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1 /*
2 * Copyright (c) 2000-2005 Apple Computer, Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28 /*
29 * @OSF_COPYRIGHT@
30 */
31 /*
32 * @APPLE_FREE_COPYRIGHT@
33 */
34
35 #include <mach_debug.h>
36 #include <mach_kdb.h>
37 #include <mach_kdp.h>
38 #include <debug.h>
39
40 #include <mach/vm_types.h>
41 #include <mach/vm_param.h>
42 #include <mach/thread_status.h>
43 #include <kern/misc_protos.h>
44 #include <kern/assert.h>
45 #include <kern/cpu_number.h>
46 #include <kern/thread.h>
47
48 #include <ppc/proc_reg.h>
49 #include <ppc/Firmware.h>
50 #include <ppc/boot.h>
51 #include <ppc/misc_protos.h>
52 #include <ppc/pmap.h>
53 #include <ppc/mem.h>
54 #include <ppc/mappings.h>
55 #include <ppc/exception.h>
56 #include <ppc/lowglobals.h>
57
58 #include <mach-o/mach_header.h>
59
60 extern const char version[];
61 extern const char version_variant[];
62
63 addr64_t hash_table_base; /* Hash table base */
64 unsigned int hash_table_size; /* Hash table size */
65 int hash_table_shift; /* "ht_shift" boot arg, used to scale hash_table_size */
66 vm_offset_t taproot_addr; /* (BRINGUP) */
67 unsigned int taproot_size; /* (BRINGUP) */
68 unsigned int serialmode; /* Serial mode keyboard and console control */
69 extern int disableConsoleOutput;
70
71 struct shadowBAT shadow_BAT;
72
73
74
75 /*
76 * NOTE: mem_size is bogus on large memory machines. We will pin it to 0x80000000 if there is more than 2 GB
77 * This is left only for compatibility and max_mem should be used.
78 */
79 vm_offset_t mem_size; /* Size of actual physical memory present
80 minus any performance buffer and possibly limited
81 by mem_limit in bytes */
82 uint64_t mem_actual; /* The "One True" physical memory size
83 actually, it's the highest physical address + 1 */
84 uint64_t max_mem; /* Size of physical memory (bytes), adjusted by maxmem */
85 uint64_t sane_size; /* Memory size to use for defaults calculations */
86
87
88 mem_region_t pmap_mem_regions[PMAP_MEM_REGION_MAX + 1];
89 int pmap_mem_regions_count = 0; /* Assume no non-contiguous memory regions */
90
91 unsigned int avail_remaining = 0;
92 vm_offset_t first_avail;
93 vm_offset_t static_memory_end;
94 addr64_t vm_last_addr = VM_MAX_KERNEL_ADDRESS; /* Highest kernel virtual address known to the VM system */
95
96 extern struct mach_header _mh_execute_header;
97 vm_offset_t sectTEXTB;
98 int sectSizeTEXT;
99 vm_offset_t sectDATAB;
100 int sectSizeDATA;
101 vm_offset_t sectLINKB;
102 int sectSizeLINK;
103 vm_offset_t sectKLDB;
104 int sectSizeKLD;
105 vm_offset_t sectPRELINKB;
106 int sectSizePRELINK;
107 vm_offset_t sectHIBB;
108 int sectSizeHIB;
109
110 vm_offset_t end, etext, edata;
111
112 extern unsigned long exception_entry;
113 extern unsigned long exception_end;
114
115
116 void ppc_vm_init(uint64_t mem_limit, boot_args *args)
117 {
118 unsigned int i, kmapsize, pvr;
119 vm_offset_t addr;
120 unsigned int *xtaproot, bank_shift;
121 uint64_t cbsize, xhid0;
122
123
124 /*
125 * Invalidate all shadow BATs
126 */
127
128 /* Initialize shadow IBATs */
129 shadow_BAT.IBATs[0].upper=BAT_INVALID;
130 shadow_BAT.IBATs[0].lower=BAT_INVALID;
131 shadow_BAT.IBATs[1].upper=BAT_INVALID;
132 shadow_BAT.IBATs[1].lower=BAT_INVALID;
133 shadow_BAT.IBATs[2].upper=BAT_INVALID;
134 shadow_BAT.IBATs[2].lower=BAT_INVALID;
135 shadow_BAT.IBATs[3].upper=BAT_INVALID;
136 shadow_BAT.IBATs[3].lower=BAT_INVALID;
137
138 /* Initialize shadow DBATs */
139 shadow_BAT.DBATs[0].upper=BAT_INVALID;
140 shadow_BAT.DBATs[0].lower=BAT_INVALID;
141 shadow_BAT.DBATs[1].upper=BAT_INVALID;
142 shadow_BAT.DBATs[1].lower=BAT_INVALID;
143 shadow_BAT.DBATs[2].upper=BAT_INVALID;
144 shadow_BAT.DBATs[2].lower=BAT_INVALID;
145 shadow_BAT.DBATs[3].upper=BAT_INVALID;
146 shadow_BAT.DBATs[3].lower=BAT_INVALID;
147
148
149 /*
150 * Go through the list of memory regions passed in via the boot_args
151 * and copy valid entries into the pmap_mem_regions table, adding
152 * further calculated entries.
153 *
154 * boot_args version 1 has address instead of page numbers
155 * in the PhysicalDRAM banks, set bank_shift accordingly.
156 */
157
158 bank_shift = 0;
159 if (args->Version == kBootArgsVersion1) bank_shift = 12;
160
161 pmap_mem_regions_count = 0;
162 max_mem = 0; /* Will use to total memory found so far */
163 mem_actual = 0; /* Actual size of memory */
164
165 if (mem_limit == 0) mem_limit = 0xFFFFFFFFFFFFFFFFULL; /* If there is no set limit, use all */
166
167 for (i = 0; i < kMaxDRAMBanks; i++) { /* Look at all of the banks */
168
169 cbsize = (uint64_t)args->PhysicalDRAM[i].size << (12 - bank_shift); /* Remember current size */
170
171 if (!cbsize) continue; /* Skip if the bank is empty */
172
173 mem_actual = mem_actual + cbsize; /* Get true memory size */
174
175 if(mem_limit == 0) continue; /* If we hit restriction, just keep counting */
176
177 if (cbsize > mem_limit) cbsize = mem_limit; /* Trim to max allowed */
178 max_mem += cbsize; /* Total up what we have so far */
179 mem_limit = mem_limit - cbsize; /* Calculate amount left to do */
180
181 pmap_mem_regions[pmap_mem_regions_count].mrStart = args->PhysicalDRAM[i].base >> bank_shift; /* Set the start of the bank */
182 pmap_mem_regions[pmap_mem_regions_count].mrAStart = pmap_mem_regions[pmap_mem_regions_count].mrStart; /* Set the start of allocatable area */
183 pmap_mem_regions[pmap_mem_regions_count].mrEnd = ((uint64_t)args->PhysicalDRAM[i].base >> bank_shift) + (cbsize >> 12) - 1; /* Set the end address of bank */
184 pmap_mem_regions[pmap_mem_regions_count].mrAEnd = pmap_mem_regions[pmap_mem_regions_count].mrEnd; /* Set the end address of allocatable area */
185
186 /* Regions must be provided in ascending order */
187 assert ((pmap_mem_regions_count == 0) ||
188 pmap_mem_regions[pmap_mem_regions_count].mrStart >
189 pmap_mem_regions[pmap_mem_regions_count-1].mrStart);
190
191 pmap_mem_regions_count++; /* Count this region */
192 }
193
194 mem_size = (unsigned int)max_mem; /* Get size of memory */
195 if(max_mem > 0x0000000080000000ULL) mem_size = 0x80000000; /* Pin at 2 GB */
196
197 sane_size = max_mem; /* Calculate a sane value to use for init */
198 if(sane_size > (addr64_t)(VM_MAX_KERNEL_ADDRESS + 1))
199 sane_size = (addr64_t)(VM_MAX_KERNEL_ADDRESS + 1); /* If flush with ram, use addressible portion */
200
201
202 /*
203 * Initialize the pmap system, using space above `first_avail'
204 * for the necessary data structures.
205 * NOTE : assume that we'll have enough space mapped in already
206 */
207
208 first_avail = static_memory_end;
209
210 /*
211 * Now retrieve addresses for end, edata, and etext
212 * from MACH-O headers for the currently running 32 bit kernel.
213 */
214 sectTEXTB = (vm_offset_t)getsegdatafromheader(
215 &_mh_execute_header, "__TEXT", &sectSizeTEXT);
216 sectDATAB = (vm_offset_t)getsegdatafromheader(
217 &_mh_execute_header, "__DATA", &sectSizeDATA);
218 sectLINKB = (vm_offset_t)getsegdatafromheader(
219 &_mh_execute_header, "__LINKEDIT", &sectSizeLINK);
220 sectKLDB = (vm_offset_t)getsegdatafromheader(
221 &_mh_execute_header, "__KLD", &sectSizeKLD);
222 sectHIBB = (vm_offset_t)getsegdatafromheader(
223 &_mh_execute_header, "__HIB", &sectSizeHIB);
224 sectPRELINKB = (vm_offset_t)getsegdatafromheader(
225 &_mh_execute_header, "__PRELINK", &sectSizePRELINK);
226
227 etext = (vm_offset_t) sectTEXTB + sectSizeTEXT;
228 edata = (vm_offset_t) sectDATAB + sectSizeDATA;
229 end = round_page(getlastaddr()); /* Force end to next page */
230
231 kmapsize = (round_page(exception_end) - trunc_page(exception_entry)) + /* Get size we will map later */
232 (round_page(sectTEXTB+sectSizeTEXT) - trunc_page(sectTEXTB)) +
233 (round_page(sectDATAB+sectSizeDATA) - trunc_page(sectDATAB)) +
234 (round_page(sectLINKB+sectSizeLINK) - trunc_page(sectLINKB)) +
235 (round_page(sectKLDB+sectSizeKLD) - trunc_page(sectKLDB)) +
236 (round_page_32(sectKLDB+sectSizeHIB) - trunc_page_32(sectHIBB)) +
237 (round_page(sectPRELINKB+sectSizePRELINK) - trunc_page(sectPRELINKB)) +
238 (round_page(static_memory_end) - trunc_page(end));
239
240 pmap_bootstrap(max_mem, &first_avail, kmapsize);
241
242 pmap_map(trunc_page(exception_entry), trunc_page(exception_entry),
243 round_page(exception_end), VM_PROT_READ|VM_PROT_EXECUTE);
244
245 pmap_map(trunc_page(sectTEXTB), trunc_page(sectTEXTB),
246 round_page(sectTEXTB+sectSizeTEXT), VM_PROT_READ|VM_PROT_EXECUTE);
247
248 pmap_map(trunc_page(sectDATAB), trunc_page(sectDATAB),
249 round_page(sectDATAB+sectSizeDATA), VM_PROT_READ|VM_PROT_WRITE);
250
251 /* The KLD and LINKEDIT segments are unloaded in toto after boot completes,
252 * but via ml_static_mfree(), through IODTFreeLoaderInfo(). Hence, we have
253 * to map both segments page-by-page.
254 */
255
256 for (addr = trunc_page(sectPRELINKB);
257 addr < round_page(sectPRELINKB+sectSizePRELINK);
258 addr += PAGE_SIZE) {
259
260 pmap_enter(kernel_pmap, (vm_map_offset_t)addr, (ppnum_t)(addr>>12),
261 VM_PROT_READ|VM_PROT_WRITE,
262 VM_WIMG_USE_DEFAULT, TRUE);
263
264 }
265
266 for (addr = trunc_page(sectKLDB);
267 addr < round_page(sectKLDB+sectSizeKLD);
268 addr += PAGE_SIZE) {
269
270 pmap_enter(kernel_pmap, (vm_map_offset_t)addr, (ppnum_t)(addr>>12),
271 VM_PROT_READ|VM_PROT_WRITE,
272 VM_WIMG_USE_DEFAULT, TRUE);
273
274 }
275
276 for (addr = trunc_page(sectLINKB);
277 addr < round_page(sectLINKB+sectSizeLINK);
278 addr += PAGE_SIZE) {
279
280 pmap_enter(kernel_pmap, (vm_map_offset_t)addr,
281 (ppnum_t)(addr>>12),
282 VM_PROT_READ|VM_PROT_WRITE,
283 VM_WIMG_USE_DEFAULT, TRUE);
284
285 }
286
287 for (addr = trunc_page_32(sectHIBB);
288 addr < round_page_32(sectHIBB+sectSizeHIB);
289 addr += PAGE_SIZE) {
290
291 pmap_enter(kernel_pmap, (vm_map_offset_t)addr, (ppnum_t)(addr>>12),
292 VM_PROT_READ|VM_PROT_WRITE,
293 VM_WIMG_USE_DEFAULT, TRUE);
294
295 }
296
297 pmap_enter(kernel_pmap, (vm_map_offset_t)&sharedPage,
298 (ppnum_t)&sharedPage >> 12, /* Make sure the sharedPage is mapped */
299 VM_PROT_READ|VM_PROT_WRITE,
300 VM_WIMG_USE_DEFAULT, TRUE);
301
302 pmap_enter(kernel_pmap, (vm_map_offset_t)&lowGlo.lgVerCode,
303 (ppnum_t)&lowGlo.lgVerCode >> 12, /* Make sure the low memory globals are mapped */
304 VM_PROT_READ|VM_PROT_WRITE,
305 VM_WIMG_USE_DEFAULT, TRUE);
306
307 /*
308 * We need to map the remainder page-by-page because some of this will
309 * be released later, but not all. Ergo, no block mapping here
310 */
311
312 for(addr = trunc_page(end); addr < round_page(static_memory_end); addr += PAGE_SIZE) {
313
314 pmap_enter(kernel_pmap, (vm_map_address_t)addr, (ppnum_t)addr>>12,
315 VM_PROT_READ|VM_PROT_WRITE,
316 VM_WIMG_USE_DEFAULT, TRUE);
317
318 }
319
320 /*
321 * Here we map a window into the kernel address space that will be used to
322 * access a slice of a user address space. Clients for this service include
323 * copyin/out and copypv.
324 */
325
326 lowGlo.lgUMWvaddr = USER_MEM_WINDOW_VADDR;
327 /* Initialize user memory window base address */
328 MapUserMemoryWindowInit(); /* Go initialize user memory window */
329
330 /*
331 * At this point, there is enough mapped memory and all hw mapping structures are
332 * allocated and initialized. Here is where we turn on translation for the
333 * VERY first time....
334 *
335 * NOTE: Here is where our very first interruption will happen.
336 *
337 */
338
339 hw_start_trans(); /* Start translating */
340 PE_init_platform(TRUE, args); /* Initialize this right off the bat */
341
342
343 #if 0
344 GratefulDebInit((bootBumbleC *)&(args->Video)); /* Initialize the GratefulDeb debugger */
345 #endif
346
347
348 printf_init(); /* Init this in case we need debugger */
349 panic_init(); /* Init this in case we need debugger */
350 PE_init_kprintf(TRUE); /* Note on PPC we only call this after VM is set up */
351
352 kprintf("kprintf initialized\n");
353
354 serialmode = 0; /* Assume normal keyboard and console */
355 if(PE_parse_boot_arg("serial", &serialmode)) { /* Do we want a serial keyboard and/or console? */
356 kprintf("Serial mode specified: %08X\n", serialmode);
357 }
358 if(serialmode & 1) { /* Start serial if requested */
359 (void)switch_to_serial_console(); /* Switch into serial mode */
360 disableConsoleOutput = FALSE; /* Allow printfs to happen */
361 }
362
363 kprintf("max_mem: %ld M\n", (unsigned long)(max_mem >> 20));
364 kprintf("version_variant = %s\n", version_variant);
365 kprintf("version = %s\n\n", version);
366 __asm__ ("mfpvr %0" : "=r" (pvr));
367 kprintf("proc version = %08x\n", pvr);
368 if(getPerProc()->pf.Available & pf64Bit) { /* 64-bit processor? */
369 xhid0 = hid0get64(); /* Get the hid0 */
370 if(xhid0 & (1ULL << (63 - 19))) kprintf("Time base is externally clocked\n");
371 else kprintf("Time base is internally clocked\n");
372 }
373
374
375 taproot_size = PE_init_taproot(&taproot_addr); /* (BRINGUP) See if there is a taproot */
376 if(taproot_size) { /* (BRINGUP) */
377 kprintf("TapRoot card configured to use vaddr = %08X, size = %08X\n", taproot_addr, taproot_size);
378 bcopy_nc((void *)version, (void *)(taproot_addr + 16), strlen(version)); /* (BRINGUP) Pass it our kernel version */
379 __asm__ volatile("eieio"); /* (BRINGUP) */
380 xtaproot = (unsigned int *)taproot_addr; /* (BRINGUP) */
381 xtaproot[0] = 1; /* (BRINGUP) */
382 __asm__ volatile("eieio"); /* (BRINGUP) */
383 }
384
385 PE_create_console(); /* create the console for verbose or pretty mode */
386
387 /* setup console output */
388 PE_init_printf(FALSE);
389
390 #if DEBUG
391 printf("\n\n\nThis program was compiled using gcc %d.%d for powerpc\n",
392 __GNUC__,__GNUC_MINOR__);
393
394
395 /* Processor version information */
396 {
397 unsigned int pvr;
398 __asm__ ("mfpvr %0" : "=r" (pvr));
399 printf("processor version register : %08X\n", pvr);
400 }
401
402 kprintf("Args at %08X\n", args);
403 for (i = 0; i < pmap_mem_regions_count; i++) {
404 printf("DRAM at %08X size %08X\n",
405 args->PhysicalDRAM[i].base,
406 args->PhysicalDRAM[i].size);
407 }
408 #endif /* DEBUG */
409
410 #if DEBUG
411 kprintf("Mapped memory:\n");
412 kprintf(" exception vector: %08X, %08X - %08X\n", trunc_page(exception_entry),
413 trunc_page(exception_entry), round_page(exception_end));
414 kprintf(" sectTEXTB: %08X, %08X - %08X\n", trunc_page(sectTEXTB),
415 trunc_page(sectTEXTB), round_page(sectTEXTB+sectSizeTEXT));
416 kprintf(" sectDATAB: %08X, %08X - %08X\n", trunc_page(sectDATAB),
417 trunc_page(sectDATAB), round_page(sectDATAB+sectSizeDATA));
418 kprintf(" sectLINKB: %08X, %08X - %08X\n", trunc_page(sectLINKB),
419 trunc_page(sectLINKB), round_page(sectLINKB+sectSizeLINK));
420 kprintf(" sectKLDB: %08X, %08X - %08X\n", trunc_page(sectKLDB),
421 trunc_page(sectKLDB), round_page(sectKLDB+sectSizeKLD));
422 kprintf(" end: %08X, %08X - %08X\n", trunc_page(end),
423 trunc_page(end), static_memory_end);
424
425 #endif
426
427 return;
428 }
429