xref: /qemu/include/hw/intc/arm_gicv3_common.h (revision 6692aac41119906409dfa634ecbe3ef1634b5e5c)
1ff8f06eeSShlomo Pongratz /*
2ff8f06eeSShlomo Pongratz  * ARM GIC support
3ff8f06eeSShlomo Pongratz  *
4ff8f06eeSShlomo Pongratz  * Copyright (c) 2012 Linaro Limited
5ff8f06eeSShlomo Pongratz  * Copyright (c) 2015 Huawei.
607e2034dSPavel Fedin  * Copyright (c) 2015 Samsung Electronics Co., Ltd.
7ff8f06eeSShlomo Pongratz  * Written by Peter Maydell
807e2034dSPavel Fedin  * Reworked for GICv3 by Shlomo Pongratz and Pavel Fedin
9ff8f06eeSShlomo Pongratz  *
10ff8f06eeSShlomo Pongratz  * This program is free software; you can redistribute it and/or modify
11ff8f06eeSShlomo Pongratz  * it under the terms of the GNU General Public License as published by
12ff8f06eeSShlomo Pongratz  * the Free Software Foundation, either version 2 of the License, or
13ff8f06eeSShlomo Pongratz  * (at your option) any later version.
14ff8f06eeSShlomo Pongratz  *
15ff8f06eeSShlomo Pongratz  * This program is distributed in the hope that it will be useful,
16ff8f06eeSShlomo Pongratz  * but WITHOUT ANY WARRANTY; without even the implied warranty of
17ff8f06eeSShlomo Pongratz  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18ff8f06eeSShlomo Pongratz  * GNU General Public License for more details.
19ff8f06eeSShlomo Pongratz  *
20ff8f06eeSShlomo Pongratz  * You should have received a copy of the GNU General Public License along
21ff8f06eeSShlomo Pongratz  * with this program; if not, see <http://www.gnu.org/licenses/>.
22ff8f06eeSShlomo Pongratz  */
23ff8f06eeSShlomo Pongratz 
24ff8f06eeSShlomo Pongratz #ifndef HW_ARM_GICV3_COMMON_H
25ff8f06eeSShlomo Pongratz #define HW_ARM_GICV3_COMMON_H
26ff8f06eeSShlomo Pongratz 
27ff8f06eeSShlomo Pongratz #include "hw/sysbus.h"
28ff8f06eeSShlomo Pongratz #include "hw/intc/arm_gic_common.h"
29ff8f06eeSShlomo Pongratz 
3007e2034dSPavel Fedin /*
3107e2034dSPavel Fedin  * Maximum number of possible interrupts, determined by the GIC architecture.
3207e2034dSPavel Fedin  * Note that this does not include LPIs. When implemented, these should be
3307e2034dSPavel Fedin  * dealt with separately.
3407e2034dSPavel Fedin  */
3507e2034dSPavel Fedin #define GICV3_MAXIRQ 1020
3607e2034dSPavel Fedin #define GICV3_MAXSPI (GICV3_MAXIRQ - GIC_INTERNAL)
3707e2034dSPavel Fedin 
38c8efd802SAndrew Jones /* Number of SGI target-list bits */
39c8efd802SAndrew Jones #define GICV3_TARGETLIST_BITS 16
40c8efd802SAndrew Jones 
414eb833b5SPeter Maydell /* Maximum number of list registers (architectural limit) */
424eb833b5SPeter Maydell #define GICV3_LR_MAX 16
434eb833b5SPeter Maydell 
4407e2034dSPavel Fedin /* Minimum BPR for Secure, or when security not enabled */
4507e2034dSPavel Fedin #define GIC_MIN_BPR 0
4607e2034dSPavel Fedin /* Minimum BPR for Nonsecure when security is enabled */
4707e2034dSPavel Fedin #define GIC_MIN_BPR_NS (GIC_MIN_BPR + 1)
4807e2034dSPavel Fedin 
4907e2034dSPavel Fedin /* For some distributor fields we want to model the array of 32-bit
5007e2034dSPavel Fedin  * register values which hold various bitmaps corresponding to enabled,
5107e2034dSPavel Fedin  * pending, etc bits. These macros and functions facilitate that; the
5207e2034dSPavel Fedin  * APIs are generally modelled on the generic bitmap.h functions
5307e2034dSPavel Fedin  * (which are unsuitable here because they use 'unsigned long' as the
5407e2034dSPavel Fedin  * underlying storage type, which is very awkward when you need to
5507e2034dSPavel Fedin  * access the data as 32-bit values.)
5607e2034dSPavel Fedin  * Each bitmap contains a bit for each interrupt. Although there is
5707e2034dSPavel Fedin  * space for the PPIs and SGIs, those bits (the first 32) are never
5807e2034dSPavel Fedin  * used as that state lives in the redistributor. The unused bits are
5907e2034dSPavel Fedin  * provided purely so that interrupt X's state is always in bit X; this
6007e2034dSPavel Fedin  * avoids bugs where we forget to subtract GIC_INTERNAL from an
6107e2034dSPavel Fedin  * interrupt number.
6207e2034dSPavel Fedin  */
6307e2034dSPavel Fedin #define GICV3_BMP_SIZE (DIV_ROUND_UP(GICV3_MAXIRQ, 32))
6407e2034dSPavel Fedin 
6507e2034dSPavel Fedin #define GIC_DECLARE_BITMAP(name) \
6607e2034dSPavel Fedin     uint32_t name[GICV3_BMP_SIZE]
6707e2034dSPavel Fedin 
6807e2034dSPavel Fedin #define GIC_BIT_MASK(nr) (1U << ((nr) % 32))
6907e2034dSPavel Fedin #define GIC_BIT_WORD(nr) ((nr) / 32)
7007e2034dSPavel Fedin 
7107e2034dSPavel Fedin static inline void gic_bmp_set_bit(int nr, uint32_t *addr)
7207e2034dSPavel Fedin {
7307e2034dSPavel Fedin     uint32_t mask = GIC_BIT_MASK(nr);
7407e2034dSPavel Fedin     uint32_t *p = addr + GIC_BIT_WORD(nr);
7507e2034dSPavel Fedin 
7607e2034dSPavel Fedin     *p |= mask;
7707e2034dSPavel Fedin }
7807e2034dSPavel Fedin 
7907e2034dSPavel Fedin static inline void gic_bmp_clear_bit(int nr, uint32_t *addr)
8007e2034dSPavel Fedin {
8107e2034dSPavel Fedin     uint32_t mask = GIC_BIT_MASK(nr);
8207e2034dSPavel Fedin     uint32_t *p = addr + GIC_BIT_WORD(nr);
8307e2034dSPavel Fedin 
8407e2034dSPavel Fedin     *p &= ~mask;
8507e2034dSPavel Fedin }
8607e2034dSPavel Fedin 
8707e2034dSPavel Fedin static inline int gic_bmp_test_bit(int nr, const uint32_t *addr)
8807e2034dSPavel Fedin {
8907e2034dSPavel Fedin     return 1U & (addr[GIC_BIT_WORD(nr)] >> (nr & 31));
9007e2034dSPavel Fedin }
9107e2034dSPavel Fedin 
9207e2034dSPavel Fedin static inline void gic_bmp_replace_bit(int nr, uint32_t *addr, int val)
9307e2034dSPavel Fedin {
9407e2034dSPavel Fedin     uint32_t mask = GIC_BIT_MASK(nr);
9507e2034dSPavel Fedin     uint32_t *p = addr + GIC_BIT_WORD(nr);
9607e2034dSPavel Fedin 
9707e2034dSPavel Fedin     *p &= ~mask;
9807e2034dSPavel Fedin     *p |= (val & 1U) << (nr % 32);
9907e2034dSPavel Fedin }
10007e2034dSPavel Fedin 
10107e2034dSPavel Fedin /* Return a pointer to the 32-bit word containing the specified bit. */
10207e2034dSPavel Fedin static inline uint32_t *gic_bmp_ptr32(uint32_t *addr, int nr)
10307e2034dSPavel Fedin {
10407e2034dSPavel Fedin     return addr + GIC_BIT_WORD(nr);
10507e2034dSPavel Fedin }
10607e2034dSPavel Fedin 
10707e2034dSPavel Fedin typedef struct GICv3State GICv3State;
10807e2034dSPavel Fedin typedef struct GICv3CPUState GICv3CPUState;
10907e2034dSPavel Fedin 
11007e2034dSPavel Fedin /* Some CPU interface registers come in three flavours:
11107e2034dSPavel Fedin  * Group0, Group1 (Secure) and Group1 (NonSecure)
11207e2034dSPavel Fedin  * (where the latter two are exposed as a single banked system register).
11307e2034dSPavel Fedin  * In the state struct they are implemented as a 3-element array which
11407e2034dSPavel Fedin  * can be indexed into by the GICV3_G0, GICV3_G1 and GICV3_G1NS constants.
11507e2034dSPavel Fedin  * If the CPU doesn't support EL3 then the G1 element is unused.
11607e2034dSPavel Fedin  *
11707e2034dSPavel Fedin  * These constants are also used to communicate the group to use for
11807e2034dSPavel Fedin  * an interrupt or SGI when it is passed between the cpu interface and
11907e2034dSPavel Fedin  * the redistributor or distributor. For those purposes the receiving end
12007e2034dSPavel Fedin  * must be prepared to cope with a Group 1 Secure interrupt even if it does
12107e2034dSPavel Fedin  * not have security support enabled, because security can be disabled
12207e2034dSPavel Fedin  * independently in the CPU and in the GIC. In that case the receiver should
12307e2034dSPavel Fedin  * treat an incoming Group 1 Secure interrupt as if it were Group 0.
12407e2034dSPavel Fedin  * (This architectural requirement is why the _G1 element is the unused one
12507e2034dSPavel Fedin  * in a no-EL3 CPU:  we would otherwise have to translate back and forth
12607e2034dSPavel Fedin  * between (G0, G1NS) from the distributor and (G0, G1) in the CPU i/f.)
12707e2034dSPavel Fedin  */
12807e2034dSPavel Fedin #define GICV3_G0 0
12907e2034dSPavel Fedin #define GICV3_G1 1
13007e2034dSPavel Fedin #define GICV3_G1NS 2
13107e2034dSPavel Fedin 
13207e2034dSPavel Fedin /* ICC_CTLR_EL1, GICD_STATUSR and GICR_STATUSR are banked but not
13307e2034dSPavel Fedin  * group-related, so those indices are just 0 for S and 1 for NS.
13407e2034dSPavel Fedin  * (If the CPU or the GIC, respectively, don't support the Security
13507e2034dSPavel Fedin  * extensions then the S element is unused.)
13607e2034dSPavel Fedin  */
13707e2034dSPavel Fedin #define GICV3_S 0
13807e2034dSPavel Fedin #define GICV3_NS 1
13907e2034dSPavel Fedin 
140ce187c3cSPeter Maydell typedef struct {
141ce187c3cSPeter Maydell     int irq;
142ce187c3cSPeter Maydell     uint8_t prio;
143ce187c3cSPeter Maydell     int grp;
144ce187c3cSPeter Maydell } PendingIrq;
145ce187c3cSPeter Maydell 
14607e2034dSPavel Fedin struct GICv3CPUState {
14707e2034dSPavel Fedin     GICv3State *gic;
14807e2034dSPavel Fedin     CPUState *cpu;
1493faf2b0cSPeter Maydell     qemu_irq parent_irq;
1503faf2b0cSPeter Maydell     qemu_irq parent_fiq;
151b53db42bSPeter Maydell     qemu_irq parent_virq;
152b53db42bSPeter Maydell     qemu_irq parent_vfiq;
153c5fc89b3SPeter Maydell     qemu_irq maintenance_irq;
15407e2034dSPavel Fedin 
15507e2034dSPavel Fedin     /* Redistributor */
15607e2034dSPavel Fedin     uint32_t level;                  /* Current IRQ level */
15707e2034dSPavel Fedin     /* RD_base page registers */
15807e2034dSPavel Fedin     uint32_t gicr_ctlr;
15907e2034dSPavel Fedin     uint64_t gicr_typer;
16007e2034dSPavel Fedin     uint32_t gicr_statusr[2];
16107e2034dSPavel Fedin     uint32_t gicr_waker;
16207e2034dSPavel Fedin     uint64_t gicr_propbaser;
16307e2034dSPavel Fedin     uint64_t gicr_pendbaser;
16407e2034dSPavel Fedin     /* SGI_base page registers */
16507e2034dSPavel Fedin     uint32_t gicr_igroupr0;
16607e2034dSPavel Fedin     uint32_t gicr_ienabler0;
16707e2034dSPavel Fedin     uint32_t gicr_ipendr0;
16807e2034dSPavel Fedin     uint32_t gicr_iactiver0;
16907e2034dSPavel Fedin     uint32_t edge_trigger; /* ICFGR0 and ICFGR1 even bits */
17007e2034dSPavel Fedin     uint32_t gicr_igrpmodr0;
17107e2034dSPavel Fedin     uint32_t gicr_nsacr;
17207e2034dSPavel Fedin     uint8_t gicr_ipriorityr[GIC_INTERNAL];
17307e2034dSPavel Fedin 
17407e2034dSPavel Fedin     /* CPU interface */
175*6692aac4SVijaya Kumar K     uint64_t icc_sre_el1;
17607e2034dSPavel Fedin     uint64_t icc_ctlr_el1[2];
17707e2034dSPavel Fedin     uint64_t icc_pmr_el1;
17807e2034dSPavel Fedin     uint64_t icc_bpr[3];
17907e2034dSPavel Fedin     uint64_t icc_apr[3][4];
18007e2034dSPavel Fedin     uint64_t icc_igrpen[3];
18107e2034dSPavel Fedin     uint64_t icc_ctlr_el3;
182ce187c3cSPeter Maydell 
1834eb833b5SPeter Maydell     /* Virtualization control interface */
1844eb833b5SPeter Maydell     uint64_t ich_apr[3][4]; /* ich_apr[GICV3_G1][x] never used */
1854eb833b5SPeter Maydell     uint64_t ich_hcr_el2;
1864eb833b5SPeter Maydell     uint64_t ich_lr_el2[GICV3_LR_MAX];
1874eb833b5SPeter Maydell     uint64_t ich_vmcr_el2;
1884eb833b5SPeter Maydell 
1894eb833b5SPeter Maydell     /* Properties of the CPU interface. These are initialized from
1904eb833b5SPeter Maydell      * the settings in the CPU proper.
1914eb833b5SPeter Maydell      * If the number of implemented list registers is 0 then the
1924eb833b5SPeter Maydell      * virtualization support is not implemented.
1934eb833b5SPeter Maydell      */
1944eb833b5SPeter Maydell     int num_list_regs;
1954eb833b5SPeter Maydell     int vpribits; /* number of virtual priority bits */
1964eb833b5SPeter Maydell     int vprebits; /* number of virtual preemption bits */
1974eb833b5SPeter Maydell 
198ce187c3cSPeter Maydell     /* Current highest priority pending interrupt for this CPU.
199ce187c3cSPeter Maydell      * This is cached information that can be recalculated from the
200ce187c3cSPeter Maydell      * real state above; it doesn't need to be migrated.
201ce187c3cSPeter Maydell      */
202ce187c3cSPeter Maydell     PendingIrq hppi;
203ce187c3cSPeter Maydell     /* This is temporary working state, to avoid a malloc in gicv3_update() */
204ce187c3cSPeter Maydell     bool seenbetter;
20507e2034dSPavel Fedin };
20607e2034dSPavel Fedin 
20707e2034dSPavel Fedin struct GICv3State {
208ff8f06eeSShlomo Pongratz     /*< private >*/
209ff8f06eeSShlomo Pongratz     SysBusDevice parent_obj;
210ff8f06eeSShlomo Pongratz     /*< public >*/
211ff8f06eeSShlomo Pongratz 
212ff8f06eeSShlomo Pongratz     MemoryRegion iomem_dist; /* Distributor */
213ff8f06eeSShlomo Pongratz     MemoryRegion iomem_redist; /* Redistributors */
214ff8f06eeSShlomo Pongratz 
215ff8f06eeSShlomo Pongratz     uint32_t num_cpu;
216ff8f06eeSShlomo Pongratz     uint32_t num_irq;
217ff8f06eeSShlomo Pongratz     uint32_t revision;
218ff8f06eeSShlomo Pongratz     bool security_extn;
21907e2034dSPavel Fedin     bool irq_reset_nonsecure;
220ff8f06eeSShlomo Pongratz 
221ff8f06eeSShlomo Pongratz     int dev_fd; /* kvm device fd if backed by kvm vgic support */
22207e2034dSPavel Fedin     Error *migration_blocker;
22307e2034dSPavel Fedin 
22407e2034dSPavel Fedin     /* Distributor */
22507e2034dSPavel Fedin 
22607e2034dSPavel Fedin     /* for a GIC with the security extensions the NS banked version of this
22707e2034dSPavel Fedin      * register is just an alias of bit 1 of the S banked version.
22807e2034dSPavel Fedin      */
22907e2034dSPavel Fedin     uint32_t gicd_ctlr;
23007e2034dSPavel Fedin     uint32_t gicd_statusr[2];
23107e2034dSPavel Fedin     GIC_DECLARE_BITMAP(group);        /* GICD_IGROUPR */
23207e2034dSPavel Fedin     GIC_DECLARE_BITMAP(grpmod);       /* GICD_IGRPMODR */
23307e2034dSPavel Fedin     GIC_DECLARE_BITMAP(enabled);      /* GICD_ISENABLER */
23407e2034dSPavel Fedin     GIC_DECLARE_BITMAP(pending);      /* GICD_ISPENDR */
23507e2034dSPavel Fedin     GIC_DECLARE_BITMAP(active);       /* GICD_ISACTIVER */
23607e2034dSPavel Fedin     GIC_DECLARE_BITMAP(level);        /* Current level */
23707e2034dSPavel Fedin     GIC_DECLARE_BITMAP(edge_trigger); /* GICD_ICFGR even bits */
23807e2034dSPavel Fedin     uint8_t gicd_ipriority[GICV3_MAXIRQ];
23907e2034dSPavel Fedin     uint64_t gicd_irouter[GICV3_MAXIRQ];
240ce187c3cSPeter Maydell     /* Cached information: pointer to the cpu i/f for the CPUs specified
241ce187c3cSPeter Maydell      * in the IROUTER registers
242ce187c3cSPeter Maydell      */
243ce187c3cSPeter Maydell     GICv3CPUState *gicd_irouter_target[GICV3_MAXIRQ];
24407e2034dSPavel Fedin     uint32_t gicd_nsacr[DIV_ROUND_UP(GICV3_MAXIRQ, 16)];
24507e2034dSPavel Fedin 
24607e2034dSPavel Fedin     GICv3CPUState *cpu;
24707e2034dSPavel Fedin };
24807e2034dSPavel Fedin 
24907e2034dSPavel Fedin #define GICV3_BITMAP_ACCESSORS(BMP)                                     \
25007e2034dSPavel Fedin     static inline void gicv3_gicd_##BMP##_set(GICv3State *s, int irq)   \
25107e2034dSPavel Fedin     {                                                                   \
25207e2034dSPavel Fedin         gic_bmp_set_bit(irq, s->BMP);                                   \
25307e2034dSPavel Fedin     }                                                                   \
25407e2034dSPavel Fedin     static inline int gicv3_gicd_##BMP##_test(GICv3State *s, int irq)   \
25507e2034dSPavel Fedin     {                                                                   \
25607e2034dSPavel Fedin         return gic_bmp_test_bit(irq, s->BMP);                           \
25707e2034dSPavel Fedin     }                                                                   \
25807e2034dSPavel Fedin     static inline void gicv3_gicd_##BMP##_clear(GICv3State *s, int irq) \
25907e2034dSPavel Fedin     {                                                                   \
26007e2034dSPavel Fedin         gic_bmp_clear_bit(irq, s->BMP);                                 \
26107e2034dSPavel Fedin     }                                                                   \
26207e2034dSPavel Fedin     static inline void gicv3_gicd_##BMP##_replace(GICv3State *s,        \
26307e2034dSPavel Fedin                                                   int irq, int value)   \
26407e2034dSPavel Fedin     {                                                                   \
26507e2034dSPavel Fedin         gic_bmp_replace_bit(irq, s->BMP, value);                        \
26607e2034dSPavel Fedin     }
26707e2034dSPavel Fedin 
26807e2034dSPavel Fedin GICV3_BITMAP_ACCESSORS(group)
26907e2034dSPavel Fedin GICV3_BITMAP_ACCESSORS(grpmod)
27007e2034dSPavel Fedin GICV3_BITMAP_ACCESSORS(enabled)
27107e2034dSPavel Fedin GICV3_BITMAP_ACCESSORS(pending)
27207e2034dSPavel Fedin GICV3_BITMAP_ACCESSORS(active)
27307e2034dSPavel Fedin GICV3_BITMAP_ACCESSORS(level)
27407e2034dSPavel Fedin GICV3_BITMAP_ACCESSORS(edge_trigger)
275ff8f06eeSShlomo Pongratz 
276ff8f06eeSShlomo Pongratz #define TYPE_ARM_GICV3_COMMON "arm-gicv3-common"
277ff8f06eeSShlomo Pongratz #define ARM_GICV3_COMMON(obj) \
278ff8f06eeSShlomo Pongratz      OBJECT_CHECK(GICv3State, (obj), TYPE_ARM_GICV3_COMMON)
279ff8f06eeSShlomo Pongratz #define ARM_GICV3_COMMON_CLASS(klass) \
280ff8f06eeSShlomo Pongratz      OBJECT_CLASS_CHECK(ARMGICv3CommonClass, (klass), TYPE_ARM_GICV3_COMMON)
281ff8f06eeSShlomo Pongratz #define ARM_GICV3_COMMON_GET_CLASS(obj) \
282ff8f06eeSShlomo Pongratz      OBJECT_GET_CLASS(ARMGICv3CommonClass, (obj), TYPE_ARM_GICV3_COMMON)
283ff8f06eeSShlomo Pongratz 
284ff8f06eeSShlomo Pongratz typedef struct ARMGICv3CommonClass {
285ff8f06eeSShlomo Pongratz     /*< private >*/
286ff8f06eeSShlomo Pongratz     SysBusDeviceClass parent_class;
287ff8f06eeSShlomo Pongratz     /*< public >*/
288ff8f06eeSShlomo Pongratz 
289ff8f06eeSShlomo Pongratz     void (*pre_save)(GICv3State *s);
290ff8f06eeSShlomo Pongratz     void (*post_load)(GICv3State *s);
291ff8f06eeSShlomo Pongratz } ARMGICv3CommonClass;
292ff8f06eeSShlomo Pongratz 
293ff8f06eeSShlomo Pongratz void gicv3_init_irqs_and_mmio(GICv3State *s, qemu_irq_handler handler,
294ff8f06eeSShlomo Pongratz                               const MemoryRegionOps *ops);
295ff8f06eeSShlomo Pongratz 
296ff8f06eeSShlomo Pongratz #endif
297