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https://github.com/limine-bootloader/limine
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pmm: Backport some other stuff reverted in 4a4409e1
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64c897a82d
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97c928a354
@ -62,7 +62,6 @@ void *conv_mem_alloc(size_t count);
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void pmm_free(void *ptr, size_t length);
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#if defined (UEFI)
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void pmm_reclaim_uefi_mem(void);
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void pmm_release_uefi_mem(void);
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#endif
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@ -116,6 +116,8 @@ static bool align_entry(uint64_t *base, uint64_t *length) {
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return true;
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}
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static bool sanitiser_keep_first_page = false;
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static void sanitise_entries(struct memmap_entry *m, size_t *_count, bool align_entries) {
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size_t count = *_count;
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@ -167,7 +169,7 @@ static void sanitise_entries(struct memmap_entry *m, size_t *_count, bool align_
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if (m[i].type != MEMMAP_USABLE)
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continue;
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if (m[i].base < 0x1000) {
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if (!sanitiser_keep_first_page && m[i].base < 0x1000) {
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if (m[i].base + m[i].length <= 0x1000) {
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goto del_mm1;
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}
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@ -221,9 +223,17 @@ del_mm1:
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*_count = count;
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}
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#if defined (UEFI)
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static void pmm_reclaim_uefi_mem(struct memmap_entry *m, size_t *_count);
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#endif
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struct memmap_entry *get_memmap(size_t *entries) {
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#if defined (UEFI)
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pmm_reclaim_uefi_mem();
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if (efi_boot_services_exited == false) {
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panic(true, "get_memmap called whilst in boot services");
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}
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pmm_reclaim_uefi_mem(memmap, &memmap_entries);
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#endif
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sanitise_entries(memmap, &memmap_entries, true);
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@ -370,7 +380,10 @@ void init_memmap(void) {
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memmap_entries++;
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}
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bool old_skfp = sanitiser_keep_first_page;
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sanitiser_keep_first_page = true;
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sanitise_entries(memmap, &memmap_entries, false);
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sanitiser_keep_first_page = old_skfp;
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allocations_disallowed = false;
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@ -412,20 +425,22 @@ fail:
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panic(false, "pmm: Failure initialising memory map");
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}
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void pmm_reclaim_uefi_mem(void) {
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static void pmm_reclaim_uefi_mem(struct memmap_entry *m, size_t *_count) {
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size_t count = *_count;
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size_t recl_i = 0;
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for (size_t i = 0; i < memmap_entries; i++) {
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if (memmap[i].type == MEMMAP_EFI_RECLAIMABLE) {
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for (size_t i = 0; i < count; i++) {
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if (m[i].type == MEMMAP_EFI_RECLAIMABLE) {
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recl_i++;
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}
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}
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struct memmap_entry *recl = ext_mem_alloc(recl_i * sizeof(struct memmap_entry));
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for (size_t i = 0, j = 0; i < memmap_entries; i++) {
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if (memmap[i].type == MEMMAP_EFI_RECLAIMABLE) {
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recl[j++] = memmap[i];
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for (size_t i = 0, j = 0; i < count; i++) {
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if (m[i].type == MEMMAP_EFI_RECLAIMABLE) {
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recl[j++] = m[i];
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}
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}
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@ -478,13 +493,15 @@ void pmm_reclaim_uefi_mem(void) {
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our_type = MEMMAP_RESERVED; break;
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}
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memmap_alloc_range_in(memmap, &memmap_entries, efi_base, efi_size, our_type, 0, true, false, false);
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memmap_alloc_range_in(m, &count, efi_base, efi_size, our_type, 0, true, false, false);
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}
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}
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allocations_disallowed = true;
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sanitise_entries(memmap, &memmap_entries, false);
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sanitise_entries(m, &count, false);
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*_count = count;
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}
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void pmm_release_uefi_mem(void) {
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@ -516,6 +533,10 @@ struct memmap_entry *get_raw_memmap(size_t *entry_count) {
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#if defined (UEFI)
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struct memmap_entry *get_raw_memmap(size_t *entry_count) {
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if (efi_boot_services_exited == false) {
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panic(true, "get_raw_memmap called whilst in boot services");
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}
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size_t mmap_count = efi_mmap_size / efi_desc_size;
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size_t mmap_len = mmap_count * sizeof(struct memmap_entry);
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