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[1/4] i386/hvf: Integrates x2APIC support with hvf accel

Message ID 20241024194303.32100-2-phil@philjordan.eu (mailing list archive)
State New
Headers show
Series i386/hvf: x2apic support and some small fixes | expand

Commit Message

Phil Dennis-Jordan Oct. 24, 2024, 7:43 p.m. UTC
Support for x2APIC mode was recently introduced in the software emulated
APIC implementation for TCG. Enabling it when using macOS’s hvf
accelerator is useful and significantly helps performance, as Qemu
currently uses the emulated APIC when running on hvf as well.

This change wires up the read & write operations for the MSR VM exits
and allow-lists the CPUID flag in the x86 hvf runtime.

Signed-off-by: Phil Dennis-Jordan <phil@philjordan.eu>
---
 target/i386/hvf/x86_cpuid.c |  4 ++--
 target/i386/hvf/x86_emu.c   | 31 +++++++++++++++++++++++++++++++
 2 files changed, 33 insertions(+), 2 deletions(-)
diff mbox series

Patch

diff --git a/target/i386/hvf/x86_cpuid.c b/target/i386/hvf/x86_cpuid.c
index e56cd8411ba..4f260d46a81 100644
--- a/target/i386/hvf/x86_cpuid.c
+++ b/target/i386/hvf/x86_cpuid.c
@@ -64,8 +64,8 @@  uint32_t hvf_get_supported_cpuid(uint32_t func, uint32_t idx,
              CPUID_PAT | CPUID_PSE36 | CPUID_CLFLUSH | CPUID_MMX |
              CPUID_FXSR | CPUID_SSE | CPUID_SSE2 | CPUID_SS;
         ecx &= CPUID_EXT_SSE3 | CPUID_EXT_PCLMULQDQ | CPUID_EXT_SSSE3 |
-             CPUID_EXT_FMA | CPUID_EXT_CX16 | CPUID_EXT_PCID |
-             CPUID_EXT_SSE41 | CPUID_EXT_SSE42 | CPUID_EXT_MOVBE |
+             CPUID_EXT_FMA | CPUID_EXT_CX16 | CPUID_EXT_PCID | CPUID_EXT_SSE41 |
+             CPUID_EXT_SSE42 | CPUID_EXT_X2APIC | CPUID_EXT_MOVBE |
              CPUID_EXT_POPCNT | CPUID_EXT_AES | CPUID_EXT_XSAVE |
              CPUID_EXT_AVX | CPUID_EXT_F16C | CPUID_EXT_RDRAND;
         ecx |= CPUID_EXT_HYPERVISOR;
diff --git a/target/i386/hvf/x86_emu.c b/target/i386/hvf/x86_emu.c
index 38c782b8e3b..be675bcfb71 100644
--- a/target/i386/hvf/x86_emu.c
+++ b/target/i386/hvf/x86_emu.c
@@ -663,6 +663,15 @@  static void exec_lods(CPUX86State *env, struct x86_decode *decode)
     env->eip += decode->len;
 }
 
+static void raise_exception(CPUX86State *env, int exception_index,
+                            int error_code)
+{
+    env->exception_nr = exception_index;
+    env->error_code = error_code;
+    env->has_error_code = true;
+    env->exception_injected = 1;
+}
+
 void simulate_rdmsr(CPUX86State *env)
 {
     X86CPU *cpu = env_archcpu(env);
@@ -677,6 +686,17 @@  void simulate_rdmsr(CPUX86State *env)
     case MSR_IA32_APICBASE:
         val = cpu_get_apic_base(cpu->apic_state);
         break;
+    case MSR_APIC_START ... MSR_APIC_END: {
+        int ret;
+        int index = (uint32_t)env->regs[R_ECX] - MSR_APIC_START;
+
+        ret = apic_msr_read(index, &val);
+        if (ret < 0) {
+            raise_exception(env, EXCP0D_GPF, 0);
+        }
+
+        break;
+    }
     case MSR_IA32_UCODE_REV:
         val = cpu->ucode_rev;
         break;
@@ -777,6 +797,17 @@  void simulate_wrmsr(CPUX86State *env)
     case MSR_IA32_APICBASE:
         cpu_set_apic_base(cpu->apic_state, data);
         break;
+    case MSR_APIC_START ... MSR_APIC_END: {
+        int ret;
+        int index = (uint32_t)env->regs[R_ECX] - MSR_APIC_START;
+
+        ret = apic_msr_write(index, data);
+        if (ret < 0) {
+            raise_exception(env, EXCP0D_GPF, 0);
+        }
+
+        break;
+    }
     case MSR_FSBASE:
         wvmcs(cs->accel->fd, VMCS_GUEST_FS_BASE, data);
         break;