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@@ -0,0 +1,91 @@
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+/*
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+ * Copyright 2014, Michael Ellerman, IBM Corp.
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+ * Licensed under GPLv2.
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+ */
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+
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+#include <stdio.h>
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+#include <stdlib.h>
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+#include <stdbool.h>
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+
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+#include "ebb.h"
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+
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+
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+/*
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+ * Test of counting cycles while manipulating the user accessible bits in MMCR2.
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+ */
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+
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+/* We use two values because the first freezes PMC1 and so we would get no EBBs */
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+#define MMCR2_EXPECTED_1 0x4020100804020000UL /* (FC1P|FC2P|FC3P|FC4P|FC5P|FC6P) */
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+#define MMCR2_EXPECTED_2 0x0020100804020000UL /* ( FC2P|FC3P|FC4P|FC5P|FC6P) */
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+
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+
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+int cycles_with_mmcr2(void)
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+{
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+ struct event event;
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+ uint64_t val, expected[2], actual;
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+ int i;
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+ bool bad_mmcr2;
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+
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+ event_init_named(&event, 0x1001e, "cycles");
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+ event_leader_ebb_init(&event);
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+
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+ event.attr.exclude_kernel = 1;
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+ event.attr.exclude_hv = 1;
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+ event.attr.exclude_idle = 1;
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+
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+ FAIL_IF(event_open(&event));
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+
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+ ebb_enable_pmc_counting(1);
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+ setup_ebb_handler(standard_ebb_callee);
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+ ebb_global_enable();
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+
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+ FAIL_IF(ebb_event_enable(&event));
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+
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+ mtspr(SPRN_PMC1, pmc_sample_period(sample_period));
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+
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+ /* XXX Set of MMCR2 must be after enable */
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+ expected[0] = MMCR2_EXPECTED_1;
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+ expected[1] = MMCR2_EXPECTED_2;
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+ i = 0;
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+ bad_mmcr2 = false;
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+
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+ /* Make sure we loop until we take at least one EBB */
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+ while ((ebb_state.stats.ebb_count < 20 && !bad_mmcr2) ||
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+ ebb_state.stats.ebb_count < 1)
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+ {
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+ mtspr(SPRN_MMCR2, expected[i % 2]);
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+
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+ FAIL_IF(core_busy_loop());
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+
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+ val = mfspr(SPRN_MMCR2);
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+ if (val != expected[i % 2]) {
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+ bad_mmcr2 = true;
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+ actual = val;
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+ }
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+
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+ i++;
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+ }
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+
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+ ebb_global_disable();
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+ ebb_freeze_pmcs();
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+
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+ count_pmc(1, sample_period);
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+
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+ dump_ebb_state();
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+
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+ event_close(&event);
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+
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+ FAIL_IF(ebb_state.stats.ebb_count == 0);
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+
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+ if (bad_mmcr2)
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+ printf("Bad MMCR2 value seen is 0x%lx\n", actual);
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+
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+ FAIL_IF(bad_mmcr2);
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+
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+ return 0;
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+}
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+
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+int main(void)
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+{
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+ return test_harness(cycles_with_mmcr2, "cycles_with_mmcr2");
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+}
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