319efdb1cc
by UltraSparc-IV and -IV+ as well as SPARC64 V, VI, VII and VIIIfx CPUs. - Replace TLB_PCXR_PGSZ_MASK and TLB_SCXR_PGSZ_MASK with TLB_CXR_PGSZ_MASK which just is the complement of TLB_CXR_CTX_MASK instead of trying to assemble it from the page size bits which vary across CPUs. - Add macros for the remainder of the SFSR bits, which are useful for at least debugging purposes.
167 lines
6.0 KiB
C
167 lines
6.0 KiB
C
/*-
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* Copyright (c) 1997 Berkeley Software Design, Inc. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. Berkeley Software Design Inc's name may not be used to endorse or
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* promote products derived from this software without specific prior
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* written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY BERKELEY SOFTWARE DESIGN INC ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL BERKELEY SOFTWARE DESIGN INC BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* from: BSDI: pmap.v9.h,v 1.10.2.6 1999/08/23 22:18:44 cp Exp
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* $FreeBSD$
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*/
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#ifndef _MACHINE_TTE_H_
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#define _MACHINE_TTE_H_
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#define TTE_SHIFT (5)
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#define TD_SIZE_SHIFT (61)
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#define TD_SOFT2_SHIFT (50)
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#define TD_RSVD2_SHIFT (49)
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#define TD_SIZE2_SHIFT (48)
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#define TD_DIAG_SF_SHIFT (41)
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#define TD_RSVD_CH_SHIFT (43)
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#define TD_RSVD_OC_SHIFT (47)
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#define TD_RSVD_PT_SHIFT TD_RSVD_CH_SHIFT
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#define TD_RSVD_VE_SHIFT (41)
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#define TD_PA_SHIFT (13)
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#define TD_SOFT_SHIFT (7)
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#define TD_SIZE_BITS (2)
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#define TD_SOFT2_BITS (9)
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#define TD_RSVD2_BITS (1) /* US-IV+, SPARC64 VI, VII, VIIIfx */
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#define TD_SIZE2_BITS (1) /* US-IV+, SPARC64 VI, VII, VIIIfx */
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#define TD_DIAG_SF_BITS (9) /* US-I, II{,e,i} */
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#define TD_RSVD_CH_BITS (7) /* US-III{,i,+}, US-IV, SPARC64 V */
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#define TD_RSVD_OC_BITS (1) /* SPARC64 VI, VII */
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#define TD_RSVD_PT_BITS (5) /* US-IV+, SPARC64 VI, VII */
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#define TD_RSVD_VE_BITS (7) /* SPARC64 VIIIfx */
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#define TD_PA_CH_BITS (30) /* US-III{,i,+}, US-IV{,+}, SPARC64 V */
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#define TD_PA_OC_BITS (34) /* SPARC64 VI, VII */
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#define TD_PA_SF_BITS (28) /* US-I, II{,e,i}, SPARC64 VIIIfx */
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#define TD_PA_BITS TD_PA_CH_BITS
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#define TD_SOFT_BITS (6)
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#define TD_SIZE_MASK ((1UL << TD_SIZE_BITS) - 1)
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#define TD_SOFT2_MASK ((1UL << TD_SOFT2_BITS) - 1)
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#define TD_RSVD2_MASK ((1UL << TD_RSVD2_BITS) - 1)
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#define TD_SIZE2_MASK ((1UL << TD_SIZE2_BITS) - 1)
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#define TD_DIAG_SF_MASK ((1UL << TD_DIAG_SF_BITS) - 1)
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#define TD_RSVD_CH_MASK ((1UL << TD_RSVD_CH_BITS) - 1)
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#define TD_RSVD_OC_MASK ((1UL << TD_RSVD_OC_BITS) - 1)
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#define TD_RSVD_PT_MASK ((1UL << TD_RSVD_PT_BITS) - 1)
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#define TD_RSVD_VE_MASK ((1UL << TD_RSVD_VE_BITS) - 1)
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#define TD_PA_CH_MASK ((1UL << TD_PA_CH_BITS) - 1)
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#define TD_PA_OC_MASK ((1UL << TD_PA_OC_BITS) - 1)
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#define TD_PA_SF_MASK ((1UL << TD_PA_SF_BITS) - 1)
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#define TD_PA_MASK ((1UL << TD_PA_BITS) - 1)
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#define TD_SOFT_MASK ((1UL << TD_SOFT_BITS) - 1)
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#define TS_8K (0UL)
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#define TS_64K (1UL)
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#define TS_512K (2UL)
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#define TS_4M (3UL)
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#define TS_32M (4UL) /* US-IV+, SPARC64 VI, VII only */
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#define TS_256M (5UL) /* US-IV+, SPARC64 VI, VII only */
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#define TS_2G (6UL) /* SPARC64 VIIIfx only */
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#define TS_MIN TS_8K
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#define TS_MAX TS_4M
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#define TD_V (1UL << 63)
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#define TD_8K (TS_8K << TD_SIZE_SHIFT)
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#define TD_64K (TS_64K << TD_SIZE_SHIFT)
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#define TD_512K (TS_512K << TD_SIZE_SHIFT)
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#define TD_4M (TS_4M << TD_SIZE_SHIFT)
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#define TD_32M \
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(((TS_32M & TD_SIZE_MASK) << TD_SIZE_SHIFT) | \
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(TD_SIZE2_MASK << TD_SIZE2_SHIFT))
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#define TD_256M \
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(((TS_256M & TD_SIZE_MASK) << TD_SIZE_SHIFT) | \
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(TD_SIZE2_MASK << TD_SIZE2_SHIFT))
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#define TD_2G \
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(((TS_2G & TD_SIZE_MASK) << TD_SIZE_SHIFT) | \
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(TD_SIZE2_MASK << TD_SIZE2_SHIFT))
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#define TD_NFO (1UL << 60)
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#define TD_IE (1UL << 59)
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#define TD_PA(pa) ((pa) & (TD_PA_MASK << TD_PA_SHIFT))
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/* NOTE: bit 6 of TD_SOFT will be sign-extended if used as an immediate. */
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#define TD_FAKE ((1UL << 5) << TD_SOFT_SHIFT)
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#define TD_EXEC ((1UL << 4) << TD_SOFT_SHIFT)
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#define TD_REF ((1UL << 3) << TD_SOFT_SHIFT)
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#define TD_PV ((1UL << 2) << TD_SOFT_SHIFT)
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#define TD_SW ((1UL << 1) << TD_SOFT_SHIFT)
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#define TD_WIRED ((1UL << 0) << TD_SOFT_SHIFT)
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#define TD_L (1UL << 6)
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#define TD_CP (1UL << 5)
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#define TD_CV (1UL << 4)
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#define TD_E (1UL << 3)
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#define TD_P (1UL << 2)
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#define TD_W (1UL << 1)
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#define TD_G (1UL << 0)
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#define TV_SIZE_BITS (TD_SIZE_BITS)
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#define TV_VPN(va, sz) ((((va) >> TTE_PAGE_SHIFT(sz)) << TV_SIZE_BITS) | sz)
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#define TTE_SIZE_SPREAD (3)
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#define TTE_PAGE_SHIFT(sz) \
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(PAGE_SHIFT + ((sz) * TTE_SIZE_SPREAD))
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#define TTE_GET_SIZE(tp) \
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(((tp)->tte_data >> TD_SIZE_SHIFT) & TD_SIZE_MASK)
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#define TTE_GET_PAGE_SHIFT(tp) \
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TTE_PAGE_SHIFT(TTE_GET_SIZE(tp))
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#define TTE_GET_PAGE_SIZE(tp) \
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(1 << TTE_GET_PAGE_SHIFT(tp))
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#define TTE_GET_PAGE_MASK(tp) \
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(TTE_GET_PAGE_SIZE(tp) - 1)
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#define TTE_GET_PA(tp) \
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((tp)->tte_data & (TD_PA_MASK << TD_PA_SHIFT))
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#define TTE_GET_VPN(tp) \
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((tp)->tte_vpn >> TV_SIZE_BITS)
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#define TTE_GET_VA(tp) \
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(TTE_GET_VPN(tp) << TTE_GET_PAGE_SHIFT(tp))
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#define TTE_GET_PMAP(tp) \
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(((tp)->tte_data & TD_P) != 0 ? (kernel_pmap) : \
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(PHYS_TO_VM_PAGE(pmap_kextract((vm_offset_t)(tp)))->md.pmap))
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#define TTE_ZERO(tp) \
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memset(tp, 0, sizeof(*tp))
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struct pmap;
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struct tte {
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u_long tte_vpn;
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u_long tte_data;
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TAILQ_ENTRY(tte) tte_link;
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};
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static __inline int
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tte_match(struct tte *tp, vm_offset_t va)
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{
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return (((tp->tte_data & TD_V) != 0) &&
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(tp->tte_vpn == TV_VPN(va, TTE_GET_SIZE(tp))));
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}
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#endif /* !_MACHINE_TTE_H_ */
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