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24#include "priv.h"
25
26static void
27gk104_ibus_intr_hub(struct nvkm_subdev *ibus, int i)
28{
29 struct nvkm_device *device = ibus->device;
30 u32 addr = nvkm_rd32(device, 0x122120 + (i * 0x0800));
31 u32 data = nvkm_rd32(device, 0x122124 + (i * 0x0800));
32 u32 stat = nvkm_rd32(device, 0x122128 + (i * 0x0800));
33 nvkm_debug(ibus, "HUB%d: %06x %08x (%08x)\n", i, addr, data, stat);
34 nvkm_mask(device, 0x122128 + (i * 0x0800), 0x00000200, 0x00000000);
35}
36
37static void
38gk104_ibus_intr_rop(struct nvkm_subdev *ibus, int i)
39{
40 struct nvkm_device *device = ibus->device;
41 u32 addr = nvkm_rd32(device, 0x124120 + (i * 0x0800));
42 u32 data = nvkm_rd32(device, 0x124124 + (i * 0x0800));
43 u32 stat = nvkm_rd32(device, 0x124128 + (i * 0x0800));
44 nvkm_debug(ibus, "ROP%d: %06x %08x (%08x)\n", i, addr, data, stat);
45 nvkm_mask(device, 0x124128 + (i * 0x0800), 0x00000200, 0x00000000);
46}
47
48static void
49gk104_ibus_intr_gpc(struct nvkm_subdev *ibus, int i)
50{
51 struct nvkm_device *device = ibus->device;
52 u32 addr = nvkm_rd32(device, 0x128120 + (i * 0x0800));
53 u32 data = nvkm_rd32(device, 0x128124 + (i * 0x0800));
54 u32 stat = nvkm_rd32(device, 0x128128 + (i * 0x0800));
55 nvkm_debug(ibus, "GPC%d: %06x %08x (%08x)\n", i, addr, data, stat);
56 nvkm_mask(device, 0x128128 + (i * 0x0800), 0x00000200, 0x00000000);
57}
58
59void
60gk104_ibus_intr(struct nvkm_subdev *ibus)
61{
62 struct nvkm_device *device = ibus->device;
63 u32 intr0 = nvkm_rd32(device, 0x120058);
64 u32 intr1 = nvkm_rd32(device, 0x12005c);
65 u32 hubnr = nvkm_rd32(device, 0x120070);
66 u32 ropnr = nvkm_rd32(device, 0x120074);
67 u32 gpcnr = nvkm_rd32(device, 0x120078);
68 u32 i;
69
70 for (i = 0; (intr0 & 0x0000ff00) && i < hubnr; i++) {
71 u32 stat = 0x00000100 << i;
72 if (intr0 & stat) {
73 gk104_ibus_intr_hub(ibus, i);
74 intr0 &= ~stat;
75 }
76 }
77
78 for (i = 0; (intr0 & 0xffff0000) && i < ropnr; i++) {
79 u32 stat = 0x00010000 << i;
80 if (intr0 & stat) {
81 gk104_ibus_intr_rop(ibus, i);
82 intr0 &= ~stat;
83 }
84 }
85
86 for (i = 0; intr1 && i < gpcnr; i++) {
87 u32 stat = 0x00000001 << i;
88 if (intr1 & stat) {
89 gk104_ibus_intr_gpc(ibus, i);
90 intr1 &= ~stat;
91 }
92 }
93}
94
95static int
96gk104_ibus_init(struct nvkm_subdev *ibus)
97{
98 struct nvkm_device *device = ibus->device;
99 nvkm_mask(device, 0x122318, 0x0003ffff, 0x00001000);
100 nvkm_mask(device, 0x12231c, 0x0003ffff, 0x00000200);
101 nvkm_mask(device, 0x122310, 0x0003ffff, 0x00000800);
102 nvkm_mask(device, 0x122348, 0x0003ffff, 0x00000100);
103 nvkm_mask(device, 0x1223b0, 0x0003ffff, 0x00000fff);
104 nvkm_mask(device, 0x122348, 0x0003ffff, 0x00000200);
105 nvkm_mask(device, 0x122358, 0x0003ffff, 0x00002880);
106 return 0;
107}
108
109static const struct nvkm_subdev_func
110gk104_ibus = {
111 .preinit = gk104_ibus_init,
112 .init = gk104_ibus_init,
113 .intr = gk104_ibus_intr,
114};
115
116int
117gk104_ibus_new(struct nvkm_device *device, int index,
118 struct nvkm_subdev **pibus)
119{
120 struct nvkm_subdev *ibus;
121 if (!(ibus = *pibus = kzalloc(sizeof(*ibus), GFP_KERNEL)))
122 return -ENOMEM;
123 nvkm_subdev_ctor(&gk104_ibus, device, index, ibus);
124 return 0;
125}
126