%PDF- <> %âãÏÓ endobj 2 0 obj <> endobj 3 0 obj <>/ExtGState<>/ProcSet[/PDF/Text/ImageB/ImageC/ImageI] >>/Annots[ 28 0 R 29 0 R] /MediaBox[ 0 0 595.5 842.25] /Contents 4 0 R/Group<>/Tabs/S>> endobj ºaâÚÎΞ-ÌE1ÍØÄ÷{òò2ÿ ÛÖ^ÔÀá TÎ{¦?§®¥kuµùÕ5sLOšuY>endobj 2 0 obj<>endobj 2 0 obj<>endobj 2 0 obj<>endobj 2 0 obj<> endobj 2 0 obj<>endobj 2 0 obj<>es 3 0 R>> endobj 2 0 obj<> ox[ 0.000000 0.000000 609.600000 935.600000]/Fi endobj 3 0 obj<> endobj 7 1 obj<>/ProcSet[/PDF/Text/ImageB/ImageC/ImageI]>>/Subtype/Form>> stream
/* SPDX-License-Identifier: GPL-2.0 */ /* * Access to VGA videoram * * (c) 1998 Martin Mares <mj@ucw.cz> */ #ifndef _ASM_X86_VGA_H #define _ASM_X86_VGA_H #include <asm/set_memory.h> /* * On the PC, we can just recalculate addresses and then * access the videoram directly without any black magic. * To support memory encryption however, we need to access * the videoram as decrypted memory. */ #define VGA_MAP_MEM(x, s) \ ({ \ unsigned long start = (unsigned long)phys_to_virt(x); \ \ if (IS_ENABLED(CONFIG_AMD_MEM_ENCRYPT)) \ set_memory_decrypted(start, (s) >> PAGE_SHIFT); \ \ start; \ }) #define vga_readb(x) (*(x)) #define vga_writeb(x, y) (*(y) = (x)) #endif /* _ASM_X86_VGA_H */