1b5ff1b31Sbellard /* 2b5ff1b31Sbellard * ARM Integrator CP System emulation. 3b5ff1b31Sbellard * 4a1bb27b1Spbrook * Copyright (c) 2005-2007 CodeSourcery. 5b5ff1b31Sbellard * Written by Paul Brook 6b5ff1b31Sbellard * 78e31bf38SMatthew Fernandez * This code is licensed under the GPL 8b5ff1b31Sbellard */ 9b5ff1b31Sbellard 1012b16722SPeter Maydell #include "qemu/osdep.h" 11da34e65cSMarkus Armbruster #include "qapi/error.h" 124771d756SPaolo Bonzini #include "cpu.h" 1383c9f4caSPaolo Bonzini #include "hw/sysbus.h" 14d6454270SMarkus Armbruster #include "migration/vmstate.h" 1583c9f4caSPaolo Bonzini #include "hw/boards.h" 1612ec8bd5SPeter Maydell #include "hw/arm/boot.h" 17b8616055SAlex Bennée #include "hw/misc/arm_integrator_debug.h" 18437cc27dSPhilippe Mathieu-Daudé #include "hw/net/smc91c111.h" 191422e32dSPaolo Bonzini #include "net/net.h" 20022c62cbSPaolo Bonzini #include "exec/address-spaces.h" 2154d31236SMarkus Armbruster #include "sysemu/runstate.h" 229c17d615SPaolo Bonzini #include "sysemu/sysemu.h" 23223a72f1SGreg Bellows #include "qemu/error-report.h" 24f0d1d2c1Sxiaoqiang zhao #include "hw/char/pl011.h" 25650d103dSMarkus Armbruster #include "hw/hw.h" 2664552b6bSMarkus Armbruster #include "hw/irq.h" 27b5ff1b31Sbellard 28257ec289SAndreas Färber #define TYPE_INTEGRATOR_CM "integrator_core" 29257ec289SAndreas Färber #define INTEGRATOR_CM(obj) \ 30257ec289SAndreas Färber OBJECT_CHECK(IntegratorCMState, (obj), TYPE_INTEGRATOR_CM) 31257ec289SAndreas Färber 32257ec289SAndreas Färber typedef struct IntegratorCMState { 33257ec289SAndreas Färber /*< private >*/ 34257ec289SAndreas Färber SysBusDevice parent_obj; 35257ec289SAndreas Färber /*< public >*/ 36257ec289SAndreas Färber 3771d9bc50SBenoît Canet MemoryRegion iomem; 38ee6847d1SGerd Hoffmann uint32_t memsz; 39211adf4dSAvi Kivity MemoryRegion flash; 40b5ff1b31Sbellard uint32_t cm_osc; 41b5ff1b31Sbellard uint32_t cm_ctrl; 42b5ff1b31Sbellard uint32_t cm_lock; 43b5ff1b31Sbellard uint32_t cm_auxosc; 44b5ff1b31Sbellard uint32_t cm_sdram; 45b5ff1b31Sbellard uint32_t cm_init; 46b5ff1b31Sbellard uint32_t cm_flags; 47b5ff1b31Sbellard uint32_t cm_nvflags; 48f53977f7SJan Petrous uint32_t cm_refcnt_offset; 49b5ff1b31Sbellard uint32_t int_level; 50b5ff1b31Sbellard uint32_t irq_enabled; 51b5ff1b31Sbellard uint32_t fiq_enabled; 52257ec289SAndreas Färber } IntegratorCMState; 53b5ff1b31Sbellard 54b5ff1b31Sbellard static uint8_t integrator_spd[128] = { 55b5ff1b31Sbellard 128, 8, 4, 11, 9, 1, 64, 0, 2, 0xa0, 0xa0, 0, 0, 8, 0, 1, 56b5ff1b31Sbellard 0xe, 4, 0x1c, 1, 2, 0x20, 0xc0, 0, 0, 0, 0, 0x30, 0x28, 0x30, 0x28, 0x40 57b5ff1b31Sbellard }; 58b5ff1b31Sbellard 5926d32022SPavel Dovgalyuk static const VMStateDescription vmstate_integratorcm = { 6026d32022SPavel Dovgalyuk .name = "integratorcm", 6126d32022SPavel Dovgalyuk .version_id = 1, 6226d32022SPavel Dovgalyuk .minimum_version_id = 1, 6326d32022SPavel Dovgalyuk .fields = (VMStateField[]) { 6426d32022SPavel Dovgalyuk VMSTATE_UINT32(cm_osc, IntegratorCMState), 6526d32022SPavel Dovgalyuk VMSTATE_UINT32(cm_ctrl, IntegratorCMState), 6626d32022SPavel Dovgalyuk VMSTATE_UINT32(cm_lock, IntegratorCMState), 6726d32022SPavel Dovgalyuk VMSTATE_UINT32(cm_auxosc, IntegratorCMState), 6826d32022SPavel Dovgalyuk VMSTATE_UINT32(cm_sdram, IntegratorCMState), 6926d32022SPavel Dovgalyuk VMSTATE_UINT32(cm_init, IntegratorCMState), 7026d32022SPavel Dovgalyuk VMSTATE_UINT32(cm_flags, IntegratorCMState), 7126d32022SPavel Dovgalyuk VMSTATE_UINT32(cm_nvflags, IntegratorCMState), 7226d32022SPavel Dovgalyuk VMSTATE_UINT32(int_level, IntegratorCMState), 7326d32022SPavel Dovgalyuk VMSTATE_UINT32(irq_enabled, IntegratorCMState), 7426d32022SPavel Dovgalyuk VMSTATE_UINT32(fiq_enabled, IntegratorCMState), 7526d32022SPavel Dovgalyuk VMSTATE_END_OF_LIST() 7626d32022SPavel Dovgalyuk } 7726d32022SPavel Dovgalyuk }; 7826d32022SPavel Dovgalyuk 79a8170e5eSAvi Kivity static uint64_t integratorcm_read(void *opaque, hwaddr offset, 8071d9bc50SBenoît Canet unsigned size) 81b5ff1b31Sbellard { 82257ec289SAndreas Färber IntegratorCMState *s = opaque; 83b5ff1b31Sbellard if (offset >= 0x100 && offset < 0x200) { 84b5ff1b31Sbellard /* CM_SPD */ 85b5ff1b31Sbellard if (offset >= 0x180) 86b5ff1b31Sbellard return 0; 87b5ff1b31Sbellard return integrator_spd[offset >> 2]; 88b5ff1b31Sbellard } 89b5ff1b31Sbellard switch (offset >> 2) { 90b5ff1b31Sbellard case 0: /* CM_ID */ 91b5ff1b31Sbellard return 0x411a3001; 92b5ff1b31Sbellard case 1: /* CM_PROC */ 93b5ff1b31Sbellard return 0; 94b5ff1b31Sbellard case 2: /* CM_OSC */ 95b5ff1b31Sbellard return s->cm_osc; 96b5ff1b31Sbellard case 3: /* CM_CTRL */ 97b5ff1b31Sbellard return s->cm_ctrl; 98b5ff1b31Sbellard case 4: /* CM_STAT */ 99b5ff1b31Sbellard return 0x00100000; 100b5ff1b31Sbellard case 5: /* CM_LOCK */ 101b5ff1b31Sbellard if (s->cm_lock == 0xa05f) { 102b5ff1b31Sbellard return 0x1a05f; 103b5ff1b31Sbellard } else { 104b5ff1b31Sbellard return s->cm_lock; 105b5ff1b31Sbellard } 106b5ff1b31Sbellard case 6: /* CM_LMBUSCNT */ 107b5ff1b31Sbellard /* ??? High frequency timer. */ 1082ac71179SPaul Brook hw_error("integratorcm_read: CM_LMBUSCNT"); 109b5ff1b31Sbellard case 7: /* CM_AUXOSC */ 110b5ff1b31Sbellard return s->cm_auxosc; 111b5ff1b31Sbellard case 8: /* CM_SDRAM */ 112b5ff1b31Sbellard return s->cm_sdram; 113b5ff1b31Sbellard case 9: /* CM_INIT */ 114b5ff1b31Sbellard return s->cm_init; 115f53977f7SJan Petrous case 10: /* CM_REFCNT */ 116f53977f7SJan Petrous /* This register, CM_REFCNT, provides a 32-bit count value. 117f53977f7SJan Petrous * The count increments at the fixed reference clock frequency of 24MHz 118f53977f7SJan Petrous * and can be used as a real-time counter. 119f53977f7SJan Petrous */ 120f53977f7SJan Petrous return (uint32_t)muldiv64(qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL), 24, 121f53977f7SJan Petrous 1000) - s->cm_refcnt_offset; 122b5ff1b31Sbellard case 12: /* CM_FLAGS */ 123b5ff1b31Sbellard return s->cm_flags; 124b5ff1b31Sbellard case 14: /* CM_NVFLAGS */ 125b5ff1b31Sbellard return s->cm_nvflags; 126b5ff1b31Sbellard case 16: /* CM_IRQ_STAT */ 127b5ff1b31Sbellard return s->int_level & s->irq_enabled; 128b5ff1b31Sbellard case 17: /* CM_IRQ_RSTAT */ 129b5ff1b31Sbellard return s->int_level; 130b5ff1b31Sbellard case 18: /* CM_IRQ_ENSET */ 131b5ff1b31Sbellard return s->irq_enabled; 132b5ff1b31Sbellard case 20: /* CM_SOFT_INTSET */ 133b5ff1b31Sbellard return s->int_level & 1; 134b5ff1b31Sbellard case 24: /* CM_FIQ_STAT */ 135b5ff1b31Sbellard return s->int_level & s->fiq_enabled; 136b5ff1b31Sbellard case 25: /* CM_FIQ_RSTAT */ 137b5ff1b31Sbellard return s->int_level; 138b5ff1b31Sbellard case 26: /* CM_FIQ_ENSET */ 139b5ff1b31Sbellard return s->fiq_enabled; 140b5ff1b31Sbellard case 32: /* CM_VOLTAGE_CTL0 */ 141b5ff1b31Sbellard case 33: /* CM_VOLTAGE_CTL1 */ 142b5ff1b31Sbellard case 34: /* CM_VOLTAGE_CTL2 */ 143b5ff1b31Sbellard case 35: /* CM_VOLTAGE_CTL3 */ 144b5ff1b31Sbellard /* ??? Voltage control unimplemented. */ 145b5ff1b31Sbellard return 0; 146b5ff1b31Sbellard default: 1472ac71179SPaul Brook hw_error("integratorcm_read: Unimplemented offset 0x%x\n", 1482ac71179SPaul Brook (int)offset); 149b5ff1b31Sbellard return 0; 150b5ff1b31Sbellard } 151b5ff1b31Sbellard } 152b5ff1b31Sbellard 153257ec289SAndreas Färber static void integratorcm_do_remap(IntegratorCMState *s) 154b5ff1b31Sbellard { 155563c2bf3SPeter Maydell /* Sync memory region state with CM_CTRL REMAP bit: 156563c2bf3SPeter Maydell * bit 0 => flash at address 0; bit 1 => RAM 157563c2bf3SPeter Maydell */ 158563c2bf3SPeter Maydell memory_region_set_enabled(&s->flash, !(s->cm_ctrl & 4)); 159b5ff1b31Sbellard } 160b5ff1b31Sbellard 161257ec289SAndreas Färber static void integratorcm_set_ctrl(IntegratorCMState *s, uint32_t value) 162b5ff1b31Sbellard { 163b5ff1b31Sbellard if (value & 8) { 164cf83f140SEric Blake qemu_system_reset_request(SHUTDOWN_CAUSE_GUEST_RESET); 165b5ff1b31Sbellard } 166df3f457bSPeter Maydell if ((s->cm_ctrl ^ value) & 1) { 167df3f457bSPeter Maydell /* (value & 1) != 0 means the green "MISC LED" is lit. 168df3f457bSPeter Maydell * We don't have any nice place to display LEDs. printf is a bad 169df3f457bSPeter Maydell * idea because Linux uses the LED as a heartbeat and the output 170df3f457bSPeter Maydell * will swamp anything else on the terminal. 171df3f457bSPeter Maydell */ 172b5ff1b31Sbellard } 173df3f457bSPeter Maydell /* Note that the RESET bit [3] always reads as zero */ 174df3f457bSPeter Maydell s->cm_ctrl = (s->cm_ctrl & ~5) | (value & 5); 175563c2bf3SPeter Maydell integratorcm_do_remap(s); 176b5ff1b31Sbellard } 177b5ff1b31Sbellard 178257ec289SAndreas Färber static void integratorcm_update(IntegratorCMState *s) 179b5ff1b31Sbellard { 180b5ff1b31Sbellard /* ??? The CPU irq/fiq is raised when either the core module or base PIC 181b5ff1b31Sbellard are active. */ 182b5ff1b31Sbellard if (s->int_level & (s->irq_enabled | s->fiq_enabled)) 1832ac71179SPaul Brook hw_error("Core module interrupt\n"); 184b5ff1b31Sbellard } 185b5ff1b31Sbellard 186a8170e5eSAvi Kivity static void integratorcm_write(void *opaque, hwaddr offset, 18771d9bc50SBenoît Canet uint64_t value, unsigned size) 188b5ff1b31Sbellard { 189257ec289SAndreas Färber IntegratorCMState *s = opaque; 190b5ff1b31Sbellard switch (offset >> 2) { 191b5ff1b31Sbellard case 2: /* CM_OSC */ 192b5ff1b31Sbellard if (s->cm_lock == 0xa05f) 193b5ff1b31Sbellard s->cm_osc = value; 194b5ff1b31Sbellard break; 195b5ff1b31Sbellard case 3: /* CM_CTRL */ 196b5ff1b31Sbellard integratorcm_set_ctrl(s, value); 197b5ff1b31Sbellard break; 198b5ff1b31Sbellard case 5: /* CM_LOCK */ 199b5ff1b31Sbellard s->cm_lock = value & 0xffff; 200b5ff1b31Sbellard break; 201b5ff1b31Sbellard case 7: /* CM_AUXOSC */ 202b5ff1b31Sbellard if (s->cm_lock == 0xa05f) 203b5ff1b31Sbellard s->cm_auxosc = value; 204b5ff1b31Sbellard break; 205b5ff1b31Sbellard case 8: /* CM_SDRAM */ 206b5ff1b31Sbellard s->cm_sdram = value; 207b5ff1b31Sbellard break; 208b5ff1b31Sbellard case 9: /* CM_INIT */ 209b5ff1b31Sbellard /* ??? This can change the memory bus frequency. */ 210b5ff1b31Sbellard s->cm_init = value; 211b5ff1b31Sbellard break; 212b5ff1b31Sbellard case 12: /* CM_FLAGSS */ 213b5ff1b31Sbellard s->cm_flags |= value; 214b5ff1b31Sbellard break; 215b5ff1b31Sbellard case 13: /* CM_FLAGSC */ 216b5ff1b31Sbellard s->cm_flags &= ~value; 217b5ff1b31Sbellard break; 218b5ff1b31Sbellard case 14: /* CM_NVFLAGSS */ 219b5ff1b31Sbellard s->cm_nvflags |= value; 220b5ff1b31Sbellard break; 221b5ff1b31Sbellard case 15: /* CM_NVFLAGSS */ 222b5ff1b31Sbellard s->cm_nvflags &= ~value; 223b5ff1b31Sbellard break; 224b5ff1b31Sbellard case 18: /* CM_IRQ_ENSET */ 225b5ff1b31Sbellard s->irq_enabled |= value; 226b5ff1b31Sbellard integratorcm_update(s); 227b5ff1b31Sbellard break; 228b5ff1b31Sbellard case 19: /* CM_IRQ_ENCLR */ 229b5ff1b31Sbellard s->irq_enabled &= ~value; 230b5ff1b31Sbellard integratorcm_update(s); 231b5ff1b31Sbellard break; 232b5ff1b31Sbellard case 20: /* CM_SOFT_INTSET */ 233b5ff1b31Sbellard s->int_level |= (value & 1); 234b5ff1b31Sbellard integratorcm_update(s); 235b5ff1b31Sbellard break; 236b5ff1b31Sbellard case 21: /* CM_SOFT_INTCLR */ 237b5ff1b31Sbellard s->int_level &= ~(value & 1); 238b5ff1b31Sbellard integratorcm_update(s); 239b5ff1b31Sbellard break; 240b5ff1b31Sbellard case 26: /* CM_FIQ_ENSET */ 241b5ff1b31Sbellard s->fiq_enabled |= value; 242b5ff1b31Sbellard integratorcm_update(s); 243b5ff1b31Sbellard break; 244b5ff1b31Sbellard case 27: /* CM_FIQ_ENCLR */ 245b5ff1b31Sbellard s->fiq_enabled &= ~value; 246b5ff1b31Sbellard integratorcm_update(s); 247b5ff1b31Sbellard break; 248b5ff1b31Sbellard case 32: /* CM_VOLTAGE_CTL0 */ 249b5ff1b31Sbellard case 33: /* CM_VOLTAGE_CTL1 */ 250b5ff1b31Sbellard case 34: /* CM_VOLTAGE_CTL2 */ 251b5ff1b31Sbellard case 35: /* CM_VOLTAGE_CTL3 */ 252b5ff1b31Sbellard /* ??? Voltage control unimplemented. */ 253b5ff1b31Sbellard break; 254b5ff1b31Sbellard default: 2552ac71179SPaul Brook hw_error("integratorcm_write: Unimplemented offset 0x%x\n", 2562ac71179SPaul Brook (int)offset); 257b5ff1b31Sbellard break; 258b5ff1b31Sbellard } 259b5ff1b31Sbellard } 260b5ff1b31Sbellard 261b5ff1b31Sbellard /* Integrator/CM control registers. */ 262b5ff1b31Sbellard 26371d9bc50SBenoît Canet static const MemoryRegionOps integratorcm_ops = { 26471d9bc50SBenoît Canet .read = integratorcm_read, 26571d9bc50SBenoît Canet .write = integratorcm_write, 26671d9bc50SBenoît Canet .endianness = DEVICE_NATIVE_ENDIAN, 267b5ff1b31Sbellard }; 268b5ff1b31Sbellard 269a1f42e0cSxiaoqiang.zhao static void integratorcm_init(Object *obj) 270b5ff1b31Sbellard { 271a1f42e0cSxiaoqiang.zhao IntegratorCMState *s = INTEGRATOR_CM(obj); 272b5ff1b31Sbellard 273b5ff1b31Sbellard s->cm_osc = 0x01000048; 274b5ff1b31Sbellard /* ??? What should the high bits of this value be? */ 275b5ff1b31Sbellard s->cm_auxosc = 0x0007feff; 276b5ff1b31Sbellard s->cm_sdram = 0x00011122; 277e9d9ee23SJakub Jermar memcpy(integrator_spd + 73, "QEMU-MEMORY", 11); 278e9d9ee23SJakub Jermar s->cm_init = 0x00000112; 279e9d9ee23SJakub Jermar s->cm_refcnt_offset = muldiv64(qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL), 24, 280e9d9ee23SJakub Jermar 1000); 281e9d9ee23SJakub Jermar 282e9d9ee23SJakub Jermar /* ??? Save/restore. */ 283e9d9ee23SJakub Jermar } 284e9d9ee23SJakub Jermar 285e9d9ee23SJakub Jermar static void integratorcm_realize(DeviceState *d, Error **errp) 286e9d9ee23SJakub Jermar { 287e9d9ee23SJakub Jermar IntegratorCMState *s = INTEGRATOR_CM(d); 2888720daadSThomas Huth SysBusDevice *dev = SYS_BUS_DEVICE(d); 2898720daadSThomas Huth Error *local_err = NULL; 2908720daadSThomas Huth 2918720daadSThomas Huth memory_region_init_ram(&s->flash, OBJECT(d), "integrator.flash", 0x100000, 2928720daadSThomas Huth &local_err); 2938720daadSThomas Huth if (local_err) { 2948720daadSThomas Huth error_propagate(errp, local_err); 2958720daadSThomas Huth return; 2968720daadSThomas Huth } 2978720daadSThomas Huth 2988720daadSThomas Huth memory_region_init_io(&s->iomem, OBJECT(d), &integratorcm_ops, s, 2998720daadSThomas Huth "integratorcm", 0x00800000); 3008720daadSThomas Huth sysbus_init_mmio(dev, &s->iomem); 3018720daadSThomas Huth 3028720daadSThomas Huth integratorcm_do_remap(s); 303e9d9ee23SJakub Jermar 304ee6847d1SGerd Hoffmann if (s->memsz >= 256) { 305b5ff1b31Sbellard integrator_spd[31] = 64; 306b5ff1b31Sbellard s->cm_sdram |= 0x10; 307ee6847d1SGerd Hoffmann } else if (s->memsz >= 128) { 308b5ff1b31Sbellard integrator_spd[31] = 32; 309b5ff1b31Sbellard s->cm_sdram |= 0x0c; 310ee6847d1SGerd Hoffmann } else if (s->memsz >= 64) { 311b5ff1b31Sbellard integrator_spd[31] = 16; 312b5ff1b31Sbellard s->cm_sdram |= 0x08; 313ee6847d1SGerd Hoffmann } else if (s->memsz >= 32) { 314b5ff1b31Sbellard integrator_spd[31] = 4; 315b5ff1b31Sbellard s->cm_sdram |= 0x04; 316b5ff1b31Sbellard } else { 317b5ff1b31Sbellard integrator_spd[31] = 2; 318b5ff1b31Sbellard } 319b5ff1b31Sbellard } 320b5ff1b31Sbellard 321b5ff1b31Sbellard /* Integrator/CP hardware emulation. */ 322b5ff1b31Sbellard /* Primary interrupt controller. */ 323b5ff1b31Sbellard 32491b64626SAndreas Färber #define TYPE_INTEGRATOR_PIC "integrator_pic" 32591b64626SAndreas Färber #define INTEGRATOR_PIC(obj) \ 32691b64626SAndreas Färber OBJECT_CHECK(icp_pic_state, (obj), TYPE_INTEGRATOR_PIC) 32791b64626SAndreas Färber 32891b64626SAndreas Färber typedef struct icp_pic_state { 32991b64626SAndreas Färber /*< private >*/ 33091b64626SAndreas Färber SysBusDevice parent_obj; 33191b64626SAndreas Färber /*< public >*/ 33291b64626SAndreas Färber 33361074e46SBenoît Canet MemoryRegion iomem; 334b5ff1b31Sbellard uint32_t level; 335b5ff1b31Sbellard uint32_t irq_enabled; 336b5ff1b31Sbellard uint32_t fiq_enabled; 337d537cf6cSpbrook qemu_irq parent_irq; 338d537cf6cSpbrook qemu_irq parent_fiq; 339b5ff1b31Sbellard } icp_pic_state; 340b5ff1b31Sbellard 34126d32022SPavel Dovgalyuk static const VMStateDescription vmstate_icp_pic = { 34226d32022SPavel Dovgalyuk .name = "icp_pic", 34326d32022SPavel Dovgalyuk .version_id = 1, 34426d32022SPavel Dovgalyuk .minimum_version_id = 1, 34526d32022SPavel Dovgalyuk .fields = (VMStateField[]) { 34626d32022SPavel Dovgalyuk VMSTATE_UINT32(level, icp_pic_state), 34726d32022SPavel Dovgalyuk VMSTATE_UINT32(irq_enabled, icp_pic_state), 34826d32022SPavel Dovgalyuk VMSTATE_UINT32(fiq_enabled, icp_pic_state), 34926d32022SPavel Dovgalyuk VMSTATE_END_OF_LIST() 35026d32022SPavel Dovgalyuk } 35126d32022SPavel Dovgalyuk }; 35226d32022SPavel Dovgalyuk 353b5ff1b31Sbellard static void icp_pic_update(icp_pic_state *s) 354b5ff1b31Sbellard { 355b5ff1b31Sbellard uint32_t flags; 356b5ff1b31Sbellard 357b5ff1b31Sbellard flags = (s->level & s->irq_enabled); 358d537cf6cSpbrook qemu_set_irq(s->parent_irq, flags != 0); 359cdbdb648Spbrook flags = (s->level & s->fiq_enabled); 360d537cf6cSpbrook qemu_set_irq(s->parent_fiq, flags != 0); 361b5ff1b31Sbellard } 362b5ff1b31Sbellard 363cdbdb648Spbrook static void icp_pic_set_irq(void *opaque, int irq, int level) 364b5ff1b31Sbellard { 36580337b66Sbellard icp_pic_state *s = (icp_pic_state *)opaque; 366b5ff1b31Sbellard if (level) 36780337b66Sbellard s->level |= 1 << irq; 368b5ff1b31Sbellard else 36980337b66Sbellard s->level &= ~(1 << irq); 370b5ff1b31Sbellard icp_pic_update(s); 371b5ff1b31Sbellard } 372b5ff1b31Sbellard 373a8170e5eSAvi Kivity static uint64_t icp_pic_read(void *opaque, hwaddr offset, 37461074e46SBenoît Canet unsigned size) 375b5ff1b31Sbellard { 376b5ff1b31Sbellard icp_pic_state *s = (icp_pic_state *)opaque; 377b5ff1b31Sbellard 378b5ff1b31Sbellard switch (offset >> 2) { 379b5ff1b31Sbellard case 0: /* IRQ_STATUS */ 380b5ff1b31Sbellard return s->level & s->irq_enabled; 381b5ff1b31Sbellard case 1: /* IRQ_RAWSTAT */ 382b5ff1b31Sbellard return s->level; 383b5ff1b31Sbellard case 2: /* IRQ_ENABLESET */ 384b5ff1b31Sbellard return s->irq_enabled; 385b5ff1b31Sbellard case 4: /* INT_SOFTSET */ 386b5ff1b31Sbellard return s->level & 1; 387b5ff1b31Sbellard case 8: /* FRQ_STATUS */ 388b5ff1b31Sbellard return s->level & s->fiq_enabled; 389b5ff1b31Sbellard case 9: /* FRQ_RAWSTAT */ 390b5ff1b31Sbellard return s->level; 391b5ff1b31Sbellard case 10: /* FRQ_ENABLESET */ 392b5ff1b31Sbellard return s->fiq_enabled; 393b5ff1b31Sbellard case 3: /* IRQ_ENABLECLR */ 394b5ff1b31Sbellard case 5: /* INT_SOFTCLR */ 395b5ff1b31Sbellard case 11: /* FRQ_ENABLECLR */ 396b5ff1b31Sbellard default: 39729bfb117Spbrook printf ("icp_pic_read: Bad register offset 0x%x\n", (int)offset); 398b5ff1b31Sbellard return 0; 399b5ff1b31Sbellard } 400b5ff1b31Sbellard } 401b5ff1b31Sbellard 402a8170e5eSAvi Kivity static void icp_pic_write(void *opaque, hwaddr offset, 40361074e46SBenoît Canet uint64_t value, unsigned size) 404b5ff1b31Sbellard { 405b5ff1b31Sbellard icp_pic_state *s = (icp_pic_state *)opaque; 406b5ff1b31Sbellard 407b5ff1b31Sbellard switch (offset >> 2) { 408b5ff1b31Sbellard case 2: /* IRQ_ENABLESET */ 409b5ff1b31Sbellard s->irq_enabled |= value; 410b5ff1b31Sbellard break; 411b5ff1b31Sbellard case 3: /* IRQ_ENABLECLR */ 412b5ff1b31Sbellard s->irq_enabled &= ~value; 413b5ff1b31Sbellard break; 414b5ff1b31Sbellard case 4: /* INT_SOFTSET */ 415b5ff1b31Sbellard if (value & 1) 416d537cf6cSpbrook icp_pic_set_irq(s, 0, 1); 417b5ff1b31Sbellard break; 418b5ff1b31Sbellard case 5: /* INT_SOFTCLR */ 419b5ff1b31Sbellard if (value & 1) 420d537cf6cSpbrook icp_pic_set_irq(s, 0, 0); 421b5ff1b31Sbellard break; 422b5ff1b31Sbellard case 10: /* FRQ_ENABLESET */ 423b5ff1b31Sbellard s->fiq_enabled |= value; 424b5ff1b31Sbellard break; 425b5ff1b31Sbellard case 11: /* FRQ_ENABLECLR */ 426b5ff1b31Sbellard s->fiq_enabled &= ~value; 427b5ff1b31Sbellard break; 428b5ff1b31Sbellard case 0: /* IRQ_STATUS */ 429b5ff1b31Sbellard case 1: /* IRQ_RAWSTAT */ 430b5ff1b31Sbellard case 8: /* FRQ_STATUS */ 431b5ff1b31Sbellard case 9: /* FRQ_RAWSTAT */ 432b5ff1b31Sbellard default: 43329bfb117Spbrook printf ("icp_pic_write: Bad register offset 0x%x\n", (int)offset); 434b5ff1b31Sbellard return; 435b5ff1b31Sbellard } 436b5ff1b31Sbellard icp_pic_update(s); 437b5ff1b31Sbellard } 438b5ff1b31Sbellard 43961074e46SBenoît Canet static const MemoryRegionOps icp_pic_ops = { 44061074e46SBenoît Canet .read = icp_pic_read, 44161074e46SBenoît Canet .write = icp_pic_write, 44261074e46SBenoît Canet .endianness = DEVICE_NATIVE_ENDIAN, 443b5ff1b31Sbellard }; 444b5ff1b31Sbellard 445a1f42e0cSxiaoqiang.zhao static void icp_pic_init(Object *obj) 446b5ff1b31Sbellard { 447a1f42e0cSxiaoqiang.zhao DeviceState *dev = DEVICE(obj); 448a1f42e0cSxiaoqiang.zhao icp_pic_state *s = INTEGRATOR_PIC(obj); 449a1f42e0cSxiaoqiang.zhao SysBusDevice *sbd = SYS_BUS_DEVICE(obj); 450b5ff1b31Sbellard 45191b64626SAndreas Färber qdev_init_gpio_in(dev, icp_pic_set_irq, 32); 45291b64626SAndreas Färber sysbus_init_irq(sbd, &s->parent_irq); 45391b64626SAndreas Färber sysbus_init_irq(sbd, &s->parent_fiq); 454a1f42e0cSxiaoqiang.zhao memory_region_init_io(&s->iomem, obj, &icp_pic_ops, s, 45564bde0f3SPaolo Bonzini "icp-pic", 0x00800000); 45691b64626SAndreas Färber sysbus_init_mmio(sbd, &s->iomem); 457b5ff1b31Sbellard } 458b5ff1b31Sbellard 459b5ff1b31Sbellard /* CP control registers. */ 4600c36493eSBenoît Canet 461ffc8542aSJan Kiszka #define TYPE_ICP_CONTROL_REGS "icp-ctrl-regs" 462ffc8542aSJan Kiszka #define ICP_CONTROL_REGS(obj) \ 463ffc8542aSJan Kiszka OBJECT_CHECK(ICPCtrlRegsState, (obj), TYPE_ICP_CONTROL_REGS) 464ffc8542aSJan Kiszka 465ffc8542aSJan Kiszka typedef struct ICPCtrlRegsState { 466ffc8542aSJan Kiszka /*< private >*/ 467ffc8542aSJan Kiszka SysBusDevice parent_obj; 468ffc8542aSJan Kiszka /*< public >*/ 469ffc8542aSJan Kiszka 470ffc8542aSJan Kiszka MemoryRegion iomem; 47183d0cf89SJan Kiszka 47283d0cf89SJan Kiszka qemu_irq mmc_irq; 47383d0cf89SJan Kiszka uint32_t intreg_state; 474ffc8542aSJan Kiszka } ICPCtrlRegsState; 475ffc8542aSJan Kiszka 47683d0cf89SJan Kiszka #define ICP_GPIO_MMC_WPROT "mmc-wprot" 47783d0cf89SJan Kiszka #define ICP_GPIO_MMC_CARDIN "mmc-cardin" 47883d0cf89SJan Kiszka 47983d0cf89SJan Kiszka #define ICP_INTREG_WPROT (1 << 0) 48083d0cf89SJan Kiszka #define ICP_INTREG_CARDIN (1 << 3) 48183d0cf89SJan Kiszka 48226d32022SPavel Dovgalyuk static const VMStateDescription vmstate_icp_control = { 48326d32022SPavel Dovgalyuk .name = "icp_control", 48426d32022SPavel Dovgalyuk .version_id = 1, 48526d32022SPavel Dovgalyuk .minimum_version_id = 1, 48626d32022SPavel Dovgalyuk .fields = (VMStateField[]) { 48726d32022SPavel Dovgalyuk VMSTATE_UINT32(intreg_state, ICPCtrlRegsState), 48826d32022SPavel Dovgalyuk VMSTATE_END_OF_LIST() 48926d32022SPavel Dovgalyuk } 49026d32022SPavel Dovgalyuk }; 49126d32022SPavel Dovgalyuk 492a8170e5eSAvi Kivity static uint64_t icp_control_read(void *opaque, hwaddr offset, 4930c36493eSBenoît Canet unsigned size) 494b5ff1b31Sbellard { 49583d0cf89SJan Kiszka ICPCtrlRegsState *s = opaque; 49683d0cf89SJan Kiszka 497b5ff1b31Sbellard switch (offset >> 2) { 498b5ff1b31Sbellard case 0: /* CP_IDFIELD */ 499b5ff1b31Sbellard return 0x41034003; 500b5ff1b31Sbellard case 1: /* CP_FLASHPROG */ 501b5ff1b31Sbellard return 0; 502b5ff1b31Sbellard case 2: /* CP_INTREG */ 50383d0cf89SJan Kiszka return s->intreg_state; 504b5ff1b31Sbellard case 3: /* CP_DECODE */ 505b5ff1b31Sbellard return 0x11; 506b5ff1b31Sbellard default: 5072ac71179SPaul Brook hw_error("icp_control_read: Bad offset %x\n", (int)offset); 508b5ff1b31Sbellard return 0; 509b5ff1b31Sbellard } 510b5ff1b31Sbellard } 511b5ff1b31Sbellard 512a8170e5eSAvi Kivity static void icp_control_write(void *opaque, hwaddr offset, 5130c36493eSBenoît Canet uint64_t value, unsigned size) 514b5ff1b31Sbellard { 51583d0cf89SJan Kiszka ICPCtrlRegsState *s = opaque; 51683d0cf89SJan Kiszka 517b5ff1b31Sbellard switch (offset >> 2) { 518b5ff1b31Sbellard case 2: /* CP_INTREG */ 51983d0cf89SJan Kiszka s->intreg_state &= ~(value & ICP_INTREG_CARDIN); 52083d0cf89SJan Kiszka qemu_set_irq(s->mmc_irq, !!(s->intreg_state & ICP_INTREG_CARDIN)); 52183d0cf89SJan Kiszka break; 52283d0cf89SJan Kiszka case 1: /* CP_FLASHPROG */ 523b5ff1b31Sbellard case 3: /* CP_DECODE */ 524b5ff1b31Sbellard /* Nothing interesting implemented yet. */ 525b5ff1b31Sbellard break; 526b5ff1b31Sbellard default: 5272ac71179SPaul Brook hw_error("icp_control_write: Bad offset %x\n", (int)offset); 528b5ff1b31Sbellard } 529b5ff1b31Sbellard } 5300c36493eSBenoît Canet 5310c36493eSBenoît Canet static const MemoryRegionOps icp_control_ops = { 5320c36493eSBenoît Canet .read = icp_control_read, 5330c36493eSBenoît Canet .write = icp_control_write, 5340c36493eSBenoît Canet .endianness = DEVICE_NATIVE_ENDIAN, 535b5ff1b31Sbellard }; 536b5ff1b31Sbellard 53783d0cf89SJan Kiszka static void icp_control_mmc_wprot(void *opaque, int line, int level) 53883d0cf89SJan Kiszka { 53983d0cf89SJan Kiszka ICPCtrlRegsState *s = opaque; 54083d0cf89SJan Kiszka 54183d0cf89SJan Kiszka s->intreg_state &= ~ICP_INTREG_WPROT; 54283d0cf89SJan Kiszka if (level) { 54383d0cf89SJan Kiszka s->intreg_state |= ICP_INTREG_WPROT; 54483d0cf89SJan Kiszka } 54583d0cf89SJan Kiszka } 54683d0cf89SJan Kiszka 54783d0cf89SJan Kiszka static void icp_control_mmc_cardin(void *opaque, int line, int level) 54883d0cf89SJan Kiszka { 54983d0cf89SJan Kiszka ICPCtrlRegsState *s = opaque; 55083d0cf89SJan Kiszka 55183d0cf89SJan Kiszka /* line is released by writing to CP_INTREG */ 55283d0cf89SJan Kiszka if (level) { 55383d0cf89SJan Kiszka s->intreg_state |= ICP_INTREG_CARDIN; 55483d0cf89SJan Kiszka qemu_set_irq(s->mmc_irq, 1); 55583d0cf89SJan Kiszka } 55683d0cf89SJan Kiszka } 55783d0cf89SJan Kiszka 558ffc8542aSJan Kiszka static void icp_control_init(Object *obj) 559b5ff1b31Sbellard { 560ffc8542aSJan Kiszka SysBusDevice *sbd = SYS_BUS_DEVICE(obj); 561ffc8542aSJan Kiszka ICPCtrlRegsState *s = ICP_CONTROL_REGS(obj); 56283d0cf89SJan Kiszka DeviceState *dev = DEVICE(obj); 563b5ff1b31Sbellard 564ffc8542aSJan Kiszka memory_region_init_io(&s->iomem, OBJECT(s), &icp_control_ops, s, 565ffc8542aSJan Kiszka "icp_ctrl_regs", 0x00800000); 566ffc8542aSJan Kiszka sysbus_init_mmio(sbd, &s->iomem); 56783d0cf89SJan Kiszka 56883d0cf89SJan Kiszka qdev_init_gpio_in_named(dev, icp_control_mmc_wprot, ICP_GPIO_MMC_WPROT, 1); 56983d0cf89SJan Kiszka qdev_init_gpio_in_named(dev, icp_control_mmc_cardin, 57083d0cf89SJan Kiszka ICP_GPIO_MMC_CARDIN, 1); 57183d0cf89SJan Kiszka sysbus_init_irq(sbd, &s->mmc_irq); 572b5ff1b31Sbellard } 573b5ff1b31Sbellard 574b5ff1b31Sbellard 575b5ff1b31Sbellard /* Board init. */ 576b5ff1b31Sbellard 577f93eb9ffSbalrog static struct arm_boot_info integrator_binfo = { 578f93eb9ffSbalrog .loader_start = 0x0, 579f93eb9ffSbalrog .board_id = 0x113, 580f93eb9ffSbalrog }; 581f93eb9ffSbalrog 5823ef96221SMarcel Apfelbaum static void integratorcp_init(MachineState *machine) 583b5ff1b31Sbellard { 5843ef96221SMarcel Apfelbaum ram_addr_t ram_size = machine->ram_size; 585223a72f1SGreg Bellows Object *cpuobj; 586393a9eabSAndreas Färber ARMCPU *cpu; 587211adf4dSAvi Kivity MemoryRegion *address_space_mem = get_system_memory(); 588211adf4dSAvi Kivity MemoryRegion *ram = g_new(MemoryRegion, 1); 589211adf4dSAvi Kivity MemoryRegion *ram_alias = g_new(MemoryRegion, 1); 590a7086888SPaul Brook qemu_irq pic[32]; 59183d0cf89SJan Kiszka DeviceState *dev, *sic, *icp; 592a7086888SPaul Brook int i; 593b5ff1b31Sbellard 594ba1ba5ccSIgor Mammedov cpuobj = object_new(machine->cpu_type); 595223a72f1SGreg Bellows 59661e2f352SGreg Bellows /* By default ARM1176 CPUs have EL3 enabled. This board does not 59761e2f352SGreg Bellows * currently support EL3 so the CPU EL3 property is disabled before 59861e2f352SGreg Bellows * realization. 59961e2f352SGreg Bellows */ 60061e2f352SGreg Bellows if (object_property_find(cpuobj, "has_el3", NULL)) { 601007b0657SMarkus Armbruster object_property_set_bool(cpuobj, false, "has_el3", &error_fatal); 60261e2f352SGreg Bellows } 60361e2f352SGreg Bellows 604007b0657SMarkus Armbruster object_property_set_bool(cpuobj, true, "realized", &error_fatal); 605223a72f1SGreg Bellows 606223a72f1SGreg Bellows cpu = ARM_CPU(cpuobj); 607223a72f1SGreg Bellows 608c8623c02SDirk Müller memory_region_allocate_system_memory(ram, NULL, "integrator.ram", 609c8623c02SDirk Müller ram_size); 610b5ff1b31Sbellard /* ??? On a real system the first 1Mb is mapped as SSRAM or boot flash. */ 6111235fc06Sths /* ??? RAM should repeat to fill physical memory space. */ 612b5ff1b31Sbellard /* SDRAM at address zero*/ 613211adf4dSAvi Kivity memory_region_add_subregion(address_space_mem, 0, ram); 614b5ff1b31Sbellard /* And again at address 0x80000000 */ 6152c9b15caSPaolo Bonzini memory_region_init_alias(ram_alias, NULL, "ram.alias", ram, 0, ram_size); 616211adf4dSAvi Kivity memory_region_add_subregion(address_space_mem, 0x80000000, ram_alias); 617b5ff1b31Sbellard 618257ec289SAndreas Färber dev = qdev_create(NULL, TYPE_INTEGRATOR_CM); 619ee6847d1SGerd Hoffmann qdev_prop_set_uint32(dev, "memsz", ram_size >> 20); 620e23a1b33SMarkus Armbruster qdev_init_nofail(dev); 621a7086888SPaul Brook sysbus_mmio_map((SysBusDevice *)dev, 0, 0x10000000); 622a7086888SPaul Brook 62391b64626SAndreas Färber dev = sysbus_create_varargs(TYPE_INTEGRATOR_PIC, 0x14000000, 62499d228d6SPeter Maydell qdev_get_gpio_in(DEVICE(cpu), ARM_CPU_IRQ), 62599d228d6SPeter Maydell qdev_get_gpio_in(DEVICE(cpu), ARM_CPU_FIQ), 62699d228d6SPeter Maydell NULL); 627a7086888SPaul Brook for (i = 0; i < 32; i++) { 628067a3ddcSPaul Brook pic[i] = qdev_get_gpio_in(dev, i); 629a7086888SPaul Brook } 63083d0cf89SJan Kiszka sic = sysbus_create_simple(TYPE_INTEGRATOR_PIC, 0xca000000, pic[26]); 6316a824ec3SPaul Brook sysbus_create_varargs("integrator_pit", 0x13000000, 6326a824ec3SPaul Brook pic[5], pic[6], pic[7], NULL); 633a63bdb31SPaul Brook sysbus_create_simple("pl031", 0x15000000, pic[8]); 6349bca0edbSPeter Maydell pl011_create(0x16000000, pic[1], serial_hd(0)); 6359bca0edbSPeter Maydell pl011_create(0x17000000, pic[2], serial_hd(1)); 63683d0cf89SJan Kiszka icp = sysbus_create_simple(TYPE_ICP_CONTROL_REGS, 0xcb000000, 63783d0cf89SJan Kiszka qdev_get_gpio_in(sic, 3)); 63886394e96SPaul Brook sysbus_create_simple("pl050_keyboard", 0x18000000, pic[3]); 63986394e96SPaul Brook sysbus_create_simple("pl050_mouse", 0x19000000, pic[4]); 640b8616055SAlex Bennée sysbus_create_simple(TYPE_INTEGRATOR_DEBUG, 0x1a000000, 0); 64183d0cf89SJan Kiszka 64283d0cf89SJan Kiszka dev = sysbus_create_varargs("pl181", 0x1c000000, pic[23], pic[24], NULL); 64383d0cf89SJan Kiszka qdev_connect_gpio_out(dev, 0, 64483d0cf89SJan Kiszka qdev_get_gpio_in_named(icp, ICP_GPIO_MMC_WPROT, 0)); 64583d0cf89SJan Kiszka qdev_connect_gpio_out(dev, 1, 64683d0cf89SJan Kiszka qdev_get_gpio_in_named(icp, ICP_GPIO_MMC_CARDIN, 0)); 64783d0cf89SJan Kiszka 648a005d073SStefan Hajnoczi if (nd_table[0].used) 649d537cf6cSpbrook smc91c111_init(&nd_table[0], 0xc8000000, pic[27]); 6502e9bdce5SPaul Brook 6512e9bdce5SPaul Brook sysbus_create_simple("pl110", 0xc0000000, pic[22]); 652b5ff1b31Sbellard 653f93eb9ffSbalrog integrator_binfo.ram_size = ram_size; 654*2744ece8STao Xu arm_load_kernel(cpu, machine, &integrator_binfo); 655b5ff1b31Sbellard } 656b5ff1b31Sbellard 657e264d29dSEduardo Habkost static void integratorcp_machine_init(MachineClass *mc) 658f80f9ec9SAnthony Liguori { 659e264d29dSEduardo Habkost mc->desc = "ARM Integrator/CP (ARM926EJ-S)"; 660e264d29dSEduardo Habkost mc->init = integratorcp_init; 6614672cbd7SPeter Maydell mc->ignore_memory_transaction_failures = true; 662ba1ba5ccSIgor Mammedov mc->default_cpu_type = ARM_CPU_TYPE_NAME("arm926"); 663f80f9ec9SAnthony Liguori } 664f80f9ec9SAnthony Liguori 665e264d29dSEduardo Habkost DEFINE_MACHINE("integratorcp", integratorcp_machine_init) 666f80f9ec9SAnthony Liguori 667999e12bbSAnthony Liguori static Property core_properties[] = { 668257ec289SAndreas Färber DEFINE_PROP_UINT32("memsz", IntegratorCMState, memsz, 0), 669bb36f66aSGerd Hoffmann DEFINE_PROP_END_OF_LIST(), 670999e12bbSAnthony Liguori }; 671999e12bbSAnthony Liguori 672999e12bbSAnthony Liguori static void core_class_init(ObjectClass *klass, void *data) 673999e12bbSAnthony Liguori { 67439bffca2SAnthony Liguori DeviceClass *dc = DEVICE_CLASS(klass); 675999e12bbSAnthony Liguori 67639bffca2SAnthony Liguori dc->props = core_properties; 677e9d9ee23SJakub Jermar dc->realize = integratorcm_realize; 67826d32022SPavel Dovgalyuk dc->vmsd = &vmstate_integratorcm; 67926d32022SPavel Dovgalyuk } 68026d32022SPavel Dovgalyuk 68126d32022SPavel Dovgalyuk static void icp_pic_class_init(ObjectClass *klass, void *data) 68226d32022SPavel Dovgalyuk { 68326d32022SPavel Dovgalyuk DeviceClass *dc = DEVICE_CLASS(klass); 68426d32022SPavel Dovgalyuk 68526d32022SPavel Dovgalyuk dc->vmsd = &vmstate_icp_pic; 68626d32022SPavel Dovgalyuk } 68726d32022SPavel Dovgalyuk 68826d32022SPavel Dovgalyuk static void icp_control_class_init(ObjectClass *klass, void *data) 68926d32022SPavel Dovgalyuk { 69026d32022SPavel Dovgalyuk DeviceClass *dc = DEVICE_CLASS(klass); 69126d32022SPavel Dovgalyuk 69226d32022SPavel Dovgalyuk dc->vmsd = &vmstate_icp_control; 693ee6847d1SGerd Hoffmann } 694999e12bbSAnthony Liguori 6958c43a6f0SAndreas Färber static const TypeInfo core_info = { 696257ec289SAndreas Färber .name = TYPE_INTEGRATOR_CM, 69739bffca2SAnthony Liguori .parent = TYPE_SYS_BUS_DEVICE, 698257ec289SAndreas Färber .instance_size = sizeof(IntegratorCMState), 699a1f42e0cSxiaoqiang.zhao .instance_init = integratorcm_init, 700999e12bbSAnthony Liguori .class_init = core_class_init, 701999e12bbSAnthony Liguori }; 702999e12bbSAnthony Liguori 7038c43a6f0SAndreas Färber static const TypeInfo icp_pic_info = { 70491b64626SAndreas Färber .name = TYPE_INTEGRATOR_PIC, 70539bffca2SAnthony Liguori .parent = TYPE_SYS_BUS_DEVICE, 70639bffca2SAnthony Liguori .instance_size = sizeof(icp_pic_state), 707a1f42e0cSxiaoqiang.zhao .instance_init = icp_pic_init, 70826d32022SPavel Dovgalyuk .class_init = icp_pic_class_init, 709ee6847d1SGerd Hoffmann }; 710ee6847d1SGerd Hoffmann 711ffc8542aSJan Kiszka static const TypeInfo icp_ctrl_regs_info = { 712ffc8542aSJan Kiszka .name = TYPE_ICP_CONTROL_REGS, 713ffc8542aSJan Kiszka .parent = TYPE_SYS_BUS_DEVICE, 714ffc8542aSJan Kiszka .instance_size = sizeof(ICPCtrlRegsState), 715ffc8542aSJan Kiszka .instance_init = icp_control_init, 71626d32022SPavel Dovgalyuk .class_init = icp_control_class_init, 717ffc8542aSJan Kiszka }; 718ffc8542aSJan Kiszka 71983f7d43aSAndreas Färber static void integratorcp_register_types(void) 720a7086888SPaul Brook { 72139bffca2SAnthony Liguori type_register_static(&icp_pic_info); 72239bffca2SAnthony Liguori type_register_static(&core_info); 723ffc8542aSJan Kiszka type_register_static(&icp_ctrl_regs_info); 724a7086888SPaul Brook } 725a7086888SPaul Brook 72683f7d43aSAndreas Färber type_init(integratorcp_register_types) 727