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gpu: nvgpu: unit: add tsg abort coverage
Add unit test for: - nvgpu_tsg_abort Jira NVGPU-3476 Change-Id: Ie1d93647e8ab239ad0604b04a3d36464b2bedb5b Signed-off-by: Thomas Fleury <tfleury@nvidia.com> Reviewed-on: https://git-master.nvidia.com/r/2124515 GVS: Gerrit_Virtual_Submit Reviewed-by: Deepak Nibade <dnibade@nvidia.com> Reviewed-by: mobile promotions <svcmobile_promotions@nvidia.com> Tested-by: mobile promotions <svcmobile_promotions@nvidia.com>
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@@ -163,6 +163,7 @@ nvgpu_readl
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nvgpu_readl_impl
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nvgpu_runlist_construct_locked
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nvgpu_rwsem_init
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nvgpu_tsg_abort
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nvgpu_tsg_bind_channel
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nvgpu_tsg_check_and_get_from_id
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nvgpu_tsg_default_timeslice_us
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@@ -1005,6 +1005,136 @@ done:
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return rc;
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}
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#define F_TSG_ABORT_STUB BIT(0)
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#define F_TSG_ABORT_PREEMPT BIT(1)
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#define F_TSG_ABORT_CH BIT(2)
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#define F_TSG_ABORT_CH_ABORT_CLEANUP_NULL BIT(3)
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#define F_TSG_ABORT_NON_ABORTABLE BIT(4)
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#define F_TSG_ABORT_LAST BIT(5)
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static const char *f_tsg_abort[] = {
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"stub",
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"preempt",
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"ch",
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"ch_abort_cleanup_null",
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"non_abortable",
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};
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static int stub_fifo_preempt_tsg(struct gk20a *g, struct nvgpu_tsg *tsg)
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{
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stub[0].tsgid = tsg->tsgid;
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return 0;
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}
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static void stub_channel_abort_clean_up(struct nvgpu_channel *ch)
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{
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stub[1].chid = ch->chid;
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}
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static int test_tsg_abort(struct unit_module *m, struct gk20a *g, void *args)
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{
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struct gpu_ops gops = g->ops;
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struct nvgpu_tsg *tsgA = NULL;
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struct nvgpu_tsg *tsgB = NULL;
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struct nvgpu_tsg *tsg = NULL;
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struct nvgpu_channel *chA = NULL;
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bool preempt = false;
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u32 branches = 0U;
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int rc = UNIT_FAIL;
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u32 prune = F_TSG_ABORT_NON_ABORTABLE;
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int err;
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tsgA = nvgpu_tsg_open(g, getpid());
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assert(tsgA != NULL);
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tsgB = nvgpu_tsg_open(g, getpid());
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assert(tsgB != NULL);
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chA = gk20a_open_new_channel(g, ~0U, false, getpid(), getpid());
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assert(chA != NULL);
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err = nvgpu_tsg_bind_channel(tsgA, chA);
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assert(err == 0);
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for (branches = 0U; branches < F_TSG_ABORT_LAST; branches++) {
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if (pruned(branches, prune)) {
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unit_verbose(m, "%s branches=%s (pruned)\n", __func__,
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branches_str(branches, f_tsg_abort));
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continue;
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}
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subtest_setup(branches);
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unit_verbose(m, "%s branches=%s\n", __func__,
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branches_str(branches, f_tsg_abort));
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g->ops.channel.abort_clean_up =
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branches & F_TSG_ABORT_STUB ?
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stub_channel_abort_clean_up :
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gops.channel.abort_clean_up;
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g->ops.fifo.preempt_tsg =
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branches & F_TSG_ABORT_STUB ?
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stub_fifo_preempt_tsg :
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gops.fifo.preempt_tsg;
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tsg = branches & F_TSG_ABORT_CH ? tsgA : tsgB;
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tsg->abortable =
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branches & F_TSG_ABORT_NON_ABORTABLE ? false : true;
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preempt = branches & F_TSG_ABORT_PREEMPT ? true : false;
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if (branches & F_TSG_ABORT_CH_ABORT_CLEANUP_NULL) {
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g->ops.channel.abort_clean_up = NULL;
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}
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nvgpu_tsg_abort(g, tsg, preempt);
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if (branches & F_TSG_ABORT_STUB) {
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if (preempt) {
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assert(stub[0].tsgid == tsg->tsgid);
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}
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if (!(branches & F_TSG_ABORT_CH_ABORT_CLEANUP_NULL)) {
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if (tsg == tsgA) {
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assert(stub[1].chid == chA->chid);
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}
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if (tsg == tsgB) {
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assert(stub[1].chid ==
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NVGPU_INVALID_CHANNEL_ID);
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}
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}
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}
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if (tsg == tsgA) {
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assert(chA->unserviceable);
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}
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tsg->abortable = true;
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chA->unserviceable = false;
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}
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rc = UNIT_SUCCESS;
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done:
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if (rc == UNIT_FAIL) {
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unit_err(m, "%s branches=%s\n", __func__,
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branches_str(branches, f_tsg_abort));
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}
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if (chA != NULL) {
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nvgpu_channel_close(chA);
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}
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if (tsgA != NULL) {
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nvgpu_ref_put(&tsgA->refcount, nvgpu_tsg_release);
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}
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if (tsgB != NULL) {
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nvgpu_ref_put(&tsgB->refcount, nvgpu_tsg_release);
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}
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g->ops = gops;
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return rc;
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}
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struct unit_module_test nvgpu_tsg_tests[] = {
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UNIT_TEST(init_support, test_fifo_init_support, &unit_ctx, 0),
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UNIT_TEST(open, test_tsg_open, &unit_ctx, 0),
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@@ -1017,6 +1147,7 @@ struct unit_module_test nvgpu_tsg_tests[] = {
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UNIT_TEST(unbind_channel_check_ctx_reload,
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test_tsg_unbind_channel_check_ctx_reload, &unit_ctx, 0),
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UNIT_TEST(enable_disable, test_tsg_enable, &unit_ctx, 0),
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UNIT_TEST(abort, test_tsg_abort, &unit_ctx, 0),
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UNIT_TEST(remove_support, test_fifo_remove_support, &unit_ctx, 0),
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};
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