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sio.h
1// THIS HEADER FILE IS AUTOMATICALLY GENERATED -- DO NOT EDIT
2
8#ifndef _HARDWARE_STRUCTS_SIO_H
9#define _HARDWARE_STRUCTS_SIO_H
10
14
16#include "hardware/regs/sio.h"
17#include "hardware/structs/interp.h"
18
19// Reference to datasheet: https://datasheets.raspberrypi.com/rp2350/rp2350-datasheet.pdf#tab-registerlist_sio
20//
21// The _REG_ macro is intended to help make the register navigable in your IDE (for example, using the "Go to Definition" feature)
22// _REG_(x) will link to the corresponding register in hardware/regs/sio.h.
23//
24// Bit-field descriptions are of the form:
25// BITMASK [BITRANGE] FIELDNAME (RESETVALUE) DESCRIPTION
26
27
28typedef struct {
29 _REG_(SIO_CPUID_OFFSET) // SIO_CPUID
30 // Processor core identifier
31 // 0xffffffff [31:0] CPUID (-) Value is 0 when read from processor core 0, and 1 when...
32 io_ro_32 cpuid;
33
34 _REG_(SIO_GPIO_IN_OFFSET) // SIO_GPIO_IN
35 // Input value for GPIO0
36 // 0xffffffff [31:0] GPIO_IN (0x00000000)
37 io_ro_32 gpio_in;
38
39 _REG_(SIO_GPIO_HI_IN_OFFSET) // SIO_GPIO_HI_IN
40 // Input value on GPIO32
41 // 0xf0000000 [31:28] QSPI_SD (0x0) Input value on QSPI SD0 (MOSI), SD1 (MISO), SD2 and SD3 pins
42 // 0x08000000 [27] QSPI_CSN (0) Input value on QSPI CSn pin
43 // 0x04000000 [26] QSPI_SCK (0) Input value on QSPI SCK pin
44 // 0x02000000 [25] USB_DM (0) Input value on USB D- pin
45 // 0x01000000 [24] USB_DP (0) Input value on USB D+ pin
46 // 0x0000ffff [15:0] GPIO (0x0000) Input value on GPIO32
47 io_ro_32 gpio_hi_in;
48
49 uint32_t _pad0;
50
51 _REG_(SIO_GPIO_OUT_OFFSET) // SIO_GPIO_OUT
52 // GPIO0
53 // 0xffffffff [31:0] GPIO_OUT (0x00000000) Set output level (1/0 -> high/low) for GPIO0
54 io_rw_32 gpio_out;
55
56 _REG_(SIO_GPIO_HI_OUT_OFFSET) // SIO_GPIO_HI_OUT
57 // Output value for GPIO32
58 // 0xf0000000 [31:28] QSPI_SD (0x0) Output value for QSPI SD0 (MOSI), SD1 (MISO), SD2 and SD3 pins
59 // 0x08000000 [27] QSPI_CSN (0) Output value for QSPI CSn pin
60 // 0x04000000 [26] QSPI_SCK (0) Output value for QSPI SCK pin
61 // 0x02000000 [25] USB_DM (0) Output value for USB D- pin
62 // 0x01000000 [24] USB_DP (0) Output value for USB D+ pin
63 // 0x0000ffff [15:0] GPIO (0x0000) Output value for GPIO32
64 io_rw_32 gpio_hi_out;
65
66 _REG_(SIO_GPIO_OUT_SET_OFFSET) // SIO_GPIO_OUT_SET
67 // GPIO0
68 // 0xffffffff [31:0] GPIO_OUT_SET (0x00000000) Perform an atomic bit-set on GPIO_OUT, i
69 io_wo_32 gpio_set;
70
71 _REG_(SIO_GPIO_HI_OUT_SET_OFFSET) // SIO_GPIO_HI_OUT_SET
72 // Output value set for GPIO32
73 // 0xf0000000 [31:28] QSPI_SD (0x0)
74 // 0x08000000 [27] QSPI_CSN (0)
75 // 0x04000000 [26] QSPI_SCK (0)
76 // 0x02000000 [25] USB_DM (0)
77 // 0x01000000 [24] USB_DP (0)
78 // 0x0000ffff [15:0] GPIO (0x0000)
79 io_wo_32 gpio_hi_set;
80
81 _REG_(SIO_GPIO_OUT_CLR_OFFSET) // SIO_GPIO_OUT_CLR
82 // GPIO0
83 // 0xffffffff [31:0] GPIO_OUT_CLR (0x00000000) Perform an atomic bit-clear on GPIO_OUT, i
84 io_wo_32 gpio_clr;
85
86 _REG_(SIO_GPIO_HI_OUT_CLR_OFFSET) // SIO_GPIO_HI_OUT_CLR
87 // Output value clear for GPIO32
88 // 0xf0000000 [31:28] QSPI_SD (0x0)
89 // 0x08000000 [27] QSPI_CSN (0)
90 // 0x04000000 [26] QSPI_SCK (0)
91 // 0x02000000 [25] USB_DM (0)
92 // 0x01000000 [24] USB_DP (0)
93 // 0x0000ffff [15:0] GPIO (0x0000)
94 io_wo_32 gpio_hi_clr;
95
96 _REG_(SIO_GPIO_OUT_XOR_OFFSET) // SIO_GPIO_OUT_XOR
97 // GPIO0
98 // 0xffffffff [31:0] GPIO_OUT_XOR (0x00000000) Perform an atomic bitwise XOR on GPIO_OUT, i
99 io_wo_32 gpio_togl;
100
101 _REG_(SIO_GPIO_HI_OUT_XOR_OFFSET) // SIO_GPIO_HI_OUT_XOR
102 // Output value XOR for GPIO32
103 // 0xf0000000 [31:28] QSPI_SD (0x0)
104 // 0x08000000 [27] QSPI_CSN (0)
105 // 0x04000000 [26] QSPI_SCK (0)
106 // 0x02000000 [25] USB_DM (0)
107 // 0x01000000 [24] USB_DP (0)
108 // 0x0000ffff [15:0] GPIO (0x0000)
109 io_wo_32 gpio_hi_togl;
110
111 _REG_(SIO_GPIO_OE_OFFSET) // SIO_GPIO_OE
112 // GPIO0
113 // 0xffffffff [31:0] GPIO_OE (0x00000000) Set output enable (1/0 -> output/input) for GPIO0
114 io_rw_32 gpio_oe;
115
116 _REG_(SIO_GPIO_HI_OE_OFFSET) // SIO_GPIO_HI_OE
117 // Output enable value for GPIO32
118 // 0xf0000000 [31:28] QSPI_SD (0x0) Output enable value for QSPI SD0 (MOSI), SD1 (MISO), SD2...
119 // 0x08000000 [27] QSPI_CSN (0) Output enable value for QSPI CSn pin
120 // 0x04000000 [26] QSPI_SCK (0) Output enable value for QSPI SCK pin
121 // 0x02000000 [25] USB_DM (0) Output enable value for USB D- pin
122 // 0x01000000 [24] USB_DP (0) Output enable value for USB D+ pin
123 // 0x0000ffff [15:0] GPIO (0x0000) Output enable value for GPIO32
124 io_rw_32 gpio_hi_oe;
125
126 _REG_(SIO_GPIO_OE_SET_OFFSET) // SIO_GPIO_OE_SET
127 // GPIO0
128 // 0xffffffff [31:0] GPIO_OE_SET (0x00000000) Perform an atomic bit-set on GPIO_OE, i
129 io_wo_32 gpio_oe_set;
130
131 _REG_(SIO_GPIO_HI_OE_SET_OFFSET) // SIO_GPIO_HI_OE_SET
132 // Output enable set for GPIO32
133 // 0xf0000000 [31:28] QSPI_SD (0x0)
134 // 0x08000000 [27] QSPI_CSN (0)
135 // 0x04000000 [26] QSPI_SCK (0)
136 // 0x02000000 [25] USB_DM (0)
137 // 0x01000000 [24] USB_DP (0)
138 // 0x0000ffff [15:0] GPIO (0x0000)
139 io_wo_32 gpio_hi_oe_set;
140
141 _REG_(SIO_GPIO_OE_CLR_OFFSET) // SIO_GPIO_OE_CLR
142 // GPIO0
143 // 0xffffffff [31:0] GPIO_OE_CLR (0x00000000) Perform an atomic bit-clear on GPIO_OE, i
144 io_wo_32 gpio_oe_clr;
145
146 _REG_(SIO_GPIO_HI_OE_CLR_OFFSET) // SIO_GPIO_HI_OE_CLR
147 // Output enable clear for GPIO32
148 // 0xf0000000 [31:28] QSPI_SD (0x0)
149 // 0x08000000 [27] QSPI_CSN (0)
150 // 0x04000000 [26] QSPI_SCK (0)
151 // 0x02000000 [25] USB_DM (0)
152 // 0x01000000 [24] USB_DP (0)
153 // 0x0000ffff [15:0] GPIO (0x0000)
154 io_wo_32 gpio_hi_oe_clr;
155
156 _REG_(SIO_GPIO_OE_XOR_OFFSET) // SIO_GPIO_OE_XOR
157 // GPIO0
158 // 0xffffffff [31:0] GPIO_OE_XOR (0x00000000) Perform an atomic bitwise XOR on GPIO_OE, i
159 io_wo_32 gpio_oe_togl;
160
161 _REG_(SIO_GPIO_HI_OE_XOR_OFFSET) // SIO_GPIO_HI_OE_XOR
162 // Output enable XOR for GPIO32
163 // 0xf0000000 [31:28] QSPI_SD (0x0)
164 // 0x08000000 [27] QSPI_CSN (0)
165 // 0x04000000 [26] QSPI_SCK (0)
166 // 0x02000000 [25] USB_DM (0)
167 // 0x01000000 [24] USB_DP (0)
168 // 0x0000ffff [15:0] GPIO (0x0000)
169 io_wo_32 gpio_hi_oe_togl;
170
171 _REG_(SIO_FIFO_ST_OFFSET) // SIO_FIFO_ST
172 // Status register for inter-core FIFOs (mailboxes).
173 // 0x00000008 [3] ROE (0) Sticky flag indicating the RX FIFO was read when empty
174 // 0x00000004 [2] WOF (0) Sticky flag indicating the TX FIFO was written when full
175 // 0x00000002 [1] RDY (1) Value is 1 if this core's TX FIFO is not full (i
176 // 0x00000001 [0] VLD (0) Value is 1 if this core's RX FIFO is not empty (i
177 io_rw_32 fifo_st;
178
179 _REG_(SIO_FIFO_WR_OFFSET) // SIO_FIFO_WR
180 // Write access to this core's TX FIFO
181 // 0xffffffff [31:0] FIFO_WR (0x00000000)
182 io_wo_32 fifo_wr;
183
184 _REG_(SIO_FIFO_RD_OFFSET) // SIO_FIFO_RD
185 // Read access to this core's RX FIFO
186 // 0xffffffff [31:0] FIFO_RD (-)
187 io_ro_32 fifo_rd;
188
189 _REG_(SIO_SPINLOCK_ST_OFFSET) // SIO_SPINLOCK_ST
190 // Spinlock state
191 // 0xffffffff [31:0] SPINLOCK_ST (0x00000000)
192 io_ro_32 spinlock_st;
193
194 uint32_t _pad1[8];
195
196 interp_hw_t interp[2];
197
198 // (Description copied from array index 0 register SIO_SPINLOCK0 applies similarly to other array indexes)
199 _REG_(SIO_SPINLOCK0_OFFSET) // SIO_SPINLOCK0
200 // Spinlock register 0
201 // 0xffffffff [31:0] SPINLOCK0 (0x00000000)
202 io_rw_32 spinlock[32];
203
204 _REG_(SIO_DOORBELL_OUT_SET_OFFSET) // SIO_DOORBELL_OUT_SET
205 // Trigger a doorbell interrupt on the opposite core
206 // 0x000000ff [7:0] DOORBELL_OUT_SET (0x00)
207 io_rw_32 doorbell_out_set;
208
209 _REG_(SIO_DOORBELL_OUT_CLR_OFFSET) // SIO_DOORBELL_OUT_CLR
210 // Clear doorbells which have been posted to the opposite core
211 // 0x000000ff [7:0] DOORBELL_OUT_CLR (0x00)
212 io_rw_32 doorbell_out_clr;
213
214 _REG_(SIO_DOORBELL_IN_SET_OFFSET) // SIO_DOORBELL_IN_SET
215 // Write 1s to trigger doorbell interrupts on this core
216 // 0x000000ff [7:0] DOORBELL_IN_SET (0x00)
217 io_rw_32 doorbell_in_set;
218
219 _REG_(SIO_DOORBELL_IN_CLR_OFFSET) // SIO_DOORBELL_IN_CLR
220 // Check and acknowledge doorbells posted to this core
221 // 0x000000ff [7:0] DOORBELL_IN_CLR (0x00)
222 io_rw_32 doorbell_in_clr;
223
224 _REG_(SIO_PERI_NONSEC_OFFSET) // SIO_PERI_NONSEC
225 // Detach certain core-local peripherals from Secure SIO, and attach them to Non-secure SIO, so...
226 // 0x00000020 [5] TMDS (0) IF 1, detach TMDS encoder (of this core) from the Secure...
227 // 0x00000002 [1] INTERP1 (0) If 1, detach interpolator 1 (of this core) from the...
228 // 0x00000001 [0] INTERP0 (0) If 1, detach interpolator 0 (of this core) from the...
229 io_rw_32 peri_nonsec;
230
231 uint32_t _pad2[3];
232
233 _REG_(SIO_RISCV_SOFTIRQ_OFFSET) // SIO_RISCV_SOFTIRQ
234 // Control the assertion of the standard software interrupt (MIP
235 // 0x00000200 [9] CORE1_CLR (0) Write 1 to atomically clear the core 1 software interrupt flag
236 // 0x00000100 [8] CORE0_CLR (0) Write 1 to atomically clear the core 0 software interrupt flag
237 // 0x00000002 [1] CORE1_SET (0) Write 1 to atomically set the core 1 software interrupt flag
238 // 0x00000001 [0] CORE0_SET (0) Write 1 to atomically set the core 0 software interrupt flag
239 io_rw_32 riscv_softirq;
240
241 _REG_(SIO_MTIME_CTRL_OFFSET) // SIO_MTIME_CTRL
242 // Control register for the RISC-V 64-bit Machine-mode timer
243 // 0x00000008 [3] DBGPAUSE_CORE1 (1) If 1, the timer pauses when core 1 is in the debug halt state
244 // 0x00000004 [2] DBGPAUSE_CORE0 (1) If 1, the timer pauses when core 0 is in the debug halt state
245 // 0x00000002 [1] FULLSPEED (0) If 1, increment the timer every cycle (i
246 // 0x00000001 [0] EN (1) Timer enable bit
247 io_rw_32 mtime_ctrl;
248
249 uint32_t _pad3[2];
250
251 _REG_(SIO_MTIME_OFFSET) // SIO_MTIME
252 // Read/write access to the low half of RISC-V Machine-mode timer
253 // 0xffffffff [31:0] MTIME (0x00000000)
254 io_rw_32 mtime;
255
256 _REG_(SIO_MTIMEH_OFFSET) // SIO_MTIMEH
257 // Read/write access to the high half of RISC-V Machine-mode timer
258 // 0xffffffff [31:0] MTIMEH (0x00000000)
259 io_rw_32 mtimeh;
260
261 _REG_(SIO_MTIMECMP_OFFSET) // SIO_MTIMECMP
262 // Low half of RISC-V Machine-mode timer comparator
263 // 0xffffffff [31:0] MTIMECMP (0xffffffff)
264 io_rw_32 mtimecmp;
265
266 _REG_(SIO_MTIMECMPH_OFFSET) // SIO_MTIMECMPH
267 // High half of RISC-V Machine-mode timer comparator
268 // 0xffffffff [31:0] MTIMECMPH (0xffffffff)
269 io_rw_32 mtimecmph;
270
271 _REG_(SIO_TMDS_CTRL_OFFSET) // SIO_TMDS_CTRL
272 // Control register for TMDS encoder
273 // 0x10000000 [28] CLEAR_BALANCE (0) Clear the running DC balance state of the TMDS encoders
274 // 0x08000000 [27] PIX2_NOSHIFT (0) When encoding two pixels's worth of symbols in one cycle...
275 // 0x07000000 [26:24] PIX_SHIFT (0x0) Shift applied to the colour data register with each read...
276 // 0x00800000 [23] INTERLEAVE (0) Enable lane interleaving for reads of PEEK_SINGLE/POP_SINGLE
277 // 0x001c0000 [20:18] L2_NBITS (0x0) Number of valid colour MSBs for lane 2 (1-8 bits,...
278 // 0x00038000 [17:15] L1_NBITS (0x0) Number of valid colour MSBs for lane 1 (1-8 bits,...
279 // 0x00007000 [14:12] L0_NBITS (0x0) Number of valid colour MSBs for lane 0 (1-8 bits,...
280 // 0x00000f00 [11:8] L2_ROT (0x0) Right-rotate the 16 LSBs of the colour accumulator by...
281 // 0x000000f0 [7:4] L1_ROT (0x0) Right-rotate the 16 LSBs of the colour accumulator by...
282 // 0x0000000f [3:0] L0_ROT (0x0) Right-rotate the 16 LSBs of the colour accumulator by...
283 io_rw_32 tmds_ctrl;
284
285 _REG_(SIO_TMDS_WDATA_OFFSET) // SIO_TMDS_WDATA
286 // Write-only access to the TMDS colour data register
287 // 0xffffffff [31:0] TMDS_WDATA (0x00000000)
288 io_wo_32 tmds_wdata;
289
290 _REG_(SIO_TMDS_PEEK_SINGLE_OFFSET) // SIO_TMDS_PEEK_SINGLE
291 // Get the encoding of one pixel's worth of colour data, packed into a 32-bit value (3x10-bit symbols)
292 // 0xffffffff [31:0] TMDS_PEEK_SINGLE (0x00000000)
293 io_ro_32 tmds_peek_single;
294
295 _REG_(SIO_TMDS_POP_SINGLE_OFFSET) // SIO_TMDS_POP_SINGLE
296 // Get the encoding of one pixel's worth of colour data, packed into a 32-bit value
297 // 0xffffffff [31:0] TMDS_POP_SINGLE (0x00000000)
298 io_ro_32 tmds_pop_single;
299
300 _REG_(SIO_TMDS_PEEK_DOUBLE_L0_OFFSET) // SIO_TMDS_PEEK_DOUBLE_L0
301 // Get lane 0 of the encoding of two pixels' worth of colour data
302 // 0xffffffff [31:0] TMDS_PEEK_DOUBLE_L0 (0x00000000)
303 io_ro_32 tmds_peek_double_l0;
304
305 _REG_(SIO_TMDS_POP_DOUBLE_L0_OFFSET) // SIO_TMDS_POP_DOUBLE_L0
306 // Get lane 0 of the encoding of two pixels' worth of colour data
307 // 0xffffffff [31:0] TMDS_POP_DOUBLE_L0 (0x00000000)
308 io_ro_32 tmds_pop_double_l0;
309
310 _REG_(SIO_TMDS_PEEK_DOUBLE_L1_OFFSET) // SIO_TMDS_PEEK_DOUBLE_L1
311 // Get lane 1 of the encoding of two pixels' worth of colour data
312 // 0xffffffff [31:0] TMDS_PEEK_DOUBLE_L1 (0x00000000)
313 io_ro_32 tmds_peek_double_l1;
314
315 _REG_(SIO_TMDS_POP_DOUBLE_L1_OFFSET) // SIO_TMDS_POP_DOUBLE_L1
316 // Get lane 1 of the encoding of two pixels' worth of colour data
317 // 0xffffffff [31:0] TMDS_POP_DOUBLE_L1 (0x00000000)
318 io_ro_32 tmds_pop_double_l1;
319
320 _REG_(SIO_TMDS_PEEK_DOUBLE_L2_OFFSET) // SIO_TMDS_PEEK_DOUBLE_L2
321 // Get lane 2 of the encoding of two pixels' worth of colour data
322 // 0xffffffff [31:0] TMDS_PEEK_DOUBLE_L2 (0x00000000)
323 io_ro_32 tmds_peek_double_l2;
324
325 _REG_(SIO_TMDS_POP_DOUBLE_L2_OFFSET) // SIO_TMDS_POP_DOUBLE_L2
326 // Get lane 2 of the encoding of two pixels' worth of colour data
327 // 0xffffffff [31:0] TMDS_POP_DOUBLE_L2 (0x00000000)
328 io_ro_32 tmds_pop_double_l2;
329} sio_hw_t;
330
331#define sio_hw ((sio_hw_t *)SIO_BASE)
332#define sio_ns_hw ((sio_hw_t *)SIO_NONSEC_BASE)
333static_assert(sizeof (sio_hw_t) == 0x01e8, "");
334
335#endif // _HARDWARE_STRUCTS_SIO_H
Definition interp.h:26
Definition sio.h:28