arm64/esr: Add decode of ISS2 to data abort reporting
The architecture has added more information about faults to ISS2 within ESR. Add decode of this to our data abort fault decode to aid diagnostics. Features that are not currently enabled are included here for completeness. Since the architecture specifies the values of bits within ISS2 in terms of ISS2 rather than in terms of the register as a whole we do so for our definitions as well, this makes it easier to review bitfield definitions. Signed-off-by: Mark Brown <broonie@kernel.org> Link: https://lore.kernel.org/r/20230417-arm64-iss2-dabt-decode-v3-2-c1fa503e503a@kernel.org Signed-off-by: Catalin Marinas <catalin.marinas@arm.com>
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@ -77,6 +77,9 @@
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#define ESR_ELx_IL (UL(1) << ESR_ELx_IL_SHIFT)
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#define ESR_ELx_ISS_MASK (GENMASK(24, 0))
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#define ESR_ELx_ISS(esr) ((esr) & ESR_ELx_ISS_MASK)
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#define ESR_ELx_ISS2_SHIFT (32)
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#define ESR_ELx_ISS2_MASK (GENMASK_ULL(55, 32))
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#define ESR_ELx_ISS2(esr) (((esr) & ESR_ELx_ISS2_MASK) >> ESR_ELx_ISS2_SHIFT)
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/* ISS field definitions shared by different classes */
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#define ESR_ELx_WNR_SHIFT (6)
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@ -140,6 +143,20 @@
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#define ESR_ELx_CM_SHIFT (8)
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#define ESR_ELx_CM (UL(1) << ESR_ELx_CM_SHIFT)
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/* ISS2 field definitions for Data Aborts */
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#define ESR_ELx_TnD_SHIFT (10)
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#define ESR_ELx_TnD (UL(1) << ESR_ELx_TnD_SHIFT)
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#define ESR_ELx_TagAccess_SHIFT (9)
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#define ESR_ELx_TagAccess (UL(1) << ESR_ELx_TagAccess_SHIFT)
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#define ESR_ELx_GCS_SHIFT (8)
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#define ESR_ELx_GCS (UL(1) << ESR_ELx_GCS_SHIFT)
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#define ESR_ELx_Overlay_SHIFT (6)
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#define ESR_ELx_Overlay (UL(1) << ESR_ELx_Overlay_SHIFT)
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#define ESR_ELx_DirtyBit_SHIFT (5)
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#define ESR_ELx_DirtyBit (UL(1) << ESR_ELx_DirtyBit_SHIFT)
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#define ESR_ELx_Xs_SHIFT (0)
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#define ESR_ELx_Xs_MASK (GENMASK_ULL(4, 0))
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/* ISS field definitions for exceptions taken in to Hyp */
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#define ESR_ELx_CV (UL(1) << 24)
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#define ESR_ELx_COND_SHIFT (20)
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@ -66,6 +66,8 @@ static inline const struct fault_info *esr_to_debug_fault_info(unsigned long esr
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static void data_abort_decode(unsigned long esr)
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{
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unsigned long iss2 = ESR_ELx_ISS2(esr);
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pr_alert("Data abort info:\n");
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if (esr & ESR_ELx_ISV) {
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@ -78,12 +80,21 @@ static void data_abort_decode(unsigned long esr)
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(esr & ESR_ELx_SF) >> ESR_ELx_SF_SHIFT,
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(esr & ESR_ELx_AR) >> ESR_ELx_AR_SHIFT);
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} else {
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pr_alert(" ISV = 0, ISS = 0x%08lx\n", esr & ESR_ELx_ISS_MASK);
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pr_alert(" ISV = 0, ISS = 0x%08lx, ISS2 = 0x%08lx\n",
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esr & ESR_ELx_ISS_MASK, iss2);
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}
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pr_alert(" CM = %lu, WnR = %lu\n",
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pr_alert(" CM = %lu, WnR = %lu, TnD = %lu, TagAccess = %lu\n",
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(esr & ESR_ELx_CM) >> ESR_ELx_CM_SHIFT,
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(esr & ESR_ELx_WNR) >> ESR_ELx_WNR_SHIFT);
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(esr & ESR_ELx_WNR) >> ESR_ELx_WNR_SHIFT,
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(iss2 & ESR_ELx_TnD) >> ESR_ELx_TnD_SHIFT,
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(iss2 & ESR_ELx_TagAccess) >> ESR_ELx_TagAccess_SHIFT);
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pr_alert(" GCS = %ld, Overlay = %lu, DirtyBit = %lu, Xs = %llu\n",
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(iss2 & ESR_ELx_GCS) >> ESR_ELx_GCS_SHIFT,
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(iss2 & ESR_ELx_Overlay) >> ESR_ELx_Overlay_SHIFT,
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(iss2 & ESR_ELx_DirtyBit) >> ESR_ELx_DirtyBit_SHIFT,
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(iss2 & ESR_ELx_Xs_MASK) >> ESR_ELx_Xs_SHIFT);
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}
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static void mem_abort_decode(unsigned long esr)
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