| /* |
| * Copyright (c) Qualcomm Technologies, Inc. and/or its subsidiaries. |
| * SPDX-License-Identifier: GPL-2.0-or-later |
| * |
| * QTest testcase for the QCT QTimer |
| */ |
| |
| #include "qemu/osdep.h" |
| #include "libqtest-single.h" |
| #include "hw/hexagon/hexagon.h" |
| #include "qemu/bitops.h" |
| |
| #include "hw/hexagon/machine_cfg_v68n_1024.h.inc" |
| #include "hw/hexagon/machine_cfg_v66g_1024.h.inc" |
| |
| #define QTIMER_DEFAULT_FREQ_HZ 19200000ULL |
| |
| #define QCT_QTIMER_CNTPCT_LO (0x000) |
| #define QCT_QTIMER_CNTPCT_HI (0x004) |
| #define QCT_QTIMER_CNT_FREQ (0x010) |
| #define QCT_QTIMER_CNTP_CVAL_LO (0x020) |
| #define QCT_QTIMER_CNTP_TVAL (0x028) |
| #define QCT_QTIMER_CNTP_CTL (0x02c) |
| #define QCT_QTIMER_CNTP_CTL_ENABLE (1 << 0) |
| |
| #define QTIMER_FRAME_STRIDE 0x1000 |
| /* Frames instantiated by hex-subsys, and the L2VIC input frame 0 drives. */ |
| #define QTIMER_NR_FRAMES 3 |
| #define QTIMER_L2VIC_IRQ_BASE 2 |
| |
| #define QCT_QTIMER_AC_CNTFRQ (0x000) |
| #define QCT_QTIMER_AC_CNTSR (0x004) |
| #define QCT_QTIMER_AC_CNTTID_0 (0x08) |
| #define QCT_QTIMER_AC_CNTACR_START (0x40) |
| #define QCT_QTIMER_AC_CNTACR_ALL (0x3f) |
| #define QCT_QTIMER_AC_CNTACR_RWPT (1 << 5) /* R/W of CNTP_* regs */ |
| #define QCT_QTIMER_AC_CNTACR_RFRQ (1 << 2) /* R/W of CNTFRQ register */ |
| #define QCT_QTIMER_AC_CNTACR_RPCT (1 << 0) /* R/W of CNTPCT register */ |
| |
| static uint64_t qtimer_view_base; |
| static uint64_t qtimer_ac_base; |
| |
| #define TIMER_TEST_OFFSET 1000 |
| /* TIMER_TEST_OFFSET ticks expressed in nanoseconds of QEMU_CLOCK_VIRTUAL */ |
| #define TIMER_TEST_NS \ |
| ((TIMER_TEST_OFFSET * 1000000000ULL) / QTIMER_DEFAULT_FREQ_HZ) |
| |
| static uint32_t qtimer_read32(uint64_t base, uint32_t offset) |
| { |
| return readl(base + offset); |
| } |
| |
| static void qtimer_write32(uint64_t base, uint32_t offset, uint32_t value) |
| { |
| writel(base + offset, value); |
| } |
| |
| static uint64_t qtimer_read64(uint64_t base, uint32_t offset) |
| { |
| uint32_t lo = qtimer_read32(base, offset); |
| uint32_t hi = qtimer_read32(base, offset + 4); |
| |
| return ((uint64_t)hi << 32) | lo; |
| } |
| |
| static void qtimer_write64(uint64_t base, uint32_t offset, uint64_t value) |
| { |
| qtimer_write32(base, offset, extract64(value, 0, 32)); |
| qtimer_write32(base, offset + 4, extract64(value, 32, 32)); |
| } |
| |
| static void test_qtimer_basic_access(void) |
| { |
| uint32_t val; |
| |
| val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNT_FREQ); |
| g_assert_cmpuint(val, ==, QTIMER_DEFAULT_FREQ_HZ); |
| } |
| |
| static void test_qtimer_multiple_frames(void) |
| { |
| uint32_t val; |
| uint64_t frame0_base = qtimer_view_base; |
| uint64_t frame1_base = qtimer_view_base + 0x1000; |
| |
| val = qtimer_read32(frame0_base, QCT_QTIMER_CNT_FREQ); |
| g_assert_cmpuint(val, ==, QTIMER_DEFAULT_FREQ_HZ); |
| |
| val = qtimer_read32(frame1_base, QCT_QTIMER_CNT_FREQ); |
| g_assert_cmpuint(val, ==, QTIMER_DEFAULT_FREQ_HZ); |
| } |
| |
| static void test_qtimer_register_reads(void) |
| { |
| qtimer_read32(qtimer_view_base, QCT_QTIMER_CNT_FREQ); |
| qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO); |
| qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTP_CTL); |
| qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTP_TVAL); |
| } |
| |
| static void test_qtimer_control_registers(void) |
| { |
| uint32_t ctl_val; |
| uint64_t cval_before, cval_after; |
| |
| cval_before = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| |
| qtimer_write32(qtimer_view_base, QCT_QTIMER_CNTP_TVAL, 1000); |
| |
| qtimer_write32(qtimer_view_base, QCT_QTIMER_CNTP_CTL, 1); |
| ctl_val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTP_CTL); |
| g_assert_cmpuint(ctl_val & 1, ==, 1); |
| |
| /* CVAL should be greater than before since we set TVAL */ |
| cval_after = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO); |
| g_assert_cmpuint(cval_after, >, cval_before); |
| |
| qtimer_write32(qtimer_view_base, QCT_QTIMER_CNTP_CTL, 0); |
| ctl_val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTP_CTL); |
| g_assert_cmpuint(ctl_val & 1, ==, 0); |
| } |
| |
| static void test_qtimer_cval_access(void) |
| { |
| uint64_t current_time, test_cval, read_cval; |
| |
| current_time = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| test_cval = current_time + 10000; |
| |
| qtimer_write64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO, test_cval); |
| read_cval = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO); |
| g_assert_cmpuint(read_cval, ==, test_cval); |
| } |
| |
| static void test_qtimer_counter_progression(void) |
| { |
| uint32_t freq; |
| uint64_t count1, count2; |
| |
| /* |
| * In qtest mode the virtual clock does not advance on its own, so |
| * reading the counter twice must give the same value. |
| */ |
| count1 = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| count2 = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| g_assert_cmpuint(count2, ==, count1); |
| |
| freq = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNT_FREQ); |
| g_assert_cmpuint(freq, ==, QTIMER_DEFAULT_FREQ_HZ); |
| } |
| |
| static void test_qtimer_timer_behavior(void) |
| { |
| uint64_t current_count, target_count, read_cval, new_count; |
| uint64_t ctl_val, count_after_disable; |
| |
| current_count = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| |
| target_count = current_count + TIMER_TEST_OFFSET; |
| qtimer_write64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO, target_count); |
| |
| read_cval = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO); |
| g_assert_cmpuint(read_cval, ==, target_count); |
| |
| qtimer_write32(qtimer_view_base, QCT_QTIMER_CNTP_CTL, 1); |
| |
| ctl_val = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CTL); |
| /* EN set, IMASK clear, ISTAT not yet pending */ |
| g_assert_cmpuint(ctl_val, ==, 0x1); |
| |
| /* Step forward but not past the target */ |
| qtest_clock_step(global_qtest, TIMER_TEST_NS / 2); |
| new_count = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| g_assert_cmpuint(new_count, >=, current_count); |
| |
| /* Step past the target */ |
| qtest_clock_step(global_qtest, TIMER_TEST_NS); |
| new_count = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| g_assert_cmpuint(new_count, >=, target_count); |
| |
| qtimer_write32(qtimer_view_base, QCT_QTIMER_CNTP_CTL, 0); |
| |
| ctl_val = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CTL); |
| /* EN cleared, ISTAT set since new_count >= target_count */ |
| g_assert_cmpuint(ctl_val, ==, 0x4); |
| |
| /* |
| * CNTPCT runs independently of CNTP_CTL.EN: only the compare/IRQ |
| * logic is gated by EN, so the counter must keep advancing. |
| */ |
| qtest_clock_step(global_qtest, TIMER_TEST_NS / 2); |
| count_after_disable = qtimer_read64(qtimer_view_base, |
| QCT_QTIMER_CNTPCT_LO); |
| g_assert_cmpuint(count_after_disable, >, new_count); |
| |
| /* ISTAT remains set while CNTPCT >= CVAL, even with EN=0 */ |
| ctl_val = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CTL); |
| g_assert_cmpuint(ctl_val, ==, 0x4); |
| } |
| |
| /* Test the access-control region: CNTFRQ, CNTSR, CNTTID_0, CNTACR frame 0 */ |
| static void test_qtimer_ac_region(void) |
| { |
| uint32_t freq, sr, tid0, acr0; |
| |
| freq = qtimer_read32(qtimer_ac_base, QCT_QTIMER_AC_CNTFRQ); |
| g_assert_cmpuint(freq, ==, QTIMER_DEFAULT_FREQ_HZ); |
| |
| /* A write of 0 to CNTFRQ must be ignored (freq-hz must stay nonzero). */ |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTFRQ, 0); |
| freq = qtimer_read32(qtimer_ac_base, QCT_QTIMER_AC_CNTFRQ); |
| g_assert_cmpuint(freq, ==, QTIMER_DEFAULT_FREQ_HZ); |
| |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTSR, 0x3); |
| sr = qtimer_read32(qtimer_ac_base, QCT_QTIMER_AC_CNTSR); |
| g_assert_cmpuint(sr, ==, 0x3); |
| |
| tid0 = qtimer_read32(qtimer_ac_base, QCT_QTIMER_AC_CNTTID_0); |
| g_assert_cmpuint(tid0, ==, 0x111); |
| |
| /* CNTACR for frame 0 defaults to full read/write permissions. */ |
| acr0 = qtimer_read32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START); |
| g_assert_cmpuint(acr0, !=, 0); |
| |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START, 0); |
| acr0 = qtimer_read32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START); |
| g_assert_cmpuint(acr0, ==, 0); |
| |
| /* Restore full permissions so later view-region tests keep working. */ |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START, |
| QCT_QTIMER_AC_CNTACR_ALL); |
| } |
| |
| static void test_qtimer_access_denied(void) |
| { |
| uint32_t acr_all = QCT_QTIMER_AC_CNTACR_ALL; |
| uint64_t cval, saved_cval; |
| uint32_t val; |
| |
| /* Park CVAL at a known nonzero value while access is still permitted. */ |
| saved_cval = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTPCT_LO) + 10000; |
| qtimer_write64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO, saved_cval); |
| g_assert_cmpuint(qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO), |
| ==, saved_cval); |
| |
| /* Clearing RFRQ denies CNTFRQ reads. */ |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START, |
| acr_all & ~QCT_QTIMER_AC_CNTACR_RFRQ); |
| val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNT_FREQ); |
| g_assert_cmpuint(val, ==, 0); |
| |
| /* Clearing RPCT denies CNTPCT reads, both halves. */ |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START, |
| acr_all & ~QCT_QTIMER_AC_CNTACR_RPCT); |
| val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTPCT_LO); |
| g_assert_cmpuint(val, ==, 0); |
| val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTPCT_HI); |
| g_assert_cmpuint(val, ==, 0); |
| |
| /* |
| * Clearing RWPT denies the whole CNTP_* set: CVAL/TVAL/CTL reads all |
| * read back 0 even though CVAL holds saved_cval. |
| */ |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START, |
| acr_all & ~QCT_QTIMER_AC_CNTACR_RWPT); |
| cval = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO); |
| g_assert_cmpuint(cval, ==, 0); |
| val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTP_TVAL); |
| g_assert_cmpuint(val, ==, 0); |
| val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTP_CTL); |
| g_assert_cmpuint(val, ==, 0); |
| |
| /* Denied writes must be dropped rather than applied. */ |
| qtimer_write64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO, 0x1234); |
| qtimer_write32(qtimer_view_base, QCT_QTIMER_CNTP_TVAL, 0x5678); |
| qtimer_write32(qtimer_view_base, QCT_QTIMER_CNTP_CTL, 1); |
| |
| /* Restoring RWPT reveals that CVAL still holds the pre-denial value. */ |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START, acr_all); |
| cval = qtimer_read64(qtimer_view_base, QCT_QTIMER_CNTP_CVAL_LO); |
| g_assert_cmpuint(cval, ==, saved_cval); |
| val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNTP_CTL); |
| g_assert_cmpuint(val & 1, ==, 0); |
| |
| /* CNTFRQ and CNTPCT work again once permissions are back. */ |
| val = qtimer_read32(qtimer_view_base, QCT_QTIMER_CNT_FREQ); |
| g_assert_cmpuint(val, ==, QTIMER_DEFAULT_FREQ_HZ); |
| |
| /* |
| * An unimplemented offset in the view region is also an access error, |
| * and reads back as 0. |
| */ |
| val = qtimer_read32(qtimer_view_base, 0x100); |
| g_assert_cmpuint(val, ==, 0); |
| |
| /* Leave the frame with full permissions for any later test. */ |
| qtimer_write32(qtimer_ac_base, QCT_QTIMER_AC_CNTACR_START, acr_all); |
| } |
| |
| static void test_qtimer_frame_irq_routing(void) |
| { |
| unsigned int frame, other; |
| uint64_t frame_base; |
| |
| qtest_irq_intercept_in(global_qtest, "/machine/l2vic"); |
| |
| for (frame = 0; frame < QTIMER_NR_FRAMES; frame++) { |
| frame_base = qtimer_view_base + frame * QTIMER_FRAME_STRIDE; |
| |
| qtimer_write32(frame_base, QCT_QTIMER_CNTP_TVAL, TIMER_TEST_OFFSET); |
| qtimer_write32(frame_base, QCT_QTIMER_CNTP_CTL, |
| QCT_QTIMER_CNTP_CTL_ENABLE); |
| g_assert_false(qtest_get_irq(global_qtest, |
| QTIMER_L2VIC_IRQ_BASE + frame)); |
| |
| /* Step past the deadline so the frame raises its interrupt. */ |
| qtest_clock_step(global_qtest, TIMER_TEST_NS * 2); |
| g_assert_true(qtest_get_irq(global_qtest, |
| QTIMER_L2VIC_IRQ_BASE + frame)); |
| |
| /* No other frame's line may be disturbed. */ |
| for (other = 0; other < QTIMER_NR_FRAMES; other++) { |
| if (other != frame) { |
| g_assert_false(qtest_get_irq(global_qtest, |
| QTIMER_L2VIC_IRQ_BASE + other)); |
| } |
| } |
| |
| /* Clearing EN drops the interrupt, leaving a clean slate. */ |
| qtimer_write32(frame_base, QCT_QTIMER_CNTP_CTL, 0); |
| g_assert_false(qtest_get_irq(global_qtest, |
| QTIMER_L2VIC_IRQ_BASE + frame)); |
| } |
| } |
| |
| typedef struct { |
| const char *machine; |
| const struct hexagon_machine_config *cfg; |
| } QtimerMachineCfg; |
| |
| static const QtimerMachineCfg qtimer_machines[] = { |
| { "virt", &v68n_1024 }, |
| { "V66G_1024", &v66g_1024 }, |
| }; |
| |
| static void test_qtimer_on_machine(gconstpointer data) |
| { |
| const QtimerMachineCfg *mc = data; |
| g_autofree char *args = g_strdup_printf( |
| "-machine %s -global qct-qtimer.freq-scale=1", mc->machine); |
| |
| qtimer_view_base = mc->cfg->qtmr_region; |
| qtimer_ac_base = mc->cfg->csr_base; |
| |
| qtest_start(args); |
| |
| test_qtimer_basic_access(); |
| test_qtimer_multiple_frames(); |
| test_qtimer_register_reads(); |
| test_qtimer_control_registers(); |
| test_qtimer_cval_access(); |
| test_qtimer_counter_progression(); |
| test_qtimer_timer_behavior(); |
| test_qtimer_ac_region(); |
| test_qtimer_access_denied(); |
| test_qtimer_frame_irq_routing(); |
| |
| qtest_end(); |
| } |
| |
| int main(int argc, char **argv) |
| { |
| size_t i; |
| |
| g_test_init(&argc, &argv, NULL); |
| |
| for (i = 0; i < ARRAY_SIZE(qtimer_machines); i++) { |
| g_autofree char *path = g_strdup_printf("/qct-qtimer/%s/all-tests", |
| qtimer_machines[i].machine); |
| qtest_add_data_func(path, &qtimer_machines[i], test_qtimer_on_machine); |
| } |
| |
| return g_test_run(); |
| } |