/*
                 * xsave header may indicate the init state of the FP.
                 */
-               if (!(fpu->state->xsave.xsave_hdr.xstate_bv & XSTATE_FP))
+               if (!(fpu->state->xsave.header.xstate_bv & XSTATE_FP))
                        return 1;
        } else if (use_fxsr()) {
                fpu_fxsave(fpu);
 
        u64                             bndstatus;
 } __packed;
 
-struct xsave_hdr_struct {
+struct xstate_header {
        u64                             xstate_bv;
        u64                             xcomp_bv;
        u64                             reserved[6];
 
 struct xsave_struct {
        struct i387_fxsave_struct       i387;
-       struct xsave_hdr_struct         xsave_hdr;
+       struct xstate_header            header;
        struct ymmh_struct              ymmh;
        struct lwp_struct               lwp;
        struct bndreg                   bndreg[4];
 
         * Clear the xsave header first, so that reserved fields are
         * initialized to zero.
         */
-       err = __clear_user(&buf->xsave_hdr, sizeof(buf->xsave_hdr));
+       err = __clear_user(&buf->header, sizeof(buf->header));
        if (unlikely(err))
                return -EFAULT;
 
 
        __u32 ymmh_space[64];
 };
 
-struct user_xsave_hdr {
+struct user_xstate_header {
        __u64 xstate_bv;
        __u64 reserved1[2];
        __u64 reserved2[5];
  * particular process/thread.
  *
  * Also when the user modifies certain state FP/SSE/etc through the
- * ptrace interface, they must ensure that the xsave_hdr.xstate_bv
+ * ptrace interface, they must ensure that the header.xstate_bv
  * bytes[512..519] of the memory layout are updated correspondingly.
  * i.e., for example when FP state is modified to a non-init state,
- * xsave_hdr.xstate_bv's bit 0 must be set to '1', when SSE is modified to
- * non-init state, xsave_hdr.xstate_bv's bit 1 must to be set to '1', etc.
+ * header.xstate_bv's bit 0 must be set to '1', when SSE is modified to
+ * non-init state, header.xstate_bv's bit 1 must to be set to '1', etc.
  */
 #define USER_XSTATE_FX_SW_WORDS 6
 #define USER_XSTATE_XCR0_WORD  0
                __u64 fpx_space[58];
                __u64 xstate_fx_sw[USER_XSTATE_FX_SW_WORDS];
        } i387;
-       struct user_xsave_hdr xsave_hdr;
+       struct user_xstate_header header;
        struct user_ymmh_regs ymmh;
        /* further processor state extensions go here */
 };
 
 
 #endif /* !__i386__ */
 
-struct _xsave_hdr {
+struct _header {
        __u64 xstate_bv;
        __u64 reserved1[2];
        __u64 reserved2[5];
  */
 struct _xstate {
        struct _fpstate fpstate;
-       struct _xsave_hdr xstate_hdr;
+       struct _header xstate_hdr;
        struct _ymmh_state ymmh;
        /* new processor state extensions go here */
 };
 
         * presence of FP and SSE state.
         */
        if (cpu_has_xsave)
-               fpu->state->xsave.xsave_hdr.xstate_bv |= XSTATE_FPSSE;
+               fpu->state->xsave.header.xstate_bv |= XSTATE_FPSSE;
 
        return ret;
 }
         * mxcsr reserved bits must be masked to zero for security reasons.
         */
        xsave->i387.mxcsr &= mxcsr_feature_mask;
-       xsave->xsave_hdr.xstate_bv &= xfeatures_mask;
+       xsave->header.xstate_bv &= xfeatures_mask;
        /*
         * These bits must be zero.
         */
-       memset(&xsave->xsave_hdr.reserved, 0, 48);
+       memset(&xsave->header.reserved, 0, 48);
 
        return ret;
 }
         * presence of FP.
         */
        if (cpu_has_xsave)
-               fpu->state->xsave.xsave_hdr.xstate_bv |= XSTATE_FP;
+               fpu->state->xsave.header.xstate_bv |= XSTATE_FP;
        return ret;
 }
 
 
 /*
  * If a processor implementation discern that a processor state component is
  * in its initialized state it may modify the corresponding bit in the
- * xsave_hdr.xstate_bv as '0', with out modifying the corresponding memory
+ * header.xstate_bv as '0', with out modifying the corresponding memory
  * layout in the case of xsaveopt. While presenting the xstate information to
  * the user, we always ensure that the memory layout of a feature will be in
  * the init state if the corresponding header bit is zero. This is to ensure
        if (!fx)
                return;
 
-       xstate_bv = tsk->thread.fpu.state->xsave.xsave_hdr.xstate_bv;
+       xstate_bv = tsk->thread.fpu.state->xsave.header.xstate_bv;
 
        /*
         * None of the feature bits are in init state. So nothing else
                                   struct _fpx_sw_bytes *fx_sw)
 {
        int min_xstate_size = sizeof(struct i387_fxsave_struct) +
-                             sizeof(struct xsave_hdr_struct);
+                             sizeof(struct xstate_header);
        unsigned int magic2;
 
        if (__copy_from_user(fx_sw, &buf->sw_reserved[0], sizeof(*fx_sw)))
         * Read the xstate_bv which we copied (directly from the cpu or
         * from the state in task struct) to the user buffers.
         */
-       err |= __get_user(xstate_bv, (__u32 *)&x->xsave_hdr.xstate_bv);
+       err |= __get_user(xstate_bv, (__u32 *)&x->header.xstate_bv);
 
        /*
         * For legacy compatible, we always set FP/SSE bits in the bit
         */
        xstate_bv |= XSTATE_FPSSE;
 
-       err |= __put_user(xstate_bv, (__u32 *)&x->xsave_hdr.xstate_bv);
+       err |= __put_user(xstate_bv, (__u32 *)&x->header.xstate_bv);
 
        return err;
 }
                         u64 xstate_bv, int fx_only)
 {
        struct xsave_struct *xsave = &tsk->thread.fpu.state->xsave;
-       struct xsave_hdr_struct *xsave_hdr = &xsave->xsave_hdr;
+       struct xstate_header *header = &xsave->header;
 
        if (use_xsave()) {
                /* These bits must be zero. */
-               memset(xsave_hdr->reserved, 0, 48);
+               memset(header->reserved, 0, 48);
 
                /*
                 * Init the state that is not present in the memory
                 * layout and not enabled by the OS.
                 */
                if (fx_only)
-                       xsave_hdr->xstate_bv = XSTATE_FPSSE;
+                       header->xstate_bv = XSTATE_FPSSE;
                else
-                       xsave_hdr->xstate_bv &= (xfeatures_mask & xstate_bv);
+                       header->xstate_bv &= (xfeatures_mask & xstate_bv);
        }
 
        if (use_fxsr()) {
        print_xstate_features();
 
        if (cpu_has_xsaves) {
-               init_xstate_buf->xsave_hdr.xcomp_bv =
+               init_xstate_buf->header.xcomp_bv =
                                                (u64)1 << 63 | xfeatures_mask;
-               init_xstate_buf->xsave_hdr.xstate_bv = xfeatures_mask;
+               init_xstate_buf->header.xstate_bv = xfeatures_mask;
        }
 
        /*
 
 static void fill_xsave(u8 *dest, struct kvm_vcpu *vcpu)
 {
        struct xsave_struct *xsave = &vcpu->arch.guest_fpu.state->xsave;
-       u64 xstate_bv = xsave->xsave_hdr.xstate_bv;
+       u64 xstate_bv = xsave->header.xstate_bv;
        u64 valid;
 
        /*
        memcpy(xsave, src, XSAVE_HDR_OFFSET);
 
        /* Set XSTATE_BV and possibly XCOMP_BV.  */
-       xsave->xsave_hdr.xstate_bv = xstate_bv;
+       xsave->header.xstate_bv = xstate_bv;
        if (cpu_has_xsaves)
-               xsave->xsave_hdr.xcomp_bv = host_xcr0 | XSTATE_COMPACTION_ENABLED;
+               xsave->header.xcomp_bv = host_xcr0 | XSTATE_COMPACTION_ENABLED;
 
        /*
         * Copy each region from the non-compacted offset to the
 
        fpstate_init(&vcpu->arch.guest_fpu);
        if (cpu_has_xsaves)
-               vcpu->arch.guest_fpu.state->xsave.xsave_hdr.xcomp_bv =
+               vcpu->arch.guest_fpu.state->xsave.header.xcomp_bv =
                        host_xcr0 | XSTATE_COMPACTION_ENABLED;
 
        /*