return 0;
}
+static int context_flush(struct intel_context *ce, long timeout)
+{
+ struct i915_request *rq;
+ struct dma_fence *fence;
+ int err = 0;
+
+ rq = intel_engine_create_kernel_request(ce->engine);
+ if (IS_ERR(rq))
+ return PTR_ERR(rq);
+
+ fence = i915_active_fence_get(&ce->timeline->last_request);
+ if (fence) {
+ i915_request_await_dma_fence(rq, fence);
+ dma_fence_put(fence);
+ }
+
+ rq = i915_request_get(rq);
+ i915_request_add(rq);
+ if (i915_request_wait(rq, 0, timeout) < 0)
+ err = -ETIME;
+ i915_request_put(rq);
+
+ rmb(); /* We know the request is written, make sure all state is too! */
+ return err;
+}
+
static int live_lrc_layout(void *arg)
{
struct intel_gt *gt = arg;
wmb();
}
- if (i915_request_wait(rq, 0, HZ / 2) < 0) {
- err = -ETIME;
- goto err;
- }
-
- /* and wait for switch to kernel */
- if (igt_flush_test(arg->engine->i915)) {
- err = -EIO;
+ /* And wait for switch to kernel (to save our context to memory) */
+ err = context_flush(arg->ce[0], HZ / 2);
+ if (err)
goto err;
- }
-
- rmb();
if (!timestamp_advanced(arg->poison, slot[1])) {
pr_err("%s(%s): invalid timestamp on restore, context:%x, request:%x\n",