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x86: improve reservation of AP trampoline memory
So that it doesn't rely on physmap[1] containing an address below 1MiB. Instead scan the full physmap and search for a suitable address to place the trampoline code (below 1MiB) and the initial memory pages (below 4GiB). Sponsored by: Citrix Systems R&D Reviewed by: kib Differential Revision: https://reviews.freebsd.org/D14878
This commit is contained in:
parent
319cc4a700
commit
9dba82a442
Notes:
svn2git
2020-12-20 02:59:44 +00:00
svn path=/head/; revision=332073
@ -1246,14 +1246,10 @@ getmemsize(caddr_t kmdp, u_int64_t first)
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* Make hole for "AP -> long mode" bootstrap code. The
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* mp_bootaddress vector is only available when the kernel
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* is configured to support APs and APs for the system start
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* in 32bit mode (e.g. SMP bare metal).
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* in real mode mode (e.g. SMP bare metal).
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*/
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if (init_ops.mp_bootaddress) {
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if (physmap[1] >= 0x100000000)
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panic(
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"Basemem segment is not suitable for AP bootstrap code!");
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physmap[1] = init_ops.mp_bootaddress(physmap[1] / 1024);
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}
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if (init_ops.mp_bootaddress)
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init_ops.mp_bootaddress(physmap, &physmap_idx);
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/*
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* Maxmem isn't the "maximum memory", it's one larger than the
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@ -96,24 +96,45 @@ char *nmi_stack;
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static int start_ap(int apic_id);
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static u_int bootMP_size;
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static u_int boot_address;
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/*
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* Calculate usable address in base memory for AP trampoline code.
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*/
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u_int
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mp_bootaddress(u_int basemem)
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void
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mp_bootaddress(vm_paddr_t *physmap, unsigned int *physmap_idx)
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{
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unsigned int i;
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bool allocated;
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bootMP_size = mptramp_end - mptramp_start;
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boot_address = trunc_page(basemem * 1024); /* round down to 4k boundary */
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if (((basemem * 1024) - boot_address) < bootMP_size)
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boot_address -= PAGE_SIZE; /* not enough, lower by 4k */
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/* 3 levels of page table pages */
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mptramp_pagetables = boot_address - (PAGE_SIZE * 3);
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alloc_ap_trampoline(physmap, physmap_idx);
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return mptramp_pagetables;
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allocated = false;
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for (i = *physmap_idx; i <= *physmap_idx; i -= 2) {
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/*
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* Find a memory region big enough below the 4GB boundary to
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* store the initial page tables. Note that it needs to be
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* aligned to a page boundary.
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*/
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if (physmap[i] >= GiB(4) ||
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(physmap[i + 1] - round_page(physmap[i])) < (PAGE_SIZE * 3))
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continue;
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allocated = true;
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mptramp_pagetables = round_page(physmap[i]);
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physmap[i] = round_page(physmap[i]) + (PAGE_SIZE * 3);
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if (physmap[i] == physmap[i + 1] && *physmap_idx != 0) {
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memmove(&physmap[i], &physmap[i + 2],
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sizeof(*physmap) * (*physmap_idx - i + 2));
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*physmap_idx -= 2;
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}
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}
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if (!allocated) {
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mptramp_pagetables = trunc_page(boot_address) - (PAGE_SIZE * 3);
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if (bootverbose)
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printf(
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"Cannot find enough space for the initial AP page tables, placing them at %#x",
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mptramp_pagetables);
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}
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}
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/*
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@ -216,8 +216,14 @@ lgdt_desc:
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.word gdtend-gdt /* Length */
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.long gdt-mptramp_start /* Offset plus %ds << 4 */
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.globl mptramp_end
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mptramp_end:
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/*
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* The size of the trampoline code that needs to be relocated
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* below the 1MiB boundary.
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*/
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.globl bootMP_size
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bootMP_size:
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.long mptramp_end - mptramp_start
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/*
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* From here on down is executed in the kernel .text section.
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@ -23,7 +23,6 @@
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/* global symbols in mpboot.S */
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extern char mptramp_start[];
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extern char mptramp_end[];
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extern u_int32_t mptramp_pagetables;
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/* IPI handlers */
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@ -59,6 +58,7 @@ void invlpg_pcid_handler(void);
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void invlrng_invpcid_handler(void);
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void invlrng_pcid_handler(void);
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int native_start_all_aps(void);
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void mp_bootaddress(vm_paddr_t *, unsigned int *);
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#endif /* !LOCORE */
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#endif /* SMP */
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@ -1903,7 +1903,7 @@ getmemsize(int first)
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#ifdef SMP
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/* make hole for AP bootstrap code */
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physmap[1] = mp_bootaddress(physmap[1]);
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alloc_ap_trampoline(physmap, &physmap_idx);
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#endif
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/*
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@ -139,22 +139,6 @@ static void install_ap_tramp(void);
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static int start_all_aps(void);
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static int start_ap(int apic_id);
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static u_int boot_address;
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/*
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* Calculate usable address in base memory for AP trampoline code.
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*/
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u_int
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mp_bootaddress(u_int basemem)
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{
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boot_address = trunc_page(basemem); /* round down to 4k boundary */
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if ((basemem - boot_address) < bootMP_size)
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boot_address -= PAGE_SIZE; /* not enough, lower by 4k */
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return boot_address;
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}
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/*
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* Initialize the IPI handlers and start up the AP's.
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*/
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@ -27,9 +27,6 @@
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#include <x86/apicvar.h>
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#include <machine/pcb.h>
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/* global data in mpboot.s */
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extern int bootMP_size;
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/* functions in mpboot.s */
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void bootMP(void);
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@ -41,7 +41,7 @@ struct init_ops {
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void (*early_clock_source_init)(void);
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void (*early_delay)(int);
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void (*parse_memmap)(caddr_t, vm_paddr_t *, int *);
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u_int (*mp_bootaddress)(u_int);
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void (*mp_bootaddress)(vm_paddr_t *, unsigned int *);
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int (*start_all_aps)(void);
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void (*msi_init)(void);
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};
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@ -32,6 +32,8 @@ extern int bootAP;
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extern void *dpcpu;
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extern char *bootSTK;
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extern void *bootstacks[];
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extern unsigned int boot_address;
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extern unsigned int bootMP_size;
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extern volatile u_int cpu_ipi_pending[];
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extern volatile int aps_ready;
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extern struct mtx ap_boot_mtx;
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@ -83,6 +85,7 @@ void assign_cpu_ids(void);
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void cpu_add(u_int apic_id, char boot_cpu);
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void cpustop_handler(void);
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void cpususpend_handler(void);
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void alloc_ap_trampoline(vm_paddr_t *physmap, unsigned int *physmap_idx);
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void init_secondary_tail(void);
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void invltlb_handler(void);
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void invlpg_handler(void);
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@ -95,7 +98,6 @@ void ipi_bitmap_handler(struct trapframe frame);
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void ipi_cpu(int cpu, u_int ipi);
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int ipi_nmi_handler(void);
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void ipi_selected(cpuset_t cpus, u_int ipi);
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u_int mp_bootaddress(u_int);
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void set_interrupt_apic_ids(void);
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void smp_cache_flush(void);
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void smp_masked_invlpg(cpuset_t mask, vm_offset_t addr, struct pmap *pmap);
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@ -158,6 +158,8 @@ struct cache_info {
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int present;
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} static caches[MAX_CACHE_LEVELS];
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unsigned int boot_address;
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void
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mem_range_AP_init(void)
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{
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@ -905,6 +907,55 @@ cpu_mp_probe(void)
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return (mp_ncpus > 1);
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}
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/* Allocate memory for the AP trampoline. */
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void
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alloc_ap_trampoline(vm_paddr_t *physmap, unsigned int *physmap_idx)
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{
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unsigned int i;
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bool allocated;
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allocated = false;
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for (i = *physmap_idx; i <= *physmap_idx; i -= 2) {
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/*
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* Find a memory region big enough and below the 1MB boundary
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* for the trampoline code.
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* NB: needs to be page aligned.
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*/
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if (physmap[i] >= MiB(1) ||
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(trunc_page(physmap[i + 1]) - round_page(physmap[i])) <
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round_page(bootMP_size))
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continue;
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allocated = true;
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/*
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* Try to steal from the end of the region to mimic previous
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* behaviour, else fallback to steal from the start.
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*/
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if (physmap[i + 1] < MiB(1)) {
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boot_address = trunc_page(physmap[i + 1]);
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if ((physmap[i + 1] - boot_address) < bootMP_size)
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boot_address -= round_page(bootMP_size);
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physmap[i + 1] = boot_address;
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} else {
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boot_address = round_page(physmap[i]);
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physmap[i] = boot_address + round_page(bootMP_size);
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}
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if (physmap[i] == physmap[i + 1] && *physmap_idx != 0) {
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memmove(&physmap[i], &physmap[i + 2],
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sizeof(*physmap) * (*physmap_idx - i + 2));
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*physmap_idx -= 2;
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}
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}
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if (!allocated) {
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boot_address = basemem * 1024 - bootMP_size;
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if (bootverbose)
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printf(
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"Cannot find enough space for the boot trampoline, placing it at %#x",
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boot_address);
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}
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}
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/*
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* AP CPU's call this to initialize themselves.
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*/
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