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Pierre-Clément Tosia0934c12022-11-25 20:54:11 +00001// Copyright 2022, The Android Open Source Project
2//
3// Licensed under the Apache License, Version 2.0 (the "License");
4// you may not use this file except in compliance with the License.
5// You may obtain a copy of the License at
6//
7// http://www.apache.org/licenses/LICENSE-2.0
8//
9// Unless required by applicable law or agreed to in writing, software
10// distributed under the License is distributed on an "AS IS" BASIS,
11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12// See the License for the specific language governing permissions and
13// limitations under the License.
14
15//! High-level FDT functions.
16
Jiyong Parkc5d2ef22023-04-11 01:23:46 +090017use crate::bootargs::BootArgsIterator;
Jaewan Kim52477ae2023-11-21 21:20:52 +090018use crate::device_assignment::{DeviceAssignmentInfo, VmDtbo};
Jiyong Park00ceff32023-03-13 05:43:23 +000019use crate::helpers::GUEST_PAGE_SIZE;
Jiyong Parkc5d2ef22023-04-11 01:23:46 +090020use crate::Box;
Jiyong Park00ceff32023-03-13 05:43:23 +000021use crate::RebootReason;
Seungjae Yoo013f4c42024-01-02 13:04:19 +090022use alloc::collections::BTreeMap;
Jiyong Parke9d87e82023-03-21 19:28:40 +090023use alloc::ffi::CString;
Jiyong Parkc23426b2023-04-10 17:32:27 +090024use alloc::vec::Vec;
Jiyong Park0ee65392023-03-27 20:52:45 +090025use core::cmp::max;
26use core::cmp::min;
Pierre-Clément Tosia0934c12022-11-25 20:54:11 +000027use core::ffi::CStr;
Alice Wangabc7d632023-06-14 09:10:14 +000028use core::fmt;
Jiyong Park9c63cd12023-03-21 17:53:07 +090029use core::mem::size_of;
Pierre-Clément Tosia0934c12022-11-25 20:54:11 +000030use core::ops::Range;
Pierre-Clément Tosi1bf532b2023-11-13 11:06:20 +000031use cstr::cstr;
Jiyong Park00ceff32023-03-13 05:43:23 +000032use fdtpci::PciMemoryFlags;
33use fdtpci::PciRangeType;
34use libfdt::AddressRange;
35use libfdt::CellIterator;
Pierre-Clément Tosi4ba79662023-02-13 11:22:41 +000036use libfdt::Fdt;
37use libfdt::FdtError;
Jiyong Park9c63cd12023-03-21 17:53:07 +090038use libfdt::FdtNode;
Alice Wang56ec45b2023-06-15 08:30:32 +000039use libfdt::FdtNodeMut;
Jiyong Park83316122023-03-21 09:39:39 +090040use log::debug;
Jiyong Park00ceff32023-03-13 05:43:23 +000041use log::error;
Jiyong Parkc23426b2023-04-10 17:32:27 +090042use log::info;
Pierre-Clément Tosia50167b2023-05-02 13:19:29 +000043use log::warn;
Jiyong Park00ceff32023-03-13 05:43:23 +000044use tinyvec::ArrayVec;
Alice Wanga3971062023-06-13 11:48:53 +000045use vmbase::fdt::SwiotlbInfo;
Alice Wang63f4c9e2023-06-12 09:36:43 +000046use vmbase::layout::{crosvm::MEM_START, MAX_VIRT_ADDR};
Alice Wangeacb7382023-06-05 12:53:54 +000047use vmbase::memory::SIZE_4KB;
48use vmbase::util::flatten;
Alice Wang4be4dd02023-06-07 07:50:40 +000049use vmbase::util::RangeExt as _;
Pierre-Clément Tosia0934c12022-11-25 20:54:11 +000050
Alice Wangabc7d632023-06-14 09:10:14 +000051/// An enumeration of errors that can occur during the FDT validation.
52#[derive(Clone, Debug)]
53pub enum FdtValidationError {
54 /// Invalid CPU count.
55 InvalidCpuCount(usize),
56}
57
58impl fmt::Display for FdtValidationError {
59 fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
60 match self {
61 Self::InvalidCpuCount(num_cpus) => write!(f, "Invalid CPU count: {num_cpus}"),
62 }
63 }
64}
65
Jiyong Park6a8789a2023-03-21 14:50:59 +090066/// Extract from /config the address range containing the pre-loaded kernel. Absence of /config is
67/// not an error.
68fn read_kernel_range_from(fdt: &Fdt) -> libfdt::Result<Option<Range<usize>>> {
Jiyong Parkb87f3302023-03-21 10:03:11 +090069 let addr = cstr!("kernel-address");
70 let size = cstr!("kernel-size");
Pierre-Clément Tosic3811b82022-11-29 11:24:16 +000071
Jiyong Parkb87f3302023-03-21 10:03:11 +090072 if let Some(config) = fdt.node(cstr!("/config"))? {
Pierre-Clément Tosic3811b82022-11-29 11:24:16 +000073 if let (Some(addr), Some(size)) = (config.getprop_u32(addr)?, config.getprop_u32(size)?) {
74 let addr = addr as usize;
75 let size = size as usize;
76
77 return Ok(Some(addr..(addr + size)));
78 }
79 }
80
81 Ok(None)
82}
83
Jiyong Park6a8789a2023-03-21 14:50:59 +090084/// Extract from /chosen the address range containing the pre-loaded ramdisk. Absence is not an
85/// error as there can be initrd-less VM.
86fn read_initrd_range_from(fdt: &Fdt) -> libfdt::Result<Option<Range<usize>>> {
Jiyong Parkb87f3302023-03-21 10:03:11 +090087 let start = cstr!("linux,initrd-start");
88 let end = cstr!("linux,initrd-end");
Pierre-Clément Tosia0934c12022-11-25 20:54:11 +000089
90 if let Some(chosen) = fdt.chosen()? {
91 if let (Some(start), Some(end)) = (chosen.getprop_u32(start)?, chosen.getprop_u32(end)?) {
92 return Ok(Some((start as usize)..(end as usize)));
93 }
94 }
95
96 Ok(None)
97}
Pierre-Clément Tosidb74cb12022-12-08 13:56:25 +000098
Jiyong Park9c63cd12023-03-21 17:53:07 +090099fn patch_initrd_range(fdt: &mut Fdt, initrd_range: &Range<usize>) -> libfdt::Result<()> {
100 let start = u32::try_from(initrd_range.start).unwrap();
101 let end = u32::try_from(initrd_range.end).unwrap();
102
103 let mut node = fdt.chosen_mut()?.ok_or(FdtError::NotFound)?;
104 node.setprop(cstr!("linux,initrd-start"), &start.to_be_bytes())?;
105 node.setprop(cstr!("linux,initrd-end"), &end.to_be_bytes())?;
106 Ok(())
107}
108
Jiyong Parke9d87e82023-03-21 19:28:40 +0900109fn read_bootargs_from(fdt: &Fdt) -> libfdt::Result<Option<CString>> {
110 if let Some(chosen) = fdt.chosen()? {
111 if let Some(bootargs) = chosen.getprop_str(cstr!("bootargs"))? {
112 // We need to copy the string to heap because the original fdt will be invalidated
113 // by the templated DT
114 let copy = CString::new(bootargs.to_bytes()).map_err(|_| FdtError::BadValue)?;
115 return Ok(Some(copy));
116 }
117 }
118 Ok(None)
119}
120
121fn patch_bootargs(fdt: &mut Fdt, bootargs: &CStr) -> libfdt::Result<()> {
122 let mut node = fdt.chosen_mut()?.ok_or(FdtError::NotFound)?;
Jiyong Parkc5d2ef22023-04-11 01:23:46 +0900123 // This function is called before the verification is done. So, we just copy the bootargs to
124 // the new FDT unmodified. This will be filtered again in the modify_for_next_stage function
125 // if the VM is not debuggable.
Jiyong Parke9d87e82023-03-21 19:28:40 +0900126 node.setprop(cstr!("bootargs"), bootargs.to_bytes_with_nul())
127}
128
Alice Wang0d527472023-06-13 14:55:38 +0000129/// Reads and validates the memory range in the DT.
130///
131/// Only one memory range is expected with the crosvm setup for now.
132fn read_and_validate_memory_range(fdt: &Fdt) -> Result<Range<usize>, RebootReason> {
133 let mut memory = fdt.memory().map_err(|e| {
134 error!("Failed to read memory range from DT: {e}");
135 RebootReason::InvalidFdt
136 })?;
137 let range = memory.next().ok_or_else(|| {
138 error!("The /memory node in the DT contains no range.");
139 RebootReason::InvalidFdt
140 })?;
141 if memory.next().is_some() {
142 warn!(
143 "The /memory node in the DT contains more than one memory range, \
144 while only one is expected."
145 );
146 }
Jiyong Park6a8789a2023-03-21 14:50:59 +0900147 let base = range.start;
Alice Wange243d462023-06-06 15:18:12 +0000148 if base != MEM_START {
149 error!("Memory base address {:#x} is not {:#x}", base, MEM_START);
Jiyong Park00ceff32023-03-13 05:43:23 +0000150 return Err(RebootReason::InvalidFdt);
151 }
152
Jiyong Park6a8789a2023-03-21 14:50:59 +0900153 let size = range.len();
Jiyong Park00ceff32023-03-13 05:43:23 +0000154 if size % GUEST_PAGE_SIZE != 0 {
155 error!("Memory size {:#x} is not a multiple of page size {:#x}", size, GUEST_PAGE_SIZE);
156 return Err(RebootReason::InvalidFdt);
157 }
Jiyong Park00ceff32023-03-13 05:43:23 +0000158
Jiyong Park6a8789a2023-03-21 14:50:59 +0900159 if size == 0 {
160 error!("Memory size is 0");
161 return Err(RebootReason::InvalidFdt);
162 }
Alice Wang0d527472023-06-13 14:55:38 +0000163 Ok(range)
Jiyong Park00ceff32023-03-13 05:43:23 +0000164}
165
Jiyong Park9c63cd12023-03-21 17:53:07 +0900166fn patch_memory_range(fdt: &mut Fdt, memory_range: &Range<usize>) -> libfdt::Result<()> {
167 let size = memory_range.len() as u64;
Jiyong Park0ee65392023-03-27 20:52:45 +0900168 fdt.node_mut(cstr!("/memory"))?
169 .ok_or(FdtError::NotFound)?
Alice Wange243d462023-06-06 15:18:12 +0000170 .setprop_inplace(cstr!("reg"), flatten(&[MEM_START.to_be_bytes(), size.to_be_bytes()]))
Jiyong Park9c63cd12023-03-21 17:53:07 +0900171}
172
Jiyong Park6a8789a2023-03-21 14:50:59 +0900173/// Read the number of CPUs from DT
174fn read_num_cpus_from(fdt: &Fdt) -> libfdt::Result<usize> {
175 Ok(fdt.compatible_nodes(cstr!("arm,arm-v8"))?.count())
176}
177
178/// Validate number of CPUs
Alice Wangabc7d632023-06-14 09:10:14 +0000179fn validate_num_cpus(num_cpus: usize) -> Result<(), FdtValidationError> {
180 if num_cpus == 0 || DeviceTreeInfo::gic_patched_size(num_cpus).is_none() {
181 Err(FdtValidationError::InvalidCpuCount(num_cpus))
182 } else {
183 Ok(())
Jiyong Park6a8789a2023-03-21 14:50:59 +0900184 }
Jiyong Park9c63cd12023-03-21 17:53:07 +0900185}
186
187/// Patch DT by keeping `num_cpus` number of arm,arm-v8 compatible nodes, and pruning the rest.
188fn patch_num_cpus(fdt: &mut Fdt, num_cpus: usize) -> libfdt::Result<()> {
189 let cpu = cstr!("arm,arm-v8");
190 let mut next = fdt.root_mut()?.next_compatible(cpu)?;
191 for _ in 0..num_cpus {
192 next = if let Some(current) = next {
193 current.next_compatible(cpu)?
194 } else {
195 return Err(FdtError::NoSpace);
196 };
197 }
198 while let Some(current) = next {
199 next = current.delete_and_next_compatible(cpu)?;
200 }
Jiyong Park6a8789a2023-03-21 14:50:59 +0900201 Ok(())
Jiyong Park00ceff32023-03-13 05:43:23 +0000202}
203
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900204/// Read candidate properties' names from DT which could be overlaid
205fn parse_vm_base_dtbo(fdt: &Fdt) -> libfdt::Result<BTreeMap<CString, Vec<u8>>> {
206 let mut property_map = BTreeMap::new();
Seungjae Yooed67fd52023-11-29 18:54:36 +0900207 if let Some(avf_node) = fdt.node(cstr!("/avf"))? {
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900208 for property in avf_node.properties()? {
209 let name = property.name()?;
210 let value = property.value()?;
211 property_map.insert(
212 CString::new(name.to_bytes()).map_err(|_| FdtError::BadValue)?,
213 value.to_vec(),
214 );
Seungjae Yooed67fd52023-11-29 18:54:36 +0900215 }
216 }
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900217 Ok(property_map)
Seungjae Yooed67fd52023-11-29 18:54:36 +0900218}
219
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900220/// Overlay VM base DTBO into VM DT based on the props_info. Property is overlaid in vm_dt only
221/// when it exists both in vm_base_dtbo and props_info. If the values mismatch, it returns error.
222fn apply_vm_base_dtbo(
223 vm_dt: &mut Fdt,
224 vm_base_dtbo: &Fdt,
225 props_info: &BTreeMap<CString, Vec<u8>>,
Seungjae Yoo192e99c2023-12-15 16:42:39 +0900226) -> libfdt::Result<()> {
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900227 let mut root_vm_dt = vm_dt.root_mut()?;
228 let mut avf_vm_dt = root_vm_dt.add_subnode(cstr!("avf"))?;
229 // TODO(b/318431677): Validate nodes beyond /fragment@0/__overlay__/avf and use apply_overlay.
230 let avf_vm_base_dtbo =
231 vm_base_dtbo.node(cstr!("/fragment@0/__overlay__/avf"))?.ok_or(FdtError::NotFound)?;
232 for (name, value) in props_info.iter() {
233 if let Some(value_in_vm_base_dtbo) = avf_vm_base_dtbo.getprop(name)? {
234 if value != value_in_vm_base_dtbo {
235 error!(
236 "Property mismatches while applying overlay VM base DTBO. \
237 Name:{:?}, Value from host as hex:{:x?}, Value from VM base DTBO as hex:{:x?}",
238 name, value, value_in_vm_base_dtbo
239 );
240 return Err(FdtError::BadValue);
241 }
242 avf_vm_dt.setprop(name, value_in_vm_base_dtbo)?;
243 }
244 }
Seungjae Yooed67fd52023-11-29 18:54:36 +0900245 Ok(())
246}
247
Jiyong Park00ceff32023-03-13 05:43:23 +0000248#[derive(Debug)]
Jiyong Park00ceff32023-03-13 05:43:23 +0000249struct PciInfo {
Jiyong Park6a8789a2023-03-21 14:50:59 +0900250 ranges: [PciAddrRange; 2],
251 irq_masks: ArrayVec<[PciIrqMask; PciInfo::MAX_IRQS]>,
252 irq_maps: ArrayVec<[PciIrqMap; PciInfo::MAX_IRQS]>,
Jiyong Park00ceff32023-03-13 05:43:23 +0000253}
254
Jiyong Park6a8789a2023-03-21 14:50:59 +0900255impl PciInfo {
256 const IRQ_MASK_CELLS: usize = 4;
257 const IRQ_MAP_CELLS: usize = 10;
Nikita Ioffe85d80262023-07-12 17:34:07 +0100258 const MAX_IRQS: usize = 10;
Jiyong Park00ceff32023-03-13 05:43:23 +0000259}
260
Jiyong Park6a8789a2023-03-21 14:50:59 +0900261type PciAddrRange = AddressRange<(u32, u64), u64, u64>;
262type PciIrqMask = [u32; PciInfo::IRQ_MASK_CELLS];
263type PciIrqMap = [u32; PciInfo::IRQ_MAP_CELLS];
Jiyong Park00ceff32023-03-13 05:43:23 +0000264
265/// Iterator that takes N cells as a chunk
266struct CellChunkIterator<'a, const N: usize> {
267 cells: CellIterator<'a>,
268}
269
270impl<'a, const N: usize> CellChunkIterator<'a, N> {
271 fn new(cells: CellIterator<'a>) -> Self {
272 Self { cells }
273 }
274}
275
276impl<'a, const N: usize> Iterator for CellChunkIterator<'a, N> {
277 type Item = [u32; N];
278 fn next(&mut self) -> Option<Self::Item> {
279 let mut ret: Self::Item = [0; N];
280 for i in ret.iter_mut() {
281 *i = self.cells.next()?;
282 }
283 Some(ret)
284 }
285}
286
Jiyong Park6a8789a2023-03-21 14:50:59 +0900287/// Read pci host controller ranges, irq maps, and irq map masks from DT
288fn read_pci_info_from(fdt: &Fdt) -> libfdt::Result<PciInfo> {
289 let node =
290 fdt.compatible_nodes(cstr!("pci-host-cam-generic"))?.next().ok_or(FdtError::NotFound)?;
291
292 let mut ranges = node.ranges::<(u32, u64), u64, u64>()?.ok_or(FdtError::NotFound)?;
293 let range0 = ranges.next().ok_or(FdtError::NotFound)?;
294 let range1 = ranges.next().ok_or(FdtError::NotFound)?;
295
296 let irq_masks = node.getprop_cells(cstr!("interrupt-map-mask"))?.ok_or(FdtError::NotFound)?;
Pierre-Clément Tosiaa0f6552023-07-12 14:49:35 +0000297 let mut chunks = CellChunkIterator::<{ PciInfo::IRQ_MASK_CELLS }>::new(irq_masks);
298 let irq_masks = (&mut chunks).take(PciInfo::MAX_IRQS).collect();
299
300 if chunks.next().is_some() {
301 warn!("Input DT has more than {} PCI entries!", PciInfo::MAX_IRQS);
302 return Err(FdtError::NoSpace);
303 }
Jiyong Park6a8789a2023-03-21 14:50:59 +0900304
305 let irq_maps = node.getprop_cells(cstr!("interrupt-map"))?.ok_or(FdtError::NotFound)?;
Pierre-Clément Tosiaa0f6552023-07-12 14:49:35 +0000306 let mut chunks = CellChunkIterator::<{ PciInfo::IRQ_MAP_CELLS }>::new(irq_maps);
307 let irq_maps = (&mut chunks).take(PciInfo::MAX_IRQS).collect();
308
309 if chunks.next().is_some() {
310 warn!("Input DT has more than {} PCI entries!", PciInfo::MAX_IRQS);
311 return Err(FdtError::NoSpace);
312 }
Jiyong Park6a8789a2023-03-21 14:50:59 +0900313
314 Ok(PciInfo { ranges: [range0, range1], irq_masks, irq_maps })
315}
316
Jiyong Park0ee65392023-03-27 20:52:45 +0900317fn validate_pci_info(pci_info: &PciInfo, memory_range: &Range<usize>) -> Result<(), RebootReason> {
Jiyong Park6a8789a2023-03-21 14:50:59 +0900318 for range in pci_info.ranges.iter() {
Jiyong Park0ee65392023-03-27 20:52:45 +0900319 validate_pci_addr_range(range, memory_range)?;
Jiyong Park6a8789a2023-03-21 14:50:59 +0900320 }
321 for irq_mask in pci_info.irq_masks.iter() {
322 validate_pci_irq_mask(irq_mask)?;
323 }
324 for (idx, irq_map) in pci_info.irq_maps.iter().enumerate() {
325 validate_pci_irq_map(irq_map, idx)?;
326 }
327 Ok(())
328}
329
Jiyong Park0ee65392023-03-27 20:52:45 +0900330fn validate_pci_addr_range(
331 range: &PciAddrRange,
332 memory_range: &Range<usize>,
333) -> Result<(), RebootReason> {
Jiyong Park6a8789a2023-03-21 14:50:59 +0900334 let mem_flags = PciMemoryFlags(range.addr.0);
335 let range_type = mem_flags.range_type();
336 let prefetchable = mem_flags.prefetchable();
337 let bus_addr = range.addr.1;
338 let cpu_addr = range.parent_addr;
339 let size = range.size;
340
341 if range_type != PciRangeType::Memory64 {
342 error!("Invalid range type {:?} for bus address {:#x} in PCI node", range_type, bus_addr);
343 return Err(RebootReason::InvalidFdt);
344 }
345 if prefetchable {
346 error!("PCI bus address {:#x} in PCI node is prefetchable", bus_addr);
347 return Err(RebootReason::InvalidFdt);
348 }
349 // Enforce ID bus-to-cpu mappings, as used by crosvm.
350 if bus_addr != cpu_addr {
351 error!("PCI bus address: {:#x} is different from CPU address: {:#x}", bus_addr, cpu_addr);
352 return Err(RebootReason::InvalidFdt);
353 }
354
Jiyong Park0ee65392023-03-27 20:52:45 +0900355 let Some(bus_end) = bus_addr.checked_add(size) else {
356 error!("PCI address range size {:#x} overflows", size);
357 return Err(RebootReason::InvalidFdt);
358 };
Alice Wang63f4c9e2023-06-12 09:36:43 +0000359 if bus_end > MAX_VIRT_ADDR.try_into().unwrap() {
Jiyong Park0ee65392023-03-27 20:52:45 +0900360 error!("PCI address end {:#x} is outside of translatable range", bus_end);
361 return Err(RebootReason::InvalidFdt);
362 }
363
364 let memory_start = memory_range.start.try_into().unwrap();
365 let memory_end = memory_range.end.try_into().unwrap();
366
367 if max(bus_addr, memory_start) < min(bus_end, memory_end) {
368 error!(
369 "PCI address range {:#x}-{:#x} overlaps with main memory range {:#x}-{:#x}",
370 bus_addr, bus_end, memory_start, memory_end
371 );
Jiyong Park6a8789a2023-03-21 14:50:59 +0900372 return Err(RebootReason::InvalidFdt);
373 }
374
375 Ok(())
376}
377
378fn validate_pci_irq_mask(irq_mask: &PciIrqMask) -> Result<(), RebootReason> {
Jiyong Park00ceff32023-03-13 05:43:23 +0000379 const IRQ_MASK_ADDR_HI: u32 = 0xf800;
380 const IRQ_MASK_ADDR_ME: u32 = 0x0;
381 const IRQ_MASK_ADDR_LO: u32 = 0x0;
382 const IRQ_MASK_ANY_IRQ: u32 = 0x7;
Jiyong Park6a8789a2023-03-21 14:50:59 +0900383 const EXPECTED: PciIrqMask =
Jiyong Park00ceff32023-03-13 05:43:23 +0000384 [IRQ_MASK_ADDR_HI, IRQ_MASK_ADDR_ME, IRQ_MASK_ADDR_LO, IRQ_MASK_ANY_IRQ];
Jiyong Park6a8789a2023-03-21 14:50:59 +0900385 if *irq_mask != EXPECTED {
386 error!("Invalid PCI irq mask {:#?}", irq_mask);
387 return Err(RebootReason::InvalidFdt);
Jiyong Park00ceff32023-03-13 05:43:23 +0000388 }
Jiyong Park6a8789a2023-03-21 14:50:59 +0900389 Ok(())
Jiyong Park00ceff32023-03-13 05:43:23 +0000390}
391
Jiyong Park6a8789a2023-03-21 14:50:59 +0900392fn validate_pci_irq_map(irq_map: &PciIrqMap, idx: usize) -> Result<(), RebootReason> {
Jiyong Park00ceff32023-03-13 05:43:23 +0000393 const PCI_DEVICE_IDX: usize = 11;
394 const PCI_IRQ_ADDR_ME: u32 = 0;
395 const PCI_IRQ_ADDR_LO: u32 = 0;
396 const PCI_IRQ_INTC: u32 = 1;
397 const AARCH64_IRQ_BASE: u32 = 4; // from external/crosvm/aarch64/src/lib.rs
398 const GIC_SPI: u32 = 0;
399 const IRQ_TYPE_LEVEL_HIGH: u32 = 4;
400
Jiyong Park6a8789a2023-03-21 14:50:59 +0900401 let pci_addr = (irq_map[0], irq_map[1], irq_map[2]);
402 let pci_irq_number = irq_map[3];
403 let _controller_phandle = irq_map[4]; // skipped.
404 let gic_addr = (irq_map[5], irq_map[6]); // address-cells is <2> for GIC
405 // interrupt-cells is <3> for GIC
406 let gic_peripheral_interrupt_type = irq_map[7];
407 let gic_irq_number = irq_map[8];
408 let gic_irq_type = irq_map[9];
Jiyong Park00ceff32023-03-13 05:43:23 +0000409
Jiyong Park6a8789a2023-03-21 14:50:59 +0900410 let phys_hi: u32 = (0x1 << PCI_DEVICE_IDX) * (idx + 1) as u32;
411 let expected_pci_addr = (phys_hi, PCI_IRQ_ADDR_ME, PCI_IRQ_ADDR_LO);
Jiyong Park00ceff32023-03-13 05:43:23 +0000412
Jiyong Park6a8789a2023-03-21 14:50:59 +0900413 if pci_addr != expected_pci_addr {
414 error!("PCI device address {:#x} {:#x} {:#x} in interrupt-map is different from expected address \
415 {:#x} {:#x} {:#x}",
416 pci_addr.0, pci_addr.1, pci_addr.2, expected_pci_addr.0, expected_pci_addr.1, expected_pci_addr.2);
417 return Err(RebootReason::InvalidFdt);
418 }
Jiyong Park00ceff32023-03-13 05:43:23 +0000419
Jiyong Park6a8789a2023-03-21 14:50:59 +0900420 if pci_irq_number != PCI_IRQ_INTC {
421 error!(
422 "PCI INT# {:#x} in interrupt-map is different from expected value {:#x}",
423 pci_irq_number, PCI_IRQ_INTC
424 );
425 return Err(RebootReason::InvalidFdt);
426 }
Jiyong Park00ceff32023-03-13 05:43:23 +0000427
Jiyong Park6a8789a2023-03-21 14:50:59 +0900428 if gic_addr != (0, 0) {
429 error!(
430 "GIC address {:#x} {:#x} in interrupt-map is different from expected address \
431 {:#x} {:#x}",
432 gic_addr.0, gic_addr.1, 0, 0
433 );
434 return Err(RebootReason::InvalidFdt);
435 }
436
437 if gic_peripheral_interrupt_type != GIC_SPI {
438 error!("GIC peripheral interrupt type {:#x} in interrupt-map is different from expected value \
439 {:#x}", gic_peripheral_interrupt_type, GIC_SPI);
440 return Err(RebootReason::InvalidFdt);
441 }
442
443 let irq_nr: u32 = AARCH64_IRQ_BASE + (idx as u32);
444 if gic_irq_number != irq_nr {
445 error!(
446 "GIC irq number {:#x} in interrupt-map is unexpected. Expected {:#x}",
447 gic_irq_number, irq_nr
448 );
449 return Err(RebootReason::InvalidFdt);
450 }
451
452 if gic_irq_type != IRQ_TYPE_LEVEL_HIGH {
453 error!(
454 "IRQ type in {:#x} is invalid. Must be LEVEL_HIGH {:#x}",
455 gic_irq_type, IRQ_TYPE_LEVEL_HIGH
456 );
457 return Err(RebootReason::InvalidFdt);
Jiyong Park00ceff32023-03-13 05:43:23 +0000458 }
459 Ok(())
460}
461
Jiyong Park9c63cd12023-03-21 17:53:07 +0900462fn patch_pci_info(fdt: &mut Fdt, pci_info: &PciInfo) -> libfdt::Result<()> {
463 let mut node = fdt
464 .root_mut()?
465 .next_compatible(cstr!("pci-host-cam-generic"))?
466 .ok_or(FdtError::NotFound)?;
467
468 let irq_masks_size = pci_info.irq_masks.len() * size_of::<PciIrqMask>();
469 node.trimprop(cstr!("interrupt-map-mask"), irq_masks_size)?;
470
471 let irq_maps_size = pci_info.irq_maps.len() * size_of::<PciIrqMap>();
472 node.trimprop(cstr!("interrupt-map"), irq_maps_size)?;
473
474 node.setprop_inplace(
475 cstr!("ranges"),
476 flatten(&[pci_info.ranges[0].to_cells(), pci_info.ranges[1].to_cells()]),
477 )
478}
479
Jiyong Park00ceff32023-03-13 05:43:23 +0000480#[derive(Default, Debug)]
Jiyong Park6a8789a2023-03-21 14:50:59 +0900481struct SerialInfo {
482 addrs: ArrayVec<[u64; Self::MAX_SERIALS]>,
Jiyong Park00ceff32023-03-13 05:43:23 +0000483}
484
485impl SerialInfo {
Jiyong Park6a8789a2023-03-21 14:50:59 +0900486 const MAX_SERIALS: usize = 4;
Jiyong Park00ceff32023-03-13 05:43:23 +0000487}
488
Jiyong Park6a8789a2023-03-21 14:50:59 +0900489fn read_serial_info_from(fdt: &Fdt) -> libfdt::Result<SerialInfo> {
490 let mut addrs: ArrayVec<[u64; SerialInfo::MAX_SERIALS]> = Default::default();
491 for node in fdt.compatible_nodes(cstr!("ns16550a"))?.take(SerialInfo::MAX_SERIALS) {
Alice Wang6ff2d0c2023-09-19 15:28:43 +0000492 let reg = node.first_reg()?;
Jiyong Park6a8789a2023-03-21 14:50:59 +0900493 addrs.push(reg.addr);
Jiyong Park00ceff32023-03-13 05:43:23 +0000494 }
Jiyong Park6a8789a2023-03-21 14:50:59 +0900495 Ok(SerialInfo { addrs })
Jiyong Park00ceff32023-03-13 05:43:23 +0000496}
497
Jiyong Park9c63cd12023-03-21 17:53:07 +0900498/// Patch the DT by deleting the ns16550a compatible nodes whose address are unknown
499fn patch_serial_info(fdt: &mut Fdt, serial_info: &SerialInfo) -> libfdt::Result<()> {
500 let name = cstr!("ns16550a");
501 let mut next = fdt.root_mut()?.next_compatible(name);
502 while let Some(current) = next? {
503 let reg = FdtNode::from_mut(&current)
504 .reg()?
505 .ok_or(FdtError::NotFound)?
506 .next()
507 .ok_or(FdtError::NotFound)?;
508 next = if !serial_info.addrs.contains(&reg.addr) {
509 current.delete_and_next_compatible(name)
510 } else {
511 current.next_compatible(name)
512 }
513 }
514 Ok(())
515}
516
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700517fn validate_swiotlb_info(
518 swiotlb_info: &SwiotlbInfo,
519 memory: &Range<usize>,
520) -> Result<(), RebootReason> {
Jiyong Park6a8789a2023-03-21 14:50:59 +0900521 let size = swiotlb_info.size;
522 let align = swiotlb_info.align;
Jiyong Park00ceff32023-03-13 05:43:23 +0000523
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700524 if size == 0 || (size % GUEST_PAGE_SIZE) != 0 {
Jiyong Park00ceff32023-03-13 05:43:23 +0000525 error!("Invalid swiotlb size {:#x}", size);
526 return Err(RebootReason::InvalidFdt);
527 }
528
Pierre-Clément Tosibe3a97b2023-05-19 14:56:23 +0000529 if let Some(align) = align.filter(|&a| a % GUEST_PAGE_SIZE != 0) {
Jiyong Park00ceff32023-03-13 05:43:23 +0000530 error!("Invalid swiotlb alignment {:#x}", align);
531 return Err(RebootReason::InvalidFdt);
532 }
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700533
Alice Wang9cfbfd62023-06-14 11:19:03 +0000534 if let Some(addr) = swiotlb_info.addr {
535 if addr.checked_add(size).is_none() {
536 error!("Invalid swiotlb range: addr:{addr:#x} size:{size:#x}");
537 return Err(RebootReason::InvalidFdt);
538 }
539 }
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700540 if let Some(range) = swiotlb_info.fixed_range() {
541 if !range.is_within(memory) {
542 error!("swiotlb range {range:#x?} not part of memory range {memory:#x?}");
543 return Err(RebootReason::InvalidFdt);
544 }
545 }
546
Jiyong Park6a8789a2023-03-21 14:50:59 +0900547 Ok(())
Jiyong Park00ceff32023-03-13 05:43:23 +0000548}
549
Jiyong Park9c63cd12023-03-21 17:53:07 +0900550fn patch_swiotlb_info(fdt: &mut Fdt, swiotlb_info: &SwiotlbInfo) -> libfdt::Result<()> {
551 let mut node =
552 fdt.root_mut()?.next_compatible(cstr!("restricted-dma-pool"))?.ok_or(FdtError::NotFound)?;
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700553
554 if let Some(range) = swiotlb_info.fixed_range() {
Pierre-Clément Tosic27c4272023-05-19 15:46:26 +0000555 node.setprop_addrrange_inplace(
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700556 cstr!("reg"),
557 range.start.try_into().unwrap(),
558 range.len().try_into().unwrap(),
559 )?;
Pierre-Clément Tosibe3a97b2023-05-19 14:56:23 +0000560 node.nop_property(cstr!("size"))?;
561 node.nop_property(cstr!("alignment"))?;
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700562 } else {
Pierre-Clément Tosic27c4272023-05-19 15:46:26 +0000563 node.nop_property(cstr!("reg"))?;
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700564 node.setprop_inplace(cstr!("size"), &swiotlb_info.size.to_be_bytes())?;
Pierre-Clément Tosibe3a97b2023-05-19 14:56:23 +0000565 node.setprop_inplace(cstr!("alignment"), &swiotlb_info.align.unwrap().to_be_bytes())?;
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700566 }
567
Jiyong Park9c63cd12023-03-21 17:53:07 +0900568 Ok(())
569}
570
571fn patch_gic(fdt: &mut Fdt, num_cpus: usize) -> libfdt::Result<()> {
572 let node = fdt.compatible_nodes(cstr!("arm,gic-v3"))?.next().ok_or(FdtError::NotFound)?;
573 let mut ranges = node.reg()?.ok_or(FdtError::NotFound)?;
574 let range0 = ranges.next().ok_or(FdtError::NotFound)?;
575 let mut range1 = ranges.next().ok_or(FdtError::NotFound)?;
576
577 let addr = range0.addr;
Alice Wangabc7d632023-06-14 09:10:14 +0000578 // `validate_num_cpus()` checked that this wouldn't panic
579 let size = u64::try_from(DeviceTreeInfo::gic_patched_size(num_cpus).unwrap()).unwrap();
Jiyong Park9c63cd12023-03-21 17:53:07 +0900580
581 // range1 is just below range0
582 range1.addr = addr - size;
583 range1.size = Some(size);
584
585 let range0 = range0.to_cells();
586 let range1 = range1.to_cells();
587 let value = [
588 range0.0, // addr
589 range0.1.unwrap(), //size
590 range1.0, // addr
591 range1.1.unwrap(), //size
592 ];
593
594 let mut node =
595 fdt.root_mut()?.next_compatible(cstr!("arm,gic-v3"))?.ok_or(FdtError::NotFound)?;
596 node.setprop_inplace(cstr!("reg"), flatten(&value))
597}
598
599fn patch_timer(fdt: &mut Fdt, num_cpus: usize) -> libfdt::Result<()> {
600 const NUM_INTERRUPTS: usize = 4;
601 const CELLS_PER_INTERRUPT: usize = 3;
602 let node = fdt.compatible_nodes(cstr!("arm,armv8-timer"))?.next().ok_or(FdtError::NotFound)?;
603 let interrupts = node.getprop_cells(cstr!("interrupts"))?.ok_or(FdtError::NotFound)?;
604 let mut value: ArrayVec<[u32; NUM_INTERRUPTS * CELLS_PER_INTERRUPT]> =
605 interrupts.take(NUM_INTERRUPTS * CELLS_PER_INTERRUPT).collect();
606
607 let num_cpus: u32 = num_cpus.try_into().unwrap();
608 let cpu_mask: u32 = (((0x1 << num_cpus) - 1) & 0xff) << 8;
609 for v in value.iter_mut().skip(2).step_by(CELLS_PER_INTERRUPT) {
610 *v |= cpu_mask;
611 }
612 for v in value.iter_mut() {
613 *v = v.to_be();
614 }
615
Andrew Walbran20bb4e42023-07-07 13:55:55 +0100616 // SAFETY: array size is the same
Jiyong Park9c63cd12023-03-21 17:53:07 +0900617 let value = unsafe {
618 core::mem::transmute::<
619 [u32; NUM_INTERRUPTS * CELLS_PER_INTERRUPT],
620 [u8; NUM_INTERRUPTS * CELLS_PER_INTERRUPT * size_of::<u32>()],
621 >(value.into_inner())
622 };
623
624 let mut node =
625 fdt.root_mut()?.next_compatible(cstr!("arm,armv8-timer"))?.ok_or(FdtError::NotFound)?;
626 node.setprop_inplace(cstr!("interrupts"), value.as_slice())
627}
628
Jiyong Park00ceff32023-03-13 05:43:23 +0000629#[derive(Debug)]
Jiyong Park6a8789a2023-03-21 14:50:59 +0900630pub struct DeviceTreeInfo {
631 pub kernel_range: Option<Range<usize>>,
632 pub initrd_range: Option<Range<usize>>,
633 pub memory_range: Range<usize>,
Jiyong Parke9d87e82023-03-21 19:28:40 +0900634 bootargs: Option<CString>,
Jiyong Park6a8789a2023-03-21 14:50:59 +0900635 num_cpus: usize,
Jiyong Park00ceff32023-03-13 05:43:23 +0000636 pci_info: PciInfo,
637 serial_info: SerialInfo,
Srivatsa Vaddagiri37713ec2023-04-20 04:04:08 -0700638 pub swiotlb_info: SwiotlbInfo,
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900639 device_assignment: Option<DeviceAssignmentInfo>,
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900640 vm_base_dtbo_props_info: BTreeMap<CString, Vec<u8>>,
Jiyong Park00ceff32023-03-13 05:43:23 +0000641}
642
643impl DeviceTreeInfo {
Alice Wangabc7d632023-06-14 09:10:14 +0000644 fn gic_patched_size(num_cpus: usize) -> Option<usize> {
645 const GIC_REDIST_SIZE_PER_CPU: usize = 32 * SIZE_4KB;
646
647 GIC_REDIST_SIZE_PER_CPU.checked_mul(num_cpus)
648 }
Jiyong Park00ceff32023-03-13 05:43:23 +0000649}
650
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900651pub fn sanitize_device_tree(
652 fdt: &mut [u8],
653 vm_dtbo: Option<&mut [u8]>,
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900654 vm_base_dtbo: Option<&mut [u8]>,
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900655) -> Result<DeviceTreeInfo, RebootReason> {
656 let fdt = Fdt::from_mut_slice(fdt).map_err(|e| {
657 error!("Failed to load FDT: {e}");
658 RebootReason::InvalidFdt
659 })?;
660
661 let vm_dtbo = match vm_dtbo {
662 Some(vm_dtbo) => Some(VmDtbo::from_mut_slice(vm_dtbo).map_err(|e| {
663 error!("Failed to load VM DTBO: {e}");
664 RebootReason::InvalidFdt
665 })?),
666 None => None,
667 };
668
669 let info = parse_device_tree(fdt, vm_dtbo.as_deref())?;
Jiyong Park83316122023-03-21 09:39:39 +0900670
Jiyong Parke9d87e82023-03-21 19:28:40 +0900671 fdt.copy_from_slice(pvmfw_fdt_template::RAW).map_err(|e| {
672 error!("Failed to instantiate FDT from the template DT: {e}");
673 RebootReason::InvalidFdt
674 })?;
675
Jaewan Kim9220e852023-12-01 10:58:40 +0900676 fdt.unpack().map_err(|e| {
677 error!("Failed to unpack DT for patching: {e}");
678 RebootReason::InvalidFdt
679 })?;
680
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900681 if let Some(device_assignment_info) = &info.device_assignment {
682 let vm_dtbo = vm_dtbo.unwrap();
683 device_assignment_info.filter(vm_dtbo).map_err(|e| {
684 error!("Failed to filter VM DTBO: {e}");
685 RebootReason::InvalidFdt
686 })?;
687 // SAFETY: Damaged VM DTBO isn't used in this API after this unsafe block.
688 // VM DTBO can't be reused in any way as Fdt nor VmDtbo outside of this API because
689 // it can only be instantiated after validation.
690 unsafe {
691 fdt.apply_overlay(vm_dtbo.as_mut()).map_err(|e| {
692 error!("Failed to apply filtered VM DTBO: {e}");
693 RebootReason::InvalidFdt
694 })?;
695 }
696 }
697
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900698 if let Some(vm_base_dtbo) = vm_base_dtbo {
699 let vm_base_dtbo = Fdt::from_mut_slice(vm_base_dtbo).map_err(|e| {
700 error!("Failed to load VM base DTBO: {e}");
701 RebootReason::InvalidFdt
702 })?;
703
704 apply_vm_base_dtbo(fdt, vm_base_dtbo, &info.vm_base_dtbo_props_info).map_err(|e| {
705 error!("Failed to apply VM base DTBO: {e}");
706 RebootReason::InvalidFdt
707 })?;
708 }
709
Jiyong Park9c63cd12023-03-21 17:53:07 +0900710 patch_device_tree(fdt, &info)?;
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900711
Jaewan Kim19b984f2023-12-04 15:16:50 +0900712 // TODO(b/317201360): Ensure no overlapping in <reg> among devices
713
Jaewan Kim9220e852023-12-01 10:58:40 +0900714 fdt.pack().map_err(|e| {
715 error!("Failed to unpack DT after patching: {e}");
716 RebootReason::InvalidFdt
717 })?;
718
Jiyong Park6a8789a2023-03-21 14:50:59 +0900719 Ok(info)
Jiyong Park83316122023-03-21 09:39:39 +0900720}
721
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900722fn parse_device_tree(fdt: &Fdt, vm_dtbo: Option<&VmDtbo>) -> Result<DeviceTreeInfo, RebootReason> {
Jiyong Park6a8789a2023-03-21 14:50:59 +0900723 let kernel_range = read_kernel_range_from(fdt).map_err(|e| {
724 error!("Failed to read kernel range from DT: {e}");
725 RebootReason::InvalidFdt
726 })?;
727
728 let initrd_range = read_initrd_range_from(fdt).map_err(|e| {
729 error!("Failed to read initrd range from DT: {e}");
730 RebootReason::InvalidFdt
731 })?;
732
Alice Wang0d527472023-06-13 14:55:38 +0000733 let memory_range = read_and_validate_memory_range(fdt)?;
Jiyong Park6a8789a2023-03-21 14:50:59 +0900734
Jiyong Parke9d87e82023-03-21 19:28:40 +0900735 let bootargs = read_bootargs_from(fdt).map_err(|e| {
736 error!("Failed to read bootargs from DT: {e}");
737 RebootReason::InvalidFdt
738 })?;
739
Jiyong Park6a8789a2023-03-21 14:50:59 +0900740 let num_cpus = read_num_cpus_from(fdt).map_err(|e| {
741 error!("Failed to read num cpus from DT: {e}");
742 RebootReason::InvalidFdt
743 })?;
Alice Wangabc7d632023-06-14 09:10:14 +0000744 validate_num_cpus(num_cpus).map_err(|e| {
745 error!("Failed to validate num cpus from DT: {e}");
746 RebootReason::InvalidFdt
747 })?;
Jiyong Park6a8789a2023-03-21 14:50:59 +0900748
749 let pci_info = read_pci_info_from(fdt).map_err(|e| {
750 error!("Failed to read pci info from DT: {e}");
751 RebootReason::InvalidFdt
752 })?;
Jiyong Park0ee65392023-03-27 20:52:45 +0900753 validate_pci_info(&pci_info, &memory_range)?;
Jiyong Park6a8789a2023-03-21 14:50:59 +0900754
755 let serial_info = read_serial_info_from(fdt).map_err(|e| {
756 error!("Failed to read serial info from DT: {e}");
757 RebootReason::InvalidFdt
758 })?;
759
Alice Wang9cfbfd62023-06-14 11:19:03 +0000760 let swiotlb_info = SwiotlbInfo::new_from_fdt(fdt).map_err(|e| {
Jiyong Park6a8789a2023-03-21 14:50:59 +0900761 error!("Failed to read swiotlb info from DT: {e}");
762 RebootReason::InvalidFdt
763 })?;
Srivatsa Vaddagiri2df297f2023-04-12 03:11:05 -0700764 validate_swiotlb_info(&swiotlb_info, &memory_range)?;
Jiyong Park6a8789a2023-03-21 14:50:59 +0900765
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900766 let device_assignment = match vm_dtbo {
Jaewan Kim52477ae2023-11-21 21:20:52 +0900767 Some(vm_dtbo) => {
768 if let Some(hypervisor) = hyp::get_device_assigner() {
769 DeviceAssignmentInfo::parse(fdt, vm_dtbo, hypervisor).map_err(|e| {
770 error!("Failed to parse device assignment from DT and VM DTBO: {e}");
771 RebootReason::InvalidFdt
772 })?
773 } else {
774 warn!(
775 "Device assignment is ignored because device assigning hypervisor is missing"
776 );
777 None
778 }
779 }
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900780 None => None,
781 };
782
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900783 let vm_base_dtbo_props_info = parse_vm_base_dtbo(fdt).map_err(|e| {
784 error!("Failed to read names of properties under /avf from DT: {e}");
785 RebootReason::InvalidFdt
786 })?;
Seungjae Yooed67fd52023-11-29 18:54:36 +0900787
Jiyong Park00ceff32023-03-13 05:43:23 +0000788 Ok(DeviceTreeInfo {
Jiyong Park6a8789a2023-03-21 14:50:59 +0900789 kernel_range,
790 initrd_range,
791 memory_range,
Jiyong Parke9d87e82023-03-21 19:28:40 +0900792 bootargs,
Jiyong Park6a8789a2023-03-21 14:50:59 +0900793 num_cpus,
794 pci_info,
795 serial_info,
796 swiotlb_info,
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900797 device_assignment,
Seungjae Yoo013f4c42024-01-02 13:04:19 +0900798 vm_base_dtbo_props_info,
Jiyong Park00ceff32023-03-13 05:43:23 +0000799 })
800}
801
Jiyong Park9c63cd12023-03-21 17:53:07 +0900802fn patch_device_tree(fdt: &mut Fdt, info: &DeviceTreeInfo) -> Result<(), RebootReason> {
803 if let Some(initrd_range) = &info.initrd_range {
804 patch_initrd_range(fdt, initrd_range).map_err(|e| {
805 error!("Failed to patch initrd range to DT: {e}");
806 RebootReason::InvalidFdt
807 })?;
808 }
809 patch_memory_range(fdt, &info.memory_range).map_err(|e| {
810 error!("Failed to patch memory range to DT: {e}");
811 RebootReason::InvalidFdt
812 })?;
Jiyong Parke9d87e82023-03-21 19:28:40 +0900813 if let Some(bootargs) = &info.bootargs {
814 patch_bootargs(fdt, bootargs.as_c_str()).map_err(|e| {
815 error!("Failed to patch bootargs to DT: {e}");
816 RebootReason::InvalidFdt
817 })?;
818 }
Jiyong Park9c63cd12023-03-21 17:53:07 +0900819 patch_num_cpus(fdt, info.num_cpus).map_err(|e| {
820 error!("Failed to patch cpus to DT: {e}");
821 RebootReason::InvalidFdt
822 })?;
823 patch_pci_info(fdt, &info.pci_info).map_err(|e| {
824 error!("Failed to patch pci info to DT: {e}");
825 RebootReason::InvalidFdt
826 })?;
827 patch_serial_info(fdt, &info.serial_info).map_err(|e| {
828 error!("Failed to patch serial info to DT: {e}");
829 RebootReason::InvalidFdt
830 })?;
831 patch_swiotlb_info(fdt, &info.swiotlb_info).map_err(|e| {
832 error!("Failed to patch swiotlb info to DT: {e}");
833 RebootReason::InvalidFdt
834 })?;
835 patch_gic(fdt, info.num_cpus).map_err(|e| {
836 error!("Failed to patch gic info to DT: {e}");
837 RebootReason::InvalidFdt
838 })?;
839 patch_timer(fdt, info.num_cpus).map_err(|e| {
840 error!("Failed to patch timer info to DT: {e}");
841 RebootReason::InvalidFdt
842 })?;
Jaewan Kimc6e023b2023-10-12 15:11:05 +0900843 if let Some(device_assignment) = &info.device_assignment {
844 // Note: We patch values after VM DTBO is overlaid because patch may require more space
845 // then VM DTBO's underlying slice is allocated.
846 device_assignment.patch(fdt).map_err(|e| {
847 error!("Failed to patch device assignment info to DT: {e}");
848 RebootReason::InvalidFdt
849 })?;
850 }
Jiyong Parke9d87e82023-03-21 19:28:40 +0900851
Jiyong Park9c63cd12023-03-21 17:53:07 +0900852 Ok(())
853}
854
Pierre-Clément Tosi4ba79662023-02-13 11:22:41 +0000855/// Modifies the input DT according to the fields of the configuration.
856pub fn modify_for_next_stage(
857 fdt: &mut Fdt,
858 bcc: &[u8],
859 new_instance: bool,
860 strict_boot: bool,
Alan Stokes65618332023-12-15 14:09:25 +0000861 debug_policy: Option<&[u8]>,
Jiyong Parkc5d2ef22023-04-11 01:23:46 +0900862 debuggable: bool,
Pierre-Clément Tosi80251972023-07-12 12:51:12 +0000863 kaslr_seed: u64,
Pierre-Clément Tosi4ba79662023-02-13 11:22:41 +0000864) -> libfdt::Result<()> {
Pierre-Clément Tosieb887ac2023-05-02 13:33:37 +0000865 if let Some(debug_policy) = debug_policy {
866 let backup = Vec::from(fdt.as_slice());
867 fdt.unpack()?;
868 let backup_fdt = Fdt::from_slice(backup.as_slice()).unwrap();
869 if apply_debug_policy(fdt, backup_fdt, debug_policy)? {
870 info!("Debug policy applied.");
871 } else {
872 // apply_debug_policy restored fdt to backup_fdt so unpack it again.
873 fdt.unpack()?;
874 }
875 } else {
876 info!("No debug policy found.");
877 fdt.unpack()?;
878 }
Pierre-Clément Tosidb74cb12022-12-08 13:56:25 +0000879
Jiyong Parke9d87e82023-03-21 19:28:40 +0900880 patch_dice_node(fdt, bcc.as_ptr() as usize, bcc.len())?;
Pierre-Clément Tosi4ba79662023-02-13 11:22:41 +0000881
Alice Wang56ec45b2023-06-15 08:30:32 +0000882 if let Some(mut chosen) = fdt.chosen_mut()? {
883 empty_or_delete_prop(&mut chosen, cstr!("avf,strict-boot"), strict_boot)?;
884 empty_or_delete_prop(&mut chosen, cstr!("avf,new-instance"), new_instance)?;
Pierre-Clément Tosi80251972023-07-12 12:51:12 +0000885 chosen.setprop_inplace(cstr!("kaslr-seed"), &kaslr_seed.to_be_bytes())?;
Alice Wang56ec45b2023-06-15 08:30:32 +0000886 };
Jiyong Park32f37ef2023-05-17 16:15:58 +0900887 if !debuggable {
Jiyong Parkc5d2ef22023-04-11 01:23:46 +0900888 if let Some(bootargs) = read_bootargs_from(fdt)? {
889 filter_out_dangerous_bootargs(fdt, &bootargs)?;
890 }
891 }
892
Pierre-Clément Tosi4ba79662023-02-13 11:22:41 +0000893 fdt.pack()?;
894
895 Ok(())
896}
897
Jiyong Parke9d87e82023-03-21 19:28:40 +0900898/// Patch the "google,open-dice"-compatible reserved-memory node to point to the bcc range
899fn patch_dice_node(fdt: &mut Fdt, addr: usize, size: usize) -> libfdt::Result<()> {
Pierre-Clément Tosidb74cb12022-12-08 13:56:25 +0000900 // We reject DTs with missing reserved-memory node as validation should have checked that the
901 // "swiotlb" subnode (compatible = "restricted-dma-pool") was present.
Jiyong Parke9d87e82023-03-21 19:28:40 +0900902 let node = fdt.node_mut(cstr!("/reserved-memory"))?.ok_or(libfdt::FdtError::NotFound)?;
Pierre-Clément Tosidb74cb12022-12-08 13:56:25 +0000903
Jiyong Parke9d87e82023-03-21 19:28:40 +0900904 let mut node = node.next_compatible(cstr!("google,open-dice"))?.ok_or(FdtError::NotFound)?;
Pierre-Clément Tosidb74cb12022-12-08 13:56:25 +0000905
Jiyong Parke9d87e82023-03-21 19:28:40 +0900906 let addr: u64 = addr.try_into().unwrap();
907 let size: u64 = size.try_into().unwrap();
908 node.setprop_inplace(cstr!("reg"), flatten(&[addr.to_be_bytes(), size.to_be_bytes()]))
Pierre-Clément Tosi4ba79662023-02-13 11:22:41 +0000909}
910
Alice Wang56ec45b2023-06-15 08:30:32 +0000911fn empty_or_delete_prop(
912 fdt_node: &mut FdtNodeMut,
913 prop_name: &CStr,
914 keep_prop: bool,
915) -> libfdt::Result<()> {
916 if keep_prop {
917 fdt_node.setprop_empty(prop_name)
Pierre-Clément Tosi4ba79662023-02-13 11:22:41 +0000918 } else {
Alice Wang56ec45b2023-06-15 08:30:32 +0000919 fdt_node
920 .delprop(prop_name)
921 .or_else(|e| if e == FdtError::NotFound { Ok(()) } else { Err(e) })
Pierre-Clément Tosi4ba79662023-02-13 11:22:41 +0000922 }
Pierre-Clément Tosidb74cb12022-12-08 13:56:25 +0000923}
Jiyong Parkc23426b2023-04-10 17:32:27 +0900924
Pierre-Clément Tosia50167b2023-05-02 13:19:29 +0000925/// Apply the debug policy overlay to the guest DT.
926///
927/// Returns Ok(true) on success, Ok(false) on recovered failure and Err(_) on corruption of the DT.
Pierre-Clément Tosieb887ac2023-05-02 13:33:37 +0000928fn apply_debug_policy(
929 fdt: &mut Fdt,
930 backup_fdt: &Fdt,
931 debug_policy: &[u8],
932) -> libfdt::Result<bool> {
Pierre-Clément Tosia50167b2023-05-02 13:19:29 +0000933 let mut debug_policy = Vec::from(debug_policy);
934 let overlay = match Fdt::from_mut_slice(debug_policy.as_mut_slice()) {
Jiyong Parkc23426b2023-04-10 17:32:27 +0900935 Ok(overlay) => overlay,
936 Err(e) => {
Pierre-Clément Tosia50167b2023-05-02 13:19:29 +0000937 warn!("Corrupted debug policy found: {e}. Not applying.");
938 return Ok(false);
Jiyong Parkc23426b2023-04-10 17:32:27 +0900939 }
940 };
Jiyong Parkc23426b2023-04-10 17:32:27 +0900941
Andrew Walbran20bb4e42023-07-07 13:55:55 +0100942 // SAFETY: on failure, the corrupted DT is restored using the backup.
Jiyong Parkc23426b2023-04-10 17:32:27 +0900943 if let Err(e) = unsafe { fdt.apply_overlay(overlay) } {
Pierre-Clément Tosia50167b2023-05-02 13:19:29 +0000944 warn!("Failed to apply debug policy: {e}. Recovering...");
Jiyong Parkc23426b2023-04-10 17:32:27 +0900945 fdt.copy_from_slice(backup_fdt.as_slice())?;
Jiyong Parkc23426b2023-04-10 17:32:27 +0900946 // A successful restoration is considered success because an invalid debug policy
947 // shouldn't DOS the pvmfw
Pierre-Clément Tosia50167b2023-05-02 13:19:29 +0000948 Ok(false)
949 } else {
950 Ok(true)
Jiyong Parkc23426b2023-04-10 17:32:27 +0900951 }
Jiyong Parkc23426b2023-04-10 17:32:27 +0900952}
Jiyong Parkc5d2ef22023-04-11 01:23:46 +0900953
Pierre-Clément Tosi1fbc2e92023-05-02 17:28:17 +0000954fn has_common_debug_policy(fdt: &Fdt, debug_feature_name: &CStr) -> libfdt::Result<bool> {
Jiyong Parkc5d2ef22023-04-11 01:23:46 +0900955 if let Some(node) = fdt.node(cstr!("/avf/guest/common"))? {
956 if let Some(value) = node.getprop_u32(debug_feature_name)? {
957 return Ok(value == 1);
958 }
959 }
960 Ok(false) // if the policy doesn't exist or not 1, don't enable the debug feature
961}
962
963fn filter_out_dangerous_bootargs(fdt: &mut Fdt, bootargs: &CStr) -> libfdt::Result<()> {
Pierre-Clément Tosi1fbc2e92023-05-02 17:28:17 +0000964 let has_crashkernel = has_common_debug_policy(fdt, cstr!("ramdump"))?;
965 let has_console = has_common_debug_policy(fdt, cstr!("log"))?;
Jiyong Parkc5d2ef22023-04-11 01:23:46 +0900966
967 let accepted: &[(&str, Box<dyn Fn(Option<&str>) -> bool>)] = &[
968 ("panic", Box::new(|v| if let Some(v) = v { v == "=-1" } else { false })),
969 ("crashkernel", Box::new(|_| has_crashkernel)),
970 ("console", Box::new(|_| has_console)),
971 ];
972
973 // parse and filter out unwanted
974 let mut filtered = Vec::new();
975 for arg in BootArgsIterator::new(bootargs).map_err(|e| {
976 info!("Invalid bootarg: {e}");
977 FdtError::BadValue
978 })? {
979 match accepted.iter().find(|&t| t.0 == arg.name()) {
980 Some((_, pred)) if pred(arg.value()) => filtered.push(arg),
981 _ => debug!("Rejected bootarg {}", arg.as_ref()),
982 }
983 }
984
985 // flatten into a new C-string
986 let mut new_bootargs = Vec::new();
987 for (i, arg) in filtered.iter().enumerate() {
988 if i != 0 {
989 new_bootargs.push(b' '); // separator
990 }
991 new_bootargs.extend_from_slice(arg.as_ref().as_bytes());
992 }
993 new_bootargs.push(b'\0');
994
995 let mut node = fdt.chosen_mut()?.ok_or(FdtError::NotFound)?;
996 node.setprop(cstr!("bootargs"), new_bootargs.as_slice())
997}