Emit a default memory.x alongside device.x from metapac.
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c458ad52e6
commit
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8 changed files with 50 additions and 68 deletions
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@ -39,7 +39,9 @@ pub mod eth;
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pub mod exti;
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#[cfg(i2c)]
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pub mod i2c;
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#[cfg(pwr)]
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// until we have all PWR covered.
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#[cfg(all(any(pwr_h7, pwr_h7smps), pwr))]
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pub mod pwr;
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#[cfg(rng)]
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pub mod rng;
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@ -1,31 +0,0 @@
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//! This build script copies the `memory.x` file from the crate root into
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//! a directory where the linker can always find it at build time.
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//! For many projects this is optional, as the linker always searches the
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//! project root directory -- wherever `Cargo.toml` is. However, if you
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//! are using a workspace or have a more complicated build setup, this
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//! build script becomes required. Additionally, by requesting that
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//! Cargo re-run the build script whenever `memory.x` is changed,
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//! updating `memory.x` ensures a rebuild of the application with the
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//! new memory settings.
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use std::env;
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use std::fs::File;
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use std::io::Write;
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use std::path::PathBuf;
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fn main() {
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// Put `memory.x` in our output directory and ensure it's
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// on the linker search path.
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let out = &PathBuf::from(env::var_os("OUT_DIR").unwrap());
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File::create(out.join("memory.x"))
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.unwrap()
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.write_all(include_bytes!("memory.x"))
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.unwrap();
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println!("cargo:rustc-link-search={}", out.display());
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// By default, Cargo will re-run a build script whenever
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// any file in the project changes. By specifying `memory.x`
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// here, we ensure the build script is only re-run when
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// `memory.x` is changed.
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println!("cargo:rerun-if-changed=memory.x");
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}
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@ -1,7 +0,0 @@
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MEMORY
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{
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/* NOTE 1 K = 1 KiBi = 1024 bytes */
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/* These values correspond to the STM32F429ZI */
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FLASH : ORIGIN = 0x08000000, LENGTH = 2048K
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RAM : ORIGIN = 0x20000000, LENGTH = 192K
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}
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@ -1,21 +0,0 @@
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use std::env;
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use std::fs::File;
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use std::io::Write;
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use std::path::PathBuf;
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fn main() {
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// Put `memory.x` in our output directory and ensure it's
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// on the linker search path.
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let out = &PathBuf::from(env::var_os("OUT_DIR").unwrap());
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File::create(out.join("memory.x"))
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.unwrap()
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.write_all(include_bytes!("memory.x"))
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.unwrap();
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println!("cargo:rustc-link-search={}", out.display());
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// By default, Cargo will re-run a build script whenever
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// any file in the project changes. By specifying `memory.x`
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// here, we ensure the build script is only re-run when
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// `memory.x` is changed.
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println!("cargo:rerun-if-changed=memory.x");
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}
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@ -1,5 +0,0 @@
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MEMORY
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{
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FLASH : ORIGIN = 0x08000000, LENGTH = 2048K
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RAM : ORIGIN = 0x24000000, LENGTH = 384K
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}
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@ -1 +1 @@
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Subproject commit 0ad27b2fd1126c6c9d9f4602d1331f5d82f4aa26
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Subproject commit f36d629d54840b8f76a89fbd1f179aa1c31702bc
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@ -9,6 +9,14 @@ fn main() {
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.unwrap()
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.to_ascii_lowercase();
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// Put `memory.x` in our output directory and ensure it's
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// on the linker search path.
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let out = &PathBuf::from(env::var_os("OUT_DIR").unwrap());
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//File::create(out.join("memory.x"))
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//.unwrap()
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//.write_all(include_bytes!("memory.x"))
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//.unwrap();
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#[cfg(feature = "rt")]
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println!("cargo:rustc-link-search=src/chips/{}", _chip_name);
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@ -19,11 +19,23 @@ pub struct Chip {
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pub family: String,
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pub line: String,
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pub cores: Vec<Core>,
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pub flash: u32,
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pub ram: u32,
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pub flash: Memory,
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pub ram: Memory,
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pub packages: Vec<Package>,
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}
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#[derive(Debug, Eq, PartialEq, Clone, Deserialize)]
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pub struct Memory {
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pub bytes: u32,
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pub regions: HashMap<String, MemoryRegion>,
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}
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#[derive(Debug, Eq, PartialEq, Clone, Deserialize)]
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pub struct MemoryRegion {
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pub base: u32,
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pub bytes: Option<u32>,
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}
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#[derive(Debug, Eq, PartialEq, Clone, Deserialize)]
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pub struct Core {
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pub name: String,
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@ -636,6 +648,9 @@ pub fn gen(options: Options) {
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.unwrap()
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.write_all(device_x.as_bytes())
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.unwrap();
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// generate default memory.x
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gen_memory_x(&chip_dir, &chip);
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}
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for (module, version) in all_peripheral_versions {
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@ -674,6 +689,7 @@ pub fn gen(options: Options) {
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let re = Regex::new("# *! *\\[.*\\]").unwrap();
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let data = re.replace_all(&data, "");
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file.write_all(data.as_bytes()).unwrap();
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}
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// Generate src/lib_inner.rs
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@ -734,6 +750,7 @@ pub fn gen(options: Options) {
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// Generate build.rs
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fs::write(out_dir.join("build.rs"), include_bytes!("assets/build.rs")).unwrap();
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}
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fn bytes_find(haystack: &[u8], needle: &[u8]) -> Option<usize> {
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@ -741,3 +758,22 @@ fn bytes_find(haystack: &[u8], needle: &[u8]) -> Option<usize> {
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.windows(needle.len())
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.position(|window| window == needle)
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}
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fn gen_memory_x(out_dir: &PathBuf, chip: &Chip) {
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let mut memory_x = String::new();
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let flash_bytes = chip.flash.regions.get("BANK_1").unwrap().bytes.unwrap();
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let flash_origin = chip.flash.regions.get("BANK_1").unwrap().base;
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let ram_bytes = chip.ram.regions.get("SRAM").unwrap().bytes.unwrap();
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let ram_origin = chip.ram.regions.get("SRAM").unwrap().base;
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write!(memory_x, "MEMORY\n{{\n").unwrap();
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write!(memory_x, " FLASH : ORIGIN = 0x{:x}, LENGTH = {}\n", flash_origin, flash_bytes).unwrap();
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write!(memory_x, " RAM : ORIGIN = 0x{:x}, LENGTH = {}\n", ram_origin, ram_bytes).unwrap();
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write!(memory_x, "}}").unwrap();
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let mut file = File::create(out_dir.join("memory.x")).unwrap();
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file.write_all( memory_x.as_bytes() ).unwrap();
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}
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