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xnu-792.10.96.tar.gz
[apple/xnu.git] / osfmk / i386 / hibernate_i386.c
index d243fcd5659cf38e4947bcfb0e910441e60ca522..d8f14ea469e4b80f2358c7cabfd4cca5169c6de3 100644 (file)
 #include <i386/pmap.h>
 #include <kern/cpu_data.h>
 #include <IOKit/IOPlatformExpert.h>
-#define KERNEL
+
+#include <pexpert/i386/efi.h>
 
 #include <IOKit/IOHibernatePrivate.h>
 #include <vm/vm_page.h>
+#include "i386_lowmem.h"
 
-/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
-
-/* This assumes that
- * - we never will want to read or write memory below the start of kernel text
- * - kernel text and data isn't included in pmap memory regions
- */
+#define MAX_BANKS      32
 
-extern void *sectTEXTB;
-extern char            *first_avail;
+/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
 
 hibernate_page_list_t *
 hibernate_page_list_allocate(void)
 {
-    vm_offset_t             base;
+    ppnum_t                base, num;
     vm_size_t               size;
-    uint32_t                bank;
+    uint32_t                bank, num_banks;
     uint32_t               pages, page_count;
     hibernate_page_list_t * list;
     hibernate_bitmap_t *    bitmap;
-    pmap_memory_region_t *  regions;
-    pmap_memory_region_t *  rp;
-    uint32_t                num_regions, num_alloc_regions;
-
-    page_count = 0;
-
-    /* Make a list of the maximum number of regions needed */
-    num_alloc_regions = 1 + pmap_memory_region_count;
-
-    /* Allocate our own list of memory regions so we can sort them in order. */
-    regions = (pmap_memory_region_t *)kalloc(sizeof(pmap_memory_region_t) * num_alloc_regions);
-    if (!regions)
-        return (0);
 
-    /* Fill in the actual regions we will be returning. */
-    rp = regions;
+    EfiMemoryRange *       mptr;
+    uint32_t               mcount, msize, i;
+    hibernate_bitmap_t     dram_ranges[MAX_BANKS];
+    boot_args *                    args = (boot_args *) PE_state.bootArgs;
 
-    /* XXX should check for non-volatile memory region below kernel space. */
-    /* Kernel region is first. */
-    base = (vm_offset_t)(sectTEXTB) & 0x3FFFFFFF;
-    rp->base = atop_32(base);
-    rp->end = atop_32((vm_offset_t)first_avail) - 1;
-    rp->alloc = 0;
-    num_regions = 1;
+    mptr = args->MemoryMap;
+    if (args->MemoryMapDescriptorSize == 0)
+       panic("Invalid memory map descriptor size");
+    msize = args->MemoryMapDescriptorSize;
+    mcount = args->MemoryMapSize / msize;
 
-    /* Remaining memory regions.  Consolidate adjacent regions. */
-    for (bank = 0; bank < (uint32_t) pmap_memory_region_count; bank++)
+    num_banks = 0;
+    for (i = 0; i < mcount; i++, mptr = (EfiMemoryRange *)(((vm_offset_t)mptr) + msize))
     {
-        if ((rp->end + 1) == pmap_memory_regions[bank].base) {
-            rp->end = pmap_memory_regions[bank].end;
-        } else {
-            ++rp;
-            ++num_regions;
-            rp->base = pmap_memory_regions[bank].base;
-            rp->end = pmap_memory_regions[bank].end;
-            rp->alloc = 0;
-        }
+       base = (ppnum_t) (mptr->PhysicalStart >> I386_PGSHIFT);
+       num = (ppnum_t) mptr->NumberOfPages;
+       if (!num)
+           continue;
+
+       switch (mptr->Type)
+       {
+           // any kind of dram
+           case kEfiLoaderCode:
+           case kEfiLoaderData:
+           case kEfiBootServicesCode:
+           case kEfiBootServicesData:
+           case kEfiConventionalMemory:
+           case kEfiACPIReclaimMemory:
+           case kEfiACPIMemoryNVS:
+           case kEfiPalCode:
+
+               if (!num_banks || (base != (1 + dram_ranges[num_banks - 1].last_page)))
+               {
+                   num_banks++;
+                   if (num_banks >= MAX_BANKS)
+                       break;
+                   dram_ranges[num_banks - 1].first_page = base;
+               }
+               dram_ranges[num_banks - 1].last_page = base + num - 1;
+               break;
+
+           // runtime services will be restarted, so no save
+           case kEfiRuntimeServicesCode:
+           case kEfiRuntimeServicesData:
+           // non dram
+           case kEfiReservedMemoryType:
+           case kEfiUnusableMemory:
+           case kEfiMemoryMappedIO:
+           case kEfiMemoryMappedIOPortSpace:
+           default:
+               break;
+       }
     }
 
-    /* Size the hibernation bitmap */
+    if (num_banks >= MAX_BANKS)
+       return (NULL);
+
+    // size the hibernation bitmap
+
     size = sizeof(hibernate_page_list_t);
     page_count = 0;
-    for (bank = 0, rp = regions; bank < num_regions; bank++, rp++) {
-       pages = rp->end + 1 - rp->base;
+    for (bank = 0; bank < num_banks; bank++) {
+       pages = dram_ranges[bank].last_page + 1 - dram_ranges[bank].first_page;
        page_count += pages;
         size += sizeof(hibernate_bitmap_t) + ((pages + 31) >> 5) * sizeof(uint32_t);
     }
@@ -109,62 +125,75 @@ hibernate_page_list_allocate(void)
        
     list->list_size  = size;
     list->page_count = page_count;
-    list->bank_count = num_regions;
+    list->bank_count = num_banks;
+
+    // convert to hibernation bitmap.
 
-    /* Convert to hibernation bitmap. */
-    /* This assumes that ranges are in order and do not overlap. */
     bitmap = &list->bank_bitmap[0];
-    for (bank = 0, rp = regions; bank < num_regions; bank++, rp++) {
-        bitmap->first_page = rp->base;
-        bitmap->last_page = rp->end;
+    for (bank = 0; bank < num_banks; bank++)
+    {
+        bitmap->first_page = dram_ranges[bank].first_page;
+        bitmap->last_page  = dram_ranges[bank].last_page;
         bitmap->bitmapwords = (bitmap->last_page + 1
                                - bitmap->first_page + 31) >> 5;
-        kprintf("HIB: Bank %d: 0x%x end 0x%x\n", bank,
-                ptoa_32(bitmap->first_page),
-                ptoa_32(bitmap->last_page));
+        kprintf("hib bank[%d]: 0x%x000 end 0x%xfff\n", bank,
+                bitmap->first_page,
+                bitmap->last_page);
        bitmap = (hibernate_bitmap_t *) &bitmap->bitmap[bitmap->bitmapwords];
     }
 
-    kfree((void *)regions, sizeof(pmap_memory_region_t) * num_alloc_regions);
     return (list);
 }
 
+// mark pages not to be saved, but available for scratch usage during restore
+
+void
+hibernate_page_list_setall_machine( __unused hibernate_page_list_t * page_list,
+                                    __unused hibernate_page_list_t * page_list_wired,
+                                    __unused uint32_t * pagesOut)
+{
+}
+
+// mark pages not to be saved and not for scratch usage during restore
 void
-hibernate_page_list_setall_machine(hibernate_page_list_t * page_list,
-                                   hibernate_page_list_t * page_list_wired,
-                                   uint32_t * pagesOut)
+hibernate_page_list_set_volatile( hibernate_page_list_t * page_list,
+                                 hibernate_page_list_t * page_list_wired,
+                                 uint32_t * pagesOut)
 {
-    KernelBootArgs_t *      bootArgs = (KernelBootArgs_t *)PE_state.bootArgs;
-    MemoryRange *           mptr;
-    uint32_t                bank;
-    uint32_t                page, count;
-
-    for (bank = 0, mptr = bootArgs->memoryMap; bank < bootArgs->memoryMapCount; bank++, mptr++) {
-
-        if (kMemoryRangeNVS != mptr->type) continue;
-        kprintf("Base NVS region 0x%x + 0x%x\n", (vm_offset_t)mptr->base, (vm_size_t)mptr->length);
-        /* Round to page size.  Hopefully this does not overlap any reserved areas. */
-        page = atop_32(trunc_page((vm_offset_t)mptr->base));
-        count = atop_32(round_page((vm_offset_t)mptr->base + (vm_size_t)mptr->length)) - page;
-        kprintf("Rounded NVS region 0x%x size 0x%x\n", page, count);
-
-        hibernate_set_page_state(page_list, page_list_wired, page, count, 1);
-        pagesOut -= count;
+    boot_args * args = (boot_args *) PE_state.bootArgs;
+
+    hibernate_set_page_state(page_list, page_list_wired, 
+               I386_HIB_PAGETABLE, I386_HIB_PAGETABLE_COUNT, 
+               kIOHibernatePageStateFree);
+    *pagesOut -= I386_HIB_PAGETABLE_COUNT;
+
+    if (args->efiRuntimeServicesPageStart)
+    {
+       hibernate_set_page_state(page_list, page_list_wired, 
+                   args->efiRuntimeServicesPageStart, args->efiRuntimeServicesPageCount, 
+                   kIOHibernatePageStateFree);
+       *pagesOut -= args->efiRuntimeServicesPageCount;
     }
 }
 
 kern_return_t 
 hibernate_processor_setup(IOHibernateImageHeader * header)
 {
-    current_cpu_datap()->cpu_hibernate = 1;
+    boot_args * args = (boot_args *) PE_state.bootArgs;
+
+    cpu_datap(0)->cpu_hibernate = 1;
     header->processorFlags = 0;
+
+    header->runtimePages     = args->efiRuntimeServicesPageStart;
+    header->runtimePageCount = args->efiRuntimeServicesPageCount;
+
     return (KERN_SUCCESS);
 }
 
 void
 hibernate_vm_lock(void)
 {
-    if (FALSE /* getPerProc()->hibernate */)
+    if (current_cpu_datap()->cpu_hibernate)
     {
         vm_page_lock_queues();
         mutex_lock(&vm_page_queue_free_lock);
@@ -174,7 +203,7 @@ hibernate_vm_lock(void)
 void
 hibernate_vm_unlock(void)
 {
-    if (FALSE /* getPerProc()->hibernate */)
+    if (current_cpu_datap()->cpu_hibernate)
     {
         mutex_unlock(&vm_page_queue_free_lock);
         vm_page_unlock_queues();