Normalize bootloader's con_debug line endings
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@@ -26,15 +26,15 @@ loader_alloc_aligned(
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size_t page_count = alignment / PAGE_SIZE;
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*length = alignment;
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con_debug(L"Trying to find %d aligned pages for %x\n", page_count, mem_type);
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con_debug(L"Trying to find %d aligned pages for %x", page_count, mem_type);
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status = bootsvc->AllocatePages(AllocateAnyPages, mem_type, page_count * 2, &addr);
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CHECK_EFI_STATUS_OR_RETURN(status, L"Allocating %d pages for alignment", page_count * 2);
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con_debug(L" Found %d pages at %lx\n", page_count * 2, addr);
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con_debug(L" Found %d pages at %lx", page_count * 2, addr);
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EFI_PHYSICAL_ADDRESS aligned = addr;
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aligned = ((aligned - 1) & ~(alignment - 1)) + alignment;
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con_debug(L" Aligning %lx to %lx\n", addr, aligned);
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con_debug(L" Aligning %lx to %lx", addr, aligned);
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size_t before =
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(reinterpret_cast<uint64_t>(aligned) -
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@@ -42,7 +42,7 @@ loader_alloc_aligned(
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PAGE_SIZE;
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if (before) {
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con_debug(L" Freeing %d initial pages\n", before);
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con_debug(L" Freeing %d initial pages", before);
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bootsvc->FreePages(addr, before);
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}
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@@ -52,7 +52,7 @@ loader_alloc_aligned(
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reinterpret_cast<EFI_PHYSICAL_ADDRESS>(
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reinterpret_cast<uint64_t>(aligned) +
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page_count * PAGE_SIZE);
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con_debug(L" Freeing %d remaining pages\n", after);
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con_debug(L" Freeing %d remaining pages", after);
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bootsvc->FreePages(end, after);
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}
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@@ -72,7 +72,7 @@ loader_alloc_pages(
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size_t page_count = ((*length - 1) / PAGE_SIZE) + 1;
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EFI_PHYSICAL_ADDRESS addr = (EFI_PHYSICAL_ADDRESS)*pages;
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con_debug(L"Trying to find %d non-aligned pages for %x at %lx\n",
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con_debug(L"Trying to find %d non-aligned pages for %x at %lx",
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page_count, mem_type, addr);
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status = bootsvc->AllocatePages(AllocateAddress, mem_type, page_count, &addr);
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@@ -136,7 +136,7 @@ loader_load_elf(
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{
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EFI_STATUS status;
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con_debug(L"Opening kernel file %s\r\n", (wchar_t *)kernel_name);
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con_debug(L"Opening kernel file %s", (wchar_t *)kernel_name);
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EFI_FILE_PROTOCOL *file = NULL;
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status = root->Open(root, &file, (wchar_t *)kernel_name, EFI_FILE_MODE_READ,
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@@ -158,7 +158,7 @@ loader_load_elf(
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status = file->Read(file, &length, &header);
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CHECK_EFI_STATUS_OR_RETURN(status, L"Reading ELF header");
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con_debug(L"Read %u bytes of ELF header\r\n", length);
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con_debug(L"Read %u bytes of ELF header", length);
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if (length < sizeof(struct elf_header))
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CHECK_EFI_STATUS_OR_RETURN(EFI_LOAD_ERROR, L"Incomplete read of ELF header");
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@@ -184,7 +184,7 @@ loader_load_elf(
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header.machine != 0x3e)
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CHECK_EFI_STATUS_OR_RETURN(EFI_LOAD_ERROR, L"ELF load error: wrong machine architecture");
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con_debug(L"ELF is valid, entrypoint %lx\r\n", header.entrypoint);
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con_debug(L"ELF is valid, entrypoint %lx", header.entrypoint);
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data->kernel_entry = (void *)header.entrypoint;
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@@ -209,7 +209,7 @@ loader_load_elf(
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data->kernel = addr;
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data->kernel_length = (uint64_t)addr + length - (uint64_t)data->kernel;
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}
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con_debug(L"Read %d ELF program headers\r\n", header.ph_num);
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con_debug(L"Read %d ELF program headers", header.ph_num);
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struct elf_section_header sec_header;
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for (int i = 0; i < header.sh_num; ++i) {
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@@ -237,7 +237,7 @@ loader_load_elf(
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bootsvc->SetMem(addr, sec_header.size, 0);
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}
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}
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con_debug(L"Read %d ELF section headers\r\n", header.ph_num);
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con_debug(L"Read %d ELF section headers", header.ph_num);
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status = file->Close(file);
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CHECK_EFI_STATUS_OR_RETURN(status, L"Closing file handle");
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