1ca987d46SWarner Losh /*- 2ca987d46SWarner Losh * Copyright (c) 2013 The FreeBSD Foundation 3ca987d46SWarner Losh * 4ca987d46SWarner Losh * This software was developed by Benno Rice under sponsorship from 5ca987d46SWarner Losh * the FreeBSD Foundation. 6ca987d46SWarner Losh * Redistribution and use in source and binary forms, with or without 7ca987d46SWarner Losh * modification, are permitted provided that the following conditions 8ca987d46SWarner Losh * are met: 9ca987d46SWarner Losh * 1. Redistributions of source code must retain the above copyright 10ca987d46SWarner Losh * notice, this list of conditions and the following disclaimer. 11ca987d46SWarner Losh * 2. Redistributions in binary form must reproduce the above copyright 12ca987d46SWarner Losh * notice, this list of conditions and the following disclaimer in the 13ca987d46SWarner Losh * documentation and/or other materials provided with the distribution. 14ca987d46SWarner Losh * 15ca987d46SWarner Losh * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 16ca987d46SWarner Losh * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 17ca987d46SWarner Losh * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 18ca987d46SWarner Losh * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 19ca987d46SWarner Losh * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 20ca987d46SWarner Losh * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 21ca987d46SWarner Losh * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 22ca987d46SWarner Losh * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 23ca987d46SWarner Losh * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 24ca987d46SWarner Losh * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 25ca987d46SWarner Losh * SUCH DAMAGE. 26ca987d46SWarner Losh */ 27ca987d46SWarner Losh 28ca987d46SWarner Losh #include <sys/cdefs.h> 29ca987d46SWarner Losh __FBSDID("$FreeBSD$"); 30ca987d46SWarner Losh 31ca987d46SWarner Losh #include <sys/param.h> 32ca987d46SWarner Losh 33ca987d46SWarner Losh #include <stand.h> 34ca987d46SWarner Losh #include <bootstrap.h> 35ca987d46SWarner Losh 36ca987d46SWarner Losh #include <efi.h> 37ca987d46SWarner Losh #include <efilib.h> 38ca987d46SWarner Losh 39ca987d46SWarner Losh #include "loader_efi.h" 40ca987d46SWarner Losh 41f75caed6SKonstantin Belousov #define M(x) ((x) * 1024 * 1024) 42f75caed6SKonstantin Belousov #define G(x) (1UL * (x) * 1024 * 1024 * 1024) 43f75caed6SKonstantin Belousov 44*c16e08e5SWarner Losh #if defined(__amd64__) 45ca987d46SWarner Losh #include <machine/cpufunc.h> 46ca987d46SWarner Losh #include <machine/specialreg.h> 47fd2ef8efSMaxim Sobolev #include <machine/vmparam.h> 48ca987d46SWarner Losh 49ca987d46SWarner Losh /* 50ca987d46SWarner Losh * The code is excerpted from sys/x86/x86/identcpu.c: identify_cpu(), 51ca987d46SWarner Losh * identify_hypervisor(), and dev/hyperv/vmbus/hyperv.c: hyperv_identify(). 52ca987d46SWarner Losh */ 53ca987d46SWarner Losh #define CPUID_LEAF_HV_MAXLEAF 0x40000000 54ca987d46SWarner Losh #define CPUID_LEAF_HV_INTERFACE 0x40000001 55ca987d46SWarner Losh #define CPUID_LEAF_HV_FEATURES 0x40000003 56ca987d46SWarner Losh #define CPUID_LEAF_HV_LIMITS 0x40000005 57ca987d46SWarner Losh #define CPUID_HV_IFACE_HYPERV 0x31237648 /* HV#1 */ 58ca987d46SWarner Losh #define CPUID_HV_MSR_TIME_REFCNT 0x0002 /* MSR_HV_TIME_REF_COUNT */ 59ca987d46SWarner Losh #define CPUID_HV_MSR_HYPERCALL 0x0020 60ca987d46SWarner Losh 61ca987d46SWarner Losh static int 62ca987d46SWarner Losh running_on_hyperv(void) 63ca987d46SWarner Losh { 64ca987d46SWarner Losh char hv_vendor[16]; 65ca987d46SWarner Losh uint32_t regs[4]; 66ca987d46SWarner Losh 67ca987d46SWarner Losh do_cpuid(1, regs); 68ca987d46SWarner Losh if ((regs[2] & CPUID2_HV) == 0) 69ca987d46SWarner Losh return (0); 70ca987d46SWarner Losh 71ca987d46SWarner Losh do_cpuid(CPUID_LEAF_HV_MAXLEAF, regs); 72ca987d46SWarner Losh if (regs[0] < CPUID_LEAF_HV_LIMITS) 73ca987d46SWarner Losh return (0); 74ca987d46SWarner Losh 75ca987d46SWarner Losh ((uint32_t *)&hv_vendor)[0] = regs[1]; 76ca987d46SWarner Losh ((uint32_t *)&hv_vendor)[1] = regs[2]; 77ca987d46SWarner Losh ((uint32_t *)&hv_vendor)[2] = regs[3]; 78ca987d46SWarner Losh hv_vendor[12] = '\0'; 79ca987d46SWarner Losh if (strcmp(hv_vendor, "Microsoft Hv") != 0) 80ca987d46SWarner Losh return (0); 81ca987d46SWarner Losh 82ca987d46SWarner Losh do_cpuid(CPUID_LEAF_HV_INTERFACE, regs); 83ca987d46SWarner Losh if (regs[0] != CPUID_HV_IFACE_HYPERV) 84ca987d46SWarner Losh return (0); 85ca987d46SWarner Losh 86ca987d46SWarner Losh do_cpuid(CPUID_LEAF_HV_FEATURES, regs); 87ca987d46SWarner Losh if ((regs[0] & CPUID_HV_MSR_HYPERCALL) == 0) 88ca987d46SWarner Losh return (0); 89ca987d46SWarner Losh if ((regs[0] & CPUID_HV_MSR_TIME_REFCNT) == 0) 90ca987d46SWarner Losh return (0); 91ca987d46SWarner Losh 92ca987d46SWarner Losh return (1); 93ca987d46SWarner Losh } 94ca987d46SWarner Losh 95ca987d46SWarner Losh static void 96ca987d46SWarner Losh efi_verify_staging_size(unsigned long *nr_pages) 97ca987d46SWarner Losh { 98ca987d46SWarner Losh UINTN sz; 99ce37b71eSRebecca Cran EFI_MEMORY_DESCRIPTOR *map = NULL, *p; 100ca987d46SWarner Losh EFI_PHYSICAL_ADDRESS start, end; 101ca987d46SWarner Losh UINTN key, dsz; 102ca987d46SWarner Losh UINT32 dver; 103ca987d46SWarner Losh EFI_STATUS status; 104ca987d46SWarner Losh int i, ndesc; 105ca987d46SWarner Losh unsigned long available_pages = 0; 106ca987d46SWarner Losh 107ca987d46SWarner Losh sz = 0; 108ce37b71eSRebecca Cran 109ce37b71eSRebecca Cran for (;;) { 110ce37b71eSRebecca Cran status = BS->GetMemoryMap(&sz, map, &key, &dsz, &dver); 111ce37b71eSRebecca Cran if (!EFI_ERROR(status)) 112ce37b71eSRebecca Cran break; 113ce37b71eSRebecca Cran 114ca987d46SWarner Losh if (status != EFI_BUFFER_TOO_SMALL) { 115ce37b71eSRebecca Cran printf("Can't read memory map: %lu\n", 116ce37b71eSRebecca Cran EFI_ERROR_CODE(status)); 117ce37b71eSRebecca Cran goto out; 118ca987d46SWarner Losh } 119ca987d46SWarner Losh 120ce37b71eSRebecca Cran free(map); 121ce37b71eSRebecca Cran 122ce37b71eSRebecca Cran /* Allocate 10 descriptors more than the size reported, 123ce37b71eSRebecca Cran * to allow for any fragmentation caused by calling 124ce37b71eSRebecca Cran * malloc */ 125ce37b71eSRebecca Cran map = malloc(sz + (10 * dsz)); 126ce37b71eSRebecca Cran if (map == NULL) { 127ce37b71eSRebecca Cran printf("Unable to allocate memory\n"); 128ca987d46SWarner Losh goto out; 129ca987d46SWarner Losh } 130ce37b71eSRebecca Cran } 131ca987d46SWarner Losh 132ca987d46SWarner Losh ndesc = sz / dsz; 133ca987d46SWarner Losh for (i = 0, p = map; i < ndesc; 134ca987d46SWarner Losh i++, p = NextMemoryDescriptor(p, dsz)) { 135ca987d46SWarner Losh start = p->PhysicalStart; 136ca987d46SWarner Losh end = start + p->NumberOfPages * EFI_PAGE_SIZE; 137ca987d46SWarner Losh 138fd2ef8efSMaxim Sobolev if (KERNLOAD < start || KERNLOAD >= end) 139ca987d46SWarner Losh continue; 140ca987d46SWarner Losh 141ca987d46SWarner Losh available_pages = p->NumberOfPages - 142fd2ef8efSMaxim Sobolev ((KERNLOAD - start) >> EFI_PAGE_SHIFT); 143ca987d46SWarner Losh break; 144ca987d46SWarner Losh } 145ca987d46SWarner Losh 146ca987d46SWarner Losh if (available_pages == 0) { 147ca987d46SWarner Losh printf("Can't find valid memory map for staging area!\n"); 148ca987d46SWarner Losh goto out; 149ca987d46SWarner Losh } 150ca987d46SWarner Losh 151ca987d46SWarner Losh i++; 152ca987d46SWarner Losh p = NextMemoryDescriptor(p, dsz); 153ca987d46SWarner Losh 154ca987d46SWarner Losh for ( ; i < ndesc; 155ca987d46SWarner Losh i++, p = NextMemoryDescriptor(p, dsz)) { 156ca987d46SWarner Losh if (p->Type != EfiConventionalMemory && 157ca987d46SWarner Losh p->Type != EfiLoaderData) 158ca987d46SWarner Losh break; 159ca987d46SWarner Losh 160ca987d46SWarner Losh if (p->PhysicalStart != end) 161ca987d46SWarner Losh break; 162ca987d46SWarner Losh 163ca987d46SWarner Losh end = p->PhysicalStart + p->NumberOfPages * EFI_PAGE_SIZE; 164ca987d46SWarner Losh 165ca987d46SWarner Losh available_pages += p->NumberOfPages; 166ca987d46SWarner Losh } 167ca987d46SWarner Losh 168ca987d46SWarner Losh if (*nr_pages > available_pages) { 169ca987d46SWarner Losh printf("Staging area's size is reduced: %ld -> %ld!\n", 170ca987d46SWarner Losh *nr_pages, available_pages); 171ca987d46SWarner Losh *nr_pages = available_pages; 172ca987d46SWarner Losh } 173ca987d46SWarner Losh out: 174ca987d46SWarner Losh free(map); 175ca987d46SWarner Losh } 176*c16e08e5SWarner Losh #endif /* __amd64__ */ 177ca987d46SWarner Losh 1784d6047edSWarner Losh #if defined(__arm__) 179b54eec83SKonstantin Belousov #define DEFAULT_EFI_STAGING_SIZE 32 18094e8f7c6SRebecca Cran #else 181b54eec83SKonstantin Belousov #define DEFAULT_EFI_STAGING_SIZE 64 182ca987d46SWarner Losh #endif 183b54eec83SKonstantin Belousov #ifndef EFI_STAGING_SIZE 184b54eec83SKonstantin Belousov #define EFI_STAGING_SIZE DEFAULT_EFI_STAGING_SIZE 18594e8f7c6SRebecca Cran #endif 186ca987d46SWarner Losh 187f75caed6SKonstantin Belousov #if defined(__aarch64__) || defined(__amd64__) || defined(__arm__) || \ 188f75caed6SKonstantin Belousov defined(__riscv) 189f75caed6SKonstantin Belousov #define EFI_STAGING_2M_ALIGN 1 190f75caed6SKonstantin Belousov #else 191f75caed6SKonstantin Belousov #define EFI_STAGING_2M_ALIGN 0 192f75caed6SKonstantin Belousov #endif 193f75caed6SKonstantin Belousov 194f75caed6SKonstantin Belousov #if defined(__amd64__) 195f75caed6SKonstantin Belousov #define EFI_STAGING_SLOP M(8) 196f75caed6SKonstantin Belousov #else 197f75caed6SKonstantin Belousov #define EFI_STAGING_SLOP 0 198f75caed6SKonstantin Belousov #endif 199f75caed6SKonstantin Belousov 200f75caed6SKonstantin Belousov static u_long staging_slop = EFI_STAGING_SLOP; 201f75caed6SKonstantin Belousov 202e6bb174cSAndrew Turner EFI_PHYSICAL_ADDRESS staging, staging_end, staging_base; 2039d70108aSWarner Losh bool stage_offset_set = false; 204ca987d46SWarner Losh ssize_t stage_offset; 205ca987d46SWarner Losh 206f75caed6SKonstantin Belousov static void 207f75caed6SKonstantin Belousov efi_copy_free(void) 208f75caed6SKonstantin Belousov { 209f75caed6SKonstantin Belousov BS->FreePages(staging_base, (staging_end - staging_base) / 210f75caed6SKonstantin Belousov EFI_PAGE_SIZE); 2119d70108aSWarner Losh stage_offset_set = false; 212f75caed6SKonstantin Belousov stage_offset = 0; 213f75caed6SKonstantin Belousov } 214f75caed6SKonstantin Belousov 215f75caed6SKonstantin Belousov #ifdef __amd64__ 2166032b6baSKonstantin Belousov int copy_staging = COPY_STAGING_AUTO; 217f75caed6SKonstantin Belousov 218f75caed6SKonstantin Belousov static int 219f75caed6SKonstantin Belousov command_copy_staging(int argc, char *argv[]) 220f75caed6SKonstantin Belousov { 221f75caed6SKonstantin Belousov static const char *const mode[3] = { 222f75caed6SKonstantin Belousov [COPY_STAGING_ENABLE] = "enable", 223f75caed6SKonstantin Belousov [COPY_STAGING_DISABLE] = "disable", 224f75caed6SKonstantin Belousov [COPY_STAGING_AUTO] = "auto", 225f75caed6SKonstantin Belousov }; 226f75caed6SKonstantin Belousov int prev, res; 227f75caed6SKonstantin Belousov 228f75caed6SKonstantin Belousov res = CMD_OK; 229f75caed6SKonstantin Belousov if (argc > 2) { 230f75caed6SKonstantin Belousov res = CMD_ERROR; 231f75caed6SKonstantin Belousov } else if (argc == 2) { 232f75caed6SKonstantin Belousov prev = copy_staging; 233f75caed6SKonstantin Belousov if (strcmp(argv[1], "enable") == 0) 234f75caed6SKonstantin Belousov copy_staging = COPY_STAGING_ENABLE; 235f75caed6SKonstantin Belousov else if (strcmp(argv[1], "disable") == 0) 236f75caed6SKonstantin Belousov copy_staging = COPY_STAGING_DISABLE; 237f75caed6SKonstantin Belousov else if (strcmp(argv[1], "auto") == 0) 238f75caed6SKonstantin Belousov copy_staging = COPY_STAGING_AUTO; 239f75caed6SKonstantin Belousov else { 240f75caed6SKonstantin Belousov printf("usage: copy_staging enable|disable|auto\n"); 241f75caed6SKonstantin Belousov res = CMD_ERROR; 242f75caed6SKonstantin Belousov } 243f75caed6SKonstantin Belousov if (res == CMD_OK && prev != copy_staging) { 244f75caed6SKonstantin Belousov printf("changed copy_staging, unloading kernel\n"); 245f75caed6SKonstantin Belousov unload(); 246f75caed6SKonstantin Belousov efi_copy_free(); 247f75caed6SKonstantin Belousov efi_copy_init(); 248f75caed6SKonstantin Belousov } 249f75caed6SKonstantin Belousov } else { 250f75caed6SKonstantin Belousov printf("copy staging: %s\n", mode[copy_staging]); 251f75caed6SKonstantin Belousov } 252f75caed6SKonstantin Belousov return (res); 253f75caed6SKonstantin Belousov } 254f75caed6SKonstantin Belousov COMMAND_SET(copy_staging, "copy_staging", "copy staging", command_copy_staging); 255f75caed6SKonstantin Belousov #endif 256f75caed6SKonstantin Belousov 257f75caed6SKonstantin Belousov static int 258f75caed6SKonstantin Belousov command_staging_slop(int argc, char *argv[]) 259f75caed6SKonstantin Belousov { 260f75caed6SKonstantin Belousov char *endp; 261f75caed6SKonstantin Belousov u_long new, prev; 262f75caed6SKonstantin Belousov int res; 263f75caed6SKonstantin Belousov 264f75caed6SKonstantin Belousov res = CMD_OK; 265f75caed6SKonstantin Belousov if (argc > 2) { 266f75caed6SKonstantin Belousov res = CMD_ERROR; 267f75caed6SKonstantin Belousov } else if (argc == 2) { 268f75caed6SKonstantin Belousov new = strtoul(argv[1], &endp, 0); 269f75caed6SKonstantin Belousov if (*endp != '\0') { 270f75caed6SKonstantin Belousov printf("invalid slop value\n"); 271f75caed6SKonstantin Belousov res = CMD_ERROR; 272f75caed6SKonstantin Belousov } 273f75caed6SKonstantin Belousov if (res == CMD_OK && staging_slop != new) { 274f75caed6SKonstantin Belousov printf("changed slop, unloading kernel\n"); 275f75caed6SKonstantin Belousov unload(); 276f75caed6SKonstantin Belousov efi_copy_free(); 277f75caed6SKonstantin Belousov efi_copy_init(); 278f75caed6SKonstantin Belousov } 279f75caed6SKonstantin Belousov } else { 280f75caed6SKonstantin Belousov printf("staging slop %#lx\n", staging_slop); 281f75caed6SKonstantin Belousov } 282f75caed6SKonstantin Belousov return (res); 283f75caed6SKonstantin Belousov } 284f75caed6SKonstantin Belousov COMMAND_SET(staging_slop, "staging_slop", "set staging slop", 285f75caed6SKonstantin Belousov command_staging_slop); 286f75caed6SKonstantin Belousov 287*c16e08e5SWarner Losh #if defined(__amd64__) 288f75caed6SKonstantin Belousov /* 289e30a0801SGordon Bergling * The staging area must reside in the first 1GB or 4GB physical 290f75caed6SKonstantin Belousov * memory: see elf64_exec() in 291f75caed6SKonstantin Belousov * boot/efi/loader/arch/amd64/elf64_freebsd.c. 292f75caed6SKonstantin Belousov */ 293f75caed6SKonstantin Belousov static EFI_PHYSICAL_ADDRESS 294f75caed6SKonstantin Belousov get_staging_max(void) 295f75caed6SKonstantin Belousov { 296f75caed6SKonstantin Belousov EFI_PHYSICAL_ADDRESS res; 297f75caed6SKonstantin Belousov 298f75caed6SKonstantin Belousov res = copy_staging == COPY_STAGING_ENABLE ? G(1) : G(4); 299f75caed6SKonstantin Belousov return (res); 300f75caed6SKonstantin Belousov } 301f75caed6SKonstantin Belousov #define EFI_ALLOC_METHOD AllocateMaxAddress 302f75caed6SKonstantin Belousov #else 303f75caed6SKonstantin Belousov #define EFI_ALLOC_METHOD AllocateAnyPages 304f75caed6SKonstantin Belousov #endif 305f75caed6SKonstantin Belousov 306ca987d46SWarner Losh int 307ca987d46SWarner Losh efi_copy_init(void) 308ca987d46SWarner Losh { 309ca987d46SWarner Losh EFI_STATUS status; 310ca987d46SWarner Losh unsigned long nr_pages; 311b54eec83SKonstantin Belousov vm_offset_t ess; 312ca987d46SWarner Losh 313b54eec83SKonstantin Belousov ess = EFI_STAGING_SIZE; 314b54eec83SKonstantin Belousov if (ess < DEFAULT_EFI_STAGING_SIZE) 315b54eec83SKonstantin Belousov ess = DEFAULT_EFI_STAGING_SIZE; 316b54eec83SKonstantin Belousov nr_pages = EFI_SIZE_TO_PAGES(M(1) * ess); 317ca987d46SWarner Losh 318*c16e08e5SWarner Losh #if defined(__amd64__) 319ca987d46SWarner Losh /* 320ca987d46SWarner Losh * We'll decrease nr_pages, if it's too big. Currently we only 321ca987d46SWarner Losh * apply this to FreeBSD VM running on Hyper-V. Why? Please see 322ca987d46SWarner Losh * https://bugs.freebsd.org/bugzilla/show_bug.cgi?id=211746#c28 323ca987d46SWarner Losh */ 324ca987d46SWarner Losh if (running_on_hyperv()) 325ca987d46SWarner Losh efi_verify_staging_size(&nr_pages); 326ca987d46SWarner Losh 327f75caed6SKonstantin Belousov staging = get_staging_max(); 328ca987d46SWarner Losh #endif 32995fa2e0aSRobert Clausecker status = BS->AllocatePages(EFI_ALLOC_METHOD, EfiLoaderCode, 330f75caed6SKonstantin Belousov nr_pages, &staging); 331ca987d46SWarner Losh if (EFI_ERROR(status)) { 332ca987d46SWarner Losh printf("failed to allocate staging area: %lu\n", 333ca987d46SWarner Losh EFI_ERROR_CODE(status)); 334ca987d46SWarner Losh return (status); 335ca987d46SWarner Losh } 336e6bb174cSAndrew Turner staging_base = staging; 337ca987d46SWarner Losh staging_end = staging + nr_pages * EFI_PAGE_SIZE; 338ca987d46SWarner Losh 339f75caed6SKonstantin Belousov #if EFI_STAGING_2M_ALIGN 340ca987d46SWarner Losh /* 341ca987d46SWarner Losh * Round the kernel load address to a 2MiB value. This is needed 342ca987d46SWarner Losh * because the kernel builds a page table based on where it has 343ca987d46SWarner Losh * been loaded in physical address space. As the kernel will use 344ca987d46SWarner Losh * either a 1MiB or 2MiB page for this we need to make sure it 345ca987d46SWarner Losh * is correctly aligned for both cases. 346ca987d46SWarner Losh */ 347f75caed6SKonstantin Belousov staging = roundup2(staging, M(2)); 348ca987d46SWarner Losh #endif 349ca987d46SWarner Losh 350ca987d46SWarner Losh return (0); 351ca987d46SWarner Losh } 352ca987d46SWarner Losh 353e6bb174cSAndrew Turner static bool 354e6bb174cSAndrew Turner efi_check_space(vm_offset_t end) 355e6bb174cSAndrew Turner { 356f75caed6SKonstantin Belousov EFI_PHYSICAL_ADDRESS addr, new_base, new_staging; 357e6bb174cSAndrew Turner EFI_STATUS status; 358e6bb174cSAndrew Turner unsigned long nr_pages; 359e6bb174cSAndrew Turner 360f75caed6SKonstantin Belousov end = roundup2(end, EFI_PAGE_SIZE); 361f75caed6SKonstantin Belousov 362e6bb174cSAndrew Turner /* There is already enough space */ 363f75caed6SKonstantin Belousov if (end + staging_slop <= staging_end) 364e6bb174cSAndrew Turner return (true); 365e6bb174cSAndrew Turner 366305ef653SWarner Losh if (!boot_services_active) { 367f75caed6SKonstantin Belousov if (end <= staging_end) 368f75caed6SKonstantin Belousov return (true); 369f75caed6SKonstantin Belousov panic("efi_check_space: cannot expand staging area " 370f75caed6SKonstantin Belousov "after boot services were exited\n"); 371f75caed6SKonstantin Belousov } 372e6bb174cSAndrew Turner 373f75caed6SKonstantin Belousov /* 374f75caed6SKonstantin Belousov * Add slop at the end: 375f75caed6SKonstantin Belousov * 1. amd64 kernel expects to do some very early allocations 376f75caed6SKonstantin Belousov * by carving out memory after kernend. Slop guarantees 377f75caed6SKonstantin Belousov * that it does not ovewrite anything useful. 378f75caed6SKonstantin Belousov * 2. It seems that initial calculation of the staging size 379f75caed6SKonstantin Belousov * could be somewhat smaller than actually copying in after 380f75caed6SKonstantin Belousov * boot services are exited. Slop avoids calling 381f75caed6SKonstantin Belousov * BS->AllocatePages() when it cannot work. 382f75caed6SKonstantin Belousov */ 383f75caed6SKonstantin Belousov end += staging_slop; 384f75caed6SKonstantin Belousov 385f75caed6SKonstantin Belousov nr_pages = EFI_SIZE_TO_PAGES(end - staging_end); 386*c16e08e5SWarner Losh #if defined(__amd64__) 387f75caed6SKonstantin Belousov /* 388f75caed6SKonstantin Belousov * amd64 needs all memory to be allocated under the 1G or 4G boundary. 389f75caed6SKonstantin Belousov */ 390f75caed6SKonstantin Belousov if (end > get_staging_max()) 391e6bb174cSAndrew Turner goto before_staging; 392e6bb174cSAndrew Turner #endif 393e6bb174cSAndrew Turner 394e6bb174cSAndrew Turner /* Try to allocate more space after the previous allocation */ 395e6bb174cSAndrew Turner addr = staging_end; 39695fa2e0aSRobert Clausecker status = BS->AllocatePages(AllocateAddress, EfiLoaderCode, nr_pages, 397e6bb174cSAndrew Turner &addr); 398e6bb174cSAndrew Turner if (!EFI_ERROR(status)) { 399e6bb174cSAndrew Turner staging_end = staging_end + nr_pages * EFI_PAGE_SIZE; 400e6bb174cSAndrew Turner return (true); 401e6bb174cSAndrew Turner } 402e6bb174cSAndrew Turner 403e6bb174cSAndrew Turner before_staging: 404e6bb174cSAndrew Turner /* Try allocating space before the previous allocation */ 405f75caed6SKonstantin Belousov if (staging < nr_pages * EFI_PAGE_SIZE) 406f75caed6SKonstantin Belousov goto expand; 407e6bb174cSAndrew Turner addr = staging - nr_pages * EFI_PAGE_SIZE; 408f75caed6SKonstantin Belousov #if EFI_STAGING_2M_ALIGN 409e6bb174cSAndrew Turner /* See efi_copy_init for why this is needed */ 410f75caed6SKonstantin Belousov addr = rounddown2(addr, M(2)); 411e6bb174cSAndrew Turner #endif 412e6bb174cSAndrew Turner nr_pages = EFI_SIZE_TO_PAGES(staging_base - addr); 41395fa2e0aSRobert Clausecker status = BS->AllocatePages(AllocateAddress, EfiLoaderCode, nr_pages, 414e6bb174cSAndrew Turner &addr); 415e6bb174cSAndrew Turner if (!EFI_ERROR(status)) { 416e6bb174cSAndrew Turner /* 417e6bb174cSAndrew Turner * Move the old allocation and update the state so 418e6bb174cSAndrew Turner * translation still works. 419e6bb174cSAndrew Turner */ 420e6bb174cSAndrew Turner staging_base = addr; 42167dc6bedSJohn Baldwin memmove((void *)(uintptr_t)staging_base, 42267dc6bedSJohn Baldwin (void *)(uintptr_t)staging, staging_end - staging); 423f75caed6SKonstantin Belousov stage_offset -= staging - staging_base; 424e6bb174cSAndrew Turner staging = staging_base; 425e6bb174cSAndrew Turner return (true); 426e6bb174cSAndrew Turner } 427e6bb174cSAndrew Turner 428f75caed6SKonstantin Belousov expand: 429f75caed6SKonstantin Belousov nr_pages = EFI_SIZE_TO_PAGES(end - (vm_offset_t)staging); 430f75caed6SKonstantin Belousov #if EFI_STAGING_2M_ALIGN 431f75caed6SKonstantin Belousov nr_pages += M(2) / EFI_PAGE_SIZE; 432f75caed6SKonstantin Belousov #endif 433*c16e08e5SWarner Losh #if defined(__amd64__) 434f75caed6SKonstantin Belousov new_base = get_staging_max(); 435f75caed6SKonstantin Belousov #endif 43695fa2e0aSRobert Clausecker status = BS->AllocatePages(EFI_ALLOC_METHOD, EfiLoaderCode, 437f75caed6SKonstantin Belousov nr_pages, &new_base); 438f75caed6SKonstantin Belousov if (!EFI_ERROR(status)) { 439f75caed6SKonstantin Belousov #if EFI_STAGING_2M_ALIGN 440f75caed6SKonstantin Belousov new_staging = roundup2(new_base, M(2)); 441f75caed6SKonstantin Belousov #else 442f75caed6SKonstantin Belousov new_staging = new_base; 443f75caed6SKonstantin Belousov #endif 444f75caed6SKonstantin Belousov /* 445f75caed6SKonstantin Belousov * Move the old allocation and update the state so 446f75caed6SKonstantin Belousov * translation still works. 447f75caed6SKonstantin Belousov */ 448f75caed6SKonstantin Belousov memcpy((void *)(uintptr_t)new_staging, 449f75caed6SKonstantin Belousov (void *)(uintptr_t)staging, staging_end - staging); 450f75caed6SKonstantin Belousov BS->FreePages(staging_base, (staging_end - staging_base) / 451f75caed6SKonstantin Belousov EFI_PAGE_SIZE); 452f75caed6SKonstantin Belousov stage_offset -= staging - new_staging; 453f75caed6SKonstantin Belousov staging = new_staging; 454f75caed6SKonstantin Belousov staging_end = new_base + nr_pages * EFI_PAGE_SIZE; 455f75caed6SKonstantin Belousov staging_base = new_base; 456f75caed6SKonstantin Belousov return (true); 457f75caed6SKonstantin Belousov } 458f75caed6SKonstantin Belousov 459e6bb174cSAndrew Turner printf("efi_check_space: Unable to expand staging area\n"); 460e6bb174cSAndrew Turner return (false); 461e6bb174cSAndrew Turner } 462e6bb174cSAndrew Turner 463ca987d46SWarner Losh void * 464ca987d46SWarner Losh efi_translate(vm_offset_t ptr) 465ca987d46SWarner Losh { 466ca987d46SWarner Losh 467ca987d46SWarner Losh return ((void *)(ptr + stage_offset)); 468ca987d46SWarner Losh } 469ca987d46SWarner Losh 470ca987d46SWarner Losh ssize_t 471ca987d46SWarner Losh efi_copyin(const void *src, vm_offset_t dest, const size_t len) 472ca987d46SWarner Losh { 473ca987d46SWarner Losh 474ca987d46SWarner Losh if (!stage_offset_set) { 475ca987d46SWarner Losh stage_offset = (vm_offset_t)staging - dest; 4769d70108aSWarner Losh stage_offset_set = true; 477ca987d46SWarner Losh } 478ca987d46SWarner Losh 479ca987d46SWarner Losh /* XXX: Callers do not check for failure. */ 480e6bb174cSAndrew Turner if (!efi_check_space(dest + stage_offset + len)) { 481ca987d46SWarner Losh errno = ENOMEM; 482ca987d46SWarner Losh return (-1); 483ca987d46SWarner Losh } 484ca987d46SWarner Losh bcopy(src, (void *)(dest + stage_offset), len); 485ca987d46SWarner Losh return (len); 486ca987d46SWarner Losh } 487ca987d46SWarner Losh 488ca987d46SWarner Losh ssize_t 489ca987d46SWarner Losh efi_copyout(const vm_offset_t src, void *dest, const size_t len) 490ca987d46SWarner Losh { 491ca987d46SWarner Losh 492ca987d46SWarner Losh /* XXX: Callers do not check for failure. */ 493ca987d46SWarner Losh if (src + stage_offset + len > staging_end) { 494ca987d46SWarner Losh errno = ENOMEM; 495ca987d46SWarner Losh return (-1); 496ca987d46SWarner Losh } 497ca987d46SWarner Losh bcopy((void *)(src + stage_offset), dest, len); 498ca987d46SWarner Losh return (len); 499ca987d46SWarner Losh } 500ca987d46SWarner Losh 501ca987d46SWarner Losh ssize_t 502afc571b1SSimon J. Gerraty efi_readin(readin_handle_t fd, vm_offset_t dest, const size_t len) 503ca987d46SWarner Losh { 504ca987d46SWarner Losh 5052192efc0SMitchell Horne if (!stage_offset_set) { 5062192efc0SMitchell Horne stage_offset = (vm_offset_t)staging - dest; 5079d70108aSWarner Losh stage_offset_set = true; 5082192efc0SMitchell Horne } 5092192efc0SMitchell Horne 510e6bb174cSAndrew Turner if (!efi_check_space(dest + stage_offset + len)) { 511ca987d46SWarner Losh errno = ENOMEM; 512ca987d46SWarner Losh return (-1); 513ca987d46SWarner Losh } 514afc571b1SSimon J. Gerraty return (VECTX_READ(fd, (void *)(dest + stage_offset), len)); 515ca987d46SWarner Losh } 516ca987d46SWarner Losh 517ca987d46SWarner Losh void 518ca987d46SWarner Losh efi_copy_finish(void) 519ca987d46SWarner Losh { 520ca987d46SWarner Losh uint64_t *src, *dst, *last; 521ca987d46SWarner Losh 5220b600ec4SJohn Baldwin src = (uint64_t *)(uintptr_t)staging; 5230b600ec4SJohn Baldwin dst = (uint64_t *)(uintptr_t)(staging - stage_offset); 5240b600ec4SJohn Baldwin last = (uint64_t *)(uintptr_t)staging_end; 525ca987d46SWarner Losh 526ca987d46SWarner Losh while (src < last) 527ca987d46SWarner Losh *dst++ = *src++; 528ca987d46SWarner Losh } 529f75caed6SKonstantin Belousov 530f75caed6SKonstantin Belousov void 531f75caed6SKonstantin Belousov efi_copy_finish_nop(void) 532f75caed6SKonstantin Belousov { 533f75caed6SKonstantin Belousov } 534