- Example CA certificates that are used for self-signed client certificates
need to include the Key Usage parameter.
- Python3.13 changed the default context of the SSL context that is
generated using ssl.create_default_context() by enabling the VERIFY_X509_STRICT
flag by default
Using same IV in AES-GCM across multiple invocation of
encryption/decryption operations can pose a security risk. It can help
to reveal co-relation between different plaintexts.
This commit introduces a change to use part of IV as a monotonic
counter, which must be incremented after every AES-GCM invocation
on both the client and the device side.
Concept of patch version for a security scheme has been introduced here
which can help to differentiate a protocol behavior for the provisioning
entity. The security patch version will be available in the JSON
response for `proto-ver` endpoint request with the field
`sec_patch_ver`.
Please refer to documentation for more details on the changes required
on the provisioning entity side (e.g., PhoneApps).
This commit updates the following:
- Updates the panic handler to use only the RTC WDT to reset the system.
- Refactors some of the panic handler code.
- Updates Bluetooth files where in they now feed the WDTs instead of
reconfiguring them.
- Removes some unnecessary configuration of WDTs from various files.
- Added a unit test to verify that the system does not lock up when the
panic handler is stuck.
- Updates the memprot unit tests to work with the refactored panic
handler.
Closes https://github.com/espressif/esp-idf/issues/15166
Closes https://github.com/espressif/esp-idf/issues/15018
Closes https://github.com/espressif/esp-idf/issues/10110
Closes https://github.com/espressif/esp-idf/issues/13629
NMI interrupt level has been freed for all the Xtensa targets, making it possible
for the main application to use it. An example has been added to show how to
proceed.
When a symbol needs to be placed to a different target than the one
designated for the object file, the object file is expanded, which
includes the following steps:
1. Creating a new placement for the symbol's input section with the
specified target.
2. Excluding the object placement from the orignal target.
3. Creating a new intermediate placement for the object for the original
target, where its input sections are expanded, excluding the input
section for the symbol.
Let's illustrate the object expansion process with the following example:
[sections:rodata]
entries:
.rodata+
.sdata2+
.srodata+
[scheme:default]
entries:
text -> flash_text
rodata -> flash_rodata
[scheme:noflash]
entries:
text -> iram0_text
rodata -> dram0_data
[mapping:soc_pm]
archive: libsoc.a
entries:
gpio_periph: GPIO_HOLD_MASK (noflash)
gpio_periph section headers:
[Nr] Name Type Addr Off Size ES Flg Lk Inf Al
[ 0] NULL 00000000 000000 000000 00 0 0 0
[ 1] .text PROGBITS 00000000 000034 000000 00 AX 0 0 2
[ 2] .data PROGBITS 00000000 000034 000000 00 WA 0 0 1
[ 3] .bss NOBITS 00000000 000034 000000 00 WA 0 0 1
[ 4] .rodata.GPIO_HOLD_MASK PROGBITS 00000000 000034 000058 00 A 0 0 4
[ 5] .rodata.GPIO_PIN_MUX_REG PROGBITS 00000000 00008c 000058 00 A 0 0 4
[ 6] .debug_info PROGBITS 00000000 0000e4 0000d8 00 0 0 1
[ 7] .rela.debug_info RELA 00000000 0009d4 000108 0c I 16 6 4
[ 8] .debug_abbrev PROGBITS 00000000 0001bc 000070 00 0 0 1
[ 9] .debug_aranges PROGBITS 00000000 00022c 000018 00 0 0 1
[10] .rela.debug_aranges RELA 00000000 000adc 00000c 0c I 16 9 4
[11] .debug_line PROGBITS 00000000 000244 0001ab 00 0 0 1
[12] .debug_str PROGBITS 00000000 0003ef 00022d 01 MS 0 0 1
[13] .comment PROGBITS 00000000 00061c 000030 01 MS 0 0 1
[14] .note.GNU-stack PROGBITS 00000000 00064c 000000 00 0 0 1
[15] .riscv.attributes RISCV_ATTRIBUTES 00000000 00064c 000044 00 0 0 1
[16] .symtab SYMTAB 00000000 000690 000260 10 17 36 4
[17] .strtab STRTAB 00000000 0008f0 0000e1 00 0 0 1
[18] .shstrtab STRTAB 00000000 000ae8 0000d1 00 0 0 1
1. Creating a new placement
.dram0.data :
{
*libsoc.a:gpio_periph.*(.rodata.GPIO_HOLD_MASK .sdata2.GPIO_HOLD_MASK .srodata.GPIO_HOLD_MASK)
}
2. Excluding the object placement
.flash.rodata :
{
*(EXCLUDE_FILE(*libsoc.a:gpio_periph.*) .rodata.* ...)
}
3. Creating a new intermediate placement
.flash.rodata :
{
*libsoc.a:gpio_periph.*(.rodata.GPIO_PIN_MUX_REG)
}
Now, let's do the same, but also move GPIO_PIN_MUX_REG to noflash with an updated mapping.
[mapping:soc_pm]
archive: libsoc.a
entries:
gpio_periph: GPIO_HOLD_MASK (noflash)
gpio_periph: GPIO_PIN_MUX_REG (noflash)
1. Creating a new placement
.dram0.data :
{
*libsoc.a:gpio_periph.*(.rodata.GPIO_HOLD_MASK .sdata2.GPIO_HOLD_MASK .srodata.GPIO_HOLD_MASK)
*libsoc.a:gpio_periph.*(.rodata.GPIO_PIN_MUX_REG .sdata2.GPIO_PIN_MUX_REG
.srodata.GPIO_PIN_MUX_REG)
}
2. Excluding the object placement
.flash.rodata :
{
*(EXCLUDE_FILE(*libsoc.a:gpio_periph.*) .rodata.* ...)
}
3. Creating a new intermediate placement
.flash.rodata :
{
*libsoc.a:gpio_periph.*
}
The *libsoc.a:gpio_periph.* entity in step 3 no longer has input
sections, as there are no remaining .rodata input sections in the object
file. The linker behavior for this mapping is to include all object
input sections that have not yet been placed as described in
https://sourceware.org/binutils/docs/ld.html#Input-Section-Basics
"If you use a file name without a list of sections, then all sections in
the input file will be included in the output section. This is not
commonly done, but it may by useful on occasion."
The map file for such mapping now contains following input sections
.flash.rodata 0x3c0a0120 0x19b34
*libsoc.a:gpio_periph.*()
.debug_info 0x3c0b95bf 0xd8 esp-idf/soc/libsoc.a(gpio_periph.c.obj)
.debug_abbrev 0x3c0b9697 0x70 esp-idf/soc/libsoc.a(gpio_periph.c.obj)
.debug_aranges
0x3c0b9707 0x18 esp-idf/soc/libsoc.a(gpio_periph.c.obj)
.debug_line 0x3c0b971f 0x1ab esp-idf/soc/libsoc.a(gpio_periph.c.obj)
.debug_str 0x3c0b98ca 0x21a esp-idf/soc/libsoc.a(gpio_periph.c.obj)
0x22d (size before relaxing)
.comment 0x3c0b9ae4 0x30 esp-idf/soc/libsoc.a(gpio_periph.c.obj)
.note.GNU-stack
0x3c0b9ae4 0x0 esp-idf/soc/libsoc.a(gpio_periph.c.obj)
.riscv.attributes
0x3c0b9ae4 0x44 esp-idf/soc/libsoc.a(gpio_periph.c.obj)
This is incorrect, and such intermediate placement should not be
generated. This type of placement can be recognized because it is not
explicitly defined in the mapping and lacks input sections. We can
identify this in the significant function and prevent issuing commands
for such placement.
Signed-off-by: Frantisek Hrbata <frantisek.hrbata@espressif.com>
Currently, we are only suggesting that the header file is likely not
part of the component's INCLUDE_DIRS. However, the header file may be
missing also because of the configuration settings. For instance, the
component might be disabled in sdkconfig, or the feature that supplies
the header might not be enabled. Enhance the hint message to address
this scenario as well.
Signed-off-by: Frantisek Hrbata <frantisek.hrbata@espressif.com>