qemu/hw/misc/trace-events

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# See docs/devel/tracing.rst for syntax documentation.
# allwinner-cpucfg.c
allwinner_cpucfg_cpu_reset(uint8_t cpu_id, uint32_t reset_addr) "id %u, reset_addr 0x%" PRIx32
allwinner_cpucfg_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_cpucfg_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
# allwinner-h3-dramc.c
allwinner_h3_dramc_rowmirror_disable(void) "Disable row mirror"
allwinner_h3_dramc_rowmirror_enable(uint64_t addr) "Enable row mirror: addr 0x%" PRIx64
allwinner_h3_dramcom_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_h3_dramcom_write(uint64_t offset, uint64_t data, unsigned size) "Write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_h3_dramctl_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_h3_dramctl_write(uint64_t offset, uint64_t data, unsigned size) "Write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_h3_dramphy_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_h3_dramphy_write(uint64_t offset, uint64_t data, unsigned size) "write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
# allwinner-r40-dramc.c
allwinner_r40_dramc_detect_cells_disable(void) "Disable detect cells"
allwinner_r40_dramc_detect_cells_enable(void) "Enable detect cells"
allwinner_r40_dramc_map_rows(uint8_t row_bits, uint8_t bank_bits, uint8_t col_bits) "DRAM layout: row_bits %d, bank_bits %d, col_bits %d"
allwinner_r40_dramc_offset_to_cell(uint64_t offset, int row, int bank, int col) "offset 0x%" PRIx64 " row %d bank %d col %d"
allwinner_r40_dramc_detect_cell_write(uint64_t offset, uint64_t data) "offset 0x%" PRIx64 " data 0x%" PRIx64 ""
allwinner_r40_dramc_detect_cell_read(uint64_t offset, uint64_t data) "offset 0x%" PRIx64 " data 0x%" PRIx64 ""
allwinner_r40_dramcom_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_r40_dramcom_write(uint64_t offset, uint64_t data, unsigned size) "Write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_r40_dramctl_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_r40_dramctl_write(uint64_t offset, uint64_t data, unsigned size) "Write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_r40_dramphy_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_r40_dramphy_write(uint64_t offset, uint64_t data, unsigned size) "write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
# allwinner-sid.c
allwinner_sid_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
allwinner_sid_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
# allwinner-sramc.c
allwinner_sramc_read(uint64_t offset, uint64_t data) "offset 0x%" PRIx64 " data 0x%" PRIx64
allwinner_sramc_write(uint64_t offset, uint64_t data) "offset 0x%" PRIx64 " data 0x%" PRIx64
# avr_power.c
avr_power_read(uint8_t value) "power_reduc read value:%u"
avr_power_write(uint8_t value) "power_reduc write value:%u"
# axp2xx
axp2xx_rx(uint8_t reg, uint8_t data) "Read reg 0x%" PRIx8 " : 0x%" PRIx8
axp2xx_select(uint8_t reg) "Accessing reg 0x%" PRIx8
axp2xx_tx(uint8_t reg, uint8_t data) "Write reg 0x%" PRIx8 " : 0x%" PRIx8
# eccmemctl.c
ecc_mem_writel_mer(uint32_t val) "Write memory enable 0x%08x"
ecc_mem_writel_mdr(uint32_t val) "Write memory delay 0x%08x"
ecc_mem_writel_mfsr(uint32_t val) "Write memory fault status 0x%08x"
ecc_mem_writel_vcr(uint32_t val) "Write slot configuration 0x%08x"
ecc_mem_writel_dr(uint32_t val) "Write diagnostic 0x%08x"
ecc_mem_writel_ecr0(uint32_t val) "Write event count 1 0x%08x"
ecc_mem_writel_ecr1(uint32_t val) "Write event count 2 0x%08x"
ecc_mem_readl_mer(uint32_t ret) "Read memory enable 0x%08x"
ecc_mem_readl_mdr(uint32_t ret) "Read memory delay 0x%08x"
ecc_mem_readl_mfsr(uint32_t ret) "Read memory fault status 0x%08x"
ecc_mem_readl_vcr(uint32_t ret) "Read slot configuration 0x%08x"
ecc_mem_readl_mfar0(uint32_t ret) "Read memory fault address 0 0x%08x"
ecc_mem_readl_mfar1(uint32_t ret) "Read memory fault address 1 0x%08x"
ecc_mem_readl_dr(uint32_t ret) "Read diagnostic 0x%08x"
ecc_mem_readl_ecr0(uint32_t ret) "Read event count 1 0x%08x"
ecc_mem_readl_ecr1(uint32_t ret) "Read event count 2 0x%08x"
ecc_diag_mem_writeb(uint64_t addr, uint32_t val) "Write diagnostic %"PRId64" = 0x%02x"
ecc_diag_mem_readb(uint64_t addr, uint32_t ret) "Read diagnostic %"PRId64"= 0x%02x"
# empty_slot.c
empty_slot_write(uint64_t addr, unsigned width, uint64_t value, unsigned size, const char *name) "wr addr:0x%04"PRIx64" data:0x%0*"PRIx64" size %u [%s]"
# slavio_misc.c
slavio_misc_update_irq_raise(void) "Raise IRQ"
slavio_misc_update_irq_lower(void) "Lower IRQ"
slavio_set_power_fail(int power_failing, uint8_t config) "Power fail: %d, config: %d"
slavio_cfg_mem_writeb(uint32_t val) "Write config 0x%02x"
slavio_cfg_mem_readb(uint32_t ret) "Read config 0x%02x"
slavio_diag_mem_writeb(uint32_t val) "Write diag 0x%02x"
slavio_diag_mem_readb(uint32_t ret) "Read diag 0x%02x"
slavio_mdm_mem_writeb(uint32_t val) "Write modem control 0x%02x"
slavio_mdm_mem_readb(uint32_t ret) "Read modem control 0x%02x"
slavio_aux1_mem_writeb(uint32_t val) "Write aux1 0x%02x"
slavio_aux1_mem_readb(uint32_t ret) "Read aux1 0x%02x"
slavio_aux2_mem_writeb(uint32_t val) "Write aux2 0x%02x"
slavio_aux2_mem_readb(uint32_t ret) "Read aux2 0x%02x"
apc_mem_writeb(uint32_t val) "Write power management 0x%02x"
apc_mem_readb(uint32_t ret) "Read power management 0x%02x"
slavio_sysctrl_mem_writel(uint32_t val) "Write system control 0x%08x"
slavio_sysctrl_mem_readl(uint32_t ret) "Read system control 0x%08x"
slavio_led_mem_writew(uint32_t val) "Write diagnostic LED 0x%04x"
slavio_led_mem_readw(uint32_t ret) "Read diagnostic LED 0x%04x"
# aspeed_scu.c
aspeed_scu_write(uint64_t offset, unsigned size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
aspeed_scu_read(uint64_t offset, unsigned size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
aspeed_ast2700_scu_write(uint64_t offset, unsigned size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
aspeed_ast2700_scu_read(uint64_t offset, unsigned size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
aspeed_ast2700_scuio_write(uint64_t offset, unsigned size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
aspeed_ast2700_scuio_read(uint64_t offset, unsigned size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
# mps2-scc.c
mps2_scc_read(uint64_t offset, uint64_t data, unsigned size) "MPS2 SCC read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
mps2_scc_write(uint64_t offset, uint64_t data, unsigned size) "MPS2 SCC write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
mps2_scc_reset(void) "MPS2 SCC: reset"
mps2_scc_cfg_write(unsigned function, unsigned device, uint32_t value) "MPS2 SCC config write: function %d device %d data 0x%" PRIx32
mps2_scc_cfg_read(unsigned function, unsigned device, uint32_t value) "MPS2 SCC config read: function %d device %d data 0x%" PRIx32
# mps2-fpgaio.c
mps2_fpgaio_read(uint64_t offset, uint64_t data, unsigned size) "MPS2 FPGAIO read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
mps2_fpgaio_write(uint64_t offset, uint64_t data, unsigned size) "MPS2 FPGAIO write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
mps2_fpgaio_reset(void) "MPS2 FPGAIO: reset"
# msf2-sysreg.c
msf2_sysreg_write(uint64_t offset, uint32_t val, uint32_t prev) "msf2-sysreg write: addr 0x%08" PRIx64 " data 0x%" PRIx32 " prev 0x%" PRIx32
msf2_sysreg_read(uint64_t offset, uint32_t val) "msf2-sysreg read: addr 0x%08" PRIx64 " data 0x%08" PRIx32
msf2_sysreg_write_pll_status(void) "Invalid write to read only PLL status register"
# imx7_gpr.c
imx7_gpr_read(uint64_t offset) "addr 0x%08" PRIx64
imx7_gpr_write(uint64_t offset, uint64_t value) "addr 0x%08" PRIx64 "value 0x%08" PRIx64
# imx7_snvs.c
imx7_snvs_read(uint64_t offset, uint64_t value, unsigned size) "i.MX SNVS read: offset 0x%08" PRIx64 " value 0x%08" PRIx64 " size %u"
imx7_snvs_write(uint64_t offset, uint64_t value, unsigned size) "i.MX SNVS write: offset 0x%08" PRIx64 " value 0x%08" PRIx64 " size %u"
# mos6522.c
mos6522_set_counter(int index, unsigned int val) "T%d.counter=%d"
mos6522_get_next_irq_time(uint16_t latch, int64_t d, int64_t delta) "latch=%d counter=0x%"PRIx64 " delta_next=0x%"PRIx64
mos6522_set_sr_int(void) "set sr_int"
mos6522_write(uint64_t addr, const char *name, uint64_t val) "reg=0x%"PRIx64 " [%s] val=0x%"PRIx64
mos6522_read(uint64_t addr, const char *name, unsigned val) "reg=0x%"PRIx64 " [%s] val=0x%x"
# npcm7xx_clk.c
npcm7xx_clk_read(uint64_t offset, uint32_t value) " offset: 0x%04" PRIx64 " value: 0x%08" PRIx32
npcm7xx_clk_write(uint64_t offset, uint32_t value) "offset: 0x%04" PRIx64 " value: 0x%08" PRIx32
# npcm7xx_gcr.c
npcm7xx_gcr_read(uint64_t offset, uint32_t value) " offset: 0x%04" PRIx64 " value: 0x%08" PRIx32
npcm7xx_gcr_write(uint64_t offset, uint32_t value) "offset: 0x%04" PRIx64 " value: 0x%08" PRIx32
# npcm7xx_mft.c
npcm7xx_mft_read(const char *name, uint64_t offset, uint16_t value) "%s: offset: 0x%04" PRIx64 " value: 0x%04" PRIx16
npcm7xx_mft_write(const char *name, uint64_t offset, uint16_t value) "%s: offset: 0x%04" PRIx64 " value: 0x%04" PRIx16
npcm7xx_mft_rpm(const char *clock, uint32_t clock_hz, int state, int32_t cnt, uint32_t rpm, uint32_t duty) " fan clk: %s clock_hz: %" PRIu32 ", state: %d, cnt: %" PRIi32 ", rpm: %" PRIu32 ", duty: %" PRIu32
npcm7xx_mft_capture(const char *name, int irq_level) "%s: level: %d"
npcm7xx_mft_update_clock(const char *name, uint16_t sel, uint64_t clock_period, uint64_t prescaled_clock_period) "%s: sel: 0x%02" PRIx16 ", period: %" PRIu64 ", prescaled: %" PRIu64
npcm7xx_mft_set_duty(const char *name, int n, int value) "%s[%d]: %d"
# npcm7xx_rng.c
npcm7xx_rng_read(uint64_t offset, uint64_t value, unsigned size) "offset: 0x%04" PRIx64 " value: 0x%02" PRIx64 " size: %u"
npcm7xx_rng_write(uint64_t offset, uint64_t value, unsigned size) "offset: 0x%04" PRIx64 " value: 0x%02" PRIx64 " size: %u"
# npcm7xx_pwm.c
npcm7xx_pwm_read(const char *id, uint64_t offset, uint32_t value) "%s offset: 0x%04" PRIx64 " value: 0x%08" PRIx32
npcm7xx_pwm_write(const char *id, uint64_t offset, uint32_t value) "%s offset: 0x%04" PRIx64 " value: 0x%08" PRIx32
npcm7xx_pwm_update_freq(const char *id, uint8_t index, uint32_t old_value, uint32_t new_value) "%s pwm[%u] Update Freq: old_freq: %u, new_freq: %u"
npcm7xx_pwm_update_duty(const char *id, uint8_t index, uint32_t old_value, uint32_t new_value) "%s pwm[%u] Update Duty: old_duty: %u, new_duty: %u"
# stm32_rcc.c
stm32_rcc_read(uint64_t addr, uint64_t data) "reg read: addr: 0x%" PRIx64 " val: 0x%" PRIx64 ""
stm32_rcc_write(uint64_t addr, uint64_t data) "reg write: addr: 0x%" PRIx64 " val: 0x%" PRIx64 ""
stm32_rcc_pulse_enable(int line, int level) "Enable: %d to %d"
stm32_rcc_pulse_reset(int line, int level) "Reset: %d to %d"
# stm32f4xx_syscfg.c
stm32f4xx_syscfg_set_irq(int gpio, int line, int level) "Interrupt: GPIO: %d, Line: %d; Level: %d"
stm32f4xx_pulse_exti(int irq) "Pulse EXTI: %d"
stm32f4xx_syscfg_read(uint64_t addr) "reg read: addr: 0x%" PRIx64 " "
stm32f4xx_syscfg_write(uint64_t addr, uint64_t data) "reg write: addr: 0x%" PRIx64 " val: 0x%" PRIx64 ""
# stm32f4xx_exti.c
stm32f4xx_exti_set_irq(int irq, int level) "Set EXTI: %d to %d"
stm32f4xx_exti_read(uint64_t addr) "reg read: addr: 0x%" PRIx64 " "
stm32f4xx_exti_write(uint64_t addr, uint64_t data) "reg write: addr: 0x%" PRIx64 " val: 0x%" PRIx64 ""
# stm32l4x5_syscfg.c
stm32l4x5_syscfg_set_irq(int gpio, int line, int level) "irq from GPIO: %d, line: %d, level: %d"
stm32l4x5_syscfg_forward_exti(int irq) "irq %d forwarded to EXTI"
stm32l4x5_syscfg_read(uint64_t addr) "reg read: addr: 0x%" PRIx64 " "
stm32l4x5_syscfg_write(uint64_t addr, uint64_t data) "reg write: addr: 0x%" PRIx64 " val: 0x%" PRIx64 ""
# stm32l4x5_exti.c
stm32l4x5_exti_set_irq(int irq, int level) "Set EXTI: %d to %d"
stm32l4x5_exti_read(uint64_t addr, uint64_t data) "reg read: addr: 0x%" PRIx64 " val: 0x%" PRIx64 ""
stm32l4x5_exti_write(uint64_t addr, uint64_t data) "reg write: addr: 0x%" PRIx64 " val: 0x%" PRIx64 ""
# stm32l4x5_rcc.c
stm32l4x5_rcc_read(uint64_t addr, uint32_t data) "RCC: Read <0x%" PRIx64 "> -> 0x%" PRIx32
stm32l4x5_rcc_write(uint64_t addr, uint32_t data) "RCC: Write <0x%" PRIx64 "> <- 0x%" PRIx32
stm32l4x5_rcc_mux_enable(uint32_t mux_id) "RCC: Mux %d enabled"
stm32l4x5_rcc_mux_disable(uint32_t mux_id) "RCC: Mux %d disabled"
stm32l4x5_rcc_mux_set_factor(uint32_t mux_id, uint32_t old_multiplier, uint32_t new_multiplier, uint32_t old_divider, uint32_t new_divider) "RCC: Mux %d factor changed: multiplier (%u -> %u), divider (%u -> %u)"
stm32l4x5_rcc_mux_set_src(uint32_t mux_id, uint32_t old_src, uint32_t new_src) "RCC: Mux %d source changed: from %u to %u"
stm32l4x5_rcc_mux_update(uint32_t mux_id, uint32_t src, uint64_t src_freq, uint32_t multiplier, uint32_t divider) "RCC: Mux %d src %d update: src_freq %" PRIu64 " multiplier %" PRIu32 " divider %" PRIu32
stm32l4x5_rcc_pll_set_vco_multiplier(uint32_t pll_id, uint32_t old_multiplier, uint32_t new_multiplier) "RCC: PLL %u: vco_multiplier changed (%u -> %u)"
stm32l4x5_rcc_pll_channel_enable(uint32_t pll_id, uint32_t channel_id) "RCC: PLL %u, channel %u enabled"
stm32l4x5_rcc_pll_channel_disable(uint32_t pll_id, uint32_t channel_id) "RCC: PLL %u, channel %u disabled"
stm32l4x5_rcc_pll_set_channel_divider(uint32_t pll_id, uint32_t channel_id, uint32_t old_divider, uint32_t new_divider) "RCC: PLL %u, channel %u: divider changed (%u -> %u)"
stm32l4x5_rcc_pll_update(uint32_t pll_id, uint32_t channel_id, uint64_t vco_freq, uint64_t old_freq, uint64_t new_freq) "RCC: PLL %d channel %d update: vco_freq %" PRIu64 " old_freq %" PRIu64 " new_freq %" PRIu64
# tz-mpc.c
tz_mpc_reg_read(uint32_t offset, uint64_t data, unsigned size) "TZ MPC regs read: offset 0x%x data 0x%" PRIx64 " size %u"
tz_mpc_reg_write(uint32_t offset, uint64_t data, unsigned size) "TZ MPC regs write: offset 0x%x data 0x%" PRIx64 " size %u"
tz_mpc_mem_blocked_read(uint64_t addr, unsigned size, bool secure) "TZ MPC blocked read: offset 0x%" PRIx64 " size %u secure %d"
tz_mpc_mem_blocked_write(uint64_t addr, uint64_t data, unsigned size, bool secure) "TZ MPC blocked write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u secure %d"
tz_mpc_translate(uint64_t addr, int flags, const char *idx, const char *res) "TZ MPC translate: addr 0x%" PRIx64 " flags 0x%x iommu_idx %s: %s"
tz_mpc_iommu_notify(uint64_t addr) "TZ MPC iommu: notifying UNMAP/MAP for 0x%" PRIx64
# tz-msc.c
tz_msc_reset(void) "TZ MSC: reset"
tz_msc_cfg_nonsec(int level) "TZ MSC: cfg_nonsec = %d"
tz_msc_cfg_sec_resp(int level) "TZ MSC: cfg_sec_resp = %d"
tz_msc_irq_clear(int level) "TZ MSC: int_clear = %d"
tz_msc_update_irq(int level) "TZ MSC: setting irq line to %d"
tz_msc_access_blocked(uint64_t offset) "TZ MSC: offset 0x%" PRIx64 " access blocked"
# tz-ppc.c
tz_ppc_reset(void) "TZ PPC: reset"
tz_ppc_cfg_nonsec(int n, int level) "TZ PPC: cfg_nonsec[%d] = %d"
tz_ppc_cfg_ap(int n, int level) "TZ PPC: cfg_ap[%d] = %d"
tz_ppc_cfg_sec_resp(int level) "TZ PPC: cfg_sec_resp = %d"
tz_ppc_irq_enable(int level) "TZ PPC: int_enable = %d"
tz_ppc_irq_clear(int level) "TZ PPC: int_clear = %d"
tz_ppc_update_irq(int level) "TZ PPC: setting irq line to %d"
tz_ppc_read_blocked(int n, uint64_t offset, bool secure, bool user) "TZ PPC: port %d offset 0x%" PRIx64 " read (secure %d user %d) blocked"
tz_ppc_write_blocked(int n, uint64_t offset, bool secure, bool user) "TZ PPC: port %d offset 0x%" PRIx64 " write (secure %d user %d) blocked"
# iotkit-secctl.c
iotkit_secctl_s_read(uint32_t offset, uint64_t data, unsigned size) "IoTKit SecCtl S regs read: offset 0x%x data 0x%" PRIx64 " size %u"
iotkit_secctl_s_write(uint32_t offset, uint64_t data, unsigned size) "IoTKit SecCtl S regs write: offset 0x%x data 0x%" PRIx64 " size %u"
iotkit_secctl_ns_read(uint32_t offset, uint64_t data, unsigned size) "IoTKit SecCtl NS regs read: offset 0x%x data 0x%" PRIx64 " size %u"
iotkit_secctl_ns_write(uint32_t offset, uint64_t data, unsigned size) "IoTKit SecCtl NS regs write: offset 0x%x data 0x%" PRIx64 " size %u"
# imx6_ccm.c
imx6_analog_get_periph_clk(uint32_t freq) "freq = %u Hz"
imx6_analog_get_pll2_clk(uint32_t freq) "freq = %u Hz"
imx6_analog_get_pll2_pfd0_clk(uint32_t freq) "freq = %u Hz"
imx6_analog_get_pll2_pfd2_clk(uint32_t freq) "freq = %u Hz"
imx6_analog_read(const char *reg, uint32_t value) "reg[%s] => 0x%" PRIx32
imx6_analog_write(const char *reg, uint32_t value) "reg[%s] <= 0x%" PRIx32
imx6_ccm_get_ahb_clk(uint32_t freq) "freq = %u Hz"
imx6_ccm_get_ipg_clk(uint32_t freq) "freq = %u Hz"
imx6_ccm_get_per_clk(uint32_t freq) "freq = %u Hz"
imx6_ccm_get_clock_frequency(unsigned clock, uint32_t freq) "(Clock = %d) = %u"
imx6_ccm_read(const char *reg, uint32_t value) "reg[%s] => 0x%" PRIx32
imx6_ccm_reset(void) ""
imx6_ccm_write(const char *reg, uint32_t value) "reg[%s] <= 0x%" PRIx32
# imx6ul_ccm.c
ccm_entry(void) ""
ccm_freq(uint32_t freq) "freq = %d"
ccm_clock_freq(uint32_t clock, uint32_t freq) "(Clock = %d) = %d"
ccm_read_reg(const char *reg_name, uint32_t value) "reg[%s] <= 0x%" PRIx32
ccm_write_reg(const char *reg_name, uint32_t value) "reg[%s] => 0x%" PRIx32
# imx7_src.c
imx7_src_read(const char *reg_name, uint32_t value) "reg[%s] => 0x%" PRIx32
imx7_src_write(const char *reg_name, uint32_t value) "reg[%s] <= 0x%" PRIx32
# iotkit-sysinfo.c
iotkit_sysinfo_read(uint64_t offset, uint64_t data, unsigned size) "IoTKit SysInfo read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
iotkit_sysinfo_write(uint64_t offset, uint64_t data, unsigned size) "IoTKit SysInfo write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
# iotkit-sysctl.c
iotkit_sysctl_read(uint64_t offset, uint64_t data, unsigned size) "IoTKit SysCtl read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
iotkit_sysctl_write(uint64_t offset, uint64_t data, unsigned size) "IoTKit SysCtl write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
iotkit_sysctl_reset(void) "IoTKit SysCtl: reset"
# armsse-cpu-pwrctrl.c
armsse_cpu_pwrctrl_read(uint64_t offset, uint64_t data, unsigned size) "SSE-300 CPU_PWRCTRL read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
armsse_cpu_pwrctrl_write(uint64_t offset, uint64_t data, unsigned size) "SSE-300 CPU_PWRCTRL write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
# armsse-cpuid.c
armsse_cpuid_read(uint64_t offset, uint64_t data, unsigned size) "SSE-200 CPU_IDENTITY read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
armsse_cpuid_write(uint64_t offset, uint64_t data, unsigned size) "SSE-200 CPU_IDENTITY write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
# armsse-mhu.c
armsse_mhu_read(uint64_t offset, uint64_t data, unsigned size) "SSE-200 MHU read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
armsse_mhu_write(uint64_t offset, uint64_t data, unsigned size) "SSE-200 MHU write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
# aspeed_xdma.c
aspeed_xdma_write(uint64_t offset, uint64_t data) "XDMA write: offset 0x%" PRIx64 " data 0x%" PRIx64
# aspeed_i3c.c
aspeed_i3c_read(uint64_t offset, uint64_t data) "I3C read: offset 0x%" PRIx64 " data 0x%" PRIx64
aspeed_i3c_write(uint64_t offset, uint64_t data) "I3C write: offset 0x%" PRIx64 " data 0x%" PRIx64
aspeed_i3c_device_read(uint32_t deviceid, uint64_t offset, uint64_t data) "I3C Dev[%u] read: offset 0x%" PRIx64 " data 0x%" PRIx64
aspeed_i3c_device_write(uint32_t deviceid, uint64_t offset, uint64_t data) "I3C Dev[%u] write: offset 0x%" PRIx64 " data 0x%" PRIx64
# aspeed_sdmc.c
aspeed_sdmc_write(uint64_t reg, uint64_t data) "reg @0x%" PRIx64 " data: 0x%" PRIx64
aspeed_sdmc_read(uint64_t reg, uint64_t data) "reg @0x%" PRIx64 " data: 0x%" PRIx64
hw/misc/aspeed: Add PECI controller This introduces a really basic PECI controller that responses to commands by always setting the response code to success and then raising an interrupt to indicate the command is done. This helps avoid getting hit with constant errors if the driver continuously attempts to send a command and keeps timing out. The AST2400 and AST2500 only included registers up to 0x5C, not 0xFC. They supported PECI 1.1, 2.0, and 3.0. The AST2600 and AST1030 support PECI 4.0, which includes more read/write buffer registers from 0x80 to 0xFC to support 64-byte mode. This patch doesn't attempt to handle that, or to create a different version of the controller for the different generations, since it's only implementing functionality that is common to all generations. The basic sequence of events is that the firmware will read and write to various registers and then trigger a command by setting the FIRE bit in the command register (similar to the I2C controller). Then the firmware waits for an interrupt from the PECI controller, expecting the interrupt status register to be filled in with info on what happened. If the command was transmitted and received successfully, then response codes from the host CPU will be found in the data buffer registers. Signed-off-by: Peter Delevoryas <pdel@fb.com> Reviewed-by: Cédric Le Goater <clg@kaod.org> Message-Id: <20220630045133.32251-12-me@pjd.dev> [ clg: s/sysbus_mmio_map/aspeed_mmio_map/ ] Signed-off-by: Cédric Le Goater <clg@kaod.org>
2022-06-30 10:21:14 +03:00
# aspeed_peci.c
aspeed_peci_read(uint64_t offset, uint64_t data) "offset 0x%" PRIx64 " data 0x%" PRIx64
aspeed_peci_write(uint64_t offset, uint64_t data) "offset 0x%" PRIx64 " data 0x%" PRIx64
aspeed_peci_raise_interrupt(uint32_t ctrl, uint32_t status) "ctrl 0x%" PRIx32 " status 0x%" PRIx32
# bcm2835_property.c
bcm2835_mbox_property(uint32_t tag, uint32_t bufsize, size_t resplen) "mbox property tag:0x%08x in_sz:%u out_sz:%zu"
# bcm2835_mbox.c
bcm2835_mbox_write(unsigned int size, uint64_t addr, uint64_t value) "mbox write sz:%u addr:0x%"PRIx64" data:0x%"PRIx64
bcm2835_mbox_read(unsigned int size, uint64_t addr, uint64_t value) "mbox read sz:%u addr:0x%"PRIx64" data:0x%"PRIx64
bcm2835_mbox_irq(unsigned level) "mbox irq:ARM level:%u"
# mac_via.c
via1_rtc_update_data_out(int count, int value) "count=%d value=0x%02x"
via1_rtc_update_data_in(int count, int value) "count=%d value=0x%02x"
via1_rtc_internal_status(int cmd, int alt, int value) "cmd=0x%02x alt=0x%02x value=0x%02x"
via1_rtc_internal_cmd(int cmd) "cmd=0x%02x"
via1_rtc_cmd_invalid(int value) "value=0x%02x"
via1_rtc_internal_time(uint32_t time) "time=0x%08x"
via1_rtc_internal_set_cmd(int cmd) "cmd=0x%02x"
via1_rtc_internal_ignore_cmd(int cmd) "cmd=0x%02x"
via1_rtc_internal_set_alt(int alt, int sector, int offset) "alt=0x%02x sector=%u offset=%u"
via1_rtc_cmd_seconds_read(int reg, int value) "reg=%d value=0x%02x"
via1_rtc_cmd_seconds_write(int reg, int value) "reg=%d value=0x%02x"
via1_rtc_cmd_test_write(int value) "value=0x%02x"
via1_rtc_cmd_wprotect_write(int value) "value=0x%02x"
via1_rtc_cmd_pram_read(int addr, int value) "addr=%u value=0x%02x"
via1_rtc_cmd_pram_write(int addr, int value) "addr=%u value=0x%02x"
via1_rtc_cmd_pram_sect_read(int sector, int offset, int addr, int value) "sector=%u offset=%u addr=0x%x value=0x%02x"
via1_rtc_cmd_pram_sect_write(int sector, int offset, int addr, int value) "sector=%u offset=%u addr=0x%x value=0x%02x"
via1_adb_send(const char *state, uint8_t data, const char *vadbint) "state %s data=0x%02x vADBInt=%s"
via1_adb_receive(const char *state, uint8_t data, const char *vadbint, int status, int index, int size) "state %s data=0x%02x vADBInt=%s status=0x%x index=%d size=%d"
via1_adb_poll(uint8_t data, const char *vadbint, int status, int index, int size) "data=0x%02x vADBInt=%s status=0x%x index=%d size=%d"
via1_adb_netbsd_enum_hack(void) "using NetBSD enum hack"
via1_auxmode(int mode) "setting auxmode to %d"
via1_timer_hack_state(int state) "setting timer_hack_state to %d"
# grlib_ahb_apb_pnp.c
grlib_ahb_pnp_read(uint64_t addr, unsigned size, uint32_t value) "AHB PnP read addr:0x%03"PRIx64" size:%u data:0x%08x"
grlib_apb_pnp_read(uint64_t addr, unsigned size, uint32_t value) "APB PnP read addr:0x%03"PRIx64" size:%u data:0x%08x"
hw/misc/pca9552: Trace GPIO High/Low events Add a trivial representation of the PCA9552 GPIOs. Example booting obmc-phosphor-image: $ qemu-system-arm -M witherspoon-bmc -trace pca955x_gpio_status 1592689902.327837:pca955x_gpio_status pca-unspecified GPIOs 0-15 [*...............] 1592689902.329934:pca955x_gpio_status pca-unspecified GPIOs 0-15 [**..............] 1592689902.330717:pca955x_gpio_status pca-unspecified GPIOs 0-15 [***.............] 1592689902.331431:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****............] 1592689902.332163:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****.........*..] 1592689902.332888:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****.........**.] 1592689902.333629:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****.........***] 1592690032.793289:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****.........*.*] 1592690033.303163:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****.........***] 1592690033.812962:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****.........*.*] 1592690034.323234:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****.........***] 1592690034.832922:pca955x_gpio_status pca-unspecified GPIOs 0-15 [****.........*.*] We notice the GPIO #14 (front-power LED) starts to blink. This LED is described in the witherspoon device-tree [*]: front-power { retain-state-shutdown; default-state = "keep"; gpios = <&pca0 14 GPIO_ACTIVE_LOW>; }; [*] https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/tree/arch/arm/boot/dts/aspeed-bmc-opp-witherspoon.dts?id=b1f9be9392f0#n140 Suggested-by: Cédric Le Goater <clg@kaod.org> Reviewed-by: Cédric Le Goater <clg@kaod.org> Signed-off-by: Philippe Mathieu-Daudé <f4bug@amsat.org> Tested-by: Cédric Le Goater <clg@kaod.org> Message-id: 20200623072723.6324-7-f4bug@amsat.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
2020-06-23 10:27:20 +03:00
# led.c
led_set_intensity(const char *color, const char *desc, uint8_t intensity_percent) "LED desc:'%s' color:%s intensity: %u%%"
led_change_intensity(const char *color, const char *desc, uint8_t old_intensity_percent, uint8_t new_intensity_percent) "LED desc:'%s' color:%s intensity %u%% -> %u%%"
# bcm2835_cprman.c
bcm2835_cprman_read(uint64_t offset, uint64_t value) "offset:0x%" PRIx64 " value:0x%" PRIx64
bcm2835_cprman_write(uint64_t offset, uint64_t value) "offset:0x%" PRIx64 " value:0x%" PRIx64
bcm2835_cprman_write_invalid_magic(uint64_t offset, uint64_t value) "offset:0x%" PRIx64 " value:0x%" PRIx64
# virt_ctrl.c
virt_ctrl_read(void *dev, unsigned int addr, unsigned int size, uint64_t value) "ctrl: %p reg: 0x%02x size: %d value: 0x%"PRIx64
virt_ctrl_write(void *dev, unsigned int addr, unsigned int size, uint64_t value) "ctrl: %p reg: 0x%02x size: %d value: 0x%"PRIx64
virt_ctrl_reset(void *dev) "ctrl: %p"
virt_ctrl_realize(void *dev) "ctrl: %p"
virt_ctrl_instance_init(void *dev) "ctrl: %p"
# lasi.c
lasi_chip_mem_valid(uint64_t addr, uint32_t val) "access to addr 0x%"PRIx64" is %d"
lasi_chip_read(uint64_t addr, uint32_t val) "addr 0x%"PRIx64" val 0x%08x"
lasi_chip_write(uint64_t addr, uint32_t val) "addr 0x%"PRIx64" val 0x%08x"
# djmemc.c
djmemc_read(int reg, uint64_t value, unsigned int size) "reg=0x%x value=0x%"PRIx64" size=%u"
djmemc_write(int reg, uint64_t value, unsigned int size) "reg=0x%x value=0x%"PRIx64" size=%u"
# iosb.c
iosb_read(int reg, uint64_t value, unsigned int size) "reg=0x%x value=0x%"PRIx64" size=%u"
iosb_write(int reg, uint64_t value, unsigned int size) "reg=0x%x value=0x%"PRIx64" size=%u"
# aspeed_sli.c
aspeed_sli_write(uint64_t offset, unsigned int size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
aspeed_sli_read(uint64_t offset, unsigned int size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
aspeed_sliio_write(uint64_t offset, unsigned int size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32
aspeed_sliio_read(uint64_t offset, unsigned int size, uint32_t data) "To 0x%" PRIx64 " of size %u: 0x%" PRIx32