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1. Try to guess a ARC core template that was used i.e. not just name a core family but something more menaingful like "ARC HS38", "ARC EM11D" etc. We do it checking availability of the key differentiation features like: - Caches (we actually only check for L1 I$ fpr simplicity) - XY-memory - DSP extensions etc. 2. Identify ARC subsystems 3. Print core clock frequency Signed-off-by: Alexey Brodkin <abrodkin@synopsys.com>
129 lines
3.9 KiB
C
129 lines
3.9 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* Copyright (C) 2004, 2007-2010, 2011-2012 Synopsys, Inc. All rights reserved.
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*/
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#ifndef _ASM_ARC_ARCREGS_H
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#define _ASM_ARC_ARCREGS_H
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#include <asm/cache.h>
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#include <config.h>
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/*
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* ARC architecture has additional address space - auxiliary registers.
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* These registers are mostly used for configuration purposes.
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* These registers are not memory mapped and special commands are used for
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* access: "lr"/"sr".
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*/
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/*
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* Typically 8 least significant bits of Build Configuration Register (BCR)
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* describe version of the HW block in question. Moreover if decoded version
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* is 0 this means given HW block is absent - this is especially useful because
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* we may safely read BRC regardless HW block existence while an attempt to
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* access any other AUX regs associated with this HW block lead to imediate
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* "instruction error" exception.
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*
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* I.e. before using any cofigurable HW block it's required to make sure it
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* exists at all, and for that we introduce a special macro below.
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*/
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#define ARC_BCR_VERSION_MASK GENMASK(7, 0)
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#define ARC_FEATURE_EXISTS(bcr) !!(__builtin_arc_lr(bcr) & ARC_BCR_VERSION_MASK)
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#define ARC_AUX_IDENTITY 0x04
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#define ARC_AUX_STATUS32 0x0a
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/* STATUS32 Bits Positions */
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#define STATUS_AD_BIT 19 /* Enable unaligned access */
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/* Instruction cache related auxiliary registers */
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#define ARC_AUX_IC_IVIC 0x10
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#define ARC_AUX_IC_CTRL 0x11
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#define ARC_AUX_IC_IVIL 0x19
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#if (CONFIG_ARC_MMU_VER == 3)
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#define ARC_AUX_IC_PTAG 0x1E
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#endif
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#define ARC_BCR_IC_BUILD 0x77
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#define AUX_AUX_CACHE_LIMIT 0x5D
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#define ARC_AUX_NON_VOLATILE_LIMIT 0x5E
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/* ICCM and DCCM auxiliary registers */
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#define ARC_AUX_DCCM_BASE 0x18 /* DCCM Base Addr ARCv2 */
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#define ARC_AUX_ICCM_BASE 0x208 /* ICCM Base Addr ARCv2 */
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/* Timer related auxiliary registers */
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#define ARC_AUX_TIMER0_CNT 0x21 /* Timer 0 count */
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#define ARC_AUX_TIMER0_CTRL 0x22 /* Timer 0 control */
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#define ARC_AUX_TIMER0_LIMIT 0x23 /* Timer 0 limit */
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#define ARC_AUX_TIMER1_CNT 0x100 /* Timer 1 count */
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#define ARC_AUX_TIMER1_CTRL 0x101 /* Timer 1 control */
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#define ARC_AUX_TIMER1_LIMIT 0x102 /* Timer 1 limit */
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#define ARC_AUX_INTR_VEC_BASE 0x25
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/* Data cache related auxiliary registers */
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#define ARC_AUX_DC_IVDC 0x47
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#define ARC_AUX_DC_CTRL 0x48
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#define ARC_AUX_DC_IVDL 0x4A
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#define ARC_AUX_DC_FLSH 0x4B
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#define ARC_AUX_DC_FLDL 0x4C
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#if (CONFIG_ARC_MMU_VER == 3)
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#define ARC_AUX_DC_PTAG 0x5C
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#endif
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#define ARC_BCR_DC_BUILD 0x72
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#define ARC_BCR_SLC 0xce
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#define ARC_AUX_SLC_CONFIG 0x901
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#define ARC_AUX_SLC_CTRL 0x903
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#define ARC_AUX_SLC_FLUSH 0x904
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#define ARC_AUX_SLC_INVALIDATE 0x905
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#define ARC_AUX_SLC_IVDL 0x910
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#define ARC_AUX_SLC_FLDL 0x912
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#define ARC_AUX_SLC_RGN_START 0x914
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#define ARC_AUX_SLC_RGN_START1 0x915
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#define ARC_AUX_SLC_RGN_END 0x916
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#define ARC_AUX_SLC_RGN_END1 0x917
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#define ARC_BCR_CLUSTER 0xcf
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/* MMU Management regs */
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#define ARC_AUX_MMU_BCR 0x6f
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/* IO coherency related auxiliary registers */
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#define ARC_AUX_IO_COH_ENABLE 0x500
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#define ARC_AUX_IO_COH_PARTIAL 0x501
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#define ARC_AUX_IO_COH_AP0_BASE 0x508
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#define ARC_AUX_IO_COH_AP0_SIZE 0x509
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/* XY-memory related */
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#define ARC_AUX_XY_BUILD 0x79
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/* DSP-extensions related auxiliary registers */
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#define ARC_AUX_DSP_BUILD 0x7A
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/* ARC Subsystems related auxiliary registers */
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#define ARC_AUX_SUBSYS_BUILD 0xF0
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#ifndef __ASSEMBLY__
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/* Accessors for auxiliary registers */
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#define read_aux_reg(reg) __builtin_arc_lr(reg)
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/* gcc builtin sr needs reg param to be long immediate */
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#define write_aux_reg(reg_immed, val) \
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__builtin_arc_sr((unsigned int)val, reg_immed)
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/* ARCNUM [15:8] - field to identify each core in a multi-core system */
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#define CPU_ID_GET() ((read_aux_reg(ARC_AUX_IDENTITY) & 0xFF00) >> 8)
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static const inline int is_isa_arcv2(void)
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{
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return IS_ENABLED(CONFIG_ISA_ARCV2);
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}
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static const inline int is_isa_arcompact(void)
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{
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return IS_ENABLED(CONFIG_ISA_ARCOMPACT);
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}
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#endif /* __ASSEMBLY__ */
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#endif /* _ASM_ARC_ARCREGS_H */
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