1 /* 2 * Copyright 2010, Ithamar R. Adema, ithamar.adema@team-embedded.nl 3 * Copyright 2008-2010, Ingo Weinhold, ingo_weinhold@gmx.de. 4 * Copyright 2002-2007, Axel Dörfler, axeld@pinc-software.de. All rights reserved. 5 * Distributed under the terms of the MIT License. 6 * 7 * Copyright 2001-2002, Travis Geiselbrecht. All rights reserved. 8 * Distributed under the terms of the NewOS License. 9 */ 10 11 12 #include "paging/32bit/ARMPagingMethod32Bit.h" 13 14 #include <stdlib.h> 15 #include <string.h> 16 17 #include <AutoDeleter.h> 18 19 #include <arch/smp.h> 20 #include <arch_system_info.h> 21 #include <boot/kernel_args.h> 22 #include <int.h> 23 #include <thread.h> 24 #include <vm/vm.h> 25 #include <vm/VMAddressSpace.h> 26 27 #include "paging/32bit/ARMPagingStructures32Bit.h" 28 #include "paging/32bit/ARMVMTranslationMap32Bit.h" 29 #include "paging/arm_physical_page_mapper.h" 30 #include "paging/arm_physical_page_mapper_large_memory.h" 31 32 33 //#define TRACE_ARM_PAGING_METHOD_32_BIT 34 #ifdef TRACE_ARM_PAGING_METHOD_32_BIT 35 # define TRACE(x...) dprintf(x) 36 #else 37 # define TRACE(x...) ; 38 #endif 39 40 41 #define MAX_INITIAL_POOLS \ 42 (ROUNDUP(SMP_MAX_CPUS * TOTAL_SLOTS_PER_CPU + EXTRA_SLOTS, 1024) / 1024) 43 44 45 using ARMLargePhysicalPageMapper::PhysicalPageSlot; 46 47 48 // #pragma mark - ARMPagingMethod32Bit::PhysicalPageSlotPool 49 50 struct ARMPagingMethod32Bit::PhysicalPageSlotPool 51 : ARMLargePhysicalPageMapper::PhysicalPageSlotPool { 52 public: 53 virtual ~PhysicalPageSlotPool(); 54 55 status_t InitInitial(kernel_args* args); 56 status_t InitInitialPostArea(kernel_args* args); 57 58 void Init(area_id dataArea, void* data, 59 area_id virtualArea, addr_t virtualBase); 60 61 virtual status_t AllocatePool( 62 ARMLargePhysicalPageMapper 63 ::PhysicalPageSlotPool*& _pool); 64 virtual void Map(phys_addr_t physicalAddress, 65 addr_t virtualAddress); 66 67 public: 68 static PhysicalPageSlotPool sInitialPhysicalPagePool[MAX_INITIAL_POOLS]; 69 70 private: 71 area_id fDataArea; 72 area_id fVirtualArea; 73 addr_t fVirtualBase; 74 page_table_entry* fPageTable; 75 }; 76 77 78 ARMPagingMethod32Bit::PhysicalPageSlotPool 79 ARMPagingMethod32Bit::PhysicalPageSlotPool::sInitialPhysicalPagePool[ 80 MAX_INITIAL_POOLS]; 81 82 83 ARMPagingMethod32Bit::PhysicalPageSlotPool::~PhysicalPageSlotPool() 84 { 85 } 86 87 88 status_t 89 ARMPagingMethod32Bit::PhysicalPageSlotPool::InitInitial(kernel_args* args) 90 { 91 // allocate a virtual address range for the pages to be mapped into 92 addr_t virtualBase = vm_allocate_early(args, 1024 * B_PAGE_SIZE, 0, 0, 93 kPageTableAlignment); 94 if (virtualBase == 0) { 95 panic("LargeMemoryPhysicalPageMapper::Init(): Failed to reserve " 96 "physical page pool space in virtual address space!"); 97 return B_ERROR; 98 } 99 100 // allocate memory for the page table and data 101 size_t areaSize = B_PAGE_SIZE + sizeof(PhysicalPageSlot[1024]); 102 page_table_entry* pageTable = (page_table_entry*)vm_allocate_early(args, 103 areaSize, ~0L, B_KERNEL_READ_AREA | B_KERNEL_WRITE_AREA, 0); 104 if (pageTable == 0) { 105 panic("ARMPagingMethod32Bit::PhysicalPageSlotPool::InitInitial(): " 106 "Failed to allocate memory for page table!"); 107 return B_ERROR; 108 } 109 110 // prepare the page table 111 _EarlyPreparePageTables(pageTable, virtualBase, 1024 * B_PAGE_SIZE); 112 113 // init the pool structure and add the initial pool 114 Init(-1, pageTable, -1, (addr_t)virtualBase); 115 116 return B_OK; 117 } 118 119 120 status_t 121 ARMPagingMethod32Bit::PhysicalPageSlotPool::InitInitialPostArea( 122 kernel_args* args) 123 { 124 // create an area for the (already allocated) data 125 size_t areaSize = B_PAGE_SIZE + sizeof(PhysicalPageSlot[1024]); 126 void* temp = fPageTable; 127 area_id area = create_area("physical page pool", &temp, 128 B_EXACT_ADDRESS, areaSize, B_ALREADY_WIRED, 129 B_KERNEL_READ_AREA | B_KERNEL_WRITE_AREA); 130 if (area < 0) { 131 panic("LargeMemoryPhysicalPageMapper::InitPostArea(): Failed to " 132 "create area for physical page pool."); 133 return area; 134 } 135 fDataArea = area; 136 137 // create an area for the virtual address space 138 temp = (void*)fVirtualBase; 139 area = vm_create_null_area(VMAddressSpace::KernelID(), 140 "physical page pool space", &temp, B_EXACT_ADDRESS, 141 1024 * B_PAGE_SIZE, 0); 142 if (area < B_OK) { 143 panic("LargeMemoryPhysicalPageMapper::InitPostArea(): Failed to " 144 "create area for physical page pool space."); 145 return area; 146 } 147 fVirtualArea = area; 148 149 return B_OK; 150 } 151 152 153 void 154 ARMPagingMethod32Bit::PhysicalPageSlotPool::Init(area_id dataArea, void* data, 155 area_id virtualArea, addr_t virtualBase) 156 { 157 fDataArea = dataArea; 158 fVirtualArea = virtualArea; 159 fVirtualBase = virtualBase; 160 fPageTable = (page_table_entry*)data; 161 162 // init slot list 163 fSlots = (PhysicalPageSlot*)(fPageTable + 1024); 164 addr_t slotAddress = virtualBase; 165 for (int32 i = 0; i < 1024; i++, slotAddress += B_PAGE_SIZE) { 166 PhysicalPageSlot* slot = &fSlots[i]; 167 slot->next = slot + 1; 168 slot->pool = this; 169 slot->address = slotAddress; 170 } 171 172 fSlots[1023].next = NULL; 173 // terminate list 174 } 175 176 177 void 178 ARMPagingMethod32Bit::PhysicalPageSlotPool::Map(phys_addr_t physicalAddress, 179 addr_t virtualAddress) 180 { 181 page_table_entry& pte = fPageTable[ 182 (virtualAddress - fVirtualBase) / B_PAGE_SIZE]; 183 pte = (physicalAddress & ARM_PTE_ADDRESS_MASK) 184 | ARM_MMU_L2_TYPE_SMALLNEW 185 | ARM_MMU_L2_FLAG_B | ARM_MMU_L2_FLAG_C 186 | ARM_MMU_L2_FLAG_AP_KRW | ARM_MMU_L2_FLAG_XN; 187 188 arch_cpu_invalidate_TLB_page(virtualAddress); 189 } 190 191 192 status_t 193 ARMPagingMethod32Bit::PhysicalPageSlotPool::AllocatePool( 194 ARMLargePhysicalPageMapper::PhysicalPageSlotPool*& _pool) 195 { 196 // create the pool structure 197 PhysicalPageSlotPool* pool = new(std::nothrow) PhysicalPageSlotPool; 198 if (pool == NULL) 199 return B_NO_MEMORY; 200 ObjectDeleter<PhysicalPageSlotPool> poolDeleter(pool); 201 202 // create an area that can contain the page table and the slot 203 // structures 204 size_t areaSize = B_PAGE_SIZE + sizeof(PhysicalPageSlot[1024]); 205 void* data; 206 virtual_address_restrictions virtualRestrictions = {}; 207 virtualRestrictions.address_specification = B_ANY_KERNEL_ADDRESS; 208 physical_address_restrictions physicalRestrictions = {}; 209 area_id dataArea = create_area_etc(B_SYSTEM_TEAM, "physical page pool", 210 PAGE_ALIGN(areaSize), B_FULL_LOCK, 211 B_KERNEL_READ_AREA | B_KERNEL_WRITE_AREA, CREATE_AREA_DONT_WAIT, 0, 212 &virtualRestrictions, &physicalRestrictions, &data); 213 if (dataArea < 0) 214 return dataArea; 215 216 // create the null area for the virtual address space 217 void* virtualBase; 218 area_id virtualArea = vm_create_null_area( 219 VMAddressSpace::KernelID(), "physical page pool space", 220 &virtualBase, B_ANY_KERNEL_BLOCK_ADDRESS, 1024 * B_PAGE_SIZE, 221 CREATE_AREA_PRIORITY_VIP); 222 if (virtualArea < 0) { 223 delete_area(dataArea); 224 return virtualArea; 225 } 226 227 // prepare the page table 228 memset(data, 0, B_PAGE_SIZE); 229 230 // get the page table's physical address 231 phys_addr_t physicalTable; 232 ARMVMTranslationMap32Bit* map = static_cast<ARMVMTranslationMap32Bit*>( 233 VMAddressSpace::Kernel()->TranslationMap()); 234 uint32 dummyFlags; 235 cpu_status state = disable_interrupts(); 236 map->QueryInterrupt((addr_t)data, &physicalTable, &dummyFlags); 237 restore_interrupts(state); 238 239 // put the page table into the page directory 240 int32 index = VADDR_TO_PDENT((addr_t)virtualBase); 241 page_directory_entry* entry 242 = &map->PagingStructures32Bit()->pgdir_virt[index]; 243 PutPageTableInPageDir(entry, physicalTable, ARM_MMU_L1_FLAG_PXN); 244 ARMPagingStructures32Bit::UpdateAllPageDirs(index, *entry); 245 246 // init the pool structure 247 pool->Init(dataArea, data, virtualArea, (addr_t)virtualBase); 248 poolDeleter.Detach(); 249 _pool = pool; 250 return B_OK; 251 } 252 253 254 // #pragma mark - ARMPagingMethod32Bit 255 256 257 ARMPagingMethod32Bit::ARMPagingMethod32Bit() 258 : 259 fKernelPhysicalPageDirectory(0), 260 fKernelVirtualPageDirectory(NULL), 261 fPhysicalPageMapper(NULL), 262 fKernelPhysicalPageMapper(NULL) 263 { 264 } 265 266 267 ARMPagingMethod32Bit::~ARMPagingMethod32Bit() 268 { 269 } 270 271 272 status_t 273 ARMPagingMethod32Bit::Init(kernel_args* args, 274 VMPhysicalPageMapper** _physicalPageMapper) 275 { 276 TRACE("ARMPagingMethod32Bit::Init(): entry\n"); 277 278 fKernelPhysicalPageDirectory = args->arch_args.phys_pgdir; 279 fKernelVirtualPageDirectory = (page_directory_entry*) 280 args->arch_args.vir_pgdir; 281 282 #ifdef TRACE_ARM_PAGING_METHOD_32_BIT 283 TRACE("page dir: %p (physical: %#" B_PRIx32 ")\n", 284 fKernelVirtualPageDirectory, fKernelPhysicalPageDirectory); 285 #endif 286 287 ARMPagingStructures32Bit::StaticInit(); 288 289 // create the initial pools for the physical page mapper 290 int32 poolCount = _GetInitialPoolCount(); 291 PhysicalPageSlotPool* pool = PhysicalPageSlotPool::sInitialPhysicalPagePool; 292 293 for (int32 i = 0; i < poolCount; i++) { 294 new(&pool[i]) PhysicalPageSlotPool; 295 status_t error = pool[i].InitInitial(args); 296 if (error != B_OK) { 297 panic("ARMPagingMethod32Bit::Init(): Failed to create initial pool " 298 "for physical page mapper!"); 299 return error; 300 } 301 } 302 303 // create physical page mapper 304 large_memory_physical_page_ops_init(args, pool, poolCount, sizeof(*pool), 305 fPhysicalPageMapper, fKernelPhysicalPageMapper); 306 // TODO: Select the best page mapper! 307 308 TRACE("ARMPagingMethod32Bit::Init(): done\n"); 309 310 *_physicalPageMapper = fPhysicalPageMapper; 311 return B_OK; 312 } 313 314 315 status_t 316 ARMPagingMethod32Bit::InitPostArea(kernel_args* args) 317 { 318 void *temp; 319 area_id area; 320 321 temp = (void*)fKernelVirtualPageDirectory; 322 area = create_area("kernel_pgdir", &temp, B_EXACT_ADDRESS, args->arch_args.next_pagetable, 323 B_ALREADY_WIRED, B_KERNEL_READ_AREA | B_KERNEL_WRITE_AREA); 324 ASSERT_PRINT(area >= 0, "Failed mapping the kernel page directory: 0x%08lx!", area); 325 326 int32 poolCount = _GetInitialPoolCount(); 327 for (int32 i = 0; i < poolCount; i++) { 328 status_t error = PhysicalPageSlotPool::sInitialPhysicalPagePool[i] 329 .InitInitialPostArea(args); 330 if (error != B_OK) 331 return error; 332 } 333 334 return B_OK; 335 } 336 337 338 status_t 339 ARMPagingMethod32Bit::CreateTranslationMap(bool kernel, VMTranslationMap** _map) 340 { 341 ARMVMTranslationMap32Bit* map = new(std::nothrow) ARMVMTranslationMap32Bit; 342 if (map == NULL) 343 return B_NO_MEMORY; 344 345 status_t error = map->Init(kernel); 346 if (error != B_OK) { 347 delete map; 348 return error; 349 } 350 351 *_map = map; 352 return B_OK; 353 } 354 355 356 static void 357 get_free_pgtable(kernel_args* args, phys_addr_t* phys_addr, addr_t* virt_addr) 358 { 359 if (args->arch_args.next_pagetable >= args->arch_args.last_pagetable) 360 panic("ran out of early page tables"); 361 362 phys_addr_t phys = args->arch_args.phys_pgdir + args->arch_args.next_pagetable; 363 addr_t virt = args->arch_args.vir_pgdir + args->arch_args.next_pagetable; 364 args->arch_args.next_pagetable += ARM_MMU_L2_COARSE_TABLE_SIZE; 365 366 *phys_addr = phys; 367 *virt_addr = virt; 368 } 369 370 status_t 371 ARMPagingMethod32Bit::MapEarly(kernel_args* args, addr_t virtualAddress, 372 phys_addr_t physicalAddress, uint8 attributes, 373 page_num_t (*get_free_page)(kernel_args*)) 374 { 375 // check to see if a page table exists for this range 376 int index = VADDR_TO_PDENT(virtualAddress); 377 if ((fKernelVirtualPageDirectory[index] & ARM_PDE_TYPE_MASK) == 0) { 378 phys_addr_t pgtable_phys; 379 addr_t pgtable_virt; 380 page_directory_entry *e; 381 382 // we need to allocate a pgtable 383 get_free_pgtable(args, &pgtable_phys, &pgtable_virt); 384 385 TRACE("ARMPagingMethod32Bit::MapEarly(): asked for free page for " 386 "pgtable. phys=%#" B_PRIxPHYSADDR ", virt=%#" B_PRIxADDR "\n", 387 pgtable_phys, pgtable_virt); 388 389 // zero it out in it's new mapping 390 memset((void*)pgtable_virt, 0, B_PAGE_SIZE); 391 392 // put it in the pgdir 393 e = &fKernelVirtualPageDirectory[index]; 394 PutPageTableInPageDir(e, pgtable_phys, 395 (virtualAddress < KERNEL_BASE) ? ARM_MMU_L1_FLAG_PXN : 0); 396 } 397 398 phys_addr_t ptEntryPhys = fKernelVirtualPageDirectory[index] & ARM_PDE_ADDRESS_MASK; 399 addr_t ptEntryVirt = ptEntryPhys - args->arch_args.phys_pgdir + args->arch_args.vir_pgdir; 400 page_table_entry* ptEntry = (page_table_entry*)ptEntryVirt; 401 ptEntry += VADDR_TO_PTENT(virtualAddress); 402 403 ASSERT_PRINT( 404 (*ptEntry & ARM_PTE_TYPE_MASK) == 0, 405 "virtual address: %#" B_PRIxADDR ", pde: %#" B_PRIx32 406 ", existing pte: %#" B_PRIx32, virtualAddress, fKernelVirtualPageDirectory[index], 407 *ptEntry); 408 409 // now, fill in the pentry 410 PutPageTableEntryInTable(ptEntry, 411 physicalAddress, attributes, 0, IS_KERNEL_ADDRESS(virtualAddress)); 412 413 return B_OK; 414 } 415 416 417 bool 418 ARMPagingMethod32Bit::IsKernelPageAccessible(addr_t virtualAddress, 419 uint32 protection) 420 { 421 #if 0 422 // We only trust the kernel team's page directory. So switch to it first. 423 // Always set it to make sure the TLBs don't contain obsolete data. 424 uint32 physicalPageDirectory = x86_read_cr3(); 425 x86_write_cr3(fKernelPhysicalPageDirectory); 426 427 // get the page directory entry for the address 428 page_directory_entry pageDirectoryEntry; 429 uint32 index = VADDR_TO_PDENT(virtualAddress); 430 431 if (physicalPageDirectory == fKernelPhysicalPageDirectory) { 432 pageDirectoryEntry = fKernelVirtualPageDirectory[index]; 433 } else if (fPhysicalPageMapper != NULL) { 434 // map the original page directory and get the entry 435 void* handle; 436 addr_t virtualPageDirectory; 437 status_t error = fPhysicalPageMapper->GetPageDebug( 438 physicalPageDirectory, &virtualPageDirectory, &handle); 439 if (error == B_OK) { 440 pageDirectoryEntry 441 = ((page_directory_entry*)virtualPageDirectory)[index]; 442 fPhysicalPageMapper->PutPageDebug(virtualPageDirectory, handle); 443 } else 444 pageDirectoryEntry = 0; 445 } else 446 pageDirectoryEntry = 0; 447 448 // map the page table and get the entry 449 page_table_entry pageTableEntry; 450 index = VADDR_TO_PTENT(virtualAddress); 451 452 if ((pageDirectoryEntry & X86_PDE_PRESENT) != 0 453 && fPhysicalPageMapper != NULL) { 454 void* handle; 455 addr_t virtualPageTable; 456 status_t error = fPhysicalPageMapper->GetPageDebug( 457 pageDirectoryEntry & X86_PDE_ADDRESS_MASK, &virtualPageTable, 458 &handle); 459 if (error == B_OK) { 460 pageTableEntry = ((page_table_entry*)virtualPageTable)[index]; 461 fPhysicalPageMapper->PutPageDebug(virtualPageTable, handle); 462 } else 463 pageTableEntry = 0; 464 } else 465 pageTableEntry = 0; 466 467 // switch back to the original page directory 468 if (physicalPageDirectory != fKernelPhysicalPageDirectory) 469 x86_write_cr3(physicalPageDirectory); 470 471 if ((pageTableEntry & X86_PTE_PRESENT) == 0) 472 return false; 473 474 // present means kernel-readable, so check for writable 475 return (protection & B_KERNEL_WRITE_AREA) == 0 476 || (pageTableEntry & X86_PTE_WRITABLE) != 0; 477 #endif 478 //IRA: fix the above! 479 return true; 480 } 481 482 483 /*static*/ void 484 ARMPagingMethod32Bit::PutPageTableInPageDir(page_directory_entry* entry, 485 phys_addr_t pgtablePhysical, uint32 attributes) 486 { 487 dsb(); 488 489 *entry = (pgtablePhysical & ARM_PDE_ADDRESS_MASK) | ARM_MMU_L1_TYPE_COARSE | attributes; 490 491 dsb(); 492 isb(); 493 } 494 495 496 /*static*/ void 497 ARMPagingMethod32Bit::PutPageTableEntryInTable(page_table_entry* entry, 498 phys_addr_t physicalAddress, uint32 attributes, uint32 memoryType, 499 bool globalPage) 500 { 501 page_table_entry page = (physicalAddress & ARM_PTE_ADDRESS_MASK) 502 | ARM_MMU_L2_TYPE_SMALLNEW 503 | MemoryTypeToPageTableEntryFlags(memoryType) 504 | AttributesToPageTableEntryFlags(attributes) 505 | ARM_MMU_L2_FLAG_AP0 506 | (globalPage ? 0 : ARM_MMU_L2_FLAG_NG); 507 508 // put it in the page table 509 *(volatile page_table_entry*)entry = page; 510 511 dsb(); 512 isb(); 513 } 514 515 516 inline int32 517 ARMPagingMethod32Bit::_GetInitialPoolCount() 518 { 519 int32 requiredSlots = smp_get_num_cpus() * TOTAL_SLOTS_PER_CPU 520 + EXTRA_SLOTS; 521 return (requiredSlots + 1023) / 1024; 522 } 523 524 525 /*static*/ void 526 ARMPagingMethod32Bit::_EarlyPreparePageTables(page_table_entry* pageTables, 527 addr_t address, size_t size) 528 { 529 ARMPagingMethod32Bit* method = ARMPagingMethod32Bit::Method(); 530 memset(pageTables, 0, 256 * (size / (B_PAGE_SIZE * 256))); 531 532 // put the array of pgtables directly into the kernel pagedir 533 // these will be wired and kept mapped into virtual space to be easy to get 534 // to 535 { 536 addr_t virtualTable = (addr_t)pageTables; 537 538 for (size_t i = 0; i < (size / (B_PAGE_SIZE * 256)); 539 i++, virtualTable += 256*sizeof(page_directory_entry)) { 540 phys_addr_t physicalTable = 0; 541 _EarlyQuery(virtualTable, &physicalTable); 542 page_directory_entry* entry = method->KernelVirtualPageDirectory() 543 + VADDR_TO_PDENT(address) + i; 544 PutPageTableInPageDir(entry, physicalTable, 545 (address < KERNEL_BASE) ? ARM_MMU_L1_FLAG_PXN : 0); 546 } 547 } 548 } 549 550 551 //! TODO: currently assumes this translation map is active 552 /*static*/ status_t 553 ARMPagingMethod32Bit::_EarlyQuery(addr_t virtualAddress, 554 phys_addr_t *_physicalAddress) 555 { 556 ARMPagingMethod32Bit* method = ARMPagingMethod32Bit::Method(); 557 int index = VADDR_TO_PDENT(virtualAddress); 558 if ((method->KernelVirtualPageDirectory()[index] & ARM_PDE_TYPE_MASK) == 0) { 559 // no pagetable here 560 return B_ERROR; 561 } 562 563 phys_addr_t ptEntryPhys = method->KernelVirtualPageDirectory()[index] & ARM_PDE_ADDRESS_MASK; 564 addr_t ptEntryVirt = ptEntryPhys - 565 (uint32_t)method->KernelPhysicalPageDirectory() + 566 (uint32_t)method->KernelVirtualPageDirectory(); 567 568 page_table_entry* entry = (page_table_entry*)ptEntryVirt; 569 entry += VADDR_TO_PTENT(virtualAddress); 570 571 if ((*entry & ARM_PTE_TYPE_MASK) == 0) { 572 // page mapping not valid 573 return B_ERROR; 574 } 575 576 *_physicalAddress = (*entry & ARM_PTE_ADDRESS_MASK) 577 | VADDR_TO_PGOFF(virtualAddress); 578 579 return B_OK; 580 } 581