
737 1.4 scottr if ((rval = pm_send_pm2((u_char)(pm_cmd & 0xff))))
738 1.1 scottr break; /* timeout */
739 1.1 scottr
740 1.1 scottr /* send number of PM data */
741 1.1 scottr num_pm_data = pmdata->num_data;
742 1.1 scottr if (HwCfgFlags3 & 0x00020000) { /* PB Duo, PB 5XX */
743 1.1 scottr if (pm_send_cmd_type[pm_cmd] < 0) {
744 1.4 scottr if ((rval = pm_send_pm2((u_char)(num_pm_data & 0xff))) != 0)
745 1.1 scottr break; /* timeout */
746 1.1 scottr pmdata->command = 0;
747 1.1 scottr }
748 1.1 scottr } else { /* PB 1XX series ? */
749 1.4 scottr if ((rval = pm_send_pm2((u_char)(num_pm_data & 0xff))) != 0)
750 1.1 scottr break; /* timeout */
751 1.36 riastrad }
752 1.1 scottr /* send PM data */
753 1.1 scottr pm_buf = (u_char *)pmdata->s_buf;
754 1.4 scottr for (i = 0 ; i < num_pm_data; i++)
755 1.4 scottr if ((rval = pm_send_pm2(pm_buf[i])) != 0)
756 1.1 scottr break; /* timeout */
757 1.1 scottr if (i != num_pm_data)
758 1.1 scottr break; /* timeout */
759 1.1 scottr
760 1.1 scottr
761 1.1 scottr /* check if PM will send me data */
762 1.1 scottr pm_num_rx_data = pm_receive_cmd_type[pm_cmd];
763 1.1 scottr pmdata->num_data = pm_num_rx_data;
764 1.1 scottr if (pm_num_rx_data == 0) {
765 1.1 scottr rval = 0;
766 1.1 scottr break; /* no return data */
767 1.1 scottr }
768 1.1 scottr
769 1.1 scottr /* receive PM command */
770 1.1 scottr pm_data = pmdata->command;
771 1.1 scottr if (HwCfgFlags3 & 0x00020000) { /* PB Duo, PB 5XX */
772 1.1 scottr pm_num_rx_data--;
773 1.1 scottr if (pm_num_rx_data == 0)
774 1.4 scottr if ((rval = pm_receive_pm2(&pm_data)) != 0) {
775 1.1 scottr rval = 0xffffcd37;
776 1.1 scottr break;
777 1.1 scottr }
778 1.1 scottr pmdata->command = pm_data;
779 1.1 scottr } else { /* PB 1XX series ? */
780 1.4 scottr if ((rval = pm_receive_pm2(&pm_data)) != 0) {
781 1.1 scottr rval = 0xffffcd37;
782 1.1 scottr break;
783 1.1 scottr }
784 1.1 scottr pmdata->command = pm_data;
785 1.1 scottr }
786 1.1 scottr
787 1.1 scottr /* receive number of PM data */
788 1.1 scottr if (HwCfgFlags3 & 0x00020000) { /* PB Duo, PB 5XX */
789 1.1 scottr if (pm_num_rx_data < 0) {
790 1.4 scottr if ((rval = pm_receive_pm2(&pm_data)) != 0)
791 1.1 scottr break; /* timeout */
792 1.1 scottr num_pm_data = pm_data;
793 1.1 scottr } else
794 1.1 scottr num_pm_data = pm_num_rx_data;
795 1.1 scottr pmdata->num_data = num_pm_data;
796 1.1 scottr } else { /* PB 1XX serias ? */
797 1.4 scottr if ((rval = pm_receive_pm2(&pm_data)) != 0)
798 1.1 scottr break; /* timeout */
799 1.1 scottr num_pm_data = pm_data;
800 1.1 scottr pmdata->num_data = num_pm_data;
801 1.1 scottr }
802 1.1 scottr
803 1.1 scottr /* receive PM data */
804 1.1 scottr pm_buf = (u_char *)pmdata->r_buf;
805 1.4 scottr for (i = 0; i < num_pm_data; i++) {
806 1.4 scottr if ((rval = pm_receive_pm2(&pm_data)) != 0)
807 1.1 scottr break; /* timeout */
808 1.1 scottr pm_buf[i] = pm_data;
809 1.1 scottr }
810 1.1 scottr
811 1.1 scottr rval = 0;
812 1.1 scottr }
813 1.1 scottr
814 1.1 scottr /* restore former value */
815 1.1 scottr via_reg(VIA1, vIER) = via1_vIER;
816 1.1 scottr splx(s);
817 1.1 scottr
818 1.5 scottr return rval;
819 1.1 scottr }
820 1.1 scottr
821 1.1 scottr
822 1.1 scottr /*
823 1.1 scottr * My PM interrupt routine for the PB Duo series and the PB 5XX series
824 1.1 scottr */
825 1.1 scottr void
826 1.23 chs pm_intr_pm2(void *arg)
827 1.1 scottr {
828 1.4 scottr int s;
829 1.4 scottr int rval;
830 1.4 scottr PMData pmdata;
831 1.1 scottr
832 1.1 scottr s = splhigh();
833 1.1 scottr
834 1.4 scottr PM_VIA_CLR_INTR(); /* clear VIA1 interrupt */
835 1.30 andvar /* ask PM what happened */
836 1.1 scottr pmdata.command = 0x78;
837 1.1 scottr pmdata.num_data = 0;
838 1.1 scottr pmdata.s_buf = &pmdata.data[2];
839 1.1 scottr pmdata.r_buf = &pmdata.data[2];
840 1.4 scottr rval = pm_pmgrop_pm2(&pmdata);
841 1.1 scottr if (rval != 0) {
842 1.3 scottr #ifdef ADB_DEBUG
843 1.3 scottr if (adb_debug)
844 1.3 scottr printf("pm: PM is not ready. error code: %08x\n", rval);
845 1.1 scottr #endif
846 1.1 scottr splx(s);
847 1.31 nat return;
848 1.1 scottr }
849 1.1 scottr
850 1.4 scottr switch ((u_int)(pmdata.data[2] & 0xff)) {
851 1.4 scottr case 0x00: /* 1 sec interrupt? */
852 1.1 scottr break;
853 1.4 scottr case 0x80: /* 1 sec interrupt? */
854 1.1 scottr pm_counter++;
855 1.1 scottr break;
856 1.4 scottr case 0x08: /* Brightness/Contrast button on LCD panel */
857 1.1 scottr /* get brightness and contrast of the LCD */
858 1.1 scottr pm_LCD_brightness = (u_int)pmdata.data[3] & 0xff;
859 1.1 scottr pm_LCD_contrast = (u_int)pmdata.data[4] & 0xff;
860 1.1 scottr /*
861 1.4 scottr pm_printerr("#08", rval, pmdata.num_data, pmdata.data);
862 1.1 scottr pmdata.command = 0x33;
863 1.1 scottr pmdata.num_data = 1;
864 1.1 scottr pmdata.s_buf = pmdata.data;
865 1.1 scottr pmdata.r_buf = pmdata.data;
866 1.1 scottr pmdata.data[0] = pm_LCD_contrast;
867 1.4 scottr rval = pm_pmgrop_pm2(&pmdata);
868 1.4 scottr pm_printerr("#33", rval, pmdata.num_data, pmdata.data);
869 1.1 scottr */
870 1.33 nat pm_LCD_brightness =
871 1.33 nat pm_set_brightness(pm_LCD_brightness);
872 1.1 scottr break;
873 1.4 scottr case 0x10: /* ADB data that were requested by TALK command */
874 1.1 scottr case 0x14:
875 1.1 scottr pm_adb_get_TALK_result(&pmdata);
876 1.1 scottr break;
877 1.4 scottr case 0x16: /* ADB device event */
878 1.1 scottr case 0x18:
879 1.1 scottr case 0x1e:
880 1.1 scottr pm_adb_get_ADB_data(&pmdata);
881 1.1 scottr break;
882 1.1 scottr default:
883 1.3 scottr #ifdef ADB_DEBUG
884 1.3 scottr if (adb_debug)
885 1.3 scottr pm_printerr("driver does not supported this event.",
886 1.3 scottr pmdata.data[2], pmdata.num_data,
887 1.3 scottr pmdata.data);
888 1.1 scottr #endif
889 1.1 scottr break;
890 1.1 scottr }
891 1.1 scottr
892 1.1 scottr splx(s);
893 1.1 scottr }
894 1.1 scottr
895 1.1 scottr
896 1.1 scottr /*
897 1.1 scottr * MRG-based PMgrOp routine
898 1.1 scottr */
899 1.1 scottr int
900 1.23 chs pm_pmgrop_mrg(PMData *pmdata)
901 1.1 scottr {
902 1.1 scottr u_int32_t rval=0;
903 1.1 scottr
904 1.27 perry __asm volatile(
905 1.20 thorpej " movl %1,%%a0 \n"
906 1.20 thorpej " .word 0xa085 \n"
907 1.20 thorpej " movl %%d0,%0"
908 1.1 scottr : "=g" (rval)
909 1.1 scottr : "g" (pmdata)
910 1.18 chs : "a0","d0");
911 1.1 scottr
912 1.1 scottr return rval;
913 1.1 scottr }
914 1.1 scottr
915 1.1 scottr
916 1.1 scottr /*
917 1.1 scottr * My PMgrOp routine
918 1.1 scottr */
919 1.1 scottr int
920 1.23 chs pmgrop(PMData *pmdata)
921 1.1 scottr {
922 1.4 scottr switch (pmHardware) {
923 1.1 scottr case PM_HW_PB1XX:
924 1.4 scottr return (pm_pmgrop_pm1(pmdata));
925 1.1 scottr break;
926 1.1 scottr case PM_HW_PB5XX:
927 1.4 scottr return (pm_pmgrop_pm2(pmdata));
928 1.1 scottr break;
929 1.1 scottr default:
930 1.4 scottr /* return (pmgrop_mrg(pmdata)); */
931 1.5 scottr return 1;
932 1.1 scottr }
933 1.1 scottr }
934 1.1 scottr
935 1.1 scottr
936 1.1 scottr /*
937 1.1 scottr * My PM interrupt routine
938 1.1 scottr */
939 1.1 scottr void
940 1.23 chs pm_intr(void *arg)
941 1.1 scottr {
942 1.4 scottr switch (pmHardware) {
943 1.1 scottr case PM_HW_PB1XX:
944 1.9 briggs pm_intr_pm1(arg);
945 1.1 scottr break;
946 1.1 scottr case PM_HW_PB5XX:
947 1.9 briggs pm_intr_pm2(arg);
948 1.1 scottr break;
949 1.1 scottr default:
950 1.1 scottr break;
951 1.1 scottr }
952 1.1 scottr }
953 1.1 scottr
954 1.1 scottr
955 1.9 briggs void
956 1.23 chs pm_hw_setup(void)
957 1.9 briggs {
958 1.9 briggs switch (pmHardware) {
959 1.9 briggs case PM_HW_PB1XX:
960 1.9 briggs via1_register_irq(4, pm_intr_pm1, (void *)0);
961 1.9 briggs PM_VIA_CLR_INTR();
962 1.9 briggs break;
963 1.9 briggs case PM_HW_PB5XX:
964 1.9 briggs via1_register_irq(4, pm_intr_pm2, (void *)0);
965 1.9 briggs PM_VIA_CLR_INTR();
966 1.9 briggs break;
967 1.9 briggs default:
968 1.9 briggs break;
969 1.9 briggs }
970 1.9 briggs }
971 1.9 briggs
972 1.1 scottr
973 1.1 scottr /*
974 1.1 scottr * Synchronous ADBOp routine for the Power Manager
975 1.1 scottr */
976 1.1 scottr int
977 1.23 chs pm_adb_op(u_char *buffer, void *compRout, void *data, int command)
978 1.1 scottr {
979 1.5 scottr int i;
980 1.4 scottr int s;
981 1.4 scottr int rval;
982 1.24 jmc int xdelay;
983 1.4 scottr PMData pmdata;
984 1.5 scottr struct adbCommand packet;
985 1.1 scottr
986 1.1 scottr if (adbWaiting == 1)
987 1.5 scottr return 1;
988 1.1 scottr
989 1.1 scottr s = splhigh();
990 1.1 scottr via_reg(VIA1, vIER) = 0x10;
991 1.1 scottr
992 1.1 scottr adbBuffer = buffer;
993 1.1 scottr adbCompRout = compRout;
994 1.1 scottr adbCompData = data;
995 1.1 scottr
996 1.1 scottr pmdata.command = 0x20;
997 1.1 scottr pmdata.s_buf = pmdata.data;
998 1.1 scottr pmdata.r_buf = pmdata.data;
999 1.1 scottr
1000 1.1 scottr if ((command & 0xc) == 0x8) { /* if the command is LISTEN, add number of ADB data to number of PM data */
1001 1.1 scottr if (buffer != (u_char *)0)
1002 1.1 scottr pmdata.num_data = buffer[0] + 3;
1003 1.1 scottr } else {
1004 1.1 scottr pmdata.num_data = 3;
1005 1.1 scottr }
1006 1.1 scottr
1007 1.1 scottr pmdata.data[0] = (u_char)(command & 0xff);
1008 1.1 scottr pmdata.data[1] = 0;
1009 1.1 scottr if ((command & 0xc) == 0x8) { /* if the command is LISTEN, copy ADB data to PM buffer */
1010 1.1 scottr if ((buffer != (u_char *)0) && (buffer[0] <= 24)) {
1011 1.1 scottr pmdata.data[2] = buffer[0]; /* number of data */
1012 1.4 scottr for (i = 0; i < buffer[0]; i++)
1013 1.1 scottr pmdata.data[3 + i] = buffer[1 + i];
1014 1.1 scottr } else
1015 1.1 scottr pmdata.data[2] = 0;
1016 1.1 scottr } else
1017 1.1 scottr pmdata.data[2] = 0;
1018 1.1 scottr
1019 1.5 scottr if ((command & 0xc) != 0xc) { /* if the command is not TALK */
1020 1.9 briggs /* set up stuff fNULLor adb_pass_up */
1021 1.5 scottr packet.data[0] = 1 + pmdata.data[2];
1022 1.5 scottr packet.data[1] = command;
1023 1.5 scottr for (i = 0; i < pmdata.data[2]; i++)
1024 1.5 scottr packet.data[i+2] = pmdata.data[i+3];
1025 1.5 scottr packet.saveBuf = adbBuffer;
1026 1.5 scottr packet.compRout = adbCompRout;
1027 1.5 scottr packet.compData = adbCompData;
1028 1.5 scottr packet.cmd = command;
1029 1.5 scottr packet.unsol = 0;
1030 1.5 scottr packet.ack_only = 1;
1031 1.10 scottr adb_polling = 1;
1032 1.5 scottr adb_pass_up(&packet);
1033 1.10 scottr adb_polling = 0;
1034 1.5 scottr }
1035 1.5 scottr
1036 1.4 scottr rval = pmgrop(&pmdata);
1037 1.12 scottr if (rval != 0) {
1038 1.12 scottr splx(s);
1039 1.5 scottr return 1;
1040 1.12 scottr }
1041 1.1 scottr
1042 1.5 scottr adbWaiting = 1;
1043 1.5 scottr adbWaitingCmd = command;
1044 1.1 scottr
1045 1.1 scottr PM_VIA_INTR_ENABLE();
1046 1.1 scottr
1047 1.17 wiz /* wait until the PM interrupt has occurred */
1048 1.24 jmc xdelay = 0x80000;
1049 1.4 scottr while (adbWaiting == 1) {
1050 1.15 scottr switch (mac68k_machine.machineid) {
1051 1.19 shiba case MACH_MACPB150:
1052 1.15 scottr case MACH_MACPB210:
1053 1.15 scottr case MACH_MACPB230: /* daishi tested with Duo230 */
1054 1.15 scottr case MACH_MACPB250:
1055 1.15 scottr case MACH_MACPB270:
1056 1.15 scottr case MACH_MACPB280:
1057 1.15 scottr case MACH_MACPB280C:
1058 1.21 shiba case MACH_MACPB190:
1059 1.21 shiba case MACH_MACPB190CS:
1060 1.9 briggs pm_intr((void *)0);
1061 1.15 scottr break;
1062 1.15 scottr default:
1063 1.15 scottr if ((via_reg(VIA1, vIFR) & 0x10) == 0x10)
1064 1.15 scottr pm_intr((void *)0);
1065 1.15 scottr break;
1066 1.15 scottr }
1067 1.1 scottr #ifdef PM_GRAB_SI
1068 1.15 scottr (void)intr_dispatch(0x70); /* grab any serial interrupts */
1069 1.1 scottr #endif
1070 1.24 jmc if ((--xdelay) < 0) {
1071 1.12 scottr splx(s);
1072 1.5 scottr return 1;
1073 1.12 scottr }
1074 1.1 scottr }
1075 1.1 scottr
1076 1.4 scottr /* this command enables the interrupt by operating ADB devices */
1077 1.5 scottr if (HwCfgFlags3 & 0x00020000) { /* PB Duo series, PB 5XX series */
1078 1.1 scottr pmdata.command = 0x20;
1079 1.1 scottr pmdata.num_data = 4;
1080 1.1 scottr pmdata.s_buf = pmdata.data;
1081 1.1 scottr pmdata.r_buf = pmdata.data;
1082 1.36 riastrad pmdata.data[0] = 0x00;
1083 1.1 scottr pmdata.data[1] = 0x86; /* magic spell for awaking the PM */
1084 1.36 riastrad pmdata.data[2] = 0x00;
1085 1.1 scottr pmdata.data[3] = 0x0c; /* each bit may express the existent ADB device */
1086 1.5 scottr } else { /* PB 1XX series */
1087 1.1 scottr pmdata.command = 0x20;
1088 1.1 scottr pmdata.num_data = 3;
1089 1.1 scottr pmdata.s_buf = pmdata.data;
1090 1.1 scottr pmdata.r_buf = pmdata.data;
1091 1.1 scottr pmdata.data[0] = (u_char)(command & 0xf0) | 0xc;
1092 1.1 scottr pmdata.data[1] = 0x04;
1093 1.1 scottr pmdata.data[2] = 0x00;
1094 1.1 scottr }
1095 1.4 scottr rval = pmgrop(&pmdata);
1096 1.1 scottr
1097 1.1 scottr splx(s);
1098 1.5 scottr return rval;
1099 1.1 scottr }
1100 1.1 scottr
1101 1.1 scottr
1102 1.1 scottr void
1103 1.23 chs pm_adb_get_TALK_result(PMData *pmdata)
1104 1.1 scottr {
1105 1.1 scottr int i;
1106 1.5 scottr struct adbCommand packet;
1107 1.1 scottr
1108 1.5 scottr /* set up data for adb_pass_up */
1109 1.5 scottr packet.data[0] = pmdata->num_data-1;
1110 1.5 scottr packet.data[1] = pmdata->data[3];
1111 1.5 scottr for (i = 0; i <packet.data[0]-1; i++)
1112 1.5 scottr packet.data[i+2] = pmdata->data[i+4];
1113 1.5 scottr
1114 1.5 scottr packet.saveBuf = adbBuffer;
1115 1.5 scottr packet.compRout = adbCompRout;
1116 1.5 scottr packet.compData = adbCompData;
1117 1.5 scottr packet.unsol = 0;
1118 1.5 scottr packet.ack_only = 0;
1119 1.10 scottr adb_polling = 1;
1120 1.5 scottr adb_pass_up(&packet);
1121 1.10 scottr adb_polling = 0;
1122 1.5 scottr
1123 1.5 scottr adbWaiting = 0;
1124 1.5 scottr adbBuffer = (long)0;
1125 1.5 scottr adbCompRout = (long)0;
1126 1.5 scottr adbCompData = (long)0;
1127 1.1 scottr }
1128 1.1 scottr
1129 1.1 scottr
1130 1.1 scottr void
1131 1.23 chs pm_adb_get_ADB_data(PMData *pmdata)
1132 1.1 scottr {
1133 1.1 scottr int i;
1134 1.5 scottr struct adbCommand packet;
1135 1.1 scottr
1136 1.5 scottr /* set up data for adb_pass_up */
1137 1.5 scottr packet.data[0] = pmdata->num_data-1; /* number of raw data */
1138 1.5 scottr packet.data[1] = pmdata->data[3]; /* ADB command */
1139 1.5 scottr for (i = 0; i <packet.data[0]-1; i++)
1140 1.5 scottr packet.data[i+2] = pmdata->data[i+4];
1141 1.5 scottr packet.unsol = 1;
1142 1.5 scottr packet.ack_only = 0;
1143 1.5 scottr adb_pass_up(&packet);
1144 1.1 scottr }
1145 1.1 scottr
1146 1.1 scottr
1147 1.1 scottr void
1148 1.23 chs pm_adb_poll_next_device_pm1(PMData *pmdata)
1149 1.1 scottr {
1150 1.1 scottr int i;
1151 1.1 scottr int ndid;
1152 1.1 scottr u_short bendid = 0x1;
1153 1.1 scottr PMData tmp_pmdata;
1154 1.1 scottr
1155 1.1 scottr /* find another existent ADB device to poll */
1156 1.4 scottr for (i = 1; i < 16; i++) {
1157 1.11 scottr ndid = (ADB_CMDADDR(pmdata->data[3]) + i) & 0xf;
1158 1.1 scottr bendid <<= ndid;
1159 1.1 scottr if ((pm_existent_ADB_devices & bendid) != 0)
1160 1.1 scottr break;
1161 1.1 scottr }
1162 1.1 scottr
1163 1.1 scottr /* poll the other device */
1164 1.1 scottr tmp_pmdata.command = 0x20;
1165 1.1 scottr tmp_pmdata.num_data = 3;
1166 1.1 scottr tmp_pmdata.s_buf = tmp_pmdata.data;
1167 1.1 scottr tmp_pmdata.r_buf = tmp_pmdata.data;
1168 1.1 scottr tmp_pmdata.data[0] = (u_char)(ndid << 4) | 0xc;
1169 1.1 scottr tmp_pmdata.data[1] = 0x04; /* magic spell for awaking the PM */
1170 1.1 scottr tmp_pmdata.data[2] = 0x00;
1171 1.29 martin pmgrop(&tmp_pmdata);
1172 1.1 scottr }
1173 1.34 nat
1174 1.36 riastrad void
1175 1.34 nat pm_poweroff(void)
1176 1.34 nat {
1177 1.34 nat PMData pmdata;
1178 1.34 nat int attempt = 3;
1179 1.34 nat
1180 1.34 nat while (pmHardware == PM_HW_PB1XX && attempt > 0) {
1181 1.34 nat pmdata.command = 0x7e;
1182 1.34 nat pmdata.num_data = 0;
1183 1.34 nat pmdata.data[0] = pmdata.data[1] = 0;
1184 1.34 nat pmdata.s_buf = &pmdata.data[2];
1185 1.34 nat pmdata.r_buf = &pmdata.data[2];
1186 1.34 nat (void)pm_pmgrop_pm1(&pmdata);
1187 1.34 nat attempt--;
1188 1.36 riastrad }
1189 1.34 nat
1190 1.34 nat return;
1191 1.34 nat }
1192 1.34 nat
1193 1.33 nat u_int
1194 1.33 nat pm_set_brightness(u_int brightness)
1195 1.33 nat {
1196 1.33 nat PMData pmdata;
1197 1.33 nat
1198 1.33 nat pmdata.num_data = 1;
1199 1.33 nat pmdata.s_buf = pmdata.data;
1200 1.33 nat pmdata.r_buf = pmdata.data;
1201 1.33 nat
1202 1.33 nat switch (pmHardware) {
1203 1.33 nat case PM_HW_PB5XX:
1204 1.33 nat /* this is an experimental code */
1205 1.33 nat pmdata.command = 0x41;
1206 1.33 nat brightness = 0x7f - brightness / 2;
1207 1.33 nat if (brightness < 0x25)
1208 1.33 nat brightness = 0x25;
1209 1.33 nat if (brightness > 0x5a)
1210 1.33 nat brightness = 0x7f;
1211 1.33 nat pmdata.data[0] = brightness;
1212 1.33 nat (void)pm_pmgrop_pm2(&pmdata);
1213 1.33 nat break;
1214 1.33 nat case PM_HW_PB1XX:
1215 1.33 nat /* this is an experimental code also */
1216 1.33 nat pmdata.command = 0x40;
1217 1.33 nat if ((int)brightness < 0)
1218 1.33 nat brightness = 0;
1219 1.33 nat if ((int)brightness > 31)
1220 1.33 nat brightness = 31;
1221 1.33 nat pmdata.data[0] = 31 - brightness;
1222 1.33 nat (void)pm_pmgrop_pm1(&pmdata);
1223 1.33 nat break;
1224 1.33 nat default:
1225 1.33 nat
1226 1.33 nat return 0;
1227 1.33 nat break;
1228 1.33 nat }
1229 1.33 nat
1230 1.33 nat return brightness;
1231 1.33 nat }
1232