[PATCH 7/8] gpu: nova-core: convert relative registers to new syntax
From: Alexandre Courbot
Date: Tue Jul 21 2026 - 07:15:18 EST
Convert all relative registers declarations to use the new `Base:`
syntax.
Signed-off-by: Alexandre Courbot <acourbot@xxxxxxxxxx>
---
drivers/gpu/nova-core/regs.rs | 74 +++++++++++++++++++++----------------------
1 file changed, 37 insertions(+), 37 deletions(-)
diff --git a/drivers/gpu/nova-core/regs.rs b/drivers/gpu/nova-core/regs.rs
index 397124f245ee..744c6087220e 100644
--- a/drivers/gpu/nova-core/regs.rs
+++ b/drivers/gpu/nova-core/regs.rs
@@ -158,19 +158,19 @@ fn fmt(&self, f: &mut kernel::fmt::Formatter<'_>) -> kernel::fmt::Result {
// through a primary and an EG (egress) pair that must both be programmed to the same
// address. Hardware ignores bits 7:0 of each LO register. The boot path uses a fixed
// HSHUB0 base, so the multiple runtime-discovered HSHUB bases are not needed here.
- pub(crate) NV_PFB_HSHUB_PCIE_FLUSH_SYSMEM_ADDR_LO(u32) @ Hshub0Base + 0x00000e50 {
+ pub(crate) NV_PFB_HSHUB_PCIE_FLUSH_SYSMEM_ADDR_LO(u32) @ Hshub0Base: 0x00000e50 {
31:0 adr => u32;
}
- pub(crate) NV_PFB_HSHUB_PCIE_FLUSH_SYSMEM_ADDR_HI(u32) @ Hshub0Base + 0x00000e54 {
+ pub(crate) NV_PFB_HSHUB_PCIE_FLUSH_SYSMEM_ADDR_HI(u32) @ Hshub0Base: 0x00000e54 {
19:0 adr;
}
- pub(crate) NV_PFB_HSHUB_EG_PCIE_FLUSH_SYSMEM_ADDR_LO(u32) @ Hshub0Base + 0x000006c0 {
+ pub(crate) NV_PFB_HSHUB_EG_PCIE_FLUSH_SYSMEM_ADDR_LO(u32) @ Hshub0Base: 0x000006c0 {
31:0 adr => u32;
}
- pub(crate) NV_PFB_HSHUB_EG_PCIE_FLUSH_SYSMEM_ADDR_HI(u32) @ Hshub0Base + 0x000006c4 {
+ pub(crate) NV_PFB_HSHUB_EG_PCIE_FLUSH_SYSMEM_ADDR_HI(u32) @ Hshub0Base: 0x000006c4 {
19:0 adr;
}
}
@@ -323,30 +323,30 @@ pub(crate) fn usable_fb_size(self) -> u64 {
// PFALCON
register! {
- pub(crate) NV_PFALCON_FALCON_IRQSCLR(u32) @ PFalconBase + 0x00000004 {
+ pub(crate) NV_PFALCON_FALCON_IRQSCLR(u32) @ PFalconBase: 0x00000004 {
6:6 swgen0 => bool;
4:4 halt => bool;
}
- pub(crate) NV_PFALCON_FALCON_MAILBOX0(u32) @ PFalconBase + 0x00000040 {
+ pub(crate) NV_PFALCON_FALCON_MAILBOX0(u32) @ PFalconBase: 0x00000040 {
31:0 value => u32;
}
- pub(crate) NV_PFALCON_FALCON_MAILBOX1(u32) @ PFalconBase + 0x00000044 {
+ pub(crate) NV_PFALCON_FALCON_MAILBOX1(u32) @ PFalconBase: 0x00000044 {
31:0 value => u32;
}
/// Used to store version information about the firmware running
/// on the Falcon processor.
- pub(crate) NV_PFALCON_FALCON_OS(u32) @ PFalconBase + 0x00000080 {
+ pub(crate) NV_PFALCON_FALCON_OS(u32) @ PFalconBase: 0x00000080 {
31:0 value => u32;
}
- pub(crate) NV_PFALCON_FALCON_RM(u32) @ PFalconBase + 0x00000084 {
+ pub(crate) NV_PFALCON_FALCON_RM(u32) @ PFalconBase: 0x00000084 {
31:0 value => u32;
}
- pub(crate) NV_PFALCON_FALCON_HWCFG2(u32) @ PFalconBase + 0x000000f4 {
+ pub(crate) NV_PFALCON_FALCON_HWCFG2(u32) @ PFalconBase: 0x000000f4 {
/// Signal indicating that reset is completed (GA102+).
31:31 reset_ready => bool;
/// RISC-V branch privilege lockdown bit.
@@ -356,17 +356,17 @@ pub(crate) fn usable_fb_size(self) -> u64 {
10:10 riscv => bool;
}
- pub(crate) NV_PFALCON_FALCON_CPUCTL(u32) @ PFalconBase + 0x00000100 {
+ pub(crate) NV_PFALCON_FALCON_CPUCTL(u32) @ PFalconBase: 0x00000100 {
6:6 alias_en => bool;
4:4 halted => bool;
1:1 startcpu => bool;
}
- pub(crate) NV_PFALCON_FALCON_BOOTVEC(u32) @ PFalconBase + 0x00000104 {
+ pub(crate) NV_PFALCON_FALCON_BOOTVEC(u32) @ PFalconBase: 0x00000104 {
31:0 value => u32;
}
- pub(crate) NV_PFALCON_FALCON_DMACTL(u32) @ PFalconBase + 0x0000010c {
+ pub(crate) NV_PFALCON_FALCON_DMACTL(u32) @ PFalconBase: 0x0000010c {
7:7 secure_stat => bool;
6:3 dmaq_num;
2:2 imem_scrubbing => bool;
@@ -374,15 +374,15 @@ pub(crate) fn usable_fb_size(self) -> u64 {
0:0 require_ctx => bool;
}
- pub(crate) NV_PFALCON_FALCON_DMATRFBASE(u32) @ PFalconBase + 0x00000110 {
+ pub(crate) NV_PFALCON_FALCON_DMATRFBASE(u32) @ PFalconBase: 0x00000110 {
31:0 base => u32;
}
- pub(crate) NV_PFALCON_FALCON_DMATRFMOFFS(u32) @ PFalconBase + 0x00000114 {
+ pub(crate) NV_PFALCON_FALCON_DMATRFMOFFS(u32) @ PFalconBase: 0x00000114 {
23:0 offs;
}
- pub(crate) NV_PFALCON_FALCON_DMATRFCMD(u32) @ PFalconBase + 0x00000118 {
+ pub(crate) NV_PFALCON_FALCON_DMATRFCMD(u32) @ PFalconBase: 0x00000118 {
16:16 set_dmtag;
14:12 ctxdma;
10:8 size ?=> DmaTrfCmdSize;
@@ -393,15 +393,15 @@ pub(crate) fn usable_fb_size(self) -> u64 {
0:0 full => bool;
}
- pub(crate) NV_PFALCON_FALCON_DMATRFFBOFFS(u32) @ PFalconBase + 0x0000011c {
+ pub(crate) NV_PFALCON_FALCON_DMATRFFBOFFS(u32) @ PFalconBase: 0x0000011c {
31:0 offs => u32;
}
- pub(crate) NV_PFALCON_FALCON_DMATRFBASE1(u32) @ PFalconBase + 0x00000128 {
+ pub(crate) NV_PFALCON_FALCON_DMATRFBASE1(u32) @ PFalconBase: 0x00000128 {
8:0 base;
}
- pub(crate) NV_PFALCON_FALCON_HWCFG1(u32) @ PFalconBase + 0x0000012c {
+ pub(crate) NV_PFALCON_FALCON_HWCFG1(u32) @ PFalconBase: 0x0000012c {
/// Core revision subversion.
7:6 core_rev_subversion => FalconCoreRevSubversion;
/// Security model.
@@ -410,12 +410,12 @@ pub(crate) fn usable_fb_size(self) -> u64 {
3:0 core_rev ?=> FalconCoreRev;
}
- pub(crate) NV_PFALCON_FALCON_CPUCTL_ALIAS(u32) @ PFalconBase + 0x00000130 {
+ pub(crate) NV_PFALCON_FALCON_CPUCTL_ALIAS(u32) @ PFalconBase: 0x00000130 {
1:1 startcpu => bool;
}
/// IMEM access control register. Up to 4 ports are available for IMEM access.
- pub(crate) NV_PFALCON_FALCON_IMEMC(u32)[4, stride = 16] @ PFalconBase + 0x00000180 {
+ pub(crate) NV_PFALCON_FALCON_IMEMC(u32)[4, stride = 16] @ PFalconBase: 0x00000180 {
/// Access secure IMEM.
28:28 secure => bool;
/// Auto-increment on write.
@@ -426,17 +426,17 @@ pub(crate) fn usable_fb_size(self) -> u64 {
/// IMEM data register. Reading/writing this register accesses IMEM at the address
/// specified by the corresponding IMEMC register.
- pub(crate) NV_PFALCON_FALCON_IMEMD(u32)[4, stride = 16] @ PFalconBase + 0x00000184 {
+ pub(crate) NV_PFALCON_FALCON_IMEMD(u32)[4, stride = 16] @ PFalconBase: 0x00000184 {
31:0 data;
}
/// IMEM tag register. Used to set the tag for the current IMEM block.
- pub(crate) NV_PFALCON_FALCON_IMEMT(u32)[4, stride = 16] @ PFalconBase + 0x00000188 {
+ pub(crate) NV_PFALCON_FALCON_IMEMT(u32)[4, stride = 16] @ PFalconBase: 0x00000188 {
15:0 tag;
}
/// DMEM access control register. Up to 8 ports are available for DMEM access.
- pub(crate) NV_PFALCON_FALCON_DMEMC(u32)[8, stride = 8] @ PFalconBase + 0x000001c0 {
+ pub(crate) NV_PFALCON_FALCON_DMEMC(u32)[8, stride = 8] @ PFalconBase: 0x000001c0 {
/// Auto-increment on write.
24:24 aincw => bool;
/// DMEM block and word offset.
@@ -445,29 +445,29 @@ pub(crate) fn usable_fb_size(self) -> u64 {
/// DMEM data register. Reading/writing this register accesses DMEM at the address
/// specified by the corresponding DMEMC register.
- pub(crate) NV_PFALCON_FALCON_DMEMD(u32)[8, stride = 8] @ PFalconBase + 0x000001c4 {
+ pub(crate) NV_PFALCON_FALCON_DMEMD(u32)[8, stride = 8] @ PFalconBase: 0x000001c4 {
31:0 data;
}
/// Actually known as `NV_PSEC_FALCON_ENGINE` and `NV_PGSP_FALCON_ENGINE` depending on the
/// falcon instance.
- pub(crate) NV_PFALCON_FALCON_ENGINE(u32) @ PFalconBase + 0x000003c0 {
+ pub(crate) NV_PFALCON_FALCON_ENGINE(u32) @ PFalconBase: 0x000003c0 {
0:0 reset => bool;
}
- pub(crate) NV_PFALCON_FBIF_TRANSCFG(u32)[8] @ PFalconBase + 0x00000600 {
+ pub(crate) NV_PFALCON_FBIF_TRANSCFG(u32)[8] @ PFalconBase: 0x00000600 {
2:2 mem_type => FalconFbifMemType;
1:0 target ?=> FalconFbifTarget;
}
- pub(crate) NV_PFALCON_FBIF_CTL(u32) @ PFalconBase + 0x00000624 {
+ pub(crate) NV_PFALCON_FBIF_CTL(u32) @ PFalconBase: 0x00000624 {
7:7 allow_phys_no_ctx => bool;
}
// Falcon EMEM PIO registers (used by FSP on Hopper/Blackwell).
// These provide the falcon external memory communication interface.
- pub(crate) NV_PFALCON_FALCON_EMEMC(u32) @ PFalconBase + 0x00000ac0 {
+ pub(crate) NV_PFALCON_FALCON_EMEMC(u32) @ PFalconBase: 0x00000ac0 {
/// EMEM byte offset (4-byte aligned) within the block.
7:2 offs;
/// EMEM block to access.
@@ -478,7 +478,7 @@ pub(crate) fn usable_fb_size(self) -> u64 {
25:25 aincr => bool;
}
- pub(crate) NV_PFALCON_FALCON_EMEMD(u32) @ PFalconBase + 0x00000ac4 {
+ pub(crate) NV_PFALCON_FALCON_EMEMD(u32) @ PFalconBase: 0x00000ac4 {
31:0 data => u32;
}
}
@@ -524,21 +524,21 @@ pub(crate) fn mem_scrubbing_done(self) -> bool {
/* PFALCON2 */
register! {
- pub(crate) NV_PFALCON2_FALCON_MOD_SEL(u32) @ PFalcon2Base + 0x00000180 {
+ pub(crate) NV_PFALCON2_FALCON_MOD_SEL(u32) @ PFalcon2Base: 0x00000180 {
7:0 algo ?=> FalconModSelAlgo;
}
- pub(crate) NV_PFALCON2_FALCON_BROM_CURR_UCODE_ID(u32) @ PFalcon2Base + 0x00000198 {
+ pub(crate) NV_PFALCON2_FALCON_BROM_CURR_UCODE_ID(u32) @ PFalcon2Base: 0x00000198 {
7:0 ucode_id => u8;
}
- pub(crate) NV_PFALCON2_FALCON_BROM_ENGIDMASK(u32) @ PFalcon2Base + 0x0000019c {
+ pub(crate) NV_PFALCON2_FALCON_BROM_ENGIDMASK(u32) @ PFalcon2Base: 0x0000019c {
31:0 value => u32;
}
/// OpenRM defines this as a register array, but doesn't specify its size and only uses its
/// first element. Be conservative until we know the actual size or need to use more registers.
- pub(crate) NV_PFALCON2_FALCON_BROM_PARAADDR(u32)[1] @ PFalcon2Base + 0x00000210 {
+ pub(crate) NV_PFALCON2_FALCON_BROM_PARAADDR(u32)[1] @ PFalcon2Base: 0x00000210 {
31:0 value => u32;
}
}
@@ -548,19 +548,19 @@ pub(crate) fn mem_scrubbing_done(self) -> bool {
register! {
/// RISC-V status register for debug (Turing and GA100 only).
/// Reflects current RISC-V core status.
- pub(crate) NV_PRISCV_RISCV_CORE_SWITCH_RISCV_STATUS(u32) @ PFalcon2Base + 0x00000240 {
+ pub(crate) NV_PRISCV_RISCV_CORE_SWITCH_RISCV_STATUS(u32) @ PFalcon2Base: 0x00000240 {
/// RISC-V core active/inactive status.
0:0 active_stat => bool;
}
/// GA102 and later.
- pub(crate) NV_PRISCV_RISCV_CPUCTL(u32) @ PFalcon2Base + 0x00000388 {
+ pub(crate) NV_PRISCV_RISCV_CPUCTL(u32) @ PFalcon2Base: 0x00000388 {
7:7 active_stat => bool;
0:0 halted => bool;
}
/// GA102 and later.
- pub(crate) NV_PRISCV_RISCV_BCR_CTRL(u32) @ PFalcon2Base + 0x00000668 {
+ pub(crate) NV_PRISCV_RISCV_BCR_CTRL(u32) @ PFalcon2Base: 0x00000668 {
8:8 br_fetch => bool;
4:4 core_select => PeregrineCoreSelect;
0:0 valid => bool;
--
2.55.0