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From: Pavel Dovgalyuk <Pavel.Dovgaluk@ispras.ru>
To: qemu-devel@nongnu.org
Cc: peter.maydell@linaro.org, peter.crosthwaite@xilinx.com,
	alex.bennee@linaro.org, mark.burton@greensocs.com,
	real@ispras.ru, batuzovk@ispras.ru,
	maria.klimushenkova@ispras.ru, pavel.dovgaluk@ispras.ru,
	pbonzini@redhat.com, afaerber@suse.de, fred.konrad@greensocs.com
Subject: [Qemu-devel] [RFC PATCH v9 09/23] replay: interrupts and exceptions
Date: Wed, 18 Feb 2015 14:56:33 +0300	[thread overview]
Message-ID: <20150218115633.4176.67664.stgit@PASHA-ISP> (raw)
In-Reply-To: <20150218115534.4176.12578.stgit@PASHA-ISP>

This patch includes modifications of common cpu files. All interrupts and
exceptions occured during recording are written into the replay log.
These events allow correct replaying the execution by kicking cpu thread
when one of these events is found in the log.

Signed-off-by: Pavel Dovgalyuk <pavel.dovgaluk@ispras.ru>
---
 cpu-exec.c               |   48 ++++++++++++++++++++++++++--------
 replay/replay-internal.h |    4 +++
 replay/replay.c          |   65 ++++++++++++++++++++++++++++++++++++++++++++++
 replay/replay.h          |   17 ++++++++++++
 target-i386/seg_helper.c |    7 +++++
 5 files changed, 130 insertions(+), 11 deletions(-)

diff --git a/cpu-exec.c b/cpu-exec.c
index 71e9814..ff3d140 100644
--- a/cpu-exec.c
+++ b/cpu-exec.c
@@ -24,6 +24,7 @@
 #include "qemu/atomic.h"
 #include "sysemu/qtest.h"
 #include "qemu/timer.h"
+#include "replay/replay.h"
 
 /* -icount align implementation. */
 
@@ -335,22 +336,25 @@ int cpu_exec(CPUArchState *env)
     /* This must be volatile so it is not trashed by longjmp() */
     volatile bool have_tb_lock = false;
 
+    /* replay_interrupt may need current_cpu */
+    current_cpu = cpu;
+
     if (cpu->halted) {
 #ifdef TARGET_I386
-        if (cpu->interrupt_request & CPU_INTERRUPT_POLL) {
+        if ((cpu->interrupt_request & CPU_INTERRUPT_POLL)
+            && replay_interrupt()) {
             apic_poll_irq(x86_cpu->apic_state);
             cpu_reset_interrupt(cpu, CPU_INTERRUPT_POLL);
         }
 #endif
         if (!cpu_has_work(cpu)) {
+            current_cpu = NULL;
             return EXCP_HALTED;
         }
 
         cpu->halted = 0;
     }
 
-    current_cpu = cpu;
-
     /* As long as current_cpu is null, up to the assignment just above,
      * requests by other threads to exit the execution loop are expected to
      * be issued using the exit_request global. We must make sure that our
@@ -397,10 +401,21 @@ int cpu_exec(CPUArchState *env)
                     cpu->exception_index = -1;
                     break;
 #else
-                    cc->do_interrupt(cpu);
-                    cpu->exception_index = -1;
+                    if (replay_exception()) {
+                        cc->do_interrupt(cpu);
+                        cpu->exception_index = -1;
+                    } else if (!replay_has_interrupt()) {
+                        /* give a chance to iothread in replay mode */
+                        ret = EXCP_INTERRUPT;
+                        break;
+                    }
 #endif
                 }
+            } else if (replay_has_exception()
+                       && cpu->icount_decr.u16.low + cpu->icount_extra == 0) {
+                /* try to cause an exception pending in the log */
+                cpu_exec_nocache(env, 1, tb_find_fast(env), true);
+                break;
             }
 
             next_tb = 0; /* force lookup of first TB */
@@ -416,30 +431,40 @@ int cpu_exec(CPUArchState *env)
                         cpu->exception_index = EXCP_DEBUG;
                         cpu_loop_exit(cpu);
                     }
-                    if (interrupt_request & CPU_INTERRUPT_HALT) {
+                    if (replay_mode == REPLAY_MODE_PLAY
+                        && !replay_has_interrupt()) {
+                        /* Do nothing */
+                    } else if (interrupt_request & CPU_INTERRUPT_HALT) {
+                        replay_interrupt();
                         cpu->interrupt_request &= ~CPU_INTERRUPT_HALT;
                         cpu->halted = 1;
                         cpu->exception_index = EXCP_HLT;
                         cpu_loop_exit(cpu);
                     }
 #if defined(TARGET_I386)
-                    if (interrupt_request & CPU_INTERRUPT_INIT) {
+                    else if (interrupt_request & CPU_INTERRUPT_INIT) {
+                        replay_interrupt();
                         cpu_svm_check_intercept_param(env, SVM_EXIT_INIT, 0);
                         do_cpu_init(x86_cpu);
                         cpu->exception_index = EXCP_HALTED;
                         cpu_loop_exit(cpu);
                     }
 #else
-                    if (interrupt_request & CPU_INTERRUPT_RESET) {
+                    else if (interrupt_request & CPU_INTERRUPT_RESET) {
+                        replay_interrupt();
                         cpu_reset(cpu);
+                        cpu_loop_exit(cpu);
                     }
 #endif
                     /* The target hook has 3 exit conditions:
                        False when the interrupt isn't processed,
                        True when it is, and we should restart on a new TB,
                        and via longjmp via cpu_loop_exit.  */
-                    if (cc->cpu_exec_interrupt(cpu, interrupt_request)) {
-                        next_tb = 0;
+                    else {
+                        replay_interrupt();
+                        if (cc->cpu_exec_interrupt(cpu, interrupt_request)) {
+                            next_tb = 0;
+                        }
                     }
                     /* Don't use the cached interrupt_request value,
                        do_interrupt may have updated the EXITTB flag. */
@@ -450,7 +475,8 @@ int cpu_exec(CPUArchState *env)
                         next_tb = 0;
                     }
                 }
-                if (unlikely(cpu->exit_request)) {
+                if (unlikely(cpu->exit_request
+                             || replay_has_interrupt())) {
                     cpu->exit_request = 0;
                     cpu->exception_index = EXCP_INTERRUPT;
                     cpu_loop_exit(cpu);
diff --git a/replay/replay-internal.h b/replay/replay-internal.h
index 3588448..7d9f580 100755
--- a/replay/replay-internal.h
+++ b/replay/replay-internal.h
@@ -17,6 +17,10 @@
 enum ReplayEvents {
     /* for instruction event */
     EVENT_INSTRUCTION,
+    /* for software interrupt */
+    EVENT_INTERRUPT,
+    /* for emulated exceptions */
+    EVENT_EXCEPTION,
     EVENT_COUNT
 };
 
diff --git a/replay/replay.c b/replay/replay.c
index a6a5145..54a4fb8 100755
--- a/replay/replay.c
+++ b/replay/replay.c
@@ -84,3 +84,68 @@ void replay_account_executed_instructions(void)
         }
     }
 }
+
+bool replay_exception(void)
+{
+    if (replay_mode == REPLAY_MODE_RECORD) {
+        replay_save_instructions();
+        replay_mutex_lock();
+        replay_put_event(EVENT_EXCEPTION);
+        replay_mutex_unlock();
+        return true;
+    } else if (replay_mode == REPLAY_MODE_PLAY) {
+        bool res = replay_has_exception();
+        if (res) {
+            replay_has_unread_data = 0;
+        }
+        return res;
+    }
+
+    return true;
+}
+
+bool replay_has_exception(void)
+{
+    bool res = false;
+    if (replay_mode == REPLAY_MODE_PLAY) {
+        replay_account_executed_instructions();
+        replay_mutex_lock();
+        if (skip_async_events(EVENT_EXCEPTION)) {
+            res = true;
+        }
+        replay_mutex_unlock();
+    }
+
+    return res;
+}
+
+bool replay_interrupt(void)
+{
+    if (replay_mode == REPLAY_MODE_RECORD) {
+        replay_save_instructions();
+        replay_mutex_lock();
+        replay_put_event(EVENT_INTERRUPT);
+        replay_mutex_unlock();
+        return true;
+    } else if (replay_mode == REPLAY_MODE_PLAY) {
+        bool res = replay_has_interrupt();
+        if (res) {
+            replay_has_unread_data = 0;
+        }
+        return res;
+    }
+
+    return true;
+}
+
+bool replay_has_interrupt(void)
+{
+    bool res = false;
+    if (replay_mode == REPLAY_MODE_PLAY) {
+        replay_account_executed_instructions();
+        replay_mutex_lock();
+        res = skip_async_events(EVENT_INTERRUPT);
+        replay_mutex_unlock();
+    }
+    return res;
+}
diff --git a/replay/replay.h b/replay/replay.h
index d19715f..8915523 100755
--- a/replay/replay.h
+++ b/replay/replay.h
@@ -27,4 +27,21 @@ int replay_get_instructions(void);
 /*! Updates instructions counter in replay mode. */
 void replay_account_executed_instructions(void);
 
+/* Interrupts and exceptions */
+
+/*! Called by exception handler to write or read
+    exception processing events. */
+bool replay_exception(void);
+/*! Used to determine that exception is pending.
+    Does not proceed to the next event in the log. */
+bool replay_has_exception(void);
+/*! Called by interrupt handlers to write or read
+    interrupt processing events.
+    \return true if interrupt should be processed */
+bool replay_interrupt(void);
+/*! Tries to read interrupt event from the file.
+    Returns true, when interrupt request is pending */
+bool replay_has_interrupt(void);
+
+
 #endif
diff --git a/target-i386/seg_helper.c b/target-i386/seg_helper.c
index fa374d0..46e4b7b 100644
--- a/target-i386/seg_helper.c
+++ b/target-i386/seg_helper.c
@@ -22,6 +22,7 @@
 #include "qemu/log.h"
 #include "exec/helper-proto.h"
 #include "exec/cpu_ldst.h"
+#include "replay/replay.h"
 
 //#define DEBUG_PCALL
 
@@ -1294,6 +1295,12 @@ bool x86_cpu_exec_interrupt(CPUState *cs, int interrupt_request)
     if (interrupt_request & CPU_INTERRUPT_POLL) {
         cs->interrupt_request &= ~CPU_INTERRUPT_POLL;
         apic_poll_irq(cpu->apic_state);
+        /* Process one interrupt for a single call.
+           In record/replay mode each call to this function
+           is coupled with an event in the log */
+        if (replay_mode != REPLAY_MODE_NONE) {
+            return true;
+        }
     }
 #endif
     if (interrupt_request & CPU_INTERRUPT_SIPI) {

  parent reply	other threads:[~2015-02-18 11:56 UTC|newest]

Thread overview: 44+ messages / expand[flat|nested]  mbox.gz  Atom feed  top
2015-02-18 11:55 [Qemu-devel] [RFC PATCH v9 00/23] Deterministic replay core Pavel Dovgalyuk
2015-02-18 11:55 ` [Qemu-devel] [RFC PATCH v9 01/23] i386: partial revert of interrupt poll fix Pavel Dovgalyuk
2015-02-18 11:55 ` [Qemu-devel] [RFC PATCH v9 02/23] replay: global variables and function stubs Pavel Dovgalyuk
2015-02-18 11:55 ` [Qemu-devel] [RFC PATCH v9 03/23] sysemu: system functions for replay Pavel Dovgalyuk
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 04/23] replay: internal functions for replay log Pavel Dovgalyuk
2015-02-18 12:43   ` Paolo Bonzini
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 05/23] replay: introduce mutex to protect the " Pavel Dovgalyuk
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 06/23] replay: introduce icount event Pavel Dovgalyuk
2015-02-18 13:49   ` Paolo Bonzini
2015-02-18 14:14   ` Paolo Bonzini
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 07/23] cpu-exec: allow temporary disabling icount Pavel Dovgalyuk
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 08/23] cpu: replay instructions sequence Pavel Dovgalyuk
2015-02-18 12:50   ` Paolo Bonzini
2015-02-18 13:48   ` Paolo Bonzini
2015-02-18 11:56 ` Pavel Dovgalyuk [this message]
2015-02-18 13:54   ` [Qemu-devel] [RFC PATCH v9 09/23] replay: interrupts and exceptions Paolo Bonzini
2015-02-18 14:14   ` Paolo Bonzini
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 10/23] replay: asynchronous events infrastructure Pavel Dovgalyuk
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 11/23] replay: recording and replaying clock ticks Pavel Dovgalyuk
2015-02-18 14:13   ` Paolo Bonzini
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 12/23] timer: replace time() with QEMU_CLOCK_HOST Pavel Dovgalyuk
2015-02-18 13:04   ` Paolo Bonzini
2015-02-18 11:56 ` [Qemu-devel] [RFC PATCH v9 13/23] replay: shutdown event Pavel Dovgalyuk
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 14/23] replay: checkpoints Pavel Dovgalyuk
2015-02-18 14:14   ` Paolo Bonzini
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 15/23] aio: replace stack of bottom halves with queue Pavel Dovgalyuk
2015-02-18 13:06   ` Paolo Bonzini
2015-02-18 13:10   ` Paolo Bonzini
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 16/23] replay: bottom halves Pavel Dovgalyuk
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 17/23] replay: replay aio requests Pavel Dovgalyuk
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 18/23] replay: thread pool Pavel Dovgalyuk
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 19/23] typedef: add typedef for QemuOpts Pavel Dovgalyuk
2015-02-18 13:11   ` Paolo Bonzini
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 20/23] replay: initialization and deinitialization Pavel Dovgalyuk
2015-02-18 13:14   ` Paolo Bonzini
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 21/23] replay: replay blockers for devices Pavel Dovgalyuk
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 22/23] replay: command line options Pavel Dovgalyuk
2015-02-18 13:18   ` Paolo Bonzini
2015-02-20  8:02     ` Pavel Dovgaluk
     [not found]     ` <23594.561199616$1424419399@news.gmane.org>
2015-02-20 10:28       ` Paolo Bonzini
2015-02-18 11:57 ` [Qemu-devel] [RFC PATCH v9 23/23] replay: recording of the user input Pavel Dovgalyuk
2015-02-18 14:19 ` [Qemu-devel] [RFC PATCH v9 00/23] Deterministic replay core Paolo Bonzini
2015-02-27  9:23   ` Pavel Dovgaluk
2015-02-27 13:07     ` Paolo Bonzini

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