MIPS: Detect the MSA ASE
This patch adds support for probing the MSAP bit within the Config3 register in order to detect the presence of the MSA ASE. Presence of the ASE will be indicated in /proc/cpuinfo. The value of the MSA implementation register will be displayed at boot to aid debugging and verification of a correct setup, as is done for the FPU. Signed-off-by: Paul Burton <paul.burton@imgtec.com> Cc: linux-mips@linux-mips.org Patchwork: https://patchwork.linux-mips.org/patch/6430/ Signed-off-by: Ralf Baechle <ralf@linux-mips.org>
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@ -1208,6 +1208,7 @@ config CPU_MIPS32_R2
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select CPU_HAS_PREFETCH
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select CPU_SUPPORTS_32BIT_KERNEL
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select CPU_SUPPORTS_HIGHMEM
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select CPU_SUPPORTS_MSA
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select HAVE_KVM
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help
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Choose this option to build a kernel for release 2 or later of the
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@ -1243,6 +1244,7 @@ config CPU_MIPS64_R2
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select CPU_SUPPORTS_64BIT_KERNEL
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select CPU_SUPPORTS_HIGHMEM
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select CPU_SUPPORTS_HUGEPAGES
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select CPU_SUPPORTS_MSA
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help
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Choose this option to build a kernel for release 2 or later of the
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MIPS64 architecture. Many modern embedded systems with a 64-bit
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@ -2081,6 +2083,20 @@ config CPU_MICROMIPS
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When this option is enabled the kernel will be built using the
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microMIPS ISA
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config CPU_HAS_MSA
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bool "Support for the MIPS SIMD Architecture"
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depends on CPU_SUPPORTS_MSA
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default y
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help
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MIPS SIMD Architecture (MSA) introduces 128 bit wide vector registers
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and a set of SIMD instructions to operate on them. When this option
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is enabled the kernel will support detection of the MSA ASE. If you
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know that your kernel will only be running on CPUs which do not
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support MSA then you may wish to say N here to reduce the size of
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your kernel.
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If unsure, say Y.
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config CPU_HAS_WB
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bool
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@ -2146,6 +2162,9 @@ config SYS_SUPPORTS_SMARTMIPS
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config SYS_SUPPORTS_MICROMIPS
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bool
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config CPU_SUPPORTS_MSA
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bool
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config ARCH_FLATMEM_ENABLE
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def_bool y
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depends on !NUMA && !CPU_LOONGSON2
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@ -299,4 +299,10 @@
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#define cpu_has_vz (cpu_data[0].ases & MIPS_ASE_VZ)
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#endif
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#if defined(CONFIG_CPU_HAS_MSA) && !defined(cpu_has_msa)
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# define cpu_has_msa (cpu_data[0].ases & MIPS_ASE_MSA)
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#elif !defined(cpu_has_msa)
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# define cpu_has_msa 0
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#endif
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#endif /* __ASM_CPU_FEATURES_H */
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@ -49,6 +49,7 @@ struct cpuinfo_mips {
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unsigned long ases;
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unsigned int processor_id;
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unsigned int fpu_id;
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unsigned int msa_id;
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unsigned int cputype;
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int isa_level;
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int tlbsize;
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@ -370,5 +370,6 @@ enum cpu_type_enum {
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#define MIPS_ASE_MIPSMT 0x00000020 /* CPU supports MIPS MT */
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#define MIPS_ASE_DSP2P 0x00000040 /* Signal Processing ASE Rev 2 */
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#define MIPS_ASE_VZ 0x00000080 /* Virtualization ASE */
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#define MIPS_ASE_MSA 0x00000100 /* MIPS SIMD Architecture */
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#endif /* _ASM_CPU_H */
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@ -23,6 +23,7 @@
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#include <asm/cpu-type.h>
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#include <asm/fpu.h>
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#include <asm/mipsregs.h>
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#include <asm/msa.h>
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#include <asm/watch.h>
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#include <asm/elf.h>
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#include <asm/spram.h>
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@ -126,6 +127,20 @@ static inline int __cpu_has_fpu(void)
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return ((cpu_get_fpu_id() & FPIR_IMP_MASK) != FPIR_IMP_NONE);
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}
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static inline unsigned long cpu_get_msa_id(void)
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{
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unsigned long status, conf5, msa_id;
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status = read_c0_status();
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__enable_fpu(FPU_64BIT);
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conf5 = read_c0_config5();
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enable_msa();
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msa_id = read_msa_ir();
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write_c0_config5(conf5);
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write_c0_status(status);
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return msa_id;
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}
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static inline void cpu_probe_vmbits(struct cpuinfo_mips *c)
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{
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#ifdef __NEED_VMBITS_PROBE
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@ -301,6 +316,8 @@ static inline unsigned int decode_config3(struct cpuinfo_mips *c)
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c->ases |= MIPS_ASE_VZ;
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if (config3 & MIPS_CONF3_SC)
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c->options |= MIPS_CPU_SEGMENTS;
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if (config3 & MIPS_CONF3_MSA)
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c->ases |= MIPS_ASE_MSA;
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return config3 & MIPS_CONF_M;
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}
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@ -1178,6 +1195,9 @@ void cpu_probe(void)
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else
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c->srsets = 1;
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if (cpu_has_msa)
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c->msa_id = cpu_get_msa_id();
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cpu_probe_vmbits(c);
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#ifdef CONFIG_64BIT
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@ -1194,4 +1214,6 @@ void cpu_report(void)
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smp_processor_id(), c->processor_id, cpu_name_string());
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if (c->options & MIPS_CPU_FPU)
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printk(KERN_INFO "FPU revision is: %08x\n", c->fpu_id);
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if (cpu_has_msa)
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pr_info("MSA revision is: %08x\n", c->msa_id);
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}
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@ -95,6 +95,7 @@ static int show_cpuinfo(struct seq_file *m, void *v)
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if (cpu_has_mipsmt) seq_printf(m, "%s", " mt");
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if (cpu_has_mmips) seq_printf(m, "%s", " micromips");
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if (cpu_has_vz) seq_printf(m, "%s", " vz");
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if (cpu_has_msa) seq_printf(m, "%s", " msa");
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seq_printf(m, "\n");
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if (cpu_has_mmips) {
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