Linux-2.6.12-rc2
[linux-2.6/linux-acpi-2.6/ibm-acpi-2.6.git] / arch / ia64 / hp / sim / boot / fw-emu.c
blob5c46928e3dc655739bf0081ce19f503848930054
1 /*
2 * PAL & SAL emulation.
4 * Copyright (C) 1998-2001 Hewlett-Packard Co
5 * David Mosberger-Tang <davidm@hpl.hp.com>
6 */
7 #include <linux/config.h>
9 #ifdef CONFIG_PCI
10 # include <linux/pci.h>
11 #endif
13 #include <linux/efi.h>
14 #include <asm/io.h>
15 #include <asm/pal.h>
16 #include <asm/sal.h>
18 #include "ssc.h"
20 #define MB (1024*1024UL)
22 #define SIMPLE_MEMMAP 1
24 #if SIMPLE_MEMMAP
25 # define NUM_MEM_DESCS 4
26 #else
27 # define NUM_MEM_DESCS 16
28 #endif
30 static char fw_mem[( sizeof(struct ia64_boot_param)
31 + sizeof(efi_system_table_t)
32 + sizeof(efi_runtime_services_t)
33 + 1*sizeof(efi_config_table_t)
34 + sizeof(struct ia64_sal_systab)
35 + sizeof(struct ia64_sal_desc_entry_point)
36 + NUM_MEM_DESCS*(sizeof(efi_memory_desc_t))
37 + 1024)] __attribute__ ((aligned (8)));
39 #define SECS_PER_HOUR (60 * 60)
40 #define SECS_PER_DAY (SECS_PER_HOUR * 24)
42 /* Compute the `struct tm' representation of *T,
43 offset OFFSET seconds east of UTC,
44 and store year, yday, mon, mday, wday, hour, min, sec into *TP.
45 Return nonzero if successful. */
46 int
47 offtime (unsigned long t, efi_time_t *tp)
49 const unsigned short int __mon_yday[2][13] =
51 /* Normal years. */
52 { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334, 365 },
53 /* Leap years. */
54 { 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335, 366 }
56 long int days, rem, y;
57 const unsigned short int *ip;
59 days = t / SECS_PER_DAY;
60 rem = t % SECS_PER_DAY;
61 while (rem < 0) {
62 rem += SECS_PER_DAY;
63 --days;
65 while (rem >= SECS_PER_DAY) {
66 rem -= SECS_PER_DAY;
67 ++days;
69 tp->hour = rem / SECS_PER_HOUR;
70 rem %= SECS_PER_HOUR;
71 tp->minute = rem / 60;
72 tp->second = rem % 60;
73 /* January 1, 1970 was a Thursday. */
74 y = 1970;
76 # define DIV(a, b) ((a) / (b) - ((a) % (b) < 0))
77 # define LEAPS_THRU_END_OF(y) (DIV (y, 4) - DIV (y, 100) + DIV (y, 400))
78 # define __isleap(year) \
79 ((year) % 4 == 0 && ((year) % 100 != 0 || (year) % 400 == 0))
81 while (days < 0 || days >= (__isleap (y) ? 366 : 365)) {
82 /* Guess a corrected year, assuming 365 days per year. */
83 long int yg = y + days / 365 - (days % 365 < 0);
85 /* Adjust DAYS and Y to match the guessed year. */
86 days -= ((yg - y) * 365 + LEAPS_THRU_END_OF (yg - 1)
87 - LEAPS_THRU_END_OF (y - 1));
88 y = yg;
90 tp->year = y;
91 ip = __mon_yday[__isleap(y)];
92 for (y = 11; days < (long int) ip[y]; --y)
93 continue;
94 days -= ip[y];
95 tp->month = y + 1;
96 tp->day = days + 1;
97 return 1;
100 extern void pal_emulator_static (void);
102 /* Macro to emulate SAL call using legacy IN and OUT calls to CF8, CFC etc.. */
104 #define BUILD_CMD(addr) ((0x80000000 | (addr)) & ~3)
106 #define REG_OFFSET(addr) (0x00000000000000FF & (addr))
107 #define DEVICE_FUNCTION(addr) (0x000000000000FF00 & (addr))
108 #define BUS_NUMBER(addr) (0x0000000000FF0000 & (addr))
110 static efi_status_t
111 fw_efi_get_time (efi_time_t *tm, efi_time_cap_t *tc)
113 #if defined(CONFIG_IA64_HP_SIM) || defined(CONFIG_IA64_GENERIC)
114 struct {
115 int tv_sec; /* must be 32bits to work */
116 int tv_usec;
117 } tv32bits;
119 ssc((unsigned long) &tv32bits, 0, 0, 0, SSC_GET_TOD);
121 memset(tm, 0, sizeof(*tm));
122 offtime(tv32bits.tv_sec, tm);
124 if (tc)
125 memset(tc, 0, sizeof(*tc));
126 #else
127 # error Not implemented yet...
128 #endif
129 return EFI_SUCCESS;
132 static void
133 efi_reset_system (int reset_type, efi_status_t status, unsigned long data_size, efi_char16_t *data)
135 #if defined(CONFIG_IA64_HP_SIM) || defined(CONFIG_IA64_GENERIC)
136 ssc(status, 0, 0, 0, SSC_EXIT);
137 #else
138 # error Not implemented yet...
139 #endif
142 static efi_status_t
143 efi_unimplemented (void)
145 return EFI_UNSUPPORTED;
148 static struct sal_ret_values
149 sal_emulator (long index, unsigned long in1, unsigned long in2,
150 unsigned long in3, unsigned long in4, unsigned long in5,
151 unsigned long in6, unsigned long in7)
153 long r9 = 0;
154 long r10 = 0;
155 long r11 = 0;
156 long status;
159 * Don't do a "switch" here since that gives us code that
160 * isn't self-relocatable.
162 status = 0;
163 if (index == SAL_FREQ_BASE) {
164 switch (in1) {
165 case SAL_FREQ_BASE_PLATFORM:
166 r9 = 200000000;
167 break;
169 case SAL_FREQ_BASE_INTERVAL_TIMER:
171 * Is this supposed to be the cr.itc frequency
172 * or something platform specific? The SAL
173 * doc ain't exactly clear on this...
175 r9 = 700000000;
176 break;
178 case SAL_FREQ_BASE_REALTIME_CLOCK:
179 r9 = 1;
180 break;
182 default:
183 status = -1;
184 break;
186 } else if (index == SAL_SET_VECTORS) {
188 } else if (index == SAL_GET_STATE_INFO) {
190 } else if (index == SAL_GET_STATE_INFO_SIZE) {
192 } else if (index == SAL_CLEAR_STATE_INFO) {
194 } else if (index == SAL_MC_RENDEZ) {
196 } else if (index == SAL_MC_SET_PARAMS) {
198 } else if (index == SAL_CACHE_FLUSH) {
200 } else if (index == SAL_CACHE_INIT) {
202 #ifdef CONFIG_PCI
203 } else if (index == SAL_PCI_CONFIG_READ) {
205 * in1 contains the PCI configuration address and in2
206 * the size of the read. The value that is read is
207 * returned via the general register r9.
209 outl(BUILD_CMD(in1), 0xCF8);
210 if (in2 == 1) /* Reading byte */
211 r9 = inb(0xCFC + ((REG_OFFSET(in1) & 3)));
212 else if (in2 == 2) /* Reading word */
213 r9 = inw(0xCFC + ((REG_OFFSET(in1) & 2)));
214 else /* Reading dword */
215 r9 = inl(0xCFC);
216 status = PCIBIOS_SUCCESSFUL;
217 } else if (index == SAL_PCI_CONFIG_WRITE) {
219 * in1 contains the PCI configuration address, in2 the
220 * size of the write, and in3 the actual value to be
221 * written out.
223 outl(BUILD_CMD(in1), 0xCF8);
224 if (in2 == 1) /* Writing byte */
225 outb(in3, 0xCFC + ((REG_OFFSET(in1) & 3)));
226 else if (in2 == 2) /* Writing word */
227 outw(in3, 0xCFC + ((REG_OFFSET(in1) & 2)));
228 else /* Writing dword */
229 outl(in3, 0xCFC);
230 status = PCIBIOS_SUCCESSFUL;
231 #endif /* CONFIG_PCI */
232 } else if (index == SAL_UPDATE_PAL) {
234 } else {
235 status = -1;
237 return ((struct sal_ret_values) {status, r9, r10, r11});
242 * This is here to work around a bug in egcs-1.1.1b that causes the
243 * compiler to crash (seems like a bug in the new alias analysis code.
245 void *
246 id (long addr)
248 return (void *) addr;
251 struct ia64_boot_param *
252 sys_fw_init (const char *args, int arglen)
254 efi_system_table_t *efi_systab;
255 efi_runtime_services_t *efi_runtime;
256 efi_config_table_t *efi_tables;
257 struct ia64_sal_systab *sal_systab;
258 efi_memory_desc_t *efi_memmap, *md;
259 unsigned long *pal_desc, *sal_desc;
260 struct ia64_sal_desc_entry_point *sal_ed;
261 struct ia64_boot_param *bp;
262 unsigned char checksum = 0;
263 char *cp, *cmd_line;
264 int i = 0;
265 # define MAKE_MD(typ, attr, start, end) \
266 do { \
267 md = efi_memmap + i++; \
268 md->type = typ; \
269 md->pad = 0; \
270 md->phys_addr = start; \
271 md->virt_addr = 0; \
272 md->num_pages = (end - start) >> 12; \
273 md->attribute = attr; \
274 } while (0)
276 memset(fw_mem, 0, sizeof(fw_mem));
278 pal_desc = (unsigned long *) &pal_emulator_static;
279 sal_desc = (unsigned long *) &sal_emulator;
281 cp = fw_mem;
282 efi_systab = (void *) cp; cp += sizeof(*efi_systab);
283 efi_runtime = (void *) cp; cp += sizeof(*efi_runtime);
284 efi_tables = (void *) cp; cp += sizeof(*efi_tables);
285 sal_systab = (void *) cp; cp += sizeof(*sal_systab);
286 sal_ed = (void *) cp; cp += sizeof(*sal_ed);
287 efi_memmap = (void *) cp; cp += NUM_MEM_DESCS*sizeof(*efi_memmap);
288 bp = (void *) cp; cp += sizeof(*bp);
289 cmd_line = (void *) cp;
291 if (args) {
292 if (arglen >= 1024)
293 arglen = 1023;
294 memcpy(cmd_line, args, arglen);
295 } else {
296 arglen = 0;
298 cmd_line[arglen] = '\0';
300 memset(efi_systab, 0, sizeof(efi_systab));
301 efi_systab->hdr.signature = EFI_SYSTEM_TABLE_SIGNATURE;
302 efi_systab->hdr.revision = EFI_SYSTEM_TABLE_REVISION;
303 efi_systab->hdr.headersize = sizeof(efi_systab->hdr);
304 efi_systab->fw_vendor = __pa("H\0e\0w\0l\0e\0t\0t\0-\0P\0a\0c\0k\0a\0r\0d\0\0");
305 efi_systab->fw_revision = 1;
306 efi_systab->runtime = (void *) __pa(efi_runtime);
307 efi_systab->nr_tables = 1;
308 efi_systab->tables = __pa(efi_tables);
310 efi_runtime->hdr.signature = EFI_RUNTIME_SERVICES_SIGNATURE;
311 efi_runtime->hdr.revision = EFI_RUNTIME_SERVICES_REVISION;
312 efi_runtime->hdr.headersize = sizeof(efi_runtime->hdr);
313 efi_runtime->get_time = __pa(&fw_efi_get_time);
314 efi_runtime->set_time = __pa(&efi_unimplemented);
315 efi_runtime->get_wakeup_time = __pa(&efi_unimplemented);
316 efi_runtime->set_wakeup_time = __pa(&efi_unimplemented);
317 efi_runtime->set_virtual_address_map = __pa(&efi_unimplemented);
318 efi_runtime->get_variable = __pa(&efi_unimplemented);
319 efi_runtime->get_next_variable = __pa(&efi_unimplemented);
320 efi_runtime->set_variable = __pa(&efi_unimplemented);
321 efi_runtime->get_next_high_mono_count = __pa(&efi_unimplemented);
322 efi_runtime->reset_system = __pa(&efi_reset_system);
324 efi_tables->guid = SAL_SYSTEM_TABLE_GUID;
325 efi_tables->table = __pa(sal_systab);
327 /* fill in the SAL system table: */
328 memcpy(sal_systab->signature, "SST_", 4);
329 sal_systab->size = sizeof(*sal_systab);
330 sal_systab->sal_rev_minor = 1;
331 sal_systab->sal_rev_major = 0;
332 sal_systab->entry_count = 1;
334 #ifdef CONFIG_IA64_GENERIC
335 strcpy(sal_systab->oem_id, "Generic");
336 strcpy(sal_systab->product_id, "IA-64 system");
337 #endif
339 #ifdef CONFIG_IA64_HP_SIM
340 strcpy(sal_systab->oem_id, "Hewlett-Packard");
341 strcpy(sal_systab->product_id, "HP-simulator");
342 #endif
344 #ifdef CONFIG_IA64_SDV
345 strcpy(sal_systab->oem_id, "Intel");
346 strcpy(sal_systab->product_id, "SDV");
347 #endif
349 /* fill in an entry point: */
350 sal_ed->type = SAL_DESC_ENTRY_POINT;
351 sal_ed->pal_proc = __pa(pal_desc[0]);
352 sal_ed->sal_proc = __pa(sal_desc[0]);
353 sal_ed->gp = __pa(sal_desc[1]);
355 for (cp = (char *) sal_systab; cp < (char *) efi_memmap; ++cp)
356 checksum += *cp;
358 sal_systab->checksum = -checksum;
360 #if SIMPLE_MEMMAP
361 /* simulate free memory at physical address zero */
362 MAKE_MD(EFI_BOOT_SERVICES_DATA, EFI_MEMORY_WB, 0*MB, 1*MB);
363 MAKE_MD(EFI_PAL_CODE, EFI_MEMORY_WB, 1*MB, 2*MB);
364 MAKE_MD(EFI_CONVENTIONAL_MEMORY, EFI_MEMORY_WB, 2*MB, 130*MB);
365 MAKE_MD(EFI_CONVENTIONAL_MEMORY, EFI_MEMORY_WB, 4096*MB, 4128*MB);
366 #else
367 MAKE_MD( 4, 0x9, 0x0000000000000000, 0x0000000000001000);
368 MAKE_MD( 7, 0x9, 0x0000000000001000, 0x000000000008a000);
369 MAKE_MD( 4, 0x9, 0x000000000008a000, 0x00000000000a0000);
370 MAKE_MD( 5, 0x8000000000000009, 0x00000000000c0000, 0x0000000000100000);
371 MAKE_MD( 7, 0x9, 0x0000000000100000, 0x0000000004400000);
372 MAKE_MD( 2, 0x9, 0x0000000004400000, 0x0000000004be5000);
373 MAKE_MD( 7, 0x9, 0x0000000004be5000, 0x000000007f77e000);
374 MAKE_MD( 6, 0x8000000000000009, 0x000000007f77e000, 0x000000007fb94000);
375 MAKE_MD( 6, 0x8000000000000009, 0x000000007fb94000, 0x000000007fb95000);
376 MAKE_MD( 6, 0x8000000000000009, 0x000000007fb95000, 0x000000007fc00000);
377 MAKE_MD(13, 0x8000000000000009, 0x000000007fc00000, 0x000000007fc3a000);
378 MAKE_MD( 7, 0x9, 0x000000007fc3a000, 0x000000007fea0000);
379 MAKE_MD( 5, 0x8000000000000009, 0x000000007fea0000, 0x000000007fea8000);
380 MAKE_MD( 7, 0x9, 0x000000007fea8000, 0x000000007feab000);
381 MAKE_MD( 5, 0x8000000000000009, 0x000000007feab000, 0x000000007ffff000);
382 MAKE_MD( 7, 0x9, 0x00000000ff400000, 0x0000000104000000);
383 #endif
385 bp->efi_systab = __pa(&fw_mem);
386 bp->efi_memmap = __pa(efi_memmap);
387 bp->efi_memmap_size = NUM_MEM_DESCS*sizeof(efi_memory_desc_t);
388 bp->efi_memdesc_size = sizeof(efi_memory_desc_t);
389 bp->efi_memdesc_version = 1;
390 bp->command_line = __pa(cmd_line);
391 bp->console_info.num_cols = 80;
392 bp->console_info.num_rows = 25;
393 bp->console_info.orig_x = 0;
394 bp->console_info.orig_y = 24;
395 bp->fpswa = 0;
397 return bp;