1*3a9fd824SRoger Pau Monné /****************************************************************************** 2*3a9fd824SRoger Pau Monné * xen-x86_32.h 3*3a9fd824SRoger Pau Monné * 4*3a9fd824SRoger Pau Monné * Guest OS interface to x86 32-bit Xen. 5*3a9fd824SRoger Pau Monné * 6*3a9fd824SRoger Pau Monné * Permission is hereby granted, free of charge, to any person obtaining a copy 7*3a9fd824SRoger Pau Monné * of this software and associated documentation files (the "Software"), to 8*3a9fd824SRoger Pau Monné * deal in the Software without restriction, including without limitation the 9*3a9fd824SRoger Pau Monné * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or 10*3a9fd824SRoger Pau Monné * sell copies of the Software, and to permit persons to whom the Software is 11*3a9fd824SRoger Pau Monné * furnished to do so, subject to the following conditions: 12*3a9fd824SRoger Pau Monné * 13*3a9fd824SRoger Pau Monné * The above copyright notice and this permission notice shall be included in 14*3a9fd824SRoger Pau Monné * all copies or substantial portions of the Software. 15*3a9fd824SRoger Pau Monné * 16*3a9fd824SRoger Pau Monné * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 17*3a9fd824SRoger Pau Monné * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 18*3a9fd824SRoger Pau Monné * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE 19*3a9fd824SRoger Pau Monné * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 20*3a9fd824SRoger Pau Monné * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING 21*3a9fd824SRoger Pau Monné * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER 22*3a9fd824SRoger Pau Monné * DEALINGS IN THE SOFTWARE. 23*3a9fd824SRoger Pau Monné * 24*3a9fd824SRoger Pau Monné * Copyright (c) 2004-2007, K A Fraser 25*3a9fd824SRoger Pau Monné */ 26*3a9fd824SRoger Pau Monné 27*3a9fd824SRoger Pau Monné #ifndef __XEN_PUBLIC_ARCH_X86_XEN_X86_32_H__ 28*3a9fd824SRoger Pau Monné #define __XEN_PUBLIC_ARCH_X86_XEN_X86_32_H__ 29*3a9fd824SRoger Pau Monné 30*3a9fd824SRoger Pau Monné /* 31*3a9fd824SRoger Pau Monné * Hypercall interface: 32*3a9fd824SRoger Pau Monné * Input: %ebx, %ecx, %edx, %esi, %edi, %ebp (arguments 1-6) 33*3a9fd824SRoger Pau Monné * Output: %eax 34*3a9fd824SRoger Pau Monné * Access is via hypercall page (set up by guest loader or via a Xen MSR): 35*3a9fd824SRoger Pau Monné * call hypercall_page + hypercall-number * 32 36*3a9fd824SRoger Pau Monné * Clobbered: Argument registers (e.g., 2-arg hypercall clobbers %ebx,%ecx) 37*3a9fd824SRoger Pau Monné */ 38*3a9fd824SRoger Pau Monné 39*3a9fd824SRoger Pau Monné /* 40*3a9fd824SRoger Pau Monné * These flat segments are in the Xen-private section of every GDT. Since these 41*3a9fd824SRoger Pau Monné * are also present in the initial GDT, many OSes will be able to avoid 42*3a9fd824SRoger Pau Monné * installing their own GDT. 43*3a9fd824SRoger Pau Monné */ 44*3a9fd824SRoger Pau Monné #define FLAT_RING1_CS 0xe019 /* GDT index 259 */ 45*3a9fd824SRoger Pau Monné #define FLAT_RING1_DS 0xe021 /* GDT index 260 */ 46*3a9fd824SRoger Pau Monné #define FLAT_RING1_SS 0xe021 /* GDT index 260 */ 47*3a9fd824SRoger Pau Monné #define FLAT_RING3_CS 0xe02b /* GDT index 261 */ 48*3a9fd824SRoger Pau Monné #define FLAT_RING3_DS 0xe033 /* GDT index 262 */ 49*3a9fd824SRoger Pau Monné #define FLAT_RING3_SS 0xe033 /* GDT index 262 */ 50*3a9fd824SRoger Pau Monné 51*3a9fd824SRoger Pau Monné #define FLAT_KERNEL_CS FLAT_RING1_CS 52*3a9fd824SRoger Pau Monné #define FLAT_KERNEL_DS FLAT_RING1_DS 53*3a9fd824SRoger Pau Monné #define FLAT_KERNEL_SS FLAT_RING1_SS 54*3a9fd824SRoger Pau Monné #define FLAT_USER_CS FLAT_RING3_CS 55*3a9fd824SRoger Pau Monné #define FLAT_USER_DS FLAT_RING3_DS 56*3a9fd824SRoger Pau Monné #define FLAT_USER_SS FLAT_RING3_SS 57*3a9fd824SRoger Pau Monné 58*3a9fd824SRoger Pau Monné #define __HYPERVISOR_VIRT_START_PAE 0xF5800000 59*3a9fd824SRoger Pau Monné #define __MACH2PHYS_VIRT_START_PAE 0xF5800000 60*3a9fd824SRoger Pau Monné #define __MACH2PHYS_VIRT_END_PAE 0xF6800000 61*3a9fd824SRoger Pau Monné #define HYPERVISOR_VIRT_START_PAE xen_mk_ulong(__HYPERVISOR_VIRT_START_PAE) 62*3a9fd824SRoger Pau Monné #define MACH2PHYS_VIRT_START_PAE xen_mk_ulong(__MACH2PHYS_VIRT_START_PAE) 63*3a9fd824SRoger Pau Monné #define MACH2PHYS_VIRT_END_PAE xen_mk_ulong(__MACH2PHYS_VIRT_END_PAE) 64*3a9fd824SRoger Pau Monné 65*3a9fd824SRoger Pau Monné /* Non-PAE bounds are obsolete. */ 66*3a9fd824SRoger Pau Monné #define __HYPERVISOR_VIRT_START_NONPAE 0xFC000000 67*3a9fd824SRoger Pau Monné #define __MACH2PHYS_VIRT_START_NONPAE 0xFC000000 68*3a9fd824SRoger Pau Monné #define __MACH2PHYS_VIRT_END_NONPAE 0xFC400000 69*3a9fd824SRoger Pau Monné #define HYPERVISOR_VIRT_START_NONPAE \ 70*3a9fd824SRoger Pau Monné xen_mk_ulong(__HYPERVISOR_VIRT_START_NONPAE) 71*3a9fd824SRoger Pau Monné #define MACH2PHYS_VIRT_START_NONPAE \ 72*3a9fd824SRoger Pau Monné xen_mk_ulong(__MACH2PHYS_VIRT_START_NONPAE) 73*3a9fd824SRoger Pau Monné #define MACH2PHYS_VIRT_END_NONPAE \ 74*3a9fd824SRoger Pau Monné xen_mk_ulong(__MACH2PHYS_VIRT_END_NONPAE) 75*3a9fd824SRoger Pau Monné 76*3a9fd824SRoger Pau Monné #define __HYPERVISOR_VIRT_START __HYPERVISOR_VIRT_START_PAE 77*3a9fd824SRoger Pau Monné #define __MACH2PHYS_VIRT_START __MACH2PHYS_VIRT_START_PAE 78*3a9fd824SRoger Pau Monné #define __MACH2PHYS_VIRT_END __MACH2PHYS_VIRT_END_PAE 79*3a9fd824SRoger Pau Monné 80*3a9fd824SRoger Pau Monné #ifndef HYPERVISOR_VIRT_START 81*3a9fd824SRoger Pau Monné #define HYPERVISOR_VIRT_START xen_mk_ulong(__HYPERVISOR_VIRT_START) 82*3a9fd824SRoger Pau Monné #endif 83*3a9fd824SRoger Pau Monné 84*3a9fd824SRoger Pau Monné #define MACH2PHYS_VIRT_START xen_mk_ulong(__MACH2PHYS_VIRT_START) 85*3a9fd824SRoger Pau Monné #define MACH2PHYS_VIRT_END xen_mk_ulong(__MACH2PHYS_VIRT_END) 86*3a9fd824SRoger Pau Monné #define MACH2PHYS_NR_ENTRIES ((MACH2PHYS_VIRT_END-MACH2PHYS_VIRT_START)>>2) 87*3a9fd824SRoger Pau Monné #ifndef machine_to_phys_mapping 88*3a9fd824SRoger Pau Monné #define machine_to_phys_mapping ((unsigned long *)MACH2PHYS_VIRT_START) 89*3a9fd824SRoger Pau Monné #endif 90*3a9fd824SRoger Pau Monné 91*3a9fd824SRoger Pau Monné /* 32-/64-bit invariability for control interfaces (domctl/sysctl). */ 92*3a9fd824SRoger Pau Monné #if defined(__XEN__) || defined(__XEN_TOOLS__) 93*3a9fd824SRoger Pau Monné #undef ___DEFINE_XEN_GUEST_HANDLE 94*3a9fd824SRoger Pau Monné #define ___DEFINE_XEN_GUEST_HANDLE(name, type) \ 95*3a9fd824SRoger Pau Monné typedef struct { type *p; } \ 96*3a9fd824SRoger Pau Monné __guest_handle_ ## name; \ 97*3a9fd824SRoger Pau Monné typedef struct { union { type *p; uint64_aligned_t q; }; } \ 98*3a9fd824SRoger Pau Monné __guest_handle_64_ ## name 99*3a9fd824SRoger Pau Monné #undef set_xen_guest_handle_raw 100*3a9fd824SRoger Pau Monné #define set_xen_guest_handle_raw(hnd, val) \ 101*3a9fd824SRoger Pau Monné do { if ( sizeof(hnd) == 8 ) *(uint64_t *)&(hnd) = 0; \ 102*3a9fd824SRoger Pau Monné (hnd).p = val; \ 103*3a9fd824SRoger Pau Monné } while ( 0 ) 104*3a9fd824SRoger Pau Monné #define int64_aligned_t int64_t __attribute__((aligned(8))) 105*3a9fd824SRoger Pau Monné #define uint64_aligned_t uint64_t __attribute__((aligned(8))) 106*3a9fd824SRoger Pau Monné #define __XEN_GUEST_HANDLE_64(name) __guest_handle_64_ ## name 107*3a9fd824SRoger Pau Monné #define XEN_GUEST_HANDLE_64(name) __XEN_GUEST_HANDLE_64(name) 108*3a9fd824SRoger Pau Monné #endif 109*3a9fd824SRoger Pau Monné 110*3a9fd824SRoger Pau Monné #ifndef __ASSEMBLY__ 111*3a9fd824SRoger Pau Monné 112*3a9fd824SRoger Pau Monné #if defined(XEN_GENERATING_COMPAT_HEADERS) 113*3a9fd824SRoger Pau Monné /* nothing */ 114*3a9fd824SRoger Pau Monné #elif defined(__XEN__) || defined(__XEN_TOOLS__) 115*3a9fd824SRoger Pau Monné /* Anonymous unions include all permissible names (e.g., al/ah/ax/eax). */ 116*3a9fd824SRoger Pau Monné #define __DECL_REG_LO8(which) union { \ 117*3a9fd824SRoger Pau Monné uint32_t e ## which ## x; \ 118*3a9fd824SRoger Pau Monné uint16_t which ## x; \ 119*3a9fd824SRoger Pau Monné struct { \ 120*3a9fd824SRoger Pau Monné uint8_t which ## l; \ 121*3a9fd824SRoger Pau Monné uint8_t which ## h; \ 122*3a9fd824SRoger Pau Monné }; \ 123*3a9fd824SRoger Pau Monné } 124*3a9fd824SRoger Pau Monné #define __DECL_REG_LO16(name) union { \ 125*3a9fd824SRoger Pau Monné uint32_t e ## name, _e ## name; \ 126*3a9fd824SRoger Pau Monné uint16_t name; \ 127*3a9fd824SRoger Pau Monné } 128*3a9fd824SRoger Pau Monné #else 129*3a9fd824SRoger Pau Monné /* Other sources must always use the proper 32-bit name (e.g., eax). */ 130*3a9fd824SRoger Pau Monné #define __DECL_REG_LO8(which) uint32_t e ## which ## x 131*3a9fd824SRoger Pau Monné #define __DECL_REG_LO16(name) uint32_t e ## name 132*3a9fd824SRoger Pau Monné #endif 133*3a9fd824SRoger Pau Monné 134*3a9fd824SRoger Pau Monné struct cpu_user_regs { 135*3a9fd824SRoger Pau Monné __DECL_REG_LO8(b); 136*3a9fd824SRoger Pau Monné __DECL_REG_LO8(c); 137*3a9fd824SRoger Pau Monné __DECL_REG_LO8(d); 138*3a9fd824SRoger Pau Monné __DECL_REG_LO16(si); 139*3a9fd824SRoger Pau Monné __DECL_REG_LO16(di); 140*3a9fd824SRoger Pau Monné __DECL_REG_LO16(bp); 141*3a9fd824SRoger Pau Monné __DECL_REG_LO8(a); 142*3a9fd824SRoger Pau Monné uint16_t error_code; /* private */ 143*3a9fd824SRoger Pau Monné uint16_t entry_vector; /* private */ 144*3a9fd824SRoger Pau Monné __DECL_REG_LO16(ip); 145*3a9fd824SRoger Pau Monné uint16_t cs; 146*3a9fd824SRoger Pau Monné uint8_t saved_upcall_mask; 147*3a9fd824SRoger Pau Monné uint8_t _pad0; 148*3a9fd824SRoger Pau Monné __DECL_REG_LO16(flags); /* eflags.IF == !saved_upcall_mask */ 149*3a9fd824SRoger Pau Monné __DECL_REG_LO16(sp); 150*3a9fd824SRoger Pau Monné uint16_t ss, _pad1; 151*3a9fd824SRoger Pau Monné uint16_t es, _pad2; 152*3a9fd824SRoger Pau Monné uint16_t ds, _pad3; 153*3a9fd824SRoger Pau Monné uint16_t fs, _pad4; 154*3a9fd824SRoger Pau Monné uint16_t gs, _pad5; 155*3a9fd824SRoger Pau Monné }; 156*3a9fd824SRoger Pau Monné typedef struct cpu_user_regs cpu_user_regs_t; 157*3a9fd824SRoger Pau Monné DEFINE_XEN_GUEST_HANDLE(cpu_user_regs_t); 158*3a9fd824SRoger Pau Monné 159*3a9fd824SRoger Pau Monné #undef __DECL_REG_LO8 160*3a9fd824SRoger Pau Monné #undef __DECL_REG_LO16 161*3a9fd824SRoger Pau Monné 162*3a9fd824SRoger Pau Monné /* 163*3a9fd824SRoger Pau Monné * Page-directory addresses above 4GB do not fit into architectural %cr3. 164*3a9fd824SRoger Pau Monné * When accessing %cr3, or equivalent field in vcpu_guest_context, guests 165*3a9fd824SRoger Pau Monné * must use the following accessor macros to pack/unpack valid MFNs. 166*3a9fd824SRoger Pau Monné */ 167*3a9fd824SRoger Pau Monné #define xen_pfn_to_cr3(pfn) (((unsigned)(pfn) << 12) | ((unsigned)(pfn) >> 20)) 168*3a9fd824SRoger Pau Monné #define xen_cr3_to_pfn(cr3) (((unsigned)(cr3) >> 12) | ((unsigned)(cr3) << 20)) 169*3a9fd824SRoger Pau Monné 170*3a9fd824SRoger Pau Monné struct arch_vcpu_info { 171*3a9fd824SRoger Pau Monné unsigned long cr2; 172*3a9fd824SRoger Pau Monné unsigned long pad[5]; /* sizeof(vcpu_info_t) == 64 */ 173*3a9fd824SRoger Pau Monné }; 174*3a9fd824SRoger Pau Monné typedef struct arch_vcpu_info arch_vcpu_info_t; 175*3a9fd824SRoger Pau Monné 176*3a9fd824SRoger Pau Monné struct xen_callback { 177*3a9fd824SRoger Pau Monné unsigned long cs; 178*3a9fd824SRoger Pau Monné unsigned long eip; 179*3a9fd824SRoger Pau Monné }; 180*3a9fd824SRoger Pau Monné typedef struct xen_callback xen_callback_t; 181*3a9fd824SRoger Pau Monné 182*3a9fd824SRoger Pau Monné #endif /* !__ASSEMBLY__ */ 183*3a9fd824SRoger Pau Monné 184*3a9fd824SRoger Pau Monné #endif /* __XEN_PUBLIC_ARCH_X86_XEN_X86_32_H__ */ 185*3a9fd824SRoger Pau Monné 186*3a9fd824SRoger Pau Monné /* 187*3a9fd824SRoger Pau Monné * Local variables: 188*3a9fd824SRoger Pau Monné * mode: C 189*3a9fd824SRoger Pau Monné * c-file-style: "BSD" 190*3a9fd824SRoger Pau Monné * c-basic-offset: 4 191*3a9fd824SRoger Pau Monné * tab-width: 4 192*3a9fd824SRoger Pau Monné * indent-tabs-mode: nil 193*3a9fd824SRoger Pau Monné * End: 194*3a9fd824SRoger Pau Monné */ 195