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authorLiu Jingqi <jingqi.liu@intel.com>2018-11-06 15:13:26 +0800
committerEduardo Habkost <ehabkost@redhat.com>2018-12-11 18:50:48 -0200
commit24261de4916596d8ab5f5fee67e9e7a19e8325a5 (patch)
tree6e824a39a45e208d5b90b7cc0c883a9ed63faa7f
parent32a1a94dd324d33578dca1dc96d7896a0244d768 (diff)
x86/cpu: Enable MOVDIRI cpu feature
MOVDIRI moves doubleword or quadword from register to memory through direct store which is implemented by using write combining (WC) for writing data directly into memory without caching the data. The bit definition: CPUID.(EAX=7,ECX=0):ECX[bit 27] MOVDIRI The release document ref below link: https://software.intel.com/sites/default/files/managed/c5/15/\ architecture-instruction-set-extensions-programming-reference.pdf Cc: Xu Tao <tao3.xu@intel.com> Signed-off-by: Liu Jingqi <jingqi.liu@intel.com> Message-Id: <1541488407-17045-2-git-send-email-jingqi.liu@intel.com> Signed-off-by: Eduardo Habkost <ehabkost@redhat.com>
-rw-r--r--target/i386/cpu.c2
-rw-r--r--target/i386/cpu.h1
2 files changed, 2 insertions, 1 deletions
diff --git a/target/i386/cpu.c b/target/i386/cpu.c
index f81d35e1f9..227baea337 100644
--- a/target/i386/cpu.c
+++ b/target/i386/cpu.c
@@ -1023,7 +1023,7 @@ static FeatureWordInfo feature_word_info[FEATURE_WORDS] = {
"avx512bitalg", NULL, "avx512-vpopcntdq", NULL,
"la57", NULL, NULL, NULL,
NULL, NULL, "rdpid", NULL,
- NULL, "cldemote", NULL, NULL,
+ NULL, "cldemote", NULL, "movdiri",
NULL, NULL, NULL, NULL,
},
.cpuid = {
diff --git a/target/i386/cpu.h b/target/i386/cpu.h
index 9c52d0cbeb..b4f03ffd74 100644
--- a/target/i386/cpu.h
+++ b/target/i386/cpu.h
@@ -687,6 +687,7 @@ typedef uint32_t FeatureWordArray[FEATURE_WORDS];
#define CPUID_7_0_ECX_LA57 (1U << 16)
#define CPUID_7_0_ECX_RDPID (1U << 22)
#define CPUID_7_0_ECX_CLDEMOTE (1U << 25) /* CLDEMOTE Instruction */
+#define CPUID_7_0_ECX_MOVDIRI (1U << 27) /* MOVDIRI Instruction */
#define CPUID_7_0_EDX_AVX512_4VNNIW (1U << 2) /* AVX512 Neural Network Instructions */
#define CPUID_7_0_EDX_AVX512_4FMAPS (1U << 3) /* AVX512 Multiply Accumulation Single Precision */