2019-07-04 21:38:03 +00:00
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use core::marker::PhantomData;
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2019-07-04 23:03:13 +00:00
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use ffi;
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use types::{c_uint, c_void};
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use Error;
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use Secp256k1;
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2019-07-04 21:38:03 +00:00
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#[cfg(feature = "std")]
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pub use self::std_only::*;
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2019-07-05 01:18:36 +00:00
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/// A trait for all kinds of Context's that Lets you define the exact flags and a function to deallocate memory.
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2019-07-04 21:38:03 +00:00
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/// * DO NOT * implement it for your own types.
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pub unsafe trait Context {
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/// Flags for the ffi.
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const FLAGS: c_uint;
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/// A constant description of the context.
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const DESCRIPTION: &'static str;
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/// A function to deallocate the memory when the context is dropped.
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fn deallocate(ptr: *mut [u8]);
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}
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/// Marker trait for indicating that an instance of `Secp256k1` can be used for signing.
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pub trait Signing: Context {}
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/// Marker trait for indicating that an instance of `Secp256k1` can be used for verification.
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pub trait Verification: Context {}
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2019-07-04 21:39:37 +00:00
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/// Represents the set of capabilities needed for signing with a user preallocated memory.
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pub struct SignOnlyPreallocated<'buf> {
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phantom: PhantomData<&'buf ()>,
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}
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/// Represents the set of capabilities needed for verification with a user preallocated memory.
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pub struct VerifyOnlyPreallocated<'buf> {
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phantom: PhantomData<&'buf ()>,
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}
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/// Represents the set of all capabilities with a user preallocated memory.
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pub struct AllPreallocated<'buf> {
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phantom: PhantomData<&'buf ()>,
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}
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2019-07-04 21:38:03 +00:00
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#[cfg(feature = "std")]
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mod std_only {
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use super::*;
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/// Represents the set of capabilities needed for signing.
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pub enum SignOnly {}
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/// Represents the set of capabilities needed for verification.
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pub enum VerifyOnly {}
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/// Represents the set of all capabilities.
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pub enum All {}
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impl Signing for SignOnly {}
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impl Signing for All {}
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impl Verification for VerifyOnly {}
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impl Verification for All {}
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unsafe impl Context for SignOnly {
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const FLAGS: c_uint = ffi::SECP256K1_START_SIGN;
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const DESCRIPTION: &'static str = "signing only";
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fn deallocate(ptr: *mut [u8]) {
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let _ = unsafe { Box::from_raw(ptr) };
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}
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}
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unsafe impl Context for VerifyOnly {
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const FLAGS: c_uint = ffi::SECP256K1_START_VERIFY;
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const DESCRIPTION: &'static str = "verification only";
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fn deallocate(ptr: *mut [u8]) {
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let _ = unsafe { Box::from_raw(ptr) };
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}
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}
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unsafe impl Context for All {
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const FLAGS: c_uint = VerifyOnly::FLAGS | SignOnly::FLAGS;
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const DESCRIPTION: &'static str = "all capabilities";
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fn deallocate(ptr: *mut [u8]) {
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let _ = unsafe { Box::from_raw(ptr) };
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}
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}
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impl<C: Context> Secp256k1<C> {
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2019-07-05 01:18:36 +00:00
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/// Lets you create a context in a generic manner(sign/verify/all)
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pub fn gen_new() -> Secp256k1<C> {
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2019-07-04 22:09:55 +00:00
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let buf = vec![0u8; Self::preallocate_size_gen()].into_boxed_slice();
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2019-07-04 21:38:03 +00:00
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let ptr = Box::into_raw(buf);
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Secp256k1 {
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ctx: unsafe { ffi::secp256k1_context_preallocated_create(ptr as *mut c_void, C::FLAGS) },
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phantom: PhantomData,
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buf: ptr,
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}
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}
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}
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impl Secp256k1<All> {
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/// Creates a new Secp256k1 context with all capabilities
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pub fn new() -> Secp256k1<All> {
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Secp256k1::gen_new()
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}
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}
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impl Secp256k1<SignOnly> {
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/// Creates a new Secp256k1 context that can only be used for signing
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pub fn signing_only() -> Secp256k1<SignOnly> {
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Secp256k1::gen_new()
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}
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}
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impl Secp256k1<VerifyOnly> {
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/// Creates a new Secp256k1 context that can only be used for verification
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pub fn verification_only() -> Secp256k1<VerifyOnly> {
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Secp256k1::gen_new()
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}
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}
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impl Default for Secp256k1<All> {
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fn default() -> Self {
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Self::new()
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}
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}
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impl<C: Context> Clone for Secp256k1<C> {
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fn clone(&self) -> Secp256k1<C> {
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2019-07-04 22:46:51 +00:00
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let clone_size = unsafe {ffi::secp256k1_context_preallocated_clone_size(self.ctx)};
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let ptr_buf = Box::into_raw(vec![0u8; clone_size].into_boxed_slice());
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2019-07-04 21:38:03 +00:00
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Secp256k1 {
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2019-07-04 22:46:51 +00:00
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ctx: unsafe { ffi::secp256k1_context_preallocated_clone(self.ctx, ptr_buf as *mut c_void) },
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2019-07-04 21:38:03 +00:00
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phantom: PhantomData,
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2019-07-04 22:46:51 +00:00
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buf: ptr_buf,
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2019-07-04 21:38:03 +00:00
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}
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}
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}
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}
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2019-07-04 21:39:37 +00:00
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impl<'buf> Signing for SignOnlyPreallocated<'buf> {}
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impl<'buf> Signing for AllPreallocated<'buf> {}
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impl<'buf> Verification for VerifyOnlyPreallocated<'buf> {}
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impl<'buf> Verification for AllPreallocated<'buf> {}
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unsafe impl<'buf> Context for SignOnlyPreallocated<'buf> {
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const FLAGS: c_uint = ffi::SECP256K1_START_SIGN;
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const DESCRIPTION: &'static str = "signing only";
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2019-07-05 01:18:36 +00:00
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fn deallocate(_ptr: *mut [u8]) {
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// Allocated by the user
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2019-07-04 21:39:37 +00:00
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}
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}
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unsafe impl<'buf> Context for VerifyOnlyPreallocated<'buf> {
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const FLAGS: c_uint = ffi::SECP256K1_START_VERIFY;
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const DESCRIPTION: &'static str = "verification only";
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2019-07-05 01:18:36 +00:00
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fn deallocate(_ptr: *mut [u8]) {
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// Allocated by the user
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2019-07-04 21:39:37 +00:00
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}
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}
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unsafe impl<'buf> Context for AllPreallocated<'buf> {
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const FLAGS: c_uint = SignOnlyPreallocated::FLAGS | VerifyOnlyPreallocated::FLAGS;
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const DESCRIPTION: &'static str = "all capabilities";
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2019-07-05 01:18:36 +00:00
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fn deallocate(_ptr: *mut [u8]) {
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// Allocated by the user
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2019-07-04 21:39:37 +00:00
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}
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}
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impl<'buf, C: Context + 'buf> Secp256k1<C> {
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2019-07-05 01:18:36 +00:00
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/// Lets you create a context with preallocated buffer in a generic manner(sign/verify/all)
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pub fn preallocated_gen_new(buf: &'buf mut [u8]) -> Result<Secp256k1<C>, Error> {
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2019-07-04 22:09:55 +00:00
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if buf.len() < Self::preallocate_size_gen() {
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2019-07-04 21:39:37 +00:00
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return Err(Error::NotEnoughMemory);
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}
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Ok(Secp256k1 {
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ctx: unsafe {
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ffi::secp256k1_context_preallocated_create(
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buf.as_mut_ptr() as *mut c_void,
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2019-07-04 22:09:55 +00:00
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C::FLAGS)
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2019-07-04 21:39:37 +00:00
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},
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phantom: PhantomData,
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buf: buf as *mut [u8],
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})
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}
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}
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impl<'buf> Secp256k1<AllPreallocated<'buf>> {
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/// Creates a new Secp256k1 context with all capabilities
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pub fn preallocated_new(buf: &'buf mut [u8]) -> Result<Secp256k1<AllPreallocated<'buf>>, Error> {
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Secp256k1::preallocated_gen_new(buf)
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}
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2019-07-04 22:09:55 +00:00
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/// Uses the ffi `secp256k1_context_preallocated_size` to check the memory size needed for a context
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pub fn preallocate_size() -> usize {
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Self::preallocate_size_gen()
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}
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2019-07-04 21:39:37 +00:00
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}
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impl<'buf> Secp256k1<SignOnlyPreallocated<'buf>> {
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/// Creates a new Secp256k1 context that can only be used for signing
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2019-07-04 22:09:55 +00:00
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pub fn preallocated_signing_only(buf: &'buf mut [u8]) -> Result<Secp256k1<SignOnlyPreallocated<'buf>>, Error> {
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2019-07-04 21:39:37 +00:00
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Secp256k1::preallocated_gen_new(buf)
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}
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2019-07-04 22:09:55 +00:00
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/// Uses the ffi `secp256k1_context_preallocated_size` to check the memory size needed for the context
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#[inline]
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pub fn preallocate_signing_size() -> usize {
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Self::preallocate_size_gen()
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}
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2019-07-04 21:39:37 +00:00
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}
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impl<'buf> Secp256k1<VerifyOnlyPreallocated<'buf>> {
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/// Creates a new Secp256k1 context that can only be used for verification
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2019-07-04 22:09:55 +00:00
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pub fn preallocated_verification_only(buf: &'buf mut [u8]) -> Result<Secp256k1<VerifyOnlyPreallocated<'buf>>, Error> {
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2019-07-04 21:39:37 +00:00
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Secp256k1::preallocated_gen_new(buf)
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}
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2019-07-04 22:09:55 +00:00
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/// Uses the ffi `secp256k1_context_preallocated_size` to check the memory size needed for the context
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#[inline]
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pub fn preallocate_verification_size() -> usize {
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Self::preallocate_size_gen()
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}
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2019-07-04 21:39:37 +00:00
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}
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