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powman.h
1// THIS HEADER FILE IS AUTOMATICALLY GENERATED -- DO NOT EDIT
2
8#ifndef _HARDWARE_STRUCTS_POWMAN_H
9#define _HARDWARE_STRUCTS_POWMAN_H
10
14
16#include "hardware/regs/powman.h"
17
18// Reference to datasheet: https://datasheets.raspberrypi.com/rp2350/rp2350-datasheet.pdf#tab-registerlist_powman
19//
20// The _REG_ macro is intended to help make the register navigable in your IDE (for example, using the "Go to Definition" feature)
21// _REG_(x) will link to the corresponding register in hardware/regs/powman.h.
22//
23// Bit-field descriptions are of the form:
24// BITMASK [BITRANGE] FIELDNAME (RESETVALUE) DESCRIPTION
25
26typedef struct {
27 _REG_(POWMAN_BADPASSWD_OFFSET) // POWMAN_BADPASSWD
28 // Indicates a bad password has been used
29 // 0x00000001 [0] BADPASSWD (0)
30 io_rw_32 badpasswd;
31
32 _REG_(POWMAN_VREG_CTRL_OFFSET) // POWMAN_VREG_CTRL
33 // Voltage Regulator Control
34 // 0x00008000 [15] RST_N (1) returns the regulator to its startup settings +
35 // 0x00002000 [13] UNLOCK (0) unlocks the VREG control interface after power up +
36 // 0x00001000 [12] ISOLATE (0) isolates the VREG control interface +
37 // 0x00000100 [8] DISABLE_VOLTAGE_LIMIT (0) 0=not disabled, 1=enabled
38 // 0x00000070 [6:4] HT_TH (0x5) high temperature protection threshold +
39 io_rw_32 vreg_ctrl;
40
41 _REG_(POWMAN_VREG_STS_OFFSET) // POWMAN_VREG_STS
42 // Voltage Regulator Status
43 // 0x00000010 [4] VOUT_OK (0) output regulation status +
44 // 0x00000001 [0] STARTUP (0) startup status +
45 io_ro_32 vreg_sts;
46
47 _REG_(POWMAN_VREG_OFFSET) // POWMAN_VREG
48 // Voltage Regulator Settings
49 // 0x00008000 [15] UPDATE_IN_PROGRESS (0) regulator state is being updated +
50 // 0x000001f0 [8:4] VSEL (0x0b) output voltage select +
51 // 0x00000002 [1] HIZ (0) high impedance mode select +
52 io_rw_32 vreg;
53
54 _REG_(POWMAN_VREG_LP_ENTRY_OFFSET) // POWMAN_VREG_LP_ENTRY
55 // Voltage Regulator Low Power Entry Settings
56 // 0x000001f0 [8:4] VSEL (0x0b) output voltage select +
57 // 0x00000004 [2] MODE (1) selects either normal (switching) mode or low power...
58 // 0x00000002 [1] HIZ (0) high impedance mode select +
59 io_rw_32 vreg_lp_entry;
60
61 _REG_(POWMAN_VREG_LP_EXIT_OFFSET) // POWMAN_VREG_LP_EXIT
62 // Voltage Regulator Low Power Exit Settings
63 // 0x000001f0 [8:4] VSEL (0x0b) output voltage select +
64 // 0x00000004 [2] MODE (0) selects either normal (switching) mode or low power...
65 // 0x00000002 [1] HIZ (0) high impedance mode select +
66 io_rw_32 vreg_lp_exit;
67
68 _REG_(POWMAN_BOD_CTRL_OFFSET) // POWMAN_BOD_CTRL
69 // Brown-out Detection Control
70 // 0x00001000 [12] ISOLATE (0) isolates the brown-out detection control interface +
71 io_rw_32 bod_ctrl;
72
73 _REG_(POWMAN_BOD_OFFSET) // POWMAN_BOD
74 // Brown-out Detection Settings
75 // 0x000001f0 [8:4] VSEL (0x0b) threshold select +
76 // 0x00000001 [0] EN (1) enable brown-out detection +
77 io_rw_32 bod;
78
79 _REG_(POWMAN_BOD_LP_ENTRY_OFFSET) // POWMAN_BOD_LP_ENTRY
80 // Brown-out Detection Low Power Entry Settings
81 // 0x000001f0 [8:4] VSEL (0x0b) threshold select +
82 // 0x00000001 [0] EN (0) enable brown-out detection +
83 io_rw_32 bod_lp_entry;
84
85 _REG_(POWMAN_BOD_LP_EXIT_OFFSET) // POWMAN_BOD_LP_EXIT
86 // Brown-out Detection Low Power Exit Settings
87 // 0x000001f0 [8:4] VSEL (0x0b) threshold select +
88 // 0x00000001 [0] EN (1) enable brown-out detection +
89 io_rw_32 bod_lp_exit;
90
91 _REG_(POWMAN_LPOSC_OFFSET) // POWMAN_LPOSC
92 // Low power oscillator control register
93 // 0x000003f0 [9:4] TRIM (0x20) Frequency trim - the trim step is typically 1% of the...
94 // 0x00000003 [1:0] MODE (0x3) This feature has been removed
95 io_rw_32 lposc;
96
97 _REG_(POWMAN_CHIP_RESET_OFFSET) // POWMAN_CHIP_RESET
98 // Chip reset control and status
99 // 0x10000000 [28] HAD_WATCHDOG_RESET_PSM (0) Last reset was a watchdog timeout which was configured...
100 // 0x08000000 [27] HAD_HZD_SYS_RESET_REQ (0) Last reset was a system reset from the hazard debugger +
101 // 0x04000000 [26] HAD_GLITCH_DETECT (0) Last reset was due to a power supply glitch +
102 // 0x02000000 [25] HAD_SWCORE_PD (0) Last reset was a switched core powerdown +
103 // 0x01000000 [24] HAD_WATCHDOG_RESET_SWCORE (0) Last reset was a watchdog timeout which was configured...
104 // 0x00800000 [23] HAD_WATCHDOG_RESET_POWMAN (0) Last reset was a watchdog timeout which was configured...
105 // 0x00400000 [22] HAD_WATCHDOG_RESET_POWMAN_ASYNC (0) Last reset was a watchdog timeout which was configured...
106 // 0x00200000 [21] HAD_RESCUE (0) Last reset was a rescue reset from the debugger +
107 // 0x00080000 [19] HAD_DP_RESET_REQ (0) Last reset was an reset request from the arm debugger +
108 // 0x00040000 [18] HAD_RUN_LOW (0) Last reset was from the RUN pin +
109 // 0x00020000 [17] HAD_BOR (0) Last reset was from the brown-out detection block +
110 // 0x00010000 [16] HAD_POR (0) Last reset was from the power-on reset +
111 // 0x00000010 [4] RESCUE_FLAG (0) This is set by a rescue reset from the RP-AP
112 // 0x00000001 [0] DOUBLE_TAP (0) This flag is set by double-tapping RUN
113 io_rw_32 chip_reset;
114
115 _REG_(POWMAN_WDSEL_OFFSET) // POWMAN_WDSEL
116 // Allows a watchdog reset to reset the internal state of powman in addition to the power-on state...
117 // 0x00001000 [12] RESET_PSM (0) If set to 1, a watchdog reset will run the full power-on...
118 // 0x00000100 [8] RESET_SWCORE (0) If set to 1, a watchdog reset will reset the switched...
119 // 0x00000010 [4] RESET_POWMAN (0) If set to 1, a watchdog reset will restore powman...
120 // 0x00000001 [0] RESET_POWMAN_ASYNC (0) If set to 1, a watchdog reset will restore powman...
121 io_rw_32 wdsel;
122
123 _REG_(POWMAN_SEQ_CFG_OFFSET) // POWMAN_SEQ_CFG
124 // For configuration of the power sequencer
125 // 0x00100000 [20] USING_FAST_POWCK (1) 0 indicates the POWMAN clock is running from the low...
126 // 0x00020000 [17] USING_BOD_LP (0) Indicates the brown-out detector (BOD) mode +
127 // 0x00010000 [16] USING_VREG_LP (0) Indicates the voltage regulator (VREG) mode +
128 // 0x00001000 [12] USE_FAST_POWCK (1) selects the reference clock (clk_ref) as the source of...
129 // 0x00000100 [8] RUN_LPOSC_IN_LP (1) Set to 0 to stop the low power osc when the...
130 // 0x00000080 [7] USE_BOD_HP (1) Set to 0 to prevent automatic switching to bod high...
131 // 0x00000040 [6] USE_BOD_LP (1) Set to 0 to prevent automatic switching to bod low power...
132 // 0x00000020 [5] USE_VREG_HP (1) Set to 0 to prevent automatic switching to vreg high...
133 // 0x00000010 [4] USE_VREG_LP (1) Set to 0 to prevent automatic switching to vreg low...
134 // 0x00000002 [1] HW_PWRUP_SRAM0 (0) Specifies the power state of SRAM0 when powering up...
135 // 0x00000001 [0] HW_PWRUP_SRAM1 (0) Specifies the power state of SRAM1 when powering up...
136 io_rw_32 seq_cfg;
137
138 _REG_(POWMAN_STATE_OFFSET) // POWMAN_STATE
139 // This register controls the power state of the 4 power domains
140 // 0x00002000 [13] CHANGING (0) Indicates a power state change is in progress
141 // 0x00001000 [12] WAITING (0) Indicates the power manager has received a state change...
142 // 0x00000800 [11] BAD_HW_REQ (0) Invalid hardware initiated state request, power up...
143 // 0x00000400 [10] BAD_SW_REQ (0) Invalid software initiated state request ignored
144 // 0x00000200 [9] PWRUP_WHILE_WAITING (0) Indicates that a power state change request was ignored...
145 // 0x00000100 [8] REQ_IGNORED (0) Indicates that a software state change request was...
146 // 0x000000f0 [7:4] REQ (0x0) This is written by software or hardware to request a new...
147 // 0x0000000f [3:0] CURRENT (0xf) Indicates the current power state
148 io_rw_32 state;
149
150 _REG_(POWMAN_POW_FASTDIV_OFFSET) // POWMAN_POW_FASTDIV
151 // 0x000007ff [10:0] POW_FASTDIV (0x040) divides the POWMAN clock to provide a tick for the delay...
152 io_rw_32 pow_fastdiv;
153
154 _REG_(POWMAN_POW_DELAY_OFFSET) // POWMAN_POW_DELAY
155 // power state machine delays
156 // 0x0000ff00 [15:8] SRAM_STEP (0x20) timing between the sram0 and sram1 power state machine steps +
157 // 0x000000f0 [7:4] XIP_STEP (0x1) timing between the xip power state machine steps +
158 // 0x0000000f [3:0] SWCORE_STEP (0x1) timing between the swcore power state machine steps +
159 io_rw_32 pow_delay;
160
161 // (Description copied from array index 0 register POWMAN_EXT_CTRL0 applies similarly to other array indexes)
162 _REG_(POWMAN_EXT_CTRL0_OFFSET) // POWMAN_EXT_CTRL0
163 // Configures a gpio as a power mode aware control output
164 // 0x00004000 [14] LP_EXIT_STATE (0) output level when exiting the low power state
165 // 0x00002000 [13] LP_ENTRY_STATE (0) output level when entering the low power state
166 // 0x00001000 [12] INIT_STATE (0)
167 // 0x00000100 [8] INIT (0)
168 // 0x0000003f [5:0] GPIO_SELECT (0x3f) selects from gpio 0->30 +
169 io_rw_32 ext_ctrl[2];
170
171 _REG_(POWMAN_EXT_TIME_REF_OFFSET) // POWMAN_EXT_TIME_REF
172 // Select a GPIO to use as a time reference, the source can be used to drive the low power clock at...
173 // 0x00000010 [4] DRIVE_LPCK (0) Use the selected GPIO to drive the 32kHz low power...
174 // 0x00000003 [1:0] SOURCE_SEL (0x0)
175 io_rw_32 ext_time_ref;
176
177 _REG_(POWMAN_LPOSC_FREQ_KHZ_INT_OFFSET) // POWMAN_LPOSC_FREQ_KHZ_INT
178 // Informs the AON Timer of the integer component of the clock frequency when running off the LPOSC
179 // 0x0000003f [5:0] LPOSC_FREQ_KHZ_INT (0x20) Integer component of the LPOSC or GPIO clock source...
180 io_rw_32 lposc_freq_khz_int;
181
182 _REG_(POWMAN_LPOSC_FREQ_KHZ_FRAC_OFFSET) // POWMAN_LPOSC_FREQ_KHZ_FRAC
183 // Informs the AON Timer of the fractional component of the clock frequency when running off the LPOSC
184 // 0x0000ffff [15:0] LPOSC_FREQ_KHZ_FRAC (0xc49c) Fractional component of the LPOSC or GPIO clock source...
185 io_rw_32 lposc_freq_khz_frac;
186
187 _REG_(POWMAN_XOSC_FREQ_KHZ_INT_OFFSET) // POWMAN_XOSC_FREQ_KHZ_INT
188 // Informs the AON Timer of the integer component of the clock frequency when running off the XOSC
189 // 0x0000ffff [15:0] XOSC_FREQ_KHZ_INT (0x2ee0) Integer component of the XOSC frequency in kHz
190 io_rw_32 xosc_freq_khz_int;
191
192 _REG_(POWMAN_XOSC_FREQ_KHZ_FRAC_OFFSET) // POWMAN_XOSC_FREQ_KHZ_FRAC
193 // Informs the AON Timer of the fractional component of the clock frequency when running off the XOSC
194 // 0x0000ffff [15:0] XOSC_FREQ_KHZ_FRAC (0x0000) Fractional component of the XOSC frequency in kHz
195 io_rw_32 xosc_freq_khz_frac;
196
197 _REG_(POWMAN_SET_TIME_63TO48_OFFSET) // POWMAN_SET_TIME_63TO48
198 // 0x0000ffff [15:0] SET_TIME_63TO48 (0x0000) For setting the time, do not use for reading the time,...
199 io_rw_32 set_time_63to48;
200
201 _REG_(POWMAN_SET_TIME_47TO32_OFFSET) // POWMAN_SET_TIME_47TO32
202 // 0x0000ffff [15:0] SET_TIME_47TO32 (0x0000) For setting the time, do not use for reading the time,...
203 io_rw_32 set_time_47to32;
204
205 _REG_(POWMAN_SET_TIME_31TO16_OFFSET) // POWMAN_SET_TIME_31TO16
206 // 0x0000ffff [15:0] SET_TIME_31TO16 (0x0000) For setting the time, do not use for reading the time,...
207 io_rw_32 set_time_31to16;
208
209 _REG_(POWMAN_SET_TIME_15TO0_OFFSET) // POWMAN_SET_TIME_15TO0
210 // 0x0000ffff [15:0] SET_TIME_15TO0 (0x0000) For setting the time, do not use for reading the time,...
211 io_rw_32 set_time_15to0;
212
213 _REG_(POWMAN_READ_TIME_UPPER_OFFSET) // POWMAN_READ_TIME_UPPER
214 // 0xffffffff [31:0] READ_TIME_UPPER (0x00000000) For reading bits 63:32 of the timer
215 io_ro_32 read_time_upper;
216
217 _REG_(POWMAN_READ_TIME_LOWER_OFFSET) // POWMAN_READ_TIME_LOWER
218 // 0xffffffff [31:0] READ_TIME_LOWER (0x00000000) For reading bits 31:0 of the timer
219 io_ro_32 read_time_lower;
220
221 _REG_(POWMAN_ALARM_TIME_63TO48_OFFSET) // POWMAN_ALARM_TIME_63TO48
222 // 0x0000ffff [15:0] ALARM_TIME_63TO48 (0x0000) This field must only be written when POWMAN_ALARM_ENAB=0
223 io_rw_32 alarm_time_63to48;
224
225 _REG_(POWMAN_ALARM_TIME_47TO32_OFFSET) // POWMAN_ALARM_TIME_47TO32
226 // 0x0000ffff [15:0] ALARM_TIME_47TO32 (0x0000) This field must only be written when POWMAN_ALARM_ENAB=0
227 io_rw_32 alarm_time_47to32;
228
229 _REG_(POWMAN_ALARM_TIME_31TO16_OFFSET) // POWMAN_ALARM_TIME_31TO16
230 // 0x0000ffff [15:0] ALARM_TIME_31TO16 (0x0000) This field must only be written when POWMAN_ALARM_ENAB=0
231 io_rw_32 alarm_time_31to16;
232
233 _REG_(POWMAN_ALARM_TIME_15TO0_OFFSET) // POWMAN_ALARM_TIME_15TO0
234 // 0x0000ffff [15:0] ALARM_TIME_15TO0 (0x0000) This field must only be written when POWMAN_ALARM_ENAB=0
235 io_rw_32 alarm_time_15to0;
236
237 _REG_(POWMAN_TIMER_OFFSET) // POWMAN_TIMER
238 // 0x00080000 [19] USING_GPIO_1HZ (0) Timer is synchronised to a 1hz gpio source
239 // 0x00040000 [18] USING_GPIO_1KHZ (0) Timer is running from a 1khz gpio source
240 // 0x00020000 [17] USING_LPOSC (0) Timer is running from lposc
241 // 0x00010000 [16] USING_XOSC (0) Timer is running from xosc
242 // 0x00002000 [13] USE_GPIO_1HZ (0) Selects the gpio source as the reference for the sec counter
243 // 0x00000400 [10] USE_GPIO_1KHZ (0) switch to gpio as the source of the 1kHz timer tick
244 // 0x00000200 [9] USE_XOSC (0) switch to xosc as the source of the 1kHz timer tick
245 // 0x00000100 [8] USE_LPOSC (0) Switch to lposc as the source of the 1kHz timer tick
246 // 0x00000040 [6] ALARM (0) Alarm has fired
247 // 0x00000020 [5] PWRUP_ON_ALARM (0) Alarm wakes the chip from low power mode
248 // 0x00000010 [4] ALARM_ENAB (0) Enables the alarm
249 // 0x00000004 [2] CLEAR (0) Clears the timer, does not disable the timer and does...
250 // 0x00000002 [1] RUN (0) Timer enable
251 // 0x00000001 [0] NONSEC_WRITE (0) Control whether Non-secure software can write to the...
252 io_rw_32 timer;
253
254 // (Description copied from array index 0 register POWMAN_PWRUP0 applies similarly to other array indexes)
255 _REG_(POWMAN_PWRUP0_OFFSET) // POWMAN_PWRUP0
256 // 4 GPIO powerup events can be configured to wake the chip up from a low power state
257 // 0x00000400 [10] RAW_STATUS (0) Value of selected gpio pin (only if enable == 1)
258 // 0x00000200 [9] STATUS (0) Status of gpio wakeup
259 // 0x00000100 [8] MODE (0) Edge or level detect
260 // 0x00000080 [7] DIRECTION (0)
261 // 0x00000040 [6] ENABLE (0) Set to 1 to enable the wakeup source
262 // 0x0000003f [5:0] SOURCE (0x3f)
263 io_rw_32 pwrup[4];
264
265 _REG_(POWMAN_CURRENT_PWRUP_REQ_OFFSET) // POWMAN_CURRENT_PWRUP_REQ
266 // Indicates current powerup request state
267 // 0x0000007f [6:0] CURRENT_PWRUP_REQ (0x00)
268 io_ro_32 current_pwrup_req;
269
270 _REG_(POWMAN_LAST_SWCORE_PWRUP_OFFSET) // POWMAN_LAST_SWCORE_PWRUP
271 // Indicates which pwrup source triggered the last switched-core power up
272 // 0x0000007f [6:0] LAST_SWCORE_PWRUP (0x00)
273 io_ro_32 last_swcore_pwrup;
274
275 _REG_(POWMAN_DBG_PWRCFG_OFFSET) // POWMAN_DBG_PWRCFG
276 // 0x00000001 [0] IGNORE (0) Ignore pwrup req from debugger
277 io_rw_32 dbg_pwrcfg;
278
279 _REG_(POWMAN_BOOTDIS_OFFSET) // POWMAN_BOOTDIS
280 // Tell the bootrom to ignore the BOOT0
281 // 0x00000002 [1] NEXT (0) This flag always ORs writes into its current contents
282 // 0x00000001 [0] NOW (0) When powman resets the PSM, the current value of...
283 io_rw_32 bootdis;
284
285 _REG_(POWMAN_DBGCONFIG_OFFSET) // POWMAN_DBGCONFIG
286 // 0x0000000f [3:0] DP_INSTID (0x0) Configure DP instance ID for SWD multidrop selection
287 io_rw_32 dbgconfig;
288
289 // (Description copied from array index 0 register POWMAN_SCRATCH0 applies similarly to other array indexes)
290 _REG_(POWMAN_SCRATCH0_OFFSET) // POWMAN_SCRATCH0
291 // Scratch register
292 // 0xffffffff [31:0] SCRATCH0 (0x00000000)
293 io_rw_32 scratch[8];
294
295 // (Description copied from array index 0 register POWMAN_BOOT0 applies similarly to other array indexes)
296 _REG_(POWMAN_BOOT0_OFFSET) // POWMAN_BOOT0
297 // Scratch register
298 // 0xffffffff [31:0] BOOT0 (0x00000000)
299 io_rw_32 boot[4];
300
301 _REG_(POWMAN_INTR_OFFSET) // POWMAN_INTR
302 // Raw Interrupts
303 // 0x00000008 [3] PWRUP_WHILE_WAITING (0) Source is state
304 // 0x00000004 [2] STATE_REQ_IGNORED (0) Source is state
305 // 0x00000002 [1] TIMER (0)
306 // 0x00000001 [0] VREG_OUTPUT_LOW (0)
307 io_rw_32 intr;
308
309 _REG_(POWMAN_INTE_OFFSET) // POWMAN_INTE
310 // Interrupt Enable
311 // 0x00000008 [3] PWRUP_WHILE_WAITING (0) Source is state
312 // 0x00000004 [2] STATE_REQ_IGNORED (0) Source is state
313 // 0x00000002 [1] TIMER (0)
314 // 0x00000001 [0] VREG_OUTPUT_LOW (0)
315 io_rw_32 inte;
316
317 _REG_(POWMAN_INTF_OFFSET) // POWMAN_INTF
318 // Interrupt Force
319 // 0x00000008 [3] PWRUP_WHILE_WAITING (0) Source is state
320 // 0x00000004 [2] STATE_REQ_IGNORED (0) Source is state
321 // 0x00000002 [1] TIMER (0)
322 // 0x00000001 [0] VREG_OUTPUT_LOW (0)
323 io_rw_32 intf;
324
325 _REG_(POWMAN_INTS_OFFSET) // POWMAN_INTS
326 // Interrupt status after masking & forcing
327 // 0x00000008 [3] PWRUP_WHILE_WAITING (0) Source is state
328 // 0x00000004 [2] STATE_REQ_IGNORED (0) Source is state
329 // 0x00000002 [1] TIMER (0)
330 // 0x00000001 [0] VREG_OUTPUT_LOW (0)
331 io_ro_32 ints;
333
334#define powman_hw ((powman_hw_t *)POWMAN_BASE)
335static_assert(sizeof (powman_hw_t) == 0x00f0, "");
336
337#endif // _HARDWARE_STRUCTS_POWMAN_H
Definition powman.h:26