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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//! Low-level allocation and tracking of main memory.
16
Pierre-Clément Tosi462bdf42024-10-30 17:46:23 +000017use crate::entry::RebootReason;
18use crate::fdt;
Alice Wang4be4dd02023-06-07 07:50:40 +000019use crate::helpers::PVMFW_PAGE_SIZE;
Alice Wanga3931aa2023-07-05 12:52:09 +000020use aarch64_paging::paging::VirtualAddress;
Pierre-Clément Tosiad1fc752023-05-31 16:56:56 +000021use aarch64_paging::MapError;
Pierre-Clément Tosi462bdf42024-10-30 17:46:23 +000022use core::num::NonZeroUsize;
Alice Wanga3931aa2023-07-05 12:52:09 +000023use core::ops::Range;
Pierre-Clément Tosia0934c12022-11-25 20:54:11 +000024use core::result;
Pierre-Clément Tosi462bdf42024-10-30 17:46:23 +000025use core::slice;
Per Larsen7ec45d32024-11-02 00:56:46 +000026use hypervisor_backends::get_mem_sharer;
Pierre-Clément Tosi462bdf42024-10-30 17:46:23 +000027use log::debug;
Alice Wang93ee98a2023-06-08 08:20:39 +000028use log::error;
Pierre-Clément Tosi462bdf42024-10-30 17:46:23 +000029use log::info;
30use log::warn;
Pierre-Clément Tosi3d4c5c32023-05-31 16:57:06 +000031use vmbase::{
Pierre-Clément Tosi462bdf42024-10-30 17:46:23 +000032 layout::{self, crosvm},
Pierre-Clément Tosib9963992024-11-28 22:53:02 +000033 memory::{PageTable, MEMORY},
Pierre-Clément Tosi3d4c5c32023-05-31 16:57:06 +000034};
Pierre-Clément Tosia0934c12022-11-25 20:54:11 +000035
Pierre-Clément Tosiad1fc752023-05-31 16:56:56 +000036/// Region allocated for the stack.
Alice Wanga3931aa2023-07-05 12:52:09 +000037pub fn stack_range() -> Range<VirtualAddress> {
Pierre-Clément Tosi9ddfab52024-04-24 23:03:46 +010038 const STACK_PAGES: usize = 12;
Pierre-Clément Tosiad1fc752023-05-31 16:56:56 +000039
40 layout::stack_range(STACK_PAGES * PVMFW_PAGE_SIZE)
41}
42
43pub fn init_page_table() -> result::Result<PageTable, MapError> {
Alice Wangee5b1802023-06-07 07:41:54 +000044 let mut page_table = PageTable::default();
Pierre-Clément Tosiad1fc752023-05-31 16:56:56 +000045
46 // Stack and scratch ranges are explicitly zeroed and flushed before jumping to payload,
47 // so dirty state management can be omitted.
Pierre-Clément Tosi0b02a2b2024-11-28 22:48:27 +000048 page_table.map_data(&layout::data_bss_range().into())?;
49 page_table.map_data(&layout::eh_stack_range().into())?;
Alice Wanga3931aa2023-07-05 12:52:09 +000050 page_table.map_data(&stack_range().into())?;
51 page_table.map_code(&layout::text_range().into())?;
52 page_table.map_rodata(&layout::rodata_range().into())?;
Pierre-Clément Tosib9963992024-11-28 22:53:02 +000053 page_table.map_data_dbm(&layout::image_footer_range().into())?;
Pierre-Clément Tosi38a36212024-06-06 11:30:39 +010054 if let Err(e) = page_table.map_device(&layout::console_uart_page().into()) {
Alice Wang807fa592023-06-02 09:54:43 +000055 error!("Failed to remap the UART as a dynamic page table entry: {e}");
56 return Err(e);
57 }
Pierre-Clément Tosiad1fc752023-05-31 16:56:56 +000058 Ok(page_table)
59}
Pierre-Clément Tosi462bdf42024-10-30 17:46:23 +000060
61pub(crate) struct MemorySlices<'a> {
62 pub fdt: &'a mut libfdt::Fdt,
63 pub kernel: &'a [u8],
64 pub ramdisk: Option<&'a [u8]>,
65}
66
67impl<'a> MemorySlices<'a> {
68 pub fn new(
69 fdt: usize,
70 kernel: usize,
71 kernel_size: usize,
72 vm_dtbo: Option<&mut [u8]>,
73 vm_ref_dt: Option<&[u8]>,
74 ) -> Result<Self, RebootReason> {
75 let fdt_size = NonZeroUsize::new(crosvm::FDT_MAX_SIZE).unwrap();
76 // TODO - Only map the FDT as read-only, until we modify it right before jump_to_payload()
77 // e.g. by generating a DTBO for a template DT in main() and, on return, re-map DT as RW,
78 // overwrite with the template DT and apply the DTBO.
79 let range = MEMORY.lock().as_mut().unwrap().alloc_mut(fdt, fdt_size).map_err(|e| {
80 error!("Failed to allocate the FDT range: {e}");
81 RebootReason::InternalError
82 })?;
83
84 // SAFETY: The tracker validated the range to be in main memory, mapped, and not overlap.
85 let fdt = unsafe { slice::from_raw_parts_mut(range.start as *mut u8, range.len()) };
86
87 let info = fdt::sanitize_device_tree(fdt, vm_dtbo, vm_ref_dt)?;
88 let fdt = libfdt::Fdt::from_mut_slice(fdt).map_err(|e| {
89 error!("Failed to load sanitized FDT: {e}");
90 RebootReason::InvalidFdt
91 })?;
92 debug!("Fdt passed validation!");
93
94 let memory_range = info.memory_range;
95 debug!("Resizing MemoryTracker to range {memory_range:#x?}");
96 MEMORY.lock().as_mut().unwrap().shrink(&memory_range).map_err(|e| {
97 error!("Failed to use memory range value from DT: {memory_range:#x?}: {e}");
98 RebootReason::InvalidFdt
99 })?;
100
101 if let Some(mem_sharer) = get_mem_sharer() {
102 let granule = mem_sharer.granule().map_err(|e| {
103 error!("Failed to get memory protection granule: {e}");
104 RebootReason::InternalError
105 })?;
106 MEMORY.lock().as_mut().unwrap().init_dynamic_shared_pool(granule).map_err(|e| {
107 error!("Failed to initialize dynamically shared pool: {e}");
108 RebootReason::InternalError
109 })?;
110 } else {
111 let range = info.swiotlb_info.fixed_range().ok_or_else(|| {
112 error!("Pre-shared pool range not specified in swiotlb node");
113 RebootReason::InvalidFdt
114 })?;
115
116 MEMORY.lock().as_mut().unwrap().init_static_shared_pool(range).map_err(|e| {
117 error!("Failed to initialize pre-shared pool {e}");
118 RebootReason::InvalidFdt
119 })?;
120 }
121
122 let kernel_range = if let Some(r) = info.kernel_range {
123 MEMORY.lock().as_mut().unwrap().alloc_range(&r).map_err(|e| {
124 error!("Failed to obtain the kernel range with DT range: {e}");
125 RebootReason::InternalError
126 })?
127 } else if cfg!(feature = "legacy") {
128 warn!("Failed to find the kernel range in the DT; falling back to legacy ABI");
129
130 let kernel_size = NonZeroUsize::new(kernel_size).ok_or_else(|| {
131 error!("Invalid kernel size: {kernel_size:#x}");
132 RebootReason::InvalidPayload
133 })?;
134
135 MEMORY.lock().as_mut().unwrap().alloc(kernel, kernel_size).map_err(|e| {
136 error!("Failed to obtain the kernel range with legacy range: {e}");
137 RebootReason::InternalError
138 })?
139 } else {
140 error!("Failed to locate the kernel from the DT");
141 return Err(RebootReason::InvalidPayload);
142 };
143
144 let kernel = kernel_range.start as *const u8;
145 // SAFETY: The tracker validated the range to be in main memory, mapped, and not overlap.
146 let kernel = unsafe { slice::from_raw_parts(kernel, kernel_range.len()) };
147
148 let ramdisk = if let Some(r) = info.initrd_range {
149 debug!("Located ramdisk at {r:?}");
150 let r = MEMORY.lock().as_mut().unwrap().alloc_range(&r).map_err(|e| {
151 error!("Failed to obtain the initrd range: {e}");
152 RebootReason::InvalidRamdisk
153 })?;
154
155 // SAFETY: The region was validated by memory to be in main memory, mapped, and
156 // not overlap.
157 Some(unsafe { slice::from_raw_parts(r.start as *const u8, r.len()) })
158 } else {
159 info!("Couldn't locate the ramdisk from the device tree");
160 None
161 };
162
163 Ok(Self { fdt, kernel, ramdisk })
164 }
165}